518 lines
20 KiB
C
518 lines
20 KiB
C
/* SPDX-License-Identifier: MIT
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*
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* Permission is hereby granted, free of charge, to any person
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* obtaining a copy of this software and associated documentation
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* files (the "Software"), to deal in the Software without
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* restriction, including without limitation the rights to use, copy,
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* modify, merge, publish, distribute, sublicense, and/or sell copies
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* of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* Copyright:
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* 2020 Evan Nemerson <evan@nemerson.com>
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* 2021 Zhi An Ng <zhin@google.com> (Copyright owned by Google, LLC)
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* 2021 Décio Luiz Gazzoni Filho <decio@decpp.net>
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* 2023 Yi-Yen Chung <eric681@andestech.com> (Copyright owned by Andes Technology)
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* 2023 Chi-Wei Chu <wewe5215@gapp.nthu.edu.tw> (Copyright owned by NTHU pllab)
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*/
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#if !defined(SIMDE_ARM_NEON_LD1Q_X4_H)
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#define SIMDE_ARM_NEON_LD1Q_X4_H
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#include "types.h"
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HEDLEY_DIAGNOSTIC_PUSH
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SIMDE_DISABLE_UNWANTED_DIAGNOSTICS
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#if HEDLEY_GCC_VERSION_CHECK(7,0,0)
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SIMDE_DIAGNOSTIC_DISABLE_MAYBE_UNINITIAZILED_
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#endif
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SIMDE_BEGIN_DECLS_
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#if !defined(SIMDE_BUG_INTEL_857088)
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SIMDE_FUNCTION_ATTRIBUTES
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simde_float16x8x4_t
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simde_vld1q_f16_x4(simde_float16_t const ptr[HEDLEY_ARRAY_PARAM(32)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && defined(SIMDE_ARM_NEON_FP16) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_f16_x4(ptr);
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#else
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simde_float16x8_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE) && SIMDE_ARCH_RISCV_ZVFH
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a_[0].sv128 = __riscv_vle16_v_f16m1((_Float16 *)ptr , 8);
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a_[1].sv128 = __riscv_vle16_v_f16m1((_Float16 *)(ptr+8) , 8);
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a_[2].sv128 = __riscv_vle16_v_f16m1((_Float16 *)(ptr+16) , 8);
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a_[3].sv128 = __riscv_vle16_v_f16m1((_Float16 *)(ptr+24) , 8);
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#else
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for (size_t i = 0; i < 32; i++) {
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a_[i / 8].values[i % 8] = ptr[i];
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}
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#endif
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simde_float16x8x4_t s_ = { { simde_float16x8_from_private(a_[0]),
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simde_float16x8_from_private(a_[1]),
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simde_float16x8_from_private(a_[2]),
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simde_float16x8_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_f16_x4
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#define vld1q_f16_x4(a) simde_vld1q_f16_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_float32x4x4_t
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simde_vld1q_f32_x4(simde_float32 const ptr[HEDLEY_ARRAY_PARAM(16)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_f32_x4(ptr);
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#else
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simde_float32x4_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle32_v_f32m1(ptr , 4);
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a_[1].sv128 = __riscv_vle32_v_f32m1(ptr+4 , 4);
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a_[2].sv128 = __riscv_vle32_v_f32m1(ptr+8 , 4);
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a_[3].sv128 = __riscv_vle32_v_f32m1(ptr+12 , 4);
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#else
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for (size_t i = 0; i < 16; i++) {
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a_[i / 4].values[i % 4] = ptr[i];
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}
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#endif
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simde_float32x4x4_t s_ = { { simde_float32x4_from_private(a_[0]),
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simde_float32x4_from_private(a_[1]),
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simde_float32x4_from_private(a_[2]),
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simde_float32x4_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_f32_x4
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#define vld1q_f32_x4(a) simde_vld1q_f32_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_float64x2x4_t
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simde_vld1q_f64_x4(simde_float64 const ptr[HEDLEY_ARRAY_PARAM(8)]) {
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#if \
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defined(SIMDE_ARM_NEON_A64V8_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || HEDLEY_GCC_VERSION_CHECK(8,0,0)) && \
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(!defined(__clang__) || SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0))
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return vld1q_f64_x4(ptr);
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#else
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simde_float64x2_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle64_v_f64m1(ptr , 2);
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a_[1].sv128 = __riscv_vle64_v_f64m1(ptr+2 , 2);
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a_[2].sv128 = __riscv_vle64_v_f64m1(ptr+4 , 2);
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a_[3].sv128 = __riscv_vle64_v_f64m1(ptr+6 , 2);
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#else
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for (size_t i = 0; i < 8; i++) {
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a_[i / 2].values[i % 2] = ptr[i];
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}
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#endif
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simde_float64x2x4_t s_ = { { simde_float64x2_from_private(a_[0]),
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simde_float64x2_from_private(a_[1]),
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simde_float64x2_from_private(a_[2]),
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simde_float64x2_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
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#undef vld1q_f64_x4
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#define vld1q_f64_x4(a) simde_vld1q_f64_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_int8x16x4_t
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simde_vld1q_s8_x4(int8_t const ptr[HEDLEY_ARRAY_PARAM(64)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_s8_x4(ptr);
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#else
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simde_int8x16_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle8_v_i8m1(ptr , 16);
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a_[1].sv128 = __riscv_vle8_v_i8m1(ptr+16 , 16);
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a_[2].sv128 = __riscv_vle8_v_i8m1(ptr+32 , 16);
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a_[3].sv128 = __riscv_vle8_v_i8m1(ptr+48 , 16);
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#else
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for (size_t i = 0; i < 64; i++) {
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a_[i / 16].values[i % 16] = ptr[i];
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}
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#endif
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simde_int8x16x4_t s_ = { { simde_int8x16_from_private(a_[0]),
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simde_int8x16_from_private(a_[1]),
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simde_int8x16_from_private(a_[2]),
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simde_int8x16_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_s8_x4
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#define vld1q_s8_x4(a) simde_vld1q_s8_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_int16x8x4_t
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simde_vld1q_s16_x4(int16_t const ptr[HEDLEY_ARRAY_PARAM(32)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_s16_x4(ptr);
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#else
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simde_int16x8_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle16_v_i16m1(ptr , 8);
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a_[1].sv128 = __riscv_vle16_v_i16m1(ptr+8 , 8);
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a_[2].sv128 = __riscv_vle16_v_i16m1(ptr+16 , 8);
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a_[3].sv128 = __riscv_vle16_v_i16m1(ptr+24 , 8);
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#else
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for (size_t i = 0; i < 32; i++) {
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a_[i / 8].values[i % 8] = ptr[i];
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}
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#endif
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simde_int16x8x4_t s_ = { { simde_int16x8_from_private(a_[0]),
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simde_int16x8_from_private(a_[1]),
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simde_int16x8_from_private(a_[2]),
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simde_int16x8_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_s16_x4
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#define vld1q_s16_x4(a) simde_vld1q_s16_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_int32x4x4_t
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simde_vld1q_s32_x4(int32_t const ptr[HEDLEY_ARRAY_PARAM(16)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_s32_x4(ptr);
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#else
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simde_int32x4_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle32_v_i32m1(ptr , 4);
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a_[1].sv128 = __riscv_vle32_v_i32m1(ptr+4 , 4);
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a_[2].sv128 = __riscv_vle32_v_i32m1(ptr+8 , 4);
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a_[3].sv128 = __riscv_vle32_v_i32m1(ptr+12 , 4);
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#else
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for (size_t i = 0; i < 16; i++) {
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a_[i / 4].values[i % 4] = ptr[i];
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}
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#endif
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simde_int32x4x4_t s_ = { { simde_int32x4_from_private(a_[0]),
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simde_int32x4_from_private(a_[1]),
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simde_int32x4_from_private(a_[2]),
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simde_int32x4_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_s32_x4
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#define vld1q_s32_x4(a) simde_vld1q_s32_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_int64x2x4_t
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simde_vld1q_s64_x4(int64_t const ptr[HEDLEY_ARRAY_PARAM(8)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_s64_x4(ptr);
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#else
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simde_int64x2_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle64_v_i64m1(ptr , 2);
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a_[1].sv128 = __riscv_vle64_v_i64m1(ptr+2 , 2);
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a_[2].sv128 = __riscv_vle64_v_i64m1(ptr+4 , 2);
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a_[3].sv128 = __riscv_vle64_v_i64m1(ptr+6 , 2);
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#else
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for (size_t i = 0; i < 8; i++) {
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a_[i / 2].values[i % 2] = ptr[i];
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}
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#endif
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simde_int64x2x4_t s_ = { { simde_int64x2_from_private(a_[0]),
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simde_int64x2_from_private(a_[1]),
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simde_int64x2_from_private(a_[1]),
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simde_int64x2_from_private(a_[1]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_s64_x4
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#define vld1q_s64_x4(a) simde_vld1q_s64_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_uint8x16x4_t
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simde_vld1q_u8_x4(uint8_t const ptr[HEDLEY_ARRAY_PARAM(64)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_u8_x4(ptr);
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#else
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simde_uint8x16_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle8_v_u8m1(ptr , 16);
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a_[1].sv128 = __riscv_vle8_v_u8m1(ptr+16 , 16);
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a_[2].sv128 = __riscv_vle8_v_u8m1(ptr+32 , 16);
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a_[3].sv128 = __riscv_vle8_v_u8m1(ptr+48 , 16);
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#else
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for (size_t i = 0; i < 64; i++) {
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a_[i / 16].values[i % 16] = ptr[i];
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}
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#endif
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simde_uint8x16x4_t s_ = { { simde_uint8x16_from_private(a_[0]),
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simde_uint8x16_from_private(a_[1]),
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simde_uint8x16_from_private(a_[2]),
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simde_uint8x16_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_u8_x4
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#define vld1q_u8_x4(a) simde_vld1q_u8_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_uint16x8x4_t
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simde_vld1q_u16_x4(uint16_t const ptr[HEDLEY_ARRAY_PARAM(32)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_u16_x4(ptr);
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#else
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simde_uint16x8_private a_[4];
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#if defined(SIMDE_RISCV_V_NATIVE)
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a_[0].sv128 = __riscv_vle16_v_u16m1(ptr , 8);
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a_[1].sv128 = __riscv_vle16_v_u16m1(ptr+8 , 8);
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a_[2].sv128 = __riscv_vle16_v_u16m1(ptr+16 , 8);
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a_[3].sv128 = __riscv_vle16_v_u16m1(ptr+24 , 8);
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#else
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for (size_t i = 0; i < 32; i++) {
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a_[i / 8].values[i % 8] = ptr[i];
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}
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#endif
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simde_uint16x8x4_t s_ = { { simde_uint16x8_from_private(a_[0]),
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simde_uint16x8_from_private(a_[1]),
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simde_uint16x8_from_private(a_[2]),
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simde_uint16x8_from_private(a_[3]) } };
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return s_;
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#endif
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}
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#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
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#undef vld1q_u16_x4
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#define vld1q_u16_x4(a) simde_vld1q_u16_x4((a))
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#endif
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SIMDE_FUNCTION_ATTRIBUTES
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simde_uint32x4x4_t
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simde_vld1q_u32_x4(uint32_t const ptr[HEDLEY_ARRAY_PARAM(16)]) {
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#if \
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defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
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(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
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(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
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return vld1q_u32_x4(ptr);
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#else
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simde_uint32x4_private a_[4];
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|
#if defined(SIMDE_RISCV_V_NATIVE)
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|
a_[0].sv128 = __riscv_vle32_v_u32m1(ptr , 4);
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|
a_[1].sv128 = __riscv_vle32_v_u32m1(ptr+4 , 4);
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|
a_[2].sv128 = __riscv_vle32_v_u32m1(ptr+8 , 4);
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|
a_[3].sv128 = __riscv_vle32_v_u32m1(ptr+12 , 4);
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|
#else
|
|
for (size_t i = 0; i < 16; i++) {
|
|
a_[i / 4].values[i % 4] = ptr[i];
|
|
}
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|
#endif
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simde_uint32x4x4_t s_ = { { simde_uint32x4_from_private(a_[0]),
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|
simde_uint32x4_from_private(a_[1]),
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|
simde_uint32x4_from_private(a_[2]),
|
|
simde_uint32x4_from_private(a_[3]) } };
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|
return s_;
|
|
#endif
|
|
}
|
|
#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
|
|
#undef vld1q_u32_x4
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|
#define vld1q_u32_x4(a) simde_vld1q_u32_x4((a))
|
|
#endif
|
|
|
|
SIMDE_FUNCTION_ATTRIBUTES
|
|
simde_uint64x2x4_t
|
|
simde_vld1q_u64_x4(uint64_t const ptr[HEDLEY_ARRAY_PARAM(8)]) {
|
|
#if \
|
|
defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
|
|
(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE))) && \
|
|
(!defined(__clang__) || (SIMDE_DETECT_CLANG_VERSION_CHECK(7,0,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
|
|
return vld1q_u64_x4(ptr);
|
|
#else
|
|
simde_uint64x2_private a_[4];
|
|
#if defined(SIMDE_RISCV_V_NATIVE)
|
|
a_[0].sv128 = __riscv_vle64_v_u64m1(ptr , 2);
|
|
a_[1].sv128 = __riscv_vle64_v_u64m1(ptr+2 , 2);
|
|
a_[2].sv128 = __riscv_vle64_v_u64m1(ptr+4 , 2);
|
|
a_[3].sv128 = __riscv_vle64_v_u64m1(ptr+6 , 2);
|
|
#else
|
|
for (size_t i = 0; i < 8; i++) {
|
|
a_[i / 2].values[i % 2] = ptr[i];
|
|
}
|
|
#endif
|
|
simde_uint64x2x4_t s_ = { { simde_uint64x2_from_private(a_[0]),
|
|
simde_uint64x2_from_private(a_[1]),
|
|
simde_uint64x2_from_private(a_[2]),
|
|
simde_uint64x2_from_private(a_[3]) } };
|
|
return s_;
|
|
#endif
|
|
}
|
|
#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
|
|
#undef vld1q_u64_x4
|
|
#define vld1q_u64_x4(a) simde_vld1q_u64_x4((a))
|
|
#endif
|
|
|
|
SIMDE_FUNCTION_ATTRIBUTES
|
|
simde_poly8x16x4_t
|
|
simde_vld1q_p8_x4(simde_poly8_t const ptr[HEDLEY_ARRAY_PARAM(64)]) {
|
|
#if \
|
|
defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
|
|
(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,5,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
|
|
return vld1q_p8_x4(ptr);
|
|
#else
|
|
simde_poly8x16_private a_[4];
|
|
#if defined(SIMDE_RISCV_V_NATIVE)
|
|
a_[0].sv128 = __riscv_vle8_v_u8m1(ptr , 16);
|
|
a_[1].sv128 = __riscv_vle8_v_u8m1(ptr+16 , 16);
|
|
a_[2].sv128 = __riscv_vle8_v_u8m1(ptr+32 , 16);
|
|
a_[3].sv128 = __riscv_vle8_v_u8m1(ptr+48 , 16);
|
|
#else
|
|
for (size_t i = 0; i < 64; i++) {
|
|
a_[i / 16].values[i % 16] = ptr[i];
|
|
}
|
|
#endif
|
|
simde_poly8x16x4_t s_ = { { simde_poly8x16_from_private(a_[0]),
|
|
simde_poly8x16_from_private(a_[1]),
|
|
simde_poly8x16_from_private(a_[2]),
|
|
simde_poly8x16_from_private(a_[3]) } };
|
|
return s_;
|
|
#endif
|
|
}
|
|
#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
|
|
#undef vld1q_p8_x4
|
|
#define vld1q_p8_x4(a) simde_vld1q_p8_x4((a))
|
|
#endif
|
|
|
|
SIMDE_FUNCTION_ATTRIBUTES
|
|
simde_poly16x8x4_t
|
|
simde_vld1q_p16_x4(simde_poly16_t const ptr[HEDLEY_ARRAY_PARAM(32)]) {
|
|
#if \
|
|
defined(SIMDE_ARM_NEON_A32V7_NATIVE) && \
|
|
(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,5,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
|
|
return vld1q_p16_x4(ptr);
|
|
#else
|
|
simde_poly16x8_private a_[4];
|
|
#if defined(SIMDE_RISCV_V_NATIVE)
|
|
a_[0].sv128 = __riscv_vle16_v_u16m1(ptr , 8);
|
|
a_[1].sv128 = __riscv_vle16_v_u16m1(ptr+8 , 8);
|
|
a_[2].sv128 = __riscv_vle16_v_u16m1(ptr+16 , 8);
|
|
a_[3].sv128 = __riscv_vle16_v_u16m1(ptr+24 , 8);
|
|
#else
|
|
for (size_t i = 0; i < 32; i++) {
|
|
a_[i / 8].values[i % 8] = ptr[i];
|
|
}
|
|
#endif
|
|
simde_poly16x8x4_t s_ = { { simde_poly16x8_from_private(a_[0]),
|
|
simde_poly16x8_from_private(a_[1]),
|
|
simde_poly16x8_from_private(a_[2]),
|
|
simde_poly16x8_from_private(a_[3]) } };
|
|
return s_;
|
|
#endif
|
|
}
|
|
#if defined(SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
|
|
#undef vld1q_p16_x4
|
|
#define vld1q_p16_x4(a) simde_vld1q_p16_x4((a))
|
|
#endif
|
|
|
|
SIMDE_FUNCTION_ATTRIBUTES
|
|
simde_poly64x2x4_t
|
|
simde_vld1q_p64_x4(simde_poly64_t const ptr[HEDLEY_ARRAY_PARAM(8)]) {
|
|
#if \
|
|
defined(SIMDE_ARM_NEON_A32V8_NATIVE) && \
|
|
(!defined(HEDLEY_GCC_VERSION) || (HEDLEY_GCC_VERSION_CHECK(8,5,0) && defined(SIMDE_ARM_NEON_A64V8_NATIVE)))
|
|
return vld1q_p64_x4(ptr);
|
|
#else
|
|
simde_poly64x2_private a_[4];
|
|
#if defined(SIMDE_RISCV_V_NATIVE)
|
|
a_[0].sv128 = __riscv_vle64_v_u64m1(ptr , 2);
|
|
a_[1].sv128 = __riscv_vle64_v_u64m1(ptr+2 , 2);
|
|
a_[2].sv128 = __riscv_vle64_v_u64m1(ptr+4 , 2);
|
|
a_[3].sv128 = __riscv_vle64_v_u64m1(ptr+6 , 2);
|
|
#else
|
|
for (size_t i = 0; i < 8; i++) {
|
|
a_[i / 2].values[i % 2] = ptr[i];
|
|
}
|
|
#endif
|
|
simde_poly64x2x4_t s_ = { { simde_poly64x2_from_private(a_[0]),
|
|
simde_poly64x2_from_private(a_[1]),
|
|
simde_poly64x2_from_private(a_[2]),
|
|
simde_poly64x2_from_private(a_[3]) } };
|
|
return s_;
|
|
#endif
|
|
}
|
|
#if defined(SIMDE_ARM_NEON_A32V8_ENABLE_NATIVE_ALIASES)
|
|
#undef vld1q_p64_x4
|
|
#define vld1q_p64_x4(a) simde_vld1q_p64_x4((a))
|
|
#endif
|
|
|
|
SIMDE_FUNCTION_ATTRIBUTES
|
|
simde_bfloat16x8x4_t
|
|
simde_vld1q_bf16_x4(simde_bfloat16 const ptr[HEDLEY_ARRAY_PARAM(32)]) {
|
|
#if defined(SIMDE_ARM_NEON_A32V8_NATIVE) && defined(SIMDE_ARM_NEON_BF16)
|
|
return vld1q_bf16_x4(ptr);
|
|
#else
|
|
simde_bfloat16x8_private a_[4];
|
|
for (size_t i = 0; i < 32; i++) {
|
|
a_[i / 8].values[i % 8] = ptr[i];
|
|
}
|
|
simde_bfloat16x8x4_t s_ = { { simde_bfloat16x8_from_private(a_[0]),
|
|
simde_bfloat16x8_from_private(a_[1]),
|
|
simde_bfloat16x8_from_private(a_[2]),
|
|
simde_bfloat16x8_from_private(a_[3]) } };
|
|
return s_;
|
|
#endif
|
|
}
|
|
#if defined(SIMDE_ARM_NEON_A32V8_ENABLE_NATIVE_ALIASES)
|
|
#undef vld1q_bf16_x4
|
|
#define vld1q_bf16_x4(a) simde_vld1q_bf16_x4((a))
|
|
#endif
|
|
|
|
#endif /* !defined(SIMDE_BUG_INTEL_857088) */
|
|
|
|
SIMDE_END_DECLS_
|
|
HEDLEY_DIAGNOSTIC_POP
|
|
|
|
#endif /* !defined(SIMDE_ARM_NEON_LD1Q_X4_H) */
|