#include "lbry-gate.h" #if !defined(LBRY_16WAY) && !defined(LBRY_8WAY) && !defined(LBRY_4WAY) #include #include #include #include #include "sph_ripemd.h" #include "algo/sha/sha256-hash.h" void lbry_hash(void* output, const void* input) { sha256_context ctx_sha256 __attribute__ ((aligned (64))); sph_sha512_context ctx_sha512 __attribute__ ((aligned (64))); sph_ripemd160_context ctx_ripemd __attribute__ ((aligned (64))); uint32_t _ALIGN(64) hashA[16]; uint32_t _ALIGN(64) hashB[16]; uint32_t _ALIGN(64) hashC[16]; sha256_full( hashA, input, 112 ); sha256_full( hashA, hashA, 32 ); sph_sha512_init( &ctx_sha512 ); sph_sha512( &ctx_sha512, hashA, 32 ); sph_sha512_close( &ctx_sha512, hashA ); sph_ripemd160_init( &ctx_ripemd ); sph_ripemd160 ( &ctx_ripemd, hashA, 32 ); sph_ripemd160_close( &ctx_ripemd, hashB ); sph_ripemd160_init( &ctx_ripemd ); sph_ripemd160 ( &ctx_ripemd, hashA+8, 32 ); sph_ripemd160_close( &ctx_ripemd, hashC ); sha256_ctx_init( &ctx_sha256 ); sha256_update( &ctx_sha256, hashB, 20 ); sha256_update( &ctx_sha256, hashC, 20 ); sha256_final( &ctx_sha256, hashA ); sha256_full( hashA, hashA, 32 ); memcpy( output, hashA, 32 ); } int scanhash_lbry( struct work *work, uint32_t max_nonce, uint64_t *hashes_done, struct thr_info *mythr) { uint32_t *pdata = work->data; uint32_t *ptarget = work->target; uint32_t n = pdata[27] - 1; const uint32_t first_nonce = pdata[27]; const uint32_t Htarg = ptarget[7]; int thr_id = mythr->id; // thr_id arg is deprecated uint32_t hash64[8] __attribute__((aligned(64))); uint32_t endiandata[32] __attribute__ ((aligned (64))); uint64_t htmax[] = { 0, 0xF, 0xFF, 0xFFF, 0xFFFF, 0x10000000 }; uint32_t masks[] = { 0xFFFFFFFF, 0xFFFFFFF0, 0xFFFFFF00, 0xFFFFF000, 0xFFFF0000, 0 }; // we need bigendian data... swab32_array( endiandata, pdata, 32 ); for (int m=0; m < sizeof(masks); m++) { if (Htarg <= htmax[m]) { uint32_t mask = masks[m]; do { pdata[27] = ++n; be32enc(&endiandata[27], n); lbry_hash(hash64, &endiandata); if ((!(hash64[7] & mask)) && fulltest(hash64, ptarget)) { pdata[27] = n; submit_solution( work, hash64, mythr ); } } while ( (n < max_nonce -8) && !work_restart[thr_id].restart); break; } } *hashes_done = n - first_nonce + 1; pdata[27] = n; return 0; } #endif