Merge rust-bitcoin/rust-bitcoin#1065: Upgrade `bitcoin_hashes` dependency
1e46eeaa88
Upgrade to bitcoin_hashes v0.11.0 (Tobin C. Harding) Pull request description: We just released a new version of `bitcoin_hashes`, upgrade the dependency to v0.11.0 ACKs for top commit: apoelstra: ACK1e46eeaa88
Kixunil: ACK1e46eeaa88
Tree-SHA512: 32173349c280c255681ebf15a1aa98a28b7016bb813ca907ac55a9797d9d17e1da344e2d8e74c02c2c80d2e6873a03f522c2d55b289b65d7ac55f402b19d689b
This commit is contained in:
commit
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@ -35,7 +35,7 @@ rustdoc-args = ["--cfg", "docsrs"]
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[dependencies]
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bech32 = { version = "0.8.1", default-features = false }
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bitcoin_hashes = { version = "0.10.0", default-features = false }
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bitcoin_hashes = { version = "0.11.0", default-features = false }
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secp256k1 = { version = "0.23.0", default-features = false }
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core2 = { version = "0.3.0", optional = true, default-features = false }
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@ -254,7 +254,7 @@ impl Block {
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let hashes = self.txdata.iter().enumerate().map(|(i, t)| {
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if i == 0 {
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// Replace the first hash with zeroes.
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Wtxid::default().as_hash()
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Wtxid::all_zeros().as_hash()
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} else {
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t.wtxid().as_hash()
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}
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@ -13,7 +13,7 @@ use crate::prelude::*;
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use core::default::Default;
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use crate::hashes::hex::{self, HexIterator};
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use crate::hashes::sha256d;
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use crate::hashes::{Hash, sha256d};
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use crate::blockdata::opcodes;
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use crate::blockdata::script;
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use crate::blockdata::transaction::{OutPoint, Transaction, TxOut, TxIn};
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@ -114,7 +114,7 @@ pub fn genesis_block(network: Network) -> Block {
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Block {
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header: BlockHeader {
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Hash::all_zeros(),
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merkle_root,
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time: 1231006505,
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bits: 0x1d00ffff,
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@ -127,7 +127,7 @@ pub fn genesis_block(network: Network) -> Block {
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Block {
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header: BlockHeader {
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Hash::all_zeros(),
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merkle_root,
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time: 1296688602,
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bits: 0x1d00ffff,
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@ -140,7 +140,7 @@ pub fn genesis_block(network: Network) -> Block {
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Block {
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header: BlockHeader {
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Hash::all_zeros(),
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merkle_root,
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time: 1598918400,
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bits: 0x1e0377ae,
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@ -153,7 +153,7 @@ pub fn genesis_block(network: Network) -> Block {
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Block {
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header: BlockHeader {
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version: 1,
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prev_blockhash: Default::default(),
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prev_blockhash: Hash::all_zeros(),
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merkle_root,
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time: 1296688602,
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bits: 0x207fffff,
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@ -194,7 +194,6 @@ impl ChainHash {
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#[cfg(test)]
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mod test {
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use core::default::Default;
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use super::*;
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use crate::hashes::hex::{ToHex, FromHex};
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use crate::network::constants::Network;
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@ -206,7 +205,7 @@ mod test {
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assert_eq!(gen.version, 1);
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assert_eq!(gen.input.len(), 1);
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assert_eq!(gen.input[0].previous_output.txid, Default::default());
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assert_eq!(gen.input[0].previous_output.txid, Hash::all_zeros());
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assert_eq!(gen.input[0].previous_output.vout, 0xFFFFFFFF);
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assert_eq!(serialize(&gen.input[0].script_sig),
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Vec::from_hex("4d04ffff001d0104455468652054696d65732030332f4a616e2f32303039204368616e63656c6c6f72206f6e206272696e6b206f66207365636f6e64206261696c6f757420666f722062616e6b73").unwrap());
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@ -226,7 +225,7 @@ mod test {
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let gen = genesis_block(Network::Bitcoin);
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assert_eq!(gen.header.version, 1);
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assert_eq!(gen.header.prev_blockhash, Default::default());
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assert_eq!(gen.header.prev_blockhash, Hash::all_zeros());
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assert_eq!(gen.header.merkle_root.to_hex(), "4a5e1e4baab89f3a32518a88c31bc87f618f76673e2cc77ab2127b7afdeda33b");
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assert_eq!(gen.header.time, 1231006505);
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@ -239,7 +238,7 @@ mod test {
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fn testnet_genesis_full_block() {
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let gen = genesis_block(Network::Testnet);
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assert_eq!(gen.header.version, 1);
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assert_eq!(gen.header.prev_blockhash, Default::default());
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assert_eq!(gen.header.prev_blockhash, Hash::all_zeros());
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assert_eq!(gen.header.merkle_root.to_hex(), "4a5e1e4baab89f3a32518a88c31bc87f618f76673e2cc77ab2127b7afdeda33b");
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assert_eq!(gen.header.time, 1296688602);
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assert_eq!(gen.header.bits, 0x1d00ffff);
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@ -251,7 +250,7 @@ mod test {
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fn signet_genesis_full_block() {
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let gen = genesis_block(Network::Signet);
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assert_eq!(gen.header.version, 1);
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assert_eq!(gen.header.prev_blockhash, Default::default());
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assert_eq!(gen.header.prev_blockhash, Hash::all_zeros());
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assert_eq!(gen.header.merkle_root.to_hex(), "4a5e1e4baab89f3a32518a88c31bc87f618f76673e2cc77ab2127b7afdeda33b");
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assert_eq!(gen.header.time, 1598918400);
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assert_eq!(gen.header.bits, 0x1e0377ae);
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@ -262,7 +261,7 @@ mod test {
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// The *_chain_hash tests are sanity/regression tests, they verify that the const byte array
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// representing the genesis block is the same as that created by hashing the genesis block.
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fn chain_hash_and_genesis_block(network: Network) {
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use hashes::{sha256, Hash};
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use crate::hashes::sha256;
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// The genesis block hash is a double-sha256 and it is displayed backwards.
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let genesis_hash = genesis_block(network).block_hash();
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@ -60,7 +60,7 @@ impl OutPoint {
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#[inline]
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pub fn null() -> OutPoint {
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OutPoint {
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txid: Default::default(),
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txid: Hash::all_zeros(),
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vout: u32::max_value(),
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}
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}
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@ -9,7 +9,7 @@
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//! hash).
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//!
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use crate::hashes::{Hash, sha256, sha256d, hash160, hash_newtype};
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use bitcoin_hashes::{sha256, sha256d, hash160, hash_newtype};
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macro_rules! impl_hashencode {
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($hashtype:ident) => {
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@ -11,7 +11,7 @@ use crate::prelude::*;
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use crate::io;
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use crate::hashes::sha256d;
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use crate::hashes::{Hash as _, sha256d};
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use crate::network::constants;
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use crate::consensus::encode::{self, Decodable, Encodable};
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@ -50,7 +50,7 @@ impl Encodable for Inventory {
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}
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}
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Ok(match *self {
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Inventory::Error => encode_inv!(0, sha256d::Hash::default()),
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Inventory::Error => encode_inv!(0, sha256d::Hash::all_zeros()),
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Inventory::Transaction(ref t) => encode_inv!(1, t),
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Inventory::Block(ref b) => encode_inv!(2, b),
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Inventory::WTx(w) => encode_inv!(5, w),
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@ -139,9 +139,8 @@ mod tests {
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use super::{Vec, GetHeadersMessage, GetBlocksMessage};
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use crate::hashes::hex::FromHex;
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use crate::hashes::Hash;
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use crate::consensus::encode::{deserialize, serialize};
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use core::default::Default;
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#[test]
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fn getblocks_message_test() {
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@ -154,7 +153,7 @@ mod tests {
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assert_eq!(real_decode.version, 70002);
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assert_eq!(real_decode.locator_hashes.len(), 1);
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assert_eq!(serialize(&real_decode.locator_hashes[0]), genhash);
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assert_eq!(real_decode.stop_hash, Default::default());
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assert_eq!(real_decode.stop_hash, Hash::all_zeros());
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assert_eq!(serialize(&real_decode), from_sat);
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}
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@ -170,7 +169,7 @@ mod tests {
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assert_eq!(real_decode.version, 70002);
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assert_eq!(real_decode.locator_hashes.len(), 1);
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assert_eq!(serialize(&real_decode.locator_hashes[0]), genhash);
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assert_eq!(real_decode.stop_hash, Default::default());
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assert_eq!(real_decode.stop_hash, Hash::all_zeros());
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assert_eq!(serialize(&real_decode), from_sat);
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}
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@ -1339,8 +1339,8 @@ mod tests {
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#[test]
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fn test_valid_networks() {
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let legacy_payload = &[
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Payload::PubkeyHash(PubkeyHash::default()),
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Payload::ScriptHash(ScriptHash::default())
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Payload::PubkeyHash(PubkeyHash::all_zeros()),
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Payload::ScriptHash(ScriptHash::all_zeros())
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];
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let segwit_payload = (0..=16).map(|version| {
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Payload::WitnessProgram {
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@ -114,7 +114,7 @@ mod tests {
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let hashes_iter = block.txdata.iter().map(|obj| obj.txid().as_hash());
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let mut hashes_array: [sha256d::Hash; 15] = [Default::default(); 15];
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let mut hashes_array: [sha256d::Hash; 15] = [Hash::all_zeros(); 15];
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for (i, hash) in hashes_iter.clone().enumerate() {
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hashes_array[i] = hash;
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}
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@ -584,7 +584,7 @@ mod tests {
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// Check that it has the same merkle root as the original, and a valid one
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assert_eq!(merkle_root_1, merkle_root_2);
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assert_ne!(merkle_root_2, TxMerkleNode::default());
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assert_ne!(merkle_root_2, TxMerkleNode::all_zeros());
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// check that it contains the matched transactions (in the same order!)
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assert_eq!(match_txid1, match_txid2);
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@ -382,7 +382,7 @@ mod tests {
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fn taptree_hidden() {
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let mut builder = compose_taproot_builder(0x51, &[2, 2, 2]);
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builder = builder.add_leaf_with_ver(3, Script::from_hex("b9").unwrap(), LeafVersion::from_consensus(0xC2).unwrap()).unwrap();
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builder = builder.add_hidden_node(3, sha256::Hash::default()).unwrap();
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builder = builder.add_hidden_node(3, sha256::Hash::all_zeros()).unwrap();
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assert!(TapTree::try_from(builder).is_err());
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}
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@ -567,7 +567,7 @@ impl<R: Deref<Target = Transaction>> SighashCache<R> {
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value: u64,
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sighash_type: EcdsaSighashType,
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) -> Result<(), Error> {
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let zero_hash = sha256d::Hash::default();
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let zero_hash = sha256d::Hash::all_zeros();
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let (sighash, anyone_can_pay) = sighash_type.split_anyonecanpay_flag();
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