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https://github.com/JayDDee/cpuminer-opt.git
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v3.11.5
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@@ -168,6 +168,66 @@ int cube_4way_close( cube_4way_context *sp, void *output )
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return 0;
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}
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int cube_4way_full( cube_4way_context *sp, void *output, int hashbitlen,
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const void *data, size_t size )
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{
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__m512i *h = (__m512i*)sp->h;
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__m128i *iv = (__m128i*)( hashbitlen == 512 ? (__m128i*)IV512
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: (__m128i*)IV256 );
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sp->hashlen = hashbitlen/128;
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sp->blocksize = 32/16;
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sp->rounds = 16;
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sp->pos = 0;
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h[ 0] = m512_const1_128( iv[0] );
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h[ 1] = m512_const1_128( iv[1] );
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h[ 2] = m512_const1_128( iv[2] );
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h[ 3] = m512_const1_128( iv[3] );
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h[ 4] = m512_const1_128( iv[4] );
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h[ 5] = m512_const1_128( iv[5] );
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h[ 6] = m512_const1_128( iv[6] );
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h[ 7] = m512_const1_128( iv[7] );
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h[ 0] = m512_const1_128( iv[0] );
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h[ 1] = m512_const1_128( iv[1] );
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h[ 2] = m512_const1_128( iv[2] );
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h[ 3] = m512_const1_128( iv[3] );
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h[ 4] = m512_const1_128( iv[4] );
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h[ 5] = m512_const1_128( iv[5] );
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h[ 6] = m512_const1_128( iv[6] );
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h[ 7] = m512_const1_128( iv[7] );
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const int len = size >> 4;
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const __m512i *in = (__m512i*)data;
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__m512i *hash = (__m512i*)output;
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int i;
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for ( i = 0; i < len; i++ )
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{
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sp->h[ sp->pos ] = _mm512_xor_si512( sp->h[ sp->pos ], in[i] );
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sp->pos++;
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if ( sp->pos == sp->blocksize )
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{
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transform_4way( sp );
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sp->pos = 0;
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}
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}
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// pos is zero for 64 byte data, 1 for 80 byte data.
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sp->h[ sp->pos ] = _mm512_xor_si512( sp->h[ sp->pos ],
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m512_const2_64( 0, 0x0000000000000080 ) );
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transform_4way( sp );
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sp->h[7] = _mm512_xor_si512( sp->h[7],
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m512_const2_64( 0x0000000100000000, 0 ) );
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for ( i = 0; i < 10; ++i )
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transform_4way( sp );
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memcpy( hash, sp->h, sp->hashlen<<6);
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return 0;
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}
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int cube_4way_update_close( cube_4way_context *sp, void *output,
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const void *data, size_t size )
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{
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@@ -376,4 +436,62 @@ int cube_2way_update_close( cube_2way_context *sp, void *output,
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return 0;
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}
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int cube_2way_full( cube_2way_context *sp, void *output, int hashbitlen,
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const void *data, size_t size )
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{
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__m256i *h = (__m256i*)sp->h;
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__m128i *iv = (__m128i*)( hashbitlen == 512 ? (__m128i*)IV512
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: (__m128i*)IV256 );
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sp->hashlen = hashbitlen/128;
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sp->blocksize = 32/16;
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sp->rounds = 16;
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sp->pos = 0;
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h[ 0] = m256_const1_128( iv[0] );
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h[ 1] = m256_const1_128( iv[1] );
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h[ 2] = m256_const1_128( iv[2] );
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h[ 3] = m256_const1_128( iv[3] );
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h[ 4] = m256_const1_128( iv[4] );
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h[ 5] = m256_const1_128( iv[5] );
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h[ 6] = m256_const1_128( iv[6] );
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h[ 7] = m256_const1_128( iv[7] );
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h[ 0] = m256_const1_128( iv[0] );
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h[ 1] = m256_const1_128( iv[1] );
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h[ 2] = m256_const1_128( iv[2] );
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h[ 3] = m256_const1_128( iv[3] );
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h[ 4] = m256_const1_128( iv[4] );
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h[ 5] = m256_const1_128( iv[5] );
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h[ 6] = m256_const1_128( iv[6] );
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h[ 7] = m256_const1_128( iv[7] );
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const int len = size >> 4;
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const __m256i *in = (__m256i*)data;
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__m256i *hash = (__m256i*)output;
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int i;
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for ( i = 0; i < len; i++ )
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{
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sp->h[ sp->pos ] = _mm256_xor_si256( sp->h[ sp->pos ], in[i] );
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sp->pos++;
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if ( sp->pos == sp->blocksize )
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{
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transform_2way( sp );
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sp->pos = 0;
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}
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}
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// pos is zero for 64 byte data, 1 for 80 byte data.
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sp->h[ sp->pos ] = _mm256_xor_si256( sp->h[ sp->pos ],
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m256_const2_64( 0, 0x0000000000000080 ) );
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transform_2way( sp );
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sp->h[7] = _mm256_xor_si256( sp->h[7],
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m256_const2_64( 0x0000000100000000, 0 ) );
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for ( i = 0; i < 10; ++i ) transform_2way( sp );
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memcpy( hash, sp->h, sp->hashlen<<5 );
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return 0;
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}
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#endif
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