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popcnt-sse-bit-parallel-better.cpp
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popcnt-sse-bit-parallel-better.cpp
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/*
https://en.wikipedia.org/wiki/Hamming_weight#Efficient_implementation
the three first steps from popcount_2:
int popcount_2(uint64_t x) {
x -= (x >> 1) & m1; //put count of each 2 bits into those 2 bits
x = (x & m2) + ((x >> 2) & m2); //put count of each 4 bits into those 4 bits
x = (x + (x >> 4)) & m4; //put count of each 8 bits into those 8 bits
x += x >> 8; //put count of each 16 bits into their lowest 8 bits
x += x >> 16; //put count of each 32 bits into their lowest 8 bits
x += x >> 32; //put count of each 64 bits into their lowest 8 bits
return x & 0x7f;
}
*/
std::uint64_t popcnt_SSE_bit_parallel_better(const uint8_t* data, const size_t n) {
size_t i = 0;
const __m128i m1 = _mm_set1_epi8(0x55);
const __m128i m2 = _mm_set1_epi8(0x33);
const __m128i m4 = _mm_set1_epi8(0x0f);
__m128i acc = _mm_setzero_si128();
while (i + 4*16 < n) {
__m128i partial = _mm_setzero_si128();
#define ITER { \
const __m128i t1 = _mm_loadu_si128(reinterpret_cast<const __m128i*>(data + i)); \
const __m128i t2 = _mm_sub_epi8(t1, _mm_srli_epi16(t1, 1) & m1); \
const __m128i t3 = _mm_add_epi8(t2 & m2, _mm_srli_epi16(t2, 2) & m2); \
const __m128i t4 = _mm_add_epi8(t3, _mm_srli_epi16(t3, 4)) & m4; \
partial = _mm_add_epi8(partial, t4); \
i += 16; \
}
ITER ITER ITER ITER
#undef ITER
acc = _mm_add_epi64(acc, _mm_sad_epu8(partial, _mm_setzero_si128()));
}
size_t result = lower_qword(acc) + higher_qword(acc);
for (/**/; i < n; i++) {
result += lookup8bit[data[i]];
}
return result;
}