forked from lix-project/hydra
Implement a database connection pool
This commit is contained in:
parent
214b95706c
commit
3a6cb2f270
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@ -9,6 +9,7 @@
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#include "build-result.hh"
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#include "sync.hh"
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#include "pool.hh"
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#include "store-api.hh"
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#include "derivations.hh"
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@ -145,8 +146,10 @@ class State
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private:
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std::thread queueMonitorThread;
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std::mutex queueMonitorMutex;
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/* CV for waking up the queue. */
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std::condition_variable queueMonitorWakeup;
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std::mutex queueMonitorMutex;
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/* The queued builds. */
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typedef std::map<BuildID, Build::ptr> Builds;
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@ -165,12 +168,15 @@ private:
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std::condition_variable_any runnableWakeup;
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/* PostgreSQL connection pool. */
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Pool<Connection> dbPool;
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public:
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State();
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~State();
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void markActiveBuildStepsAsAborted(pqxx::connection & conn, time_t stopTime);
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void markActiveBuildStepsAsAborted(time_t stopTime);
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int createBuildStep(pqxx::work & txn, time_t startTime, Build::ptr build, Step::ptr step,
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BuildStepStatus status, const std::string & errorMsg = "", BuildID propagatedFrom = 0);
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@ -182,7 +188,7 @@ public:
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void queueMonitor();
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void getQueuedBuilds(std::shared_ptr<StoreAPI> store, pqxx::connection & conn);
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void getQueuedBuilds(std::shared_ptr<StoreAPI> store);
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Step::ptr createStep(std::shared_ptr<StoreAPI> store, const Path & drvPath,
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std::set<Step::ptr> & newRunnable);
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@ -213,18 +219,18 @@ State::State()
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State::~State()
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{
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try {
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Connection conn;
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printMsg(lvlError, "clearing active build steps...");
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markActiveBuildStepsAsAborted(conn, time(0));
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markActiveBuildStepsAsAborted(time(0));
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} catch (...) {
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ignoreException();
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}
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}
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void State::markActiveBuildStepsAsAborted(pqxx::connection & conn, time_t stopTime)
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void State::markActiveBuildStepsAsAborted(time_t stopTime)
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{
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pqxx::work txn(conn);
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auto conn(dbPool.get());
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pqxx::work txn(*conn);
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txn.parameterized
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("update BuildSteps set busy = 0, status = $1, stopTime = $2 where busy = 1")
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((int) bssAborted)
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@ -272,10 +278,8 @@ void State::queueMonitor()
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{
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auto store = openStore(); // FIXME: pool
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Connection conn;
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while (!exitRequested) {
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getQueuedBuilds(store, conn);
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getQueuedBuilds(store);
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{
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std::unique_lock<std::mutex> lock(queueMonitorMutex);
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@ -287,10 +291,12 @@ void State::queueMonitor()
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}
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void State::getQueuedBuilds(std::shared_ptr<StoreAPI> store, pqxx::connection & conn)
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void State::getQueuedBuilds(std::shared_ptr<StoreAPI> store)
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{
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printMsg(lvlError, "checking the queue...");
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auto conn(dbPool.get());
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#if 0
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{
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auto runnable_(runnable.lock());
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@ -308,7 +314,7 @@ void State::getQueuedBuilds(std::shared_ptr<StoreAPI> store, pqxx::connection &
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std::list<Build::ptr> newBuilds; // FIXME: use queue
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{
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pqxx::work txn(conn);
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pqxx::work txn(*conn);
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// FIXME: query only builds with ID higher than the previous
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// highest.
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@ -340,7 +346,7 @@ void State::getQueuedBuilds(std::shared_ptr<StoreAPI> store, pqxx::connection &
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if (!store->isValidPath(build->drvPath)) {
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/* Derivation has been GC'ed prematurely. */
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pqxx::work txn(conn);
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pqxx::work txn(*conn);
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txn.parameterized
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("update Builds set finished = 1, buildStatus = $2, startTime = $3, stopTime = $3, errorMsg = $4 where id = $1")
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(build->id)
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@ -360,7 +366,7 @@ void State::getQueuedBuilds(std::shared_ptr<StoreAPI> store, pqxx::connection &
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Derivation drv = readDerivation(build->drvPath);
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BuildResult res = getBuildResult(store, drv);
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pqxx::work txn(conn);
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pqxx::work txn(*conn);
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time_t now = time(0);
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markSucceededBuild(txn, build, res, true, now, now);
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txn.commit();
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@ -618,11 +624,11 @@ void State::doBuildStep(std::shared_ptr<StoreAPI> store, Step::ptr step)
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/* Create a build step record indicating that we started
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building. */
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Connection conn;
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auto conn(dbPool.get());
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time_t startTime = time(0);
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int stepNr;
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{
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pqxx::work txn(conn);
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pqxx::work txn(*conn);
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stepNr = createBuildStep(txn, startTime, build, step, bssBusy);
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txn.commit();
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}
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@ -668,7 +674,7 @@ void State::doBuildStep(std::shared_ptr<StoreAPI> store, Step::ptr step)
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/* Update the database. */
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{
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pqxx::work txn(conn);
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pqxx::work txn(*conn);
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if (success) {
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@ -757,10 +763,7 @@ void State::markSucceededBuild(pqxx::work & txn, Build::ptr build,
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void State::run()
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{
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{
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Connection conn;
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markActiveBuildStepsAsAborted(conn, 0);
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}
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markActiveBuildStepsAsAborted(0);
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queueMonitorThread = std::thread(&State::queueMonitor, this);
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@ -785,6 +788,8 @@ void State::run()
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{ auto runnable_(runnable.lock()); } // barrier
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runnableWakeup.notify_all();
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for (auto & thread : builderThreads) thread.join();
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printMsg(lvlError, format("psql connections = %1%") % dbPool.count());
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}
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85
src/hydra-queue-runner/pool.hh
Normal file
85
src/hydra-queue-runner/pool.hh
Normal file
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@ -0,0 +1,85 @@
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#pragma once
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#include <memory>
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#include <list>
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#include "sync.hh"
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/* This template class implements a simple pool manager of resources
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of some type R, such as database connections. It is used as
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follows:
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class Connection { ... };
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Pool<Connection> pool;
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{
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auto conn(pool.get());
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conn->exec("select ...");
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}
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Here, the Connection object referenced by ‘conn’ is automatically
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returned to the pool when ‘conn’ goes out of scope.
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*/
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template <class R>
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class Pool
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{
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private:
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struct State
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{
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unsigned int count = 0;
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std::list<std::shared_ptr<R>> idle;
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};
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Sync<State> state;
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public:
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class Handle
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{
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private:
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Pool & pool;
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std::shared_ptr<R> r;
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friend Pool;
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Handle(Pool & pool, std::shared_ptr<R> r) : pool(pool), r(r) { }
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public:
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Handle(Handle && h) : pool(h.pool), r(h.r) { h.r.reset(); }
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Handle(const Handle & l) = delete;
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~Handle()
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{
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auto state_(pool.state.lock());
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if (r) state_->idle.push_back(r);
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}
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R * operator -> () { return r; }
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R & operator * () { return *r; }
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};
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Handle get()
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{
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{
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auto state_(state.lock());
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if (!state_->idle.empty()) {
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auto p = state_->idle.back();
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state_->idle.pop_back();
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return Handle(*this, p);
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}
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state_->count++;
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}
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/* Note: we don't hold the lock while creating a new instance,
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because creation might take a long time. */
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return Handle(*this, std::make_shared<R>());
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}
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unsigned int count()
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{
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auto state_(state.lock());
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return state_->count;
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}
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};
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