#include <math.h>
#include <float.h>
Go to the source code of this file.
◆ VARIANT2_INTEGER_MATH_SQRT_FIXUP
| #define VARIANT2_INTEGER_MATH_SQRT_FIXUP |
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| r | ) |
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Value:do { \
r += ((r2 +
b > sqrt_input) ? -1 : 0) + ((r2 + (1ULL << 32) < sqrt_input -
s) ? 1 : 0); \
} while(0)
#define s(x, c)
Definition aesb.c:47
cryptonote::block b
Definition block.cpp:40
unsigned __int64 uint64_t
Definition stdint.h:136
◆ VARIANT2_INTEGER_MATH_SQRT_STEP_FP64
| #define VARIANT2_INTEGER_MATH_SQRT_STEP_FP64 |
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Value:do { \
sqrt_result = sqrt(sqrt_input + 18446744073709551616.0) * 2.0 - 8589934592.0; \
} while(0)
◆ VARIANT2_INTEGER_MATH_SQRT_STEP_REF
| #define VARIANT2_INTEGER_MATH_SQRT_STEP_REF |
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| ) |
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Value:
static uint32_t integer_square_root_v2(uint64_t n)
Definition variant2_int_sqrt.h:47
◆ VARIANT2_INTEGER_MATH_SQRT_STEP_SSE2
| #define VARIANT2_INTEGER_MATH_SQRT_STEP_SSE2 |
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Value:do { \
const __m128i exp_double_bias = _mm_set_epi64x(0, 1023ULL << 52); \
__m128d x = _mm_castsi128_pd(_mm_add_epi64(_mm_cvtsi64_si128(sqrt_input >> 12), exp_double_bias)); \
x = _mm_sqrt_sd(_mm_setzero_pd(), x); \
sqrt_result = (
uint64_t)(_mm_cvtsi128_si64(_mm_sub_epi64(_mm_castpd_si128(x), exp_double_bias))) >> 19; \
} while(0)
◆ integer_square_root_v2()