#include "cpuminer-config.h" #include "anime-gate.h" #if !defined(ANIME_8WAY) && !defined(ANIME_4WAY) #include #include #include #include "algo/blake/sph_blake.h" #include "algo/bmw/sph_bmw.h" #include "algo/skein/sph_skein.h" #include "algo/jh/sph_jh.h" #include "algo/keccak/sph_keccak.h" #ifdef __AES__ #include "algo/groestl/aes_ni/hash-groestl.h" #else #include "algo/groestl/sph_groestl.h" #endif typedef struct { sph_blake512_context blake; sph_bmw512_context bmw; #ifdef __AES__ hashState_groestl groestl; #else sph_groestl512_context groestl; #endif sph_jh512_context jh; sph_skein512_context skein; sph_keccak512_context keccak; } anime_ctx_holder; anime_ctx_holder anime_ctx __attribute__ ((aligned (64))); void init_anime_ctx() { sph_blake512_init( &anime_ctx.blake ); sph_bmw512_init( &anime_ctx.bmw ); #ifdef __AES__ init_groestl( &anime_ctx.groestl, 64 ); #else sph_groestl512_init( &anime_ctx.groestl ); #endif sph_skein512_init( &anime_ctx.skein ); sph_jh512_init( &anime_ctx.jh ); sph_keccak512_init( &anime_ctx.keccak ); } void anime_hash( void *state, const void *input ) { unsigned char hash[128] __attribute__ ((aligned (32))); uint32_t mask = 8; anime_ctx_holder ctx; memcpy( &ctx, &anime_ctx, sizeof(anime_ctx) ); sph_bmw512( &ctx.bmw, input, 80 ); sph_bmw512_close( &ctx.bmw, hash ); sph_blake512( &ctx.blake, hash, 64 ); sph_blake512_close( &ctx.blake, hash ); if ( ( hash[0] & mask ) != 0 ) { #ifdef __AES__ update_and_final_groestl( &ctx.groestl, (char*)hash, (char*)hash, 512 ); reinit_groestl( &ctx.groestl ); #else sph_groestl512 ( &ctx.groestl, hash, 64 ); sph_groestl512_close( &ctx.groestl, hash ); sph_groestl512_init( &ctx.groestl ); #endif } else { sph_skein512( &ctx.skein, hash, 64 ); sph_skein512_close( &ctx.skein, hash ); sph_skein512_init( &ctx.skein ); } #ifdef __AES__ update_and_final_groestl( &ctx.groestl, (char*)hash, (char*)hash, 512 ); #else sph_groestl512 ( &ctx.groestl, hash, 64 ); sph_groestl512_close( &ctx.groestl, hash ); #endif sph_jh512( &ctx.jh, hash, 64 ); sph_jh512_close( &ctx.jh, hash ); if ( ( hash[0] & mask ) != 0 ) { sph_blake512_init( &ctx.blake ); sph_blake512( &ctx.blake, hash, 64 ); sph_blake512_close( &ctx.blake, hash ); } else { sph_bmw512_init( &ctx.bmw ); sph_bmw512( &ctx.bmw, hash, 64 ); sph_bmw512_close( &ctx.bmw, hash ); } sph_keccak512( &ctx.keccak, hash, 64 ); sph_keccak512_close( &ctx.keccak, hash ); sph_skein512( &ctx.skein, hash, 64 ); sph_skein512_close( &ctx.skein, hash ); if ( ( hash[0] & mask ) != 0 ) { sph_keccak512_init( &ctx.keccak ); sph_keccak512( &ctx.keccak, hash, 64 ); sph_keccak512_close( &ctx.keccak, hash ); } else { sph_jh512_init( &ctx.jh ); sph_jh512( &ctx.jh, hash, 64 ); sph_jh512_close( &ctx.jh, hash ); } memcpy( state, hash, 32 ); } int scanhash_anime( struct work *work, uint32_t max_nonce, uint64_t *hashes_done, struct thr_info *mythr) { uint32_t hash[8] __attribute__ ((aligned (64))); uint32_t edata[20] __attribute__((aligned(64))); uint32_t *pdata = work->data; uint32_t *ptarget = work->target; uint32_t n = pdata[19]; const uint32_t first_nonce = pdata[19]; const int thr_id = mythr->id; const int bench = opt_benchmark; swab32_array( edata, pdata, 20 ); do { edata[19] = n; anime_hash( hash, edata ); if ( valid_hash( hash, ptarget ) && !bench ) { be32enc( &pdata[19], n ); submit_solution( work, hash, mythr ); } n++; } while ( ( n < max_nonce ) && !work_restart[thr_id].restart ); *hashes_done = n - first_nonce; pdata[19] = n; return 0; } #endif