mirror of https://github.com/GOSTSec/sgminer
phm
11 years ago
9 changed files with 419 additions and 0 deletions
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|
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/*-
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* Copyright 2014 phm |
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* All rights reserved. |
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* |
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* Redistribution and use in source and binary forms, with or without |
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* modification, are permitted provided that the following conditions |
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* are met: |
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* 1. Redistributions of source code must retain the above copyright |
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* notice, this list of conditions and the following disclaimer. |
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* 2. Redistributions in binary form must reproduce the above copyright |
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* notice, this list of conditions and the following disclaimer in the |
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* documentation and/or other materials provided with the distribution. |
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* |
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND |
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE |
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS |
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF |
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* SUCH DAMAGE. |
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*/ |
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#include "config.h" |
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#include "miner.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 "sph/sph_shavite.h" |
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/*
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* Encode a length len/4 vector of (uint32_t) into a length len vector of |
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* (unsigned char) in big-endian form. Assumes len is a multiple of 4. |
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*/ |
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static inline void |
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be32enc_vect(uint32_t *dst, const uint32_t *src, uint32_t len) |
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{ |
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uint32_t i; |
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for (i = 0; i < len; i++) |
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dst[i] = htobe32(src[i]); |
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} |
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inline void inkhash(void *state, const void *input) |
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{ |
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uint32_t hash[16]; |
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sph_shavite512_context ctx_shavite; |
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sph_shavite512_init(&ctx_shavite); |
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sph_shavite512 (&ctx_shavite, input, 80); |
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sph_shavite512_close(&ctx_shavite, hash); |
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sph_shavite512_init(&ctx_shavite); |
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sph_shavite512(&ctx_shavite, hash, 64); |
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sph_shavite512_close(&ctx_shavite, hash); |
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memcpy(state, hash, 32); |
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} |
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static const uint32_t diff1targ = 0x0000ffff; |
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/* Used externally as confirmation of correct OCL code */ |
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int inkcoin_test(unsigned char *pdata, const unsigned char *ptarget, uint32_t nonce) |
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{ |
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uint32_t tmp_hash7, Htarg = le32toh(((const uint32_t *)ptarget)[7]); |
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uint32_t data[20], ohash[8]; |
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//char *scratchbuf;
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be32enc_vect(data, (const uint32_t *)pdata, 19); |
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data[19] = htobe32(nonce); |
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//scratchbuf = alloca(SCRATCHBUF_SIZE);
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inkhash(ohash, data); |
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tmp_hash7 = be32toh(ohash[7]); |
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applog(LOG_DEBUG, "htarget %08lx diff1 %08lx hash %08lx", |
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(long unsigned int)Htarg, |
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(long unsigned int)diff1targ, |
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(long unsigned int)tmp_hash7); |
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if (tmp_hash7 > diff1targ) |
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return -1; |
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if (tmp_hash7 > Htarg) |
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return 0; |
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return 1; |
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} |
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void inkcoin_regenhash(struct work *work) |
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{ |
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uint32_t data[20]; |
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char *scratchbuf; |
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uint32_t *nonce = (uint32_t *)(work->data + 76); |
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uint32_t *ohash = (uint32_t *)(work->hash); |
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be32enc_vect(data, (const uint32_t *)work->data, 19); |
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data[19] = htobe32(*nonce); |
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inkhash(ohash, data); |
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} |
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bool scanhash_inkcoin(struct thr_info *thr, const unsigned char __maybe_unused *pmidstate, |
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unsigned char *pdata, unsigned char __maybe_unused *phash1, |
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unsigned char __maybe_unused *phash, const unsigned char *ptarget, |
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uint32_t max_nonce, uint32_t *last_nonce, uint32_t n) |
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{ |
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uint32_t *nonce = (uint32_t *)(pdata + 76); |
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char *scratchbuf; |
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uint32_t data[20]; |
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uint32_t tmp_hash7; |
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uint32_t Htarg = le32toh(((const uint32_t *)ptarget)[7]); |
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bool ret = false; |
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be32enc_vect(data, (const uint32_t *)pdata, 19); |
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while(1) { |
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uint32_t ostate[8]; |
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*nonce = ++n; |
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data[19] = (n); |
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xhash(ostate, data); |
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tmp_hash7 = (ostate[7]); |
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applog(LOG_INFO, "data7 %08lx", |
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(long unsigned int)data[7]); |
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if (unlikely(tmp_hash7 <= Htarg)) { |
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((uint32_t *)pdata)[19] = htobe32(n); |
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*last_nonce = n; |
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ret = true; |
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break; |
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} |
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if (unlikely((n >= max_nonce) || thr->work_restart)) { |
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*last_nonce = n; |
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break; |
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} |
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} |
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return ret; |
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} |
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@@ -0,0 +1,10 @@
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#ifndef INKCOIN_H |
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#define INKCOIN_H |
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#include "miner.h" |
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extern int inkcoin_test(unsigned char *pdata, const unsigned char *ptarget, |
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uint32_t nonce); |
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extern void inkcoin_regenhash(struct work *work); |
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#endif /* INKCOIN_H */ |
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/* |
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* InkCoin kernel implementation. |
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* |
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* ==========================(LICENSE BEGIN)============================ |
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* |
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* Copyright (c) 2014 phm |
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* |
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* Permission is hereby granted, free of charge, to any person obtaining |
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* a copy of this software and associated documentation files (the |
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* "Software"), to deal in the Software without restriction, including |
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* without limitation the rights to use, copy, modify, merge, publish, |
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* distribute, sublicense, and/or sell copies of the Software, and to |
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* permit persons to whom the Software is furnished to do so, subject to |
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* the following conditions: |
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* |
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* The above copyright notice and this permission notice shall be |
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* included in all copies or substantial portions of the Software. |
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* |
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, |
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF |
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. |
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* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY |
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* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, |
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* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE |
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* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. |
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* |
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* ===========================(LICENSE END)============================= |
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* |
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* @author phm <phm@inbox.com> |
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*/ |
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#ifndef DARKCOIN_CL |
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#define DARKCOIN_CL |
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#if __ENDIAN_LITTLE__ |
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#define SPH_LITTLE_ENDIAN 1 |
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#else |
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#define SPH_BIG_ENDIAN 1 |
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#endif |
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#define SPH_UPTR sph_u64 |
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typedef unsigned int sph_u32; |
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typedef int sph_s32; |
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#ifndef __OPENCL_VERSION__ |
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typedef unsigned long long sph_u64; |
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typedef long long sph_s64; |
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#else |
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typedef unsigned long sph_u64; |
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typedef long sph_s64; |
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#endif |
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#define SPH_64 1 |
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#define SPH_64_TRUE 1 |
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#define SPH_C32(x) ((sph_u32)(x ## U)) |
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#define SPH_T32(x) ((x) & SPH_C32(0xFFFFFFFF)) |
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#define SPH_ROTL32(x, n) SPH_T32(((x) << (n)) | ((x) >> (32 - (n)))) |
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#define SPH_ROTR32(x, n) SPH_ROTL32(x, (32 - (n))) |
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#define SPH_C64(x) ((sph_u64)(x ## UL)) |
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#define SPH_T64(x) ((x) & SPH_C64(0xFFFFFFFFFFFFFFFF)) |
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#define SPH_ROTL64(x, n) SPH_T64(((x) << (n)) | ((x) >> (64 - (n)))) |
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#define SPH_ROTR64(x, n) SPH_ROTL64(x, (64 - (n))) |
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#define SPH_ECHO_64 1 |
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#define SPH_KECCAK_64 1 |
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#define SPH_JH_64 1 |
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#define SPH_SIMD_NOCOPY 0 |
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#define SPH_KECCAK_NOCOPY 0 |
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#define SPH_COMPACT_BLAKE_64 0 |
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#define SPH_LUFFA_PARALLEL 0 |
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#define SPH_SMALL_FOOTPRINT_GROESTL 0 |
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#define SPH_GROESTL_BIG_ENDIAN 0 |
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#define SPH_CUBEHASH_UNROLL 0 |
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#define SPH_KECCAK_UNROLL 0 |
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#include "shavite.cl" |
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#define SWAP4(x) as_uint(as_uchar4(x).wzyx) |
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#define SWAP8(x) as_ulong(as_uchar8(x).s76543210) |
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#if SPH_BIG_ENDIAN |
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#define DEC64E(x) (x) |
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#define DEC64BE(x) (*(const __global sph_u64 *) (x)); |
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#define DEC32LE(x) SWAP4(*(const __global sph_u32 *) (x)); |
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#else |
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#define DEC64E(x) SWAP8(x) |
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#define DEC64BE(x) SWAP8(*(const __global sph_u64 *) (x)); |
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#define DEC32LE(x) (*(const __global sph_u32 *) (x)); |
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#endif |
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// __attribute__((reqd_work_group_size(WORKSIZE, 1, 1))) |
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__kernel void search(__global unsigned char* block, volatile __global uint* output, const ulong target) |
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{ |
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uint gid = get_global_id(0); |
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union { |
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unsigned char h1[64]; |
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uint h4[16]; |
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ulong h8[8]; |
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} hash; |
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__local sph_u32 AES0[256], AES1[256], AES2[256], AES3[256]; |
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int init = get_local_id(0); |
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int step = get_local_size(0); |
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for (int i = init; i < 256; i += step) |
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{ |
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AES0[i] = AES0_C[i]; |
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AES1[i] = AES1_C[i]; |
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AES2[i] = AES2_C[i]; |
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AES3[i] = AES3_C[i]; |
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} |
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barrier(CLK_LOCAL_MEM_FENCE); |
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// shavite |
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{ |
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// IV |
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sph_u32 h0 = SPH_C32(0x72FCCDD8), h1 = SPH_C32(0x79CA4727), h2 = SPH_C32(0x128A077B), h3 = SPH_C32(0x40D55AEC); |
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sph_u32 h4 = SPH_C32(0xD1901A06), h5 = SPH_C32(0x430AE307), h6 = SPH_C32(0xB29F5CD1), h7 = SPH_C32(0xDF07FBFC); |
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sph_u32 h8 = SPH_C32(0x8E45D73D), h9 = SPH_C32(0x681AB538), hA = SPH_C32(0xBDE86578), hB = SPH_C32(0xDD577E47); |
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sph_u32 hC = SPH_C32(0xE275EADE), hD = SPH_C32(0x502D9FCD), hE = SPH_C32(0xB9357178), hF = SPH_C32(0x022A4B9A); |
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// state |
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sph_u32 rk00, rk01, rk02, rk03, rk04, rk05, rk06, rk07; |
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sph_u32 rk08, rk09, rk0A, rk0B, rk0C, rk0D, rk0E, rk0F; |
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sph_u32 rk10, rk11, rk12, rk13, rk14, rk15, rk16, rk17; |
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sph_u32 rk18, rk19, rk1A, rk1B, rk1C, rk1D, rk1E, rk1F; |
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sph_u32 sc_count0 = (80 << 3), sc_count1 = 0, sc_count2 = 0, sc_count3 = 0; |
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rk00 = DEC32LE(block + 0 * 4);; |
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rk01 = DEC32LE(block + 1 * 4);; |
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rk02 = DEC32LE(block + 2 * 4);; |
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rk03 = DEC32LE(block + 3 * 4);; |
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rk04 = DEC32LE(block + 4 * 4);; |
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rk05 = DEC32LE(block + 5 * 4);; |
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rk06 = DEC32LE(block + 6 * 4);; |
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rk07 = DEC32LE(block + 7 * 4);; |
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rk08 = DEC32LE(block + 8 * 4);; |
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rk09 = DEC32LE(block + 9 * 4);; |
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rk0A = DEC32LE(block + 10 * 4);; |
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rk0B = DEC32LE(block + 11 * 4);; |
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rk0C = DEC32LE(block + 12 * 4);; |
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rk0D = DEC32LE(block + 13 * 4);; |
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rk0E = DEC32LE(block + 14 * 4);; |
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rk0F = DEC32LE(block + 15 * 4);; |
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rk10 = DEC32LE(block + 16 * 4);; |
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rk11 = DEC32LE(block + 17 * 4);; |
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rk12 = DEC32LE(block + 18 * 4);; |
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rk13 = gid; |
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rk14 = 0x80; |
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rk15 = rk16 = rk17 = rk18 = rk19 = rk1A = 0; |
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rk1B = 0x2800000; |
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rk1C = rk1D = rk1E = 0; |
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rk1F = 0x2000000; |
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c512(buf); |
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hash.h4[0] = h0; |
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hash.h4[1] = h1; |
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hash.h4[2] = h2; |
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hash.h4[3] = h3; |
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hash.h4[4] = h4; |
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hash.h4[5] = h5; |
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hash.h4[6] = h6; |
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hash.h4[7] = h7; |
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hash.h4[8] = h8; |
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hash.h4[9] = h9; |
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hash.h4[10] = hA; |
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hash.h4[11] = hB; |
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hash.h4[12] = hC; |
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hash.h4[13] = hD; |
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hash.h4[14] = hE; |
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hash.h4[15] = hF; |
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} |
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// shavite |
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{ |
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// IV |
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sph_u32 h0 = SPH_C32(0x72FCCDD8), h1 = SPH_C32(0x79CA4727), h2 = SPH_C32(0x128A077B), h3 = SPH_C32(0x40D55AEC); |
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sph_u32 h4 = SPH_C32(0xD1901A06), h5 = SPH_C32(0x430AE307), h6 = SPH_C32(0xB29F5CD1), h7 = SPH_C32(0xDF07FBFC); |
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sph_u32 h8 = SPH_C32(0x8E45D73D), h9 = SPH_C32(0x681AB538), hA = SPH_C32(0xBDE86578), hB = SPH_C32(0xDD577E47); |
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sph_u32 hC = SPH_C32(0xE275EADE), hD = SPH_C32(0x502D9FCD), hE = SPH_C32(0xB9357178), hF = SPH_C32(0x022A4B9A); |
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// state |
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sph_u32 rk00, rk01, rk02, rk03, rk04, rk05, rk06, rk07; |
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sph_u32 rk08, rk09, rk0A, rk0B, rk0C, rk0D, rk0E, rk0F; |
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sph_u32 rk10, rk11, rk12, rk13, rk14, rk15, rk16, rk17; |
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sph_u32 rk18, rk19, rk1A, rk1B, rk1C, rk1D, rk1E, rk1F; |
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sph_u32 sc_count0 = (64 << 3), sc_count1 = 0, sc_count2 = 0, sc_count3 = 0; |
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rk00 = hash.h4[0]; |
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rk01 = hash.h4[1]; |
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rk02 = hash.h4[2]; |
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rk03 = hash.h4[3]; |
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rk04 = hash.h4[4]; |
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rk05 = hash.h4[5]; |
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rk06 = hash.h4[6]; |
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rk07 = hash.h4[7]; |
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rk08 = hash.h4[8]; |
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rk09 = hash.h4[9]; |
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rk0A = hash.h4[10]; |
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rk0B = hash.h4[11]; |
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rk0C = hash.h4[12]; |
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rk0D = hash.h4[13]; |
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rk0E = hash.h4[14]; |
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rk0F = hash.h4[15]; |
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rk10 = 0x80; |
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rk11 = rk12 = rk13 = rk14 = rk15 = rk16 = rk17 = rk18 = rk19 = rk1A = 0; |
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rk1B = 0x2000000; |
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rk1C = rk1D = rk1E = 0; |
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rk1F = 0x2000000; |
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c512(buf); |
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hash.h4[0] = h0; |
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hash.h4[1] = h1; |
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hash.h4[2] = h2; |
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hash.h4[3] = h3; |
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hash.h4[4] = h4; |
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hash.h4[5] = h5; |
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hash.h4[6] = h6; |
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hash.h4[7] = h7; |
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hash.h4[8] = h8; |
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hash.h4[9] = h9; |
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hash.h4[10] = hA; |
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hash.h4[11] = hB; |
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hash.h4[12] = hC; |
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hash.h4[13] = hD; |
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hash.h4[14] = hE; |
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hash.h4[15] = hF; |
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} |
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bool result = (hash.h8[3] <= target); |
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if (result) |
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output[output[0xFF]++] = SWAP4(gid); |
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} |
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#endif // DARKCOIN_CL |
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