mirror of https://github.com/Icinga/icinga2.git
225 lines
7.3 KiB
C++
225 lines
7.3 KiB
C++
/******************************************************************************
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* Icinga 2 *
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* Copyright (C) 2012-2018 Icinga Development Team (https://icinga.com/) *
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* *
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* This program is free software; you can redistribute it and/or *
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* modify it under the terms of the GNU General Public License *
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* as published by the Free Software Foundation; either version 2 *
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* of the License, or (at your option) any later version. *
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* *
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* This program is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License for more details. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with this program; if not, write to the Free Software Foundation *
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA. *
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******************************************************************************/
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#include "icinga/clusterevents.hpp"
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#include "remote/apilistener.hpp"
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#include "base/serializer.hpp"
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#include "base/exception.hpp"
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#include <boost/thread/once.hpp>
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#include <thread>
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using namespace icinga;
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boost::mutex ClusterEvents::m_Mutex;
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std::deque<std::function<void ()>> ClusterEvents::m_CheckRequestQueue;
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bool ClusterEvents::m_CheckSchedulerRunning;
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int ClusterEvents::m_ChecksExecutedDuringInterval;
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int ClusterEvents::m_ChecksDroppedDuringInterval;
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Timer::Ptr ClusterEvents::m_LogTimer;
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void ClusterEvents::RemoteCheckThreadProc()
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{
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Utility::SetThreadName("Remote Check Scheduler");
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boost::mutex::scoped_lock lock(m_Mutex);
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for(;;) {
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if (m_CheckRequestQueue.empty())
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break;
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lock.unlock();
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Checkable::AquirePendingCheckSlot(Application::GetMaxConcurrentChecks());
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lock.lock();
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auto callback = m_CheckRequestQueue.front();
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m_CheckRequestQueue.pop_front();
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m_ChecksExecutedDuringInterval++;
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lock.unlock();
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callback();
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Checkable::DecreasePendingChecks();
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lock.lock();
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}
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m_CheckSchedulerRunning = false;
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}
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void ClusterEvents::EnqueueCheck(const MessageOrigin::Ptr& origin, const Dictionary::Ptr& params)
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{
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static boost::once_flag once = BOOST_ONCE_INIT;
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boost::call_once(once, []() {
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m_LogTimer = new Timer();
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m_LogTimer->SetInterval(10);
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m_LogTimer->OnTimerExpired.connect(std::bind(ClusterEvents::LogRemoteCheckQueueInformation));
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m_LogTimer->Start();
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});
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boost::mutex::scoped_lock lock(m_Mutex);
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if (m_CheckRequestQueue.size() >= 25000) {
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m_ChecksDroppedDuringInterval++;
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return;
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}
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m_CheckRequestQueue.push_back(std::bind(ClusterEvents::ExecuteCheckFromQueue, origin, params));
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if (!m_CheckSchedulerRunning) {
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std::thread t(ClusterEvents::RemoteCheckThreadProc);
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t.detach();
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m_CheckSchedulerRunning = true;
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}
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}
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void ClusterEvents::ExecuteCheckFromQueue(const MessageOrigin::Ptr& origin, const Dictionary::Ptr& params) {
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Endpoint::Ptr sourceEndpoint = origin->FromClient->GetEndpoint();
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if (!sourceEndpoint || (origin->FromZone && !Zone::GetLocalZone()->IsChildOf(origin->FromZone))) {
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Log(LogNotice, "ClusterEvents")
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<< "Discarding 'execute command' message from '" << origin->FromClient->GetIdentity() << "': Invalid endpoint origin (client not allowed).";
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return;
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}
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ApiListener::Ptr listener = ApiListener::GetInstance();
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if (!listener) {
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Log(LogCritical, "ApiListener", "No instance available.");
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return;
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}
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if (!listener->GetAcceptCommands()) {
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Log(LogWarning, "ApiListener")
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<< "Ignoring command. '" << listener->GetName() << "' does not accept commands.";
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Host::Ptr host = new Host();
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Dictionary::Ptr attrs = new Dictionary();
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attrs->Set("__name", params->Get("host"));
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attrs->Set("type", "Host");
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attrs->Set("enable_active_checks", false);
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Deserialize(host, attrs, false, FAConfig);
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if (params->Contains("service"))
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host->SetExtension("agent_service_name", params->Get("service"));
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CheckResult::Ptr cr = new CheckResult();
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cr->SetState(ServiceUnknown);
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cr->SetOutput("Endpoint '" + Endpoint::GetLocalEndpoint()->GetName() + "' does not accept commands.");
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Dictionary::Ptr message = MakeCheckResultMessage(host, cr);
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listener->SyncSendMessage(sourceEndpoint, message);
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return;
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}
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/* use a virtual host object for executing the command */
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Host::Ptr host = new Host();
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Dictionary::Ptr attrs = new Dictionary();
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attrs->Set("__name", params->Get("host"));
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attrs->Set("type", "Host");
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Deserialize(host, attrs, false, FAConfig);
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if (params->Contains("service"))
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host->SetExtension("agent_service_name", params->Get("service"));
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String command = params->Get("command");
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String command_type = params->Get("command_type");
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if (command_type == "check_command") {
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if (!CheckCommand::GetByName(command)) {
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CheckResult::Ptr cr = new CheckResult();
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cr->SetState(ServiceUnknown);
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cr->SetOutput("Check command '" + command + "' does not exist.");
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Dictionary::Ptr message = MakeCheckResultMessage(host, cr);
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listener->SyncSendMessage(sourceEndpoint, message);
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return;
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}
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} else if (command_type == "event_command") {
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if (!EventCommand::GetByName(command)) {
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Log(LogWarning, "ClusterEvents")
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<< "Event command '" << command << "' does not exist.";
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return;
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}
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} else
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return;
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attrs->Set(command_type, params->Get("command"));
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attrs->Set("command_endpoint", sourceEndpoint->GetName());
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Deserialize(host, attrs, false, FAConfig);
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host->SetExtension("agent_check", true);
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Dictionary::Ptr macros = params->Get("macros");
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if (command_type == "check_command") {
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try {
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host->ExecuteRemoteCheck(macros);
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} catch (const std::exception& ex) {
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CheckResult::Ptr cr = new CheckResult();
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cr->SetState(ServiceUnknown);
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String output = "Exception occurred while checking '" + host->GetName() + "': " + DiagnosticInformation(ex);
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cr->SetOutput(output);
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double now = Utility::GetTime();
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cr->SetScheduleStart(now);
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cr->SetScheduleEnd(now);
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cr->SetExecutionStart(now);
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cr->SetExecutionEnd(now);
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Dictionary::Ptr message = MakeCheckResultMessage(host, cr);
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listener->SyncSendMessage(sourceEndpoint, message);
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Log(LogCritical, "checker", output);
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}
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} else if (command_type == "event_command") {
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host->ExecuteEventHandler(macros, true);
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}
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}
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int ClusterEvents::GetCheckRequestQueueSize()
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{
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return m_CheckRequestQueue.size();
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}
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void ClusterEvents::LogRemoteCheckQueueInformation() {
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if (m_ChecksDroppedDuringInterval > 0) {
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Log(LogCritical, "ClusterEvents")
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<< "Remote check queue ran out of slots. "
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<< m_ChecksDroppedDuringInterval << " checks dropped.";
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m_ChecksDroppedDuringInterval = 0;
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}
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if (m_ChecksExecutedDuringInterval == 0)
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return;
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Log(LogInformation, "RemoteCheckQueue")
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<< "items: " << m_CheckRequestQueue.size()
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<< ", rate: " << m_ChecksExecutedDuringInterval / 10 << "/s "
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<< "(" << m_ChecksExecutedDuringInterval * 6 << "/min "
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<< m_ChecksExecutedDuringInterval * 6 * 5 << "/5min "
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<< m_ChecksExecutedDuringInterval * 6 * 15 << "/15min" << ");";
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m_ChecksExecutedDuringInterval = 0;
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} |