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749 lines
22 KiB
C++
749 lines
22 KiB
C++
/***************************************************************************
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**
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** Copyright (C) 2010 Nokia Corporation and/or its subsidiary(-ies).
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** Copyright (C) 2013 - 2021 Jolla Ltd.
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** Copyright (C) 2020 Open Mobile Platform LLC.
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** All rights reserved.
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** Contact: Nokia Corporation (directui@nokia.com)
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**
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** This file is part of applauncherd
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**
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** If you have questions regarding the use of this file, please contact
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** Nokia at directui@nokia.com.
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**
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** This library is free software; you can redistribute it and/or
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** modify it under the terms of the GNU Lesser General Public
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** License version 2.1 as published by the Free Software Foundation
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** and appearing in the file LICENSE.LGPL included in the packaging
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** of this file.
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**
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****************************************************************************/
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#include "daemon.h"
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#include "logger.h"
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#include "connection.h"
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#include "booster.h"
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#include "singleinstance.h"
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#include "socketmanager.h"
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#include <cstdlib>
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#include <cerrno>
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#include <sys/capability.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <sys/wait.h>
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#include <sys/prctl.h>
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#include <fcntl.h>
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#include <dlfcn.h>
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#include <glob.h>
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#include <cstring>
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#include <cstdio>
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#include <stdexcept>
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#include <fstream>
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#include <sstream>
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#include <stdlib.h>
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#include <systemd/sd-daemon.h>
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#include <unistd.h>
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#include "coverage.h"
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// Environment
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extern char ** environ;
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Daemon * Daemon::m_instance = NULL;
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const int Daemon::m_boosterSleepTime = 2;
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const std::string Daemon::m_stateDir = std::string(getenv("XDG_RUNTIME_DIR"))+"/applauncherd";
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const std::string Daemon::m_stateFile = Daemon::m_stateDir + "/saved-state";
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static void sigChldHandler(int)
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{
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char v = SIGCHLD;
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write(Daemon::instance()->sigPipeFd(), &v, 1);
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}
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static void sigTermHandler(int)
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{
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char v = SIGTERM;
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write(Daemon::instance()->sigPipeFd(), &v, 1);
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}
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static void sigUsr1Handler(int)
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{
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char v = SIGUSR1;
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write(Daemon::instance()->sigPipeFd(), &v, 1);
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}
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static void sigUsr2Handler(int)
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{
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char v = SIGUSR2;
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write(Daemon::instance()->sigPipeFd(), &v, 1);
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}
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static void sigPipeHandler(int)
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{
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char v = SIGPIPE;
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write(Daemon::instance()->sigPipeFd(), &v, 1);
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}
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static void sigHupHandler(int)
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{
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char v = SIGHUP;
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write(Daemon::instance()->sigPipeFd(), &v, 1);
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}
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Daemon::Daemon(int & argc, char * argv[]) :
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m_daemon(false),
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m_debugMode(false),
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m_bootMode(false),
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m_boosterPid(0),
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m_socketManager(new SocketManager),
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m_singleInstance(new SingleInstance),
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m_notifySystemd(false),
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m_booster(0)
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{
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// Open the log
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Logger::openLog(argc > 0 ? argv[0] : "booster");
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Logger::logDebug("starting..");
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// Install signal handlers. The original handlers are saved
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// in the daemon instance so that they can be restored in boosters.
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setUnixSignalHandler(SIGCHLD, sigChldHandler); // reap zombies
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setUnixSignalHandler(SIGTERM, sigTermHandler); // exit launcher
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setUnixSignalHandler(SIGUSR1, sigUsr1Handler); // enter normal mode from boot mode
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setUnixSignalHandler(SIGUSR2, sigUsr2Handler); // enter boot mode (same as --boot-mode)
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setUnixSignalHandler(SIGPIPE, sigPipeHandler); // broken invoker's pipe
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setUnixSignalHandler(SIGHUP, sigHupHandler); // re-exec
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if (!Daemon::m_instance)
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{
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Daemon::m_instance = this;
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}
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else
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{
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throw std::runtime_error("Daemon: Daemon already created!\n");
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}
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// Parse arguments
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parseArgs(ArgVect(argv, argv + argc));
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// Store arguments list
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m_initialArgv = argv;
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m_initialArgc = argc;
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if (socketpair(AF_UNIX, SOCK_DGRAM, 0, m_boosterLauncherSocket) == -1)
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{
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throw std::runtime_error("Daemon: Creating a socket pair for boosters failed!\n");
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}
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if (pipe(m_sigPipeFd) == -1)
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{
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throw std::runtime_error("Daemon: Creating a pipe for Unix signals failed!\n");
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}
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}
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Daemon * Daemon::instance()
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{
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return Daemon::m_instance;
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}
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void Daemon::run(Booster *booster)
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{
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m_booster = booster;
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// Make sure that LD_BIND_NOW does not prevent dynamic linker to
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// use lazy binding in later dlopen() calls.
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unsetenv("LD_BIND_NOW");
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// dlopen single-instance
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loadSingleInstancePlugin();
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// Create socket for the booster
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Logger::logDebug("Daemon: initing socket: %s", booster->boosterType().c_str());
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m_socketManager->initSocket(booster->boosterType());
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// Daemonize if desired
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if (m_daemon)
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{
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daemonize();
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}
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// Fork each booster for the first time
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Logger::logDebug("Daemon: forking booster: %s", booster->boosterType().c_str());
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forkBooster();
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// Notify systemd that init is done
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if (m_notifySystemd) {
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Logger::logDebug("Daemon: initialization done. Notify systemd\n");
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sd_notify(0, "READY=1");
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}
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// Main loop
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while (true)
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{
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// Variables used by the select call
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fd_set rfds;
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int ndfs = 0;
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// Init data for select
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FD_ZERO(&rfds);
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FD_SET(m_boosterLauncherSocket[0], &rfds);
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ndfs = std::max(ndfs, m_boosterLauncherSocket[0]);
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FD_SET(m_sigPipeFd[0], &rfds);
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ndfs = std::max(ndfs, m_sigPipeFd[0]);
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// Wait for something appearing in the pipes.
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if (select(ndfs + 1, &rfds, NULL, NULL, NULL) > 0)
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{
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Logger::logDebug("Daemon: select done.");
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// Check if a booster died
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if (FD_ISSET(m_boosterLauncherSocket[0], &rfds))
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{
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Logger::logDebug("Daemon: FD_ISSET(m_boosterLauncherSocket[0])");
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readFromBoosterSocket(m_boosterLauncherSocket[0]);
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}
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// Check if we got SIGCHLD, SIGTERM, SIGUSR1 or SIGUSR2
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if (FD_ISSET(m_sigPipeFd[0], &rfds))
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{
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Logger::logDebug("Daemon: FD_ISSET(m_sigPipeFd[0])");
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char dataReceived;
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read(m_sigPipeFd[0], &dataReceived, 1);
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switch (dataReceived)
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{
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case SIGCHLD:
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Logger::logDebug("Daemon: SIGCHLD received.");
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reapZombies();
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break;
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case SIGTERM: {
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Logger::logDebug("Daemon: SIGTERM received.");
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const std::string pidFilePath = m_socketManager->socketRootPath() + m_booster->boosterType() + ".pid";
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FILE * const pidFile = fopen(pidFilePath.c_str(), "r");
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if (pidFile)
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{
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pid_t filePid;
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if (fscanf(pidFile, "%d\n", &filePid) == 1 && filePid == getpid())
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{
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unlink(pidFilePath.c_str());
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}
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fclose(pidFile);
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}
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exit(EXIT_SUCCESS);
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break;
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}
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case SIGUSR1:
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Logger::logDebug("Daemon: SIGUSR1 received.");
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enterNormalMode();
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break;
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case SIGUSR2:
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Logger::logDebug("Daemon: SIGUSR2 received.");
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enterBootMode();
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break;
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case SIGPIPE:
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Logger::logDebug("Daemon: SIGPIPE received.");
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break;
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default:
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break;
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}
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}
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}
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}
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}
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void Daemon::readFromBoosterSocket(int fd)
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{
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pid_t invokerPid = 0;
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int delay = 0;
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struct msghdr msg;
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struct cmsghdr *cmsg;
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struct iovec iov[2];
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char buf[CMSG_SPACE(sizeof(int))];
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iov[0].iov_base = &invokerPid;
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iov[0].iov_len = sizeof(pid_t);
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iov[1].iov_base = &delay;
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iov[1].iov_len = sizeof(int);
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msg.msg_iov = iov;
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msg.msg_iovlen = 2;
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msg.msg_name = NULL;
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msg.msg_namelen = 0;
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msg.msg_control = buf;
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msg.msg_controllen = sizeof(buf);
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if (recvmsg(fd, &msg, 0) >= 0)
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{
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Logger::logDebug("Daemon: invoker's pid: %d\n", invokerPid);
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Logger::logDebug("Daemon: respawn delay: %d \n", delay);
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if (invokerPid != 0)
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{
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// Store booster - invoker pid pair
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// Store booster - invoker socket pair
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if (m_boosterPid)
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{
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cmsg = CMSG_FIRSTHDR(&msg);
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int newFd;
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memcpy(&newFd, CMSG_DATA(cmsg), sizeof(int));
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Logger::logDebug("Daemon: socket file descriptor: %d\n", newFd);
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m_boosterPidToInvokerPid[m_boosterPid] = invokerPid;
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m_boosterPidToInvokerFd[m_boosterPid] = newFd;
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}
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}
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}
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else
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{
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Logger::logError("Daemon: Nothing read from the socket\n");
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// Critical error communicating with booster. Exiting applauncherd.
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_exit(EXIT_FAILURE);
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}
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// 2nd param guarantees some time for the just launched application
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// to start up before forking new booster. Not doing this would
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// slow down the start-up significantly on single core CPUs.
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forkBooster(delay);
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}
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void Daemon::killProcess(pid_t pid, int signal) const
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{
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if (pid > 0)
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{
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Logger::logDebug("Daemon: Killing pid %d with %d", pid, signal);
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if (kill(pid, signal) != 0)
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{
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Logger::logError("Daemon: Failed to kill %d: %s\n",
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pid, strerror(errno));
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}
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}
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}
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void Daemon::loadSingleInstancePlugin()
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{
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void * handle = dlopen(SINGLE_INSTANCE_PATH, RTLD_NOW);
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if (!handle)
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{
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Logger::logWarning("Daemon: dlopening single-instance failed: %s", dlerror());
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}
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else
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{
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if (m_singleInstance->validateAndRegisterPlugin(handle))
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{
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Logger::logDebug("Daemon: single-instance plugin loaded.'");
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}
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else
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{
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Logger::logWarning("Daemon: Invalid single-instance plugin: '%s'",
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SINGLE_INSTANCE_PATH);
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}
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}
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}
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void Daemon::dropCapabilities()
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{
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cap_t caps = cap_init();
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if (!caps || cap_set_proc(caps) == -1) {
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Logger::logError("Daemon: Failed to drop capabilities");
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}
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if (caps) {
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cap_free(caps);
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}
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}
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void Daemon::forkBooster(int sleepTime)
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{
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if (!m_booster) {
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// Critical error unknown booster type. Exiting applauncherd.
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_exit(EXIT_FAILURE);
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}
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// Invalidate current booster pid
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m_boosterPid = 0;
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// Fork a new process
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pid_t newPid = fork();
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if (newPid == -1)
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throw std::runtime_error("Daemon: Forking while invoking");
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if (newPid == 0) /* Child process */
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{
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// Restore used signal handlers
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restoreUnixSignalHandlers();
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// Will get this signal if applauncherd dies
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prctl(PR_SET_PDEATHSIG, SIGHUP);
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// Close unused read end of the booster socket
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close(m_boosterLauncherSocket[0]);
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// Close signal pipe
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close(m_sigPipeFd[0]);
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close(m_sigPipeFd[1]);
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// Close socket file descriptors
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FdMap::iterator i(m_boosterPidToInvokerFd.begin());
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while (i != m_boosterPidToInvokerFd.end())
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{
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if ((*i).second != -1) {
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close((*i).second);
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(*i).second = -1;
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}
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i++;
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}
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// Set session id
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if (setsid() < 0)
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Logger::logError("Daemon: Couldn't set session id\n");
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// Guarantee some time for the just launched application to
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// start up before initializing new booster if needed.
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// Not done if in the boot mode.
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if (!m_bootMode && sleepTime)
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sleep(sleepTime);
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Logger::logDebug("Daemon: Running a new Booster of type '%s'", m_booster->boosterType().c_str());
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// Initialize and wait for commands from invoker
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try {
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m_booster->initialize(m_initialArgc, m_initialArgv, m_boosterLauncherSocket[1],
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m_socketManager->findSocket(m_booster->boosterType().c_str()),
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m_singleInstance, m_bootMode);
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} catch (const std::runtime_error &e) {
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Logger::logError("Booster: Failed to initialize: %s\n", e.what());
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fprintf(stderr, "Failed to initialize: %s\n", e.what());
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delete m_booster;
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_exit(EXIT_FAILURE);
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}
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m_instance = NULL;
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// No need for capabilities anymore
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dropCapabilities();
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// Run the current Booster
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int retval = m_booster->run(m_socketManager);
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// Finish
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delete m_booster;
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// _exit() instead of exit() to avoid situation when destructors
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// for static objects may be run incorrectly
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_exit(retval);
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}
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else /* Parent process */
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{
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// Store the pid so that we can reap it later
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m_children.push_back(newPid);
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// Set current process ID globally to the given booster type
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// so that we now which booster to restart when booster exits.
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m_boosterPid = newPid;
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}
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}
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void Daemon::reapZombies()
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{
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// Loop through all child pid's and wait for them with WNOHANG.
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PidVect::iterator i(m_children.begin());
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while (i != m_children.end())
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{
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// Check if the pid had exited and become a zombie
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int status;
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pid_t pid = waitpid(*i, &status, WNOHANG);
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if (pid)
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{
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// The pid had exited. Remove it from the pid vector.
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i = m_children.erase(i);
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// Find out if the exited process has a mapping with an invoker process.
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// If this is the case, then kill the invoker process with the same signal
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// that killed the exited process.
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PidMap::iterator it = m_boosterPidToInvokerPid.find(pid);
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if (it != m_boosterPidToInvokerPid.end())
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{
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Logger::logDebug("Daemon: Terminated process had a mapping to an invoker pid");
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if (WIFEXITED(status))
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{
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Logger::logInfo("Boosted process (pid=%d) exited with status %d\n", pid, WEXITSTATUS(status));
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Logger::logDebug("Daemon: child exited by exit(x), _exit(x) or return x\n");
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Logger::logDebug("Daemon: x == %d\n", WEXITSTATUS(status));
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FdMap::iterator fd = m_boosterPidToInvokerFd.find(pid);
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if (fd != m_boosterPidToInvokerFd.end())
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{
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write((*fd).second, &INVOKER_MSG_EXIT, sizeof(uint32_t));
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int exitStatus = WEXITSTATUS(status);
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write((*fd).second, &exitStatus, sizeof(int));
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close((*fd).second);
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m_boosterPidToInvokerFd.erase(fd);
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}
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}
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else if (WIFSIGNALED(status))
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{
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int signal = WTERMSIG(status);
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pid_t invokerPid = (*it).second;
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Logger::logInfo("Boosted process (pid=%d) was terminated due to signal %d\n", pid, signal);
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Logger::logDebug("Daemon: Booster (pid=%d) was terminated due to signal %d\n", pid, signal);
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Logger::logDebug("Daemon: Killing invoker process (pid=%d) by signal %d..\n", invokerPid, signal);
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FdMap::iterator fd = m_boosterPidToInvokerFd.find(pid);
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if (fd != m_boosterPidToInvokerFd.end())
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{
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close((*fd).second);
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m_boosterPidToInvokerFd.erase(fd);
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}
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killProcess(invokerPid, signal);
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}
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// Remove a dead booster
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m_boosterPidToInvokerPid.erase(it);
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}
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// Check if pid belongs to a booster and restart the dead booster if needed
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if (pid == m_boosterPid)
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{
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forkBooster(m_boosterSleepTime);
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}
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}
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else
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{
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i++;
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}
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}
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}
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void Daemon::daemonize()
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{
|
|
// Our process ID and Session ID
|
|
pid_t pid, sid;
|
|
|
|
// Fork off the parent process: first fork
|
|
pid = fork();
|
|
if (pid < 0)
|
|
throw std::runtime_error("Daemon: Unable to fork daemon");
|
|
|
|
// If we got a good PID, then we can exit the parent process.
|
|
if (pid > 0)
|
|
{
|
|
// Wait for the child fork to exit to ensure the PID has been written before a caller
|
|
// is notified of the exit.
|
|
waitpid(pid, NULL, 0);
|
|
_exit(EXIT_SUCCESS);
|
|
}
|
|
|
|
// Fork off the parent process: second fork
|
|
pid = fork();
|
|
if (pid < 0)
|
|
throw std::runtime_error("Daemon: Unable to fork daemon");
|
|
|
|
// If we got a good PID, then we can exit the parent process.
|
|
if (pid > 0)
|
|
{
|
|
const std::string pidFilePath = m_socketManager->socketRootPath() + m_booster->boosterType() + ".pid";
|
|
FILE * const pidFile = fopen(pidFilePath.c_str(), "w");
|
|
if (pidFile)
|
|
{
|
|
fprintf(pidFile, "%d\n", pid);
|
|
fclose(pidFile);
|
|
}
|
|
|
|
_exit(EXIT_SUCCESS);
|
|
}
|
|
|
|
// Change the file mode mask
|
|
umask(0);
|
|
|
|
// Open any logs here
|
|
|
|
// Create a new SID for the child process
|
|
sid = setsid();
|
|
if (sid < 0)
|
|
throw std::runtime_error("Daemon: Unable to setsid.");
|
|
|
|
// Change the current working directory
|
|
if ((chdir("/")) < 0)
|
|
throw std::runtime_error("Daemon: Unable to chdir to '/'");
|
|
|
|
// Open file descriptors pointing to /dev/null
|
|
// Redirect standard file descriptors to /dev/null
|
|
// Close new file descriptors
|
|
|
|
const int new_stdin = open("/dev/null", O_RDONLY);
|
|
if (new_stdin != -1) {
|
|
dup2(new_stdin, STDIN_FILENO);
|
|
close(new_stdin);
|
|
}
|
|
|
|
const int new_stdout = open("/dev/null", O_WRONLY);
|
|
if (new_stdout != -1) {
|
|
dup2(new_stdout, STDOUT_FILENO);
|
|
close(new_stdout);
|
|
}
|
|
|
|
const int new_stderr = open("/dev/null", O_WRONLY);
|
|
if (new_stderr != -1) {
|
|
dup2(new_stderr, STDERR_FILENO);
|
|
close(new_stderr);
|
|
}
|
|
}
|
|
|
|
void Daemon::parseArgs(const ArgVect & args)
|
|
{
|
|
for (ArgVect::const_iterator i(args.begin() + 1); i != args.end(); i++)
|
|
{
|
|
if ((*i) == "--boot-mode" || (*i) == "-b")
|
|
{
|
|
Logger::logInfo("Daemon: Boot mode set.");
|
|
m_bootMode = true;
|
|
}
|
|
else if ((*i) == "--daemon" || (*i) == "-d")
|
|
{
|
|
m_daemon = true;
|
|
}
|
|
else if ((*i) == "--debug")
|
|
{
|
|
Logger::setDebugMode(true);
|
|
m_debugMode = true;
|
|
}
|
|
else if ((*i) == "--help" || (*i) == "-h")
|
|
{
|
|
usage(args[0].c_str(), EXIT_SUCCESS);
|
|
}
|
|
else if ((*i) == "--systemd")
|
|
{
|
|
m_notifySystemd = true;
|
|
}
|
|
else
|
|
{
|
|
if ((*i).find_first_not_of(' ') != string::npos)
|
|
usage(args[0].c_str(), EXIT_FAILURE);
|
|
}
|
|
}
|
|
}
|
|
|
|
// Prints the usage and exits with given status
|
|
void Daemon::usage(const char *name, int status)
|
|
{
|
|
printf("\nUsage: %s [options]\n\n"
|
|
"Start the application launcher daemon.\n\n"
|
|
"Options:\n"
|
|
" -b, --boot-mode Start %s in the boot mode. This means that\n"
|
|
" boosters will not initialize caches and booster\n"
|
|
" respawn delay is set to zero.\n"
|
|
" Normal mode is restored by sending SIGUSR1\n"
|
|
" to the launcher.\n"
|
|
" Boot mode can be activated also by sending SIGUSR2\n"
|
|
" to the launcher.\n"
|
|
" -d, --daemon Run as %s a daemon.\n"
|
|
" --systemd Notify systemd when initialization is done\n"
|
|
" --debug Enable debug messages and log everything also to stdout.\n"
|
|
" -h, --help Print this help.\n\n",
|
|
name, name, name);
|
|
|
|
exit(status);
|
|
}
|
|
|
|
int Daemon::sigPipeFd() const
|
|
{
|
|
return m_sigPipeFd[1];
|
|
}
|
|
|
|
void Daemon::enterNormalMode()
|
|
{
|
|
if (m_bootMode)
|
|
{
|
|
m_bootMode = false;
|
|
|
|
// Kill current boosters
|
|
killBoosters();
|
|
|
|
Logger::logInfo("Daemon: Exited boot mode.");
|
|
}
|
|
else
|
|
{
|
|
Logger::logInfo("Daemon: Already in normal mode.");
|
|
}
|
|
}
|
|
|
|
void Daemon::enterBootMode()
|
|
{
|
|
if (!m_bootMode)
|
|
{
|
|
m_bootMode = true;
|
|
|
|
// Kill current boosters
|
|
killBoosters();
|
|
|
|
Logger::logInfo("Daemon: Entered boot mode.");
|
|
}
|
|
else
|
|
{
|
|
Logger::logInfo("Daemon: Already in boot mode.");
|
|
}
|
|
}
|
|
|
|
void Daemon::killBoosters()
|
|
{
|
|
if (m_boosterPid)
|
|
killProcess(m_boosterPid, SIGTERM);
|
|
|
|
// NOTE!!: m_boosterPid must not be cleared
|
|
// in order to automatically start new boosters.
|
|
}
|
|
|
|
void Daemon::setUnixSignalHandler(int signum, sighandler_t handler)
|
|
{
|
|
sighandler_t old_handler = signal(signum, handler);
|
|
|
|
if (signum == SIGHUP && old_handler == SIG_IGN)
|
|
{
|
|
// SIGHUP is a special case. It is set to SIG_IGN
|
|
// when applauncherd does a re-exec, but we still want the
|
|
// boosters / launched applications to get the default
|
|
// handler.
|
|
m_originalSigHandlers[signum] = SIG_DFL;
|
|
}
|
|
else if (old_handler != SIG_ERR)
|
|
{
|
|
m_originalSigHandlers[signum] = old_handler;
|
|
}
|
|
else
|
|
{
|
|
throw std::runtime_error("Daemon: Failed to set signal handler");
|
|
}
|
|
}
|
|
|
|
void Daemon::restoreUnixSignalHandlers()
|
|
{
|
|
for (SigHandlerMap::iterator it = m_originalSigHandlers.begin(); it != m_originalSigHandlers.end(); it++ )
|
|
{
|
|
signal(it->first, it->second);
|
|
}
|
|
|
|
m_originalSigHandlers.clear();
|
|
}
|
|
|
|
|
|
Daemon::~Daemon()
|
|
{
|
|
delete m_socketManager;
|
|
delete m_singleInstance;
|
|
|
|
Logger::closeLog();
|
|
}
|
|
|