forked from LeenkxTeam/LNXSDK
720 lines
22 KiB
C
720 lines
22 KiB
C
#pragma once
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#include "types.h"
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#include <string.h>
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/*! \file float32x4.h
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\brief Provides 128bit four-element floating point SIMD operations which are mapped to equivalent SSE or Neon operations.
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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#if defined(KINC_SSE)
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static inline kinc_float32x4_t kinc_float32x4_intrin_load(const float *values) {
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return _mm_load_ps(values);
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}
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static inline kinc_float32x4_t kinc_float32x4_intrin_load_unaligned(const float *values) {
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return _mm_loadu_ps(values);
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}
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static inline kinc_float32x4_t kinc_float32x4_load(float a, float b, float c, float d) {
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return _mm_set_ps(d, c, b, a);
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}
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static inline kinc_float32x4_t kinc_float32x4_load_all(float t) {
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return _mm_set_ps1(t);
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}
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static inline void kinc_float32x4_store(float *destination, kinc_float32x4_t value) {
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_mm_store_ps(destination, value);
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}
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static inline void kinc_float32x4_store_unaligned(float *destination, kinc_float32x4_t value) {
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_mm_storeu_ps(destination, value);
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}
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static inline float kinc_float32x4_get(kinc_float32x4_t t, int index) {
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union {
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__m128 value;
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float elements[4];
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} converter;
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converter.value = t;
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return converter.elements[index];
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}
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static inline kinc_float32x4_t kinc_float32x4_abs(kinc_float32x4_t t) {
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__m128 mask = _mm_set_ps1(-0.f);
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return _mm_andnot_ps(mask, t);
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}
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static inline kinc_float32x4_t kinc_float32x4_add(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_add_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_div(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_div_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_mul(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_mul_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_neg(kinc_float32x4_t t) {
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__m128 negative = _mm_set_ps1(-1.0f);
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return _mm_mul_ps(t, negative);
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}
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static inline kinc_float32x4_t kinc_float32x4_reciprocal_approximation(kinc_float32x4_t t) {
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return _mm_rcp_ps(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_reciprocal_sqrt_approximation(kinc_float32x4_t t) {
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return _mm_rsqrt_ps(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_sub(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_sub_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_sqrt(kinc_float32x4_t t) {
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return _mm_sqrt_ps(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_max(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_max_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_min(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_min_ps(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpeq(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_cmpeq_ps(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpge(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_cmpge_ps(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpgt(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_cmpgt_ps(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmple(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_cmple_ps(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmplt(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_cmplt_ps(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpneq(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_cmpneq_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_sel(kinc_float32x4_t a, kinc_float32x4_t b, kinc_float32x4_mask_t mask) {
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return _mm_xor_ps(b, _mm_and_ps(mask, _mm_xor_ps(a, b)));
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}
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static inline kinc_float32x4_t kinc_float32x4_or(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_or_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_and(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_and_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_xor(kinc_float32x4_t a, kinc_float32x4_t b) {
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return _mm_xor_ps(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_not(kinc_float32x4_t t) {
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__m128 zeroes = _mm_setzero_ps();
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return _mm_xor_ps(t, _mm_cmpeq_ps(zeroes, zeroes));
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}
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#define kinc_float32x4_shuffle_custom(abcd, efgh, left_1, left_2, right_1, right_2) \
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_mm_shuffle_ps((abcd), (efgh), KINC_SHUFFLE_TABLE((left_1), (left_2), (right_1), (right_2)))
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static inline kinc_float32x4_t kinc_float32x4_shuffle_aebf(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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// aka unpacklo aka zip1 aka interleave low
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return _mm_unpacklo_ps(abcd, efgh);
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_cgdh(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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// aka unpackhi aka zip2 aka interleave high
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return _mm_unpackhi_ps(abcd, efgh);
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_abef(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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// aka movelh
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return _mm_movelh_ps(abcd, efgh);
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_ghcd(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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// aka movehl
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return _mm_movehl_ps(abcd, efgh);
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}
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#elif defined(KINC_NEON)
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static inline kinc_float32x4_t kinc_float32x4_intrin_load(const float *values) {
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return vld1q_f32(values);
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}
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static inline kinc_float32x4_t kinc_float32x4_intrin_load_unaligned(const float *values) {
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return kinc_float32x4_intrin_load(values);
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}
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static inline kinc_float32x4_t kinc_float32x4_load(float a, float b, float c, float d) {
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return (kinc_float32x4_t){a, b, c, d};
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}
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static inline kinc_float32x4_t kinc_float32x4_load_all(float t) {
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return (kinc_float32x4_t){t, t, t, t};
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}
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static inline void kinc_float32x4_store(float *destination, kinc_float32x4_t value) {
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vst1q_f32(destination, value);
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}
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static inline void kinc_float32x4_store_unaligned(float *destination, kinc_float32x4_t value) {
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kinc_float32x4_store(destination, value);
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}
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static inline float kinc_float32x4_get(kinc_float32x4_t t, int index) {
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return t[index];
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}
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static inline kinc_float32x4_t kinc_float32x4_abs(kinc_float32x4_t t) {
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return vabsq_f32(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_add(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vaddq_f32(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_div(kinc_float32x4_t a, kinc_float32x4_t b) {
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#if defined(__aarch64__)
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return vdivq_f32(a, b);
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#else
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float32x4_t inv = vrecpeq_f32(b);
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float32x4_t restep = vrecpsq_f32(b, inv);
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inv = vmulq_f32(restep, inv);
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return vmulq_f32(a, inv);
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#endif
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}
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static inline kinc_float32x4_t kinc_float32x4_mul(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vmulq_f32(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_neg(kinc_float32x4_t t) {
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return vnegq_f32(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_reciprocal_approximation(kinc_float32x4_t t) {
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return vrecpeq_f32(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_reciprocal_sqrt_approximation(kinc_float32x4_t t) {
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return vrsqrteq_f32(t);
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}
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static inline kinc_float32x4_t kinc_float32x4_sub(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vsubq_f32(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_sqrt(kinc_float32x4_t t) {
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#if defined(__aarch64__)
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return vsqrtq_f32(t);
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#else
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return vmulq_f32(t, vrsqrteq_f32(t));
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#endif
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}
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static inline kinc_float32x4_t kinc_float32x4_max(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vmaxq_f32(a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_min(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vminq_f32(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpeq(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vceqq_f32(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpge(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vcgeq_f32(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpgt(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vcgtq_f32(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmple(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vcleq_f32(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmplt(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vcltq_f32(a, b);
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpneq(kinc_float32x4_t a, kinc_float32x4_t b) {
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return vmvnq_u32(vceqq_f32(a, b));
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}
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static inline kinc_float32x4_t kinc_float32x4_sel(kinc_float32x4_t a, kinc_float32x4_t b, kinc_float32x4_mask_t mask) {
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return vbslq_f32(mask, a, b);
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}
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static inline kinc_float32x4_t kinc_float32x4_or(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32x4_t acvt = vreinterpretq_u32_f32(a);
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uint32x4_t bcvt = vreinterpretq_u32_f32(b);
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return vreinterpretq_f32_u32(vorrq_u32(acvt, bcvt));
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}
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static inline kinc_float32x4_t kinc_float32x4_and(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32x4_t acvt = vreinterpretq_u32_f32(a);
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uint32x4_t bcvt = vreinterpretq_u32_f32(b);
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return vreinterpretq_f32_u32(vandq_u32(acvt, bcvt));
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}
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static inline kinc_float32x4_t kinc_float32x4_xor(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32x4_t acvt = vreinterpretq_u32_f32(a);
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uint32x4_t bcvt = vreinterpretq_u32_f32(b);
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return vreinterpretq_f32_u32(veorq_u32(acvt, bcvt));
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}
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static inline kinc_float32x4_t kinc_float32x4_not(kinc_float32x4_t t) {
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uint32x4_t tcvt = vreinterpretq_u32_f32(t);
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return vreinterpretq_f32_u32(vmvnq_u32(tcvt));
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}
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#define kinc_float32x4_shuffle_custom(abcd, efgh, left_1, left_2, right_1, right_2) \
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(kinc_float32x4_t) { \
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vgetq_lane_f32((abcd), ((left_1)&0x3)), vgetq_lane_f32((abcd), ((left_2)&0x3)), vgetq_lane_f32((efgh), ((right_1)&0x3)), \
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vgetq_lane_f32((efgh), ((right_2)&0x3)) \
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_aebf(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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#if defined(__aarch64__)
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return vzip1q_f32(abcd, efgh);
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#else
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float a = vgetq_lane_f32(abcd, 0);
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float b = vgetq_lane_f32(abcd, 1);
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float e = vgetq_lane_f32(efgh, 0);
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float f = vgetq_lane_f32(efgh, 1);
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return (kinc_float32x4_t){a, e, b, f};
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#endif
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_cgdh(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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#if defined(__aarch64__)
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return vzip2q_f32(abcd, efgh);
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#else
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float c = vgetq_lane_f32(abcd, 2);
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float d = vgetq_lane_f32(abcd, 3);
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float g = vgetq_lane_f32(efgh, 2);
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float h = vgetq_lane_f32(efgh, 3);
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return (kinc_float32x4_t){c, g, d, h};
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#endif
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_abef(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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float32x2_t ab = vget_low_f32(abcd);
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float32x2_t ef = vget_low_f32(efgh);
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return vcombine_f32(ab, ef);
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}
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static inline kinc_float32x4_t kinc_float32x4_shuffle_ghcd(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
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float32x2_t cd = vget_high_f32(abcd);
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float32x2_t gh = vget_high_f32(efgh);
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return vcombine_f32(gh, cd);
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}
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#else
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#include <math.h>
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static inline kinc_float32x4_t kinc_float32x4_intrin_load(const float *values) {
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kinc_float32x4_t value;
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value.values[0] = values[0];
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value.values[1] = values[1];
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value.values[2] = values[2];
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value.values[3] = values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_intrin_load_unaligned(const float *values) {
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return kinc_float32x4_intrin_load(values);
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}
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static inline kinc_float32x4_t kinc_float32x4_load(float a, float b, float c, float d) {
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kinc_float32x4_t value;
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value.values[0] = a;
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value.values[1] = b;
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value.values[2] = c;
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value.values[3] = d;
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_load_all(float t) {
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kinc_float32x4_t value;
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value.values[0] = t;
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value.values[1] = t;
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value.values[2] = t;
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value.values[3] = t;
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return value;
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}
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static inline void kinc_float32x4_store(float *destination, kinc_float32x4_t value) {
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destination[0] = value.values[0];
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destination[1] = value.values[1];
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destination[2] = value.values[2];
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destination[3] = value.values[3];
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}
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static inline void kinc_float32x4_store_unaligned(float *destination, kinc_float32x4_t value) {
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kinc_float32x4_store(destination, value);
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}
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static inline float kinc_float32x4_get(kinc_float32x4_t t, int index) {
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return t.values[index];
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}
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static inline kinc_float32x4_t kinc_float32x4_abs(kinc_float32x4_t t) {
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kinc_float32x4_t value;
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value.values[0] = kinc_abs(t.values[0]);
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value.values[1] = kinc_abs(t.values[1]);
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value.values[2] = kinc_abs(t.values[2]);
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value.values[3] = kinc_abs(t.values[3]);
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_add(kinc_float32x4_t a, kinc_float32x4_t b) {
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kinc_float32x4_t value;
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value.values[0] = a.values[0] + b.values[0];
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value.values[1] = a.values[1] + b.values[1];
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value.values[2] = a.values[2] + b.values[2];
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value.values[3] = a.values[3] + b.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_div(kinc_float32x4_t a, kinc_float32x4_t b) {
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kinc_float32x4_t value;
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value.values[0] = a.values[0] / b.values[0];
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value.values[1] = a.values[1] / b.values[1];
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value.values[2] = a.values[2] / b.values[2];
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value.values[3] = a.values[3] / b.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_mul(kinc_float32x4_t a, kinc_float32x4_t b) {
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kinc_float32x4_t value;
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value.values[0] = a.values[0] * b.values[0];
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value.values[1] = a.values[1] * b.values[1];
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value.values[2] = a.values[2] * b.values[2];
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value.values[3] = a.values[3] * b.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_neg(kinc_float32x4_t t) {
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kinc_float32x4_t value;
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value.values[0] = -t.values[0];
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value.values[1] = -t.values[1];
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value.values[2] = -t.values[2];
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value.values[3] = -t.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_reciprocal_approximation(kinc_float32x4_t t) {
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kinc_float32x4_t value;
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value.values[0] = 1.0f / t.values[0];
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value.values[1] = 1.0f / t.values[1];
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value.values[2] = 1.0f / t.values[2];
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value.values[3] = 1.0f / t.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_reciprocal_sqrt_approximation(kinc_float32x4_t t) {
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kinc_float32x4_t value;
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value.values[0] = 1.0f / sqrtf(t.values[0]);
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value.values[1] = 1.0f / sqrtf(t.values[1]);
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value.values[2] = 1.0f / sqrtf(t.values[2]);
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value.values[3] = 1.0f / sqrtf(t.values[3]);
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_sub(kinc_float32x4_t a, kinc_float32x4_t b) {
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kinc_float32x4_t value;
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value.values[0] = a.values[0] - b.values[0];
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value.values[1] = a.values[1] - b.values[1];
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value.values[2] = a.values[2] - b.values[2];
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value.values[3] = a.values[3] - b.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_sqrt(kinc_float32x4_t t) {
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kinc_float32x4_t value;
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value.values[0] = sqrtf(t.values[0]);
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value.values[1] = sqrtf(t.values[1]);
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value.values[2] = sqrtf(t.values[2]);
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value.values[3] = sqrtf(t.values[3]);
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_max(kinc_float32x4_t a, kinc_float32x4_t b) {
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kinc_float32x4_t value;
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value.values[0] = kinc_max(a.values[0], b.values[0]);
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value.values[1] = kinc_max(a.values[1], b.values[1]);
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value.values[2] = kinc_max(a.values[2], b.values[2]);
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value.values[3] = kinc_max(a.values[3], b.values[3]);
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_min(kinc_float32x4_t a, kinc_float32x4_t b) {
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kinc_float32x4_t value;
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value.values[0] = kinc_min(a.values[0], b.values[0]);
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value.values[1] = kinc_min(a.values[1], b.values[1]);
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value.values[2] = kinc_min(a.values[2], b.values[2]);
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value.values[3] = kinc_min(a.values[3], b.values[3]);
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return value;
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpeq(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t mask_cvt[4];
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mask_cvt[0] = a.values[0] == b.values[0] ? 0xffffffff : 0;
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mask_cvt[1] = a.values[1] == b.values[1] ? 0xffffffff : 0;
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mask_cvt[2] = a.values[2] == b.values[2] ? 0xffffffff : 0;
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mask_cvt[3] = a.values[3] == b.values[3] ? 0xffffffff : 0;
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kinc_float32x4_mask_t mask;
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memcpy(&mask.values[0], &mask_cvt[0], sizeof(mask_cvt));
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return mask;
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpge(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t mask_cvt[4];
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mask_cvt[0] = a.values[0] >= b.values[0] ? 0xffffffff : 0;
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mask_cvt[1] = a.values[1] >= b.values[1] ? 0xffffffff : 0;
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mask_cvt[2] = a.values[2] >= b.values[2] ? 0xffffffff : 0;
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mask_cvt[3] = a.values[3] >= b.values[3] ? 0xffffffff : 0;
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kinc_float32x4_mask_t mask;
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memcpy(&mask.values[0], &mask_cvt[0], sizeof(mask_cvt));
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return mask;
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpgt(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t mask_cvt[4];
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mask_cvt[0] = a.values[0] > b.values[0] ? 0xffffffff : 0;
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mask_cvt[1] = a.values[1] > b.values[1] ? 0xffffffff : 0;
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mask_cvt[2] = a.values[2] > b.values[2] ? 0xffffffff : 0;
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mask_cvt[3] = a.values[3] > b.values[3] ? 0xffffffff : 0;
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kinc_float32x4_mask_t mask;
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memcpy(&mask.values[0], &mask_cvt[0], sizeof(mask_cvt));
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return mask;
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmple(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t mask_cvt[4];
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mask_cvt[0] = a.values[0] <= b.values[0] ? 0xffffffff : 0;
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mask_cvt[1] = a.values[1] <= b.values[1] ? 0xffffffff : 0;
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mask_cvt[2] = a.values[2] <= b.values[2] ? 0xffffffff : 0;
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mask_cvt[3] = a.values[3] <= b.values[3] ? 0xffffffff : 0;
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kinc_float32x4_mask_t mask;
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memcpy(&mask.values[0], &mask_cvt[0], sizeof(mask_cvt));
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return mask;
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmplt(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t mask_cvt[4];
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mask_cvt[0] = a.values[0] < b.values[0] ? 0xffffffff : 0;
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mask_cvt[1] = a.values[1] < b.values[1] ? 0xffffffff : 0;
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mask_cvt[2] = a.values[2] < b.values[2] ? 0xffffffff : 0;
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mask_cvt[3] = a.values[3] < b.values[3] ? 0xffffffff : 0;
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kinc_float32x4_mask_t mask;
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memcpy(&mask.values[0], &mask_cvt[0], sizeof(mask_cvt));
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return mask;
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}
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static inline kinc_float32x4_mask_t kinc_float32x4_cmpneq(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t mask_cvt[4];
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mask_cvt[0] = a.values[0] != b.values[0] ? 0xffffffff : 0;
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mask_cvt[1] = a.values[1] != b.values[1] ? 0xffffffff : 0;
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mask_cvt[2] = a.values[2] != b.values[2] ? 0xffffffff : 0;
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mask_cvt[3] = a.values[3] != b.values[3] ? 0xffffffff : 0;
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kinc_float32x4_mask_t mask;
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memcpy(&mask.values[0], &mask_cvt[0], sizeof(mask_cvt));
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return mask;
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}
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static inline kinc_float32x4_t kinc_float32x4_sel(kinc_float32x4_t a, kinc_float32x4_t b, kinc_float32x4_mask_t mask) {
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kinc_float32x4_t value;
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value.values[0] = mask.values[0] != 0.0f ? a.values[0] : b.values[0];
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value.values[1] = mask.values[1] != 0.0f ? a.values[1] : b.values[1];
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value.values[2] = mask.values[2] != 0.0f ? a.values[2] : b.values[2];
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value.values[3] = mask.values[3] != 0.0f ? a.values[3] : b.values[3];
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_or(kinc_float32x4_t a, kinc_float32x4_t b) {
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uint32_t acvt[4];
|
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uint32_t bcvt[4];
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memcpy(&acvt[0], &a.values[0], sizeof(a));
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memcpy(&bcvt[0], &b.values[0], sizeof(b));
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acvt[0] |= bcvt[0];
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acvt[1] |= bcvt[1];
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acvt[2] |= bcvt[2];
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acvt[3] |= bcvt[3];
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|
|
kinc_float32x4_t value;
|
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memcpy(&value.values[0], &acvt[0], sizeof(acvt));
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return value;
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}
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static inline kinc_float32x4_t kinc_float32x4_and(kinc_float32x4_t a, kinc_float32x4_t b) {
|
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uint32_t acvt[4];
|
|
uint32_t bcvt[4];
|
|
memcpy(&acvt[0], &a.values[0], sizeof(a));
|
|
memcpy(&bcvt[0], &b.values[0], sizeof(b));
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|
|
acvt[0] &= bcvt[0];
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|
acvt[1] &= bcvt[1];
|
|
acvt[2] &= bcvt[2];
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acvt[3] &= bcvt[3];
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|
|
kinc_float32x4_t value;
|
|
memcpy(&value.values[0], &acvt[0], sizeof(acvt));
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|
return value;
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|
}
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static inline kinc_float32x4_t kinc_float32x4_xor(kinc_float32x4_t a, kinc_float32x4_t b) {
|
|
uint32_t acvt[4];
|
|
uint32_t bcvt[4];
|
|
memcpy(&acvt[0], &a.values[0], sizeof(a));
|
|
memcpy(&bcvt[0], &b.values[0], sizeof(b));
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|
|
acvt[0] ^= bcvt[0];
|
|
acvt[1] ^= bcvt[1];
|
|
acvt[2] ^= bcvt[2];
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|
acvt[3] ^= bcvt[3];
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|
|
kinc_float32x4_t value;
|
|
memcpy(&value.values[0], &acvt[0], sizeof(acvt));
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|
|
return value;
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}
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|
static inline kinc_float32x4_t kinc_float32x4_not(kinc_float32x4_t t) {
|
|
uint32_t tcvt[4];
|
|
memcpy(&tcvt[0], &t.values[0], sizeof(t));
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|
|
tcvt[0] = ~tcvt[0];
|
|
tcvt[1] = ~tcvt[1];
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|
tcvt[2] = ~tcvt[2];
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|
tcvt[3] = ~tcvt[3];
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|
|
kinc_float32x4_t value;
|
|
memcpy(&value.values[0], &tcvt[0], sizeof(tcvt));
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|
|
return value;
|
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}
|
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static inline kinc_float32x4_t kinc_float32x4_shuffle_custom(kinc_float32x4_t abcd, kinc_float32x4_t efgh, const uint32_t left_1, const uint32_t left_2,
|
|
const uint32_t right_1, const uint32_t right_2) {
|
|
kinc_float32x4_t value;
|
|
|
|
value.values[0] = abcd.values[left_1 & 0x3];
|
|
value.values[1] = abcd.values[left_2 & 0x3];
|
|
value.values[2] = efgh.values[right_1 & 0x3];
|
|
value.values[3] = efgh.values[right_2 & 0x3];
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|
|
|
return value;
|
|
}
|
|
|
|
static inline kinc_float32x4_t kinc_float32x4_shuffle_aebf(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
|
|
kinc_float32x4_t value;
|
|
|
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value.values[0] = abcd.values[0];
|
|
value.values[1] = efgh.values[0];
|
|
value.values[2] = abcd.values[1];
|
|
value.values[3] = efgh.values[1];
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|
|
return value;
|
|
}
|
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|
|
static inline kinc_float32x4_t kinc_float32x4_shuffle_cgdh(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
|
|
kinc_float32x4_t value;
|
|
|
|
value.values[0] = abcd.values[2];
|
|
value.values[1] = efgh.values[2];
|
|
value.values[2] = abcd.values[3];
|
|
value.values[3] = efgh.values[3];
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|
|
|
return value;
|
|
}
|
|
|
|
static inline kinc_float32x4_t kinc_float32x4_shuffle_abef(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
|
|
kinc_float32x4_t value;
|
|
|
|
value.values[0] = abcd.values[0];
|
|
value.values[1] = abcd.values[1];
|
|
value.values[2] = efgh.values[0];
|
|
value.values[3] = efgh.values[1];
|
|
|
|
return value;
|
|
}
|
|
|
|
static inline kinc_float32x4_t kinc_float32x4_shuffle_ghcd(kinc_float32x4_t abcd, kinc_float32x4_t efgh) {
|
|
kinc_float32x4_t value;
|
|
|
|
value.values[0] = efgh.values[2];
|
|
value.values[1] = efgh.values[3];
|
|
value.values[2] = abcd.values[2];
|
|
value.values[3] = abcd.values[3];
|
|
|
|
return value;
|
|
}
|
|
|
|
#endif
|
|
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|