mirror of
https://github.com/JayDDee/cpuminer-opt.git
synced 2025-09-17 23:44:27 +00:00
v3.9.6
This commit is contained in:
@@ -16,24 +16,6 @@
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#include "simd-utils.h"
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#include <stdio.h>
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// The result of hashing 10 rounds of initial data which is params and
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// mostly zeros.
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static const uint64_t IV256[] =
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{
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0xCCD6F29FEA2BD4B4, 0x35481EAE63117E71, 0xE5D94E6322512D5B, 0xF4CC12BE7E624131,
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0x42AF2070C2D0B696, 0x3361DA8CD0720C35, 0x8EF8AD8328CCECA4, 0x40E5FBAB4680AC00,
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0x6107FBD5D89041C3, 0xF0B266796C859D41, 0x5FA2560309392549, 0x93CB628565C892FD,
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0x9E4B4E602AF2B5AE, 0x85254725774ABFDD, 0x4AB6AAD615815AEB, 0xD6032C0A9CDAF8AF
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};
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static const uint64_t IV512[] =
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{
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0x50F494D42AEA2A61, 0x4167D83E2D538B8B, 0xC701CF8C3FEE2313, 0x50AC5695CC39968E,
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0xA647A8B34D42C787, 0x825B453797CF0BEF, 0xF22090C4EEF864D2, 0xA23911AED0E5CD33,
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0x148FE485FCD398D9, 0xB64445321B017BEF, 0x2FF5781C6A536159, 0x0DBADEA991FA7934,
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0xA5A70E75D65C8A2B, 0xBC796576B1C62456, 0xE7989AF11921C8F7, 0xD43E3B447795D246
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};
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static void transform( cubehashParam *sp )
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{
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int r;
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@@ -53,26 +35,22 @@ static void transform( cubehashParam *sp )
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x2 = _mm256_add_epi32( x0, x2 );
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x3 = _mm256_add_epi32( x1, x3 );
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y0 = x0;
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x0 = _mm256_xor_si256( _mm256_slli_epi32( x1, 7 ),
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_mm256_srli_epi32( x1, 25 ) );
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x1 = _mm256_xor_si256( _mm256_slli_epi32( y0, 7 ),
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_mm256_srli_epi32( y0, 25 ) );
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x0 = mm256_rol_32( x1, 7 );
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x1 = mm256_rol_32( y0, 7 );
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x0 = _mm256_xor_si256( x0, x2 );
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x1 = _mm256_xor_si256( x1, x3 );
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x2 = _mm256_shuffle_epi32( x2, 0x4e );
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x3 = _mm256_shuffle_epi32( x3, 0x4e );
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x2 = mm256_swap64_128( x2 );
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x3 = mm256_swap64_128( x3 );
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x2 = _mm256_add_epi32( x0, x2 );
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x3 = _mm256_add_epi32( x1, x3 );
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y0 = _mm256_permute4x64_epi64( x0, 0x4e );
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y1 = _mm256_permute4x64_epi64( x1, 0x4e );
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x0 = _mm256_xor_si256( _mm256_slli_epi32( y0, 11 ),
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_mm256_srli_epi32( y0, 21 ) );
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x1 = _mm256_xor_si256( _mm256_slli_epi32( y1, 11 ),
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_mm256_srli_epi32( y1, 21 ) );
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y0 = mm256_swap_128( x0 );
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y1 = mm256_swap_128( x1 );
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x0 = mm256_rol_32( y0, 11 );
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x1 = mm256_rol_32( y1, 11 );
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x0 = _mm256_xor_si256( x0, x2 );
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x1 = _mm256_xor_si256( x1, x3 );
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x2 = _mm256_shuffle_epi32( x2, 0xb1 );
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x3 = _mm256_shuffle_epi32( x3, 0xb1 );
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x2 = mm256_swap32_64( x2 );
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x3 = mm256_swap32_64( x3 );
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}
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_mm256_store_si256( (__m256i*)sp->x, x0 );
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@@ -147,37 +125,58 @@ static void transform( cubehashParam *sp )
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#endif
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} // transform
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/*
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// The result of hashing 10 rounds of initial data which is params and
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// mostly zeros.
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static const uint64_t IV256[] =
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{
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0xCCD6F29FEA2BD4B4, 0x35481EAE63117E71, 0xE5D94E6322512D5B, 0xF4CC12BE7E624131,
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0x42AF2070C2D0B696, 0x3361DA8CD0720C35, 0x8EF8AD8328CCECA4, 0x40E5FBAB4680AC00,
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0x6107FBD5D89041C3, 0xF0B266796C859D41, 0x5FA2560309392549, 0x93CB628565C892FD,
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0x9E4B4E602AF2B5AE, 0x85254725774ABFDD, 0x4AB6AAD615815AEB, 0xD6032C0A9CDAF8AF
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};
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static const uint64_t IV512[] =
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{
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0x50F494D42AEA2A61, 0x4167D83E2D538B8B, 0xC701CF8C3FEE2313, 0x50AC5695CC39968E,
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0xA647A8B34D42C787, 0x825B453797CF0BEF, 0xF22090C4EEF864D2, 0xA23911AED0E5CD33,
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0x148FE485FCD398D9, 0xB64445321B017BEF, 0x2FF5781C6A536159, 0x0DBADEA991FA7934,
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0xA5A70E75D65C8A2B, 0xBC796576B1C62456, 0xE7989AF11921C8F7, 0xD43E3B447795D246
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};
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*/
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int cubehashInit(cubehashParam *sp, int hashbitlen, int rounds, int blockbytes)
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{
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const uint64_t* iv = hashbitlen == 512 ? IV512 : IV256;
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__m128i *x = (__m128i*)sp->x;
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sp->hashlen = hashbitlen/128;
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sp->blocksize = blockbytes/16;
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sp->rounds = rounds;
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sp->pos = 0;
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#if defined(__AVX2__)
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__m256i* x = (__m256i*)sp->x;
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if ( hashbitlen == 512 )
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{
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x[0] = _mm256_set_epi64x( iv[ 3], iv[ 2], iv[ 1], iv[ 0] );
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x[1] = _mm256_set_epi64x( iv[ 7], iv[ 6], iv[ 5], iv[ 4] );
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x[2] = _mm256_set_epi64x( iv[11], iv[10], iv[ 9], iv[ 8] );
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x[3] = _mm256_set_epi64x( iv[15], iv[14], iv[13], iv[12] );
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x[0] = m128_const_64( 0x4167D83E2D538B8B, 0x50F494D42AEA2A61 );
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x[1] = m128_const_64( 0x50AC5695CC39968E, 0xC701CF8C3FEE2313 );
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x[2] = m128_const_64( 0x825B453797CF0BEF, 0xA647A8B34D42C787 );
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x[3] = m128_const_64( 0xA23911AED0E5CD33, 0xF22090C4EEF864D2 );
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x[4] = m128_const_64( 0xB64445321B017BEF, 0x148FE485FCD398D9 );
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x[5] = m128_const_64( 0x0DBADEA991FA7934, 0x2FF5781C6A536159 );
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x[6] = m128_const_64( 0xBC796576B1C62456, 0xA5A70E75D65C8A2B );
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x[7] = m128_const_64( 0xD43E3B447795D246, 0xE7989AF11921C8F7 );
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}
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else
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{
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x[0] = m128_const_64( 0x35481EAE63117E71, 0xCCD6F29FEA2BD4B4 );
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x[1] = m128_const_64( 0xF4CC12BE7E624131, 0xE5D94E6322512D5B );
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x[2] = m128_const_64( 0x3361DA8CD0720C35, 0x42AF2070C2D0B696 );
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x[3] = m128_const_64( 0x40E5FBAB4680AC00, 0x8EF8AD8328CCECA4 );
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x[4] = m128_const_64( 0xF0B266796C859D41, 0x6107FBD5D89041C3 );
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x[5] = m128_const_64( 0x93CB628565C892FD, 0x5FA2560309392549 );
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x[6] = m128_const_64( 0x85254725774ABFDD, 0x9E4B4E602AF2B5AE );
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x[7] = m128_const_64( 0xD6032C0A9CDAF8AF, 0x4AB6AAD615815AEB );
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}
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#else
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__m128i* x = (__m128i*)sp->x;
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x[0] = _mm_set_epi64x( iv[ 1], iv[ 0] );
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x[1] = _mm_set_epi64x( iv[ 3], iv[ 2] );
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x[2] = _mm_set_epi64x( iv[ 5], iv[ 4] );
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x[3] = _mm_set_epi64x( iv[ 7], iv[ 6] );
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x[4] = _mm_set_epi64x( iv[ 9], iv[ 8] );
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x[5] = _mm_set_epi64x( iv[11], iv[10] );
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x[6] = _mm_set_epi64x( iv[13], iv[12] );
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x[7] = _mm_set_epi64x( iv[15], iv[14] );
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#endif
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return SUCCESS;
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}
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