204 lines
6.6 KiB
Rust
204 lines
6.6 KiB
Rust
// Written in 2014 by Andrew Poelstra <apoelstra@wpsoftware.net>
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// SPDX-License-Identifier: CC0-1.0
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//! # Rust Bitcoin Library
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//!
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//! This is a library that supports the Bitcoin network protocol and associated
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//! primitives. It is designed for Rust programs built to work with the Bitcoin
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//! network.
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//!
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//! It is also written entirely in Rust to illustrate the benefits of strong type
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//! safety, including ownership and lifetime, for financial and/or cryptographic
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//! software.
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//!
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//! See README.md for detailed documentation about development and supported
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//! environments.
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//!
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//! ## Available feature flags
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//!
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//! * `std` - the usual dependency on `std` (default).
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//! * `secp-recovery` - enables calculating public key from a signature and message.
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//! * `base64` - (dependency), enables encoding of PSBTs and message signatures.
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//! * `rand` - (dependency), makes it more convenient to generate random values.
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//! * `serde` - (dependency), implements `serde`-based serialization and
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//! deserialization.
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//! * `secp-lowmemory` - optimizations for low-memory devices.
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//! * `no-std` - enables additional features required for this crate to be usable
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//! without std. Does **not** disable `std`. Depends on `core2`.
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//! * `bitcoinconsensus-std` - enables `std` in `bitcoinconsensus` and communicates it
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//! to this crate so it knows how to implement
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//! `std::error::Error`. At this time there's a hack to
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//! achieve the same without this feature but it could
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//! happen the implementations diverge one day.
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#![cfg_attr(all(not(feature = "std"), not(test)), no_std)]
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// Experimental features we need.
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#![cfg_attr(bench, feature(test))]
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#![cfg_attr(docsrs, feature(doc_auto_cfg))]
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// Coding conventions
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#![warn(missing_docs)]
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// Instead of littering the codebase for non-fuzzing code just globally allow.
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#![cfg_attr(fuzzing, allow(dead_code, unused_imports))]
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#[cfg(not(any(feature = "std", feature = "no-std")))]
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compile_error!("at least one of the `std` or `no-std` features must be enabled");
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// Disable 16-bit support at least for now as we can't guarantee it yet.
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#[cfg(target_pointer_width = "16")]
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compile_error!(
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"rust-bitcoin currently only supports architectures with pointers wider than 16 bits, let us
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know if you want 16-bit support. Note that we do NOT guarantee that we will implement it!"
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);
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#[cfg(bench)]
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extern crate test;
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#[macro_use]
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extern crate alloc;
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#[cfg(feature = "base64")]
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pub extern crate base64;
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pub extern crate bech32;
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#[cfg(feature = "bitcoinconsensus")]
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pub extern crate bitcoinconsensus;
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pub extern crate hashes;
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pub extern crate secp256k1;
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#[cfg(feature = "serde")]
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#[macro_use]
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extern crate actual_serde as serde;
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#[cfg(test)]
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#[macro_use]
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mod test_macros;
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mod internal_macros;
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mod parse;
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#[cfg(feature = "serde")]
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mod serde_utils;
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#[macro_use]
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pub mod network;
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pub mod address;
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pub mod amount;
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pub mod base58;
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pub mod bip152;
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pub mod bip158;
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pub mod bip32;
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pub mod blockdata;
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pub mod consensus;
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// Private until we either make this a crate or flatten it - still to be decided.
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pub(crate) mod crypto;
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pub mod error;
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pub mod hash_types;
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pub mod merkle_tree;
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pub mod policy;
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pub mod pow;
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pub mod psbt;
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pub mod sign_message;
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pub mod string;
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pub mod taproot;
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pub mod util;
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// May depend on crate features and we don't want to bother with it
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#[allow(unused)]
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#[cfg(feature = "std")]
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use std::error::Error as StdError;
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#[cfg(feature = "std")]
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use std::io;
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#[allow(unused)]
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#[cfg(not(feature = "std"))]
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use core2::error::Error as StdError;
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#[cfg(not(feature = "std"))]
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use core2::io;
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pub use crate::address::{Address, AddressType};
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pub use crate::amount::{Amount, Denomination, SignedAmount};
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pub use crate::blockdata::block::{self, Block};
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pub use crate::blockdata::fee_rate::FeeRate;
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pub use crate::blockdata::locktime::{self, absolute, relative};
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pub use crate::blockdata::script::{self, Script, ScriptBuf};
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pub use crate::blockdata::transaction::{self, OutPoint, Sequence, Transaction, TxIn, TxOut};
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pub use crate::blockdata::weight::Weight;
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pub use crate::blockdata::witness::{self, Witness};
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pub use crate::blockdata::{constants, opcodes};
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pub use crate::consensus::encode::VarInt;
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pub use crate::crypto::key::{self, PrivateKey, PublicKey};
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pub use crate::crypto::{ecdsa, sighash};
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pub use crate::error::Error;
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pub use crate::hash_types::{
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BlockHash, PubkeyHash, ScriptHash, Txid, WPubkeyHash, WScriptHash, Wtxid,
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};
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pub use crate::merkle_tree::MerkleBlock;
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pub use crate::network::constants::Network;
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pub use crate::pow::{CompactTarget, Target, Work};
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#[cfg(not(feature = "std"))]
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mod io_extras {
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/// A writer which will move data into the void.
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pub struct Sink {
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_priv: (),
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}
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/// Creates an instance of a writer which will successfully consume all data.
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pub const fn sink() -> Sink { Sink { _priv: () } }
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impl core2::io::Write for Sink {
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#[inline]
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fn write(&mut self, buf: &[u8]) -> core2::io::Result<usize> { Ok(buf.len()) }
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#[inline]
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fn flush(&mut self) -> core2::io::Result<()> { Ok(()) }
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}
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}
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#[rustfmt::skip]
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mod prelude {
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#[cfg(all(not(feature = "std"), not(test)))]
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pub use alloc::{string::{String, ToString}, vec::Vec, boxed::Box, borrow::{Borrow, Cow, ToOwned}, slice, rc};
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#[cfg(all(not(feature = "std"), not(test), any(not(rust_v_1_60), target_has_atomic = "ptr")))]
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pub use alloc::sync;
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#[cfg(any(feature = "std", test))]
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pub use std::{string::{String, ToString}, vec::Vec, boxed::Box, borrow::{Borrow, Cow, ToOwned}, slice, rc, sync};
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#[cfg(all(not(feature = "std"), not(test)))]
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pub use alloc::collections::{BTreeMap, BTreeSet, btree_map, BinaryHeap};
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#[cfg(any(feature = "std", test))]
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pub use std::collections::{BTreeMap, BTreeSet, btree_map, BinaryHeap};
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#[cfg(feature = "std")]
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pub use std::io::sink;
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#[cfg(not(feature = "std"))]
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pub use crate::io_extras::sink;
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pub use internals::hex::display::DisplayHex;
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}
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#[cfg(bench)]
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use bench::EmptyWrite;
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#[cfg(bench)]
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mod bench {
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use core::fmt::Arguments;
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use crate::io::{IoSlice, Result, Write};
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#[derive(Default, Clone, Debug, PartialEq, Eq)]
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pub struct EmptyWrite;
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impl Write for EmptyWrite {
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fn write(&mut self, buf: &[u8]) -> Result<usize> { Ok(buf.len()) }
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fn write_vectored(&mut self, bufs: &[IoSlice]) -> Result<usize> {
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Ok(bufs.iter().map(|s| s.len()).sum())
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}
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fn flush(&mut self) -> Result<()> { Ok(()) }
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fn write_all(&mut self, _: &[u8]) -> Result<()> { Ok(()) }
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fn write_fmt(&mut self, _: Arguments) -> Result<()> { Ok(()) }
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}
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}
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