/* SPDX-License-Identifier: MIT
*
* Permission is hereby granted, free of charge, to any person
* obtaining a copy of this software and associated documentation
* files (the "Software"), to deal in the Software without
* restriction, including without limitation the rights to use, copy,
* modify, merge, publish, distribute, sublicense, and/or sell copies
* of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be
* included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*
* Copyright:
* 2020 Evan Nemerson <evan@nemerson.com>
* 2020 Sean Maher <seanptmaher@gmail.com>
*/
#if !defined (SIMDE_ARM_NEON_LD3_H)
#define SIMDE_ARM_NEON_LD3_H
#include "types.h"
#include "ld1.h"
HEDLEY_DIAGNOSTIC_PUSH
SIMDE_DISABLE_UNWANTED_DIAGNOSTICS
#if HEDLEY_GCC_VERSION_CHECK(7,0,0)
SIMDE_DIAGNOSTIC_DISABLE_MAYBE_UNINITIAZILED_
#endif
SIMDE_BEGIN_DECLS_
#if !defined (SIMDE_BUG_INTEL_857088)
SIMDE_FUNCTION_ATTRIBUTES
simde_float32x2x3_t
simde_vld3_f32(simde_float32 const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_f32(ptr);
#else
simde_float32x2_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_float32x2x3_t r = { {
simde_float32x2_from_private(r_[0]),
simde_float32x2_from_private(r_[1]),
simde_float32x2_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_f32
#define vld3_f32(a) simde_vld3_f32((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_float64x1x3_t
simde_vld3_f64(simde_float64 const *ptr) {
#if defined (SIMDE_ARM_NEON_A64V8_NATIVE)
return vld3_f64(ptr);
#else
simde_float64x1_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_float64x1x3_t r = { {
simde_float64x1_from_private(r_[0]),
simde_float64x1_from_private(r_[1]),
simde_float64x1_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
#undef vld3_f64
#define vld3_f64(a) simde_vld3_f64((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int8x8x3_t
simde_vld3_s8(int8_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_s8(ptr);
#else
simde_int8x8_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int8x8x3_t r = { {
simde_int8x8_from_private(r_[0]),
simde_int8x8_from_private(r_[1]),
simde_int8x8_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_s8
#define vld3_s8(a) simde_vld3_s8((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int16x4x3_t
simde_vld3_s16(int16_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_s16(ptr);
#else
simde_int16x4_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int16x4x3_t r = { {
simde_int16x4_from_private(r_[0]),
simde_int16x4_from_private(r_[1]),
simde_int16x4_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_s16
#define vld3_s16(a) simde_vld3_s16((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int32x2x3_t
simde_vld3_s32(int32_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_s32(ptr);
#else
simde_int32x2_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int32x2x3_t r = { {
simde_int32x2_from_private(r_[0]),
simde_int32x2_from_private(r_[1]),
simde_int32x2_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_s32
#define vld3_s32(a) simde_vld3_s32((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int64x1x3_t
simde_vld3_s64(int64_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_s64(ptr);
#else
simde_int64x1_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int64x1x3_t r = { {
simde_int64x1_from_private(r_[0]),
simde_int64x1_from_private(r_[1]),
simde_int64x1_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
#undef vld3_s64
#define vld3_s64(a) simde_vld3_s64((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint8x8x3_t
simde_vld3_u8(uint8_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_u8(ptr);
#else
simde_uint8x8_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint8x8x3_t r = { {
simde_uint8x8_from_private(r_[0]),
simde_uint8x8_from_private(r_[1]),
simde_uint8x8_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_u8
#define vld3_u8(a) simde_vld3_u8((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint16x4x3_t
simde_vld3_u16(uint16_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_u16(ptr);
#else
simde_uint16x4_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint16x4x3_t r = { {
simde_uint16x4_from_private(r_[0]),
simde_uint16x4_from_private(r_[1]),
simde_uint16x4_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_u16
#define vld3_u16(a) simde_vld3_u16((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint32x2x3_t
simde_vld3_u32(uint32_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_u32(ptr);
#else
simde_uint32x2_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint32x2x3_t r = { {
simde_uint32x2_from_private(r_[0]),
simde_uint32x2_from_private(r_[1]),
simde_uint32x2_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3_u32
#define vld3_u32(a) simde_vld3_u32((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint64x1x3_t
simde_vld3_u64(uint64_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3_u64(ptr);
#else
simde_uint64x1_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint64x1x3_t r = { {
simde_uint64x1_from_private(r_[0]),
simde_uint64x1_from_private(r_[1]),
simde_uint64x1_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
#undef vld3_u64
#define vld3_u64(a) simde_vld3_u64((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_float32x4x3_t
simde_vld3q_f32(simde_float32 const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_f32(ptr);
#else
simde_float32x4_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_float32x4x3_t r = { {
simde_float32x4_from_private(r_[0]),
simde_float32x4_from_private(r_[1]),
simde_float32x4_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_f32
#define vld3q_f32(a) simde_vld3q_f32((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_float64x2x3_t
simde_vld3q_f64(simde_float64 const *ptr) {
#if defined (SIMDE_ARM_NEON_A64V8_NATIVE)
return vld3q_f64(ptr);
#else
simde_float64x2_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_float64x2x3_t r = { {
simde_float64x2_from_private(r_[0]),
simde_float64x2_from_private(r_[1]),
simde_float64x2_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
#undef vld3q_f64
#define vld3q_f64(a) simde_vld3q_f64((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int8x16x3_t
simde_vld3q_s8(int8_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_s8(ptr);
#else
simde_int8x16_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int8x16x3_t r = { {
simde_int8x16_from_private(r_[0]),
simde_int8x16_from_private(r_[1]),
simde_int8x16_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_s8
#define vld3q_s8(a) simde_vld3q_s8((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int16x8x3_t
simde_vld3q_s16(int16_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_s16(ptr);
#else
simde_int16x8_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int16x8x3_t r = { {
simde_int16x8_from_private(r_[0]),
simde_int16x8_from_private(r_[1]),
simde_int16x8_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_s16
#define vld3q_s16(a) simde_vld3q_s16((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int32x4x3_t
simde_vld3q_s32(int32_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_s32(ptr);
#else
simde_int32x4_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int32x4x3_t r = { {
simde_int32x4_from_private(r_[0]),
simde_int32x4_from_private(r_[1]),
simde_int32x4_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_s32
#define vld3q_s32(a) simde_vld3q_s32((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_int64x2x3_t
simde_vld3q_s64(int64_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A64V8_NATIVE)
return vld3q_s64(ptr);
#else
simde_int64x2_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_int64x2x3_t r = { {
simde_int64x2_from_private(r_[0]),
simde_int64x2_from_private(r_[1]),
simde_int64x2_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
#undef vld3q_s64
#define vld3q_s64(a) simde_vld3q_s64((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint8x16x3_t
simde_vld3q_u8(uint8_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_u8(ptr);
#else
simde_uint8x16_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint8x16x3_t r = { {
simde_uint8x16_from_private(r_[0]),
simde_uint8x16_from_private(r_[1]),
simde_uint8x16_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_u8
#define vld3q_u8(a) simde_vld3q_u8((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint16x8x3_t
simde_vld3q_u16(uint16_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_u16(ptr);
#else
simde_uint16x8_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint16x8x3_t r = { {
simde_uint16x8_from_private(r_[0]),
simde_uint16x8_from_private(r_[1]),
simde_uint16x8_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_u16
#define vld3q_u16(a) simde_vld3q_u16((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint32x4x3_t
simde_vld3q_u32(uint32_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A32V7_NATIVE)
return vld3q_u32(ptr);
#else
simde_uint32x4_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint32x4x3_t r = { {
simde_uint32x4_from_private(r_[0]),
simde_uint32x4_from_private(r_[1]),
simde_uint32x4_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A32V7_ENABLE_NATIVE_ALIASES)
#undef vld3q_u32
#define vld3q_u32(a) simde_vld3q_u32((a))
#endif
SIMDE_FUNCTION_ATTRIBUTES
simde_uint64x2x3_t
simde_vld3q_u64(uint64_t const *ptr) {
#if defined (SIMDE_ARM_NEON_A64V8_NATIVE)
return vld3q_u64(ptr);
#else
simde_uint64x2_private r_[3];
for (size_t i = 0; i < (sizeof (r_) / sizeof (r_[0])); i++) {
for (size_t j = 0 ; j < (sizeof (r_[0].values) / sizeof (r_[0].values[0])) ; j++) {
r_[i].values[j] = ptr[i + (j * (sizeof (r_) / sizeof (r_[0])))];
}
}
simde_uint64x2x3_t r = { {
simde_uint64x2_from_private(r_[0]),
simde_uint64x2_from_private(r_[1]),
simde_uint64x2_from_private(r_[2])
} };
return r;
#endif
}
#if defined (SIMDE_ARM_NEON_A64V8_ENABLE_NATIVE_ALIASES)
#undef vld3q_u64
#define vld3q_u64(a) simde_vld3q_u64((a))
#endif
#endif /* !defined(SIMDE_BUG_INTEL_857088) */
SIMDE_END_DECLS_
HEDLEY_DIAGNOSTIC_POP
#endif /* !defined(SIMDE_ARM_NEON_LD3_H) */
Messung V0.5 C=93 H=88 G=90
¤ Dauer der Verarbeitung: 0.14 Sekunden
(vorverarbeitet)
¤
*© Formatika GbR, Deutschland