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[mutilities/MUtilities.git] / src / OSSupport_Win32.cpp
1 ///////////////////////////////////////////////////////////////////////////////
2 // MuldeR's Utilities for Qt
3 // Copyright (C) 2004-2016 LoRd_MuldeR <MuldeR2@GMX.de>
4 //
5 // This library is free software; you can redistribute it and/or
6 // modify it under the terms of the GNU Lesser General Public
7 // License as published by the Free Software Foundation; either
8 // version 2.1 of the License, or (at your option) any later version.
9 //
10 // This library is distributed in the hope that it will be useful,
11 // but WITHOUT ANY WARRANTY; without even the implied warranty of
12 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13 // Lesser General Public License for more details.
14 //
15 // You should have received a copy of the GNU Lesser General Public
16 // License along with this library; if not, write to the Free Software
17 // Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA
18 //
19 // http://www.gnu.org/licenses/lgpl-2.1.txt
20 //////////////////////////////////////////////////////////////////////////////////
21
22 //Win32 API
23 #define WIN32_LEAN_AND_MEAN 1
24 #include <Windows.h>
25 #include <Psapi.h>
26 #include <Sensapi.h>
27 #include <Shellapi.h>
28 #include <PowrProf.h>
29 #include <Mmsystem.h>
30 #pragma warning(push)
31 #pragma warning(disable:4091) //for MSVC2015
32 #include <ShlObj.h>
33 #pragma warning(pop)
34
35 //CRT
36 #include <io.h>
37
38 //Internal
39 #include <MUtils/Global.h>
40 #include <MUtils/OSSupport.h>
41 #include <MUtils/GUI.h>
42 #include "CriticalSection_Win32.h"
43 #include "Utils_Win32.h"
44
45 //Qt
46 #include <QMap>
47 #include <QReadWriteLock>
48 #include <QDir>
49 #include <QWidget>
50 #include <QProcess>
51
52 //Main thread ID
53 static const DWORD g_main_thread_id = GetCurrentThreadId();
54
55 ///////////////////////////////////////////////////////////////////////////////
56 // SYSTEM MESSAGE
57 ///////////////////////////////////////////////////////////////////////////////
58
59 static const UINT g_msgBoxFlags = MB_TOPMOST | MB_TASKMODAL | MB_SETFOREGROUND;
60
61 void MUtils::OS::system_message_nfo(const wchar_t *const title, const wchar_t *const text)
62 {
63         MessageBoxW(NULL, text, title, g_msgBoxFlags | MB_ICONINFORMATION);
64 }
65
66 void MUtils::OS::system_message_wrn(const wchar_t *const title, const wchar_t *const text)
67 {
68         MessageBoxW(NULL, text, title, g_msgBoxFlags | MB_ICONWARNING);
69 }
70
71 void MUtils::OS::system_message_err(const wchar_t *const title, const wchar_t *const text)
72 {
73         MessageBoxW(NULL, text, title, g_msgBoxFlags | MB_ICONERROR);
74 }
75
76 ///////////////////////////////////////////////////////////////////////////////
77 // FETCH CLI ARGUMENTS
78 ///////////////////////////////////////////////////////////////////////////////
79
80 static QReadWriteLock                          g_arguments_lock;
81 static QScopedPointer<MUtils::OS::ArgumentMap> g_arguments_list;
82
83 const QStringList MUtils::OS::crack_command_line(const QString &command_line)
84 {
85         int nArgs = 0;
86         LPWSTR *szArglist = CommandLineToArgvW(command_line.isNull() ? GetCommandLineW() : MUTILS_WCHR(command_line), &nArgs);
87
88         QStringList command_line_tokens;
89         if(NULL != szArglist)
90         {
91                 for(int i = 0; i < nArgs; i++)
92                 {
93                         const QString argStr = MUTILS_QSTR(szArglist[i]).trimmed();
94                         if(!argStr.isEmpty())
95                         {
96                                 command_line_tokens << argStr;
97                         }
98                 }
99                 LocalFree(szArglist);
100         }
101
102         return command_line_tokens;
103 }
104
105 const MUtils::OS::ArgumentMap &MUtils::OS::arguments(void)
106 {
107         QReadLocker readLock(&g_arguments_lock);
108
109         //Already initialized?
110         if(!g_arguments_list.isNull())
111         {
112                 return (*(g_arguments_list.data()));
113         }
114
115         readLock.unlock();
116         QWriteLocker writeLock(&g_arguments_lock);
117
118         //Still not initialized?
119         if(!g_arguments_list.isNull())
120         {
121                 return (*(g_arguments_list.data()));
122         }
123
124         g_arguments_list.reset(new ArgumentMap());
125         const QStringList argList = crack_command_line();
126
127         if(!argList.isEmpty())
128         {
129                 const QString argPrefix = QLatin1String("--");
130                 const QChar   separator = QLatin1Char('=');
131
132                 bool firstToken = true;
133                 for(QStringList::ConstIterator iter = argList.constBegin(); iter != argList.constEnd(); iter++)
134                 {
135                         if(firstToken)
136                         {
137                                 firstToken = false;
138                                 continue; /*skip executable file name*/
139                         }
140                         if(iter->startsWith(argPrefix))
141                         {
142                                 const QString argData = iter->mid(2).trimmed();
143                                 if(argData.length() > 0)
144                                 {
145                                         const int separatorIndex = argData.indexOf(separator);
146                                         if(separatorIndex > 0)
147                                         {
148                                                 const QString argKey = argData.left(separatorIndex).trimmed();
149                                                 const QString argVal = argData.mid(separatorIndex + 1).trimmed();
150                                                 g_arguments_list->insertMulti(argKey.toLower(), argVal);
151                                         }
152                                         else
153                                         {
154                                                 g_arguments_list->insertMulti(argData.toLower(), QString());
155                                         }
156                                 }
157                         }
158                 }
159         }
160         else if(argList.empty())
161         {
162                 qWarning("CommandLineToArgvW() has failed !!!");
163         }
164
165         return (*(g_arguments_list.data()));
166 }
167
168 ///////////////////////////////////////////////////////////////////////////////
169 // COPY FILE
170 ///////////////////////////////////////////////////////////////////////////////
171
172 typedef struct _progress_callback_data_t
173 {
174         MUtils::OS::progress_callback_t callback_function;
175         void *user_data;
176 }
177 progress_callback_data_t;
178
179 static DWORD __stdcall copy_file_progress(LARGE_INTEGER TotalFileSize, LARGE_INTEGER TotalBytesTransferred, LARGE_INTEGER StreamSize, LARGE_INTEGER StreamBytesTransferred, DWORD dwStreamNumber, DWORD dwCallbackReason, HANDLE hSourceFile, HANDLE hDestinationFile, LPVOID lpData)
180 {
181         if(const progress_callback_data_t *data = (progress_callback_data_t*) lpData)
182         {
183                 const double progress = qBound(0.0, double(TotalBytesTransferred.QuadPart) / double(TotalFileSize.QuadPart), 1.0);
184                 return data->callback_function(progress, data->user_data) ? PROGRESS_CONTINUE : PROGRESS_CANCEL;
185         }
186         return PROGRESS_CONTINUE;
187 }
188
189 MUTILS_API bool MUtils::OS::copy_file(const QString &sourcePath, const QString &outputPath, const bool &overwrite, const progress_callback_t callback, void *const userData)
190 {
191         progress_callback_data_t callback_data = { callback, userData };
192         BOOL cancel = FALSE;
193         const BOOL result = CopyFileExW(MUTILS_WCHR(QDir::toNativeSeparators(sourcePath)), MUTILS_WCHR(QDir::toNativeSeparators(outputPath)), ((callback_data.callback_function) ? copy_file_progress : NULL), ((callback_data.callback_function) ? &callback_data : NULL), &cancel, (overwrite ? 0 : COPY_FILE_FAIL_IF_EXISTS));
194
195         if(result == FALSE)
196         {
197                 const DWORD errorCode = GetLastError();
198                 if(errorCode != ERROR_REQUEST_ABORTED)
199                 {
200                         qWarning("CopyFile() failed with error code 0x%08X!", errorCode);
201                 }
202                 else
203                 {
204                         qWarning("CopyFile() operation was abroted by user!");
205                 }
206         }
207
208         return (result != FALSE);
209 }
210
211 ///////////////////////////////////////////////////////////////////////////////
212 // GET FILE VERSION
213 ///////////////////////////////////////////////////////////////////////////////
214
215 static bool get_file_version_helper(const QString fileName, PVOID buffer, const size_t &size, quint16 *const major, quint16 *const minor, quint16 *const patch, quint16 *const build)
216 {
217         if(!GetFileVersionInfo(MUTILS_WCHR(fileName), 0, size, buffer))
218         {
219                 qWarning("GetFileVersionInfo() has failed, file version cannot be determined!");
220                 return false;
221         }
222
223         VS_FIXEDFILEINFO *verInfo;
224         UINT verInfoLen;
225         if(!VerQueryValue(buffer, L"\\", (LPVOID*)(&verInfo), &verInfoLen))
226         {
227                 qWarning("VerQueryValue() has failed, file version cannot be determined!");
228                 return false;
229         }
230
231         if(major) *major = quint16((verInfo->dwFileVersionMS >> 16) & 0x0000FFFF);
232         if(minor) *minor = quint16((verInfo->dwFileVersionMS)       & 0x0000FFFF);
233         if(patch) *patch = quint16((verInfo->dwFileVersionLS >> 16) & 0x0000FFFF);
234         if(build) *build = quint16((verInfo->dwFileVersionLS)       & 0x0000FFFF);
235
236         return true;
237 }
238
239 bool MUtils::OS::get_file_version(const QString fileName, quint16 *const major, quint16 *const minor, quint16 *const patch, quint16 *const build)
240 {
241         if(major) *major = 0U; if(minor) *minor = 0U;
242         if(patch) *patch = 0U; if(build) *build = 0U;
243
244         const DWORD size = GetFileVersionInfoSize(MUTILS_WCHR(fileName), NULL);
245         if(size < 1)
246         {
247                 qWarning("GetFileVersionInfoSize() has failed, file version cannot be determined!");
248                 return false;
249         }
250         
251         PVOID buffer = _malloca(size);
252         if(!buffer)
253         {
254                 qWarning("Memory allocation has failed!");
255                 return false;
256         }
257
258         const bool success = get_file_version_helper(fileName, buffer, size, major, minor, patch, build);
259
260         _freea(buffer);
261         return success;
262 }
263
264 ///////////////////////////////////////////////////////////////////////////////
265 // OS VERSION DETECTION
266 ///////////////////////////////////////////////////////////////////////////////
267
268 static bool g_os_version_initialized = false;
269 static MUtils::OS::Version::os_version_t g_os_version_info = MUtils::OS::Version::UNKNOWN_OPSYS;
270 static QReadWriteLock g_os_version_lock;
271
272 //Maps marketing names to the actual Windows NT versions
273 static const struct
274 {
275         MUtils::OS::Version::os_version_t version;
276         const char friendlyName[64];
277 }
278 g_os_version_lut[] =
279 {
280         { MUtils::OS::Version::WINDOWS_WIN2K, "Windows 2000"                                  },        //2000
281         { MUtils::OS::Version::WINDOWS_WINXP, "Windows XP or Windows XP Media Center Edition" },        //XP
282         { MUtils::OS::Version::WINDOWS_XPX64, "Windows Server 2003 or Windows XP x64"         },        //XP_x64
283         { MUtils::OS::Version::WINDOWS_VISTA, "Windows Vista or Windows Server 2008"          },        //Vista
284         { MUtils::OS::Version::WINDOWS_WIN70, "Windows 7 or Windows Server 2008 R2"           },        //7
285         { MUtils::OS::Version::WINDOWS_WIN80, "Windows 8 or Windows Server 2012"              },        //8
286         { MUtils::OS::Version::WINDOWS_WIN81, "Windows 8.1 or Windows Server 2012 R2"         },        //8.1
287         { MUtils::OS::Version::WINDOWS_WN100, "Windows 10 or Windows Server 2014 (Preview)"   },        //10
288         { MUtils::OS::Version::UNKNOWN_OPSYS, "N/A" }
289 };
290
291 //OS version data dtructures
292 namespace MUtils
293 {
294         namespace OS
295         {
296                 namespace Version
297                 {
298                         //Comparision operators for os_version_t
299                         bool os_version_t::operator== (const os_version_t &rhs) const { return (type == rhs.type) && (versionMajor == rhs.versionMajor) && ((versionMinor == rhs.versionMinor)); }
300                         bool os_version_t::operator!= (const os_version_t &rhs) const { return (type != rhs.type) || (versionMajor != rhs.versionMajor) || ((versionMinor != rhs.versionMinor)); }
301                         bool os_version_t::operator>  (const os_version_t &rhs) const { return (type == rhs.type) && ((versionMajor > rhs.versionMajor) || ((versionMajor == rhs.versionMajor) && (versionMinor >  rhs.versionMinor))); }
302                         bool os_version_t::operator>= (const os_version_t &rhs) const { return (type == rhs.type) && ((versionMajor > rhs.versionMajor) || ((versionMajor == rhs.versionMajor) && (versionMinor >= rhs.versionMinor))); }
303                         bool os_version_t::operator<  (const os_version_t &rhs) const { return (type == rhs.type) && ((versionMajor < rhs.versionMajor) || ((versionMajor == rhs.versionMajor) && (versionMinor <  rhs.versionMinor))); }
304                         bool os_version_t::operator<= (const os_version_t &rhs) const { return (type == rhs.type) && ((versionMajor < rhs.versionMajor) || ((versionMajor == rhs.versionMajor) && (versionMinor <= rhs.versionMinor))); }
305
306                         //Known Windows NT versions
307                         const os_version_t WINDOWS_WIN2K = { OS_WINDOWS,  5, 0 };       // 2000
308                         const os_version_t WINDOWS_WINXP = { OS_WINDOWS,  5, 1 };       // XP
309                         const os_version_t WINDOWS_XPX64 = { OS_WINDOWS,  5, 2 };       // XP_x64
310                         const os_version_t WINDOWS_VISTA = { OS_WINDOWS,  6, 0 };       // Vista
311                         const os_version_t WINDOWS_WIN70 = { OS_WINDOWS,  6, 1 };       // 7
312                         const os_version_t WINDOWS_WIN80 = { OS_WINDOWS,  6, 2 };       // 8
313                         const os_version_t WINDOWS_WIN81 = { OS_WINDOWS,  6, 3 };       // 8.1
314                         const os_version_t WINDOWS_WN100 = { OS_WINDOWS, 10, 0 };       // 10
315
316                         //Unknown OS
317                         const os_version_t UNKNOWN_OPSYS = { OS_UNKNOWN, 0, 0 };        // N/A
318                 }
319         }
320 }
321
322 static bool verify_os_version(const DWORD major, const DWORD minor)
323 {
324         OSVERSIONINFOEXW osvi;
325         DWORDLONG dwlConditionMask = 0;
326
327         //Initialize the OSVERSIONINFOEX structure
328         memset(&osvi, 0, sizeof(OSVERSIONINFOEXW));
329         osvi.dwOSVersionInfoSize = sizeof(OSVERSIONINFOEXW);
330         osvi.dwMajorVersion = major;
331         osvi.dwMinorVersion = minor;
332         osvi.dwPlatformId = VER_PLATFORM_WIN32_NT;
333
334         //Initialize the condition mask
335         VER_SET_CONDITION(dwlConditionMask, VER_MAJORVERSION, VER_GREATER_EQUAL);
336         VER_SET_CONDITION(dwlConditionMask, VER_MINORVERSION, VER_GREATER_EQUAL);
337         VER_SET_CONDITION(dwlConditionMask, VER_PLATFORMID,   VER_EQUAL);
338
339         // Perform the test
340         const BOOL ret = VerifyVersionInfoW(&osvi, VER_MAJORVERSION | VER_MINORVERSION | VER_PLATFORMID, dwlConditionMask);
341
342         //Error checking
343         if(!ret)
344         {
345                 if(GetLastError() != ERROR_OLD_WIN_VERSION)
346                 {
347                         qWarning("VerifyVersionInfo() system call has failed!");
348                 }
349         }
350
351         return (ret != FALSE);
352 }
353
354 static bool get_real_os_version(unsigned int *major, unsigned int *minor, bool *pbOverride)
355 {
356         *major = *minor = 0;
357         *pbOverride = false;
358         
359         //Initialize local variables
360         OSVERSIONINFOEXW osvi;
361         memset(&osvi, 0, sizeof(OSVERSIONINFOEXW));
362         osvi.dwOSVersionInfoSize = sizeof(OSVERSIONINFOEXW);
363
364         //Try GetVersionEx() first
365         if(GetVersionExW((LPOSVERSIONINFOW)&osvi) == FALSE)
366         {
367                 qWarning("GetVersionEx() has failed, cannot detect Windows version!");
368                 return false;
369         }
370
371         //Make sure we are running on NT
372         if(osvi.dwPlatformId == VER_PLATFORM_WIN32_NT)
373         {
374                 *major = osvi.dwMajorVersion;
375                 *minor = osvi.dwMinorVersion;
376         }
377         else
378         {
379                 qWarning("Not running on Windows NT, unsupported operating system!");
380                 return false;
381         }
382
383         //Determine the real *major* version first
384         forever
385         {
386                 const DWORD nextMajor = (*major) + 1;
387                 if(verify_os_version(nextMajor, 0))
388                 {
389                         *pbOverride = true;
390                         *major = nextMajor;
391                         *minor = 0;
392                         continue;
393                 }
394                 break;
395         }
396
397         //Now also determine the real *minor* version
398         forever
399         {
400                 const DWORD nextMinor = (*minor) + 1;
401                 if(verify_os_version((*major), nextMinor))
402                 {
403                         *pbOverride = true;
404                         *minor = nextMinor;
405                         continue;
406                 }
407                 break;
408         }
409
410         //Workaround for the mess that is sometimes referred to as "Windows 10"
411         if(((*major) > 6) || (((*major) == 6) && ((*minor) >= 2)))
412         {
413                 quint16 kernel32_major, kernel32_minor;
414                 if(MUtils::OS::get_file_version(QLatin1String("kernel32"), &kernel32_major, &kernel32_minor))
415                 {
416                         if((kernel32_major > (*major)) || ((kernel32_major == (*major)) && (kernel32_minor > (*minor))))
417                         {
418                                 *major = kernel32_major;
419                                 *minor = kernel32_minor;
420                                 *pbOverride = true;
421                         }
422                 }
423         }
424
425         return true;
426 }
427
428 const MUtils::OS::Version::os_version_t &MUtils::OS::os_version(void)
429 {
430         QReadLocker readLock(&g_os_version_lock);
431
432         //Already initialized?
433         if(g_os_version_initialized)
434         {
435                 return g_os_version_info;
436         }
437         
438         readLock.unlock();
439         QWriteLocker writeLock(&g_os_version_lock);
440
441         //Initialized now?
442         if(g_os_version_initialized)
443         {
444                 return g_os_version_info;
445         }
446
447         //Detect OS version
448         unsigned int major, minor; bool overrideFlg;
449         if(get_real_os_version(&major, &minor, &overrideFlg))
450         {
451                 g_os_version_info.type = Version::OS_WINDOWS;
452                 g_os_version_info.versionMajor = major;
453                 g_os_version_info.versionMinor = minor;
454                 g_os_version_info.overrideFlag = overrideFlg;
455         }
456         else
457         {
458                 qWarning("Failed to determin the operating system version!");
459         }
460
461         //Completed
462         g_os_version_initialized = true;
463         return g_os_version_info;
464 }
465
466 const char *MUtils::OS::os_friendly_name(const MUtils::OS::Version::os_version_t &os_version)
467 {
468         for(size_t i = 0; g_os_version_lut[i].version != MUtils::OS::Version::UNKNOWN_OPSYS; i++)
469         {
470                 if(os_version == g_os_version_lut[i].version)
471                 {
472                         return g_os_version_lut[i].friendlyName;
473                 }
474         }
475
476         return NULL;
477 }
478
479 ///////////////////////////////////////////////////////////////////////////////
480 // WINE DETECTION
481 ///////////////////////////////////////////////////////////////////////////////
482
483 static bool g_wine_deteced = false;
484 static bool g_wine_initialized = false;
485 static QReadWriteLock g_wine_lock;
486
487 static const bool detect_wine(void)
488 {
489         void *const ptr = MUtils::Win32Utils::resolve<void*>(QLatin1String("ntdll"), QLatin1String("wine_get_version"));
490         return (ptr != NULL);
491 }
492
493 const bool &MUtils::OS::running_on_wine(void)
494 {
495         QReadLocker readLock(&g_wine_lock);
496
497         //Already initialized?
498         if(g_wine_initialized)
499         {
500                 return g_wine_deteced;
501         }
502
503         readLock.unlock();
504         QWriteLocker writeLock(&g_wine_lock);
505
506         //Initialized now?
507         if(g_wine_initialized)
508         {
509                 return g_wine_deteced;
510         }
511
512         //Try to detect Wine
513         g_wine_deteced = detect_wine();
514         g_wine_initialized = true;
515
516         return g_wine_deteced;
517 }
518
519 ///////////////////////////////////////////////////////////////////////////////
520 // KNWON FOLDERS
521 ///////////////////////////////////////////////////////////////////////////////
522
523 typedef QMap<size_t, QString> KFMap;
524 typedef HRESULT (WINAPI *SHGetKnownFolderPath_t)(const GUID &rfid, DWORD dwFlags, HANDLE hToken, PWSTR *ppszPath);
525 typedef HRESULT (WINAPI *SHGetFolderPath_t)     (HWND hwndOwner, int nFolder, HANDLE hToken, DWORD dwFlags, LPWSTR pszPath);
526
527 static QScopedPointer<KFMap>  g_known_folders_map;
528 static QReadWriteLock         g_known_folders_lock;
529
530 const QString &MUtils::OS::known_folder(known_folder_t folder_id)
531 {
532         typedef enum { KF_FLAG_CREATE = 0x00008000 } kf_flags_t;
533         
534         struct
535         {
536                 const int csidl;
537                 const GUID guid;
538         }
539         static s_folders[] =
540         {
541                 { 0x001c, {0xF1B32785,0x6FBA,0x4FCF,{0x9D,0x55,0x7B,0x8E,0x7F,0x15,0x70,0x91}} },  //CSIDL_LOCAL_APPDATA
542                 { 0x0026, {0x905e63b6,0xc1bf,0x494e,{0xb2,0x9c,0x65,0xb7,0x32,0xd3,0xd2,0x1a}} },  //CSIDL_PROGRAM_FILES
543                 { 0x0024, {0xF38BF404,0x1D43,0x42F2,{0x93,0x05,0x67,0xDE,0x0B,0x28,0xFC,0x23}} },  //CSIDL_WINDOWS_FOLDER
544                 { 0x0025, {0x1AC14E77,0x02E7,0x4E5D,{0xB7,0x44,0x2E,0xB1,0xAE,0x51,0x98,0xB7}} },  //CSIDL_SYSTEM_FOLDER
545         };
546
547         size_t folderId = size_t(-1);
548
549         switch(folder_id)
550         {
551                 case FOLDER_LOCALAPPDATA: folderId = 0; break;
552                 case FOLDER_PROGRAMFILES: folderId = 1; break;
553                 case FOLDER_SYSTROOT_DIR: folderId = 2; break;
554                 case FOLDER_SYSTEMFOLDER: folderId = 3; break;
555         }
556
557         if(folderId == size_t(-1))
558         {
559                 qWarning("Invalid 'known' folder was requested!");
560                 return *reinterpret_cast<QString*>(NULL);
561         }
562
563         QReadLocker readLock(&g_known_folders_lock);
564
565         //Already in cache?
566         if(!g_known_folders_map.isNull())
567         {
568                 if(g_known_folders_map->contains(folderId))
569                 {
570                         return g_known_folders_map->operator[](folderId);
571                 }
572         }
573
574         //Obtain write lock to initialize
575         readLock.unlock();
576         QWriteLocker writeLock(&g_known_folders_lock);
577
578         //Still not in cache?
579         if(!g_known_folders_map.isNull())
580         {
581                 if(g_known_folders_map->contains(folderId))
582                 {
583                         return g_known_folders_map->operator[](folderId);
584                 }
585         }
586
587         //Initialize on first call
588         if(g_known_folders_map.isNull())
589         {
590                 g_known_folders_map.reset(new QMap<size_t, QString>());
591         }
592
593         QString folderPath;
594
595         //Now try to get the folder path!
596         if(const SHGetKnownFolderPath_t known_folders_fpGetKnownFolderPath = MUtils::Win32Utils::resolve<SHGetKnownFolderPath_t>(QLatin1String("shell32"), QLatin1String("SHGetKnownFolderPath")))
597         {
598                 WCHAR *path = NULL;
599                 if(known_folders_fpGetKnownFolderPath(s_folders[folderId].guid, KF_FLAG_CREATE, NULL, &path) == S_OK)
600                 {
601                         //MessageBoxW(0, path, L"SHGetKnownFolderPath", MB_TOPMOST);
602                         QDir folderTemp = QDir(QDir::fromNativeSeparators(MUTILS_QSTR(path)));
603                         if(folderTemp.exists())
604                         {
605                                 folderPath = folderTemp.canonicalPath();
606                         }
607                         CoTaskMemFree(path);
608                 }
609         }
610         else if(const SHGetFolderPath_t known_folders_fpGetFolderPath = MUtils::Win32Utils::resolve<SHGetFolderPath_t>(QLatin1String("shell32"), QLatin1String("SHGetFolderPathW")))
611         {
612                 QScopedArrayPointer<WCHAR> path(new WCHAR[4096]);
613                 if(known_folders_fpGetFolderPath(NULL, s_folders[folderId].csidl | CSIDL_FLAG_CREATE, NULL, NULL, path.data()) == S_OK)
614                 {
615                         //MessageBoxW(0, path, L"SHGetFolderPathW", MB_TOPMOST);
616                         QDir folderTemp = QDir(QDir::fromNativeSeparators(MUTILS_QSTR(path.data())));
617                         if(folderTemp.exists())
618                         {
619                                 folderPath = folderTemp.canonicalPath();
620                         }
621                 }
622         }
623
624         //Update cache
625         g_known_folders_map->insert(folderId, folderPath);
626         return g_known_folders_map->operator[](folderId);
627 }
628
629 ///////////////////////////////////////////////////////////////////////////////
630 // CURRENT DATA & TIME
631 ///////////////////////////////////////////////////////////////////////////////
632
633 QDate MUtils::OS::current_date(void)
634 {
635         const DWORD MAX_PROC = 1024;
636         QScopedArrayPointer<DWORD> processes(new DWORD[MAX_PROC]);
637         DWORD bytesReturned = 0;
638         
639         if(!EnumProcesses(processes.data(), sizeof(DWORD) * MAX_PROC, &bytesReturned))
640         {
641                 return QDate::currentDate();
642         }
643
644         const DWORD procCount = bytesReturned / sizeof(DWORD);
645         ULARGE_INTEGER lastStartTime;
646         memset(&lastStartTime, 0, sizeof(ULARGE_INTEGER));
647
648         for(DWORD i = 0; i < procCount; i++)
649         {
650                 if(HANDLE hProc = OpenProcess(PROCESS_QUERY_INFORMATION, FALSE, processes[i]))
651                 {
652                         FILETIME processTime[4];
653                         if(GetProcessTimes(hProc, &processTime[0], &processTime[1], &processTime[2], &processTime[3]))
654                         {
655                                 ULARGE_INTEGER timeCreation;
656                                 timeCreation.LowPart  = processTime[0].dwLowDateTime;
657                                 timeCreation.HighPart = processTime[0].dwHighDateTime;
658                                 if(timeCreation.QuadPart > lastStartTime.QuadPart)
659                                 {
660                                         lastStartTime.QuadPart = timeCreation.QuadPart;
661                                 }
662                         }
663                         CloseHandle(hProc);
664                 }
665         }
666         
667         FILETIME lastStartTime_fileTime;
668         lastStartTime_fileTime.dwHighDateTime = lastStartTime.HighPart;
669         lastStartTime_fileTime.dwLowDateTime  = lastStartTime.LowPart;
670
671         FILETIME lastStartTime_localTime;
672         if(!FileTimeToLocalFileTime(&lastStartTime_fileTime, &lastStartTime_localTime))
673         {
674                 memcpy(&lastStartTime_localTime, &lastStartTime_fileTime, sizeof(FILETIME));
675         }
676         
677         SYSTEMTIME lastStartTime_system;
678         if(!FileTimeToSystemTime(&lastStartTime_localTime, &lastStartTime_system))
679         {
680                 memset(&lastStartTime_system, 0, sizeof(SYSTEMTIME));
681                 lastStartTime_system.wYear = 1970; lastStartTime_system.wMonth = lastStartTime_system.wDay = 1;
682         }
683
684         const QDate currentDate = QDate::currentDate();
685         const QDate processDate = QDate(lastStartTime_system.wYear, lastStartTime_system.wMonth, lastStartTime_system.wDay);
686         return (currentDate >= processDate) ? currentDate : processDate;
687 }
688
689 quint64 MUtils::OS::current_file_time(void)
690 {
691         FILETIME fileTime;
692         GetSystemTimeAsFileTime(&fileTime);
693
694         ULARGE_INTEGER temp;
695         temp.HighPart = fileTime.dwHighDateTime;
696         temp.LowPart = fileTime.dwLowDateTime;
697
698         return temp.QuadPart;
699 }
700
701 ///////////////////////////////////////////////////////////////////////////////
702 // FILE PATH FROM FD
703 ///////////////////////////////////////////////////////////////////////////////
704
705 typedef DWORD(_stdcall *GetPathNameByHandleFun)(HANDLE hFile, LPWSTR lpszFilePath, DWORD cchFilePath, DWORD dwFlags);
706
707 static QString get_file_path_drive_list(void)
708 {
709         QString list;
710         const DWORD len = GetLogicalDriveStringsW(0, NULL);
711         if (len > 0)
712         {
713                 if (wchar_t *const buffer = (wchar_t*) _malloca(sizeof(wchar_t) * len))
714                 {
715                         const DWORD ret = GetLogicalDriveStringsW(len, buffer);
716                         if ((ret > 0) && (ret < len))
717                         {
718                                 const wchar_t *ptr = buffer;
719                                 while (const size_t current_len = wcslen(ptr))
720                                 {
721                                         list.append(QChar(*reinterpret_cast<const ushort*>(ptr)));
722                                         ptr += (current_len + 1);
723                                 }
724                         }
725                         _freea(buffer);
726                 }
727         }
728         return list;
729 }
730
731 static void get_file_path_translate(QString &path)
732 {
733         static const DWORD BUFSIZE = 2048;
734         wchar_t buffer[BUFSIZE], drive[3];
735
736         const QString driveList = get_file_path_drive_list();
737         wcscpy_s(drive, 3, L"?:");
738         for (const wchar_t *current = MUTILS_WCHR(driveList); *current; current++)
739         {
740                 drive[0] = (*current);
741                 if (QueryDosDeviceW(drive, buffer, MAX_PATH))
742                 {
743                         const QString prefix = MUTILS_QSTR(buffer);
744                         if (path.startsWith(prefix, Qt::CaseInsensitive))
745                         {
746                                 path.remove(0, prefix.length()).prepend(QLatin1Char(':')).prepend(QChar(*reinterpret_cast<const ushort*>(current)));
747                                 break;
748                         }
749                 }
750         }
751 }
752
753 static QString get_file_path_fallback(const HANDLE &hFile)
754 {
755         QString filePath;
756
757         const HANDLE hFileMap = CreateFileMappingW(hFile, NULL, PAGE_READONLY, 0, 1, NULL);
758         if (hFileMap)
759         {
760                 void *const pMem = MapViewOfFile(hFileMap, FILE_MAP_READ, 0, 0, 1);
761                 if (pMem)
762                 {
763                         static const size_t BUFFSIZE = 2048;
764                         wchar_t buffer[BUFFSIZE];
765                         if (GetMappedFileNameW(GetCurrentProcess(), pMem, buffer, BUFFSIZE) > 0)
766                         {
767                                 filePath = MUTILS_QSTR(buffer);
768                         }
769                         UnmapViewOfFile(pMem);
770                 }
771                 CloseHandle(hFileMap);
772         }
773
774         if (!filePath.isEmpty())
775         {
776                 get_file_path_translate(filePath);
777         }
778
779         return filePath;
780 }
781
782 QString MUtils::OS::get_file_path(const int &fd)
783 {
784         if (fd >= 0)
785         {
786                 const GetPathNameByHandleFun getPathNameByHandleFun = MUtils::Win32Utils::resolve<GetPathNameByHandleFun>(QLatin1String("kernel32"), QLatin1String("GetFinalPathNameByHandleW"));
787                 if (!getPathNameByHandleFun)
788                 {
789                         return get_file_path_fallback((HANDLE)_get_osfhandle(fd));
790                 }
791
792                 const HANDLE handle = (HANDLE) _get_osfhandle(fd);
793                 const DWORD len = getPathNameByHandleFun(handle, NULL, 0, FILE_NAME_OPENED);
794                 if (len > 0)
795                 {
796                         if (wchar_t *const buffer = (wchar_t*)_malloca(sizeof(wchar_t) * len))
797                         {
798                                 const DWORD ret = getPathNameByHandleFun(handle, buffer, len, FILE_NAME_OPENED);
799                                 if ((ret > 0) && (ret < len))
800                                 {
801                                         const QString path(MUTILS_QSTR(buffer));
802                                         return path.startsWith(QLatin1String("\\\\?\\")) ? path.mid(4) : path;
803                                 }
804                                 _freea(buffer);
805                         }
806                 }
807         }
808
809         return QString();
810 }
811
812 ///////////////////////////////////////////////////////////////////////////////
813 // PROCESS ELEVATION
814 ///////////////////////////////////////////////////////////////////////////////
815
816 static bool user_is_admin_helper(void)
817 {
818         HANDLE hToken = NULL;
819         if(!OpenProcessToken(GetCurrentProcess(), TOKEN_QUERY, &hToken))
820         {
821                 return false;
822         }
823
824         DWORD dwSize = 0;
825         if(!GetTokenInformation(hToken, TokenGroups, NULL, 0, &dwSize))
826         {
827                 if(GetLastError() != ERROR_INSUFFICIENT_BUFFER)
828                 {
829                         CloseHandle(hToken);
830                         return false;
831                 }
832         }
833
834         PTOKEN_GROUPS lpGroups = (PTOKEN_GROUPS) malloc(dwSize);
835         if(!lpGroups)
836         {
837                 CloseHandle(hToken);
838                 return false;
839         }
840
841         if(!GetTokenInformation(hToken, TokenGroups, lpGroups, dwSize, &dwSize))
842         {
843                 free(lpGroups);
844                 CloseHandle(hToken);
845                 return false;
846         }
847
848         PSID lpSid = NULL; SID_IDENTIFIER_AUTHORITY Authority = {SECURITY_NT_AUTHORITY};
849         if(!AllocateAndInitializeSid(&Authority, 2, SECURITY_BUILTIN_DOMAIN_RID, DOMAIN_ALIAS_RID_ADMINS, 0, 0, 0, 0, 0, 0, &lpSid))
850         {
851                 free(lpGroups);
852                 CloseHandle(hToken);
853                 return false;
854         }
855
856         bool bResult = false;
857         for(DWORD i = 0; i < lpGroups->GroupCount; i++)
858         {
859                 if(EqualSid(lpSid, lpGroups->Groups[i].Sid))
860                 {
861                         bResult = true;
862                         break;
863                 }
864         }
865
866         FreeSid(lpSid);
867         free(lpGroups);
868         CloseHandle(hToken);
869         return bResult;
870 }
871
872 bool MUtils::OS::is_elevated(bool *bIsUacEnabled)
873 {
874         if(bIsUacEnabled)
875         {
876                 *bIsUacEnabled = false;
877         }
878
879         bool bIsProcessElevated = false;
880         HANDLE hToken = NULL;
881         
882         if(OpenProcessToken(GetCurrentProcess(), TOKEN_QUERY, &hToken))
883         {
884                 TOKEN_ELEVATION_TYPE tokenElevationType;
885                 DWORD returnLength;
886                 if(GetTokenInformation(hToken, TokenElevationType, &tokenElevationType, sizeof(TOKEN_ELEVATION_TYPE), &returnLength))
887                 {
888                         if(returnLength == sizeof(TOKEN_ELEVATION_TYPE))
889                         {
890                                 switch(tokenElevationType)
891                                 {
892                                 case TokenElevationTypeDefault:
893                                         qDebug("Process token elevation type: Default -> UAC is disabled.\n");
894                                         break;
895                                 case TokenElevationTypeFull:
896                                         qWarning("Process token elevation type: Full -> potential security risk!\n");
897                                         bIsProcessElevated = true;
898                                         if(bIsUacEnabled) *bIsUacEnabled = true;
899                                         break;
900                                 case TokenElevationTypeLimited:
901                                         qDebug("Process token elevation type: Limited -> not elevated.\n");
902                                         if(bIsUacEnabled) *bIsUacEnabled = true;
903                                         break;
904                                 default:
905                                         qWarning("Unknown tokenElevationType value: %d", tokenElevationType);
906                                         break;
907                                 }
908                         }
909                         else
910                         {
911                                 qWarning("GetTokenInformation() return an unexpected size!");
912                         }
913                 }
914                 CloseHandle(hToken);
915         }
916         else
917         {
918                 qWarning("Failed to open process token!");
919         }
920
921         return bIsProcessElevated;
922 }
923
924 bool MUtils::OS::user_is_admin(void)
925 {
926         bool isAdmin = false;
927
928         //Check for process elevation and UAC support first!
929         if(MUtils::OS::is_elevated(&isAdmin))
930         {
931                 qWarning("Process is elevated -> user is admin!");
932                 return true;
933         }
934         
935         //If not elevated and UAC is not available -> user must be in admin group!
936         if(!isAdmin)
937         {
938                 qDebug("UAC is disabled/unavailable -> checking for Administrators group");
939                 isAdmin = user_is_admin_helper();
940         }
941
942         return isAdmin;
943 }
944
945 ///////////////////////////////////////////////////////////////////////////////
946 // NETWORK STATE
947 ///////////////////////////////////////////////////////////////////////////////
948
949 int MUtils::OS::network_status(void)
950 {
951         DWORD dwFlags;
952         const BOOL ret = IsNetworkAlive(&dwFlags);
953         if(GetLastError() == 0)
954         {
955                 return (ret != FALSE) ? NETWORK_TYPE_YES : NETWORK_TYPE_NON;
956         }
957         return NETWORK_TYPE_ERR;
958 }
959
960 ///////////////////////////////////////////////////////////////////////////////
961 // MESSAGE HANDLER
962 ///////////////////////////////////////////////////////////////////////////////
963
964 bool MUtils::OS::handle_os_message(const void *const message, long *result)
965 {
966         const MSG *const msg = reinterpret_cast<const MSG*>(message);
967
968         switch(msg->message)
969         {
970         case WM_QUERYENDSESSION:
971                 qWarning("WM_QUERYENDSESSION message received!");
972                 *result = MUtils::GUI::broadcast(MUtils::GUI::USER_EVENT_QUERYENDSESSION, false) ? TRUE : FALSE;
973                 return true;
974         case WM_ENDSESSION:
975                 qWarning("WM_ENDSESSION message received!");
976                 if(msg->wParam == TRUE)
977                 {
978                         MUtils::GUI::broadcast(MUtils::GUI::USER_EVENT_ENDSESSION, false);
979                         MUtils::GUI::force_quit();
980                         exit(1);
981                 }
982                 *result = 0;
983                 return true;
984         default:
985                 /*ignore this message and let Qt handle it*/
986                 return false;
987         }
988 }
989
990 ///////////////////////////////////////////////////////////////////////////////
991 // SLEEP
992 ///////////////////////////////////////////////////////////////////////////////
993
994 void MUtils::OS::sleep_ms(const size_t &duration)
995 {
996         Sleep((DWORD) duration);
997 }
998
999 ///////////////////////////////////////////////////////////////////////////////
1000 // EXECUTABLE CHECK
1001 ///////////////////////////////////////////////////////////////////////////////
1002
1003 bool MUtils::OS::is_executable_file(const QString &path)
1004 {
1005         bool bIsExecutable = false;
1006         DWORD binaryType;
1007         if(GetBinaryType(MUTILS_WCHR(QDir::toNativeSeparators(path)), &binaryType))
1008         {
1009                 bIsExecutable = (binaryType == SCS_32BIT_BINARY || binaryType == SCS_64BIT_BINARY);
1010         }
1011         return bIsExecutable;
1012 }
1013
1014 bool MUtils::OS::is_library_file(const QString &path)
1015 {
1016         bool bIsLibrary = false;
1017         const HMODULE hMod = LoadLibraryEx(MUTILS_WCHR(QDir::toNativeSeparators(path)), NULL, LOAD_LIBRARY_AS_IMAGE_RESOURCE);
1018         if (hMod)
1019         {
1020                 bIsLibrary = true;
1021                 FreeLibrary(hMod);
1022         }
1023         return bIsLibrary;
1024 }
1025
1026 ///////////////////////////////////////////////////////////////////////////////
1027 // HIBERNATION / SHUTDOWN
1028 ///////////////////////////////////////////////////////////////////////////////
1029
1030 bool MUtils::OS::is_hibernation_supported(void)
1031 {
1032         bool hibernationSupported = false;
1033
1034         SYSTEM_POWER_CAPABILITIES pwrCaps;
1035         SecureZeroMemory(&pwrCaps, sizeof(SYSTEM_POWER_CAPABILITIES));
1036         
1037         if(GetPwrCapabilities(&pwrCaps))
1038         {
1039                 hibernationSupported = pwrCaps.SystemS4 && pwrCaps.HiberFilePresent;
1040         }
1041
1042         return hibernationSupported;
1043 }
1044
1045 bool MUtils::OS::shutdown_computer(const QString &message, const unsigned long timeout, const bool forceShutdown, const bool hibernate)
1046 {
1047         HANDLE hToken = NULL;
1048
1049         if(OpenProcessToken(GetCurrentProcess(), TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, &hToken))
1050         {
1051                 TOKEN_PRIVILEGES privileges;
1052                 memset(&privileges, 0, sizeof(TOKEN_PRIVILEGES));
1053                 privileges.PrivilegeCount = 1;
1054                 privileges.Privileges[0].Attributes = SE_PRIVILEGE_ENABLED;
1055                 
1056                 if(LookupPrivilegeValue(NULL, SE_SHUTDOWN_NAME, &privileges.Privileges[0].Luid))
1057                 {
1058                         if(AdjustTokenPrivileges(hToken, FALSE, &privileges, NULL, NULL, NULL))
1059                         {
1060                                 if(hibernate)
1061                                 {
1062                                         if(SetSuspendState(TRUE, TRUE, TRUE))
1063                                         {
1064                                                 return true;
1065                                         }
1066                                 }
1067                                 const DWORD reason = SHTDN_REASON_MAJOR_APPLICATION | SHTDN_REASON_FLAG_PLANNED;
1068                                 return InitiateSystemShutdownEx(NULL, const_cast<wchar_t*>(MUTILS_WCHR(message)), timeout, forceShutdown ? TRUE : FALSE, FALSE, reason);
1069                         }
1070                 }
1071         }
1072         
1073         return false;
1074 }
1075
1076 ///////////////////////////////////////////////////////////////////////////////
1077 // FREE DISKSPACE
1078 ///////////////////////////////////////////////////////////////////////////////
1079
1080 bool MUtils::OS::free_diskspace(const QString &path, quint64 &freeSpace)
1081 {
1082         ULARGE_INTEGER freeBytesAvailable, totalNumberOfBytes, totalNumberOfFreeBytes;
1083         if(GetDiskFreeSpaceExW(reinterpret_cast<const wchar_t*>(QDir::toNativeSeparators(path).utf16()), &freeBytesAvailable, &totalNumberOfBytes, &totalNumberOfFreeBytes))
1084         {
1085                 freeSpace = freeBytesAvailable.QuadPart;
1086                 return true;;
1087         }
1088
1089         freeSpace = -1;
1090         return false;
1091 }
1092
1093 ///////////////////////////////////////////////////////////////////////////////
1094 // SHELL OPEN
1095 ///////////////////////////////////////////////////////////////////////////////
1096
1097 bool MUtils::OS::shell_open(const QWidget *parent, const QString &url, const QString &parameters, const QString &directory, const bool explore)
1098 {
1099         return ((int) ShellExecuteW((parent ? parent->winId() : NULL), (explore ? L"explore" : L"open"), MUTILS_WCHR(url), ((!parameters.isEmpty()) ? MUTILS_WCHR(parameters) : NULL), ((!directory.isEmpty()) ? MUTILS_WCHR(directory) : NULL), SW_SHOW)) > 32;
1100 }
1101
1102 bool MUtils::OS::shell_open(const QWidget *parent, const QString &url, const bool explore)
1103 {
1104         return shell_open(parent, url, QString(), QString(), explore);
1105 }
1106
1107 ///////////////////////////////////////////////////////////////////////////////
1108 // OPEN MEDIA FILE
1109 ///////////////////////////////////////////////////////////////////////////////
1110
1111 bool MUtils::OS::open_media_file(const QString &mediaFilePath)
1112 {
1113         const static wchar_t *registryPrefix[2] = { L"SOFTWARE\\", L"SOFTWARE\\Wow6432Node\\" };
1114         const static wchar_t *registryKeys[3] = 
1115         {
1116                 L"Microsoft\\Windows\\CurrentVersion\\Uninstall\\{97D341C8-B0D1-4E4A-A49A-C30B52F168E9}",
1117                 L"Microsoft\\Windows\\CurrentVersion\\Uninstall\\{DB9E4EAB-2717-499F-8D56-4CC8A644AB60}",
1118                 L"foobar2000"
1119         };
1120         const static wchar_t *appNames[4] = { L"smplayer_portable.exe", L"smplayer.exe", L"MPUI.exe", L"foobar2000.exe" };
1121         const static wchar_t *valueNames[2] = { L"InstallLocation", L"InstallDir" };
1122
1123         for(size_t i = 0; i < 3; i++)
1124         {
1125                 for(size_t j = 0; j < 2; j++)
1126                 {
1127                         QString mplayerPath;
1128                         HKEY registryKeyHandle = NULL;
1129
1130                         const QString currentKey = MUTILS_QSTR(registryPrefix[j]).append(MUTILS_QSTR(registryKeys[i]));
1131                         if(RegOpenKeyExW(HKEY_LOCAL_MACHINE, MUTILS_WCHR(currentKey), 0, KEY_READ, &registryKeyHandle) == ERROR_SUCCESS)
1132                         {
1133                                 for(size_t k = 0; k < 2; k++)
1134                                 {
1135                                         wchar_t Buffer[4096];
1136                                         DWORD BuffSize = sizeof(wchar_t*) * 4096;
1137                                         DWORD DataType = REG_NONE;
1138                                         if(RegQueryValueExW(registryKeyHandle, valueNames[k], 0, &DataType, reinterpret_cast<BYTE*>(Buffer), &BuffSize) == ERROR_SUCCESS)
1139                                         {
1140                                                 if((DataType == REG_SZ) || (DataType == REG_EXPAND_SZ) || (DataType == REG_LINK))
1141                                                 {
1142                                                         mplayerPath = MUTILS_QSTR(Buffer);
1143                                                         break;
1144                                                 }
1145                                         }
1146                                 }
1147                                 RegCloseKey(registryKeyHandle);
1148                         }
1149
1150                         if(!mplayerPath.isEmpty())
1151                         {
1152                                 QDir mplayerDir(mplayerPath);
1153                                 if(mplayerDir.exists())
1154                                 {
1155                                         for(size_t k = 0; k < 4; k++)
1156                                         {
1157                                                 if(mplayerDir.exists(MUTILS_QSTR(appNames[k])))
1158                                                 {
1159                                                         qDebug("Player found at:\n%s\n", MUTILS_UTF8(mplayerDir.absoluteFilePath(MUTILS_QSTR(appNames[k]))));
1160                                                         QProcess::startDetached(mplayerDir.absoluteFilePath(MUTILS_QSTR(appNames[k])), QStringList() << QDir::toNativeSeparators(mediaFilePath));
1161                                                         return true;
1162                                                 }
1163                                         }
1164                                 }
1165                         }
1166                 }
1167         }
1168         return false;
1169 }
1170
1171 ///////////////////////////////////////////////////////////////////////////////
1172 // DEBUGGER CHECK
1173 ///////////////////////////////////////////////////////////////////////////////
1174
1175 static bool change_process_priority_helper(const HANDLE hProcess, const int priority)
1176 {
1177         bool ok = false;
1178
1179         switch(qBound(-2, priority, 2))
1180         {
1181         case 2:
1182                 ok = (SetPriorityClass(hProcess, HIGH_PRIORITY_CLASS) == TRUE);
1183                 break;
1184         case 1:
1185                 if(!(ok = (SetPriorityClass(hProcess, ABOVE_NORMAL_PRIORITY_CLASS) == TRUE)))
1186                 {
1187                         ok = (SetPriorityClass(hProcess, HIGH_PRIORITY_CLASS) == TRUE);
1188                 }
1189                 break;
1190         case 0:
1191                 ok = (SetPriorityClass(hProcess, NORMAL_PRIORITY_CLASS) == TRUE);
1192                 break;
1193         case -1:
1194                 if(!(ok = (SetPriorityClass(hProcess, BELOW_NORMAL_PRIORITY_CLASS) == TRUE)))
1195                 {
1196                         ok = (SetPriorityClass(hProcess, IDLE_PRIORITY_CLASS) == TRUE);
1197                 }
1198                 break;
1199         case -2:
1200                 ok = (SetPriorityClass(hProcess, IDLE_PRIORITY_CLASS) == TRUE);
1201                 break;
1202         }
1203
1204         return ok;
1205 }
1206
1207 bool MUtils::OS::change_process_priority(const int priority)
1208 {
1209         return change_process_priority_helper(GetCurrentProcess(), priority);
1210 }
1211
1212 bool MUtils::OS::change_process_priority(const QProcess *proc, const int priority)
1213 {
1214         if(Q_PID qPid = proc->pid())
1215         {
1216                 return change_process_priority_helper(qPid->hProcess, priority);
1217         }
1218         else
1219         {
1220                 return false;
1221         }
1222 }
1223
1224 ///////////////////////////////////////////////////////////////////////////////
1225 // PROCESS ID
1226 ///////////////////////////////////////////////////////////////////////////////
1227
1228 quint32 MUtils::OS::process_id(const QProcess *const proc)
1229 {
1230         PROCESS_INFORMATION *procInf = proc->pid();
1231         return (procInf) ? procInf->dwProcessId : NULL;
1232 }
1233
1234 ///////////////////////////////////////////////////////////////////////////////
1235 // PROCESS SUSPEND/RESUME
1236 ///////////////////////////////////////////////////////////////////////////////
1237
1238 bool MUtils::OS::suspend_process(const QProcess *proc, const bool suspend)
1239 {
1240         if(Q_PID pid = proc->pid())
1241         {
1242                 if(suspend)
1243                 {
1244                         return (SuspendThread(pid->hThread) != ((DWORD) -1));
1245                 }
1246                 else
1247                 {
1248                         return (ResumeThread(pid->hThread)  != ((DWORD) -1));
1249                 }
1250         }
1251         else
1252         {
1253                 return false;
1254         }
1255 }
1256
1257 ///////////////////////////////////////////////////////////////////////////////
1258 // SYSTEM TIMER
1259 ///////////////////////////////////////////////////////////////////////////////
1260
1261 bool MUtils::OS::setup_timer_resolution(const quint32 &interval)
1262 {
1263         return timeBeginPeriod(interval) == TIMERR_NOERROR;
1264 }
1265
1266 bool MUtils::OS::reset_timer_resolution(const quint32 &interval)
1267 {
1268         return timeEndPeriod(interval) == TIMERR_NOERROR;
1269 }
1270
1271 ///////////////////////////////////////////////////////////////////////////////
1272 // SET FILE TIME
1273 ///////////////////////////////////////////////////////////////////////////////
1274
1275 static QScopedPointer<QDateTime> s_epoch;
1276 static QReadWriteLock            s_epochLock;
1277
1278 static const QDateTime *get_epoch(void)
1279 {
1280         QReadLocker rdLock(&s_epochLock);
1281
1282         if (s_epoch.isNull())
1283         {
1284                 rdLock.unlock();
1285                 QWriteLocker wrLock(&s_epochLock);
1286                 if (s_epoch.isNull())
1287                 {
1288                         s_epoch.reset(new QDateTime(QDate(1601, 1, 1), QTime(0, 0, 0, 0), Qt::UTC));
1289                 }
1290                 wrLock.unlock();
1291                 rdLock.relock();
1292         }
1293
1294         return s_epoch.data();
1295 }
1296
1297 static FILETIME *qt_time_to_file_time(FILETIME *const fileTime, const QDateTime &dateTime)
1298 {
1299         memset(fileTime, 0, sizeof(FILETIME));
1300
1301         if (const QDateTime *const epoch = get_epoch())
1302         {
1303                 const qint64 msecs = epoch->msecsTo(dateTime);
1304                 if (msecs > 0)
1305                 {
1306                         const quint64 ticks = 10000U * quint64(msecs);
1307                         fileTime->dwHighDateTime = ((ticks >> 32) & 0xFFFFFFFF);
1308                         fileTime->dwLowDateTime = (ticks & 0xFFFFFFFF);
1309                         return fileTime;
1310                 }
1311         }
1312
1313         return NULL;
1314 }
1315
1316 static bool set_file_time(const HANDLE hFile, const QDateTime &created, const QDateTime &lastMod, const QDateTime &lastAcc)
1317 {
1318         FILETIME ftCreated, ftLastMod, ftLastAcc;
1319
1320         FILETIME *const pCreated = created.isValid() ? qt_time_to_file_time(&ftCreated, created) : NULL;
1321         FILETIME *const pLastMod = lastMod.isValid() ? qt_time_to_file_time(&ftLastMod, lastMod) : NULL;
1322         FILETIME *const pLastAcc = lastAcc.isValid() ? qt_time_to_file_time(&ftLastAcc, lastAcc) : NULL;
1323
1324         if (pCreated || pLastMod || pLastAcc)
1325         {
1326                 return (SetFileTime(hFile, pCreated, pLastAcc, pLastMod) != FALSE);
1327         }
1328
1329         return false;
1330 }
1331
1332 bool MUtils::OS::set_file_time(const QFile &file, const QDateTime &created, const QDateTime &lastMod, const QDateTime &lastAcc)
1333 {
1334         const int fd = file.handle();
1335         if (fd >= 0)
1336         {
1337                 return set_file_time((HANDLE)_get_osfhandle(fd), created, lastMod, lastAcc);
1338         }
1339         return false;
1340 }
1341
1342 bool MUtils::OS::set_file_time(const QString &path, const QDateTime &created, const QDateTime &lastMod, const QDateTime &lastAcc)
1343 {
1344         const HANDLE hFile = CreateFileW(MUTILS_WCHR(path), FILE_WRITE_ATTRIBUTES, FILE_SHARE_READ, NULL, OPEN_EXISTING, 0, 0);
1345         bool okay = false;
1346         if ((hFile != NULL) && (hFile != INVALID_HANDLE_VALUE))
1347         {
1348                 okay = set_file_time(hFile, created, lastMod, lastAcc);
1349                 CloseHandle(hFile);
1350         }
1351         return okay;
1352 }
1353
1354 ///////////////////////////////////////////////////////////////////////////////
1355 // CHECK KEY STATE
1356 ///////////////////////////////////////////////////////////////////////////////
1357
1358 bool MUtils::OS::check_key_state_esc(void)
1359 {
1360         return (GetAsyncKeyState(VK_ESCAPE) & 0x0001) != 0;
1361 }
1362
1363 ///////////////////////////////////////////////////////////////////////////////
1364 // SHELL CHANGE NOTIFICATION
1365 ///////////////////////////////////////////////////////////////////////////////
1366
1367 void MUtils::OS::shell_change_notification(void)
1368 {
1369         SHChangeNotify(SHCNE_ASSOCCHANGED, SHCNF_IDLIST, NULL, NULL);
1370 }
1371
1372 ///////////////////////////////////////////////////////////////////////////////
1373 // WOW64 REDIRECTION
1374 ///////////////////////////////////////////////////////////////////////////////
1375
1376 typedef BOOL (_stdcall *Wow64DisableWow64FsRedirectionFun)(void *OldValue);
1377 typedef BOOL (_stdcall *Wow64RevertWow64FsRedirectionFun )(void *OldValue);
1378
1379 bool MUtils::OS::wow64fsredir_disable(void *oldValue)
1380 {
1381         const Wow64DisableWow64FsRedirectionFun wow64redir_disable = MUtils::Win32Utils::resolve<Wow64DisableWow64FsRedirectionFun>(QLatin1String("kernel32"), QLatin1String("Wow64DisableWow64FsRedirection"));
1382         if(wow64redir_disable)
1383         {
1384                 if (wow64redir_disable(oldValue))
1385                 {
1386                         return true;
1387                 }
1388         }
1389         return false;
1390 }
1391
1392 bool MUtils::OS::wow64fsredir_revert(void *oldValue)
1393 {
1394         const Wow64RevertWow64FsRedirectionFun wow64redir_disable = MUtils::Win32Utils::resolve<Wow64RevertWow64FsRedirectionFun>(QLatin1String("kernel32"), QLatin1String("Wow64RevertWow64FsRedirection"));
1395         if (wow64redir_disable)
1396         {
1397                 if (wow64redir_disable(oldValue))
1398                 {
1399                         return true;
1400                 }
1401         }
1402         return false;
1403 }
1404
1405 ///////////////////////////////////////////////////////////////////////////////
1406 // DEBUGGER CHECK
1407 ///////////////////////////////////////////////////////////////////////////////
1408
1409 #if (!(MUTILS_DEBUG))
1410 static __forceinline bool is_debugger_present(void)
1411 {
1412         __try
1413         {
1414                 CloseHandle((HANDLE)((DWORD_PTR)-3));
1415         }
1416         __except(1)
1417         {
1418                 return true;
1419         }
1420
1421         BOOL bHaveDebugger = FALSE;
1422         if(CheckRemoteDebuggerPresent(GetCurrentProcess(), &bHaveDebugger))
1423         {
1424                 if(bHaveDebugger) return true;
1425         }
1426
1427         return IsDebuggerPresent();
1428 }
1429 static __forceinline bool check_debugger_helper(void)
1430 {
1431         if(is_debugger_present())
1432         {
1433                 MUtils::OS::fatal_exit(L"Not a debug build. Please unload debugger and try again!");
1434                 return true;
1435         }
1436         return false;
1437 }
1438 #else
1439 #define check_debugger_helper() (false)
1440 #endif
1441
1442 void MUtils::OS::check_debugger(void)
1443 {
1444         check_debugger_helper();
1445 }
1446
1447 static volatile bool g_debug_check = check_debugger_helper();
1448
1449 ///////////////////////////////////////////////////////////////////////////////
1450 // FATAL EXIT
1451 ///////////////////////////////////////////////////////////////////////////////
1452
1453 static MUtils::Internal::CriticalSection g_fatal_exit_lock;
1454 static volatile bool g_fatal_exit_flag = true;
1455
1456 static DWORD WINAPI fatal_exit_helper(LPVOID lpParameter)
1457 {
1458         MUtils::OS::system_message_err(L"GURU MEDITATION", (LPWSTR) lpParameter);
1459         return 0;
1460 }
1461
1462 void MUtils::OS::fatal_exit(const wchar_t* const errorMessage)
1463 {
1464         g_fatal_exit_lock.enter();
1465         
1466         if(!g_fatal_exit_flag)
1467         {
1468                 return; /*prevent recursive invocation*/
1469         }
1470
1471         g_fatal_exit_flag = false;
1472
1473         if(g_main_thread_id != GetCurrentThreadId())
1474         {
1475                 if(HANDLE hThreadMain = OpenThread(THREAD_SUSPEND_RESUME, FALSE, g_main_thread_id))
1476                 {
1477                         SuspendThread(hThreadMain); /*stop main thread*/
1478                 }
1479         }
1480
1481         if(HANDLE hThread = CreateThread(NULL, 0, fatal_exit_helper, (LPVOID) errorMessage, 0, NULL))
1482         {
1483                 WaitForSingleObject(hThread, INFINITE);
1484         }
1485
1486         for(;;)
1487         {
1488                 TerminateProcess(GetCurrentProcess(), 666);
1489         }
1490 }
1491
1492 ///////////////////////////////////////////////////////////////////////////////