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519 lines
11 KiB
519 lines
11 KiB
/*++
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Copyright (c) 1995 Microsoft Corporation
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Module Name:
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arc.c
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Abstract:
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Routines relating to boot.ini.
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Author:
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Ted Miller (tedm) 4-Apr-1995
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Revision History:
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--*/
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#include "setupp.h"
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#pragma hdrstop
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PWSTR
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ArcDevicePathToNtPath(
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IN PCWSTR ArcPath
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)
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/*++
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Routine Description:
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Convert an ARC path (device only) to an NT path.
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Arguments:
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ArcPath - supplies path to be converted.
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Return Value:
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Converted path. Caller must free with MyFree().
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--*/
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{
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NTSTATUS Status;
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HANDLE ObjectHandle;
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OBJECT_ATTRIBUTES Obja;
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UNICODE_STRING UnicodeString;
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UCHAR Buffer[1024];
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PWSTR arcPath;
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PWSTR ntPath;
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//
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// Assume failure
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//
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ntPath = NULL;
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arcPath = MyMalloc(((lstrlen(ArcPath)+1)*sizeof(WCHAR)) + sizeof(L"\\ArcName"));
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if( !arcPath ) {
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return NULL;
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}
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lstrcpy(arcPath,L"\\ArcName\\");
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lstrcat(arcPath,ArcPath);
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RtlInitUnicodeString(&UnicodeString,arcPath);
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InitializeObjectAttributes(
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&Obja,
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&UnicodeString,
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OBJ_CASE_INSENSITIVE,
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NULL,
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NULL
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);
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Status = NtOpenSymbolicLinkObject(
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&ObjectHandle,
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READ_CONTROL | SYMBOLIC_LINK_QUERY,
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&Obja
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);
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if(NT_SUCCESS(Status)) {
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//
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// Query the object to get the link target.
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//
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UnicodeString.Buffer = (PWSTR)Buffer;
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UnicodeString.Length = 0;
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UnicodeString.MaximumLength = sizeof(Buffer);
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Status = NtQuerySymbolicLinkObject(ObjectHandle,&UnicodeString,NULL);
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if(NT_SUCCESS(Status)) {
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ntPath = MyMalloc(UnicodeString.Length+sizeof(WCHAR));
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if( ntPath ) {
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CopyMemory(ntPath,UnicodeString.Buffer,UnicodeString.Length);
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ntPath[UnicodeString.Length/sizeof(WCHAR)] = 0;
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}
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}
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NtClose(ObjectHandle);
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}
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MyFree(arcPath);
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return(ntPath);
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}
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PWSTR
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NtFullPathToDosPath(
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IN PCWSTR NtPath
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)
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{
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OBJECT_ATTRIBUTES Attributes;
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UNICODE_STRING UnicodeString;
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NTSTATUS Status;
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HANDLE DosDevicesDir;
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HANDLE DosDevicesObj;
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PWSTR dosPath;
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PWSTR currentDosPath;
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ULONG Context;
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ULONG Length;
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BOOLEAN RestartScan;
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CHAR Buffer[1024];
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WCHAR LinkSource[2*MAX_PATH];
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WCHAR LinkTarget[2*MAX_PATH];
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POBJECT_DIRECTORY_INFORMATION DirInfo;
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UINT PrefixLength;
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UINT NtPathLength;
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WCHAR canonNtPath[MAX_PATH];
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OBJECT_ATTRIBUTES Obja;
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HANDLE ObjectHandle;
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PWSTR ntPath;
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//
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// Canonicalize the NT path by following the symbolic link.
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//
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ntPath = (PWSTR) NtPath;
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dosPath = NULL;
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RtlInitUnicodeString(&UnicodeString,ntPath);
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InitializeObjectAttributes(
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&Obja,
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&UnicodeString,
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OBJ_CASE_INSENSITIVE,
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NULL,
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NULL
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);
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NtPathLength = UnicodeString.Length/sizeof(WCHAR);
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PrefixLength = UnicodeString.Length/sizeof(WCHAR);
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for (;;) {
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Status = NtOpenSymbolicLinkObject(
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&ObjectHandle,
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READ_CONTROL | SYMBOLIC_LINK_QUERY,
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&Obja
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);
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if (NT_SUCCESS(Status)) {
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UnicodeString.Buffer = canonNtPath;
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UnicodeString.Length = 0;
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UnicodeString.MaximumLength = sizeof(WCHAR)*MAX_PATH;
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RtlZeroMemory(canonNtPath, UnicodeString.MaximumLength);
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Status = NtQuerySymbolicLinkObject(ObjectHandle,&UnicodeString,NULL);
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if(NT_SUCCESS(Status)) {
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if (NtPathLength > PrefixLength) {
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RtlCopyMemory((PCHAR) canonNtPath + UnicodeString.Length,
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ntPath + PrefixLength,
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(NtPathLength - PrefixLength)*sizeof(WCHAR));
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}
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ntPath = canonNtPath;
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}
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NtClose(ObjectHandle);
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break;
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}
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RtlInitUnicodeString(&UnicodeString,ntPath);
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PrefixLength--;
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while (PrefixLength > 0) {
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if (ntPath[PrefixLength] == '\\') {
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break;
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}
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PrefixLength--;
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}
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if (!PrefixLength) {
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break;
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}
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UnicodeString.Length = (USHORT)(PrefixLength*sizeof(WCHAR));
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InitializeObjectAttributes(
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&Obja,
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&UnicodeString,
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OBJ_CASE_INSENSITIVE,
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NULL,
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NULL
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);
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}
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NtPathLength = lstrlen(ntPath);
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//
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// Open \DosDevices directory.
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//
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RtlInitUnicodeString(&UnicodeString,L"\\DosDevices");
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InitializeObjectAttributes(&Attributes,&UnicodeString,OBJ_CASE_INSENSITIVE,NULL,NULL);
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Status = NtOpenDirectoryObject(&DosDevicesDir,DIRECTORY_QUERY,&Attributes);
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if(!NT_SUCCESS(Status)) {
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return(NULL);
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}
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//
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// Iterate each object in that directory.
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//
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Context = 0;
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RestartScan = TRUE;
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Status = NtQueryDirectoryObject(
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DosDevicesDir,
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Buffer,
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sizeof(Buffer),
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TRUE,
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RestartScan,
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&Context,
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&Length
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);
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RestartScan = FALSE;
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DirInfo = (POBJECT_DIRECTORY_INFORMATION)Buffer;
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while(NT_SUCCESS(Status)) {
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DirInfo->Name.Buffer[DirInfo->Name.Length/sizeof(WCHAR)] = 0;
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DirInfo->TypeName.Buffer[DirInfo->TypeName.Length/sizeof(WCHAR)] = 0;
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//
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// Skip this entry if it's not a symbolic link.
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//
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if(DirInfo->Name.Length && !lstrcmpi(DirInfo->TypeName.Buffer,L"SymbolicLink")) {
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//
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// Get this \DosDevices object's link target.
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//
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UnicodeString.Buffer = LinkSource;
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UnicodeString.Length = sizeof(L"\\DosDevices\\") - sizeof(WCHAR);
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UnicodeString.MaximumLength = sizeof(LinkSource);
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lstrcpy(LinkSource,L"\\DosDevices\\");
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RtlAppendUnicodeStringToString(&UnicodeString,&DirInfo->Name);
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InitializeObjectAttributes(&Attributes,&UnicodeString,OBJ_CASE_INSENSITIVE,NULL,NULL);
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Status = NtOpenSymbolicLinkObject(
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&DosDevicesObj,
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READ_CONTROL|SYMBOLIC_LINK_QUERY,
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&Attributes
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);
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if(NT_SUCCESS(Status)) {
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UnicodeString.Buffer = LinkTarget;
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UnicodeString.Length = 0;
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UnicodeString.MaximumLength = sizeof(LinkTarget);
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Status = NtQuerySymbolicLinkObject(DosDevicesObj,&UnicodeString,NULL);
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CloseHandle(DosDevicesObj);
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if(NT_SUCCESS(Status)) {
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//
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// Make sure LinkTarget is nul-terminated.
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//
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PrefixLength = UnicodeString.Length/sizeof(WCHAR);
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UnicodeString.Buffer[PrefixLength] = 0;
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//
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// See if it's a prefix of the path we're converting,
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//
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if(!_wcsnicmp(ntPath,LinkTarget,PrefixLength)) {
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//
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// Got a match.
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//
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currentDosPath = dosPath;
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if(dosPath = MyMalloc(DirInfo->Name.Length + ((NtPathLength - PrefixLength + 1)*sizeof(WCHAR)))) {
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lstrcpy(dosPath,DirInfo->Name.Buffer);
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lstrcat(dosPath,ntPath + PrefixLength);
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}
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if (currentDosPath) {
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if (lstrlen(currentDosPath) < lstrlen(dosPath)) {
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MyFree(dosPath);
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dosPath = currentDosPath;
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} else {
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MyFree(currentDosPath);
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}
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}
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}
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}
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}
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}
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//
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// Go on to next object.
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//
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Status = NtQueryDirectoryObject(
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DosDevicesDir,
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Buffer,
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sizeof(Buffer),
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TRUE,
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RestartScan,
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&Context,
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&Length
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);
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}
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CloseHandle(DosDevicesDir);
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return dosPath;
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}
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BOOL
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SetNvRamVariable(
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IN PCWSTR VarName,
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IN PCWSTR VarValue
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)
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{
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UNICODE_STRING VarNameU,VarValueU;
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NTSTATUS Status;
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//
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// Set up unicode strings.
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//
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RtlInitUnicodeString(&VarNameU ,VarName );
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RtlInitUnicodeString(&VarValueU,VarValue);
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pSetupEnablePrivilege(SE_SYSTEM_ENVIRONMENT_NAME,TRUE);
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Status = NtSetSystemEnvironmentValue(&VarNameU,&VarValueU);
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return(NT_SUCCESS(Status));
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}
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BOOL
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ChangeBootTimeoutNvram(
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IN UINT Timeout
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)
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/*++
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Routine Description:
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Changes the boot countdown value in nv-ram.
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The non-ARC version (which operates on boot.ini) is in i386\bootini.c.
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Arguments:
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Timeout - supplies new timeout value, in seconds.
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Return Value:
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None.
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--*/
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{
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WCHAR TimeoutValue[24];
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wsprintf(TimeoutValue,L"%u",Timeout);
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if(!SetNvRamVariable(L"COUNTDOWN",TimeoutValue)) {
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return(FALSE);
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}
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return(SetNvRamVariable(L"AUTOLOAD",L"YES"));
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}
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#if defined(EFI_NVRAM_ENABLED)
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BOOL
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ChangeBootTimeoutEfiNvram(
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IN UINT Timeout
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)
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/*++
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Routine Description:
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Changes the boot countdown value in EFI nv-ram.
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Arguments:
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Timeout - supplies new timeout value, in seconds.
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Return Value:
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None.
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--*/
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{
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NTSTATUS Status;
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BOOT_OPTIONS BootOptions;
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ASSERT(IsEfi());
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BootOptions.Version = BOOT_OPTIONS_VERSION;
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BootOptions.Length = sizeof(BootOptions);
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BootOptions.Timeout = Timeout;
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pSetupEnablePrivilege(SE_SYSTEM_ENVIRONMENT_NAME,TRUE);
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Status = NtSetBootOptions(&BootOptions, BOOT_OPTIONS_FIELD_TIMEOUT);
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return(NT_SUCCESS(Status));
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}
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#endif // defined(EFI_NVRAM_ENABLED)
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#if defined(_X86_)
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BOOL
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IsArc(
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VOID
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)
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/*++
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Routine Description:
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Run time check to determine if this is an Arc system. We attempt to read an
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Arc variable using the Hal. This will fail for Bios based systems.
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Arguments:
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None
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Return Value:
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True = This is an Arc system.
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--*/
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{
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UNICODE_STRING UnicodeString;
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NTSTATUS Status;
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WCHAR Buffer[4096];
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if(!pSetupEnablePrivilege(SE_SYSTEM_ENVIRONMENT_NAME,TRUE))
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return(FALSE); // need better error handling?
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//
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// Get the env var into the temp buffer.
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//
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RtlInitUnicodeString(&UnicodeString, L"OSLOADER");
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Status = NtQuerySystemEnvironmentValue(
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&UnicodeString,
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Buffer,
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sizeof(Buffer)/sizeof(WCHAR),
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NULL
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);
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return(NT_SUCCESS(Status) ? TRUE: FALSE);
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}
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#endif
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BOOL
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ChangeBootTimeout(
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IN UINT Timeout
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)
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/*++
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Routine Description:
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Changes the boot countdown value; decides whether
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to use ARC or non-ARC version.
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Arguments:
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Timeout - supplies new timeout value, in seconds.
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Return Value:
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None.
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--*/
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{
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#if defined(EFI_NVRAM_ENABLED)
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if (IsEfi()) {
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return ChangeBootTimeoutEfiNvram(Timeout);
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}
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#endif
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if (IsArc()) {
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return ChangeBootTimeoutNvram(Timeout);
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}
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#if defined(_X86_)
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return ChangeBootTimeoutBootIni(Timeout);
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#else
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return FALSE;
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#endif
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}
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