mirror of
https://github.com/JayDDee/cpuminer-opt.git
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605 lines
24 KiB
C
605 lines
24 KiB
C
#include "x15-gate.h"
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#include <stdlib.h>
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#include <stdint.h>
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#include <string.h>
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#include <stdio.h>
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#include "algo/blake/blake-hash-4way.h"
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#include "algo/bmw/bmw-hash-4way.h"
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#include "algo/groestl/aes_ni/hash-groestl.h"
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#include "algo/skein/skein-hash-4way.h"
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#include "algo/jh/jh-hash-4way.h"
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#include "algo/keccak/keccak-hash-4way.h"
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#include "algo/luffa/luffa-hash-2way.h"
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#include "algo/cubehash/cubehash_sse2.h"
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#include "algo/cubehash/cube-hash-2way.h"
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#include "algo/shavite/sph_shavite.h"
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#include "algo/simd/simd-hash-2way.h"
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#include "algo/echo/aes_ni/hash_api.h"
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#include "algo/echo/sph_echo.h"
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#include "algo/hamsi/hamsi-hash-4way.h"
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#include "algo/fugue/sph_fugue.h"
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#include "algo/shabal/shabal-hash-4way.h"
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#include "algo/whirlpool/sph_whirlpool.h"
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#if defined(__VAES__)
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#include "algo/groestl/groestl512-hash-4way.h"
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#include "algo/shavite/shavite-hash-4way.h"
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#include "algo/echo/echo-hash-4way.h"
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#endif
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#if defined(X15_8WAY)
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typedef struct {
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blake512_8way_context blake;
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bmw512_8way_context bmw;
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skein512_8way_context skein;
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jh512_8way_context jh;
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keccak512_8way_context keccak;
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luffa_4way_context luffa;
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cube_4way_context cube;
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simd_4way_context simd;
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hamsi512_8way_context hamsi;
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sph_fugue512_context fugue;
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shabal512_8way_context shabal;
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sph_whirlpool_context whirlpool;
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#if defined(__VAES__)
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groestl512_4way_context groestl;
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shavite512_4way_context shavite;
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echo_4way_context echo;
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#else
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hashState_groestl groestl;
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sph_shavite512_context shavite;
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hashState_echo echo;
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#endif
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} x15_8way_ctx_holder;
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x15_8way_ctx_holder x15_8way_ctx __attribute__ ((aligned (64)));
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void init_x15_8way_ctx()
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{
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blake512_8way_init( &x15_8way_ctx.blake );
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bmw512_8way_init( &x15_8way_ctx.bmw );
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skein512_8way_init( &x15_8way_ctx.skein );
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jh512_8way_init( &x15_8way_ctx.jh );
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keccak512_8way_init( &x15_8way_ctx.keccak );
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luffa_4way_init( &x15_8way_ctx.luffa, 512 );
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cube_4way_init( &x15_8way_ctx.cube, 512, 16, 32 );
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simd_4way_init( &x15_8way_ctx.simd, 512 );
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hamsi512_8way_init( &x15_8way_ctx.hamsi );
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sph_fugue512_init( &x15_8way_ctx.fugue );
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shabal512_8way_init( &x15_8way_ctx.shabal );
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sph_whirlpool_init( &x15_8way_ctx.whirlpool );
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#if defined(__VAES__)
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groestl512_4way_init( &x15_8way_ctx.groestl, 64 );
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shavite512_4way_init( &x15_8way_ctx.shavite );
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echo_4way_init( &x15_8way_ctx.echo, 512 );
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#else
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init_groestl( &x15_8way_ctx.groestl, 64 );
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sph_shavite512_init( &x15_8way_ctx.shavite );
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init_echo( &x15_8way_ctx.echo, 512 );
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#endif
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};
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void x15_8way_hash( void *state, const void *input )
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{
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uint64_t vhash[8*8] __attribute__ ((aligned (128)));
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uint64_t vhashA[4*8] __attribute__ ((aligned (64)));
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uint64_t vhashB[4*8] __attribute__ ((aligned (64)));
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uint64_t hash0[8] __attribute__ ((aligned (64)));
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uint64_t hash1[8] __attribute__ ((aligned (64)));
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uint64_t hash2[8] __attribute__ ((aligned (64)));
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uint64_t hash3[8] __attribute__ ((aligned (64)));
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uint64_t hash4[8] __attribute__ ((aligned (64)));
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uint64_t hash5[8] __attribute__ ((aligned (64)));
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uint64_t hash6[8] __attribute__ ((aligned (64)));
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uint64_t hash7[8] __attribute__ ((aligned (64)));
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x15_8way_ctx_holder ctx;
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memcpy( &ctx, &x15_8way_ctx, sizeof(x15_8way_ctx) );
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// 1 Blake
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blake512_8way_update( &ctx.blake, input, 80 );
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blake512_8way_close( &ctx.blake, vhash );
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// 2 Bmw
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bmw512_8way_update( &ctx.bmw, vhash, 64 );
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bmw512_8way_close( &ctx.bmw, vhash );
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#if defined(__VAES__)
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rintrlv_8x64_4x128( vhashA, vhashB, vhash, 512 );
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groestl512_4way_update_close( &ctx.groestl, vhashA, vhashA, 512 );
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groestl512_4way_init( &ctx.groestl, 64 );
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groestl512_4way_update_close( &ctx.groestl, vhashB, vhashB, 512 );
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rintrlv_4x128_8x64( vhash, vhashA, vhashB, 512 );
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#else
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dintrlv_8x64_512( hash0, hash1, hash2, hash3, hash4, hash5, hash6, hash7,
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vhash );
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update_and_final_groestl( &ctx.groestl, (char*)hash0, (char*)hash0, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash1, (char*)hash1, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash2, (char*)hash2, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash3, (char*)hash3, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash4, (char*)hash4, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash5, (char*)hash5, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash6, (char*)hash6, 512 );
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memcpy( &ctx.groestl, &x15_8way_ctx.groestl, sizeof(hashState_groestl) );
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update_and_final_groestl( &ctx.groestl, (char*)hash7, (char*)hash7, 512 );
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intrlv_8x64_512( vhash, hash0, hash1, hash2, hash3, hash4, hash5, hash6,
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hash7 );
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#endif
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skein512_8way_update( &ctx.skein, vhash, 64 );
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skein512_8way_close( &ctx.skein, vhash );
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// 5 JH
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jh512_8way_update( &ctx.jh, vhash, 64 );
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jh512_8way_close( &ctx.jh, vhash );
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// 6 Keccak
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keccak512_8way_update( &ctx.keccak, vhash, 64 );
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keccak512_8way_close( &ctx.keccak, vhash );
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rintrlv_8x64_4x128( vhashA, vhashB, vhash, 512 );
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luffa_4way_update_close( &ctx.luffa, vhashA, vhashA, 64 );
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luffa_4way_init( &ctx.luffa, 512 );
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luffa_4way_update_close( &ctx.luffa, vhashB, vhashB, 64 );
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cube_4way_update_close( &ctx.cube, vhashA, vhashA, 64 );
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cube_4way_init( &ctx.cube, 512, 16, 32 );
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cube_4way_update_close( &ctx.cube, vhashB, vhashB, 64 );
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#if defined(__VAES__)
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shavite512_4way_update_close( &ctx.shavite, vhashA, vhashA, 64 );
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shavite512_4way_init( &ctx.shavite );
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shavite512_4way_update_close( &ctx.shavite, vhashB, vhashB, 64 );
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#else
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dintrlv_4x128_512( hash0, hash1, hash2, hash3, vhashA );
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dintrlv_4x128_512( hash4, hash5, hash6, hash7, vhashB );
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// 9 Shavite
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sph_shavite512( &ctx.shavite, hash0, 64 );
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sph_shavite512_close( &ctx.shavite, hash0 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash1, 64 );
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sph_shavite512_close( &ctx.shavite, hash1 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash2, 64 );
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sph_shavite512_close( &ctx.shavite, hash2 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash3, 64 );
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sph_shavite512_close( &ctx.shavite, hash3 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash4, 64 );
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sph_shavite512_close( &ctx.shavite, hash4 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash5, 64 );
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sph_shavite512_close( &ctx.shavite, hash5 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash6, 64 );
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sph_shavite512_close( &ctx.shavite, hash6 );
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memcpy( &ctx.shavite, &x15_8way_ctx.shavite,
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sizeof(sph_shavite512_context) );
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sph_shavite512( &ctx.shavite, hash7, 64 );
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sph_shavite512_close( &ctx.shavite, hash7 );
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intrlv_4x128_512( vhashA, hash0, hash1, hash2, hash3 );
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intrlv_4x128_512( vhashB, hash4, hash5, hash6, hash7 );
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#endif
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simd_4way_update_close( &ctx.simd, vhashA, vhashA, 512 );
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simd_4way_init( &ctx.simd, 512 );
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simd_4way_update_close( &ctx.simd, vhashB, vhashB, 512 );
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#if defined(__VAES__)
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echo_4way_update_close( &ctx.echo, vhashA, vhashA, 512 );
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echo_4way_init( &ctx.echo, 512 );
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echo_4way_update_close( &ctx.echo, vhashB, vhashB, 512 );
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rintrlv_4x128_8x64( vhash, vhashA, vhashB, 512 );
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#else
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dintrlv_4x128_512( hash0, hash1, hash2, hash3, vhashA );
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dintrlv_4x128_512( hash4, hash5, hash6, hash7, vhashB );
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update_final_echo( &ctx.echo, (BitSequence *)hash0,
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(const BitSequence *) hash0, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash1,
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(const BitSequence *) hash1, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash2,
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(const BitSequence *) hash2, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash3,
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(const BitSequence *) hash3, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash4,
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(const BitSequence *) hash4, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash5,
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(const BitSequence *) hash5, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash6,
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(const BitSequence *) hash6, 512 );
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memcpy( &ctx.echo, &x15_8way_ctx.echo, sizeof(hashState_echo) );
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update_final_echo( &ctx.echo, (BitSequence *)hash7,
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(const BitSequence *) hash7, 512 );
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intrlv_8x64_512( vhash, hash0, hash1, hash2, hash3, hash4, hash5, hash6,
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hash7 );
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#endif
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hamsi512_8way_update( &ctx.hamsi, vhash, 64 );
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hamsi512_8way_close( &ctx.hamsi, vhash );
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dintrlv_8x64_512( hash0, hash1, hash2, hash3, hash4, hash5, hash6, hash7,
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vhash );
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// 13 Fugue
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sph_fugue512( &ctx.fugue, hash0, 64 );
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sph_fugue512_close( &ctx.fugue, hash0 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash1, 64 );
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sph_fugue512_close( &ctx.fugue, hash1 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash2, 64 );
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sph_fugue512_close( &ctx.fugue, hash2 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash3, 64 );
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sph_fugue512_close( &ctx.fugue, hash3 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash4, 64 );
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sph_fugue512_close( &ctx.fugue, hash4 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash5, 64 );
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sph_fugue512_close( &ctx.fugue, hash5 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash6, 64 );
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sph_fugue512_close( &ctx.fugue, hash6 );
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memcpy( &ctx.fugue, &x15_8way_ctx.fugue, sizeof(sph_fugue512_context) );
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sph_fugue512( &ctx.fugue, hash7, 64 );
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sph_fugue512_close( &ctx.fugue, hash7 );
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// 14 Shabal, parallel 32 bit
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intrlv_8x32_512( vhash, hash0, hash1, hash2, hash3, hash4, hash5, hash6,
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hash7 );
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shabal512_8way_update( &ctx.shabal, vhash, 64 );
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shabal512_8way_close( &ctx.shabal, vhash );
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dintrlv_8x32_512( hash0, hash1, hash2, hash3, hash4, hash5, hash6, hash7,
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vhash );
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// 15 Whirlpool
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sph_whirlpool( &ctx.whirlpool, hash0, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash0 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash1, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash1 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash2, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash2 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash3, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash3 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash4, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash4 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash5, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash5 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash6, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash6 );
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memcpy( &ctx.whirlpool, &x15_8way_ctx.whirlpool,
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sizeof(sph_whirlpool_context) );
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sph_whirlpool( &ctx.whirlpool, hash7, 64 );
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sph_whirlpool_close( &ctx.whirlpool, hash7 );
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memcpy( state, hash0, 32 );
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memcpy( state+ 32, hash1, 32 );
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memcpy( state+ 64, hash2, 32 );
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memcpy( state+ 96, hash3, 32 );
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memcpy( state+128, hash4, 32 );
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memcpy( state+160, hash5, 32 );
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memcpy( state+192, hash6, 32 );
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memcpy( state+224, hash7, 32 );
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}
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int scanhash_x15_8way( struct work *work, uint32_t max_nonce,
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uint64_t *hashes_done, struct thr_info *mythr )
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{
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uint32_t hash[8*8] __attribute__ ((aligned (128)));
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uint32_t vdata[24*8] __attribute__ ((aligned (64)));
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uint32_t *pdata = work->data;
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uint32_t *ptarget = work->target;
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const uint32_t first_nonce = pdata[19];
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uint32_t n = first_nonce;
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const uint32_t last_nonce = max_nonce - 8;
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__m512i *noncev = (__m512i*)vdata + 9;
|
|
const uint32_t Htarg = ptarget[7];
|
|
int thr_id = mythr->id;
|
|
mm512_bswap32_intrlv80_8x64( vdata, pdata );
|
|
|
|
do
|
|
{
|
|
*noncev = mm512_intrlv_blend_32( mm512_bswap_32(
|
|
_mm512_set_epi32( n+7, 0, n+6, 0, n+5, 0, n+4, 0,
|
|
n+3, 0, n+2, 0, n+1, 0, n, 0 ) ), *noncev );
|
|
|
|
x15_8way_hash( hash, vdata );
|
|
pdata[19] = n;
|
|
|
|
for ( int i = 0; i < 8; i++ )
|
|
if ( ( hash+(i<<3) )[7] <= Htarg )
|
|
if ( fulltest( hash+(i<<3), ptarget ) && !opt_benchmark )
|
|
{
|
|
pdata[19] = n+i;
|
|
submit_solution( work, hash, mythr );
|
|
}
|
|
n += 8;
|
|
} while ( ( n < last_nonce ) && !work_restart[thr_id].restart );
|
|
*hashes_done = n - first_nonce;
|
|
return 0;
|
|
}
|
|
|
|
#elif defined(X15_4WAY)
|
|
|
|
typedef struct {
|
|
blake512_4way_context blake;
|
|
bmw512_4way_context bmw;
|
|
hashState_groestl groestl;
|
|
skein512_4way_context skein;
|
|
jh512_4way_context jh;
|
|
keccak512_4way_context keccak;
|
|
luffa_2way_context luffa;
|
|
cubehashParam cube;
|
|
sph_shavite512_context shavite;
|
|
simd_2way_context simd;
|
|
hashState_echo echo;
|
|
hamsi512_4way_context hamsi;
|
|
sph_fugue512_context fugue;
|
|
shabal512_4way_context shabal;
|
|
sph_whirlpool_context whirlpool;
|
|
} x15_4way_ctx_holder;
|
|
|
|
x15_4way_ctx_holder x15_4way_ctx __attribute__ ((aligned (64)));
|
|
|
|
void init_x15_4way_ctx()
|
|
{
|
|
blake512_4way_init( &x15_4way_ctx.blake );
|
|
bmw512_4way_init( &x15_4way_ctx.bmw );
|
|
init_groestl( &x15_4way_ctx.groestl, 64 );
|
|
skein512_4way_init( &x15_4way_ctx.skein );
|
|
jh512_4way_init( &x15_4way_ctx.jh );
|
|
keccak512_4way_init( &x15_4way_ctx.keccak );
|
|
luffa_2way_init( &x15_4way_ctx.luffa, 512 );
|
|
cubehashInit( &x15_4way_ctx.cube, 512, 16, 32 );
|
|
sph_shavite512_init( &x15_4way_ctx.shavite );
|
|
simd_2way_init( &x15_4way_ctx.simd, 512 );
|
|
init_echo( &x15_4way_ctx.echo, 512 );
|
|
hamsi512_4way_init( &x15_4way_ctx.hamsi );
|
|
sph_fugue512_init( &x15_4way_ctx.fugue );
|
|
shabal512_4way_init( &x15_4way_ctx.shabal );
|
|
sph_whirlpool_init( &x15_4way_ctx.whirlpool );
|
|
};
|
|
|
|
void x15_4way_hash( void *state, const void *input )
|
|
{
|
|
uint64_t vhash[8*4] __attribute__ ((aligned (128)));
|
|
uint64_t hash0[8] __attribute__ ((aligned (64)));
|
|
uint64_t hash1[8] __attribute__ ((aligned (64)));
|
|
uint64_t hash2[8] __attribute__ ((aligned (64)));
|
|
uint64_t hash3[8] __attribute__ ((aligned (64)));
|
|
x15_4way_ctx_holder ctx;
|
|
memcpy( &ctx, &x15_4way_ctx, sizeof(x15_4way_ctx) );
|
|
|
|
// 1 Blake
|
|
blake512_4way_update( &ctx.blake, input, 80 );
|
|
blake512_4way_close( &ctx.blake, vhash );
|
|
|
|
// 2 Bmw
|
|
bmw512_4way_update( &ctx.bmw, vhash, 64 );
|
|
bmw512_4way_close( &ctx.bmw, vhash );
|
|
|
|
// Serial
|
|
dintrlv_4x64( hash0, hash1, hash2, hash3, vhash, 512 );
|
|
|
|
// 3 Groestl
|
|
update_and_final_groestl( &ctx.groestl, (char*)hash0, (char*)hash0, 512 );
|
|
memcpy( &ctx.groestl, &x15_4way_ctx.groestl, sizeof(hashState_groestl) );
|
|
update_and_final_groestl( &ctx.groestl, (char*)hash1, (char*)hash1, 512 );
|
|
memcpy( &ctx.groestl, &x15_4way_ctx.groestl, sizeof(hashState_groestl) );
|
|
update_and_final_groestl( &ctx.groestl, (char*)hash2, (char*)hash2, 512 );
|
|
memcpy( &ctx.groestl, &x15_4way_ctx.groestl, sizeof(hashState_groestl) );
|
|
update_and_final_groestl( &ctx.groestl, (char*)hash3, (char*)hash3, 512 );
|
|
|
|
// Parallel 4way
|
|
intrlv_4x64( vhash, hash0, hash1, hash2, hash3, 512 );
|
|
|
|
// 4 Skein
|
|
skein512_4way_update( &ctx.skein, vhash, 64 );
|
|
skein512_4way_close( &ctx.skein, vhash );
|
|
|
|
// 5 JH
|
|
jh512_4way_update( &ctx.jh, vhash, 64 );
|
|
jh512_4way_close( &ctx.jh, vhash );
|
|
|
|
// 6 Keccak
|
|
keccak512_4way_update( &ctx.keccak, vhash, 64 );
|
|
keccak512_4way_close( &ctx.keccak, vhash );
|
|
|
|
// Serial to the end
|
|
dintrlv_4x64( hash0, hash1, hash2, hash3, vhash, 512 );
|
|
|
|
// 7 Luffa
|
|
intrlv_2x128( vhash, hash0, hash1, 512 );
|
|
luffa_2way_update_close( &ctx.luffa, vhash, vhash, 64 );
|
|
dintrlv_2x128( hash0, hash1, vhash, 512 );
|
|
intrlv_2x128( vhash, hash2, hash3, 512 );
|
|
luffa_2way_init( &ctx.luffa, 512 );
|
|
luffa_2way_update_close( &ctx.luffa, vhash, vhash, 64 );
|
|
dintrlv_2x128( hash2, hash3, vhash, 512 );
|
|
|
|
// 8 Cubehash
|
|
cubehashUpdateDigest( &ctx.cube, (byte*)hash0, (const byte*) hash0, 64 );
|
|
memcpy( &ctx.cube, &x15_4way_ctx.cube, sizeof(cubehashParam) );
|
|
cubehashUpdateDigest( &ctx.cube, (byte*)hash1, (const byte*) hash1, 64 );
|
|
memcpy( &ctx.cube, &x15_4way_ctx.cube, sizeof(cubehashParam) );
|
|
cubehashUpdateDigest( &ctx.cube, (byte*)hash2, (const byte*) hash2, 64 );
|
|
memcpy( &ctx.cube, &x15_4way_ctx.cube, sizeof(cubehashParam) );
|
|
cubehashUpdateDigest( &ctx.cube, (byte*)hash3, (const byte*) hash3, 64 );
|
|
|
|
// 9 Shavite
|
|
sph_shavite512( &ctx.shavite, hash0, 64 );
|
|
sph_shavite512_close( &ctx.shavite, hash0 );
|
|
memcpy( &ctx.shavite, &x15_4way_ctx.shavite,
|
|
sizeof(sph_shavite512_context) );
|
|
sph_shavite512( &ctx.shavite, hash1, 64 );
|
|
sph_shavite512_close( &ctx.shavite, hash1 );
|
|
memcpy( &ctx.shavite, &x15_4way_ctx.shavite,
|
|
sizeof(sph_shavite512_context) );
|
|
sph_shavite512( &ctx.shavite, hash2, 64 );
|
|
sph_shavite512_close( &ctx.shavite, hash2 );
|
|
memcpy( &ctx.shavite, &x15_4way_ctx.shavite,
|
|
sizeof(sph_shavite512_context) );
|
|
sph_shavite512( &ctx.shavite, hash3, 64 );
|
|
sph_shavite512_close( &ctx.shavite, hash3 );
|
|
|
|
// 10 Simd
|
|
intrlv_2x128( vhash, hash0, hash1, 512 );
|
|
simd_2way_update_close( &ctx.simd, vhash, vhash, 512 );
|
|
dintrlv_2x128( hash0, hash1, vhash, 512 );
|
|
intrlv_2x128( vhash, hash2, hash3, 512 );
|
|
simd_2way_init( &ctx.simd, 512 );
|
|
simd_2way_update_close( &ctx.simd, vhash, vhash, 512 );
|
|
dintrlv_2x128( hash2, hash3, vhash, 512 );
|
|
|
|
// 11 Echo
|
|
update_final_echo( &ctx.echo, (BitSequence *)hash0,
|
|
(const BitSequence *) hash0, 512 );
|
|
memcpy( &ctx.echo, &x15_4way_ctx.echo, sizeof(hashState_echo) );
|
|
update_final_echo( &ctx.echo, (BitSequence *)hash1,
|
|
(const BitSequence *) hash1, 512 );
|
|
memcpy( &ctx.echo, &x15_4way_ctx.echo, sizeof(hashState_echo) );
|
|
update_final_echo( &ctx.echo, (BitSequence *)hash2,
|
|
(const BitSequence *) hash2, 512 );
|
|
memcpy( &ctx.echo, &x15_4way_ctx.echo, sizeof(hashState_echo) );
|
|
update_final_echo( &ctx.echo, (BitSequence *)hash3,
|
|
(const BitSequence *) hash3, 512 );
|
|
|
|
// 12 Hamsi parallel 4way 32 bit
|
|
intrlv_4x64( vhash, hash0, hash1, hash2, hash3, 512 );
|
|
hamsi512_4way_update( &ctx.hamsi, vhash, 64 );
|
|
hamsi512_4way_close( &ctx.hamsi, vhash );
|
|
dintrlv_4x64( hash0, hash1, hash2, hash3, vhash, 512 );
|
|
|
|
// 13 Fugue
|
|
sph_fugue512( &ctx.fugue, hash0, 64 );
|
|
sph_fugue512_close( &ctx.fugue, hash0 );
|
|
memcpy( &ctx.fugue, &x15_4way_ctx.fugue, sizeof(sph_fugue512_context) );
|
|
sph_fugue512( &ctx.fugue, hash1, 64 );
|
|
sph_fugue512_close( &ctx.fugue, hash1 );
|
|
memcpy( &ctx.fugue, &x15_4way_ctx.fugue, sizeof(sph_fugue512_context) );
|
|
sph_fugue512( &ctx.fugue, hash2, 64 );
|
|
sph_fugue512_close( &ctx.fugue, hash2 );
|
|
memcpy( &ctx.fugue, &x15_4way_ctx.fugue, sizeof(sph_fugue512_context) );
|
|
sph_fugue512( &ctx.fugue, hash3, 64 );
|
|
sph_fugue512_close( &ctx.fugue, hash3 );
|
|
|
|
// 14 Shabal, parallel 32 bit
|
|
intrlv_4x32( vhash, hash0, hash1, hash2, hash3, 512 );
|
|
shabal512_4way_update( &ctx.shabal, vhash, 64 );
|
|
shabal512_4way_close( &ctx.shabal, vhash );
|
|
dintrlv_4x32( hash0, hash1, hash2, hash3, vhash, 512 );
|
|
|
|
// 15 Whirlpool
|
|
sph_whirlpool( &ctx.whirlpool, hash0, 64 );
|
|
sph_whirlpool_close( &ctx.whirlpool, hash0 );
|
|
memcpy( &ctx.whirlpool, &x15_4way_ctx.whirlpool,
|
|
sizeof(sph_whirlpool_context) );
|
|
sph_whirlpool( &ctx.whirlpool, hash1, 64 );
|
|
sph_whirlpool_close( &ctx.whirlpool, hash1 );
|
|
memcpy( &ctx.whirlpool, &x15_4way_ctx.whirlpool,
|
|
sizeof(sph_whirlpool_context) );
|
|
sph_whirlpool( &ctx.whirlpool, hash2, 64 );
|
|
sph_whirlpool_close( &ctx.whirlpool, hash2 );
|
|
memcpy( &ctx.whirlpool, &x15_4way_ctx.whirlpool,
|
|
sizeof(sph_whirlpool_context) );
|
|
sph_whirlpool( &ctx.whirlpool, hash3, 64 );
|
|
sph_whirlpool_close( &ctx.whirlpool, hash3 );
|
|
|
|
memcpy( state, hash0, 32 );
|
|
memcpy( state+32, hash1, 32 );
|
|
memcpy( state+64, hash2, 32 );
|
|
memcpy( state+96, hash3, 32 );
|
|
}
|
|
|
|
int scanhash_x15_4way( struct work *work, uint32_t max_nonce,
|
|
uint64_t *hashes_done, struct thr_info *mythr )
|
|
{
|
|
uint32_t hash[4*8] __attribute__ ((aligned (128)));
|
|
uint32_t vdata[24*4] __attribute__ ((aligned (64)));
|
|
uint32_t *pdata = work->data;
|
|
uint32_t *ptarget = work->target;
|
|
const uint32_t first_nonce = pdata[19];
|
|
uint32_t n = first_nonce;
|
|
const uint32_t last_nonce = max_nonce - 4;
|
|
__m256i *noncev = (__m256i*)vdata + 9;
|
|
const uint32_t Htarg = ptarget[7];
|
|
int thr_id = mythr->id;
|
|
mm256_bswap32_intrlv80_4x64( vdata, pdata );
|
|
|
|
do
|
|
{
|
|
*noncev = mm256_intrlv_blend_32( mm256_bswap_32(
|
|
_mm256_set_epi32( n+3, 0, n+2, 0, n+1, 0, n, 0 ) ), *noncev );
|
|
|
|
x15_4way_hash( hash, vdata );
|
|
pdata[19] = n;
|
|
|
|
for ( int i = 0; i < 4; i++ )
|
|
if ( ( hash+(i<<3) )[7] <= Htarg )
|
|
if ( fulltest( hash+(i<<3), ptarget ) && !opt_benchmark )
|
|
{
|
|
pdata[19] = n+i;
|
|
submit_solution( work, hash, mythr );
|
|
}
|
|
n += 4;
|
|
} while ( ( n < last_nonce ) && !work_restart[thr_id].restart );
|
|
|
|
*hashes_done = n - first_nonce;
|
|
return 0;
|
|
}
|
|
|
|
#endif
|