util: add `bip143` module to create BIP143 signature hashes
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@ -1,7 +1,7 @@
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[package]
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name = "bitcoin"
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version = "0.10.6"
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version = "0.10.7"
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authors = ["Andrew Poelstra <apoelstra@wpsoftware.net>"]
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license = "CC0-1.0"
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homepage = "https://github.com/apoelstra/rust-bitcoin/"
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@ -619,8 +619,6 @@ mod test {
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assert!(read_scriptint(&build_scriptint(-(1 << 31))).is_err());
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}
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macro_rules! hex_script (($s:expr) => (Script::from($s.from_hex().unwrap())));
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#[test]
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fn provably_unspendable_test() {
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// p2pk
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@ -285,3 +285,9 @@ macro_rules! display_from_debug {
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}
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}
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#[cfg(test)]
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macro_rules! hex_script (($s:expr) => (Script::from($s.from_hex().unwrap())));
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#[cfg(test)]
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macro_rules! hex_hash (($s:expr) => (Sha256dHash::from(&$s.from_hex().unwrap()[..])));
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@ -0,0 +1,149 @@
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// Rust Bitcoin Library
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// Written in 2018 by
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// Andrew Poelstra <apoelstra@wpsoftware.net>
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// To the extent possible under law, the author(s) have dedicated all
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// copyright and related and neighboring rights to this software to
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// the public domain worldwide. This software is distributed without
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// any warranty.
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//
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// You should have received a copy of the CC0 Public Domain Dedication
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// along with this software.
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// If not, see <http://creativecommons.org/publicdomain/zero/1.0/>.
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//
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//! # BIP143 Implementation
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//!
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//! Implementation of BIP143 Segwit-style signatures. Should be sufficient
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//! to create signatures for Segwit transactions (which should be pushed into
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//! the appropriate place in the `Transaction::witness` array) or bcash
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//! signatures, which are placed in the scriptSig.
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//!
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use blockdata::script::Script;
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use blockdata::transaction::Transaction;
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use network::encodable::ConsensusEncodable;
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use util::hash::{Sha256dHash, Sha256dEncoder};
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/// Parts of a sighash which are common across inputs or signatures, and which are
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/// sufficient (in conjunction with a private key) to sign the transaction
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#[derive(Clone, PartialEq, Eq, Debug)]
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pub struct SighashComponents {
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/// Hash of all the previous outputs
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pub hash_prevouts: Sha256dHash,
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/// Hash of all the input sequence nos
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pub hash_sequence: Sha256dHash,
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/// Hash of all the outputs in this transaction
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pub hash_outputs: Sha256dHash,
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}
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impl SighashComponents {
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/// Compute the sighash components from an unsigned transaction and auxiliary
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/// information about its inputs
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pub fn new(tx: &Transaction) -> SighashComponents {
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let hash_prevouts = {
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let mut enc = Sha256dEncoder::new();
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for txin in &tx.input {
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txin.prev_hash.consensus_encode(&mut enc).unwrap();
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txin.prev_index.consensus_encode(&mut enc).unwrap();
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}
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enc.into_hash()
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};
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let hash_sequence = {
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let mut enc = Sha256dEncoder::new();
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for txin in &tx.input {
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txin.sequence.consensus_encode(&mut enc).unwrap();
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}
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enc.into_hash()
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};
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let hash_outputs = {
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let mut enc = Sha256dEncoder::new();
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for txout in &tx.output {
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txout.consensus_encode(&mut enc).unwrap();
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}
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enc.into_hash()
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};
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SighashComponents {
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hash_prevouts: hash_prevouts,
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hash_sequence: hash_sequence,
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hash_outputs: hash_outputs,
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}
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}
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/// Compute the BIP143 sighash for a `SIGHASH_ALL` signature for the given
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/// input index
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pub fn sighash_all(&self, tx: &Transaction, index: usize, witness_script: &Script, value: u64) -> Sha256dHash {
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let mut enc = Sha256dEncoder::new();
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tx.version.consensus_encode(&mut enc).unwrap();
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self.hash_prevouts.consensus_encode(&mut enc).unwrap();
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self.hash_sequence.consensus_encode(&mut enc).unwrap();
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tx.input[index]
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.prev_hash
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.consensus_encode(&mut enc)
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.unwrap();
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tx.input[index]
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.prev_index
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.consensus_encode(&mut enc)
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.unwrap();
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witness_script.consensus_encode(&mut enc).unwrap();
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value.consensus_encode(&mut enc).unwrap();
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tx.input[index].sequence.consensus_encode(&mut enc).unwrap();
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self.hash_outputs.consensus_encode(&mut enc).unwrap();
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tx.lock_time.consensus_encode(&mut enc).unwrap();
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1u32.consensus_encode(&mut enc).unwrap(); // hashtype
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enc.into_hash()
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}
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}
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#[cfg(test)]
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mod tests {
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use serialize::hex::FromHex;
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use network::serialize::deserialize;
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use util::misc::hex_bytes;
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use super::*;
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#[test]
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fn bip143_sig() {
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let tx = deserialize::<Transaction>(
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&hex_bytes(
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"010000000136641869ca081e70f394c6948e8af409e18b619df2ed74aa106c1ca29787b96e0100000000\
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ffffffff0200e9a435000000001976a914389ffce9cd9ae88dcc0631e88a821ffdbe9bfe2688acc0832f\
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05000000001976a9147480a33f950689af511e6e84c138dbbd3c3ee41588ac00000000").unwrap()[..],
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).unwrap();
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let witness_script = hex_script!(
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"56210307b8ae49ac90a048e9b53357a2354b3334e9c8bee813ecb98e99a7e07e8c3ba32103b28f0c28\
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bfab54554ae8c658ac5c3e0ce6e79ad336331f78c428dd43eea8449b21034b8113d703413d57761b8b\
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9781957b8c0ac1dfe69f492580ca4195f50376ba4a21033400f6afecb833092a9a21cfdf1ed1376e58\
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c5d1f47de74683123987e967a8f42103a6d48b1131e94ba04d9737d61acdaa1322008af9602b3b1486\
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2c07a1789aac162102d8b661b0b3302ee2f162b09e07a55ad5dfbe673a9f01d9f0c19617681024306b\
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56ae"
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);
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let value = 987654321;
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let comp = SighashComponents::new(&tx);
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assert_eq!(
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comp,
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SighashComponents {
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hash_prevouts: hex_hash!(
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"74afdc312af5183c4198a40ca3c1a275b485496dd3929bca388c4b5e31f7aaa0"
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),
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hash_sequence: hex_hash!(
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"3bb13029ce7b1f559ef5e747fcac439f1455a2ec7c5f09b72290795e70665044"
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),
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hash_outputs: hex_hash!(
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"bc4d309071414bed932f98832b27b4d76dad7e6c1346f487a8fdbb8eb90307cc"
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),
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}
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);
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assert_eq!(
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comp.sighash_all(&tx, 0, &witness_script, value),
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hex_hash!("185c0be5263dce5b4bb50a047973c1b6272bfbd0103a89444597dc40b248ee7c")
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);
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}
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}
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@ -19,6 +19,7 @@
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pub mod address;
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pub mod base58;
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pub mod bip32;
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pub mod bip143;
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pub mod contracthash;
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pub mod decimal;
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pub mod hash;
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