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326 lines
14 KiB
C++
326 lines
14 KiB
C++
// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-2020 The Bitcoin 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 <validationinterface.h>
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#include <chain.h>
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#include <consensus/validation.h>
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#include <governance/common.h>
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#include <logging.h>
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#include <primitives/block.h>
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#include <primitives/transaction.h>
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#include <scheduler.h>
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#include <evo/deterministicmns.h>
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#include <governance/vote.h>
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#include <llmq/clsig.h>
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#include <llmq/signing.h>
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#include <future>
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#include <unordered_map>
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#include <utility>
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//! The MainSignalsInstance manages a list of shared_ptr<CValidationInterface>
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//! callbacks.
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//!
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//! A std::unordered_map is used to track what callbacks are currently
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//! registered, and a std::list is to used to store the callbacks that are
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//! currently registered as well as any callbacks that are just unregistered
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//! and about to be deleted when they are done executing.
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struct MainSignalsInstance {
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private:
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Mutex m_mutex;
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//! List entries consist of a callback pointer and reference count. The
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//! count is equal to the number of current executions of that entry, plus 1
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//! if it's registered. It cannot be 0 because that would imply it is
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//! unregistered and also not being executed (so shouldn't exist).
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struct ListEntry { std::shared_ptr<CValidationInterface> callbacks; int count = 1; };
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std::list<ListEntry> m_list GUARDED_BY(m_mutex);
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std::unordered_map<CValidationInterface*, std::list<ListEntry>::iterator> m_map GUARDED_BY(m_mutex);
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public:
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// We are not allowed to assume the scheduler only runs in one thread,
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// but must ensure all callbacks happen in-order, so we end up creating
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// our own queue here :(
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SingleThreadedSchedulerClient m_schedulerClient;
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explicit MainSignalsInstance(CScheduler& scheduler LIFETIMEBOUND) : m_schedulerClient(scheduler) {}
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void Register(std::shared_ptr<CValidationInterface> callbacks) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
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{
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LOCK(m_mutex);
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auto inserted = m_map.emplace(callbacks.get(), m_list.end());
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if (inserted.second) inserted.first->second = m_list.emplace(m_list.end());
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inserted.first->second->callbacks = std::move(callbacks);
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}
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void Unregister(CValidationInterface* callbacks) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
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{
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LOCK(m_mutex);
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auto it = m_map.find(callbacks);
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if (it != m_map.end()) {
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if (!--it->second->count) m_list.erase(it->second);
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m_map.erase(it);
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}
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}
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//! Clear unregisters every previously registered callback, erasing every
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//! map entry. After this call, the list may still contain callbacks that
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//! are currently executing, but it will be cleared when they are done
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//! executing.
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void Clear() EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
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{
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LOCK(m_mutex);
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for (const auto& entry : m_map) {
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if (!--entry.second->count) m_list.erase(entry.second);
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}
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m_map.clear();
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}
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template<typename F> void Iterate(F&& f) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
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{
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WAIT_LOCK(m_mutex, lock);
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for (auto it = m_list.begin(); it != m_list.end();) {
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++it->count;
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{
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REVERSE_LOCK(lock);
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f(*it->callbacks);
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}
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it = --it->count ? std::next(it) : m_list.erase(it);
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}
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}
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};
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static CMainSignals g_signals;
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void CMainSignals::RegisterBackgroundSignalScheduler(CScheduler& scheduler)
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{
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assert(!m_internals);
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m_internals = std::make_unique<MainSignalsInstance>(scheduler);
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}
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void CMainSignals::UnregisterBackgroundSignalScheduler()
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{
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m_internals.reset(nullptr);
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}
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void CMainSignals::FlushBackgroundCallbacks()
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{
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if (m_internals) {
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m_internals->m_schedulerClient.EmptyQueue();
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}
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}
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size_t CMainSignals::CallbacksPending()
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{
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if (!m_internals) return 0;
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return m_internals->m_schedulerClient.CallbacksPending();
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}
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CMainSignals& GetMainSignals()
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{
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return g_signals;
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}
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void RegisterSharedValidationInterface(std::shared_ptr<CValidationInterface> callbacks)
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{
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// Each connection captures the shared_ptr to ensure that each callback is
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// executed before the subscriber is destroyed. For more details see #18338.
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g_signals.m_internals->Register(std::move(callbacks));
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}
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void RegisterValidationInterface(CValidationInterface* callbacks)
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{
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// Create a shared_ptr with a no-op deleter - CValidationInterface lifecycle
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// is managed by the caller.
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RegisterSharedValidationInterface({callbacks, [](CValidationInterface*){}});
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}
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void UnregisterSharedValidationInterface(std::shared_ptr<CValidationInterface> callbacks)
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{
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UnregisterValidationInterface(callbacks.get());
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}
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void UnregisterValidationInterface(CValidationInterface* callbacks)
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{
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if (g_signals.m_internals) {
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g_signals.m_internals->Unregister(callbacks);
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}
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}
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void UnregisterAllValidationInterfaces()
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{
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if (!g_signals.m_internals) {
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return;
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}
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g_signals.m_internals->Clear();
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}
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void CallFunctionInValidationInterfaceQueue(std::function<void()> func)
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{
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g_signals.m_internals->m_schedulerClient.AddToProcessQueue(std::move(func));
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}
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void SyncWithValidationInterfaceQueue()
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{
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AssertLockNotHeld(cs_main);
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// Block until the validation queue drains
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std::promise<void> promise;
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CallFunctionInValidationInterfaceQueue([&promise] {
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promise.set_value();
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});
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promise.get_future().wait();
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}
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// Use a macro instead of a function for conditional logging to prevent
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// evaluating arguments when logging is not enabled.
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//
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// NOTE: The lambda captures all local variables by value.
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#define ENQUEUE_AND_LOG_EVENT(event, fmt, name, ...) \
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do { \
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auto local_name = (name); \
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LOG_EVENT("Enqueuing " fmt, local_name, __VA_ARGS__); \
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m_internals->m_schedulerClient.AddToProcessQueue([=] { \
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LOG_EVENT(fmt, local_name, __VA_ARGS__); \
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event(); \
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}); \
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} while (0)
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#define LOG_EVENT(fmt, ...) \
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LogPrint(BCLog::VALIDATION, fmt "\n", __VA_ARGS__)
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void CMainSignals::UpdatedBlockTip(const CBlockIndex *pindexNew, const CBlockIndex *pindexFork, bool fInitialDownload) {
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// Dependencies exist that require UpdatedBlockTip events to be delivered in the order in which
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// the chain actually updates. One way to ensure this is for the caller to invoke this signal
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// in the same critical section where the chain is updated
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auto event = [pindexNew, pindexFork, fInitialDownload, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.UpdatedBlockTip(pindexNew, pindexFork, fInitialDownload); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: new block hash=%s fork block hash=%s (in IBD=%s)", __func__,
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pindexNew->GetBlockHash().ToString(),
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pindexFork ? pindexFork->GetBlockHash().ToString() : "null",
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fInitialDownload);
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}
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void CMainSignals::SynchronousUpdatedBlockTip(const CBlockIndex *pindexNew, const CBlockIndex *pindexFork, bool fInitialDownload) {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.SynchronousUpdatedBlockTip(pindexNew, pindexFork, fInitialDownload); });
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}
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void CMainSignals::TransactionAddedToMempool(const CTransactionRef& tx, int64_t nAcceptTime, uint64_t mempool_sequence) {
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auto event = [tx, nAcceptTime, mempool_sequence, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.TransactionAddedToMempool(tx, nAcceptTime, mempool_sequence); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: txid=%s", __func__,
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tx->GetHash().ToString());
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}
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void CMainSignals::TransactionRemovedFromMempool(const CTransactionRef& tx, MemPoolRemovalReason reason, uint64_t mempool_sequence) {
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auto event = [tx, reason, mempool_sequence, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.TransactionRemovedFromMempool(tx, reason, mempool_sequence); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: txid=%s", __func__,
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tx->GetHash().ToString());
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}
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void CMainSignals::BlockConnected(const std::shared_ptr<const CBlock> &pblock, const CBlockIndex *pindex) {
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auto event = [pblock, pindex, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.BlockConnected(pblock, pindex); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: block hash=%s block height=%d", __func__,
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pblock->GetHash().ToString(),
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pindex->nHeight);
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}
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void CMainSignals::BlockDisconnected(const std::shared_ptr<const CBlock> &pblock, const CBlockIndex* pindex) {
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auto event = [pblock, pindex, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.BlockDisconnected(pblock, pindex); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: block hash=%s block height=%d", __func__,
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pblock->GetHash().ToString(),
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pindex->nHeight);
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}
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void CMainSignals::ChainStateFlushed(const CBlockLocator &locator) {
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auto event = [locator, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.ChainStateFlushed(locator); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: block hash=%s", __func__,
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locator.IsNull() ? "null" : locator.vHave.front().ToString());
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}
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void CMainSignals::BlockChecked(const CBlock& block, const BlockValidationState& state) {
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LOG_EVENT("%s: block hash=%s state=%s", __func__,
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block.GetHash().ToString(), state.ToString());
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.BlockChecked(block, state); });
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}
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void CMainSignals::NewPoWValidBlock(const CBlockIndex *pindex, const std::shared_ptr<const CBlock> &block) {
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LOG_EVENT("%s: block hash=%s", __func__, block->GetHash().ToString());
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NewPoWValidBlock(pindex, block); });
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}
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void CMainSignals::AcceptedBlockHeader(const CBlockIndex *pindexNew) {
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LOG_EVENT("%s: accepted block header hash=%s", __func__, pindexNew->GetBlockHash().ToString());
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.AcceptedBlockHeader(pindexNew); });
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}
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void CMainSignals::NotifyHeaderTip(const CBlockIndex *pindexNew, bool fInitialDownload) {
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LOG_EVENT("%s: accepted block header hash=%s initial=%d", __func__, pindexNew->GetBlockHash().ToString(), fInitialDownload);
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyHeaderTip(pindexNew, fInitialDownload); });
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}
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void CMainSignals::NotifyTransactionLock(const CTransactionRef &tx, const std::shared_ptr<const llmq::CInstantSendLock>& islock) {
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auto event = [tx, islock, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyTransactionLock(tx, islock); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: transaction lock txid=%s", __func__,
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tx->GetHash().ToString());
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}
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void CMainSignals::NotifyChainLock(const CBlockIndex* pindex, const std::shared_ptr<const llmq::CChainLockSig>& clsig) {
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auto event = [pindex, clsig, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyChainLock(pindex, clsig); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: notify chainlock at block=%s cl=%s", __func__,
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pindex->GetBlockHash().ToString(),
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clsig->ToString());
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}
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void CMainSignals::NotifyGovernanceVote(const CDeterministicMNList& tip_mn_list, const std::shared_ptr<const CGovernanceVote>& vote) {
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auto event = [vote, tip_mn_list, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyGovernanceVote(tip_mn_list, vote); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: notify governance vote: %s", __func__, vote->GetHash().ToString());
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}
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void CMainSignals::NotifyGovernanceObject(const std::shared_ptr<const Governance::Object>& object) {
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auto event = [object, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyGovernanceObject(object); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: notify governance object: %s", __func__, object->GetHash().ToString());
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}
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void CMainSignals::NotifyInstantSendDoubleSpendAttempt(const CTransactionRef& currentTx, const CTransactionRef& previousTx) {
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auto event = [currentTx, previousTx, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyInstantSendDoubleSpendAttempt(currentTx, previousTx); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: notify instant doublespendattempt currenttxid=%s previoustxid=%s", __func__,
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currentTx->GetHash().ToString(),
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previousTx->GetHash().ToString());
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}
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void CMainSignals::NotifyRecoveredSig(const std::shared_ptr<const llmq::CRecoveredSig>& sig) {
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auto event = [sig, this] {
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyRecoveredSig(sig); });
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};
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ENQUEUE_AND_LOG_EVENT(event, "%s: notify recoveredsig=%s", __func__,
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sig->GetHash().ToString());
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}
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void CMainSignals::NotifyMasternodeListChanged(bool undo, const CDeterministicMNList& oldMNList, const CDeterministicMNListDiff& diff) {
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LOG_EVENT("%s: notify mn list changed undo=%d", __func__, undo);
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m_internals->Iterate([&](CValidationInterface& callbacks) { callbacks.NotifyMasternodeListChanged(undo, oldMNList, diff); });
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}
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