mirror of
https://github.com/JayDDee/cpuminer-opt.git
synced 2025-09-17 23:44:27 +00:00
v3.7.8
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288
algo/x17/xevan.c
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288
algo/x17/xevan.c
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#include "xevan-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/sph_blake.h"
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#include "algo/bmw/sph_bmw.h"
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#include "algo/jh/sph_jh.h"
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#include "algo/keccak/sph_keccak.h"
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#include "algo/skein/sph_skein.h"
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#include "algo/shavite/sph_shavite.h"
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#include "algo/luffa/sse2/luffa_for_sse2.h"
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#include "algo/hamsi/sph_hamsi.h"
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#include "algo/fugue/sph_fugue.h"
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#include "algo/shabal/sph_shabal.h"
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#include "algo/whirlpool/sph_whirlpool.h"
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#include "algo/sha/sph_sha2.h"
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#include "algo/haval/sph-haval.h"
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#include "algo/simd/sse2/nist.h"
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#include "algo/cubehash/sse2/cubehash_sse2.h"
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#include <openssl/sha.h>
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#ifdef NO_AES_NI
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#include "algo/groestl/sph_groestl.h"
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#include "algo/echo/sph_echo.h"
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#else
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#include "algo/groestl/aes_ni/hash-groestl.h"
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#include "algo/echo/aes_ni/hash_api.h"
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#endif
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typedef struct {
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sph_blake512_context blake;
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sph_bmw512_context bmw;
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sph_skein512_context skein;
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sph_jh512_context jh;
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sph_keccak512_context keccak;
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hashState_luffa luffa;
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cubehashParam cubehash;
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sph_shavite512_context shavite;
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hashState_sd simd;
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sph_hamsi512_context hamsi;
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sph_fugue512_context fugue;
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sph_shabal512_context shabal;
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sph_whirlpool_context whirlpool;
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#ifndef USE_SPH_SHA
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SHA512_CTX sha512;
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#else
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sph_sha512_context sha512;
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#endif
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sph_haval256_5_context haval;
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#ifdef NO_AES_NI
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sph_groestl512_context groestl;
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sph_echo512_context echo;
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#else
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hashState_echo echo;
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hashState_groestl groestl;
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#endif
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} xevan_ctx_holder;
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xevan_ctx_holder xevan_ctx __attribute__ ((aligned (64)));
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static __thread sph_blake512_context xevan_blake_mid
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__attribute__ ((aligned (64)));
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void init_xevan_ctx()
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{
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sph_blake512_init(&xevan_ctx.blake);
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sph_bmw512_init(&xevan_ctx.bmw);
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sph_skein512_init(&xevan_ctx.skein);
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sph_jh512_init(&xevan_ctx.jh);
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sph_keccak512_init(&xevan_ctx.keccak);
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init_luffa( &xevan_ctx.luffa, 512 );
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cubehashInit( &xevan_ctx.cubehash, 512, 16, 32 );
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sph_shavite512_init( &xevan_ctx.shavite );
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init_sd( &xevan_ctx.simd, 512 );
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sph_hamsi512_init( &xevan_ctx.hamsi );
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sph_fugue512_init( &xevan_ctx.fugue );
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sph_shabal512_init( &xevan_ctx.shabal );
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sph_whirlpool_init( &xevan_ctx.whirlpool );
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#ifndef USE_SPH_SHA
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SHA512_Init( &xevan_ctx.sha512 );
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#else
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sph_sha512_init(&xevan_ctx.sha512);
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#endif
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sph_haval256_5_init(&xevan_ctx.haval);
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#ifdef NO_AES_NI
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sph_groestl512_init( &xevan_ctx.groestl );
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sph_echo512_init( &xevan_ctx.echo );
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#else
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init_groestl( &xevan_ctx.groestl, 64 );
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init_echo( &xevan_ctx.echo, 512 );
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#endif
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};
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void xevan_blake512_midstate( const void* input )
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{
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memcpy( &xevan_blake_mid, &xevan_ctx.blake, sizeof xevan_blake_mid );
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sph_blake512( &xevan_blake_mid, input, 64 );
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}
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void xevan_hash(void *output, const void *input)
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{
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uint32_t _ALIGN(64) hash[32]; // 128 bytes required
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const int dataLen = 128;
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xevan_ctx_holder ctx __attribute__ ((aligned (64)));
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memcpy( &ctx, &xevan_ctx, sizeof(xevan_ctx) );
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const int midlen = 64; // bytes
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const int tail = 80 - midlen; // 16
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memcpy( &ctx.blake, &xevan_blake_mid, sizeof xevan_blake_mid );
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sph_blake512( &ctx.blake, input + midlen, tail );
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sph_blake512_close(&ctx.blake, hash);
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memset(&hash[16], 0, 64);
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sph_bmw512(&ctx.bmw, hash, dataLen);
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sph_bmw512_close(&ctx.bmw, hash);
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#ifdef NO_AES_NI
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sph_groestl512(&ctx.groestl, hash, dataLen);
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sph_groestl512_close(&ctx.groestl, hash);
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#else
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update_and_final_groestl( &ctx.groestl, (char*)hash,
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(const char*)hash, dataLen*8 );
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#endif
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sph_skein512(&ctx.skein, hash, dataLen);
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sph_skein512_close(&ctx.skein, hash);
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sph_jh512(&ctx.jh, hash, dataLen);
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sph_jh512_close(&ctx.jh, hash);
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sph_keccak512(&ctx.keccak, hash, dataLen);
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sph_keccak512_close(&ctx.keccak, hash);
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update_and_final_luffa( &ctx.luffa, (BitSequence*)hash,
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(const BitSequence*)hash, dataLen );
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cubehashUpdateDigest( &ctx.cubehash, (byte*)hash,
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(const byte*) hash, dataLen );
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sph_shavite512(&ctx.shavite, hash, dataLen);
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sph_shavite512_close(&ctx.shavite, hash);
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update_final_sd( &ctx.simd, (BitSequence *)hash,
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(const BitSequence *)hash, dataLen*8 );
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#ifdef NO_AES_NI
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sph_echo512(&ctx.echo, hash, dataLen);
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sph_echo512_close(&ctx.echo, hash);
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#else
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update_final_echo( &ctx.echo, (BitSequence *) hash,
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(const BitSequence *) hash, dataLen*8 );
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#endif
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sph_hamsi512(&ctx.hamsi, hash, dataLen);
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sph_hamsi512_close(&ctx.hamsi, hash);
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sph_fugue512(&ctx.fugue, hash, dataLen);
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sph_fugue512_close(&ctx.fugue, hash);
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sph_shabal512(&ctx.shabal, hash, dataLen);
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sph_shabal512_close(&ctx.shabal, hash);
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sph_whirlpool(&ctx.whirlpool, hash, dataLen);
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sph_whirlpool_close(&ctx.whirlpool, hash);
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#ifndef USE_SPH_SHA
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SHA512_Update( &ctx.sha512, hash, dataLen );
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SHA512_Final( (unsigned char*) hash, &ctx.sha512 );
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#else
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sph_sha512(&ctx.sha512,(const void*) hash, dataLen);
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sph_sha512_close(&ctx.sha512,(void*) hash);
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#endif
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sph_haval256_5(&ctx.haval,(const void*) hash, dataLen);
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sph_haval256_5_close(&ctx.haval, hash);
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memset(&hash[8], 0, dataLen - 32);
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memcpy( &ctx, &xevan_ctx, sizeof(xevan_ctx) );
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sph_blake512(&ctx.blake, hash, dataLen);
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sph_blake512_close(&ctx.blake, hash);
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sph_bmw512(&ctx.bmw, hash, dataLen);
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sph_bmw512_close(&ctx.bmw, hash);
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#ifdef NO_AES_NI
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sph_groestl512(&ctx.groestl, hash, dataLen);
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sph_groestl512_close(&ctx.groestl, hash);
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#else
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update_and_final_groestl( &ctx.groestl, (char*)hash,
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(const BitSequence*)hash, dataLen*8 );
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#endif
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sph_skein512(&ctx.skein, hash, dataLen);
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sph_skein512_close(&ctx.skein, hash);
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sph_jh512(&ctx.jh, hash, dataLen);
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sph_jh512_close(&ctx.jh, hash);
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sph_keccak512(&ctx.keccak, hash, dataLen);
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sph_keccak512_close(&ctx.keccak, hash);
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update_and_final_luffa( &ctx.luffa, (BitSequence*)hash,
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(const BitSequence*)hash, dataLen );
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cubehashUpdateDigest( &ctx.cubehash, (byte*)hash,
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(const byte*) hash, dataLen );
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sph_shavite512(&ctx.shavite, hash, dataLen);
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sph_shavite512_close(&ctx.shavite, hash);
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update_final_sd( &ctx.simd, (BitSequence *)hash,
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(const BitSequence *)hash, dataLen*8 );
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#ifdef NO_AES_NI
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sph_echo512(&ctx.echo, hash, dataLen);
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sph_echo512_close(&ctx.echo, hash);
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#else
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update_final_echo( &ctx.echo, (BitSequence *) hash,
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(const BitSequence *) hash, dataLen*8 );
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#endif
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sph_hamsi512(&ctx.hamsi, hash, dataLen);
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sph_hamsi512_close(&ctx.hamsi, hash);
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sph_fugue512(&ctx.fugue, hash, dataLen);
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sph_fugue512_close(&ctx.fugue, hash);
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sph_shabal512(&ctx.shabal, hash, dataLen);
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sph_shabal512_close(&ctx.shabal, hash);
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sph_whirlpool(&ctx.whirlpool, hash, dataLen);
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sph_whirlpool_close(&ctx.whirlpool, hash);
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#ifndef USE_SPH_SHA
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SHA512_Update( &ctx.sha512, hash, dataLen );
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SHA512_Final( (unsigned char*) hash, &ctx.sha512 );
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#else
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sph_sha512(&ctx.sha512,(const void*) hash, dataLen);
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sph_sha512_close(&ctx.sha512,(void*) hash);
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#endif
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sph_haval256_5(&ctx.haval,(const void*) hash, dataLen);
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sph_haval256_5_close(&ctx.haval, hash);
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memcpy(output, hash, 32);
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}
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int scanhash_xevan(int thr_id, struct work *work, uint32_t max_nonce, uint64_t *hashes_done)
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{
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uint32_t _ALIGN(64) hash[8];
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uint32_t _ALIGN(64) endiandata[20];
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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 Htarg = ptarget[7];
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const uint32_t first_nonce = pdata[19];
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uint32_t nonce = first_nonce;
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volatile uint8_t *restart = &(work_restart[thr_id].restart);
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if (opt_benchmark)
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ptarget[7] = 0x0cff;
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for (int k=0; k < 19; k++)
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be32enc(&endiandata[k], pdata[k]);
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xevan_blake512_midstate( endiandata );
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do {
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be32enc(&endiandata[19], nonce);
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xevan_hash(hash, endiandata);
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if (hash[7] <= Htarg && fulltest(hash, ptarget)) {
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work_set_target_ratio(work, hash);
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pdata[19] = nonce;
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*hashes_done = pdata[19] - first_nonce;
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return 1;
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}
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nonce++;
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} while (nonce < max_nonce && !(*restart));
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pdata[19] = nonce;
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*hashes_done = pdata[19] - first_nonce + 1;
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return 0;
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}
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