Implement Witness commitment check for Block. Remove MerkleRoot implementations for types implementing BitcoinHash as
it is misleading. MerkleRoot is defined instead for a Block.
This commit is contained in:
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51aba8bb21
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d8c93d9935
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@ -24,12 +24,13 @@ use bitcoin_hashes::{sha256d, Hash};
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use util;
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use util;
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use util::Error::{SpvBadTarget, SpvBadProofOfWork};
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use util::Error::{SpvBadTarget, SpvBadProofOfWork};
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use util::hash::BitcoinHash;
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use util::hash::{BitcoinHash, MerkleRoot, bitcoin_merkle_root};
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use util::uint::Uint256;
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use util::uint::Uint256;
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use consensus::encode::VarInt;
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use consensus::encode::{VarInt, Encodable};
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use network::constants::Network;
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use network::constants::Network;
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use blockdata::transaction::Transaction;
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use blockdata::transaction::Transaction;
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use blockdata::constants::max_target;
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use blockdata::constants::max_target;
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use bitcoin_hashes::HashEngine;
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/// A block header, which contains all the block's information except
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/// A block header, which contains all the block's information except
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/// the actual transactions
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/// the actual transactions
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@ -60,6 +61,61 @@ pub struct Block {
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pub txdata: Vec<Transaction>
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pub txdata: Vec<Transaction>
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}
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}
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impl Block {
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/// check if merkle root of header matches merkle root of the transaction list
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pub fn check_merkle_root (&self) -> bool {
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self.header.merkle_root == self.merkle_root()
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}
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/// check if witness commitment in coinbase is matching the transaction list
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pub fn check_witness_commitment(&self) -> bool {
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// witness commitment is optional if there are no transactions using SegWit in the block
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if self.txdata.iter().all(|t| t.input.iter().all(|i| i.witness.is_empty())) {
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return true;
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}
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if self.txdata.len() > 0 {
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let coinbase = &self.txdata[0];
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if coinbase.is_coin_base() {
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// commitment is in the last output that starts with below magic
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if let Some(pos) = coinbase.output.iter()
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.rposition(|o| {
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o.script_pubkey.len () >= 38 &&
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o.script_pubkey[0..6] == [0x6a, 0x24, 0xaa, 0x21, 0xa9, 0xed] }) {
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let commitment = sha256d::Hash::from_slice(&coinbase.output[pos].script_pubkey.as_bytes()[6..38]).unwrap();
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// witness reserved value is in coinbase input witness
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if coinbase.input[0].witness.len() == 1 && coinbase.input[0].witness[0].len() == 32 {
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let witness_root = self.witness_root();
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return commitment == Self::compute_witness_commitment(&witness_root, coinbase.input[0].witness[0].as_slice())
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}
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}
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}
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}
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false
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}
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/// compute witness commitment for the transaction list
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pub fn compute_witness_commitment (witness_root: &sha256d::Hash, witness_reserved_value: &[u8]) -> sha256d::Hash {
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let mut encoder = sha256d::Hash::engine();
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witness_root.consensus_encode(&mut encoder).unwrap();
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encoder.input(witness_reserved_value);
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sha256d::Hash::from_engine(encoder)
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}
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/// Merkle root of transactions hashed for witness
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pub fn witness_root(&self) -> sha256d::Hash {
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let mut txhashes = vec!(sha256d::Hash::default());
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txhashes.extend(self.txdata.iter().skip(1).map(|t|t.bitcoin_hash()));
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bitcoin_merkle_root(txhashes)
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}
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}
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impl MerkleRoot for Block {
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fn merkle_root(&self) -> sha256d::Hash {
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bitcoin_merkle_root(self.txdata.iter().map(|obj| obj.txid()).collect())
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}
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}
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/// A block header with txcount attached, which is given in the `headers`
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/// A block header with txcount attached, which is given in the `headers`
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/// network message.
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/// network message.
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#[derive(PartialEq, Eq, Clone, Debug)]
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#[derive(PartialEq, Eq, Clone, Debug)]
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@ -170,6 +226,7 @@ mod tests {
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use blockdata::block::{Block, BlockHeader};
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use blockdata::block::{Block, BlockHeader};
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use consensus::encode::{deserialize, serialize};
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use consensus::encode::{deserialize, serialize};
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use util::hash::MerkleRoot;
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#[test]
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#[test]
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fn block_test() {
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fn block_test() {
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@ -187,13 +244,16 @@ mod tests {
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let real_decode = decode.unwrap();
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let real_decode = decode.unwrap();
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assert_eq!(real_decode.header.version, 1);
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assert_eq!(real_decode.header.version, 1);
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assert_eq!(serialize(&real_decode.header.prev_blockhash), prevhash);
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assert_eq!(serialize(&real_decode.header.prev_blockhash), prevhash);
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// [test] TODO: actually compute the merkle root
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assert_eq!(real_decode.header.merkle_root, real_decode.merkle_root());
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assert_eq!(serialize(&real_decode.header.merkle_root), merkle);
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assert_eq!(serialize(&real_decode.header.merkle_root), merkle);
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assert_eq!(real_decode.header.time, 1231965655);
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assert_eq!(real_decode.header.time, 1231965655);
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assert_eq!(real_decode.header.bits, 486604799);
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assert_eq!(real_decode.header.bits, 486604799);
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assert_eq!(real_decode.header.nonce, 2067413810);
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assert_eq!(real_decode.header.nonce, 2067413810);
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// [test] TODO: check the transaction data
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// [test] TODO: check the transaction data
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// should be also ok for a non-witness block as commitment is optional in that case
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assert!(real_decode.check_witness_commitment());
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assert_eq!(serialize(&real_decode), some_block);
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assert_eq!(serialize(&real_decode), some_block);
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}
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}
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@ -212,11 +272,14 @@ mod tests {
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assert_eq!(real_decode.header.version, 0x20000000); // VERSIONBITS but no bits set
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assert_eq!(real_decode.header.version, 0x20000000); // VERSIONBITS but no bits set
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assert_eq!(serialize(&real_decode.header.prev_blockhash), prevhash);
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assert_eq!(serialize(&real_decode.header.prev_blockhash), prevhash);
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assert_eq!(serialize(&real_decode.header.merkle_root), merkle);
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assert_eq!(serialize(&real_decode.header.merkle_root), merkle);
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assert_eq!(real_decode.header.merkle_root, real_decode.merkle_root());
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assert_eq!(real_decode.header.time, 1472004949);
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assert_eq!(real_decode.header.time, 1472004949);
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assert_eq!(real_decode.header.bits, 0x1a06d450);
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assert_eq!(real_decode.header.bits, 0x1a06d450);
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assert_eq!(real_decode.header.nonce, 1879759182);
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assert_eq!(real_decode.header.nonce, 1879759182);
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// [test] TODO: check the transaction data
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// [test] TODO: check the transaction data
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assert!(real_decode.check_witness_commitment());
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assert_eq!(serialize(&real_decode), segwit_block);
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assert_eq!(serialize(&real_decode), segwit_block);
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}
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}
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@ -27,7 +27,6 @@ use blockdata::transaction::{OutPoint, Transaction, TxOut, TxIn};
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use blockdata::block::{Block, BlockHeader};
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use blockdata::block::{Block, BlockHeader};
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use network::constants::Network;
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use network::constants::Network;
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use util::misc::hex_bytes;
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use util::misc::hex_bytes;
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use util::hash::MerkleRoot;
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use util::uint::Uint256;
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use util::uint::Uint256;
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/// The maximum allowable sequence number
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/// The maximum allowable sequence number
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@ -98,7 +97,7 @@ pub fn genesis_block(network: Network) -> Block {
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header: BlockHeader {
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header: BlockHeader {
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version: 1,
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Default::default(),
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merkle_root: txdata.merkle_root(),
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merkle_root: txdata[0].txid(),
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time: 1231006505,
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time: 1231006505,
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bits: 0x1d00ffff,
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bits: 0x1d00ffff,
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nonce: 2083236893
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nonce: 2083236893
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@ -112,7 +111,7 @@ pub fn genesis_block(network: Network) -> Block {
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header: BlockHeader {
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header: BlockHeader {
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version: 1,
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Default::default(),
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merkle_root: txdata.merkle_root(),
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merkle_root: txdata[0].txid(),
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time: 1296688602,
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time: 1296688602,
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bits: 0x1d00ffff,
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bits: 0x1d00ffff,
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nonce: 414098458
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nonce: 414098458
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@ -126,7 +125,7 @@ pub fn genesis_block(network: Network) -> Block {
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header: BlockHeader {
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header: BlockHeader {
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version: 1,
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Default::default(),
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merkle_root: txdata.merkle_root(),
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merkle_root: txdata[0].txid(),
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time: 1296688602,
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time: 1296688602,
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bits: 0x207fffff,
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bits: 0x207fffff,
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nonce: 2
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nonce: 2
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@ -51,18 +51,6 @@ pub fn bitcoin_merkle_root(data: Vec<sha256d::Hash>) -> sha256d::Hash {
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bitcoin_merkle_root(next)
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bitcoin_merkle_root(next)
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}
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}
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impl<'a, T: BitcoinHash> MerkleRoot for &'a [T] {
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fn merkle_root(&self) -> sha256d::Hash {
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bitcoin_merkle_root(self.iter().map(|obj| obj.bitcoin_hash()).collect())
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}
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}
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impl <T: BitcoinHash> MerkleRoot for Vec<T> {
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fn merkle_root(&self) -> sha256d::Hash {
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(&self[..]).merkle_root()
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}
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}
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/// Objects which are referred to by hash
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/// Objects which are referred to by hash
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pub trait BitcoinHash {
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pub trait BitcoinHash {
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/// Produces a Sha256dHash which can be used to refer to the object
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/// Produces a Sha256dHash which can be used to refer to the object
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