Add tests for psbt serde
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@ -163,6 +163,7 @@ impl Decodable for PartiallySignedTransaction {
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#[cfg(test)]
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#[cfg(test)]
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mod tests {
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mod tests {
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use hashes::hex::FromHex;
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use hashes::hex::FromHex;
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use hashes::{sha256, hash160, Hash, ripemd160};
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use hash_types::Txid;
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use hash_types::Txid;
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use std::collections::BTreeMap;
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use std::collections::BTreeMap;
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@ -175,7 +176,7 @@ mod tests {
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use consensus::encode::{deserialize, serialize, serialize_hex};
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use consensus::encode::{deserialize, serialize, serialize_hex};
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use util::bip32::{ChildNumber, DerivationPath, ExtendedPrivKey, ExtendedPubKey, Fingerprint};
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use util::bip32::{ChildNumber, DerivationPath, ExtendedPrivKey, ExtendedPubKey, Fingerprint};
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use util::key::PublicKey;
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use util::key::PublicKey;
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use util::psbt::map::{Global, Output};
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use util::psbt::map::{Global, Output, Input};
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use util::psbt::raw;
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use util::psbt::raw;
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use super::PartiallySignedTransaction;
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use super::PartiallySignedTransaction;
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@ -561,4 +562,116 @@ mod tests {
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assert_eq!(psbt.inputs[0].unknown, unknown)
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assert_eq!(psbt.inputs[0].unknown, unknown)
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}
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}
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}
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}
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#[test]
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fn serialize_and_deserialize_preimage_psbt(){
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// create a sha preimage map
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let mut sha256_preimages = BTreeMap::new();
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sha256_preimages.insert(sha256::Hash::hash(&[1u8, 2u8]), vec![1u8, 2u8]);
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sha256_preimages.insert(sha256::Hash::hash(&[1u8]), vec![1u8]);
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// same for hash160
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let mut hash160_preimages = BTreeMap::new();
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hash160_preimages.insert(hash160::Hash::hash(&[1u8, 2u8]), vec![1u8, 2u8]);
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hash160_preimages.insert(hash160::Hash::hash(&[1u8]), vec![1u8]);
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// same vector as valid_vector_1 from BIPs with added
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let mut unserialized = PartiallySignedTransaction {
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global: Global {
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unsigned_tx: Transaction {
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version: 2,
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lock_time: 1257139,
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input: vec![TxIn {
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previous_output: OutPoint {
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txid: Txid::from_hex(
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"f61b1742ca13176464adb3cb66050c00787bb3a4eead37e985f2df1e37718126",
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).unwrap(),
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vout: 0,
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},
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script_sig: Script::new(),
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sequence: 4294967294,
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witness: vec![],
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}],
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output: vec![
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TxOut {
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value: 99999699,
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script_pubkey: hex_script!("76a914d0c59903c5bac2868760e90fd521a4665aa7652088ac"),
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},
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TxOut {
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value: 100000000,
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script_pubkey: hex_script!("a9143545e6e33b832c47050f24d3eeb93c9c03948bc787"),
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},
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],
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},
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unknown: BTreeMap::new(),
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},
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inputs: vec![Input {
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non_witness_utxo: Some(Transaction {
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version: 1,
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lock_time: 0,
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input: vec![TxIn {
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previous_output: OutPoint {
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txid: Txid::from_hex(
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"e567952fb6cc33857f392efa3a46c995a28f69cca4bb1b37e0204dab1ec7a389",
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).unwrap(),
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vout: 1,
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},
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script_sig: hex_script!("160014be18d152a9b012039daf3da7de4f53349eecb985"),
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sequence: 4294967295,
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witness: vec![
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Vec::from_hex("304402202712be22e0270f394f568311dc7ca9a68970b8025fdd3b240229f07f8a5f3a240220018b38d7dcd314e734c9276bd6fb40f673325bc4baa144c800d2f2f02db2765c01").unwrap(),
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Vec::from_hex("03d2e15674941bad4a996372cb87e1856d3652606d98562fe39c5e9e7e413f2105").unwrap(),
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],
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},
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TxIn {
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previous_output: OutPoint {
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txid: Txid::from_hex(
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"b490486aec3ae671012dddb2bb08466bef37720a533a894814ff1da743aaf886",
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).unwrap(),
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vout: 1,
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},
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script_sig: hex_script!("160014fe3e9ef1a745e974d902c4355943abcb34bd5353"),
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sequence: 4294967295,
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witness: vec![
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Vec::from_hex("3045022100d12b852d85dcd961d2f5f4ab660654df6eedcc794c0c33ce5cc309ffb5fce58d022067338a8e0e1725c197fb1a88af59f51e44e4255b20167c8684031c05d1f2592a01").unwrap(),
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Vec::from_hex("0223b72beef0965d10be0778efecd61fcac6f79a4ea169393380734464f84f2ab3").unwrap(),
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],
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}],
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output: vec![
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TxOut {
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value: 200000000,
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script_pubkey: hex_script!("76a91485cff1097fd9e008bb34af709c62197b38978a4888ac"),
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},
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TxOut {
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value: 190303501938,
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script_pubkey: hex_script!("a914339725ba21efd62ac753a9bcd067d6c7a6a39d0587"),
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},
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],
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}),
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..Default::default()
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},],
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outputs: vec![
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Output {
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..Default::default()
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},
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Output {
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..Default::default()
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},
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],
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};
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unserialized.inputs[0].hash160_preimages = hash160_preimages;
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unserialized.inputs[0].sha256_preimages = sha256_preimages;
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let rtt : PartiallySignedTransaction = hex_psbt!(&serialize_hex(&unserialized)).unwrap();
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assert_eq!(rtt, unserialized);
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// Now add an ripemd160 with incorrect preimage
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let mut ripemd160_preimages = BTreeMap::new();
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ripemd160_preimages.insert(ripemd160::Hash::hash(&[17u8]), vec![18u8]);
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unserialized.inputs[0].ripemd_preimages = ripemd160_preimages;
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// Now the roundtrip should fail as the preimage is incorrect.
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let rtt : Result<PartiallySignedTransaction, _> = hex_psbt!(&serialize_hex(&unserialized));
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assert!(rtt.is_err());
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}
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}
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}
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