// Auto-generated file. Do not edit! // Template: src/qs8-vlrelu/neon.c.in // Generator: tools/xngen // // Copyright 2022 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 #include #include "xnnpack/common.h" #include "xnnpack/vunary.h" void xnn_qu8_vlrelu_ukernel__neon_u8( size_t batch, const uint8_t* input, uint8_t* output, const struct xnn_qu8_lrelu_params params[restrict XNN_MIN_ELEMENTS(1)]) XNN_OOB_READS { assert(batch != 0); assert(batch % sizeof(uint8_t) == 0); assert(input != NULL); assert(output != NULL); const uint16x8_t vinput_zero_point = vld1q_dup_u16(¶ms->scalar.input_zero_point); const int16x8_t vpositive_multiplier = vdupq_n_s16(-params->scalar.positive_multiplier); const int16x8_t vnegative_multiplier = vdupq_n_s16(-params->scalar.negative_multiplier); const int16x8_t voutput_zero_point = vld1q_dup_s16(¶ms->scalar.output_zero_point); for (; batch >= 8 * sizeof(uint8_t); batch -= 8 * sizeof(uint8_t)) { const uint8x8_t vx = vld1_u8(input); input += 8; int16x8_t vacc = vreinterpretq_s16_u16(vsubw_u8(vinput_zero_point, vx)); const uint16x8_t vmask = vcltq_s16(vacc, vmovq_n_s16(0)); vacc = vshlq_n_s16(vacc, 7); const int16x8_t vmultiplier = vbslq_s16(vmask, vpositive_multiplier, vnegative_multiplier); vacc = vqrdmulhq_s16(vacc, vmultiplier); vacc = vqaddq_s16(vacc, voutput_zero_point); const uint8x8_t vy = vqmovun_s16(vacc); vst1_u8(output, vy); output += 8; } if XNN_UNLIKELY(batch != 0) { assert(batch >= 1 * sizeof(uint8_t)); assert(batch <= 7 * sizeof(uint8_t)); const uint8x8_t vx = vld1_u8(input); int16x8_t vacc = vreinterpretq_s16_u16(vsubw_u8(vinput_zero_point, vx)); const uint16x8_t vmask = vcltq_s16(vacc, vmovq_n_s16(0)); vacc = vshlq_n_s16(vacc, 7); const int16x8_t vmultiplier = vbslq_s16(vmask, vpositive_multiplier, vnegative_multiplier); vacc = vqrdmulhq_s16(vacc, vmultiplier); vacc = vqaddq_s16(vacc, voutput_zero_point); uint8x8_t vy = vqmovun_s16(vacc); if (batch & (4 * sizeof(uint8_t))) { vst1_lane_u32((void*) output, vreinterpret_u32_u8(vy), 0); output += 4; vy = vext_u8(vy, vy, 4); } if (batch & (2 * sizeof(uint8_t))) { vst1_lane_u16((void*) output, vreinterpret_u16_u8(vy), 0); output += 2; vy = vext_u8(vy, vy, 2); } if (batch & (1 * sizeof(uint8_t))) { vst1_lane_u8(output, vy, 0); } } }