/** * Copyright (C) 2014 MongoDB Inc. * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU Affero General Public License, version 3, * as published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU Affero General Public License for more details. * * You should have received a copy of the GNU Affero General Public License * along with this program. If not, see . * * As a special exception, the copyright holders give permission to link the * code of portions of this program with the OpenSSL library under certain * conditions as described in each individual source file and distribute * linked combinations including the program with the OpenSSL library. You * must comply with the GNU Affero General Public License in all respects for * all of the code used other than as permitted herein. If you modify file(s) * with this exception, you may extend this exception to your version of the * file(s), but you are not obligated to do so. If you do not wish to do so, * delete this exception statement from your version. If you delete this * exception statement from all source files in the program, then also delete * it in the license file. */ #include "mongo/platform/basic.h" #include "mongo/db/service_context.h" #include "mongo/bson/bsonobj.h" #include "mongo/db/client.h" #include "mongo/db/operation_context.h" #include "mongo/stdx/memory.h" #include "mongo/util/assert_util.h" #include "mongo/util/mongoutils/str.h" namespace mongo { namespace { ServiceContext* globalServiceContext = NULL; } // namespace bool hasGlobalServiceContext() { return globalServiceContext; } ServiceContext* getGlobalServiceContext() { fassert(17508, globalServiceContext); return globalServiceContext; } void setGlobalServiceContext(std::unique_ptr&& serviceContext) { fassert(17509, serviceContext.get()); delete globalServiceContext; globalServiceContext = serviceContext.release(); } bool _supportsDocLocking = false; bool supportsDocLocking() { return _supportsDocLocking; } bool isMMAPV1() { StorageEngine* globalStorageEngine = getGlobalServiceContext()->getGlobalStorageEngine(); invariant(globalStorageEngine); return globalStorageEngine->isMmapV1(); } Status validateStorageOptions( const BSONObj& storageEngineOptions, stdx::function validateFunc) { BSONObjIterator storageIt(storageEngineOptions); while (storageIt.more()) { BSONElement storageElement = storageIt.next(); StringData storageEngineName = storageElement.fieldNameStringData(); if (storageElement.type() != mongo::Object) { return Status(ErrorCodes::BadValue, str::stream() << "'storageEngine." << storageElement.fieldNameStringData() << "' has to be an embedded document."); } std::unique_ptr sfi( getGlobalServiceContext()->makeStorageFactoriesIterator()); invariant(sfi); bool found = false; while (sfi->more()) { const StorageEngine::Factory* const& factory = sfi->next(); if (storageEngineName != factory->getCanonicalName()) { continue; } Status status = validateFunc(factory, storageElement.Obj()); if (!status.isOK()) { return status; } found = true; } if (!found) { return Status(ErrorCodes::InvalidOptions, str::stream() << storageEngineName << " is not a registered storage engine for this server"); } } return Status::OK(); } ServiceContext::~ServiceContext() { stdx::lock_guard lk(_mutex); invariant(_clients.empty()); } ServiceContext::UniqueClient ServiceContext::makeClient(std::string desc, AbstractMessagingPort* p) { std::unique_ptr client(new Client(std::move(desc), this, p)); auto observer = _clientObservers.cbegin(); try { for (; observer != _clientObservers.cend(); ++observer) { observer->get()->onCreateClient(client.get()); } } catch (...) { try { while (observer != _clientObservers.cbegin()) { --observer; observer->get()->onDestroyClient(client.get()); } } catch (...) { std::terminate(); } throw; } { stdx::lock_guard lk(_mutex); invariant(_clients.insert(client.get()).second); } return UniqueClient(client.release()); } TickSource* ServiceContext::getTickSource() const { return _tickSource.get(); } ClockSource* ServiceContext::getClockSource() const { return _clockSource.get(); } void ServiceContext::setTickSource(std::unique_ptr newSource) { _tickSource = std::move(newSource); } void ServiceContext::setClockSource(std::unique_ptr newSource) { _clockSource = std::move(newSource); } void ServiceContext::ClientDeleter::operator()(Client* client) const { ServiceContext* const service = client->getServiceContext(); { stdx::lock_guard lk(service->_mutex); invariant(service->_clients.erase(client)); } try { for (const auto& observer : service->_clientObservers) { observer->onDestroyClient(client); } } catch (...) { std::terminate(); } delete client; } ServiceContext::UniqueOperationContext ServiceContext::makeOperationContext(Client* client) { auto opCtx = _newOpCtx(client); auto observer = _clientObservers.begin(); try { for (; observer != _clientObservers.cend(); ++observer) { observer->get()->onCreateOperationContext(opCtx.get()); } } catch (...) { try { while (observer != _clientObservers.cbegin()) { --observer; observer->get()->onDestroyOperationContext(opCtx.get()); } } catch (...) { std::terminate(); } throw; } // // TODO(schwerin): When callers no longer construct their own OperationContexts directly, // // but only through the ServiceContext, uncomment the following. Until then, it must // // be done in the operation context destructors, which introduces a potential race. // { // stdx::lock_guard lk(*client); // client->setOperationContext(opCtx.get()); // } return UniqueOperationContext(opCtx.release()); }; void ServiceContext::OperationContextDeleter::operator()(OperationContext* opCtx) const { auto client = opCtx->getClient(); auto service = client->getServiceContext(); // // TODO(schwerin): When callers no longer construct their own OperationContexts directly, // // but only through the ServiceContext, uncomment the following. Until then, it must // // be done in the operation context destructors, which introduces a potential race. // { // stdx::lock_guard lk(*client); // client->resetOperationContext(); // } try { for (const auto& observer : service->_clientObservers) { observer->onDestroyOperationContext(opCtx); } } catch (...) { std::terminate(); } delete opCtx; } void ServiceContext::registerClientObserver(std::unique_ptr observer) { _clientObservers.push_back(std::move(observer)); } ServiceContext::LockedClientsCursor::LockedClientsCursor(ServiceContext* service) : _lock(service->_mutex), _curr(service->_clients.cbegin()), _end(service->_clients.cend()) {} Client* ServiceContext::LockedClientsCursor::next() { if (_curr == _end) return nullptr; Client* result = *_curr; ++_curr; return result; } BSONArray storageEngineList() { if (!hasGlobalServiceContext()) return BSONArray(); std::unique_ptr sfi( getGlobalServiceContext()->makeStorageFactoriesIterator()); if (!sfi) return BSONArray(); BSONArrayBuilder engineArrayBuilder; while (sfi->more()) { engineArrayBuilder.append(sfi->next()->getCanonicalName()); } return engineArrayBuilder.arr(); } void appendStorageEngineList(BSONObjBuilder* result) { result->append("storageEngines", storageEngineList()); } } // namespace mongo