use crate::B256;
use alloc::{boxed::Box, collections::TryReserveError, vec::Vec};
use cfg_if::cfg_if;
use core::{fmt, mem::MaybeUninit};
mod units;
pub use units::{
format_ether, format_units, parse_ether, parse_units, ParseUnits, Unit, UnitsError,
};
cfg_if! {
if #[cfg(all(feature = "asm-keccak", not(miri)))] {
use keccak_asm::Digest as _;
} else {
use tiny_keccak::Hasher as _;
}
}
#[doc(hidden)]
#[deprecated(since = "0.5.0", note = "use `Unit::ETHER.wei()` instead")]
pub const WEI_IN_ETHER: crate::U256 = Unit::ETHER.wei_const();
#[doc(hidden)]
#[deprecated(since = "0.5.0", note = "use `Unit` instead")]
pub type Units = Unit;
pub const EIP191_PREFIX: &str = "\x19Ethereum Signed Message:\n";
#[macro_export]
macro_rules! try_vec {
() => {
$crate::private::Vec::new()
};
($elem:expr; $n:expr) => {
$crate::utils::vec_try_from_elem($elem, $n)
};
($($x:expr),+ $(,)?) => {
match $crate::utils::box_try_new([$($x),+]) {
::core::result::Result::Ok(x) => ::core::result::Result::Ok(<[_]>::into_vec(x)),
::core::result::Result::Err(e) => ::core::result::Result::Err(e),
}
};
}
#[inline]
pub fn box_try_new<T>(value: T) -> Result<Box<T>, TryReserveError> {
let mut boxed = box_try_new_uninit::<T>()?;
unsafe {
boxed.as_mut_ptr().write(value);
let ptr = Box::into_raw(boxed);
Ok(Box::from_raw(ptr.cast()))
}
}
#[inline]
pub fn box_try_new_uninit<T>() -> Result<Box<MaybeUninit<T>>, TryReserveError> {
let mut vec = Vec::<MaybeUninit<T>>::new();
vec.try_reserve_exact(1)?;
vec.shrink_to(1);
let ptr = vec.as_mut_ptr();
core::mem::forget(vec);
Ok(unsafe { Box::from_raw(ptr) })
}
pub fn try_collect_vec<I: Iterator<Item = T>, T>(iter: I) -> Result<Vec<T>, TryReserveError> {
let mut vec = Vec::new();
if let Some(size_hint) = iter.size_hint().1 {
vec.try_reserve(size_hint.max(4))?;
}
vec.extend(iter);
Ok(vec)
}
#[inline]
pub fn vec_try_with_capacity<T>(capacity: usize) -> Result<Vec<T>, TryReserveError> {
let mut vec = Vec::new();
vec.try_reserve(capacity).map(|()| vec)
}
#[doc(hidden)]
pub fn vec_try_from_elem<T: Clone>(elem: T, n: usize) -> Result<Vec<T>, TryReserveError> {
let mut vec = Vec::new();
vec.try_reserve(n)?;
vec.resize(n, elem);
Ok(vec)
}
pub fn eip191_hash_message<T: AsRef<[u8]>>(message: T) -> B256 {
keccak256(eip191_message(message))
}
pub fn eip191_message<T: AsRef<[u8]>>(message: T) -> Vec<u8> {
fn eip191_message(message: &[u8]) -> Vec<u8> {
let len = message.len();
let mut len_string_buffer = itoa::Buffer::new();
let len_string = len_string_buffer.format(len);
let mut eth_message = Vec::with_capacity(EIP191_PREFIX.len() + len_string.len() + len);
eth_message.extend_from_slice(EIP191_PREFIX.as_bytes());
eth_message.extend_from_slice(len_string.as_bytes());
eth_message.extend_from_slice(message);
eth_message
}
eip191_message(message.as_ref())
}
pub fn keccak256<T: AsRef<[u8]>>(bytes: T) -> B256 {
fn keccak256(bytes: &[u8]) -> B256 {
let mut output = MaybeUninit::<B256>::uninit();
cfg_if! {
if #[cfg(all(feature = "native-keccak", not(feature = "tiny-keccak"), not(miri)))] {
#[link(wasm_import_module = "vm_hooks")]
extern "C" {
fn native_keccak256(bytes: *const u8, len: usize, output: *mut u8);
}
unsafe { native_keccak256(bytes.as_ptr(), bytes.len(), output.as_mut_ptr().cast::<u8>()) };
} else {
let mut hasher = Keccak256::new();
hasher.update(bytes);
unsafe { hasher.finalize_into_raw(output.as_mut_ptr().cast()) };
}
}
unsafe { output.assume_init() }
}
keccak256(bytes.as_ref())
}
#[derive(Clone)]
pub struct Keccak256 {
#[cfg(all(feature = "asm-keccak", not(miri)))]
hasher: keccak_asm::Keccak256,
#[cfg(not(all(feature = "asm-keccak", not(miri))))]
hasher: tiny_keccak::Keccak,
}
impl Default for Keccak256 {
#[inline]
fn default() -> Self {
Self::new()
}
}
impl fmt::Debug for Keccak256 {
#[inline]
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("Keccak256").finish_non_exhaustive()
}
}
impl Keccak256 {
#[inline]
pub fn new() -> Self {
cfg_if! {
if #[cfg(all(feature = "asm-keccak", not(miri)))] {
let hasher = keccak_asm::Keccak256::new();
} else {
let hasher = tiny_keccak::Keccak::v256();
}
}
Self { hasher }
}
#[inline]
pub fn update(&mut self, bytes: impl AsRef<[u8]>) {
self.hasher.update(bytes.as_ref());
}
#[inline]
pub fn finalize(self) -> B256 {
let mut output = MaybeUninit::<B256>::uninit();
unsafe { self.finalize_into_raw(output.as_mut_ptr().cast()) };
unsafe { output.assume_init() }
}
#[inline]
#[track_caller]
pub fn finalize_into(self, output: &mut [u8]) {
self.finalize_into_array(output.try_into().unwrap())
}
#[inline]
pub fn finalize_into_array(self, output: &mut [u8; 32]) {
cfg_if! {
if #[cfg(all(feature = "asm-keccak", not(miri)))] {
self.hasher.finalize_into(output.into());
} else {
self.hasher.finalize(output);
}
}
}
#[inline]
pub unsafe fn finalize_into_raw(self, output: *mut u8) {
self.finalize_into_array(&mut *output.cast::<[u8; 32]>())
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_hash_message() {
let msg = "Hello World";
let eip191_msg = eip191_message(msg);
let hash = keccak256(&eip191_msg);
assert_eq!(
eip191_msg,
[EIP191_PREFIX.as_bytes(), msg.len().to_string().as_bytes(), msg.as_bytes()].concat()
);
assert_eq!(hash, b256!("a1de988600a42c4b4ab089b619297c17d53cffae5d5120d82d8a92d0bb3b78f2"));
assert_eq!(eip191_hash_message(msg), hash);
}
#[test]
fn keccak256_hasher() {
let expected = b256!("47173285a8d7341e5e972fc677286384f802f8ef42a5ec5f03bbfa254cb01fad");
assert_eq!(keccak256("hello world"), expected);
let mut hasher = Keccak256::new();
hasher.update(b"hello");
hasher.update(b" world");
assert_eq!(hasher.clone().finalize(), expected);
let mut hash = [0u8; 32];
hasher.clone().finalize_into(&mut hash);
assert_eq!(hash, expected);
let mut hash = [0u8; 32];
hasher.clone().finalize_into_array(&mut hash);
assert_eq!(hash, expected);
let mut hash = [0u8; 32];
unsafe { hasher.finalize_into_raw(hash.as_mut_ptr()) };
assert_eq!(hash, expected);
}
#[test]
fn test_try_boxing() {
let x = Box::new(42);
let y = box_try_new(42).unwrap();
assert_eq!(x, y);
let x = vec![1; 3];
let y = try_vec![1; 3].unwrap();
assert_eq!(x, y);
let x = vec![1, 2, 3];
let y = try_vec![1, 2, 3].unwrap();
assert_eq!(x, y);
}
}