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scheduler: Make schedule* methods type safe
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commit
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7 changed files with 34 additions and 35 deletions
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@ -86,8 +86,8 @@ static const bool DEFAULT_PROXYRANDOMIZE = true;
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static const bool DEFAULT_REST_ENABLE = false;
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static const bool DEFAULT_STOPAFTERBLOCKIMPORT = false;
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// Dump addresses to banlist.dat every 15 minutes (900s)
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static constexpr int DUMP_BANS_INTERVAL = 60 * 15;
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// How often to dump addresses to banlist.dat
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static constexpr std::chrono::minutes DUMP_BANS_INTERVAL{15};
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#ifdef WIN32
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@ -1278,7 +1278,7 @@ bool AppInitMain(NodeContext& node)
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// Gather some entropy once per minute.
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node.scheduler->scheduleEvery([]{
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RandAddPeriodic();
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}, 60000);
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}, std::chrono::minutes{1});
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GetMainSignals().RegisterBackgroundSignalScheduler(*node.scheduler);
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@ -1863,7 +1863,7 @@ bool AppInitMain(NodeContext& node)
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BanMan* banman = node.banman.get();
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node.scheduler->scheduleEvery([banman]{
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banman->DumpBanlist();
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}, DUMP_BANS_INTERVAL * 1000);
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}, DUMP_BANS_INTERVAL);
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return true;
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}
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@ -45,8 +45,8 @@ static_assert(MINIUPNPC_API_VERSION >= 10, "miniUPnPc API version >= 10 assumed"
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#include <math.h>
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// Dump addresses to peers.dat every 15 minutes (900s)
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static constexpr int DUMP_PEERS_INTERVAL = 15 * 60;
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// How often to dump addresses to peers.dat
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static constexpr std::chrono::minutes DUMP_PEERS_INTERVAL{15};
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/** Number of DNS seeds to query when the number of connections is low. */
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static constexpr int DNSSEEDS_TO_QUERY_AT_ONCE = 3;
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@ -2343,7 +2343,7 @@ bool CConnman::Start(CScheduler& scheduler, const Options& connOptions)
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threadMessageHandler = std::thread(&TraceThread<std::function<void()> >, "msghand", std::function<void()>(std::bind(&CConnman::ThreadMessageHandler, this)));
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// Dump network addresses
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scheduler.scheduleEvery(std::bind(&CConnman::DumpAddresses, this), DUMP_PEERS_INTERVAL * 1000);
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scheduler.scheduleEvery([this] { DumpAddresses(); }, DUMP_PEERS_INTERVAL);
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return true;
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}
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@ -1124,7 +1124,7 @@ PeerLogicValidation::PeerLogicValidation(CConnman* connmanIn, BanMan* banman, CS
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// combine them in one function and schedule at the quicker (peer-eviction)
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// timer.
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static_assert(EXTRA_PEER_CHECK_INTERVAL < STALE_CHECK_INTERVAL, "peer eviction timer should be less than stale tip check timer");
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scheduler.scheduleEvery(std::bind(&PeerLogicValidation::CheckForStaleTipAndEvictPeers, this, consensusParams), EXTRA_PEER_CHECK_INTERVAL * 1000);
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scheduler.scheduleEvery([&] { this->CheckForStaleTipAndEvictPeers(consensusParams); }, std::chrono::seconds{EXTRA_PEER_CHECK_INTERVAL});
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}
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/**
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@ -92,11 +92,6 @@ void CScheduler::schedule(CScheduler::Function f, std::chrono::system_clock::tim
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newTaskScheduled.notify_one();
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}
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void CScheduler::scheduleFromNow(CScheduler::Function f, int64_t deltaMilliSeconds)
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{
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schedule(f, std::chrono::system_clock::now() + std::chrono::milliseconds(deltaMilliSeconds));
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}
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void CScheduler::MockForward(std::chrono::seconds delta_seconds)
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{
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assert(delta_seconds.count() > 0 && delta_seconds < std::chrono::hours{1});
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@ -119,15 +114,15 @@ void CScheduler::MockForward(std::chrono::seconds delta_seconds)
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newTaskScheduled.notify_one();
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}
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static void Repeat(CScheduler* s, CScheduler::Function f, int64_t deltaMilliSeconds)
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static void Repeat(CScheduler& s, CScheduler::Function f, std::chrono::milliseconds delta)
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{
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f();
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s->scheduleFromNow(std::bind(&Repeat, s, f, deltaMilliSeconds), deltaMilliSeconds);
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s.scheduleFromNow([=, &s] { Repeat(s, f, delta); }, delta);
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}
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void CScheduler::scheduleEvery(CScheduler::Function f, int64_t deltaMilliSeconds)
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void CScheduler::scheduleEvery(CScheduler::Function f, std::chrono::milliseconds delta)
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{
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scheduleFromNow(std::bind(&Repeat, this, f, deltaMilliSeconds), deltaMilliSeconds);
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scheduleFromNow([=] { Repeat(*this, f, delta); }, delta);
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}
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size_t CScheduler::getQueueInfo(std::chrono::system_clock::time_point &first,
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@ -24,8 +24,8 @@
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// Usage:
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//
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// CScheduler* s = new CScheduler();
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// s->scheduleFromNow(doSomething, 11); // Assuming a: void doSomething() { }
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// s->scheduleFromNow(std::bind(Class::func, this, argument), 3);
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// s->scheduleFromNow(doSomething, std::chrono::milliseconds{11}); // Assuming a: void doSomething() { }
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// s->scheduleFromNow([=] { this->func(argument); }, std::chrono::milliseconds{3});
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// boost::thread* t = new boost::thread(std::bind(CScheduler::serviceQueue, s));
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//
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// ... then at program shutdown, make sure to call stop() to clean up the thread(s) running serviceQueue:
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@ -46,15 +46,19 @@ public:
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// Call func at/after time t
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void schedule(Function f, std::chrono::system_clock::time_point t);
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// Convenience method: call f once deltaMilliSeconds from now
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void scheduleFromNow(Function f, int64_t deltaMilliSeconds);
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/** Call f once after the delta has passed */
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void scheduleFromNow(Function f, std::chrono::milliseconds delta)
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{
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schedule(std::move(f), std::chrono::system_clock::now() + delta);
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}
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// Another convenience method: call f approximately
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// every deltaMilliSeconds forever, starting deltaMilliSeconds from now.
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// To be more precise: every time f is finished, it
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// is rescheduled to run deltaMilliSeconds later. If you
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// need more accurate scheduling, don't use this method.
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void scheduleEvery(Function f, int64_t deltaMilliSeconds);
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/**
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* Repeat f until the scheduler is stopped. First run is after delta has passed once.
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*
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* The timing is not exact: Every time f is finished, it is rescheduled to run again after delta. If you need more
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* accurate scheduling, don't use this method.
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*/
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void scheduleEvery(Function f, std::chrono::milliseconds delta);
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/**
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* Mock the scheduler to fast forward in time.
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@ -150,10 +150,10 @@ BOOST_AUTO_TEST_CASE(mockforward)
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CScheduler::Function dummy = [&counter]{counter++;};
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// schedule jobs for 2, 5 & 8 minutes into the future
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int64_t min_in_milli = 60*1000;
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scheduler.scheduleFromNow(dummy, 2*min_in_milli);
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scheduler.scheduleFromNow(dummy, 5*min_in_milli);
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scheduler.scheduleFromNow(dummy, 8*min_in_milli);
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scheduler.scheduleFromNow(dummy, std::chrono::minutes{2});
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scheduler.scheduleFromNow(dummy, std::chrono::minutes{5});
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scheduler.scheduleFromNow(dummy, std::chrono::minutes{8});
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// check taskQueue
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std::chrono::system_clock::time_point first, last;
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@ -163,10 +163,10 @@ BOOST_AUTO_TEST_CASE(mockforward)
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std::thread scheduler_thread([&]() { scheduler.serviceQueue(); });
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// bump the scheduler forward 5 minutes
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scheduler.MockForward(std::chrono::seconds(5*60));
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scheduler.MockForward(std::chrono::minutes{5});
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// ensure scheduler has chance to process all tasks queued for before 1 ms from now.
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scheduler.scheduleFromNow([&scheduler]{ scheduler.stop(false); }, 1);
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scheduler.scheduleFromNow([&scheduler] { scheduler.stop(false); }, std::chrono::milliseconds{1});
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scheduler_thread.join();
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// check that the queue only has one job remaining
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@ -88,8 +88,8 @@ void StartWallets(CScheduler& scheduler)
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}
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// Schedule periodic wallet flushes and tx rebroadcasts
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scheduler.scheduleEvery(MaybeCompactWalletDB, 500);
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scheduler.scheduleEvery(MaybeResendWalletTxs, 1000);
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scheduler.scheduleEvery(MaybeCompactWalletDB, std::chrono::milliseconds{500});
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scheduler.scheduleEvery(MaybeResendWalletTxs, std::chrono::milliseconds{1000});
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}
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void FlushWallets()
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