use core::arch::aarch64::*;
use super::*;
use crate::{ColorMatrix, row::scalar};
const HOST_NATIVE_BE: bool = cfg!(target_endian = "big");
#[inline]
#[target_feature(enable = "neon")]
pub(crate) unsafe fn y216_to_rgb_or_rgba_row<const ALPHA: bool, const BE: bool>(
packed: &[u16],
out: &mut [u8],
width: usize,
matrix: ColorMatrix,
full_range: bool,
) {
debug_assert!(width.is_multiple_of(2), "Y216 requires even width");
debug_assert!(packed.len() >= width * 2);
let bpp: usize = if ALPHA { 4 } else { 3 };
debug_assert!(out.len() >= width * bpp);
let coeffs = scalar::Coefficients::for_matrix(matrix);
let (y_off, y_scale, c_scale) = scalar::range_params_n::<16, 8>(full_range);
let bias = scalar::chroma_bias::<16>();
const RND: i32 = 1 << 14;
unsafe {
let mut x = 0usize;
if BE == HOST_NATIVE_BE {
let rnd_v = vdupq_n_s32(RND);
let y_off_v = vdupq_n_s32(y_off);
let y_scale_v = vdupq_n_s32(y_scale);
let c_scale_v = vdupq_n_s32(c_scale);
let bias_v = vdupq_n_s16(bias as i16);
let cru = vdupq_n_s32(coeffs.r_u());
let crv = vdupq_n_s32(coeffs.r_v());
let cgu = vdupq_n_s32(coeffs.g_u());
let cgv = vdupq_n_s32(coeffs.g_v());
let cbu = vdupq_n_s32(coeffs.b_u());
let cbv = vdupq_n_s32(coeffs.b_v());
while x + 16 <= width {
let pair_lo = vld2q_u16(packed.as_ptr().add(x * 2));
let pair_hi = vld2q_u16(packed.as_ptr().add(x * 2 + 16));
let u_lo_vec = vuzp1q_u16(pair_lo.1, pair_lo.1);
let v_lo_vec = vuzp2q_u16(pair_lo.1, pair_lo.1);
let u_hi_vec = vuzp1q_u16(pair_hi.1, pair_hi.1);
let v_hi_vec = vuzp2q_u16(pair_hi.1, pair_hi.1);
let u_lo_i16 = vsubq_s16(vreinterpretq_s16_u16(u_lo_vec), bias_v);
let v_lo_i16 = vsubq_s16(vreinterpretq_s16_u16(v_lo_vec), bias_v);
let u_hi_i16 = vsubq_s16(vreinterpretq_s16_u16(u_hi_vec), bias_v);
let v_hi_i16 = vsubq_s16(vreinterpretq_s16_u16(v_hi_vec), bias_v);
let u_lo_i32_0 = vmovl_s16(vget_low_s16(u_lo_i16));
let u_lo_i32_1 = vmovl_s16(vget_high_s16(u_lo_i16));
let v_lo_i32_0 = vmovl_s16(vget_low_s16(v_lo_i16));
let v_lo_i32_1 = vmovl_s16(vget_high_s16(v_lo_i16));
let u_hi_i32_0 = vmovl_s16(vget_low_s16(u_hi_i16));
let u_hi_i32_1 = vmovl_s16(vget_high_s16(u_hi_i16));
let v_hi_i32_0 = vmovl_s16(vget_low_s16(v_hi_i16));
let v_hi_i32_1 = vmovl_s16(vget_high_s16(v_hi_i16));
let u_d_lo_0 = q15_shift(vaddq_s32(vmulq_s32(u_lo_i32_0, c_scale_v), rnd_v));
let u_d_lo_1 = q15_shift(vaddq_s32(vmulq_s32(u_lo_i32_1, c_scale_v), rnd_v));
let v_d_lo_0 = q15_shift(vaddq_s32(vmulq_s32(v_lo_i32_0, c_scale_v), rnd_v));
let v_d_lo_1 = q15_shift(vaddq_s32(vmulq_s32(v_lo_i32_1, c_scale_v), rnd_v));
let u_d_hi_0 = q15_shift(vaddq_s32(vmulq_s32(u_hi_i32_0, c_scale_v), rnd_v));
let u_d_hi_1 = q15_shift(vaddq_s32(vmulq_s32(u_hi_i32_1, c_scale_v), rnd_v));
let v_d_hi_0 = q15_shift(vaddq_s32(vmulq_s32(v_hi_i32_0, c_scale_v), rnd_v));
let v_d_hi_1 = q15_shift(vaddq_s32(vmulq_s32(v_hi_i32_1, c_scale_v), rnd_v));
let r_chroma_lo = chroma_i16x8(cru, crv, u_d_lo_0, v_d_lo_0, u_d_lo_1, v_d_lo_1, rnd_v);
let g_chroma_lo = chroma_i16x8(cgu, cgv, u_d_lo_0, v_d_lo_0, u_d_lo_1, v_d_lo_1, rnd_v);
let b_chroma_lo = chroma_i16x8(cbu, cbv, u_d_lo_0, v_d_lo_0, u_d_lo_1, v_d_lo_1, rnd_v);
let r_chroma_hi = chroma_i16x8(cru, crv, u_d_hi_0, v_d_hi_0, u_d_hi_1, v_d_hi_1, rnd_v);
let g_chroma_hi = chroma_i16x8(cgu, cgv, u_d_hi_0, v_d_hi_0, u_d_hi_1, v_d_hi_1, rnd_v);
let b_chroma_hi = chroma_i16x8(cbu, cbv, u_d_hi_0, v_d_hi_0, u_d_hi_1, v_d_hi_1, rnd_v);
let r_dup_lo = vzip1q_s16(r_chroma_lo, r_chroma_lo);
let g_dup_lo = vzip1q_s16(g_chroma_lo, g_chroma_lo);
let b_dup_lo = vzip1q_s16(b_chroma_lo, b_chroma_lo);
let r_dup_hi = vzip1q_s16(r_chroma_hi, r_chroma_hi);
let g_dup_hi = vzip1q_s16(g_chroma_hi, g_chroma_hi);
let b_dup_hi = vzip1q_s16(b_chroma_hi, b_chroma_hi);
let y_lo_scaled = scale_y_u16_to_i16(pair_lo.0, y_off_v, y_scale_v, rnd_v);
let y_hi_scaled = scale_y_u16_to_i16(pair_hi.0, y_off_v, y_scale_v, rnd_v);
let r_lo_u8 = vqmovun_s16(vqaddq_s16(y_lo_scaled, r_dup_lo));
let g_lo_u8 = vqmovun_s16(vqaddq_s16(y_lo_scaled, g_dup_lo));
let b_lo_u8 = vqmovun_s16(vqaddq_s16(y_lo_scaled, b_dup_lo));
let r_hi_u8 = vqmovun_s16(vqaddq_s16(y_hi_scaled, r_dup_hi));
let g_hi_u8 = vqmovun_s16(vqaddq_s16(y_hi_scaled, g_dup_hi));
let b_hi_u8 = vqmovun_s16(vqaddq_s16(y_hi_scaled, b_dup_hi));
if ALPHA {
let alpha = vdup_n_u8(0xFF);
vst4_u8(
out.as_mut_ptr().add(x * 4),
uint8x8x4_t(r_lo_u8, g_lo_u8, b_lo_u8, alpha),
);
vst4_u8(
out.as_mut_ptr().add(x * 4 + 32),
uint8x8x4_t(r_hi_u8, g_hi_u8, b_hi_u8, alpha),
);
} else {
vst3_u8(
out.as_mut_ptr().add(x * 3),
uint8x8x3_t(r_lo_u8, g_lo_u8, b_lo_u8),
);
vst3_u8(
out.as_mut_ptr().add(x * 3 + 24),
uint8x8x3_t(r_hi_u8, g_hi_u8, b_hi_u8),
);
}
x += 16;
}
}
if x < width {
let tail_packed = &packed[x * 2..width * 2];
let tail_out = &mut out[x * bpp..width * bpp];
let tail_w = width - x;
scalar::y216_to_rgb_or_rgba_row::<ALPHA, BE>(
tail_packed,
tail_out,
tail_w,
matrix,
full_range,
);
}
}
}
#[inline]
#[target_feature(enable = "neon")]
pub(crate) unsafe fn y216_to_rgb_u16_or_rgba_u16_row<const ALPHA: bool, const BE: bool>(
packed: &[u16],
out: &mut [u16],
width: usize,
matrix: ColorMatrix,
full_range: bool,
) {
debug_assert!(width.is_multiple_of(2), "Y216 requires even width");
debug_assert!(packed.len() >= width * 2);
let bpp: usize = if ALPHA { 4 } else { 3 };
debug_assert!(out.len() >= width * bpp);
let coeffs = scalar::Coefficients::for_matrix(matrix);
let (y_off, y_scale, c_scale) = scalar::range_params_n::<16, 16>(full_range);
let bias = scalar::chroma_bias::<16>();
const RND: i32 = 1 << 14;
unsafe {
let mut x = 0usize;
if BE == HOST_NATIVE_BE {
let alpha_u16 = vdupq_n_u16(0xFFFF);
let rnd_v = vdupq_n_s32(RND);
let rnd64 = vdupq_n_s64(RND as i64);
let y_off_v = vdupq_n_s32(y_off);
let y_scale_d = vdup_n_s32(y_scale); let c_scale_v = vdupq_n_s32(c_scale);
let bias_v = vdupq_n_s32(bias);
let cru = vdupq_n_s32(coeffs.r_u());
let crv = vdupq_n_s32(coeffs.r_v());
let cgu = vdupq_n_s32(coeffs.g_u());
let cgv = vdupq_n_s32(coeffs.g_v());
let cbu = vdupq_n_s32(coeffs.b_u());
let cbv = vdupq_n_s32(coeffs.b_v());
while x + 16 <= width {
let pair_lo = vld2q_u16(packed.as_ptr().add(x * 2));
let pair_hi = vld2q_u16(packed.as_ptr().add(x * 2 + 16));
let u_lo_raw = vuzp1q_u16(pair_lo.1, pair_lo.1);
let v_lo_raw = vuzp2q_u16(pair_lo.1, pair_lo.1);
let u_hi_raw = vuzp1q_u16(pair_hi.1, pair_hi.1);
let v_hi_raw = vuzp2q_u16(pair_hi.1, pair_hi.1);
let u_d_lo = q15_shift(vaddq_s32(
vmulq_s32(
vsubq_s32(
vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(u_lo_raw))),
bias_v,
),
c_scale_v,
),
rnd_v,
));
let v_d_lo = q15_shift(vaddq_s32(
vmulq_s32(
vsubq_s32(
vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(v_lo_raw))),
bias_v,
),
c_scale_v,
),
rnd_v,
));
let u_d_hi = q15_shift(vaddq_s32(
vmulq_s32(
vsubq_s32(
vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(u_hi_raw))),
bias_v,
),
c_scale_v,
),
rnd_v,
));
let v_d_hi = q15_shift(vaddq_s32(
vmulq_s32(
vsubq_s32(
vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(v_hi_raw))),
bias_v,
),
c_scale_v,
),
rnd_v,
));
let r_ch_lo = chroma_i64x4(cru, crv, u_d_lo, v_d_lo, rnd64);
let g_ch_lo = chroma_i64x4(cgu, cgv, u_d_lo, v_d_lo, rnd64);
let b_ch_lo = chroma_i64x4(cbu, cbv, u_d_lo, v_d_lo, rnd64);
let r_ch_hi = chroma_i64x4(cru, crv, u_d_hi, v_d_hi, rnd64);
let g_ch_hi = chroma_i64x4(cgu, cgv, u_d_hi, v_d_hi, rnd64);
let b_ch_hi = chroma_i64x4(cbu, cbv, u_d_hi, v_d_hi, rnd64);
let r_cd_lo0 = vzip1q_s32(r_ch_lo, r_ch_lo);
let r_cd_lo1 = vzip2q_s32(r_ch_lo, r_ch_lo);
let g_cd_lo0 = vzip1q_s32(g_ch_lo, g_ch_lo);
let g_cd_lo1 = vzip2q_s32(g_ch_lo, g_ch_lo);
let b_cd_lo0 = vzip1q_s32(b_ch_lo, b_ch_lo);
let b_cd_lo1 = vzip2q_s32(b_ch_lo, b_ch_lo);
let r_cd_hi0 = vzip1q_s32(r_ch_hi, r_ch_hi);
let r_cd_hi1 = vzip2q_s32(r_ch_hi, r_ch_hi);
let g_cd_hi0 = vzip1q_s32(g_ch_hi, g_ch_hi);
let g_cd_hi1 = vzip2q_s32(g_ch_hi, g_ch_hi);
let b_cd_hi0 = vzip1q_s32(b_ch_hi, b_ch_hi);
let b_cd_hi1 = vzip2q_s32(b_ch_hi, b_ch_hi);
let y_lo_0 = vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(pair_lo.0)));
let y_lo_1 = vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(pair_lo.0)));
let y_hi_0 = vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(pair_hi.0)));
let y_hi_1 = vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(pair_hi.0)));
let ys_lo_0 = scale_y_u16_i64(y_lo_0, y_off_v, y_scale_d, rnd64);
let ys_lo_1 = scale_y_u16_i64(y_lo_1, y_off_v, y_scale_d, rnd64);
let ys_hi_0 = scale_y_u16_i64(y_hi_0, y_off_v, y_scale_d, rnd64);
let ys_hi_1 = scale_y_u16_i64(y_hi_1, y_off_v, y_scale_d, rnd64);
let r_lo_u16 = vcombine_u16(
vqmovun_s32(vaddq_s32(ys_lo_0, r_cd_lo0)),
vqmovun_s32(vaddq_s32(ys_lo_1, r_cd_lo1)),
);
let g_lo_u16 = vcombine_u16(
vqmovun_s32(vaddq_s32(ys_lo_0, g_cd_lo0)),
vqmovun_s32(vaddq_s32(ys_lo_1, g_cd_lo1)),
);
let b_lo_u16 = vcombine_u16(
vqmovun_s32(vaddq_s32(ys_lo_0, b_cd_lo0)),
vqmovun_s32(vaddq_s32(ys_lo_1, b_cd_lo1)),
);
let r_hi_u16 = vcombine_u16(
vqmovun_s32(vaddq_s32(ys_hi_0, r_cd_hi0)),
vqmovun_s32(vaddq_s32(ys_hi_1, r_cd_hi1)),
);
let g_hi_u16 = vcombine_u16(
vqmovun_s32(vaddq_s32(ys_hi_0, g_cd_hi0)),
vqmovun_s32(vaddq_s32(ys_hi_1, g_cd_hi1)),
);
let b_hi_u16 = vcombine_u16(
vqmovun_s32(vaddq_s32(ys_hi_0, b_cd_hi0)),
vqmovun_s32(vaddq_s32(ys_hi_1, b_cd_hi1)),
);
if ALPHA {
vst4q_u16(
out.as_mut_ptr().add(x * 4),
uint16x8x4_t(r_lo_u16, g_lo_u16, b_lo_u16, alpha_u16),
);
vst4q_u16(
out.as_mut_ptr().add(x * 4 + 32),
uint16x8x4_t(r_hi_u16, g_hi_u16, b_hi_u16, alpha_u16),
);
} else {
vst3q_u16(
out.as_mut_ptr().add(x * 3),
uint16x8x3_t(r_lo_u16, g_lo_u16, b_lo_u16),
);
vst3q_u16(
out.as_mut_ptr().add(x * 3 + 24),
uint16x8x3_t(r_hi_u16, g_hi_u16, b_hi_u16),
);
}
x += 16;
}
}
if x < width {
let tail_packed = &packed[x * 2..width * 2];
let tail_out = &mut out[x * bpp..width * bpp];
let tail_w = width - x;
scalar::y216_to_rgb_u16_or_rgba_u16_row::<ALPHA, BE>(
tail_packed,
tail_out,
tail_w,
matrix,
full_range,
);
}
}
}
#[inline]
#[target_feature(enable = "neon")]
pub(crate) unsafe fn y216_to_luma_row<const BE: bool>(
packed: &[u16],
out: &mut [u8],
width: usize,
) {
debug_assert!(width.is_multiple_of(2));
debug_assert!(packed.len() >= width * 2);
debug_assert!(out.len() >= width);
unsafe {
let mut x = 0usize;
if BE == HOST_NATIVE_BE {
while x + 16 <= width {
let pair_lo = vld2q_u16(packed.as_ptr().add(x * 2));
let pair_hi = vld2q_u16(packed.as_ptr().add(x * 2 + 16));
let y_lo_u8 = vshrn_n_u16::<8>(pair_lo.0);
let y_hi_u8 = vshrn_n_u16::<8>(pair_hi.0);
vst1_u8(out.as_mut_ptr().add(x), y_lo_u8);
vst1_u8(out.as_mut_ptr().add(x + 8), y_hi_u8);
x += 16;
}
}
if x < width {
let tail_packed = &packed[x * 2..width * 2];
let tail_out = &mut out[x..width];
let tail_w = width - x;
scalar::y216_to_luma_row::<BE>(tail_packed, tail_out, tail_w);
}
}
}
#[inline]
#[target_feature(enable = "neon")]
pub(crate) unsafe fn y216_to_luma_u16_row<const BE: bool>(
packed: &[u16],
out: &mut [u16],
width: usize,
) {
debug_assert!(width.is_multiple_of(2));
debug_assert!(packed.len() >= width * 2);
debug_assert!(out.len() >= width);
unsafe {
let mut x = 0usize;
if BE == HOST_NATIVE_BE {
while x + 16 <= width {
let pair_lo = vld2q_u16(packed.as_ptr().add(x * 2));
let pair_hi = vld2q_u16(packed.as_ptr().add(x * 2 + 16));
vst1q_u16(out.as_mut_ptr().add(x), pair_lo.0);
vst1q_u16(out.as_mut_ptr().add(x + 8), pair_hi.0);
x += 16;
}
}
if x < width {
let tail_packed = &packed[x * 2..width * 2];
let tail_out = &mut out[x..width];
let tail_w = width - x;
scalar::y216_to_luma_u16_row::<BE>(tail_packed, tail_out, tail_w);
}
}
}