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/**
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* Wrapper to OpenSSL BIGNUM used by net diff (nBits)
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*/
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#include <stdio.h>
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#include "uint256.h"
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#include "bignum.hpp"
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#include "miner.h" // hex2bin
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extern "C" double bn_convert_nbits(const uint32_t nBits)
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{
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uint256 bn = CBigNum().SetCompact(nBits).getuint256();
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return bn.getdouble();
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}
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// copy the big number to 32-bytes uchar
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extern "C" void bn_nbits_to_uchar(const uint32_t nBits, unsigned char *target)
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{
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char buff[65];
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uint256 bn = CBigNum().SetCompact(nBits).getuint256();
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snprintf(buff, 65, "%s\n", bn.ToString().c_str()); buff[64] = '\0';
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hex2bin(target, buff, 32);
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}
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// unused, but should allow more than 256bits targets
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#if 0
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extern "C" double bn_hash_target_ratio(uint32_t* hash, uint32_t* target)
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{
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double dhash;
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if (!opt_showdiff)
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return 0.0;
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CBigNum h(0), t(0);
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std::vector<unsigned char> vch(32);
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memcpy(&vch[0], (void*) target, 32);
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t.setvch(vch);
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memcpy(&vch[0], (void*) hash, 32);
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h.setvch(vch);
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dhash = h.getuint256().getdouble();
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if (dhash > 0.)
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return t.getuint256().getdouble() / dhash;
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else
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return dhash;
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}
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#endif
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// compute the diff ratio between a found hash and the target
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extern "C" double bn_hash_target_ratio(uint32_t* hash, uint32_t* target)
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{
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uint256 h, t;
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double dhash;
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if (!opt_showdiff)
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return 0.0;
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memcpy(&t, (void*) target, 32);
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memcpy(&h, (void*) hash, 32);
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dhash = h.getdouble();
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if (dhash > 0.)
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return t.getdouble() / dhash;
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else
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return dhash;
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}
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// store ratio in work struct
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extern "C" void bn_store_hash_target_ratio(uint32_t* hash, uint32_t* target, struct work* work)
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{
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// only if the option is enabled (to reduce cpu usage)
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if (opt_showdiff) {
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work->shareratio = bn_hash_target_ratio(hash, target);
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work->sharediff = work->targetdiff * work->shareratio;
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}
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}
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