use super::*;
pick! {
if #[cfg(target_feature="sse2")] {
#[derive(Default, Clone, Copy, PartialEq, Eq)]
#[repr(C, align(16))]
pub struct i8x16 { sse: m128i }
} else {
#[derive(Default, Clone, Copy, PartialEq, Eq)]
#[repr(C, align(16))]
pub struct i8x16 { arr: [i8;16] }
}
}
unsafe impl Zeroable for i8x16 {}
unsafe impl Pod for i8x16 {}
impl Add for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn add(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: add_i8_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
self.arr[0].wrapping_add(rhs.arr[0]),
self.arr[1].wrapping_add(rhs.arr[1]),
self.arr[2].wrapping_add(rhs.arr[2]),
self.arr[3].wrapping_add(rhs.arr[3]),
self.arr[4].wrapping_add(rhs.arr[4]),
self.arr[5].wrapping_add(rhs.arr[5]),
self.arr[6].wrapping_add(rhs.arr[6]),
self.arr[7].wrapping_add(rhs.arr[7]),
self.arr[8].wrapping_add(rhs.arr[8]),
self.arr[9].wrapping_add(rhs.arr[9]),
self.arr[10].wrapping_add(rhs.arr[10]),
self.arr[11].wrapping_add(rhs.arr[11]),
self.arr[12].wrapping_add(rhs.arr[12]),
self.arr[13].wrapping_add(rhs.arr[13]),
self.arr[14].wrapping_add(rhs.arr[14]),
self.arr[15].wrapping_add(rhs.arr[15]),
]}
}
}
}
}
impl Sub for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn sub(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: sub_i8_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
self.arr[0].wrapping_sub(rhs.arr[0]),
self.arr[1].wrapping_sub(rhs.arr[1]),
self.arr[2].wrapping_sub(rhs.arr[2]),
self.arr[3].wrapping_sub(rhs.arr[3]),
self.arr[4].wrapping_sub(rhs.arr[4]),
self.arr[5].wrapping_sub(rhs.arr[5]),
self.arr[6].wrapping_sub(rhs.arr[6]),
self.arr[7].wrapping_sub(rhs.arr[7]),
self.arr[8].wrapping_sub(rhs.arr[8]),
self.arr[9].wrapping_sub(rhs.arr[9]),
self.arr[10].wrapping_sub(rhs.arr[10]),
self.arr[11].wrapping_sub(rhs.arr[11]),
self.arr[12].wrapping_sub(rhs.arr[12]),
self.arr[13].wrapping_sub(rhs.arr[13]),
self.arr[14].wrapping_sub(rhs.arr[14]),
self.arr[15].wrapping_sub(rhs.arr[15]),
]}
}
}
}
}
impl BitAnd for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn bitand(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: bitand_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
self.arr[0].bitand(rhs.arr[0]),
self.arr[1].bitand(rhs.arr[1]),
self.arr[2].bitand(rhs.arr[2]),
self.arr[3].bitand(rhs.arr[3]),
self.arr[4].bitand(rhs.arr[4]),
self.arr[5].bitand(rhs.arr[5]),
self.arr[6].bitand(rhs.arr[6]),
self.arr[7].bitand(rhs.arr[7]),
self.arr[8].bitand(rhs.arr[8]),
self.arr[9].bitand(rhs.arr[9]),
self.arr[10].bitand(rhs.arr[10]),
self.arr[11].bitand(rhs.arr[11]),
self.arr[12].bitand(rhs.arr[12]),
self.arr[13].bitand(rhs.arr[13]),
self.arr[14].bitand(rhs.arr[14]),
self.arr[15].bitand(rhs.arr[15]),
]}
}
}
}
}
impl BitOr for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn bitor(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: bitor_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
self.arr[0].bitor(rhs.arr[0]),
self.arr[1].bitor(rhs.arr[1]),
self.arr[2].bitor(rhs.arr[2]),
self.arr[3].bitor(rhs.arr[3]),
self.arr[4].bitor(rhs.arr[4]),
self.arr[5].bitor(rhs.arr[5]),
self.arr[6].bitor(rhs.arr[6]),
self.arr[7].bitor(rhs.arr[7]),
self.arr[8].bitor(rhs.arr[8]),
self.arr[9].bitor(rhs.arr[9]),
self.arr[10].bitor(rhs.arr[10]),
self.arr[11].bitor(rhs.arr[11]),
self.arr[12].bitor(rhs.arr[12]),
self.arr[13].bitor(rhs.arr[13]),
self.arr[14].bitor(rhs.arr[14]),
self.arr[15].bitor(rhs.arr[15]),
]}
}
}
}
}
impl BitXor for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn bitxor(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: bitxor_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
self.arr[0].bitxor(rhs.arr[0]),
self.arr[1].bitxor(rhs.arr[1]),
self.arr[2].bitxor(rhs.arr[2]),
self.arr[3].bitxor(rhs.arr[3]),
self.arr[4].bitxor(rhs.arr[4]),
self.arr[5].bitxor(rhs.arr[5]),
self.arr[6].bitxor(rhs.arr[6]),
self.arr[7].bitxor(rhs.arr[7]),
self.arr[8].bitxor(rhs.arr[8]),
self.arr[9].bitxor(rhs.arr[9]),
self.arr[10].bitxor(rhs.arr[10]),
self.arr[11].bitxor(rhs.arr[11]),
self.arr[12].bitxor(rhs.arr[12]),
self.arr[13].bitxor(rhs.arr[13]),
self.arr[14].bitxor(rhs.arr[14]),
self.arr[15].bitxor(rhs.arr[15]),
]}
}
}
}
}
impl CmpEq for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn cmp_eq(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: cmp_eq_mask_i8_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
if self.arr[0] == rhs.arr[0] { -1 } else { 0 },
if self.arr[1] == rhs.arr[1] { -1 } else { 0 },
if self.arr[2] == rhs.arr[2] { -1 } else { 0 },
if self.arr[3] == rhs.arr[3] { -1 } else { 0 },
if self.arr[4] == rhs.arr[4] { -1 } else { 0 },
if self.arr[5] == rhs.arr[5] { -1 } else { 0 },
if self.arr[6] == rhs.arr[6] { -1 } else { 0 },
if self.arr[7] == rhs.arr[7] { -1 } else { 0 },
if self.arr[8] == rhs.arr[8] { -1 } else { 0 },
if self.arr[9] == rhs.arr[9] { -1 } else { 0 },
if self.arr[10] == rhs.arr[10] { -1 } else { 0 },
if self.arr[11] == rhs.arr[11] { -1 } else { 0 },
if self.arr[12] == rhs.arr[12] { -1 } else { 0 },
if self.arr[13] == rhs.arr[13] { -1 } else { 0 },
if self.arr[14] == rhs.arr[14] { -1 } else { 0 },
if self.arr[15] == rhs.arr[15] { -1 } else { 0 },
]}
}
}
}
}
impl CmpGt for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn cmp_gt(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: cmp_gt_mask_i8_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
if self.arr[0] > rhs.arr[0] { -1 } else { 0 },
if self.arr[1] > rhs.arr[1] { -1 } else { 0 },
if self.arr[2] > rhs.arr[2] { -1 } else { 0 },
if self.arr[3] > rhs.arr[3] { -1 } else { 0 },
if self.arr[4] > rhs.arr[4] { -1 } else { 0 },
if self.arr[5] > rhs.arr[5] { -1 } else { 0 },
if self.arr[6] > rhs.arr[6] { -1 } else { 0 },
if self.arr[7] > rhs.arr[7] { -1 } else { 0 },
if self.arr[8] > rhs.arr[8] { -1 } else { 0 },
if self.arr[9] > rhs.arr[9] { -1 } else { 0 },
if self.arr[10] > rhs.arr[10] { -1 } else { 0 },
if self.arr[11] > rhs.arr[11] { -1 } else { 0 },
if self.arr[12] > rhs.arr[12] { -1 } else { 0 },
if self.arr[13] > rhs.arr[13] { -1 } else { 0 },
if self.arr[14] > rhs.arr[14] { -1 } else { 0 },
if self.arr[15] > rhs.arr[15] { -1 } else { 0 },
]}
}
}
}
}
impl CmpLt for i8x16 {
type Output = Self;
#[inline]
#[must_use]
fn cmp_lt(self, rhs: Self) -> Self::Output {
pick! {
if #[cfg(target_feature="sse2")] {
Self { sse: cmp_lt_mask_i8_m128i(self.sse, rhs.sse) }
} else {
Self { arr: [
if self.arr[0] < rhs.arr[0] { -1 } else { 0 },
if self.arr[1] < rhs.arr[1] { -1 } else { 0 },
if self.arr[2] < rhs.arr[2] { -1 } else { 0 },
if self.arr[3] < rhs.arr[3] { -1 } else { 0 },
if self.arr[4] < rhs.arr[4] { -1 } else { 0 },
if self.arr[5] < rhs.arr[5] { -1 } else { 0 },
if self.arr[6] < rhs.arr[6] { -1 } else { 0 },
if self.arr[7] < rhs.arr[7] { -1 } else { 0 },
if self.arr[8] < rhs.arr[8] { -1 } else { 0 },
if self.arr[9] < rhs.arr[9] { -1 } else { 0 },
if self.arr[10] < rhs.arr[10] { -1 } else { 0 },
if self.arr[11] < rhs.arr[11] { -1 } else { 0 },
if self.arr[12] < rhs.arr[12] { -1 } else { 0 },
if self.arr[13] < rhs.arr[13] { -1 } else { 0 },
if self.arr[14] < rhs.arr[14] { -1 } else { 0 },
if self.arr[15] < rhs.arr[15] { -1 } else { 0 },
]}
}
}
}
}
impl i8x16 {
#[inline]
#[must_use]
pub fn blend(self, t: Self, f: Self) -> Self {
pick! {
if #[cfg(target_feature="sse4.1")] {
Self { sse: blend_varying_i8_m128i(f.sse, t.sse, self.sse) }
} else {
generic_bit_blend(self, t, f)
}
}
}
#[inline]
#[must_use]
pub fn abs(self) -> Self {
pick! {
if #[cfg(target_feature="ssse3")] {
Self { sse: abs_i8_m128i(self.sse) }
} else {
let arr: [i8; 16] = cast(self);
cast([
arr[0].wrapping_abs(),
arr[1].wrapping_abs(),
arr[2].wrapping_abs(),
arr[3].wrapping_abs(),
arr[4].wrapping_abs(),
arr[5].wrapping_abs(),
arr[6].wrapping_abs(),
arr[7].wrapping_abs(),
arr[8].wrapping_abs(),
arr[9].wrapping_abs(),
arr[10].wrapping_abs(),
arr[11].wrapping_abs(),
arr[12].wrapping_abs(),
arr[13].wrapping_abs(),
arr[14].wrapping_abs(),
arr[15].wrapping_abs(),
])
}
}
}
#[inline]
#[must_use]
pub fn max(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="sse4.1")] {
Self { sse: max_i8_m128i(self.sse, rhs.sse) }
} else {
self.cmp_lt(rhs).blend(rhs, self)
}
}
}
#[inline]
#[must_use]
pub fn min(self, rhs: Self) -> Self {
pick! {
if #[cfg(target_feature="sse4.1")] {
Self { sse: min_i8_m128i(self.sse, rhs.sse) }
} else {
self.cmp_lt(rhs).blend(self, rhs)
}
}
}
#[inline]
#[must_use]
pub fn move_mask(self) -> i32 {
pick! {
if #[cfg(target_feature="sse2")] {
move_mask_i8_m128i(self.sse)
}
else {
((self.arr[0] < 0) as i32) << 0 |
((self.arr[1] < 0) as i32) << 1 |
((self.arr[2] < 0) as i32) << 2 |
((self.arr[3] < 0) as i32) << 3 |
((self.arr[4] < 0) as i32) << 4 |
((self.arr[5] < 0) as i32) << 5 |
((self.arr[6] < 0) as i32) << 6 |
((self.arr[7] < 0) as i32) << 7 |
((self.arr[8] < 0) as i32) << 8 |
((self.arr[9] < 0) as i32) << 9 |
((self.arr[10] < 0) as i32) << 10 |
((self.arr[11] < 0) as i32) << 11 |
((self.arr[12] < 0) as i32) << 12 |
((self.arr[13] < 0) as i32) << 13 |
((self.arr[14] < 0) as i32) << 14 |
((self.arr[15] < 0) as i32) << 15
}
}
}
#[inline]
#[must_use]
pub fn any(self) -> bool {
self.move_mask() != 0
}
#[inline]
#[must_use]
pub fn all(self) -> bool {
self.move_mask() == 0b1111111111111111
}
#[inline]
#[must_use]
pub fn none(self) -> bool {
!self.any()
}
}