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https://github.com/JayDDee/cpuminer-opt.git
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v3.9.11
This commit is contained in:
311
algo/x22/x22i-4way.c
Normal file
311
algo/x22/x22i-4way.c
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@@ -0,0 +1,311 @@
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#include "x22i-gate.h"
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#if defined(X22I_4WAY)
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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/echo/aes_ni/hash_api.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/cube-hash-2way.h"
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#include "algo/shavite/shavite-hash-2way.h"
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#include "algo/simd/simd-hash-2way.h"
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#include "algo/shavite/sph_shavite.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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#include "algo/sha/sha-hash-4way.h"
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#include "algo/haval/haval-hash-4way.h"
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#include "algo/tiger/sph_tiger.h"
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#include "algo/lyra2/lyra2.h"
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#include "algo/gost/sph_gost.h"
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#include "algo/swifftx/swifftx.h"
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union _x22i_4way_ctx_overlay
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{
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blake512_4way_context blake;
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bmw512_4way_context bmw;
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hashState_groestl groestl;
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hashState_echo echo;
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skein512_4way_context skein;
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jh512_4way_context jh;
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keccak512_4way_context keccak;
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luffa_2way_context luffa;
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cube_2way_context cube;
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shavite512_2way_context shavite;
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simd_2way_context simd;
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hamsi512_4way_context hamsi;
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sph_fugue512_context fugue;
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shabal512_4way_context shabal;
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sph_whirlpool_context whirlpool;
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sha512_4way_context sha512;
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haval256_5_4way_context haval;
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sph_tiger_context tiger;
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sph_gost512_context gost;
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sha256_4way_context sha256;
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};
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typedef union _x22i_4way_ctx_overlay x22i_ctx_overlay;
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void x22i_4way_hash( void *output, const void *input )
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{
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uint64_t hash0[8*4] __attribute__ ((aligned (64)));
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uint64_t hash1[8*4] __attribute__ ((aligned (64)));
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uint64_t hash2[8*4] __attribute__ ((aligned (64)));
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uint64_t hash3[8*4] __attribute__ ((aligned (64)));
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uint64_t vhash[8*4] __attribute__ ((aligned (64)));
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uint64_t vhashA[8*4] __attribute__ ((aligned (64)));
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uint64_t vhashB[8*4] __attribute__ ((aligned (64)));
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// unsigned char hash[64 * 4] __attribute__((aligned(64))) = {0};
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unsigned char hashA0[64] __attribute__((aligned(64))) = {0};
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unsigned char hashA1[64] __attribute__((aligned(32))) = {0};
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unsigned char hashA2[64] __attribute__((aligned(32))) = {0};
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unsigned char hashA3[64] __attribute__((aligned(32))) = {0};
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x22i_ctx_overlay ctx;
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blake512_4way_init( &ctx.blake );
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blake512_4way( &ctx.blake, input, 80 );
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blake512_4way_close( &ctx.blake, vhash );
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bmw512_4way_init( &ctx.bmw );
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bmw512_4way( &ctx.bmw, vhash, 64 );
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bmw512_4way_close( &ctx.bmw, vhash );
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dintrlv_4x64_512( hash0, hash1, hash2, hash3, vhash );
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init_groestl( &ctx.groestl, 64 );
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update_and_final_groestl( &ctx.groestl, (char*)hash0,
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(const char*)hash0, 512 );
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init_groestl( &ctx.groestl, 64 );
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update_and_final_groestl( &ctx.groestl, (char*)hash1,
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(const char*)hash1, 512 );
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init_groestl( &ctx.groestl, 64 );
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update_and_final_groestl( &ctx.groestl, (char*)hash2,
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(const char*)hash2, 512 );
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init_groestl( &ctx.groestl, 64 );
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update_and_final_groestl( &ctx.groestl, (char*)hash3,
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(const char*)hash3, 512 );
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intrlv_4x64_512( vhash, hash0, hash1, hash2, hash3 );
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skein512_4way_init( &ctx.skein );
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skein512_4way( &ctx.skein, vhash, 64 );
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skein512_4way_close( &ctx.skein, vhash );
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jh512_4way_init( &ctx.jh );
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jh512_4way( &ctx.jh, vhash, 64 );
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jh512_4way_close( &ctx.jh, vhash );
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keccak512_4way_init( &ctx.keccak );
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keccak512_4way( &ctx.keccak, vhash, 64 );
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keccak512_4way_close( &ctx.keccak, vhash );
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rintrlv_4x64_2x128( vhashA, vhashB, vhash, 512 );
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luffa_2way_init( &ctx.luffa, 512 );
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luffa_2way_update_close( &ctx.luffa, vhashA, vhashA, 64 );
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luffa_2way_init( &ctx.luffa, 512 );
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luffa_2way_update_close( &ctx.luffa, vhashB, vhashB, 64 );
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cube_2way_init( &ctx.cube, 512, 16, 32 );
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cube_2way_update_close( &ctx.cube, vhashA, vhashA, 64 );
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cube_2way_init( &ctx.cube, 512, 16, 32 );
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cube_2way_update_close( &ctx.cube, vhashB, vhashB, 64 );
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shavite512_2way_init( &ctx.shavite );
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shavite512_2way_update_close( &ctx.shavite, vhashA, vhashA, 64 );
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shavite512_2way_init( &ctx.shavite );
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shavite512_2way_update_close( &ctx.shavite, vhashB, vhashB, 64 );
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simd_2way_init( &ctx.simd, 512 );
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simd_2way_update_close( &ctx.simd, vhashA, vhashA, 512 );
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simd_2way_init( &ctx.simd, 512 );
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simd_2way_update_close( &ctx.simd, vhashB, vhashB, 512 );
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dintrlv_2x128_512( hash0, hash1, vhashA );
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dintrlv_2x128_512( hash2, hash3, vhashB );
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init_echo( &ctx.echo, 512 );
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update_final_echo ( &ctx.echo, (BitSequence*)hash0,
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(const BitSequence*)hash0, 512 );
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init_echo( &ctx.echo, 512 );
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update_final_echo ( &ctx.echo, (BitSequence*)hash1,
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(const BitSequence*)hash1, 512 );
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init_echo( &ctx.echo, 512 );
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update_final_echo ( &ctx.echo, (BitSequence*)hash2,
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(const BitSequence*)hash2, 512 );
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init_echo( &ctx.echo, 512 );
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update_final_echo ( &ctx.echo, (BitSequence*)hash3,
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(const BitSequence*)hash3, 512 );
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intrlv_4x64_512( vhash, hash0, hash1, hash2, hash3 );
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hamsi512_4way_init( &ctx.hamsi );
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hamsi512_4way( &ctx.hamsi, vhash, 64 );
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hamsi512_4way_close( &ctx.hamsi, vhash );
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dintrlv_4x64_512( hash0, hash1, hash2, hash3, vhash );
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sph_fugue512_init( &ctx.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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sph_fugue512_init( &ctx.fugue );
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sph_fugue512( &ctx.fugue, hash1, 64 );
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sph_fugue512_close( &ctx.fugue, hash1 );
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sph_fugue512_init( &ctx.fugue );
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sph_fugue512( &ctx.fugue, hash2, 64 );
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sph_fugue512_close( &ctx.fugue, hash2 );
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sph_fugue512_init( &ctx.fugue );
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sph_fugue512( &ctx.fugue, hash3, 64 );
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sph_fugue512_close( &ctx.fugue, hash3 );
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intrlv_4x32_512( vhash, hash0, hash1, hash2, hash3 );
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shabal512_4way_init( &ctx.shabal );
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shabal512_4way( &ctx.shabal, vhash, 64 );
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shabal512_4way_close( &ctx.shabal, vhash );
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dintrlv_4x32_512( &hash0[8], &hash1[8], &hash2[8], &hash3[8], vhash );
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sph_whirlpool_init( &ctx.whirlpool );
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sph_whirlpool( &ctx.whirlpool, &hash0[8], 64 );
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sph_whirlpool_close( &ctx.whirlpool, &hash0[16] );
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sph_whirlpool_init( &ctx.whirlpool );
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sph_whirlpool( &ctx.whirlpool, &hash1[8], 64 );
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sph_whirlpool_close( &ctx.whirlpool, &hash1[16] );
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sph_whirlpool_init( &ctx.whirlpool );
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sph_whirlpool( &ctx.whirlpool, &hash2[8], 64 );
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sph_whirlpool_close( &ctx.whirlpool, &hash2[16] );
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sph_whirlpool_init( &ctx.whirlpool );
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sph_whirlpool( &ctx.whirlpool, &hash3[8], 64 );
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sph_whirlpool_close( &ctx.whirlpool, &hash3[16] );
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intrlv_4x64_512( vhash, &hash0[16], &hash1[16], &hash2[16], &hash3[16] );
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sha512_4way_init( &ctx.sha512 );
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sha512_4way( &ctx.sha512, vhash, 64 );
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sha512_4way_close( &ctx.sha512, vhash );
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dintrlv_4x64_512( &hash0[24], &hash1[24], &hash2[24], &hash3[24], vhash );
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// InitializeSWIFFTX();
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ComputeSingleSWIFFTX((unsigned char*)hash0, (unsigned char*)hashA0);
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ComputeSingleSWIFFTX((unsigned char*)hash1, (unsigned char*)hashA1);
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ComputeSingleSWIFFTX((unsigned char*)hash2, (unsigned char*)hashA2);
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ComputeSingleSWIFFTX((unsigned char*)hash3, (unsigned char*)hashA3);
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intrlv_4x32_512( vhashA, hashA0, hashA1, hashA2, hashA3 );
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memset( vhash, 0, 64*4 );
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haval256_5_4way_init( &ctx.haval );
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haval256_5_4way( &ctx.haval, vhashA, 64 );
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haval256_5_4way_close( &ctx.haval, vhash );
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dintrlv_4x32_512( hash0, hash1, hash2, hash3, vhash );
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memset( hashA0, 0, 64 );
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memset( hashA1, 0, 64 );
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memset( hashA2, 0, 64 );
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memset( hashA3, 0, 64 );
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sph_tiger_init(&ctx.tiger);
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sph_tiger (&ctx.tiger, (const void*) hash0, 64);
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sph_tiger_close(&ctx.tiger, (void*) hashA0);
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sph_tiger_init(&ctx.tiger);
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sph_tiger (&ctx.tiger, (const void*) hash1, 64);
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sph_tiger_close(&ctx.tiger, (void*) hashA1);
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sph_tiger_init(&ctx.tiger);
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sph_tiger (&ctx.tiger, (const void*) hash2, 64);
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sph_tiger_close(&ctx.tiger, (void*) hashA2);
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sph_tiger_init(&ctx.tiger);
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sph_tiger (&ctx.tiger, (const void*) hash3, 64);
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sph_tiger_close(&ctx.tiger, (void*) hashA3);
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memset( hash0, 0, 64 );
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memset( hash1, 0, 64 );
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memset( hash2, 0, 64 );
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memset( hash3, 0, 64 );
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LYRA2RE( (void*) hash0, 32, (const void*) hashA0, 32, (const void*) hashA0,
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32, 1, 4, 4 );
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LYRA2RE( (void*) hash1, 32, (const void*) hashA1, 32, (const void*) hashA1,
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32, 1, 4, 4 );
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LYRA2RE( (void*) hash2, 32, (const void*) hashA2, 32, (const void*) hashA2,
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32, 1, 4, 4 );
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LYRA2RE( (void*) hash3, 32, (const void*) hashA3, 32, (const void*) hashA3,
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32, 1, 4, 4 );
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sph_gost512_init(&ctx.gost);
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sph_gost512 (&ctx.gost, (const void*) hash0, 64);
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sph_gost512_close(&ctx.gost, (void*) hash0);
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sph_gost512_init(&ctx.gost);
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sph_gost512 (&ctx.gost, (const void*) hash1, 64);
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sph_gost512_close(&ctx.gost, (void*) hash1);
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sph_gost512_init(&ctx.gost);
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sph_gost512 (&ctx.gost, (const void*) hash2, 64);
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sph_gost512_close(&ctx.gost, (void*) hash2);
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sph_gost512_init(&ctx.gost);
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sph_gost512 (&ctx.gost, (const void*) hash3, 64);
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sph_gost512_close(&ctx.gost, (void*) hash3);
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intrlv_4x32_512( vhash, hash0, hash1, hash2, hash3 );
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sha256_4way_init( &ctx.sha256 );
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sha256_4way( &ctx.sha256, vhash, 64 );
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sha256_4way_close( &ctx.sha256, output );
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// memcpy(output, hash, 32);
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}
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int scanhash_x22i_4way( 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[4*16] __attribute__ ((aligned (64)));
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uint32_t vdata[24*4] __attribute__ ((aligned (64)));
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uint32_t lane_hash[8] __attribute__ ((aligned (32)));
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uint32_t *hash7 = &(hash[7<<2]);
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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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__m256i *noncev = (__m256i*)vdata + 9; // aligned
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uint32_t n = first_nonce;
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const int thr_id = mythr->id;
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const uint32_t Htarg = ptarget[7];
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if (opt_benchmark)
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((uint32_t*)ptarget)[7] = 0x08ff;
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InitializeSWIFFTX();
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mm256_bswap32_intrlv80_4x64( vdata, pdata );
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do
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{
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*noncev = mm256_intrlv_blend_32( mm256_bswap_32(
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_mm256_set_epi32( n+3, 0, n+2, 0, n+1, 0, n, 0 ) ), *noncev );
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x22i_4way_hash( hash, vdata );
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for ( int lane = 0; lane < 4; lane++ )
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if unlikely( ( hash7[ lane ] <= Htarg ) )
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{
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extr_lane_4x32( lane_hash, hash, lane, 256 );
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if ( likely( fulltest( lane_hash, ptarget ) && !opt_benchmark ) )
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{
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pdata[19] = n + lane;
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submit_lane_solution( work, lane_hash, mythr, lane );
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}
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}
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n += 4;
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} while ( likely( ( n < max_nonce - 4 ) && !work_restart[thr_id].restart ) );
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*hashes_done = n - first_nonce + 1;
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return 0;
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}
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#endif // X22I_4WAY
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