mirror of
https://github.com/reactos/reactos.git
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c424146e2c
svn path=/branches/cmake-bringup/; revision=48236
522 lines
17 KiB
C
522 lines
17 KiB
C
/*
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* COPYRIGHT: See COPYING in the top level directory
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* PROJECT: ReactOS kernel
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* FILE: dll/ntdll/ldr/startup.c
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* PURPOSE: Process startup for PE executables
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* PROGRAMMERS: Jean Michault
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* Rex Jolliff (rex@lvcablemodem.com)
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*/
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/* INCLUDES *****************************************************************/
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#include <ntdll.h>
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#define NDEBUG
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#include <debug.h>
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#include <win32k/callback.h>
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VOID RtlInitializeHeapManager(VOID);
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VOID LdrpInitLoader(VOID);
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VOID NTAPI RtlpInitDeferedCriticalSection(VOID);
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NTSTATUS LdrpAttachThread(VOID);
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VOID RtlpInitializeVectoredExceptionHandling(VOID);
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extern PTEB LdrpTopLevelDllBeingLoadedTeb;
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/* GLOBALS *******************************************************************/
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PLDR_DATA_TABLE_ENTRY ExeModule;
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static RTL_CRITICAL_SECTION PebLock;
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static RTL_CRITICAL_SECTION LoaderLock;
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static RTL_BITMAP TlsBitMap;
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static RTL_BITMAP TlsExpansionBitMap;
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static volatile BOOLEAN LdrpInitialized = FALSE;
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static LONG LdrpInitLock = 0;
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#define VALUE_BUFFER_SIZE 256
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/* FUNCTIONS *****************************************************************/
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BOOLEAN
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FASTCALL
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ReadCompatibilitySetting(HANDLE Key,
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LPWSTR Value,
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PKEY_VALUE_PARTIAL_INFORMATION ValueInfo,
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DWORD * Buffer)
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{
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UNICODE_STRING ValueName;
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NTSTATUS Status;
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ULONG Length;
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RtlInitUnicodeString(&ValueName, Value);
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Status = NtQueryValueKey(Key,
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&ValueName,
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KeyValuePartialInformation,
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ValueInfo,
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VALUE_BUFFER_SIZE,
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&Length);
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if (!NT_SUCCESS(Status) || (ValueInfo->Type != REG_DWORD))
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{
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RtlFreeUnicodeString(&ValueName);
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return FALSE;
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}
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RtlCopyMemory(Buffer, &ValueInfo->Data[0], sizeof(DWORD));
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RtlFreeUnicodeString(&ValueName);
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return TRUE;
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}
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VOID
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FASTCALL
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LoadImageFileExecutionOptions(PPEB Peb)
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{
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NTSTATUS Status = STATUS_SUCCESS;
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ULONG Value = 0;
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UNICODE_STRING ValueString;
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UNICODE_STRING ImageName;
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UNICODE_STRING ImagePathName;
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WCHAR ValueBuffer[64];
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ULONG ValueSize;
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if (Peb->ProcessParameters &&
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Peb->ProcessParameters->ImagePathName.Length > 0)
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{
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DPRINT("%wZ\n", &Peb->ProcessParameters->ImagePathName);
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ImagePathName = Peb->ProcessParameters->ImagePathName;
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ImageName.Buffer = ImagePathName.Buffer + ImagePathName.Length / sizeof(WCHAR);
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ImageName.Length = 0;
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while (ImagePathName.Buffer < ImageName.Buffer)
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{
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ImageName.Buffer--;
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if (*ImageName.Buffer == L'\\')
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{
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ImageName.Buffer++;
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break;
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}
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}
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ImageName.Length = ImagePathName.Length -
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(ImageName.Buffer - ImagePathName.Buffer) * sizeof(WCHAR);
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ImageName.MaximumLength = ImageName.Length +
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ImagePathName.MaximumLength - ImagePathName.Length;
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DPRINT("%wZ\n", &ImageName);
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/* global flag */
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Status = LdrQueryImageFileExecutionOptions(&ImageName,
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L"GlobalFlag",
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REG_SZ,
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(PVOID)ValueBuffer,
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sizeof(ValueBuffer),
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&ValueSize);
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if (NT_SUCCESS(Status))
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{
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ValueString.Buffer = ValueBuffer;
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ValueString.Length = ValueSize - sizeof(WCHAR);
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ValueString.MaximumLength = sizeof(ValueBuffer);
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Status = RtlUnicodeStringToInteger(&ValueString, 16, &Value);
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if (NT_SUCCESS(Status))
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{
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Peb->NtGlobalFlag |= Value;
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DPRINT("GlobalFlag: Key='%S', Value=0x%lx\n", ValueBuffer, Value);
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}
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}
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/*
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* FIXME:
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* read more options
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*/
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}
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}
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BOOLEAN
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FASTCALL
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LoadCompatibilitySettings(PPEB Peb)
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{
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NTSTATUS Status;
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HANDLE UserKey = NULL;
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HANDLE KeyHandle;
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HANDLE SubKeyHandle;
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OBJECT_ATTRIBUTES ObjectAttributes;
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UNICODE_STRING KeyName = RTL_CONSTANT_STRING(
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L"Software\\Microsoft\\Windows NT\\CurrentVersion\\AppCompatFlags\\Layers");
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UNICODE_STRING ValueName;
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UCHAR ValueBuffer[VALUE_BUFFER_SIZE];
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PKEY_VALUE_PARTIAL_INFORMATION ValueInfo;
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ULONG Length;
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DWORD MajorVersion, MinorVersion, BuildNumber, PlatformId,
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SPMajorVersion, SPMinorVersion = 0;
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if (Peb->ProcessParameters &&
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(Peb->ProcessParameters->ImagePathName.Length > 0))
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{
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Status = RtlOpenCurrentUser(KEY_READ, &UserKey);
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if (!NT_SUCCESS(Status))
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{
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return FALSE;
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}
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InitializeObjectAttributes(&ObjectAttributes,
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&KeyName,
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OBJ_CASE_INSENSITIVE,
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UserKey,
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NULL);
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Status = NtOpenKey(&KeyHandle, KEY_QUERY_VALUE, &ObjectAttributes);
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if (!NT_SUCCESS(Status))
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{
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if (UserKey)
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NtClose(UserKey);
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return FALSE;
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}
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/* query version name for application */
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ValueInfo = (PKEY_VALUE_PARTIAL_INFORMATION) ValueBuffer;
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Status = NtQueryValueKey(KeyHandle,
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&Peb->ProcessParameters->ImagePathName,
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KeyValuePartialInformation,
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ValueBuffer,
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VALUE_BUFFER_SIZE,
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&Length);
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if (!NT_SUCCESS(Status) || (ValueInfo->Type != REG_SZ))
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{
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NtClose(KeyHandle);
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if (UserKey)
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NtClose(UserKey);
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return FALSE;
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}
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ValueName.Length = ValueInfo->DataLength;
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ValueName.MaximumLength = ValueInfo->DataLength;
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ValueName.Buffer = (PWSTR) ValueInfo->Data;
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/* load version info */
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InitializeObjectAttributes(&ObjectAttributes,
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&ValueName,
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OBJ_CASE_INSENSITIVE,
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KeyHandle,
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NULL);
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Status = NtOpenKey(&SubKeyHandle, KEY_QUERY_VALUE, &ObjectAttributes);
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if (!NT_SUCCESS(Status))
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{
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NtClose(KeyHandle);
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if (UserKey)
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NtClose(UserKey);
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return FALSE;
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}
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DPRINT("Loading version information for: %wZ\n", &ValueName);
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/* read settings from registry */
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if (!ReadCompatibilitySetting(SubKeyHandle, L"MajorVersion", ValueInfo, &MajorVersion))
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goto finish;
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if (!ReadCompatibilitySetting(SubKeyHandle, L"MinorVersion", ValueInfo, &MinorVersion))
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goto finish;
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if (!ReadCompatibilitySetting(SubKeyHandle, L"BuildNumber", ValueInfo, &BuildNumber))
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goto finish;
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if (!ReadCompatibilitySetting(SubKeyHandle, L"PlatformId", ValueInfo, &PlatformId))
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goto finish;
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/* now assign the settings */
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Peb->OSMajorVersion = (ULONG) MajorVersion;
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Peb->OSMinorVersion = (ULONG) MinorVersion;
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Peb->OSBuildNumber = (USHORT) BuildNumber;
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Peb->OSPlatformId = (ULONG) PlatformId;
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/* optional service pack version numbers */
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if (ReadCompatibilitySetting(SubKeyHandle,
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L"SPMajorVersion",
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ValueInfo,
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&SPMajorVersion) &&
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ReadCompatibilitySetting(SubKeyHandle,
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L"SPMinorVersion",
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ValueInfo,
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&SPMinorVersion))
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{
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Peb->OSCSDVersion = ((SPMajorVersion & 0xFF) << 8) |
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(SPMinorVersion & 0xFF);
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}
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finish:
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/* we're finished */
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NtClose(SubKeyHandle);
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NtClose(KeyHandle);
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if (UserKey)
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NtClose(UserKey);
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return TRUE;
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}
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return FALSE;
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}
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static
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VOID
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LdrpInit2(PCONTEXT Context,
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PVOID SystemArgument1,
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PVOID SystemArgument2)
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{
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PIMAGE_NT_HEADERS NTHeaders;
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PEPFUNC EntryPoint;
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PIMAGE_DOS_HEADER PEDosHeader;
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PVOID ImageBase;
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PPEB Peb = NtCurrentPeb();
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PLDR_DATA_TABLE_ENTRY NtModule; // ntdll
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NLSTABLEINFO NlsTable;
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WCHAR FullNtDllPath[MAX_PATH];
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SYSTEM_BASIC_INFORMATION SystemInformation;
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NTSTATUS Status;
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PVOID BaseAddress = SystemArgument1;
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DPRINT("LdrpInit()\n");
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DPRINT("Peb %p\n", Peb);
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ImageBase = Peb->ImageBaseAddress;
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DPRINT("ImageBase %p\n", ImageBase);
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if (ImageBase <= (PVOID) 0x1000)
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{
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DPRINT("ImageBase is null\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INVALID_IMAGE_FORMAT);
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}
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/* If MZ header exists */
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PEDosHeader = (PIMAGE_DOS_HEADER) ImageBase;
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DPRINT("PEDosHeader %p\n", PEDosHeader);
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if (PEDosHeader->e_magic != IMAGE_DOS_SIGNATURE ||
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PEDosHeader->e_lfanew == 0L ||
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*(PULONG)((PUCHAR)ImageBase + PEDosHeader->e_lfanew) != IMAGE_NT_SIGNATURE)
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{
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DPRINT1("Image has bad header\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INVALID_IMAGE_FORMAT);
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}
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/* normalize process parameters */
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RtlNormalizeProcessParams(Peb->ProcessParameters);
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/* Initialize NLS data */
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RtlInitNlsTables(Peb->AnsiCodePageData,
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Peb->OemCodePageData,
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Peb->UnicodeCaseTableData,
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&NlsTable);
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RtlResetRtlTranslations(&NlsTable);
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NTHeaders = (PIMAGE_NT_HEADERS)((ULONG_PTR)ImageBase + PEDosHeader->e_lfanew);
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/* Get number of processors */
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DPRINT("Here\n");
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Status = ZwQuerySystemInformation(SystemBasicInformation,
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&SystemInformation,
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sizeof(SYSTEM_BASIC_INFORMATION),
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NULL);
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DPRINT("Here2\n");
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if (!NT_SUCCESS(Status))
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{
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ZwTerminateProcess(NtCurrentProcess(), Status);
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}
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Peb->NumberOfProcessors = SystemInformation.NumberOfProcessors;
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/* Initialize Critical Section Data */
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RtlpInitDeferedCriticalSection();
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/* create process heap */
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RtlInitializeHeapManager();
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Peb->ProcessHeap = RtlCreateHeap(HEAP_GROWABLE,
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NULL,
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NTHeaders->OptionalHeader.SizeOfHeapReserve,
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NTHeaders->OptionalHeader.SizeOfHeapCommit,
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NULL,
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NULL);
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if (Peb->ProcessHeap == 0)
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{
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DPRINT1("Failed to create process heap\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INSUFFICIENT_RESOURCES);
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}
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/* initialized vectored exception handling */
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RtlpInitializeVectoredExceptionHandling();
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/* initalize peb lock support */
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RtlInitializeCriticalSection(&PebLock);
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Peb->FastPebLock = &PebLock;
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/* initialize tls bitmaps */
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RtlInitializeBitMap(&TlsBitMap, Peb->TlsBitmapBits, TLS_MINIMUM_AVAILABLE);
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RtlInitializeBitMap(&TlsExpansionBitMap, Peb->TlsExpansionBitmapBits, TLS_EXPANSION_SLOTS);
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Peb->TlsBitmap = &TlsBitMap;
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Peb->TlsExpansionBitmap = &TlsExpansionBitMap;
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Peb->TlsExpansionCounter = TLS_MINIMUM_AVAILABLE;
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/* Initialize table of callbacks for the kernel. */
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Peb->KernelCallbackTable = RtlAllocateHeap(RtlGetProcessHeap(),
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0,
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sizeof(PVOID) *
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(USER32_CALLBACK_MAXIMUM + 1));
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if (Peb->KernelCallbackTable == NULL)
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{
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DPRINT1("Failed to create callback table\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INSUFFICIENT_RESOURCES);
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}
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/* initalize loader lock */
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RtlInitializeCriticalSection(&LoaderLock);
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Peb->LoaderLock = &LoaderLock;
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/* create loader information */
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Peb->Ldr = (PPEB_LDR_DATA) RtlAllocateHeap(Peb->ProcessHeap,
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0,
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sizeof(PEB_LDR_DATA));
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if (Peb->Ldr == NULL)
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{
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DPRINT1("Failed to create loader data\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INSUFFICIENT_RESOURCES);
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}
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Peb->Ldr->Length = sizeof(PEB_LDR_DATA);
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Peb->Ldr->Initialized = FALSE;
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Peb->Ldr->SsHandle = NULL;
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InitializeListHead(&Peb->Ldr->InLoadOrderModuleList);
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InitializeListHead(&Peb->Ldr->InMemoryOrderModuleList);
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InitializeListHead(&Peb->Ldr->InInitializationOrderModuleList);
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/* Load compatibility settings */
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LoadCompatibilitySettings(Peb);
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/* Load execution options */
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LoadImageFileExecutionOptions(Peb);
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/* build full ntdll path */
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wcscpy(FullNtDllPath, SharedUserData->NtSystemRoot);
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wcscat(FullNtDllPath, L"\\system32\\ntdll.dll");
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/* add entry for ntdll */
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NtModule = (PLDR_DATA_TABLE_ENTRY)
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RtlAllocateHeap(Peb->ProcessHeap,
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0,
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sizeof(LDR_DATA_TABLE_ENTRY));
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if (NtModule == NULL)
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{
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DPRINT1("Failed to create loader module entry (NTDLL)\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INSUFFICIENT_RESOURCES);
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}
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memset(NtModule, 0, sizeof(LDR_DATA_TABLE_ENTRY));
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NtModule->DllBase = BaseAddress;
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NtModule->EntryPoint = 0; /* no entry point */
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RtlCreateUnicodeString(&NtModule->FullDllName, FullNtDllPath);
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RtlCreateUnicodeString(&NtModule->BaseDllName, L"ntdll.dll");
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NtModule->Flags = LDRP_IMAGE_DLL | LDRP_ENTRY_PROCESSED;
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NtModule->LoadCount = -1; /* don't unload */
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NtModule->TlsIndex = -1;
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NtModule->SectionPointer = NULL;
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NtModule->CheckSum = 0;
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NTHeaders = RtlImageNtHeader(NtModule->DllBase);
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NtModule->SizeOfImage = LdrpGetResidentSize(NTHeaders);
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NtModule->TimeDateStamp = NTHeaders->FileHeader.TimeDateStamp;
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InsertTailList(&Peb->Ldr->InLoadOrderModuleList,
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&NtModule->InLoadOrderLinks);
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InsertTailList(&Peb->Ldr->InInitializationOrderModuleList,
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&NtModule->InInitializationOrderModuleList);
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/* add entry for executable (becomes first list entry) */
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ExeModule = (PLDR_DATA_TABLE_ENTRY)
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RtlAllocateHeap(Peb->ProcessHeap,
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0,
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sizeof(LDR_DATA_TABLE_ENTRY));
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if (ExeModule == NULL)
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{
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DPRINT1("Failed to create loader module infomation\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INSUFFICIENT_RESOURCES);
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}
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ExeModule->DllBase = Peb->ImageBaseAddress;
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if ((Peb->ProcessParameters == NULL) ||
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(Peb->ProcessParameters->ImagePathName.Length == 0))
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{
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DPRINT1("Failed to access the process parameter block\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_UNSUCCESSFUL);
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}
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RtlCreateUnicodeString(&ExeModule->FullDllName,
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Peb->ProcessParameters->ImagePathName.Buffer);
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RtlCreateUnicodeString(&ExeModule->BaseDllName,
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wcsrchr(ExeModule->FullDllName.Buffer, L'\\') + 1);
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DPRINT("BaseDllName '%wZ' FullDllName '%wZ'\n", &ExeModule->BaseDllName, &ExeModule->FullDllName);
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ExeModule->Flags = LDRP_ENTRY_PROCESSED;
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ExeModule->LoadCount = -1; /* don't unload */
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ExeModule->TlsIndex = -1;
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ExeModule->SectionPointer = NULL;
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ExeModule->CheckSum = 0;
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NTHeaders = RtlImageNtHeader(ExeModule->DllBase);
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ExeModule->SizeOfImage = LdrpGetResidentSize(NTHeaders);
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ExeModule->TimeDateStamp = NTHeaders->FileHeader.TimeDateStamp;
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LdrpTopLevelDllBeingLoadedTeb = NtCurrentTeb();
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InsertHeadList(&Peb->Ldr->InLoadOrderModuleList,
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&ExeModule->InLoadOrderLinks);
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LdrpInitLoader();
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EntryPoint = LdrPEStartup((PVOID)ImageBase, NULL, NULL, NULL);
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ExeModule->EntryPoint = EntryPoint;
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/* all required dlls are loaded now */
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Peb->Ldr->Initialized = TRUE;
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/* Check before returning that we can run the image safely. */
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if (EntryPoint == NULL)
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{
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DPRINT1("Failed to initialize image\n");
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ZwTerminateProcess(NtCurrentProcess(), STATUS_INVALID_IMAGE_FORMAT);
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}
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/* Break into debugger */
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if (Peb->BeingDebugged)
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DbgBreakPoint();
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}
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VOID
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NTAPI
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LdrpInit(PCONTEXT Context,
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PVOID SystemArgument1,
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PVOID SystemArgument2)
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{
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if (!LdrpInitialized)
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{
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if (!_InterlockedExchange(&LdrpInitLock, 1))
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{
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LdrpInit2(Context, SystemArgument1, SystemArgument2);
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LdrpInitialized = TRUE;
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}
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else
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{
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LARGE_INTEGER Interval = {{-200000, -1}};
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do
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{
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NtDelayExecution(FALSE, &Interval);
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}
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while (!LdrpInitialized);
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}
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}
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/* attach the thread */
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RtlEnterCriticalSection(NtCurrentPeb()->LoaderLock);
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LdrpAttachThread();
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RtlLeaveCriticalSection(NtCurrentPeb()->LoaderLock);
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}
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/* EOF */
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