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// Auto-generated file. Do not edit!
// Template: src/qs8-vaddc/neon.c.in
// Generator: tools/xngen
//
// Copyright 2020 Google LLC
//
// This source code is licensed under the BSD-style license found in the
// LICENSE file in the root directory of this source tree.
#include <assert.h>
#include <arm_neon.h>
#include <xnnpack/vaddsub.h>
void xnn_qu8_vaddc_minmax_ukernel__neon_ld64_x32(
size_t n,
const uint8_t* input_a,
const uint8_t* input_b,
uint8_t* output,
const union xnn_qu8_addsub_minmax_params params[restrict XNN_MIN_ELEMENTS(1)]) XNN_OOB_READS
{
const uint8x8_t va_zero_point = vld1_dup_u8(&params->neon.a_zero_point);
const int32x4_t va_multiplier = vld1q_dup_s32(&params->neon.a_multiplier);
const int32x4_t vright_shift = vld1q_dup_s32(&params->neon.right_shift);
const int16x8_t voutput_zero_point = vld1q_dup_s16(&params->neon.output_zero_point);
const uint8x16_t voutput_min = vld1q_dup_u8(&params->neon.output_min);
const uint8x16_t voutput_max = vld1q_dup_u8(&params->neon.output_max);
const int32_t vxb = (int32_t) *input_b - (int32_t) params->neon.b_zero_point;
const int32_t vb = params->neon.b_multiplier;
const int32x4_t vbias = vdupq_n_s32(vxb * vb);
for (; n >= 32 * sizeof(uint8_t); n -= 32 * sizeof(uint8_t)) {
const uint8x8_t va01234567 = vld1_u8(input_a); input_a += 8;
const uint8x8_t va89ABCDEF = vld1_u8(input_a); input_a += 8;
const uint8x8_t vaGHIJKLMN = vld1_u8(input_a); input_a += 8;
const uint8x8_t vaOPQRSTUV = vld1_u8(input_a); input_a += 8;
const int16x8_t vxa01234567 = vreinterpretq_s16_u16(vsubl_u8(va01234567, va_zero_point));
const int16x8_t vxa89ABCDEF = vreinterpretq_s16_u16(vsubl_u8(va89ABCDEF, va_zero_point));
const int16x8_t vxaGHIJKLMN = vreinterpretq_s16_u16(vsubl_u8(vaGHIJKLMN, va_zero_point));
const int16x8_t vxaOPQRSTUV = vreinterpretq_s16_u16(vsubl_u8(vaOPQRSTUV, va_zero_point));
int32x4_t vacc0123 = vmlaq_s32(vbias, vmovl_s16(vget_low_s16(vxa01234567)), va_multiplier);
int32x4_t vacc4567 = vmlaq_s32(vbias, vmovl_s16(vget_high_s16(vxa01234567)), va_multiplier);
int32x4_t vacc89AB = vmlaq_s32(vbias, vmovl_s16(vget_low_s16(vxa89ABCDEF)), va_multiplier);
int32x4_t vaccCDEF = vmlaq_s32(vbias, vmovl_s16(vget_high_s16(vxa89ABCDEF)), va_multiplier);
int32x4_t vaccGHIJ = vmlaq_s32(vbias, vmovl_s16(vget_low_s16(vxaGHIJKLMN)), va_multiplier);
int32x4_t vaccKLMN = vmlaq_s32(vbias, vmovl_s16(vget_high_s16(vxaGHIJKLMN)), va_multiplier);
int32x4_t vaccOPQR = vmlaq_s32(vbias, vmovl_s16(vget_low_s16(vxaOPQRSTUV)), va_multiplier);
int32x4_t vaccSTUV = vmlaq_s32(vbias, vmovl_s16(vget_high_s16(vxaOPQRSTUV)), va_multiplier);
vacc0123 = vrshlq_s32(vacc0123, vright_shift);
vacc4567 = vrshlq_s32(vacc4567, vright_shift);
vacc89AB = vrshlq_s32(vacc89AB, vright_shift);
vaccCDEF = vrshlq_s32(vaccCDEF, vright_shift);
vaccGHIJ = vrshlq_s32(vaccGHIJ, vright_shift);
vaccKLMN = vrshlq_s32(vaccKLMN, vright_shift);
vaccOPQR = vrshlq_s32(vaccOPQR, vright_shift);
vaccSTUV = vrshlq_s32(vaccSTUV, vright_shift);
const int16x8_t vacc01234567 = vqaddq_s16(vcombine_s16(vqmovn_s32(vacc0123), vqmovn_s32(vacc4567)), voutput_zero_point);
const int16x8_t vacc89ABCDEF = vqaddq_s16(vcombine_s16(vqmovn_s32(vacc89AB), vqmovn_s32(vaccCDEF)), voutput_zero_point);
const int16x8_t vaccGHIJKLMN = vqaddq_s16(vcombine_s16(vqmovn_s32(vaccGHIJ), vqmovn_s32(vaccKLMN)), voutput_zero_point);
const int16x8_t vaccOPQRSTUV = vqaddq_s16(vcombine_s16(vqmovn_s32(vaccOPQR), vqmovn_s32(vaccSTUV)), voutput_zero_point);
uint8x16_t vout0123456789ABCDEF = vcombine_u8(vqmovun_s16(vacc01234567), vqmovun_s16(vacc89ABCDEF));
uint8x16_t voutGHIJKLMNOPQRSTUV = vcombine_u8(vqmovun_s16(vaccGHIJKLMN), vqmovun_s16(vaccOPQRSTUV));
vout0123456789ABCDEF = vmaxq_u8(vout0123456789ABCDEF, voutput_min);
voutGHIJKLMNOPQRSTUV = vmaxq_u8(voutGHIJKLMNOPQRSTUV, voutput_min);
vout0123456789ABCDEF = vminq_u8(vout0123456789ABCDEF, voutput_max);
voutGHIJKLMNOPQRSTUV = vminq_u8(voutGHIJKLMNOPQRSTUV, voutput_max);
vst1q_u8(output, vout0123456789ABCDEF); output += 16;
vst1q_u8(output, voutGHIJKLMNOPQRSTUV); output += 16;
}
if XNN_UNLIKELY(n != 0) {
do {
const uint8x8_t va01234567 = vld1_u8(input_a); input_a += 8;
const int16x8_t vxa01234567 = vreinterpretq_s16_u16(vsubl_u8(va01234567, va_zero_point));
int32x4_t vacc0123 = vmlaq_s32(vbias, vmovl_s16(vget_low_s16(vxa01234567)), va_multiplier);
int32x4_t vacc4567 = vmlaq_s32(vbias, vmovl_s16(vget_high_s16(vxa01234567)), va_multiplier);
vacc0123 = vrshlq_s32(vacc0123, vright_shift);
vacc4567 = vrshlq_s32(vacc4567, vright_shift);
const int16x8_t vacc01234567 = vqaddq_s16(vcombine_s16(vqmovn_s32(vacc0123), vqmovn_s32(vacc4567)), voutput_zero_point);
uint8x8_t vout01234567 = vqmovun_s16(vacc01234567);
vout01234567 = vmax_u8(vout01234567, vget_low_u8(voutput_min));
vout01234567 = vmin_u8(vout01234567, vget_low_u8(voutput_max));
if XNN_LIKELY(n >= (8 * sizeof(uint8_t))) {
vst1_u8(output, vout01234567); output += 8;
n -= 8 * sizeof(uint8_t);
} else {
if (n & (4 * sizeof(uint8_t))) {
vst1_lane_u32((void*) output, vreinterpret_u32_u8(vout01234567), 0); output += 4;
vout01234567 = vext_u8(vout01234567, vout01234567, 4);
}
if (n & (2 * sizeof(uint8_t))) {
vst1_lane_u16((void*) output, vreinterpret_u16_u8(vout01234567), 0); output += 2;
vout01234567 = vext_u8(vout01234567, vout01234567, 2);
}
if (n & (1 * sizeof(uint8_t))) {
vst1_lane_u8(output, vout01234567, 0);
}
n = 0;
}
} while (n != 0);
}
}