127 lines
4.7 KiB
C
127 lines
4.7 KiB
C
#include "align.h"
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#include "consts.h"
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#include "params.h"
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#include "rejsample.h"
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#include <immintrin.h>
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#include <stdint.h>
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#include <string.h>
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//#define BMI
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#define _mm256_cmpge_epu16(a, b) _mm256_cmpeq_epi16(_mm256_max_epu16(a, b), a)
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#define _mm_cmpge_epu16(a, b) _mm_cmpeq_epi16(_mm_max_epu16(a, b), a)
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unsigned int PQCLEAN_KYBER768_AVX2_rej_uniform_avx(int16_t *restrict r, const uint8_t *buf) {
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unsigned int ctr, pos;
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uint16_t val0, val1;
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uint32_t good;
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uint64_t idx0, idx1, idx2, idx3;
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const __m256i bound = _mm256_load_si256(&PQCLEAN_KYBER768_AVX2_qdata.vec[_16XQ / 16]);
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const __m256i ones = _mm256_set1_epi8(1);
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const __m256i mask = _mm256_set1_epi16(0xFFF);
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const __m256i idx8 = _mm256_set_epi8(15, 14, 14, 13, 12, 11, 11, 10,
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9, 8, 8, 7, 6, 5, 5, 4,
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11, 10, 10, 9, 8, 7, 7, 6,
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5, 4, 4, 3, 2, 1, 1, 0);
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__m256i f0, f1, g0, g1, g2, g3;
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__m128i f, t, pilo, pihi;
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ctr = pos = 0;
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while (ctr <= KYBER_N - 32 && pos <= REJ_UNIFORM_AVX_BUFLEN - 48) {
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f0 = _mm256_loadu_si256((__m256i *)&buf[pos]);
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f1 = _mm256_loadu_si256((__m256i *)&buf[pos + 24]);
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f0 = _mm256_permute4x64_epi64(f0, 0x94);
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f1 = _mm256_permute4x64_epi64(f1, 0x94);
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f0 = _mm256_shuffle_epi8(f0, idx8);
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f1 = _mm256_shuffle_epi8(f1, idx8);
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g0 = _mm256_srli_epi16(f0, 4);
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g1 = _mm256_srli_epi16(f1, 4);
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f0 = _mm256_blend_epi16(f0, g0, 0xAA);
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f1 = _mm256_blend_epi16(f1, g1, 0xAA);
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f0 = _mm256_and_si256(f0, mask);
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f1 = _mm256_and_si256(f1, mask);
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pos += 48;
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g0 = _mm256_cmpgt_epi16(bound, f0);
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g1 = _mm256_cmpgt_epi16(bound, f1);
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g0 = _mm256_packs_epi16(g0, g1);
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good = _mm256_movemask_epi8(g0);
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idx0 = _pdep_u64(good >> 0, 0x0101010101010101);
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idx1 = _pdep_u64(good >> 8, 0x0101010101010101);
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idx2 = _pdep_u64(good >> 16, 0x0101010101010101);
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idx3 = _pdep_u64(good >> 24, 0x0101010101010101);
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idx0 = (idx0 << 8) - idx0;
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idx0 = _pext_u64(0x0E0C0A0806040200, idx0);
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idx1 = (idx1 << 8) - idx1;
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idx1 = _pext_u64(0x0E0C0A0806040200, idx1);
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idx2 = (idx2 << 8) - idx2;
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idx2 = _pext_u64(0x0E0C0A0806040200, idx2);
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idx3 = (idx3 << 8) - idx3;
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idx3 = _pext_u64(0x0E0C0A0806040200, idx3);
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g0 = _mm256_castsi128_si256(_mm_cvtsi64_si128(idx0));
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g1 = _mm256_castsi128_si256(_mm_cvtsi64_si128(idx1));
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g0 = _mm256_inserti128_si256(g0, _mm_cvtsi64_si128(idx2), 1);
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g1 = _mm256_inserti128_si256(g1, _mm_cvtsi64_si128(idx3), 1);
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g2 = _mm256_add_epi8(g0, ones);
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g3 = _mm256_add_epi8(g1, ones);
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g0 = _mm256_unpacklo_epi8(g0, g2);
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g1 = _mm256_unpacklo_epi8(g1, g3);
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f0 = _mm256_shuffle_epi8(f0, g0);
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f1 = _mm256_shuffle_epi8(f1, g1);
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_mm_storeu_si128((__m128i *)&r[ctr], _mm256_castsi256_si128(f0));
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ctr += _mm_popcnt_u32((good >> 0) & 0xFF);
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_mm_storeu_si128((__m128i *)&r[ctr], _mm256_extracti128_si256(f0, 1));
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ctr += _mm_popcnt_u32((good >> 16) & 0xFF);
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_mm_storeu_si128((__m128i *)&r[ctr], _mm256_castsi256_si128(f1));
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ctr += _mm_popcnt_u32((good >> 8) & 0xFF);
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_mm_storeu_si128((__m128i *)&r[ctr], _mm256_extracti128_si256(f1, 1));
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ctr += _mm_popcnt_u32((good >> 24) & 0xFF);
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}
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while (ctr <= KYBER_N - 8 && pos <= REJ_UNIFORM_AVX_BUFLEN - 12) {
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f = _mm_loadu_si128((__m128i *)&buf[pos]);
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f = _mm_shuffle_epi8(f, _mm256_castsi256_si128(idx8));
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t = _mm_srli_epi16(f, 4);
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f = _mm_blend_epi16(f, t, 0xAA);
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f = _mm_and_si128(f, _mm256_castsi256_si128(mask));
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pos += 12;
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t = _mm_cmpgt_epi16(_mm256_castsi256_si128(bound), f);
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good = _mm_movemask_epi8(t);
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good &= 0x5555;
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idx0 = _pdep_u64(good, 0x1111111111111111);
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idx0 = (idx0 << 8) - idx0;
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idx0 = _pext_u64(0x0E0C0A0806040200, idx0);
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pilo = _mm_cvtsi64_si128(idx0);
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pihi = _mm_add_epi8(pilo, _mm256_castsi256_si128(ones));
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pilo = _mm_unpacklo_epi8(pilo, pihi);
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f = _mm_shuffle_epi8(f, pilo);
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_mm_storeu_si128((__m128i *)&r[ctr], f);
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ctr += _mm_popcnt_u32(good);
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}
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while (ctr < KYBER_N && pos <= REJ_UNIFORM_AVX_BUFLEN - 3) {
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val0 = ((buf[pos + 0] >> 0) | ((uint16_t)buf[pos + 1] << 8)) & 0xFFF;
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val1 = ((buf[pos + 1] >> 4) | ((uint16_t)buf[pos + 2] << 4));
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pos += 3;
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if (val0 < KYBER_Q) {
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r[ctr++] = val0;
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}
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if (val1 < KYBER_Q && ctr < KYBER_N) {
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r[ctr++] = val1;
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}
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}
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return ctr;
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}
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