mirror of https://github.com/Icinga/icinga2.git
336 lines
10 KiB
C++
336 lines
10 KiB
C++
/******************************************************************************
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* Icinga 2 *
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* Copyright (C) 2012-2015 Icinga Development Team (http://www.icinga.org) *
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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 <Windows.h>
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#include <Shlwapi.h>
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#include <tlhelp32.h>
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#include <iostream>
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#include "check_procs.h"
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#define VERSION 1.0
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namespace po = boost::program_options;
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static BOOL debug = FALSE;
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INT wmain(INT argc, WCHAR **argv)
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{
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po::variables_map vm;
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printInfoStruct printInfo = { };
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INT r = parseArguments(argc, argv, vm, printInfo);
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if (r != -1)
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return r;
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if(!printInfo.user.empty())
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return printOutput(countProcs(printInfo.user), printInfo);
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return printOutput(countProcs(), printInfo);
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}
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INT parseArguments(INT ac, WCHAR **av, po::variables_map& vm, printInfoStruct& printInfo)
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{
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WCHAR namePath[MAX_PATH];
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GetModuleFileName(NULL, namePath, MAX_PATH);
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WCHAR *progName = PathFindFileName(namePath);
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po::options_description desc;
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desc.add_options()
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("help,h", "Print help message and exit")
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("version,V", "Print version and exit")
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("debug,d", "Verbose/Debug output")
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("user,u", po::wvalue<std::wstring>(), "Count only processes of user")
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("warning,w", po::wvalue<std::wstring>(), "Warning threshold")
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("critical,c", po::wvalue<std::wstring>(), "Critical threshold")
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;
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po::basic_command_line_parser<WCHAR> parser(ac, av);
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try {
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po::store(
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parser
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.options(desc)
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.style(
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po::command_line_style::unix_style |
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po::command_line_style::allow_long_disguise)
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.run(),
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vm);
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vm.notify();
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} catch (std::exception& e) {
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std::cout << e.what() << '\n' << desc << '\n';
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return 3;
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}
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if (vm.count("help")) {
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std::wcout << progName << " Help\n\tVersion: " << VERSION << '\n';
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wprintf(
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L"%s is a simple program to check a machines processes.\n"
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L"You can use the following options to define its behaviour:\n\n", progName);
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std::cout << desc;
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wprintf(
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L"\nIt will then output a string looking something like this:\n\n"
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L"\tPROCS WARNING 67 | load=67;50;90;0\n\n"
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L"\"PROCS\" being the type of the check, \"WARNING\" the returned status\n"
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L"and \"67\" is the returned value.\n"
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L"The performance data is found behind the \"|\", in order:\n"
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L"returned value, warning threshold, critical threshold, minimal value and,\n"
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L"if applicable, the maximal value. Performance data will only be displayed when\n"
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L"you set at least one threshold\n\n"
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L"For \"-user\" option keep in mind you need root to see other users processes\n\n"
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L"%s' exit codes denote the following:\n"
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L" 0\tOK,\n\tNo Thresholds were broken or the programs check part was not executed\n"
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L" 1\tWARNING,\n\tThe warning, but not the critical threshold was broken\n"
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L" 2\tCRITICAL,\n\tThe critical threshold was broken\n"
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L" 3\tUNKNOWN, \n\tThe program experienced an internal or input error\n\n"
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L"Threshold syntax:\n\n"
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L"-w THRESHOLD\n"
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L"warn if threshold is broken, which means VALUE > THRESHOLD\n"
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L"(unless stated differently)\n\n"
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L"-w !THRESHOLD\n"
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L"inverts threshold check, VALUE < THRESHOLD (analogous to above)\n\n"
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L"-w [THR1-THR2]\n"
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L"warn is VALUE is inside the range spanned by THR1 and THR2\n\n"
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L"-w ![THR1-THR2]\n"
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L"warn if VALUE is outside the range spanned by THR1 and THR2\n\n"
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L"-w THRESHOLD%%\n"
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L"if the plugin accepts percentage based thresholds those will be used.\n"
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L"Does nothing if the plugin does not accept percentages, or only uses\n"
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L"percentage thresholds. Ranges can be used with \"%%\", but both range values need\n"
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L"to end with a percentage sign.\n\n"
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L"All of these options work with the critical threshold \"-c\" too."
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, progName);
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std::cout << '\n';
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return 0;
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}
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if (vm.count("version")) {
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std::wcout << "Version: " << VERSION << '\n';
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return 0;
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}
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if (vm.count("warning")) {
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try {
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printInfo.warn = threshold(vm["warning"].as<std::wstring>());
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} catch (std::invalid_argument& e) {
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std::cout << e.what() << '\n';
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return 3;
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}
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}
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if (vm.count("critical")) {
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try {
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printInfo.crit = threshold(vm["critical"].as<std::wstring>());
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} catch (std::invalid_argument& e) {
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std::cout << e.what() << '\n';
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return 3;
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}
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}
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if (vm.count("user"))
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printInfo.user = vm["user"].as<std::wstring>();
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if (vm.count("debug"))
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debug = TRUE;
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return -1;
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}
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INT printOutput(CONST INT numProcs, printInfoStruct& printInfo)
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{
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if (debug)
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std::wcout << L"Constructing output string" << '\n';
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state state = OK;
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if (printInfo.warn.rend(numProcs))
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state = WARNING;
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if (printInfo.crit.rend(numProcs))
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state = CRITICAL;
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std::wstring user = L"";
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if (!printInfo.user.empty())
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user.append(L" processes of user ").append(printInfo.user);
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switch (state) {
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case OK:
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std::wcout << L"PROCS OK " << numProcs << user << L" | procs=" << numProcs << L";"
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<< printInfo.warn.pString() << L";" << printInfo.crit.pString() << L";0;" << '\n';
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break;
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case WARNING:
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std::wcout << L"PROCS WARNING " << numProcs << user << L" | procs=" << numProcs << L";"
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<< printInfo.warn.pString() << L";" << printInfo.crit.pString() << L";0;" << '\n';
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break;
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case CRITICAL:
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std::wcout << L"PROCS CRITICAL " << numProcs << user << L" | procs=" << numProcs << L";"
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<< printInfo.warn.pString() << L";" << printInfo.crit.pString() << L";0;" << '\n';
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break;
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}
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return state;
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}
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INT countProcs()
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{
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if (debug)
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std::wcout << L"Counting all processes" << '\n';
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HANDLE hProcessSnap = NULL;
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PROCESSENTRY32 pe32;
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if (debug)
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std::wcout << L"Creating snapshot" << '\n';
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hProcessSnap = CreateToolhelp32Snapshot(TH32CS_SNAPPROCESS, 0);
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if (hProcessSnap == INVALID_HANDLE_VALUE)
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return -1;
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pe32.dwSize = sizeof(PROCESSENTRY32);
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if (debug)
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std::wcout << L"Grabbing first proccess" << '\n';
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if (!Process32First(hProcessSnap, &pe32)) {
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CloseHandle(hProcessSnap);
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return -1;
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}
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INT numProcs = 0;
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if (debug)
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std::wcout << L"Counting processes..." << '\n';
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do {
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++numProcs;
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} while (Process32Next(hProcessSnap, &pe32));
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if (debug)
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std::wcout << L"Found " << numProcs << L" processes. Cleaning up udn returning" << '\n';
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if (hProcessSnap)
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CloseHandle(hProcessSnap);
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return numProcs;
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}
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INT countProcs(CONST std::wstring user)
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{
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if (debug)
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std::wcout << L"Counting all processes of user" << user << '\n';
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CONST WCHAR *wuser = user.c_str();
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INT numProcs = 0;
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HANDLE hProcessSnap, hProcess = NULL, hToken = NULL;
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PROCESSENTRY32 pe32;
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DWORD dwReturnLength, dwAcctName, dwDomainName;
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PTOKEN_USER pSIDTokenUser = NULL;
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SID_NAME_USE sidNameUse;
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LPWSTR AcctName, DomainName;
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if (debug)
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std::wcout << L"Creating snapshot" << '\n';
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hProcessSnap = CreateToolhelp32Snapshot(TH32CS_SNAPPROCESS, 0);
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if (hProcessSnap == INVALID_HANDLE_VALUE)
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goto die;
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pe32.dwSize = sizeof(PROCESSENTRY32);
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if (debug)
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std::wcout << L"Grabbing first proccess" << '\n';
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if (!Process32First(hProcessSnap, &pe32))
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goto die;
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if (debug)
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std::wcout << L"Counting processes..." << '\n';
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do {
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if (debug)
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std::wcout << L"Getting process token" << '\n';
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//get ProcessToken
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hProcess = OpenProcess(PROCESS_QUERY_INFORMATION, FALSE, pe32.th32ProcessID);
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if (!OpenProcessToken(hProcess, TOKEN_QUERY, &hToken))
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//Won't count pid 0 (system idle) and 4/8 (Sytem)
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continue;
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//Get dwReturnLength in first call
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dwReturnLength = 1;
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if (!GetTokenInformation(hToken, TokenUser, NULL, 0, &dwReturnLength)
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&& GetLastError() != ERROR_INSUFFICIENT_BUFFER)
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continue;
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pSIDTokenUser = reinterpret_cast<PTOKEN_USER>(new BYTE[dwReturnLength]);
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memset(pSIDTokenUser, 0, dwReturnLength);
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if (debug)
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std::wcout << L"Received token, saving information" << '\n';
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//write Info in pSIDTokenUser
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if (!GetTokenInformation(hToken, TokenUser, pSIDTokenUser, dwReturnLength, NULL))
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continue;
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AcctName = NULL;
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DomainName = NULL;
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dwAcctName = 1;
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dwDomainName = 1;
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if (debug)
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std::wcout << L"Looking up SID" << '\n';
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//get dwAcctName and dwDomainName size
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if (!LookupAccountSid(NULL, pSIDTokenUser->User.Sid, AcctName,
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(LPDWORD)&dwAcctName, DomainName, (LPDWORD)&dwDomainName, &sidNameUse)
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&& GetLastError() != ERROR_INSUFFICIENT_BUFFER)
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continue;
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AcctName = reinterpret_cast<LPWSTR>(new WCHAR[dwAcctName]);
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DomainName = reinterpret_cast<LPWSTR>(new WCHAR[dwDomainName]);
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if (!LookupAccountSid(NULL, pSIDTokenUser->User.Sid, AcctName,
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(LPDWORD)&dwAcctName, DomainName, (LPDWORD)&dwDomainName, &sidNameUse))
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continue;
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if (debug)
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std::wcout << L"Comparing " << AcctName << L" to " << wuser << '\n';
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if (!wcscmp(AcctName, wuser)) {
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++numProcs;
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if (debug)
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std::wcout << L"Is process of " << wuser << L" (" << numProcs << L")" << '\n';
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}
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delete[] reinterpret_cast<LPWSTR>(AcctName);
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delete[] reinterpret_cast<LPWSTR>(DomainName);
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} while (Process32Next(hProcessSnap, &pe32));
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die:
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if (hProcessSnap)
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CloseHandle(hProcessSnap);
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if (hProcess)
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CloseHandle(hProcess);
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if (hToken)
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CloseHandle(hToken);
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if (pSIDTokenUser)
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delete[] reinterpret_cast<PTOKEN_USER>(pSIDTokenUser);
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return numProcs;
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}
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