use core::arch::x86_64::*;
use crate::convolution::optimisations::Normalizer32;
use crate::pixels::U16;
use crate::{simd_utils, ImageView, ImageViewMut};
#[inline]
pub(crate) fn horiz_convolution(
src_view: &impl ImageView<Pixel = U16>,
dst_view: &mut impl ImageViewMut<Pixel = U16>,
offset: u32,
normalizer: &Normalizer32,
) {
let dst_height = dst_view.height();
let src_iter = src_view.iter_4_rows(offset, dst_height + offset);
let dst_iter = dst_view.iter_4_rows_mut();
for (src_rows, dst_rows) in src_iter.zip(dst_iter) {
unsafe {
horiz_convolution_four_rows(src_rows, dst_rows, normalizer);
}
}
let yy = dst_height - dst_height % 4;
let src_rows = src_view.iter_rows(yy + offset);
let dst_rows = dst_view.iter_rows_mut(yy);
for (src_row, dst_row) in src_rows.zip(dst_rows) {
unsafe {
horiz_convolution_one_row(src_row, dst_row, normalizer);
}
}
}
#[target_feature(enable = "sse4.1")]
unsafe fn horiz_convolution_four_rows(
src_rows: [&[U16]; 4],
dst_rows: [&mut [U16]; 4],
normalizer: &Normalizer32,
) {
let precision = normalizer.precision();
let half_error = 1i64 << (precision - 1);
let mut ll_buf = [0i64; 2];
let l0l1_shuffle = _mm_set_epi8(-1, -1, -1, -1, -1, -1, 3, 2, -1, -1, -1, -1, -1, -1, 1, 0);
let l2l3_shuffle = _mm_set_epi8(-1, -1, -1, -1, -1, -1, 7, 6, -1, -1, -1, -1, -1, -1, 5, 4);
let l4l5_shuffle = _mm_set_epi8(-1, -1, -1, -1, -1, -1, 11, 10, -1, -1, -1, -1, -1, -1, 9, 8);
let l6l7_shuffle = _mm_set_epi8(
-1, -1, -1, -1, -1, -1, 15, 14, -1, -1, -1, -1, -1, -1, 13, 12,
);
for (dst_x, chunk) in normalizer.chunks().iter().enumerate() {
let mut x = chunk.start as usize;
let mut ll_sum = [_mm_set1_epi64x(0); 4];
let mut coeffs = chunk.values();
let coeffs_by_8 = coeffs.chunks_exact(8);
coeffs = coeffs_by_8.remainder();
for k in coeffs_by_8 {
let coeff01_i64x2 = _mm_set_epi64x(k[1] as i64, k[0] as i64);
let coeff23_i64x2 = _mm_set_epi64x(k[3] as i64, k[2] as i64);
let coeff45_i64x2 = _mm_set_epi64x(k[5] as i64, k[4] as i64);
let coeff67_i64x2 = _mm_set_epi64x(k[7] as i64, k[6] as i64);
for i in 0..4 {
let mut sum = ll_sum[i];
let source = simd_utils::loadu_si128(src_rows[i], x);
let l0l1_i64x2 = _mm_shuffle_epi8(source, l0l1_shuffle);
sum = _mm_add_epi64(sum, _mm_mul_epi32(l0l1_i64x2, coeff01_i64x2));
let l2l3_i64x2 = _mm_shuffle_epi8(source, l2l3_shuffle);
sum = _mm_add_epi64(sum, _mm_mul_epi32(l2l3_i64x2, coeff23_i64x2));
let l4l5_i64x2 = _mm_shuffle_epi8(source, l4l5_shuffle);
sum = _mm_add_epi64(sum, _mm_mul_epi32(l4l5_i64x2, coeff45_i64x2));
let l6l7_i64x2 = _mm_shuffle_epi8(source, l6l7_shuffle);
sum = _mm_add_epi64(sum, _mm_mul_epi32(l6l7_i64x2, coeff67_i64x2));
ll_sum[i] = sum;
}
x += 8;
}
let coeffs_by_4 = coeffs.chunks_exact(4);
coeffs = coeffs_by_4.remainder();
for k in coeffs_by_4 {
let coeff01_i64x2 = _mm_set_epi64x(k[1] as i64, k[0] as i64);
let coeff23_i64x2 = _mm_set_epi64x(k[3] as i64, k[2] as i64);
for i in 0..4 {
let mut sum = ll_sum[i];
let source = simd_utils::loadl_epi64(src_rows[i], x);
let l0l1_i64x2 = _mm_shuffle_epi8(source, l0l1_shuffle);
sum = _mm_add_epi64(sum, _mm_mul_epi32(l0l1_i64x2, coeff01_i64x2));
let l2l3_i64x2 = _mm_shuffle_epi8(source, l2l3_shuffle);
sum = _mm_add_epi64(sum, _mm_mul_epi32(l2l3_i64x2, coeff23_i64x2));
ll_sum[i] = sum;
}
x += 4;
}
let coeffs_by_2 = coeffs.chunks_exact(2);
coeffs = coeffs_by_2.remainder();
for k in coeffs_by_2 {
let coeff01_i64x2 = _mm_set_epi64x(k[1] as i64, k[0] as i64);
for i in 0..4 {
let source = simd_utils::loadl_epi32(src_rows[i], x);
let l_i64x2 = _mm_shuffle_epi8(source, l0l1_shuffle);
ll_sum[i] = _mm_add_epi64(ll_sum[i], _mm_mul_epi32(l_i64x2, coeff01_i64x2));
}
x += 2;
}
if let Some(&k) = coeffs.first() {
let coeff01_i64x2 = _mm_set_epi64x(0, k as i64);
for i in 0..4 {
let pixel = src_rows[i].get_unchecked(x).0 as i64;
let source = _mm_set_epi64x(0, pixel);
ll_sum[i] = _mm_add_epi64(ll_sum[i], _mm_mul_epi32(source, coeff01_i64x2));
}
}
for i in 0..4 {
_mm_storeu_si128(ll_buf.as_mut_ptr() as *mut __m128i, ll_sum[i]);
let dst_pixel = dst_rows[i].get_unchecked_mut(dst_x);
dst_pixel.0 = normalizer.clip(ll_buf.iter().sum::<i64>() + half_error);
}
}
}
#[target_feature(enable = "sse4.1")]
unsafe fn horiz_convolution_one_row(
src_row: &[U16],
dst_row: &mut [U16],
normalizer: &Normalizer32,
) {
let precision = normalizer.precision();
let half_error = 1i64 << (precision - 1);
let mut ll_buf = [0i64; 2];
let l01_shuffle = _mm_set_epi8(-1, -1, -1, -1, -1, -1, 3, 2, -1, -1, -1, -1, -1, -1, 1, 0);
let l23_shuffle = _mm_set_epi8(-1, -1, -1, -1, -1, -1, 7, 6, -1, -1, -1, -1, -1, -1, 5, 4);
let l45_shuffle = _mm_set_epi8(-1, -1, -1, -1, -1, -1, 11, 10, -1, -1, -1, -1, -1, -1, 9, 8);
let l67_shuffle = _mm_set_epi8(
-1, -1, -1, -1, -1, -1, 15, 14, -1, -1, -1, -1, -1, -1, 13, 12,
);
for (dst_x, chunk) in normalizer.chunks().iter().enumerate() {
let mut x = chunk.start as usize;
let mut ll_sum = _mm_set1_epi64x(0);
let mut coeffs = chunk.values();
let coeffs_by_8 = coeffs.chunks_exact(8);
coeffs = coeffs_by_8.remainder();
for k in coeffs_by_8 {
let coeff01_i64x2 = _mm_set_epi64x(k[1] as i64, k[0] as i64);
let coeff23_i64x2 = _mm_set_epi64x(k[3] as i64, k[2] as i64);
let coeff45_i64x2 = _mm_set_epi64x(k[5] as i64, k[4] as i64);
let coeff67_i64x2 = _mm_set_epi64x(k[7] as i64, k[6] as i64);
let source = simd_utils::loadu_si128(src_row, x);
let l_i64x2 = _mm_shuffle_epi8(source, l01_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff01_i64x2));
let l_i64x2 = _mm_shuffle_epi8(source, l23_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff23_i64x2));
let l_i64x2 = _mm_shuffle_epi8(source, l45_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff45_i64x2));
let l_i64x2 = _mm_shuffle_epi8(source, l67_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff67_i64x2));
x += 8;
}
let coeffs_by_4 = coeffs.chunks_exact(4);
coeffs = coeffs_by_4.remainder();
for k in coeffs_by_4 {
let coeff01_i64x2 = _mm_set_epi64x(k[1] as i64, k[0] as i64);
let coeff23_i64x2 = _mm_set_epi64x(k[3] as i64, k[2] as i64);
let source = simd_utils::loadl_epi64(src_row, x);
let l_i64x2 = _mm_shuffle_epi8(source, l01_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff01_i64x2));
let l_i64x2 = _mm_shuffle_epi8(source, l23_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff23_i64x2));
x += 4;
}
let coeffs_by_2 = coeffs.chunks_exact(2);
coeffs = coeffs_by_2.remainder();
for k in coeffs_by_2 {
let coeff01_i64x2 = _mm_set_epi64x(k[1] as i64, k[0] as i64);
let source = simd_utils::loadl_epi32(src_row, x);
let l_i64x2 = _mm_shuffle_epi8(source, l01_shuffle);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(l_i64x2, coeff01_i64x2));
x += 2;
}
if let Some(&k) = coeffs.first() {
let coeff01_i64x2 = _mm_set_epi64x(0, k as i64);
let pixel = src_row.get_unchecked(x).0 as i64;
let source = _mm_set_epi64x(0, pixel);
ll_sum = _mm_add_epi64(ll_sum, _mm_mul_epi32(source, coeff01_i64x2));
}
_mm_storeu_si128(ll_buf.as_mut_ptr() as *mut __m128i, ll_sum);
let dst_pixel = dst_row.get_unchecked_mut(dst_x);
dst_pixel.0 = normalizer.clip(ll_buf[0] + ll_buf[1] + half_error);
}
}