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consensus: don't use arith_uint256 in consensus.h
Requiring arith_uint256 at such a base level is not good for modularity.
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@ -105,7 +105,7 @@ public:
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consensus.nMajorityEnforceBlockUpgrade = 750;
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consensus.nMajorityRejectBlockOutdated = 950;
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consensus.nMajorityWindow = 1000;
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consensus.powLimit = ~arith_uint256(0) >> 32;
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consensus.powLimit = uint256S("00000000ffffffffffffffffffffffffffffffffffffffffffffffffffffffff");
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consensus.nPowTargetTimespan = 14 * 24 * 60 * 60; // two weeks
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consensus.nPowTargetSpacing = 10 * 60;
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consensus.fPowAllowMinDifficultyBlocks = false;
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@ -245,7 +245,7 @@ public:
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consensus.nMajorityEnforceBlockUpgrade = 750;
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consensus.nMajorityRejectBlockOutdated = 950;
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consensus.nMajorityWindow = 1000;
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consensus.powLimit = ~arith_uint256(0) >> 1;
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consensus.powLimit = uint256S("7fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff");
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pchMessageStart[0] = 0xfa;
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pchMessageStart[1] = 0xbf;
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pchMessageStart[2] = 0xb5;
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@ -6,7 +6,6 @@
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#ifndef BITCOIN_CHAINPARAMS_H
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#define BITCOIN_CHAINPARAMS_H
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#include "arith_uint256.h"
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#include "chainparamsbase.h"
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#include "checkpoints.h"
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#include "consensus/params.h"
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@ -45,7 +44,7 @@ public:
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const CMessageHeader::MessageStartChars& MessageStart() const { return pchMessageStart; }
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const std::vector<unsigned char>& AlertKey() const { return vAlertPubKey; }
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int GetDefaultPort() const { return nDefaultPort; }
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const arith_uint256& ProofOfWorkLimit() const { return consensus.powLimit; }
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const uint256& ProofOfWorkLimit() const { return consensus.powLimit; }
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int SubsidyHalvingInterval() const { return consensus.nSubsidyHalvingInterval; }
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int EnforceBlockUpgradeMajority() const { return consensus.nMajorityEnforceBlockUpgrade; }
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int RejectBlockOutdatedMajority() const { return consensus.nMajorityRejectBlockOutdated; }
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@ -6,7 +6,6 @@
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#ifndef BITCOIN_CONSENSUS_CONSENSUS_PARAMS_H
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#define BITCOIN_CONSENSUS_CONSENSUS_PARAMS_H
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#include "arith_uint256.h"
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#include "uint256.h"
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namespace Consensus {
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@ -21,7 +20,7 @@ struct Params {
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int nMajorityRejectBlockOutdated;
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int nMajorityWindow;
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/** Proof of work parameters */
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arith_uint256 powLimit;
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uint256 powLimit;
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bool fPowAllowMinDifficultyBlocks;
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int64_t nPowTargetSpacing;
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int64_t nPowTargetTimespan;
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@ -13,7 +13,7 @@
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unsigned int GetNextWorkRequired(const CBlockIndex* pindexLast, const CBlockHeader *pblock, const Consensus::Params& params)
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{
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unsigned int nProofOfWorkLimit = params.powLimit.GetCompact();
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unsigned int nProofOfWorkLimit = UintToArith256(params.powLimit).GetCompact();
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// Genesis block
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if (pindexLast == NULL)
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@ -61,6 +61,7 @@ unsigned int CalculateNextWorkRequired(const CBlockIndex* pindexLast, int64_t nF
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nActualTimespan = params.nPowTargetTimespan*4;
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// Retarget
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const arith_uint256 bnPowLimit = UintToArith256(params.powLimit);
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arith_uint256 bnNew;
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arith_uint256 bnOld;
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bnNew.SetCompact(pindexLast->nBits);
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@ -68,8 +69,8 @@ unsigned int CalculateNextWorkRequired(const CBlockIndex* pindexLast, int64_t nF
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bnNew *= nActualTimespan;
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bnNew /= params.nPowTargetTimespan;
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if (bnNew > params.powLimit)
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bnNew = params.powLimit;
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if (bnNew > bnPowLimit)
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bnNew = bnPowLimit;
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/// debug print
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LogPrintf("GetNextWorkRequired RETARGET\n");
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@ -89,7 +90,7 @@ bool CheckProofOfWork(uint256 hash, unsigned int nBits, const Consensus::Params&
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bnTarget.SetCompact(nBits, &fNegative, &fOverflow);
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// Check range
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if (fNegative || bnTarget == 0 || fOverflow || bnTarget > params.powLimit)
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if (fNegative || bnTarget == 0 || fOverflow || bnTarget > UintToArith256(params.powLimit))
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return error("CheckProofOfWork(): nBits below minimum work");
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// Check proof of work matches claimed amount
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