#![cfg_attr(not(feature = "std"), allow(dead_code))]
#[cfg(any(
target_arch = "aarch64",
target_arch = "x86_64",
target_arch = "wasm32"
))]
use crate::row::arch;
#[cfg(target_arch = "aarch64")]
use crate::row::neon_available;
#[cfg(target_arch = "wasm32")]
use crate::row::simd128_available;
#[cfg(target_arch = "x86_64")]
use crate::row::{avx2_available, avx512_available, sse41_available};
use crate::row::{
rgb_row_bytes, rgb_row_elems, rgba_row_bytes, rgba_row_elems, scalar::ya8 as scalar, ya_row_elems,
};
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_rgb_row(packed: &[u8], out: &mut [u8], width: usize, use_simd: bool) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(out.len() >= rgb_row_bytes(width), "out too short");
if !use_simd {
return scalar::ya8_to_rgb_row(packed, out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_rgb_row(packed, out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_rgb_row(packed, out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_rgb_row(packed, out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_rgb_row(packed, out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_rgb_row(packed, out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_rgb_row(packed, out, width);
}
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_rgba_row(packed: &[u8], out: &mut [u8], width: usize, use_simd: bool) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(out.len() >= rgba_row_bytes(width), "out too short");
if !use_simd {
return scalar::ya8_to_rgba_row(packed, out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_rgba_row(packed, out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_rgba_row(packed, out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_rgba_row(packed, out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_rgba_row(packed, out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_rgba_row(packed, out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_rgba_row(packed, out, width);
}
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_rgb_u16_row(packed: &[u8], out: &mut [u16], width: usize, use_simd: bool) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(out.len() >= rgb_row_elems(width), "out too short");
if !use_simd {
return scalar::ya8_to_rgb_u16_row(packed, out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_rgb_u16_row(packed, out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_rgb_u16_row(packed, out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_rgb_u16_row(packed, out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_rgb_u16_row(packed, out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_rgb_u16_row(packed, out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_rgb_u16_row(packed, out, width);
}
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_rgba_u16_row(packed: &[u8], out: &mut [u16], width: usize, use_simd: bool) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(out.len() >= rgba_row_elems(width), "out too short");
if !use_simd {
return scalar::ya8_to_rgba_u16_row(packed, out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_rgba_u16_row(packed, out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_rgba_u16_row(packed, out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_rgba_u16_row(packed, out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_rgba_u16_row(packed, out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_rgba_u16_row(packed, out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_rgba_u16_row(packed, out, width);
}
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_luma_row(packed: &[u8], out: &mut [u8], width: usize, use_simd: bool) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(out.len() >= width, "out too short");
if !use_simd {
return scalar::ya8_to_luma_row(packed, out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_luma_row(packed, out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_luma_row(packed, out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_luma_row(packed, out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_luma_row(packed, out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_luma_row(packed, out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_luma_row(packed, out, width);
}
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_luma_u16_row(packed: &[u8], out: &mut [u16], width: usize, use_simd: bool) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(out.len() >= width, "out too short");
if !use_simd {
return scalar::ya8_to_luma_u16_row(packed, out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_luma_u16_row(packed, out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_luma_u16_row(packed, out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_luma_u16_row(packed, out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_luma_u16_row(packed, out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_luma_u16_row(packed, out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_luma_u16_row(packed, out, width);
}
#[cfg_attr(not(tarpaulin), inline(always))]
pub(crate) fn ya8_to_hsv_row(
packed: &[u8],
h_out: &mut [u8],
s_out: &mut [u8],
v_out: &mut [u8],
width: usize,
use_simd: bool,
) {
assert!(packed.len() >= ya_row_elems(width), "packed too short");
assert!(h_out.len() >= width, "H out too short");
assert!(s_out.len() >= width, "S out too short");
assert!(v_out.len() >= width, "V out too short");
if !use_simd {
return scalar::ya8_to_hsv_row(packed, h_out, s_out, v_out, width);
}
cfg_select! {
target_arch = "aarch64" => {
if neon_available() {
unsafe { arch::neon::ya8_to_hsv_row(packed, h_out, s_out, v_out, width); }
return;
}
},
target_arch = "x86_64" => {
if avx512_available() {
unsafe { arch::x86_avx512::ya8_to_hsv_row(packed, h_out, s_out, v_out, width); }
return;
}
if avx2_available() {
unsafe { arch::x86_avx2::ya8_to_hsv_row(packed, h_out, s_out, v_out, width); }
return;
}
if sse41_available() {
unsafe { arch::x86_sse41::ya8_to_hsv_row(packed, h_out, s_out, v_out, width); }
return;
}
},
target_arch = "wasm32" => {
if simd128_available() {
unsafe { arch::wasm_simd128::ya8_to_hsv_row(packed, h_out, s_out, v_out, width); }
return;
}
},
_ => {}
}
scalar::ya8_to_hsv_row(packed, h_out, s_out, v_out, width);
}