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216 lines
5.0 KiB
C++
216 lines
5.0 KiB
C++
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#include "rar.hpp"
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static int SleepTime=0;
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void InitSystemOptions(int SleepTime)
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{
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::SleepTime=SleepTime;
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}
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#if !defined(SFX_MODULE)
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void SetPriority(int Priority)
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{
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#ifdef _WIN_ALL
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uint PriorityClass;
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int PriorityLevel;
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if (Priority<1 || Priority>15)
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return;
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if (Priority==1)
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{
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PriorityClass=IDLE_PRIORITY_CLASS;
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PriorityLevel=THREAD_PRIORITY_IDLE;
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// Background mode for Vista, can be slow for many small files.
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// if (WinNT()>=WNT_VISTA)
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// SetPriorityClass(GetCurrentProcess(),PROCESS_MODE_BACKGROUND_BEGIN);
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}
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else
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if (Priority<7)
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{
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PriorityClass=IDLE_PRIORITY_CLASS;
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PriorityLevel=Priority-4;
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}
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else
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if (Priority==7)
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{
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PriorityClass=BELOW_NORMAL_PRIORITY_CLASS;
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PriorityLevel=THREAD_PRIORITY_ABOVE_NORMAL;
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}
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else
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if (Priority<10)
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{
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PriorityClass=NORMAL_PRIORITY_CLASS;
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PriorityLevel=Priority-7;
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}
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else
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if (Priority==10)
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{
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PriorityClass=ABOVE_NORMAL_PRIORITY_CLASS;
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PriorityLevel=THREAD_PRIORITY_NORMAL;
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}
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else
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{
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PriorityClass=HIGH_PRIORITY_CLASS;
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PriorityLevel=Priority-13;
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}
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SetPriorityClass(GetCurrentProcess(),PriorityClass);
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SetThreadPriority(GetCurrentThread(),PriorityLevel);
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#ifdef RAR_SMP
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ThreadPool::SetPriority(PriorityLevel);
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#endif
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#endif
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}
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#endif
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// Monotonic clock. Like clock(), returns time passed in CLOCKS_PER_SEC items.
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// In Android 5+ and Unix usual clock() returns time spent by all threads
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// together, so we cannot use it to measure time intervals anymore.
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clock_t MonoClock()
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{
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return clock();
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}
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void Wait()
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{
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if (ErrHandler.UserBreak)
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ErrHandler.Exit(RARX_USERBREAK);
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#if defined(_WIN_ALL) && !defined(SFX_MODULE)
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if (SleepTime!=0)
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{
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static clock_t LastTime=MonoClock();
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if (MonoClock()-LastTime>10*CLOCKS_PER_SEC/1000)
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{
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Sleep(SleepTime);
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LastTime=MonoClock();
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}
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}
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#endif
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#if defined(_WIN_ALL)
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// Reset system sleep timer to prevent system going sleep.
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SetThreadExecutionState(ES_SYSTEM_REQUIRED);
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#endif
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}
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#if defined(_WIN_ALL) && !defined(SFX_MODULE)
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void Shutdown(POWER_MODE Mode)
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{
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HANDLE hToken;
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TOKEN_PRIVILEGES tkp;
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if (OpenProcessToken(GetCurrentProcess(),TOKEN_ADJUST_PRIVILEGES|TOKEN_QUERY,&hToken))
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{
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LookupPrivilegeValue(NULL,SE_SHUTDOWN_NAME,&tkp.Privileges[0].Luid);
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tkp.PrivilegeCount = 1;
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tkp.Privileges[0].Attributes = SE_PRIVILEGE_ENABLED;
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AdjustTokenPrivileges(hToken,FALSE,&tkp,0,(PTOKEN_PRIVILEGES)NULL,0);
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}
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if (Mode==POWERMODE_OFF)
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ExitWindowsEx(EWX_SHUTDOWN|EWX_FORCE,SHTDN_REASON_FLAG_PLANNED);
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if (Mode==POWERMODE_SLEEP)
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SetSuspendState(FALSE,FALSE,FALSE);
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if (Mode==POWERMODE_HIBERNATE)
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SetSuspendState(TRUE,FALSE,FALSE);
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if (Mode==POWERMODE_RESTART)
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ExitWindowsEx(EWX_REBOOT|EWX_FORCE,SHTDN_REASON_FLAG_PLANNED);
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}
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bool ShutdownCheckAnother(bool Open)
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{
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const wchar *EventName=L"rar -ioff";
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static HANDLE hEvent=NULL;
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bool Result=false; // Return false if no other RAR -ioff are running.
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if (Open) // Create or open the event.
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hEvent=CreateEvent(NULL,FALSE,FALSE,EventName);
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else
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{
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if (hEvent!=NULL)
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CloseHandle(hEvent); // Close our event.
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// Check if other copies still own the event. While race conditions
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// are possible, they are improbable and their harm is minimal.
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hEvent=CreateEvent(NULL,FALSE,FALSE,EventName);
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Result=GetLastError()==ERROR_ALREADY_EXISTS;
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if (hEvent!=NULL)
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CloseHandle(hEvent);
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}
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return Result;
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}
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#endif
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#if defined(_WIN_ALL)
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// Load library from Windows System32 folder. Use this function to prevent
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// loading a malicious code from current folder or same folder as exe.
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HMODULE WINAPI LoadSysLibrary(const wchar *Name)
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{
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wchar SysDir[NM];
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if (GetSystemDirectory(SysDir,ASIZE(SysDir))==0)
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return NULL;
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MakeName(SysDir,Name,SysDir,ASIZE(SysDir));
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return LoadLibrary(SysDir);
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}
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bool IsUserAdmin()
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{
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SID_IDENTIFIER_AUTHORITY NtAuthority = SECURITY_NT_AUTHORITY;
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PSID AdministratorsGroup;
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BOOL b = AllocateAndInitializeSid(&NtAuthority,2,SECURITY_BUILTIN_DOMAIN_RID,
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DOMAIN_ALIAS_RID_ADMINS, 0, 0, 0, 0, 0, 0, &AdministratorsGroup);
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if (b)
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{
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if (!CheckTokenMembership( NULL, AdministratorsGroup, &b))
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b = FALSE;
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FreeSid(AdministratorsGroup);
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}
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return b!=FALSE;
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}
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#endif
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#ifdef USE_SSE
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SSE_VERSION _SSE_Version=GetSSEVersion();
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SSE_VERSION GetSSEVersion()
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{
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int CPUInfo[4];
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__cpuid(CPUInfo, 0x80000000);
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// Maximum supported cpuid function. For example, Pentium M 755 returns 4 here.
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uint MaxSupported=CPUInfo[0] & 0x7fffffff;
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if (MaxSupported>=7)
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{
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__cpuid(CPUInfo, 7);
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if ((CPUInfo[1] & 0x20)!=0)
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return SSE_AVX2;
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}
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if (MaxSupported>=1)
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{
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__cpuid(CPUInfo, 1);
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if ((CPUInfo[2] & 0x80000)!=0)
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return SSE_SSE41;
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if ((CPUInfo[2] & 0x200)!=0)
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return SSE_SSSE3;
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if ((CPUInfo[3] & 0x4000000)!=0)
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return SSE_SSE2;
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if ((CPUInfo[3] & 0x2000000)!=0)
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return SSE_SSE;
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}
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return SSE_NONE;
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}
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#endif
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