364 lines
11 KiB
C++
364 lines
11 KiB
C++
/// \file util.cpp
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/// Contains generic functions for managing processes and configuration.
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#include "util.h"
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#include <string.h>
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#include <sys/types.h>
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#include <signal.h>
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#ifdef __FreeBSD__
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#include <sys/wait.h>
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#else
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#include <wait.h>
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#endif
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#include <errno.h>
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#include <iostream>
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#include <sys/types.h>
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#include <pwd.h>
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#include <getopt.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <fstream>
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std::map<pid_t, std::string> Util::Procs::plist;
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bool Util::Procs::handler_set = false;
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/// Sets the current process' running user
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void Util::setUser(std::string username){
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if (username != "root"){
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struct passwd * user_info = getpwnam(username.c_str());
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if (!user_info){
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#if DEBUG >= 1
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fprintf(stderr, "Error: could not setuid %s: could not get PID\n", username.c_str());
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#endif
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return;
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}else{
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if (setuid(user_info->pw_uid) != 0){
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#if DEBUG >= 1
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fprintf(stderr, "Error: could not setuid %s: not allowed\n", username.c_str());
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#endif
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}else{
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#if DEBUG >= 3
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fprintf(stderr, "Changed user to %s\n", username.c_str());
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#endif
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}
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}
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}
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}
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/// Used internally to capture child signals and update plist.
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void Util::Procs::childsig_handler(int signum){
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if (signum != SIGCHLD){return;}
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pid_t ret = wait(0);
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#if DEBUG >= 1
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std::string pname = plist[ret];
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#endif
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plist.erase(ret);
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#if DEBUG >= 1
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if (isActive(pname)){
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std::cerr << "Process " << pname << " half-terminated." << std::endl;
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Stop(pname);
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}else{
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std::cerr << "Process " << pname << " fully terminated." << std::endl;
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}
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#endif
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}
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/// Attempts to run the command cmd.
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/// Replaces the current process - use after forking first!
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/// This function will never return - it will either run the given
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/// command or kill itself with return code 42.
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void Util::Procs::runCmd(std::string & cmd){
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//split cmd into arguments
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//supports a maximum of 20 arguments
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char * tmp = (char*)cmd.c_str();
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char * tmp2 = 0;
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char * args[21];
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int i = 0;
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tmp2 = strtok(tmp, " ");
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args[0] = tmp2;
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while (tmp2 != 0 && (i < 20)){
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tmp2 = strtok(0, " ");
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++i;
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args[i] = tmp2;
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}
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if (i == 20){args[20] = 0;}
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//execute the command
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execvp(args[0], args);
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#if DEBUG >= 1
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std::cerr << "Error running \"" << cmd << "\": " << strerror(errno) << std::endl;
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#endif
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_exit(42);
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}
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/// Starts a new process if the name is not already active.
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/// \return 0 if process was not started, process PID otherwise.
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/// \arg name Name for this process - only used internally.
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/// \arg cmd Commandline for this process.
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pid_t Util::Procs::Start(std::string name, std::string cmd){
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if (isActive(name)){return getPid(name);}
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if (!handler_set){
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struct sigaction new_action;
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new_action.sa_handler = Util::Procs::childsig_handler;
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sigemptyset(&new_action.sa_mask);
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new_action.sa_flags = 0;
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sigaction(SIGCHLD, &new_action, NULL);
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handler_set = true;
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}
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pid_t ret = fork();
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if (ret == 0){
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runCmd(cmd);
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}else{
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if (ret > 0){
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#if DEBUG >= 1
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std::cerr << "Process " << name << " started, PID " << ret << ": " << cmd << std::endl;
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#endif
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plist.insert(std::pair<pid_t, std::string>(ret, name));
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}else{
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#if DEBUG >= 1
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std::cerr << "Process " << name << " could not be started. fork() failed." << std::endl;
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#endif
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return 0;
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}
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}
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return ret;
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}
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/// Starts two piped processes if the name is not already active.
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/// \return 0 if process was not started, main (receiving) process PID otherwise.
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/// \arg name Name for this process - only used internally.
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/// \arg cmd Commandline for sub (sending) process.
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/// \arg cmd2 Commandline for main (receiving) process.
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pid_t Util::Procs::Start(std::string name, std::string cmd, std::string cmd2){
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if (isActive(name)){return getPid(name);}
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if (!handler_set){
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struct sigaction new_action;
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new_action.sa_handler = Util::Procs::childsig_handler;
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sigemptyset(&new_action.sa_mask);
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new_action.sa_flags = 0;
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sigaction(SIGCHLD, &new_action, NULL);
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handler_set = true;
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}
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int pfildes[2];
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if (pipe(pfildes) == -1){
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#if DEBUG >= 1
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std::cerr << "Process " << name << " could not be started. Pipe creation failed." << std::endl;
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#endif
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return 0;
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}
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pid_t ret = fork();
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if (ret == 0){
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close(pfildes[0]);
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dup2(pfildes[1],1);
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close(pfildes[1]);
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runCmd(cmd);
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}else{
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if (ret > 0){
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plist.insert(std::pair<pid_t, std::string>(ret, name));
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}else{
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#if DEBUG >= 1
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std::cerr << "Process " << name << " could not be started. fork() failed." << std::endl;
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#endif
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close(pfildes[1]);
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close(pfildes[0]);
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return 0;
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}
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}
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pid_t ret2 = fork();
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if (ret2 == 0){
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close(pfildes[1]);
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dup2(pfildes[0],0);
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close(pfildes[0]);
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runCmd(cmd2);
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}else{
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if (ret2 > 0){
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#if DEBUG >= 1
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std::cerr << "Process " << name << " started, PIDs (" << ret << ", " << ret2 << "): " << cmd << " | " << cmd2 << std::endl;
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#endif
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plist.insert(std::pair<pid_t, std::string>(ret2, name));
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}else{
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#if DEBUG >= 1
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std::cerr << "Process " << name << " could not be started. fork() failed." << std::endl;
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#endif
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Stop(name);
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close(pfildes[1]);
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close(pfildes[0]);
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return 0;
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}
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}
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close(pfildes[1]);
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close(pfildes[0]);
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return ret;
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}
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/// Stops the named process, if running.
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/// \arg name (Internal) name of process to stop
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void Util::Procs::Stop(std::string name){
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int max = 5;
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while (isActive(name)){
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Stop(getPid(name));
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max--;
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if (max <= 0){return;}
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}
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}
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/// Stops the process with this pid, if running.
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/// \arg name The PID of the process to stop.
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void Util::Procs::Stop(pid_t name){
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if (isActive(name)){
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kill(name, SIGTERM);
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}
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}
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/// (Attempts to) stop all running child processes.
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void Util::Procs::StopAll(){
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std::map<pid_t, std::string>::iterator it;
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for (it = plist.begin(); it != plist.end(); it++){
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Stop((*it).first);
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}
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}
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/// Returns the number of active child processes.
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int Util::Procs::Count(){
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return plist.size();
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}
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/// Returns true if a process by this name is currently active.
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bool Util::Procs::isActive(std::string name){
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std::map<pid_t, std::string>::iterator it;
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for (it = plist.begin(); it != plist.end(); it++){
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if ((*it).second == name){return true;}
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}
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return false;
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}
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/// Returns true if a process with this PID is currently active.
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bool Util::Procs::isActive(pid_t name){
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return (plist.count(name) == 1);
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}
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/// Gets PID for this named process, if active.
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/// \return NULL if not active, process PID otherwise.
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pid_t Util::Procs::getPid(std::string name){
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std::map<pid_t, std::string>::iterator it;
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for (it = plist.begin(); it != plist.end(); it++){
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if ((*it).second == name){return (*it).first;}
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}
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return 0;
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}
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/// Gets name for this process PID, if active.
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/// \return Empty string if not active, name otherwise.
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std::string Util::Procs::getName(pid_t name){
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if (plist.count(name) == 1){
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return plist[name];
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}
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return "";
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}
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/// Creates a new configuration manager.
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Util::Config::Config(){
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listen_port = 4242;
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daemon_mode = true;
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interface = "0.0.0.0";
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configfile = "/etc/ddvtech.conf";
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username = "root";
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ignore_daemon = false;
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ignore_interface = false;
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ignore_port = false;
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ignore_user = false;
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}
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/// Parses commandline arguments.
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/// Calls exit if an unknown option is encountered, printing a help message.
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/// confsection must be either already set or never be set at all when this function is called.
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/// In other words: do not change confsection after calling this function.
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void Util::Config::parseArgs(int argc, char ** argv){
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int opt = 0;
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static const char *optString = "ndvp:i:u:c:h?";
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static const struct option longOpts[] = {
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{"help",0,0,'h'},
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{"port",1,0,'p'},
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{"interface",1,0,'i'},
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{"username",1,0,'u'},
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{"no-daemon",0,0,'n'},
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{"daemon",0,0,'d'},
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{"configfile",1,0,'c'},
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{"version",0,0,'v'}
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};
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while ((opt = getopt_long(argc, argv, optString, longOpts, 0)) != -1){
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switch (opt){
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case 'p': listen_port = atoi(optarg); ignore_port = true; break;
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case 'i': interface = optarg; ignore_interface = true; break;
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case 'n': daemon_mode = false; ignore_daemon = true; break;
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case 'd': daemon_mode = true; ignore_daemon = true; break;
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case 'c': configfile = optarg; break;
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case 'u': username = optarg; ignore_user = true; break;
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case 'v':
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printf("%s\n", TOSTRING(VERSION));
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exit(1);
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break;
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case 'h':
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case '?':
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std::string doingdaemon = "true";
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if (!daemon_mode){doingdaemon = "false";}
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if (confsection == ""){
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printf("Options: -h[elp], -?, -v[ersion], -n[odaemon], -d[aemon], -p[ort] VAL, -i[nterface] VAL, -u[sername] VAL\n");
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printf("Defaults:\n interface: %s\n port: %i\n daemon mode: %s\n username: %s\n", interface.c_str(), listen_port, doingdaemon.c_str(), username.c_str());
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}else{
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printf("Options: -h[elp], -?, -v[ersion], -n[odaemon], -d[aemon], -p[ort] VAL, -i[nterface] VAL, -c[onfigfile] VAL, -u[sername] VAL\n");
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printf("Defaults:\n interface: %s\n port: %i\n daemon mode: %s\n configfile: %s\n username: %s\n", interface.c_str(), listen_port, doingdaemon.c_str(), configfile.c_str(), username.c_str());
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printf("Username root means no change to UID, no matter what the UID is.\n");
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printf("If the configfile exists, it is always loaded first. Commandline settings then overwrite the config file.\n");
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printf("\nThis process takes it directives from the %s section of the configfile.\n", confsection.c_str());
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}
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printf("This is %s version %s\n", argv[0], TOSTRING(VERSION));
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exit(1);
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break;
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}
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}//commandline options parser
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}
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/// Parses the configuration file at configfile, if it exists.
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/// Assumes confsection is set.
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void Util::Config::parseFile(){
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std::ifstream conf(configfile.c_str(), std::ifstream::in);
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std::string tmpstr;
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bool acc_comm = false;
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size_t foundeq;
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if (conf.fail()){
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#if DEBUG >= 3
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fprintf(stderr, "Configuration file %s not found - using build-in defaults...\n", configfile.c_str());
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#endif
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}else{
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while (conf.good()){
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getline(conf, tmpstr);
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if (tmpstr[0] == '['){//new section? check if we care.
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if (tmpstr == confsection){acc_comm = true;}else{acc_comm = false;}
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}else{
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if (!acc_comm){break;}//skip all lines in this section if we do not care about it
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foundeq = tmpstr.find('=');
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if (foundeq != std::string::npos){
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if ((tmpstr.substr(0, foundeq) == "port") && !ignore_port){listen_port = atoi(tmpstr.substr(foundeq+1).c_str());}
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if ((tmpstr.substr(0, foundeq) == "interface") && !ignore_interface){interface = tmpstr.substr(foundeq+1);}
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if ((tmpstr.substr(0, foundeq) == "username") && !ignore_user){username = tmpstr.substr(foundeq+1);}
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if ((tmpstr.substr(0, foundeq) == "daemon") && !ignore_daemon){daemon_mode = true;}
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if ((tmpstr.substr(0, foundeq) == "nodaemon") && !ignore_daemon){daemon_mode = false;}
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}//found equals sign
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}//section contents
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}//configfile line loop
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}//configuration
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}
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/// Will turn the current process into a daemon.
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/// Works by calling daemon(1,0):
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/// Does not change directory to root.
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/// Does redirect output to /dev/null
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void Util::Daemonize(){
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#if DEBUG >= 3
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fprintf(stderr, "Going into background mode...\n");
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#endif
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daemon(1, 0);
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}
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