use crate::filter_weights::FilterWeights;
use crate::neon::utils::{xvld1q_u16_x2, xvld1q_u16_x4};
use std::arch::aarch64::*;
#[must_use]
#[inline(always)]
fn conv_horiz_rgba_1_u16(
start_x: usize,
src: &[u16],
w0: int16x4_t,
store: int32x4_t,
) -> int32x4_t {
unsafe {
const CN: usize = 4;
let src_ptr = src.get_unchecked((start_x * CN)..);
let rgba_pixel = vld1_u16(src_ptr.as_ptr());
let lo = vreinterpret_s16_u16(rgba_pixel);
vmlal_s16(store, lo, w0)
}
}
#[must_use]
#[inline(always)]
fn conv_horiz_rgba_2_u16(
start_x: usize,
src: &[u16],
w0: int16x4_t,
w1: int16x8_t,
store: int32x4_t,
) -> int32x4_t {
unsafe {
const CN: usize = 4;
let src_ptr = src.get_unchecked((start_x * CN)..);
let rgb_pixel = vld1q_u16(src_ptr.as_ptr());
let wide = vreinterpretq_s16_u16(rgb_pixel);
let acc = vmlal_high_s16(store, wide, w1);
vmlal_s16(acc, vget_low_s16(wide), w0)
}
}
#[must_use]
#[inline(always)]
fn conv_horiz_rgba_4_u16(
start_x: usize,
src: &[u16],
weights: int16x4_t,
store: int32x4_t,
) -> int32x4_t {
unsafe {
const CN: usize = 4;
let src_ptr = src.get_unchecked((start_x * CN)..);
let rgba_pixel = xvld1q_u16_x2(src_ptr.as_ptr());
let hi = vreinterpretq_s16_u16(rgba_pixel.1);
let lo = vreinterpretq_s16_u16(rgba_pixel.0);
let acc = vmlal_high_lane_s16::<3>(store, hi, weights);
let acc = vmlal_lane_s16::<2>(acc, vget_low_s16(hi), weights);
let acc = vmlal_high_lane_s16::<1>(acc, lo, weights);
vmlal_lane_s16::<0>(acc, vget_low_s16(lo), weights)
}
}
#[must_use]
#[inline(always)]
fn conv_horiz_rgba_8_u16(
start_x: usize,
src: &[u16],
weights: int16x8_t,
store: int32x4_t,
) -> int32x4_t {
unsafe {
const CN: usize = 4;
let src_ptr = src.get_unchecked((start_x * CN)..);
let rgba_pixel = xvld1q_u16_x4(src_ptr.as_ptr());
let hi0 = vreinterpretq_s16_u16(rgba_pixel.1);
let lo0 = vreinterpretq_s16_u16(rgba_pixel.0);
let hi1 = vreinterpretq_s16_u16(rgba_pixel.3);
let lo1 = vreinterpretq_s16_u16(rgba_pixel.2);
let mut acc = vmlal_high_laneq_s16::<3>(store, hi0, weights);
acc = vmlal_laneq_s16::<2>(acc, vget_low_s16(hi0), weights);
acc = vmlal_high_laneq_s16::<1>(acc, lo0, weights);
acc = vmlal_laneq_s16::<0>(acc, vget_low_s16(lo0), weights);
acc = vmlal_high_laneq_s16::<7>(acc, hi1, weights);
acc = vmlal_laneq_s16::<6>(acc, vget_low_s16(hi1), weights);
acc = vmlal_high_laneq_s16::<5>(acc, lo1, weights);
acc = vmlal_laneq_s16::<4>(acc, vget_low_s16(lo1), weights);
acc
}
}
pub(crate) fn convolve_horizontal_rgba_neon_rows_4_lb_u16(
src: &[u16],
src_stride: usize,
dst: &mut [u16],
dst_stride: usize,
filter_weights: &FilterWeights<i16>,
bit_depth: u32,
) {
unsafe {
const CN: usize = 4;
const PRECISION: i32 = 15;
const ROUNDING_CONST: i32 = 1 << (PRECISION - 1);
let init = vdupq_n_s32(ROUNDING_CONST);
let v_max_colors = vdup_n_u16((1 << bit_depth) - 1);
let (row0_ref, rest) = dst.split_at_mut(dst_stride);
let (row1_ref, rest) = rest.split_at_mut(dst_stride);
let (row2_ref, row3_ref) = rest.split_at_mut(dst_stride);
let iter_row0 = row0_ref.as_chunks_mut::<CN>().0;
let iter_row1 = row1_ref.as_chunks_mut::<CN>().0;
let iter_row2 = row2_ref.as_chunks_mut::<CN>().0;
let iter_row3 = row3_ref.as_chunks_mut::<CN>().0;
for (((((chunk0, chunk1), chunk2), chunk3), &bounds), weights) in iter_row0
.iter_mut()
.zip(iter_row1.iter_mut())
.zip(iter_row2.iter_mut())
.zip(iter_row3.iter_mut())
.zip(filter_weights.bounds.iter())
.zip(
filter_weights
.weights
.chunks_exact(filter_weights.aligned_size),
)
{
let mut jx = 0usize;
let mut store_0 = init;
let mut store_1 = init;
let mut store_2 = init;
let mut store_3 = init;
let bounds_size = bounds.size;
let src0 = src;
let src1 = src0.get_unchecked(src_stride..);
let src2 = src1.get_unchecked(src_stride..);
let src3 = src2.get_unchecked(src_stride..);
while jx + 8 <= bounds_size {
let bounds_start = bounds.start + jx;
let w_ptr = weights.get_unchecked(jx..);
let weights_set = vld1q_s16(w_ptr.as_ptr());
store_0 = conv_horiz_rgba_8_u16(bounds_start, src0, weights_set, store_0);
store_1 = conv_horiz_rgba_8_u16(bounds_start, src1, weights_set, store_1);
store_2 = conv_horiz_rgba_8_u16(bounds_start, src2, weights_set, store_2);
store_3 = conv_horiz_rgba_8_u16(bounds_start, src3, weights_set, store_3);
jx += 8;
}
while jx + 4 <= bounds_size {
let bounds_start = bounds.start + jx;
let w_ptr = weights.get_unchecked(jx..);
let weights = vld1_s16(w_ptr.as_ptr());
store_0 = conv_horiz_rgba_4_u16(bounds_start, src0, weights, store_0);
store_1 = conv_horiz_rgba_4_u16(bounds_start, src1, weights, store_1);
store_2 = conv_horiz_rgba_4_u16(bounds_start, src2, weights, store_2);
store_3 = conv_horiz_rgba_4_u16(bounds_start, src3, weights, store_3);
jx += 4;
}
while jx + 2 <= bounds_size {
let w_ptr = weights.get_unchecked(jx..);
let bounds_start = bounds.start + jx;
let w0 = vld1_dup_s16(w_ptr.as_ptr());
let w1 = vld1q_dup_s16(w_ptr.get_unchecked(1..).as_ptr());
store_0 = conv_horiz_rgba_2_u16(bounds_start, src0, w0, w1, store_0);
store_1 = conv_horiz_rgba_2_u16(bounds_start, src1, w0, w1, store_1);
store_2 = conv_horiz_rgba_2_u16(bounds_start, src2, w0, w1, store_2);
store_3 = conv_horiz_rgba_2_u16(bounds_start, src3, w0, w1, store_3);
jx += 2;
}
while jx < bounds_size {
let w_ptr = weights.get_unchecked(jx..);
let bounds_start = bounds.start + jx;
let weight0 = vld1_dup_s16(w_ptr.as_ptr());
store_0 = conv_horiz_rgba_1_u16(bounds_start, src0, weight0, store_0);
store_1 = conv_horiz_rgba_1_u16(bounds_start, src1, weight0, store_1);
store_2 = conv_horiz_rgba_1_u16(bounds_start, src2, weight0, store_2);
store_3 = conv_horiz_rgba_1_u16(bounds_start, src3, weight0, store_3);
jx += 1;
}
let j0 = vqshrun_n_s32::<PRECISION>(store_0);
let j1 = vqshrun_n_s32::<PRECISION>(store_1);
let j2 = vqshrun_n_s32::<PRECISION>(store_2);
let j3 = vqshrun_n_s32::<PRECISION>(store_3);
let store_16_0 = vmin_u16(j0, v_max_colors);
let store_16_1 = vmin_u16(j1, v_max_colors);
let store_16_2 = vmin_u16(j2, v_max_colors);
let store_16_3 = vmin_u16(j3, v_max_colors);
vst1_u16(chunk0.as_mut_ptr(), store_16_0);
vst1_u16(chunk1.as_mut_ptr(), store_16_1);
vst1_u16(chunk2.as_mut_ptr(), store_16_2);
vst1_u16(chunk3.as_mut_ptr(), store_16_3);
}
}
}
pub(crate) fn convolve_horizontal_rgba_neon_u16_lb_row(
src: &[u16],
dst: &mut [u16],
filter_weights: &FilterWeights<i16>,
bit_depth: u32,
) {
unsafe {
const CN: usize = 4;
let v_max_colors = vdup_n_u16((1 << bit_depth) - 1);
const PRECISION: i32 = 15;
const ROUNDING_CONST: i32 = 1 << (PRECISION - 1);
for ((dst, bounds), weights) in dst
.as_chunks_mut::<CN>()
.0
.iter_mut()
.zip(filter_weights.bounds.iter())
.zip(
filter_weights
.weights
.chunks_exact(filter_weights.aligned_size),
)
{
let bounds_size = bounds.size;
let mut jx = 0usize;
let mut store = vdupq_n_s32(ROUNDING_CONST);
while jx + 8 <= bounds_size {
let bounds_start = bounds.start + jx;
let w_ptr = weights.get_unchecked(jx..);
let weights_set = vld1q_s16(w_ptr.as_ptr());
store = conv_horiz_rgba_8_u16(bounds_start, src, weights_set, store);
jx += 8;
}
while jx + 4 <= bounds_size {
let w_ptr = weights.get_unchecked(jx..);
let weights = vld1_s16(w_ptr.as_ptr());
let bounds_start = bounds.start + jx;
store = conv_horiz_rgba_4_u16(bounds_start, src, weights, store);
jx += 4;
}
while jx + 2 <= bounds_size {
let w_ptr = weights.get_unchecked(jx..);
let bounds_start = bounds.start + jx;
let weight0 = vld1_dup_s16(w_ptr.as_ptr());
let weight1 = vld1q_dup_s16(w_ptr.get_unchecked(1..).as_ptr());
store = conv_horiz_rgba_2_u16(bounds_start, src, weight0, weight1, store);
jx += 2;
}
while jx < bounds_size {
let w_ptr = weights.get_unchecked(jx..);
let weight0 = vld1_dup_s16(w_ptr.as_ptr());
let bounds_start = bounds.start + jx;
store = conv_horiz_rgba_1_u16(bounds_start, src, weight0, store);
jx += 1;
}
let store_16_0 = vmin_u16(vqshrun_n_s32::<PRECISION>(store), v_max_colors);
vst1_u16(dst.as_mut_ptr(), store_16_0);
}
}
}