use {
super::OkId,
crate::hex_to_byte,
digest::core_api::CoreWrapper,
sha3::Digest,
std::{fmt::Display, str::FromStr},
zerocopy::{ByteEq, ByteHash, FromBytes, Immutable, IntoBytes, Unaligned},
};
#[derive(Copy, Clone, Debug, ByteEq, Immutable, IntoBytes, ByteHash, FromBytes, Unaligned)]
#[repr(C)]
pub(super) struct Sha512(pub(super) [u8; 64]);
impl From<sha3::Sha3_512> for OkId {
fn from(value: sha3::Sha3_512) -> Self {
let data = value.finalize();
let data = data.get(0..64).unwrap();
let mut buf = [0; 64];
if data.len() == 64 {
buf.copy_from_slice(data);
}
Self {
hash_type: super::BinaryType::Sha3_512,
digest: super::Digest::Sha512(Sha512(buf)),
}
}
}
impl super::IntoOkId for sha3::Sha3_512 {}
impl From<sha3::Sha3_512Core> for OkId {
fn from(value: sha3::Sha3_512Core) -> Self {
CoreWrapper::from_core(value).into()
}
}
impl Display for Sha512 {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
let buf = hex::encode(self.0);
f.write_str(&buf)?;
Ok(())
}
}
impl FromStr for Sha512 {
type Err = super::Error;
fn from_str(s: &str) -> Result<Self, Self::Err> {
let buf = hex::decode(s)?;
let mut hash: [u8; 64] = [0; 64];
hash.copy_from_slice(&buf);
Ok(Sha512(hash))
}
}
impl From<Sha512> for Vec<u64> {
fn from(value: Sha512) -> Self {
let data = value.0;
let mut buf = [0; 64];
buf.copy_from_slice(&data);
let mut out = [0; 8];
for i in 0..8 {
out[i] = u64::from_le_bytes(buf[i * 8..(i + 1) * 8].try_into().unwrap());
}
out.to_vec()
}
}
pub(crate) const fn parse_sha3_bytes(bytes: &[u8], start: usize) -> Option<crate::sha3::Sha512> {
let mut result = [0u8; 64];
let mut i = 0;
while i < 128 {
let high = match hex_to_byte(bytes[start + i]) {
Some(b) => b,
None => return None,
};
let low = match hex_to_byte(bytes[start + i + 1]) {
Some(b) => b,
None => return None,
};
result[i / 2] = (high << 4) | low;
i += 2;
}
Some(crate::sha3::Sha512(result))
}