323 lines
12 KiB
C++
323 lines
12 KiB
C++
// Copyright (c) 2014-2017 The Dash Core developers
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// Distributed under the MIT 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 "spork.h"
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#include "base58.h"
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#include "chainparams.h"
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#include "validation.h"
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#include "messagesigner.h"
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#include "net_processing.h"
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#include "netmessagemaker.h"
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#include <string>
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CSporkManager sporkManager;
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std::map<uint256, CSporkMessage> mapSporks;
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std::map<int, int64_t> mapSporkDefaults = {
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{SPORK_2_INSTANTSEND_ENABLED, 0}, // ON
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{SPORK_3_INSTANTSEND_BLOCK_FILTERING, 0}, // ON
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{SPORK_5_INSTANTSEND_MAX_VALUE, 1000}, // 1000 Dash
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{SPORK_6_NEW_SIGS, 4070908800ULL}, // OFF
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{SPORK_8_MASTERNODE_PAYMENT_ENFORCEMENT, 4070908800ULL}, // OFF
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{SPORK_9_SUPERBLOCKS_ENABLED, 4070908800ULL}, // OFF
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{SPORK_10_MASTERNODE_PAY_UPDATED_NODES, 4070908800ULL}, // OFF
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{SPORK_12_RECONSIDER_BLOCKS, 0}, // 0 BLOCKS
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{SPORK_14_REQUIRE_SENTINEL_FLAG, 4070908800ULL}, // OFF
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};
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void CSporkManager::ProcessSpork(CNode* pfrom, const std::string& strCommand, CDataStream& vRecv, CConnman& connman)
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{
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if(fLiteMode) return; // disable all Dash specific functionality
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if (strCommand == NetMsgType::SPORK) {
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CSporkMessage spork;
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vRecv >> spork;
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uint256 hash = spork.GetHash();
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std::string strLogMsg;
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{
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LOCK(cs_main);
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pfrom->setAskFor.erase(hash);
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if(!chainActive.Tip()) return;
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strLogMsg = strprintf("SPORK -- hash: %s id: %d value: %10d bestHeight: %d peer=%d", hash.ToString(), spork.nSporkID, spork.nValue, chainActive.Height(), pfrom->id);
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}
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{
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LOCK(cs); // make sure to not lock this together with cs_main
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if (mapSporksActive.count(spork.nSporkID)) {
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if (mapSporksActive[spork.nSporkID].nTimeSigned >= spork.nTimeSigned) {
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LogPrint("spork", "%s seen\n", strLogMsg);
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return;
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} else {
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LogPrintf("%s updated\n", strLogMsg);
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}
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} else {
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LogPrintf("%s new\n", strLogMsg);
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}
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}
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if(!spork.CheckSignature(sporkPubKeyID)) {
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LOCK(cs_main);
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LogPrintf("CSporkManager::ProcessSpork -- ERROR: invalid signature\n");
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Misbehaving(pfrom->GetId(), 100);
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return;
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}
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{
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LOCK(cs); // make sure to not lock this together with cs_main
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mapSporks[hash] = spork;
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mapSporksActive[spork.nSporkID] = spork;
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}
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spork.Relay(connman);
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//does a task if needed
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ExecuteSpork(spork.nSporkID, spork.nValue);
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} else if (strCommand == NetMsgType::GETSPORKS) {
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LOCK(cs); // make sure to not lock this together with cs_main
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for (const auto& pair : mapSporksActive) {
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connman.PushMessage(pfrom, CNetMsgMaker(pfrom->GetSendVersion()).Make(NetMsgType::SPORK, pair.second));
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}
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}
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}
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void CSporkManager::ExecuteSpork(int nSporkID, int nValue)
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{
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//correct fork via spork technology
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if(nSporkID == SPORK_12_RECONSIDER_BLOCKS && nValue > 0) {
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// allow to reprocess 24h of blocks max, which should be enough to resolve any issues
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int64_t nMaxBlocks = 576;
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// this potentially can be a heavy operation, so only allow this to be executed once per 10 minutes
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int64_t nTimeout = 10 * 60;
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static int64_t nTimeExecuted = 0; // i.e. it was never executed before
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if(GetTime() - nTimeExecuted < nTimeout) {
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LogPrint("spork", "CSporkManager::ExecuteSpork -- ERROR: Trying to reconsider blocks, too soon - %d/%d\n", GetTime() - nTimeExecuted, nTimeout);
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return;
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}
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if(nValue > nMaxBlocks) {
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LogPrintf("CSporkManager::ExecuteSpork -- ERROR: Trying to reconsider too many blocks %d/%d\n", nValue, nMaxBlocks);
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return;
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}
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LogPrintf("CSporkManager::ExecuteSpork -- Reconsider Last %d Blocks\n", nValue);
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ReprocessBlocks(nValue);
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nTimeExecuted = GetTime();
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}
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}
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bool CSporkManager::UpdateSpork(int nSporkID, int64_t nValue, CConnman& connman)
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{
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CSporkMessage spork = CSporkMessage(nSporkID, nValue, GetAdjustedTime());
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if(spork.Sign(sporkPrivKey)) {
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spork.Relay(connman);
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LOCK(cs);
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mapSporks[spork.GetHash()] = spork;
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mapSporksActive[nSporkID] = spork;
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return true;
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}
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return false;
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}
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// grab the spork, otherwise say it's off
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bool CSporkManager::IsSporkActive(int nSporkID)
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{
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LOCK(cs);
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int64_t r = -1;
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if(mapSporksActive.count(nSporkID)){
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r = mapSporksActive[nSporkID].nValue;
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} else if (mapSporkDefaults.count(nSporkID)) {
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r = mapSporkDefaults[nSporkID];
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} else {
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LogPrint("spork", "CSporkManager::IsSporkActive -- Unknown Spork ID %d\n", nSporkID);
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r = 4070908800ULL; // 2099-1-1 i.e. off by default
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}
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return r < GetAdjustedTime();
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}
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// grab the value of the spork on the network, or the default
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int64_t CSporkManager::GetSporkValue(int nSporkID)
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{
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LOCK(cs);
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if (mapSporksActive.count(nSporkID))
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return mapSporksActive[nSporkID].nValue;
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if (mapSporkDefaults.count(nSporkID)) {
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return mapSporkDefaults[nSporkID];
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}
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LogPrint("spork", "CSporkManager::GetSporkValue -- Unknown Spork ID %d\n", nSporkID);
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return -1;
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}
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int CSporkManager::GetSporkIDByName(const std::string& strName)
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{
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if (strName == "SPORK_2_INSTANTSEND_ENABLED") return SPORK_2_INSTANTSEND_ENABLED;
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if (strName == "SPORK_3_INSTANTSEND_BLOCK_FILTERING") return SPORK_3_INSTANTSEND_BLOCK_FILTERING;
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if (strName == "SPORK_5_INSTANTSEND_MAX_VALUE") return SPORK_5_INSTANTSEND_MAX_VALUE;
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if (strName == "SPORK_6_NEW_SIGS") return SPORK_6_NEW_SIGS;
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if (strName == "SPORK_8_MASTERNODE_PAYMENT_ENFORCEMENT") return SPORK_8_MASTERNODE_PAYMENT_ENFORCEMENT;
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if (strName == "SPORK_9_SUPERBLOCKS_ENABLED") return SPORK_9_SUPERBLOCKS_ENABLED;
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if (strName == "SPORK_10_MASTERNODE_PAY_UPDATED_NODES") return SPORK_10_MASTERNODE_PAY_UPDATED_NODES;
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if (strName == "SPORK_12_RECONSIDER_BLOCKS") return SPORK_12_RECONSIDER_BLOCKS;
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if (strName == "SPORK_14_REQUIRE_SENTINEL_FLAG") return SPORK_14_REQUIRE_SENTINEL_FLAG;
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LogPrint("spork", "CSporkManager::GetSporkIDByName -- Unknown Spork name '%s'\n", strName);
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return -1;
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}
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std::string CSporkManager::GetSporkNameByID(int nSporkID)
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{
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switch (nSporkID) {
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case SPORK_2_INSTANTSEND_ENABLED: return "SPORK_2_INSTANTSEND_ENABLED";
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case SPORK_3_INSTANTSEND_BLOCK_FILTERING: return "SPORK_3_INSTANTSEND_BLOCK_FILTERING";
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case SPORK_5_INSTANTSEND_MAX_VALUE: return "SPORK_5_INSTANTSEND_MAX_VALUE";
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case SPORK_6_NEW_SIGS: return "SPORK_6_NEW_SIGS";
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case SPORK_8_MASTERNODE_PAYMENT_ENFORCEMENT: return "SPORK_8_MASTERNODE_PAYMENT_ENFORCEMENT";
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case SPORK_9_SUPERBLOCKS_ENABLED: return "SPORK_9_SUPERBLOCKS_ENABLED";
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case SPORK_10_MASTERNODE_PAY_UPDATED_NODES: return "SPORK_10_MASTERNODE_PAY_UPDATED_NODES";
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case SPORK_12_RECONSIDER_BLOCKS: return "SPORK_12_RECONSIDER_BLOCKS";
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case SPORK_14_REQUIRE_SENTINEL_FLAG: return "SPORK_14_REQUIRE_SENTINEL_FLAG";
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default:
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LogPrint("spork", "CSporkManager::GetSporkNameByID -- Unknown Spork ID %d\n", nSporkID);
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return "Unknown";
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}
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}
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bool CSporkManager::SetSporkAddress(const std::string& strAddress) {
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LOCK(cs);
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CBitcoinAddress address(strAddress);
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if (!address.IsValid() || !address.GetKeyID(sporkPubKeyID)) {
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LogPrintf("CSporkManager::SetSporkAddress -- Failed to parse spork address\n");
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return false;
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}
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return true;
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}
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bool CSporkManager::SetPrivKey(const std::string& strPrivKey)
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{
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CKey key;
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CPubKey pubKey;
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if(!CMessageSigner::GetKeysFromSecret(strPrivKey, key, pubKey)) {
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LogPrintf("CSporkManager::SetPrivKey -- Failed to parse private key\n");
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return false;
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}
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if (pubKey.GetID() != sporkPubKeyID) {
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LogPrintf("CSporkManager::SetPrivKey -- New private key does not belong to spork address\n");
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return false;
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}
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CSporkMessage spork;
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if (spork.Sign(key)) {
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LOCK(cs);
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// Test signing successful, proceed
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LogPrintf("CSporkManager::SetPrivKey -- Successfully initialized as spork signer\n");
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sporkPrivKey = key;
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return true;
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} else {
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LogPrintf("CSporkManager::SetPrivKey -- Test signing failed\n");
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return false;
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}
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}
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uint256 CSporkMessage::GetHash() const
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{
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return SerializeHash(*this);
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}
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uint256 CSporkMessage::GetSignatureHash() const
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{
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return GetHash();
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}
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bool CSporkMessage::Sign(const CKey& key)
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{
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if (!key.IsValid()) {
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LogPrintf("CSporkMessage::Sign -- signing key is not valid\n");
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return false;
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}
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CKeyID pubKeyId = key.GetPubKey().GetID();
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std::string strError = "";
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if (sporkManager.IsSporkActive(SPORK_6_NEW_SIGS)) {
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uint256 hash = GetSignatureHash();
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if(!CHashSigner::SignHash(hash, key, vchSig)) {
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LogPrintf("CSporkMessage::Sign -- SignHash() failed\n");
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return false;
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}
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if (!CHashSigner::VerifyHash(hash, pubKeyId, vchSig, strError)) {
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LogPrintf("CSporkMessage::Sign -- VerifyHash() failed, error: %s\n", strError);
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return false;
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}
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} else {
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std::string strMessage = std::to_string(nSporkID) + std::to_string(nValue) + std::to_string(nTimeSigned);
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if(!CMessageSigner::SignMessage(strMessage, vchSig, key)) {
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LogPrintf("CSporkMessage::Sign -- SignMessage() failed\n");
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return false;
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}
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if(!CMessageSigner::VerifyMessage(pubKeyId, vchSig, strMessage, strError)) {
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LogPrintf("CSporkMessage::Sign -- VerifyMessage() failed, error: %s\n", strError);
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return false;
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}
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}
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return true;
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}
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bool CSporkMessage::CheckSignature(const CKeyID& pubKeyId) const
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{
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std::string strError = "";
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if (sporkManager.IsSporkActive(SPORK_6_NEW_SIGS)) {
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uint256 hash = GetSignatureHash();
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if (!CHashSigner::VerifyHash(hash, pubKeyId, vchSig, strError)) {
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// Note: unlike for many other messages when SPORK_6_NEW_SIGS is ON sporks with sigs in old format
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// and newer timestamps should not be accepted, so if we failed here - that's it
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LogPrintf("CSporkMessage::CheckSignature -- VerifyHash() failed, error: %s\n", strError);
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return false;
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}
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} else {
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std::string strMessage = std::to_string(nSporkID) + std::to_string(nValue) + std::to_string(nTimeSigned);
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if (!CMessageSigner::VerifyMessage(pubKeyId, vchSig, strMessage, strError)){
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// Note: unlike for other messages we have to check for new format even with SPORK_6_NEW_SIGS
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// inactive because SPORK_6_NEW_SIGS default is OFF and it is not the first spork to sync
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// (and even if it would, spork order can't be guaranteed anyway).
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uint256 hash = GetSignatureHash();
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if (!CHashSigner::VerifyHash(hash, pubKeyId, vchSig, strError)) {
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LogPrintf("CSporkMessage::CheckSignature -- VerifyHash() failed, error: %s\n", strError);
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return false;
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}
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}
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}
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return true;
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}
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void CSporkMessage::Relay(CConnman& connman)
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{
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CInv inv(MSG_SPORK, GetHash());
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connman.RelayInv(inv);
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}
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