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| #ifndef SIMD_H |
| #define SIMD_H |
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| #if (defined(__x86_64__) || defined(_M_AMD64)) |
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| #include <emmintrin.h> |
| #define USE_SSE2 |
| typedef __m128i Vector8; |
| typedef __m128i Vector32; |
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| #elif defined(__aarch64__) && defined(__ARM_NEON) |
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| #include <arm_neon.h> |
| #define USE_NEON |
| typedef uint8x16_t Vector8; |
| typedef uint32x4_t Vector32; |
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| #else |
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| #define USE_NO_SIMD |
| typedef uint64 Vector8; |
| #endif |
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| static inline void vector8_load(Vector8 *v, const uint8 *s); |
| #ifndef USE_NO_SIMD |
| static inline void vector32_load(Vector32 *v, const uint32 *s); |
| #endif |
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| |
| static inline Vector8 vector8_broadcast(const uint8 c); |
| #ifndef USE_NO_SIMD |
| static inline Vector32 vector32_broadcast(const uint32 c); |
| #endif |
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| |
| static inline bool vector8_has(const Vector8 v, const uint8 c); |
| static inline bool vector8_has_zero(const Vector8 v); |
| static inline bool vector8_has_le(const Vector8 v, const uint8 c); |
| static inline bool vector8_is_highbit_set(const Vector8 v); |
| #ifndef USE_NO_SIMD |
| static inline bool vector32_is_highbit_set(const Vector32 v); |
| #endif |
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| |
| static inline Vector8 vector8_or(const Vector8 v1, const Vector8 v2); |
| #ifndef USE_NO_SIMD |
| static inline Vector32 vector32_or(const Vector32 v1, const Vector32 v2); |
| static inline Vector8 vector8_ssub(const Vector8 v1, const Vector8 v2); |
| #endif |
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| #ifndef USE_NO_SIMD |
| static inline Vector8 vector8_eq(const Vector8 v1, const Vector8 v2); |
| static inline Vector32 vector32_eq(const Vector32 v1, const Vector32 v2); |
| #endif |
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| static inline void |
| vector8_load(Vector8 *v, const uint8 *s) |
| { |
| #if defined(USE_SSE2) |
| *v = _mm_loadu_si128((const __m128i *) s); |
| #elif defined(USE_NEON) |
| *v = vld1q_u8(s); |
| #else |
| memcpy(v, s, sizeof(Vector8)); |
| #endif |
| } |
|
|
| #ifndef USE_NO_SIMD |
| static inline void |
| vector32_load(Vector32 *v, const uint32 *s) |
| { |
| #ifdef USE_SSE2 |
| *v = _mm_loadu_si128((const __m128i *) s); |
| #elif defined(USE_NEON) |
| *v = vld1q_u32(s); |
| #endif |
| } |
| #endif |
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| static inline Vector8 |
| vector8_broadcast(const uint8 c) |
| { |
| #if defined(USE_SSE2) |
| return _mm_set1_epi8(c); |
| #elif defined(USE_NEON) |
| return vdupq_n_u8(c); |
| #else |
| return ~UINT64CONST(0) / 0xFF * c; |
| #endif |
| } |
|
|
| #ifndef USE_NO_SIMD |
| static inline Vector32 |
| vector32_broadcast(const uint32 c) |
| { |
| #ifdef USE_SSE2 |
| return _mm_set1_epi32(c); |
| #elif defined(USE_NEON) |
| return vdupq_n_u32(c); |
| #endif |
| } |
| #endif |
|
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| |
| static inline bool |
| vector8_has(const Vector8 v, const uint8 c) |
| { |
| bool result; |
|
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| |
| #ifdef USE_ASSERT_CHECKING |
| bool assert_result = false; |
|
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| for (Size i = 0; i < sizeof(Vector8); i++) |
| { |
| if (((const uint8 *) &v)[i] == c) |
| { |
| assert_result = true; |
| break; |
| } |
| } |
| #endif |
|
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| #if defined(USE_NO_SIMD) |
| |
| result = vector8_has_zero(v ^ vector8_broadcast(c)); |
| #else |
| result = vector8_is_highbit_set(vector8_eq(v, vector8_broadcast(c))); |
| #endif |
|
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| Assert(assert_result == result); |
| return result; |
| } |
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| static inline bool |
| vector8_has_zero(const Vector8 v) |
| { |
| #if defined(USE_NO_SIMD) |
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| return vector8_has_le(v, 0); |
| #else |
| return vector8_has(v, 0); |
| #endif |
| } |
|
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| |
| static inline bool |
| vector8_has_le(const Vector8 v, const uint8 c) |
| { |
| bool result = false; |
|
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| |
| #ifdef USE_ASSERT_CHECKING |
| bool assert_result = false; |
|
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| for (Size i = 0; i < sizeof(Vector8); i++) |
| { |
| if (((const uint8 *) &v)[i] <= c) |
| { |
| assert_result = true; |
| break; |
| } |
| } |
| #endif |
|
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| #if defined(USE_NO_SIMD) |
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| if ((int64) v >= 0 && c < 0x80) |
| result = (v - vector8_broadcast(c + 1)) & ~v & vector8_broadcast(0x80); |
| else |
| { |
| |
| for (Size i = 0; i < sizeof(Vector8); i++) |
| { |
| if (((const uint8 *) &v)[i] <= c) |
| { |
| result = true; |
| break; |
| } |
| } |
| } |
| #else |
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| result = vector8_has_zero(vector8_ssub(v, vector8_broadcast(c))); |
| #endif |
|
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| Assert(assert_result == result); |
| return result; |
| } |
|
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| |
| static inline bool |
| vector8_is_highbit_set(const Vector8 v) |
| { |
| #ifdef USE_SSE2 |
| return _mm_movemask_epi8(v) != 0; |
| #elif defined(USE_NEON) |
| return vmaxvq_u8(v) > 0x7F; |
| #else |
| return v & vector8_broadcast(0x80); |
| #endif |
| } |
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| #ifndef USE_NO_SIMD |
| static inline bool |
| vector32_is_highbit_set(const Vector32 v) |
| { |
| #if defined(USE_NEON) |
| return vector8_is_highbit_set((Vector8) v); |
| #else |
| return vector8_is_highbit_set(v); |
| #endif |
| } |
| #endif |
|
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| static inline Vector8 |
| vector8_or(const Vector8 v1, const Vector8 v2) |
| { |
| #ifdef USE_SSE2 |
| return _mm_or_si128(v1, v2); |
| #elif defined(USE_NEON) |
| return vorrq_u8(v1, v2); |
| #else |
| return v1 | v2; |
| #endif |
| } |
|
|
| #ifndef USE_NO_SIMD |
| static inline Vector32 |
| vector32_or(const Vector32 v1, const Vector32 v2) |
| { |
| #ifdef USE_SSE2 |
| return _mm_or_si128(v1, v2); |
| #elif defined(USE_NEON) |
| return vorrq_u32(v1, v2); |
| #endif |
| } |
| #endif |
|
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| #ifndef USE_NO_SIMD |
| static inline Vector8 |
| vector8_ssub(const Vector8 v1, const Vector8 v2) |
| { |
| #ifdef USE_SSE2 |
| return _mm_subs_epu8(v1, v2); |
| #elif defined(USE_NEON) |
| return vqsubq_u8(v1, v2); |
| #endif |
| } |
| #endif |
|
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| #ifndef USE_NO_SIMD |
| static inline Vector8 |
| vector8_eq(const Vector8 v1, const Vector8 v2) |
| { |
| #ifdef USE_SSE2 |
| return _mm_cmpeq_epi8(v1, v2); |
| #elif defined(USE_NEON) |
| return vceqq_u8(v1, v2); |
| #endif |
| } |
| #endif |
|
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| #ifndef USE_NO_SIMD |
| static inline Vector32 |
| vector32_eq(const Vector32 v1, const Vector32 v2) |
| { |
| #ifdef USE_SSE2 |
| return _mm_cmpeq_epi32(v1, v2); |
| #elif defined(USE_NEON) |
| return vceqq_u32(v1, v2); |
| #endif |
| } |
| #endif |
|
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| #endif |
|
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