c636edb6eb
- Revived frozen chain (Dec 2022) with two live seed nodes - Added Tor v3 onion hidden service support (Ed25519) - Wired seeder message handlers (seeder/getseederlist/seederlist) - Hardcoded onion seeds and clearnet IP seeds for DNS2/DNS3 - Fixed bind address (0.0.0.0) so nodes accept external connections - Added boost_chrono to makefile.unix for modern Boost - Fixed LoadExternalBlockFile block-skip bug for faster imports - Import-only optimizations for chain replay (checkpoint-gated) - Added sort_blocks.c tool for blockchain data recovery - Comprehensive README with build/run/messaging/Tor instructions - Chain revival status document for project coordination Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
441 lines
20 KiB
C++
441 lines
20 KiB
C++
// Copyright (c) 2012-2013 The PPCoin developers
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// Distributed under the MIT/X11 software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <boost/assign/list_of.hpp>
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#include "kernel.h"
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#include "txdb.h"
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using namespace std;
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extern unsigned int nStakeMaxAge;
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extern unsigned int nTargetSpacing;
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// Modifier interval: time to elapse before new modifier is computed
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// Set to 20-minute for production network
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//unsigned int nModifierInterval = MODIFIER_INTERVAL;
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typedef std::map<int, unsigned int> MapModifierCheckpoints;
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// Hard checkpoints of stake modifiers to ensure they are deterministic
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static std::map<int, unsigned int> mapStakeModifierCheckpoints =
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boost::assign::map_list_of
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( 0, 0x000000000e00670b )
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;
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// Get time weight
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int64_t GetWeight(int64_t nIntervalBeginning, int64_t nIntervalEnd)
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{
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// Kernel hash weight starts from 0 at the min age
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// this change increases active coins participating the hash and helps
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// to secure the network when proof-of-stake difficulty is low
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int64_t nAge = nIntervalEnd - nIntervalBeginning - nStakeMinAge;
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if (nAge < 0)
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return 0;
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// After v5 fork: remove max age cap so coins aged during the freeze can stake
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if (pindexBest && pindexBest->nHeight >= FORK_HEIGHT_V5)
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return nAge;
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return min(nAge, (int64_t)nStakeMaxAge);
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}
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// Get the last stake modifier and its generation time from a given block
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static bool GetLastStakeModifier(const CBlockIndex* pindex, uint64_t& nStakeModifier, int64_t& nModifierTime)
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{
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if (!pindex)
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return error("GetLastStakeModifier: null pindex");
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while (pindex && pindex->pprev && !pindex->GeneratedStakeModifier())
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pindex = pindex->pprev;
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if (!pindex->GeneratedStakeModifier())
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return error("GetLastStakeModifier: no generation at genesis block");
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nStakeModifier = pindex->nStakeModifier;
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nModifierTime = pindex->GetBlockTime();
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return true;
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}
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// Get selection interval section (in seconds)
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static int64_t GetStakeModifierSelectionIntervalSection(int nSection)
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{
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assert (nSection >= 0 && nSection < 64);
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return (nModifierInterval * 63 / (63 + ((63 - nSection) * (MODIFIER_INTERVAL_RATIO - 1))));
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}
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// Get stake modifier selection interval (in seconds)
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static int64_t GetStakeModifierSelectionInterval()
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{
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int64_t nSelectionInterval = 0;
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for (int nSection=0; nSection<64; nSection++)
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nSelectionInterval += GetStakeModifierSelectionIntervalSection(nSection);
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return nSelectionInterval;
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}
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// select a block from the candidate blocks in vSortedByTimestamp, excluding
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// already selected blocks in vSelectedBlocks, and with timestamp up to
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// nSelectionIntervalStop.
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static bool SelectBlockFromCandidates(vector<pair<int64_t, uint256> >& vSortedByTimestamp, map<uint256, const CBlockIndex*>& mapSelectedBlocks,
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int64_t nSelectionIntervalStop, uint64_t nStakeModifierPrev, const CBlockIndex** pindexSelected)
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{
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bool fSelected = false;
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uint256 hashBest = 0;
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*pindexSelected = (const CBlockIndex*) 0;
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BOOST_FOREACH(const PAIRTYPE(int64_t, uint256)& item, vSortedByTimestamp)
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{
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if (!mapBlockIndex.count(item.second))
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return error("SelectBlockFromCandidates: failed to find block index for candidate block %s", item.second.ToString().c_str());
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const CBlockIndex* pindex = mapBlockIndex[item.second];
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if (fSelected && pindex->GetBlockTime() > nSelectionIntervalStop)
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break;
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if (mapSelectedBlocks.count(pindex->GetBlockHash()) > 0)
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continue;
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// compute the selection hash by hashing its proof-hash and the
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// previous proof-of-stake modifier
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uint256 hashProof = pindex->IsProofOfStake()? pindex->hashProofOfStake : pindex->GetBlockHash();
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CDataStream ss(SER_GETHASH, 0);
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ss << hashProof << nStakeModifierPrev;
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uint256 hashSelection = Hash(ss.begin(), ss.end());
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// the selection hash is divided by 2**32 so that proof-of-stake block
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// is always favored over proof-of-work block. this is to preserve
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// the energy efficiency property
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if (pindex->IsProofOfStake())
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hashSelection >>= 32;
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if (fSelected && hashSelection < hashBest)
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{
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hashBest = hashSelection;
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*pindexSelected = (const CBlockIndex*) pindex;
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}
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else if (!fSelected)
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{
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fSelected = true;
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hashBest = hashSelection;
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*pindexSelected = (const CBlockIndex*) pindex;
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}
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}
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if (fDebug && GetBoolArg("-printstakemodifier"))
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printf("SelectBlockFromCandidates: selection hash=%s\n", hashBest.ToString().c_str());
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return fSelected;
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}
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// Stake Modifier (hash modifier of proof-of-stake):
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// The purpose of stake modifier is to prevent a txout (coin) owner from
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// computing future proof-of-stake generated by this txout at the time
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// of transaction confirmation. To meet kernel protocol, the txout
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// must hash with a future stake modifier to generate the proof.
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// Stake modifier consists of bits each of which is contributed from a
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// selected block of a given block group in the past.
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// The selection of a block is based on a hash of the block's proof-hash and
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// the previous stake modifier.
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// Stake modifier is recomputed at a fixed time interval instead of every
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// block. This is to make it difficult for an attacker to gain control of
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// additional bits in the stake modifier, even after generating a chain of
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// blocks.
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bool ComputeNextStakeModifier(const CBlockIndex* pindexPrev, uint64_t& nStakeModifier, bool& fGeneratedStakeModifier)
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{
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nStakeModifier = 0;
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fGeneratedStakeModifier = false;
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if (!pindexPrev)
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{
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fGeneratedStakeModifier = true;
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return true; // genesis block's modifier is 0
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}
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// First find current stake modifier and its generation block time
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// if it's not old enough, return the same stake modifier
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int64_t nModifierTime = 0;
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if (!GetLastStakeModifier(pindexPrev, nStakeModifier, nModifierTime))
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return error("ComputeNextStakeModifier: unable to get last modifier");
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if (fDebug)
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{
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printf("ComputeNextStakeModifier: prev modifier=0x%016"PRIx64" time=%s\n", nStakeModifier, DateTimeStrFormat(nModifierTime).c_str());
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}
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if (nModifierTime / nModifierInterval >= pindexPrev->GetBlockTime() / nModifierInterval)
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return true;
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// Sort candidate blocks by timestamp
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vector<pair<int64_t, uint256> > vSortedByTimestamp;
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vSortedByTimestamp.reserve(64 * nModifierInterval / nTargetSpacing);
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int64_t nSelectionInterval = GetStakeModifierSelectionInterval();
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int64_t nSelectionIntervalStart = (pindexPrev->GetBlockTime() / nModifierInterval) * nModifierInterval - nSelectionInterval;
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const CBlockIndex* pindex = pindexPrev;
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while (pindex && pindex->GetBlockTime() >= nSelectionIntervalStart)
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{
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vSortedByTimestamp.push_back(make_pair(pindex->GetBlockTime(), pindex->GetBlockHash()));
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pindex = pindex->pprev;
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}
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int nHeightFirstCandidate = pindex ? (pindex->nHeight + 1) : 0;
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reverse(vSortedByTimestamp.begin(), vSortedByTimestamp.end());
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sort(vSortedByTimestamp.begin(), vSortedByTimestamp.end());
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// Select 64 blocks from candidate blocks to generate stake modifier
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uint64_t nStakeModifierNew = 0;
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int64_t nSelectionIntervalStop = nSelectionIntervalStart;
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map<uint256, const CBlockIndex*> mapSelectedBlocks;
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for (int nRound=0; nRound<min(64, (int)vSortedByTimestamp.size()); nRound++)
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{
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// add an interval section to the current selection round
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nSelectionIntervalStop += GetStakeModifierSelectionIntervalSection(nRound);
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// select a block from the candidates of current round
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if (!SelectBlockFromCandidates(vSortedByTimestamp, mapSelectedBlocks, nSelectionIntervalStop, nStakeModifier, &pindex))
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return error("ComputeNextStakeModifier: unable to select block at round %d", nRound);
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// write the entropy bit of the selected block
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nStakeModifierNew |= (((uint64_t)pindex->GetStakeEntropyBit()) << nRound);
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// add the selected block from candidates to selected list
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mapSelectedBlocks.insert(make_pair(pindex->GetBlockHash(), pindex));
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if (fDebug && GetBoolArg("-printstakemodifier"))
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printf("ComputeNextStakeModifier: selected round %d stop=%s height=%d bit=%d\n", nRound, DateTimeStrFormat(nSelectionIntervalStop).c_str(), pindex->nHeight, pindex->GetStakeEntropyBit());
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}
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// Print selection map for visualization of the selected blocks
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if (fDebug && GetBoolArg("-printstakemodifier"))
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{
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string strSelectionMap = "";
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// '-' indicates proof-of-work blocks not selected
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strSelectionMap.insert(0, pindexPrev->nHeight - nHeightFirstCandidate + 1, '-');
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pindex = pindexPrev;
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while (pindex && pindex->nHeight >= nHeightFirstCandidate)
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{
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// '=' indicates proof-of-stake blocks not selected
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if (pindex->IsProofOfStake())
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strSelectionMap.replace(pindex->nHeight - nHeightFirstCandidate, 1, "=");
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pindex = pindex->pprev;
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}
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BOOST_FOREACH(const PAIRTYPE(uint256, const CBlockIndex*)& item, mapSelectedBlocks)
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{
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// 'S' indicates selected proof-of-stake blocks
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// 'W' indicates selected proof-of-work blocks
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strSelectionMap.replace(item.second->nHeight - nHeightFirstCandidate, 1, item.second->IsProofOfStake()? "S" : "W");
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}
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printf("ComputeNextStakeModifier: selection height [%d, %d] map %s\n", nHeightFirstCandidate, pindexPrev->nHeight, strSelectionMap.c_str());
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}
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if (fDebug)
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{
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printf("ComputeNextStakeModifier: new modifier=0x%016"PRIx64" time=%s\n", nStakeModifierNew, DateTimeStrFormat(pindexPrev->GetBlockTime()).c_str());
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}
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nStakeModifier = nStakeModifierNew;
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fGeneratedStakeModifier = true;
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return true;
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}
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// The stake modifier used to hash for a stake kernel is chosen as the stake
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// modifier about a selection interval later than the coin generating the kernel
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static bool GetKernelStakeModifier(uint256 hashBlockFrom, uint64_t& nStakeModifier, int& nStakeModifierHeight, int64_t& nStakeModifierTime, bool fPrintProofOfStake)
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{
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nStakeModifier = 0;
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if (!mapBlockIndex.count(hashBlockFrom))
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return error("GetKernelStakeModifier() : block not indexed");
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const CBlockIndex* pindexFrom = mapBlockIndex[hashBlockFrom];
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nStakeModifierHeight = pindexFrom->nHeight;
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nStakeModifierTime = pindexFrom->GetBlockTime();
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int64_t nStakeModifierSelectionInterval = GetStakeModifierSelectionInterval();
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const CBlockIndex* pindex = pindexFrom;
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//triangles fixed nStakeModifierSelectionInterval
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nStakeModifierSelectionInterval = 2 * nModifierInterval;
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// loop to find the stake modifier later by a selection interval
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while (nStakeModifierTime < pindexFrom->GetBlockTime() + nStakeModifierSelectionInterval)
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{
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if (!pindex->pnext)
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{ // reached best block; may happen if node is behind on block chain
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if (fPrintProofOfStake || (pindex->GetBlockTime() + nStakeMinAge - nStakeModifierSelectionInterval > GetAdjustedTime()))
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return error("GetKernelStakeModifier() : reached best block %s at height %d from block %s",
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pindex->GetBlockHash().ToString().c_str(), pindex->nHeight, hashBlockFrom.ToString().c_str());
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else
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{
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if(fDebug)
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printf(">> nStakeModifierTime = %"PRId64", pindexFrom->GetBlockTime() = %"PRId64", nStakeModifierSelectionInterval = %"PRId64"\n", nStakeModifierTime, pindexFrom->GetBlockTime(), nStakeModifierSelectionInterval);
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return false;
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}
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}
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pindex = pindex->pnext;
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if (pindex->GeneratedStakeModifier())
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{
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nStakeModifierHeight = pindex->nHeight;
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nStakeModifierTime = pindex->GetBlockTime();
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}
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}
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nStakeModifier = pindex->nStakeModifier;
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return true;
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}
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// triangles kernel protocol
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// coinstake must meet hash target according to the protocol:
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// kernel (input 0) must meet the formula
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// hash(nStakeModifier + txPrev.block.nTime + txPrev.offset + txPrev.nTime + txPrev.vout.n + nTime) < bnTarget * nCoinDayWeight
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// this ensures that the chance of getting a coinstake is proportional to the
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// amount of coin age one owns.
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// The reason this hash is chosen is the following:
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// nStakeModifier: scrambles computation to make it very difficult to precompute
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// future proof-of-stake at the time of the coin's confirmation
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// txPrev.block.nTime: prevent nodes from guessing a good timestamp to
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// generate transaction for future advantage
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// txPrev.offset: offset of txPrev inside block, to reduce the chance of
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// nodes generating coinstake at the same time
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// txPrev.nTime: reduce the chance of nodes generating coinstake at the same
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// time
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// txPrev.vout.n: output number of txPrev, to reduce the chance of nodes
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// generating coinstake at the same time
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// block/tx hash should not be used here as they can be generated in vast
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// quantities so as to generate blocks faster, degrading the system back into
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// a proof-of-work situation.
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//
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bool CheckStakeKernelHash(unsigned int nBits, const CBlock& blockFrom, unsigned int nTxPrevOffset, const CTransaction& txPrev, const COutPoint& prevout, unsigned int nTimeTx, uint256& hashProofOfStake, uint256& targetProofOfStake, bool fPrintProofOfStake)
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{
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if (nTimeTx < txPrev.nTime) // Transaction timestamp violation
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return error("CheckStakeKernelHash() : nTime violation");
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unsigned int nTimeBlockFrom = blockFrom.GetBlockTime();
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if (nTimeBlockFrom + nStakeMinAge > nTimeTx) // Min age requirement
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return error("CheckStakeKernelHash() : min age violation");
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CBigNum bnTargetPerCoinDay;
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bnTargetPerCoinDay.SetCompact(nBits);
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int64_t nValueIn = txPrev.vout[prevout.n].nValue;
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uint256 hashBlockFrom = blockFrom.GetHash();
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CBigNum bnCoinDayWeight = CBigNum(nValueIn) * GetWeight((int64_t)txPrev.nTime, (int64_t)nTimeTx) / COIN / (24 * 60 * 60);
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targetProofOfStake = (bnCoinDayWeight * bnTargetPerCoinDay).getuint256();
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// printf(">>> CheckStakeKernelHash: nTimeWeight = %"PRI64d"\n", nTimeWeight);
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// Calculate hash
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CDataStream ss(SER_GETHASH, 0);
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uint64_t nStakeModifier = 0;
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int nStakeModifierHeight = 0;
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int64_t nStakeModifierTime = 0;
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if (!GetKernelStakeModifier(hashBlockFrom, nStakeModifier, nStakeModifierHeight, nStakeModifierTime, fPrintProofOfStake))
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{
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if(fDebug)
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printf(">>> CheckStakeKernelHash: GetKernelStakeModifier return false\n");
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return false;
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}
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if (fDebug)
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printf(">>> CheckStakeKernelHash: passed GetKernelStakeModifier\n");
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ss << nStakeModifier;
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ss << nTimeBlockFrom << nTxPrevOffset << txPrev.nTime << prevout.n << nTimeTx;
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hashProofOfStake = Hash(ss.begin(), ss.end());
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if (fPrintProofOfStake)
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{
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printf("CheckStakeKernelHash() : using modifier 0x%016"PRIx64" at height=%d timestamp=%s for block from height=%d timestamp=%s\n",
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nStakeModifier, nStakeModifierHeight,
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DateTimeStrFormat(nStakeModifierTime).c_str(),
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mapBlockIndex[hashBlockFrom]->nHeight,
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DateTimeStrFormat(blockFrom.GetBlockTime()).c_str());
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printf("CheckStakeKernelHash() : check modifier=0x%016"PRIx64" nTimeBlockFrom=%u nTxPrevOffset=%u nTimeTxPrev=%u nPrevout=%u nTimeTx=%u hashProof=%s\n",
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nStakeModifier,
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nTimeBlockFrom, nTxPrevOffset, txPrev.nTime, prevout.n, nTimeTx,
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hashProofOfStake.ToString().c_str());
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}
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// Now check if proof-of-stake hash meets target protocol
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if (CBigNum(hashProofOfStake) > bnCoinDayWeight * bnTargetPerCoinDay)
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{
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// triangles fix: accept hash to get blockchain moving again with Pharao release (v 4.0.0.1) for first 10 blocks after release
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//printf(">>>> pindexBest->nHeight %d\n",pindexBest->nHeight);
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if (pindexBest->nHeight > CRAPCHAIN_CUTOFF_BLOCK)
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{
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if(fDebug)
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{
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printf(">>> bnCoinDayWeight = %s, bnTargetPerCoinDay=%s\n",
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bnCoinDayWeight.ToString().c_str(), bnTargetPerCoinDay.ToString().c_str());
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printf(">>> CheckStakeKernelHash - hashProofOfStake too much\n");
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}
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return false;
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}
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else
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{
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//accept hash
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if (pindexBest->nHeight % 10000 == 0 || pindexBest->nHeight > 2186900)
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printf(">>>> pindexBest->nHeight %d, Pharao release - hash accepted\n", pindexBest->nHeight);
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}
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}
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if (fDebug && !fPrintProofOfStake)
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{
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printf("CheckStakeKernelHash() : using modifier 0x%016"PRIx64" at height=%d timestamp=%s for block from height=%d timestamp=%s\n",
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nStakeModifier, nStakeModifierHeight,
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DateTimeStrFormat(nStakeModifierTime).c_str(),
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mapBlockIndex[hashBlockFrom]->nHeight,
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DateTimeStrFormat(blockFrom.GetBlockTime()).c_str());
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printf("CheckStakeKernelHash() : pass modifier=0x%016"PRIx64" nTimeBlockFrom=%u nTxPrevOffset=%u nTimeTxPrev=%u nPrevout=%u nTimeTx=%u hashProof=%s\n",
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nStakeModifier,
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nTimeBlockFrom, nTxPrevOffset, txPrev.nTime, prevout.n, nTimeTx,
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hashProofOfStake.ToString().c_str());
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}
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return true;
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}
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// Check kernel hash target and coinstake signature
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bool CheckProofOfStake(const CTransaction& tx, unsigned int nBits, uint256& hashProofOfStake, uint256& targetProofOfStake)
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{
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if (!tx.IsCoinStake())
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return error("CheckProofOfStake() : called on non-coinstake %s", tx.GetHash().ToString().c_str());
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// Kernel (input 0) must match the stake hash target per coin age (nBits)
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const CTxIn& txin = tx.vin[0];
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// First try finding the previous transaction in database
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CTxDB txdb("r");
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CTransaction txPrev;
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CTxIndex txindex;
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if (!txPrev.ReadFromDisk(txdb, txin.prevout, txindex))
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return tx.DoS(1, error("CheckProofOfStake() : INFO: read txPrev failed")); // previous transaction not in main chain, may occur during initial download
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// Verify signature
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if (!VerifySignature(txPrev, tx, 0, 0))
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return tx.DoS(100, error("CheckProofOfStake() : VerifySignature failed on coinstake %s", tx.GetHash().ToString().c_str()));
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// Read block header
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CBlock block;
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if (!block.ReadFromDisk(txindex.pos.nFile, txindex.pos.nBlockPos, false))
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return fDebug? error("CheckProofOfStake() : read block failed") : false; // unable to read block of previous transaction
|
|
|
|
if (!CheckStakeKernelHash(nBits, block, txindex.pos.nTxPos - txindex.pos.nBlockPos, txPrev, txin.prevout, tx.nTime, hashProofOfStake, targetProofOfStake, fDebug))
|
|
return tx.DoS(1, error("CheckProofOfStake() : INFO: check kernel failed on coinstake %s, hashProof=%s", tx.GetHash().ToString().c_str(), hashProofOfStake.ToString().c_str())); // may occur during initial download or if behind on block chain sync
|
|
|
|
return true;
|
|
}
|
|
|
|
// Check whether the coinstake timestamp meets protocol
|
|
bool CheckCoinStakeTimestamp(int64_t nTimeBlock, int64_t nTimeTx)
|
|
{
|
|
// v0.3 protocol
|
|
return (nTimeBlock == nTimeTx);
|
|
}
|
|
|
|
// Get stake modifier checksum
|
|
unsigned int GetStakeModifierChecksum(const CBlockIndex* pindex)
|
|
{
|
|
assert (pindex->pprev || pindex->GetBlockHash() == (!fTestNet ? hashGenesisBlockOfficial : hashGenesisBlockTestNet));
|
|
// Hash previous checksum with flags, hashProofOfStake and nStakeModifier
|
|
CDataStream ss(SER_GETHASH, 0);
|
|
if (pindex->pprev)
|
|
ss << pindex->pprev->nStakeModifierChecksum;
|
|
ss << pindex->nFlags << pindex->hashProofOfStake << pindex->nStakeModifier;
|
|
uint256 hashChecksum = Hash(ss.begin(), ss.end());
|
|
hashChecksum >>= (256 - 32);
|
|
if(fDebug)
|
|
printf("stake checksum: 0x%016"PRIx64"", hashChecksum.Get64());
|
|
return hashChecksum.Get64();
|
|
}
|
|
|
|
// Check stake modifier hard checkpoints
|
|
bool CheckStakeModifierCheckpoints(int nHeight, unsigned int nStakeModifierChecksum)
|
|
{
|
|
if (fTestNet) return true; // Testnet has no checkpoints
|
|
|
|
if (mapStakeModifierCheckpoints.count(nHeight))
|
|
return nStakeModifierChecksum == mapStakeModifierCheckpoints[nHeight];
|
|
return true;
|
|
}
|
|
|
|
|