use super::{ffi::U128, KeyValue, UpdateBlock, UpdateBlocks, Xi, BLOCK_LEN};
use crate::polyfill::{slice::AsChunks, ArraySplitMap as _};
#[derive(Clone)]
pub struct Key {
h: U128,
}
impl Key {
pub(in super::super) fn new(value: KeyValue) -> Self {
Self { h: init(value) }
}
}
impl UpdateBlock for Key {
fn update_block(&self, xi: &mut Xi, a: [u8; BLOCK_LEN]) {
xi.bitxor_assign(a);
gmult(xi, self.h);
}
}
impl UpdateBlocks for Key {
fn update_blocks(&self, xi: &mut Xi, input: AsChunks<u8, BLOCK_LEN>) {
ghash(xi, self.h, input);
}
}
#[cfg(target_pointer_width = "64")]
fn gcm_mul64_nohw(a: u64, b: u64) -> (u64, u64) {
#[allow(clippy::cast_possible_truncation)]
#[inline(always)]
fn lo(a: u128) -> u64 {
a as u64
}
#[inline(always)]
fn hi(a: u128) -> u64 {
lo(a >> 64)
}
#[inline(always)]
fn mul(a: u64, b: u64) -> u128 {
u128::from(a) * u128::from(b)
}
let a0 = a & 0x1111111111111110;
let a1 = a & 0x2222222222222220;
let a2 = a & 0x4444444444444440;
let a3 = a & 0x8888888888888880;
let b0 = b & 0x1111111111111111;
let b1 = b & 0x2222222222222222;
let b2 = b & 0x4444444444444444;
let b3 = b & 0x8888888888888888;
let c0 = mul(a0, b0) ^ mul(a1, b3) ^ mul(a2, b2) ^ mul(a3, b1);
let c1 = mul(a0, b1) ^ mul(a1, b0) ^ mul(a2, b3) ^ mul(a3, b2);
let c2 = mul(a0, b2) ^ mul(a1, b1) ^ mul(a2, b0) ^ mul(a3, b3);
let c3 = mul(a0, b3) ^ mul(a1, b2) ^ mul(a2, b1) ^ mul(a3, b0);
let a0_mask = 0u64.wrapping_sub(a & 1);
let a1_mask = 0u64.wrapping_sub((a >> 1) & 1);
let a2_mask = 0u64.wrapping_sub((a >> 2) & 1);
let a3_mask = 0u64.wrapping_sub((a >> 3) & 1);
let extra = u128::from(a0_mask & b)
^ (u128::from(a1_mask & b) << 1)
^ (u128::from(a2_mask & b) << 2)
^ (u128::from(a3_mask & b) << 3);
let lo = (lo(c0) & 0x1111111111111111)
^ (lo(c1) & 0x2222222222222222)
^ (lo(c2) & 0x4444444444444444)
^ (lo(c3) & 0x8888888888888888)
^ lo(extra);
let hi = (hi(c0) & 0x1111111111111111)
^ (hi(c1) & 0x2222222222222222)
^ (hi(c2) & 0x4444444444444444)
^ (hi(c3) & 0x8888888888888888)
^ hi(extra);
(lo, hi)
}
#[cfg(not(target_pointer_width = "64"))]
fn gcm_mul32_nohw(a: u32, b: u32) -> u64 {
#[inline(always)]
fn mul(a: u32, b: u32) -> u64 {
u64::from(a) * u64::from(b)
}
let a0 = a & 0x11111111;
let a1 = a & 0x22222222;
let a2 = a & 0x44444444;
let a3 = a & 0x88888888;
let b0 = b & 0x11111111;
let b1 = b & 0x22222222;
let b2 = b & 0x44444444;
let b3 = b & 0x88888888;
let c0 = mul(a0, b0) ^ mul(a1, b3) ^ mul(a2, b2) ^ mul(a3, b1);
let c1 = mul(a0, b1) ^ mul(a1, b0) ^ mul(a2, b3) ^ mul(a3, b2);
let c2 = mul(a0, b2) ^ mul(a1, b1) ^ mul(a2, b0) ^ mul(a3, b3);
let c3 = mul(a0, b3) ^ mul(a1, b2) ^ mul(a2, b1) ^ mul(a3, b0);
(c0 & 0x1111111111111111)
| (c1 & 0x2222222222222222)
| (c2 & 0x4444444444444444)
| (c3 & 0x8888888888888888)
}
#[cfg(not(target_pointer_width = "64"))]
fn gcm_mul64_nohw(a: u64, b: u64) -> (u64, u64) {
#[inline(always)]
fn lo(a: u64) -> u32 {
a as u32
}
#[inline(always)]
fn hi(a: u64) -> u32 {
lo(a >> 32)
}
let a0 = lo(a);
let a1 = hi(a);
let b0 = lo(b);
let b1 = hi(b);
let lo = gcm_mul32_nohw(a0, b0);
let hi = gcm_mul32_nohw(a1, b1);
let mid = gcm_mul32_nohw(a0 ^ a1, b0 ^ b1) ^ lo ^ hi;
(lo ^ (mid << 32), hi ^ (mid >> 32))
}
fn init(value: KeyValue) -> U128 {
let xi = value.into_inner();
let mut lo = xi[1];
let mut hi = xi[0];
let mut carry = hi >> 63;
carry = 0u64.wrapping_sub(carry);
hi <<= 1;
hi |= lo >> 63;
lo <<= 1;
lo ^= carry & 1;
hi ^= carry & 0xc200000000000000;
U128 { hi, lo }
}
fn gcm_polyval_nohw(xi: &mut [u64; 2], h: U128) {
let (r0, mut r1) = gcm_mul64_nohw(xi[0], h.lo);
let (mut r2, mut r3) = gcm_mul64_nohw(xi[1], h.hi);
let (mut mid0, mut mid1) = gcm_mul64_nohw(xi[0] ^ xi[1], h.hi ^ h.lo);
mid0 ^= r0 ^ r2;
mid1 ^= r1 ^ r3;
r2 ^= mid1;
r1 ^= mid0;
r1 ^= (r0 << 63) ^ (r0 << 62) ^ (r0 << 57);
r2 ^= r0;
r3 ^= r1;
r2 ^= r0 >> 1;
r2 ^= r1 << 63;
r3 ^= r1 >> 1;
r2 ^= r0 >> 2;
r2 ^= r1 << 62;
r3 ^= r1 >> 2;
r2 ^= r0 >> 7;
r2 ^= r1 << 57;
r3 ^= r1 >> 7;
*xi = [r2, r3];
}
fn gmult(xi: &mut Xi, h: U128) {
with_swapped_xi(xi, |swapped| {
gcm_polyval_nohw(swapped, h);
})
}
fn ghash(xi: &mut Xi, h: U128, input: AsChunks<u8, BLOCK_LEN>) {
with_swapped_xi(xi, |swapped| {
input.into_iter().for_each(|&input| {
let input = input.array_split_map(u64::from_be_bytes);
swapped[0] ^= input[1];
swapped[1] ^= input[0];
gcm_polyval_nohw(swapped, h);
});
});
}
#[inline]
fn with_swapped_xi(Xi(xi): &mut Xi, f: impl FnOnce(&mut [u64; 2])) {
let unswapped: [u64; 2] = xi.array_split_map(u64::from_be_bytes);
let mut swapped: [u64; 2] = [unswapped[1], unswapped[0]];
f(&mut swapped);
let (xi_0, xi_1) = xi.split_at_mut(BLOCK_LEN / 2);
xi_0.copy_from_slice(&u64::to_be_bytes(swapped[1]));
xi_1.copy_from_slice(&u64::to_be_bytes(swapped[0]));
}