use super::*;
pick! {
if #[cfg(target_feature="avx512f")] {
#[derive(Default, Clone, Copy, PartialEq, Eq)]
#[repr(C, align(64))]
pub struct u64x8 { pub(crate) avx512: m512i }
} else {
#[derive(Default, Clone, Copy, PartialEq, Eq)]
#[repr(C, align(64))]
pub struct u64x8 { pub(crate) a : u64x4, pub(crate) b : u64x4 }
}
}
impl_simd! {
unsafe {
T = u64,
N = 8,
Simd = u64x8,
optional_type_x86_inner { X86Inner = __m512i },
optional_type_arm_inner {},
optional_type_wasm_inner {},
}
#[inline]
fn simd_eq(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: cmp_op_mask_u64_m512i::<{cmp_int_op!(Eq)}>(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.simd_eq(rhs.a),
b : self.b.simd_eq(rhs.b),
}
}
}
}
#[inline]
fn simd_ne(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: cmp_op_mask_u64_m512i::<{cmp_int_op!(Ne)}>(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.simd_ne(rhs.a),
b : self.b.simd_ne(rhs.b),
}
}
}
}
#[inline]
fn simd_lt(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: cmp_op_mask_u64_m512i::<{cmp_int_op!(Lt)}>(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.simd_lt(rhs.a),
b : self.b.simd_lt(rhs.b),
}
}
}
}
#[inline]
fn simd_gt(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: cmp_op_mask_u64_m512i::<{cmp_int_op!(Nle)}>(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.simd_gt(rhs.a),
b : self.b.simd_gt(rhs.b),
}
}
}
}
#[inline]
fn simd_le(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: cmp_op_mask_u64_m512i::<{cmp_int_op!(Le)}>(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.simd_le(rhs.a),
b : self.b.simd_le(rhs.b),
}
}
}
}
#[inline]
fn simd_ge(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: cmp_op_mask_u64_m512i::<{cmp_int_op!(Nlt)}>(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.simd_ge(rhs.a),
b : self.b.simd_ge(rhs.b),
}
}
}
}
#[inline]
pub fn bitselect(self, if_one: Self, if_zero: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self {
avx512: bitor_m512i(
bitand_m512i(if_one.avx512, self.avx512),
bitandnot_m512i(self.avx512, if_zero.avx512),
),
}
} else {
Self {
a: self.a.bitselect(if_one.a, if_zero.a),
b: self.b.bitselect(if_one.b, if_zero.b),
}
}
}
}
#[inline]
pub fn select(self, if_true: Self, if_false: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: blend_varying_i8_m512i(if_false.avx512,if_true.avx512,movepi8_mask_m512i(self.avx512)) }
} else {
Self {
a : self.a.select(if_true.a, if_false.a),
b : self.b.select(if_true.b, if_false.b),
}
}
}
}
#[inline]
pub fn to_bitmask(self) -> u32 {
i64x8::to_bitmask(cast(self))
}
#[inline]
pub fn any(self) -> bool {
i64x8::any(cast(self))
}
#[inline]
pub fn all(self) -> bool {
i64x8::all(cast(self))
}
#[inline]
pub fn transpose(data: [u64x8; 8]) -> [u64x8; 8] {
cast(i64x8::transpose(cast(data)))
}
}
impl_simd_uint! {
unsafe {
T = u64,
N = 8,
Simd = u64x8,
SignedSimd = i64x8,
T_BITS = 64,
T_BITS_MUL_2 = 128,
[0, 1, 2, 3, 4, 5, 6, 7],
}
#[inline]
fn not(self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: bitxor_m512i(self.avx512, set_splat_i64_m512i(-1)) }
} else {
Self {
a : self.a.not(),
b : self.b.not(),
}
}
}
}
#[inline]
fn add(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: add_i64_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.add(rhs.a),
b : self.b.add(rhs.b),
}
}
}
}
#[inline]
fn sub(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: sub_i64_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.sub(rhs.a),
b : self.b.sub(rhs.b),
}
}
}
}
#[inline]
fn mul(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
let arr1: [u64; 8] = cast(self);
let arr2: [u64; 8] = cast(rhs);
cast([
arr1[0].wrapping_mul(arr2[0]),
arr1[1].wrapping_mul(arr2[1]),
arr1[2].wrapping_mul(arr2[2]),
arr1[3].wrapping_mul(arr2[3]),
arr1[4].wrapping_mul(arr2[4]),
arr1[5].wrapping_mul(arr2[5]),
arr1[6].wrapping_mul(arr2[6]),
arr1[7].wrapping_mul(arr2[7]),
])
} else {
Self { a: self.a.mul(rhs.a), b: self.b.mul(rhs.b) }
}
}
}
#[inline]
fn shl(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
let rhs = bitand_m512i(rhs.avx512, set_splat_i64_m512i(63));
Self { avx512: shl_each_u64_m512i(self.avx512, rhs) }
} else {
Self {
a : self.a.shl(rhs.a),
b : self.b.shl(rhs.b),
}
}
}
}
#[inline]
fn shl(self, rhs: u32) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
#[expect(clippy::suspicious_arithmetic_impl)]
let shift = rhs as u64 & 63;
Self { avx512: shl_all_u64_m512i(self.avx512, shift) }
} else {
Self {
a : self.a.shl(rhs),
b : self.b.shl(rhs),
}
}
}
}
#[inline]
fn shr(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
let rhs = bitand_m512i(rhs.avx512, set_splat_i64_m512i(63));
Self { avx512: shr_each_u64_m512i(self.avx512, rhs) }
} else {
Self {
a : self.a.shr(rhs.a),
b : self.b.shr(rhs.b),
}
}
}
}
#[inline]
fn shr(self, rhs: u32) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
#[expect(clippy::suspicious_arithmetic_impl)]
let shift = rhs as u64 & 63;
Self { avx512: shr_all_u64_m512i(self.avx512, shift) }
} else {
Self {
a : self.a.shr(rhs),
b : self.b.shr(rhs),
}
}
}
}
#[inline]
fn bitand(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: bitand_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.bitand(rhs.a),
b : self.b.bitand(rhs.b),
}
}
}
}
#[inline]
fn bitor(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: bitor_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.bitor(rhs.a),
b : self.b.bitor(rhs.b),
}
}
}
}
#[inline]
fn bitxor(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: bitxor_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a : self.a.bitxor(rhs.a),
b : self.b.bitxor(rhs.b),
}
}
}
}
#[inline]
pub fn max(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: max_u64_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a: self.a.max(rhs.a),
b: self.b.max(rhs.b),
}
}
}
}
#[inline]
pub fn min(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: min_u64_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a: self.a.min(rhs.a),
b: self.b.min(rhs.b),
}
}
}
}
#[inline]
pub fn reduce_add(self) -> u64 {
let array: [u64x4; 2] = cast(self);
(array[0] + array[1]).reduce_add()
}
#[inline]
pub fn reduce_mul(self) -> u64 {
let array: [u64x4; 2] = cast(self);
(array[0] * array[1]).reduce_mul()
}
#[inline]
pub fn reduce_max(self) -> u64 {
let array: [u64x4; 2] = cast(self);
array[0].max(array[1]).reduce_max()
}
#[inline]
pub fn reduce_min(self) -> u64 {
let array: [u64x4; 2] = cast(self);
array[0].min(array[1]).reduce_min()
}
#[inline]
pub fn unbounded_shl(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: shl_each_u64_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a: self.a.unbounded_shl(rhs.a),
b: self.b.unbounded_shl(rhs.b),
}
}
}
}
#[inline]
pub fn unbounded_shl_scalar(self, rhs: u32) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: shl_all_u64_m512i(self.avx512, rhs as u64) }
} else {
Self {
a: self.a.unbounded_shl_scalar(rhs),
b: self.b.unbounded_shl_scalar(rhs),
}
}
}
}
#[inline]
pub fn unbounded_shr(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: shr_each_u64_m512i(self.avx512, rhs.avx512) }
} else {
Self {
a: self.a.unbounded_shr(rhs.a),
b: self.b.unbounded_shr(rhs.b),
}
}
}
}
#[inline]
pub fn unbounded_shr_scalar(self, rhs: u32) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
Self { avx512: shr_all_u64_m512i(self.avx512, rhs as u64) }
} else {
Self {
a: self.a.unbounded_shr_scalar(rhs),
b: self.b.unbounded_shr_scalar(rhs),
}
}
}
}
#[inline]
pub fn saturating_add(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
let result = self + rhs;
let overflow = result.simd_lt(self);
result | overflow
} else {
Self {
a: self.a.saturating_add(rhs.a),
b: self.b.saturating_add(rhs.b),
}
}
}
}
#[inline]
pub fn saturating_sub(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
let result = self - rhs;
let no_overflow = result.simd_le(self);
result & no_overflow
} else {
Self {
a: self.a.saturating_sub(rhs.a),
b: self.b.saturating_sub(rhs.b),
}
}
}
}
#[inline]
pub fn overflowing_mul(self, rhs: Self) -> (Self, Self) {
let self_array = self.to_array();
let rhs_array = rhs.to_array();
let result = [
self_array[0].overflowing_mul(rhs_array[0]),
self_array[1].overflowing_mul(rhs_array[1]),
self_array[2].overflowing_mul(rhs_array[2]),
self_array[3].overflowing_mul(rhs_array[3]),
self_array[4].overflowing_mul(rhs_array[4]),
self_array[5].overflowing_mul(rhs_array[5]),
self_array[6].overflowing_mul(rhs_array[6]),
self_array[7].overflowing_mul(rhs_array[7]),
];
(
Self::new([
result[0].0,
result[1].0,
result[2].0,
result[3].0,
result[4].0,
result[5].0,
result[6].0,
result[7].0,
]),
Self::new([
-(result[0].1 as i64) as u64,
-(result[1].1 as i64) as u64,
-(result[2].1 as i64) as u64,
-(result[3].1 as i64) as u64,
-(result[4].1 as i64) as u64,
-(result[5].1 as i64) as u64,
-(result[6].1 as i64) as u64,
-(result[7].1 as i64) as u64,
]),
)
}
optional_fn_widening_mul {
}
#[inline]
pub fn mul_keep_low_high(self, rhs: Self) -> (Self, Self) {
let self_array = self.to_array();
let rhs_array = rhs.to_array();
let widening_mul = [
(self_array[0] as u128).wrapping_mul(rhs_array[0] as u128),
(self_array[1] as u128).wrapping_mul(rhs_array[1] as u128),
(self_array[2] as u128).wrapping_mul(rhs_array[2] as u128),
(self_array[3] as u128).wrapping_mul(rhs_array[3] as u128),
(self_array[4] as u128).wrapping_mul(rhs_array[4] as u128),
(self_array[5] as u128).wrapping_mul(rhs_array[5] as u128),
(self_array[6] as u128).wrapping_mul(rhs_array[6] as u128),
(self_array[7] as u128).wrapping_mul(rhs_array[7] as u128),
];
(
Self::new([
widening_mul[0] as u64,
widening_mul[1] as u64,
widening_mul[2] as u64,
widening_mul[3] as u64,
widening_mul[4] as u64,
widening_mul[5] as u64,
widening_mul[6] as u64,
widening_mul[7] as u64,
]),
Self::new([
(widening_mul[0] >> 64) as u64,
(widening_mul[1] >> 64) as u64,
(widening_mul[2] >> 64) as u64,
(widening_mul[3] >> 64) as u64,
(widening_mul[4] >> 64) as u64,
(widening_mul[5] >> 64) as u64,
(widening_mul[6] >> 64) as u64,
(widening_mul[7] >> 64) as u64,
]),
)
}
#[inline]
pub fn mul_keep_high(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="avx512f")] {
let arr1: [u64; 8] = cast(self);
let arr2: [u64; 8] = cast(rhs);
cast([
(arr1[0] as u128 * arr2[0] as u128 >> 64) as u64,
(arr1[1] as u128 * arr2[1] as u128 >> 64) as u64,
(arr1[2] as u128 * arr2[2] as u128 >> 64) as u64,
(arr1[3] as u128 * arr2[3] as u128 >> 64) as u64,
(arr1[4] as u128 * arr2[4] as u128 >> 64) as u64,
(arr1[5] as u128 * arr2[5] as u128 >> 64) as u64,
(arr1[6] as u128 * arr2[6] as u128 >> 64) as u64,
(arr1[7] as u128 * arr2[7] as u128 >> 64) as u64,
])
} else {
Self {
a: self.a.mul_keep_high(rhs.a),
b: self.b.mul_keep_high(rhs.b),
}
}
}
}
}