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677 lines
17 KiB
677 lines
17 KiB
/*++
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Copyright (c) 1989 Microsoft Corporation
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Module Name:
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dfs.c
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Abstract:
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This module contains various support routines for processing Dfs related operations.
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--*/
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#include "precomp.h"
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#include "dfs.tmh"
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#pragma hdrstop
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#include <dfsfsctl.h>
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#define BugCheckFileId SRV_FILE_DFS
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NTSTATUS
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DfsGetReferrals(
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ULONG ClientIPAddress,
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PUNICODE_STRING DfsName,
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USHORT MaxReferralLevel,
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PVOID ReferralListBuffer,
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PULONG SizeReferralListBuffer
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);
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text( PAGE, SrvInitializeDfs )
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#pragma alloc_text( PAGE, SrvTerminateDfs )
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#pragma alloc_text( PAGE, SrvSmbGetDfsReferral )
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#pragma alloc_text( PAGE, SrvSmbReportDfsInconsistency )
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#pragma alloc_text( PAGE, DfsGetReferrals )
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#pragma alloc_text( PAGE, DfsNormalizeName )
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#pragma alloc_text( PAGE, DfsFindShareName )
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#pragma alloc_text( PAGE, SrvIsShareInDfs )
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#endif
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//
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// Initialize with the Dfs driver. Called at startup
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//
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VOID
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SrvInitializeDfs()
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{
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NTSTATUS status;
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HANDLE dfsHandle;
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UNICODE_STRING dfsDriverName;
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OBJECT_ATTRIBUTES objectAttributes;
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IO_STATUS_BLOCK ioStatusBlock;
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PAGED_CODE();
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//
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// Get the DFS dispatch entry for file control operations
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//
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RtlInitUnicodeString( &dfsDriverName, DFS_SERVER_NAME );
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SrvInitializeObjectAttributes_U(
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&objectAttributes,
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&dfsDriverName,
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0,
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NULL,
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NULL
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);
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status = IoCreateFile(
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&dfsHandle,
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GENERIC_READ | GENERIC_WRITE,
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&objectAttributes,
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&ioStatusBlock,
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NULL,
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FILE_ATTRIBUTE_NORMAL,
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FILE_SHARE_READ | FILE_SHARE_WRITE,
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FILE_OPEN,
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0, // Create Options
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NULL, // EA Buffer
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0, // EA Length
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CreateFileTypeNone, // File type
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NULL, // ExtraCreateParameters
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IO_FORCE_ACCESS_CHECK // Options
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);
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if( NT_SUCCESS( status ) ) {
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//
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// Get a pointer to the fast Device Control entry point of the Dfs driver so
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// we can quickly perform Dfs operations
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//
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status = ObReferenceObjectByHandle(
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dfsHandle,
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0,
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NULL,
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KernelMode,
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(PVOID *)&SrvDfsFileObject,
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NULL
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);
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if( NT_SUCCESS( status ) ) {
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PFAST_IO_DISPATCH fastIoDispatch;
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SrvDfsDeviceObject = IoGetRelatedDeviceObject( SrvDfsFileObject );
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fastIoDispatch = SrvDfsDeviceObject->DriverObject->FastIoDispatch;
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if( fastIoDispatch != NULL &&
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fastIoDispatch->SizeOfFastIoDispatch > FIELD_OFFSET( FAST_IO_DISPATCH, FastIoDeviceControl ) ) {
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SrvDfsFastIoDeviceControl = fastIoDispatch->FastIoDeviceControl;
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}
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if( SrvDfsFastIoDeviceControl == NULL ) {
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ObDereferenceObject( SrvDfsFileObject );
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SrvDfsFileObject = NULL;
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SrvDfsDeviceObject = NULL;
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}
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}
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SrvNtClose( dfsHandle, FALSE );
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}
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IF_DEBUG( DFS ) {
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if( SrvDfsFastIoDeviceControl == NULL ) {
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KdPrint(( "SRV: Dfs operations unavailable, status %X\n", status ));
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}
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}
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}
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//
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// De-initialize with the Dfs driver. Called at server shutdown
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//
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VOID
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SrvTerminateDfs()
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{
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PAGED_CODE();
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//
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// Disconnect from the Dfs driver
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//
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if( SrvDfsFileObject != NULL ) {
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SrvDfsFastIoDeviceControl = NULL;
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SrvDfsDeviceObject = NULL;
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ObDereferenceObject( SrvDfsFileObject );
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SrvDfsFileObject = NULL;
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}
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}
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SMB_TRANS_STATUS
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SrvSmbGetDfsReferral (
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IN OUT PWORK_CONTEXT WorkContext
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)
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{
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PTRANSACTION transaction;
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UNICODE_STRING dfsName;
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PREQ_GET_DFS_REFERRAL request;
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NTSTATUS status = STATUS_SUCCESS;
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PTREE_CONNECT treeConnect;
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PSHARE share;
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PVOID referrals;
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ULONG size;
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ULONG dataCount;
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SMB_TRANS_STATUS SmbStatus = SmbTransStatusInProgress;
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PAGED_CODE();
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if (WorkContext->PreviousSMB == EVENT_TYPE_SMB_LAST_EVENT)
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WorkContext->PreviousSMB = EVENT_TYPE_SMB_GET_DFS_REFERRALS;
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SrvWmiStartContext(WorkContext);
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transaction = WorkContext->Parameters.Transaction;
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request = (PREQ_GET_DFS_REFERRAL)transaction->InParameters;
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//
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// Verify that enough parameter bytes were sent and that we're allowed
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// to return enough parameter bytes.
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// The +1 is to ensure that there is at least room for a single unicode
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// character in the supplied buffer, since this assumption is implicitly
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// made below.
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//
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if( (transaction->ParameterCount <
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sizeof( REQ_GET_DFS_REFERRAL ) + 1) ||
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!SMB_IS_UNICODE( WorkContext ) ) {
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//
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// Not enough parameter bytes were sent.
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//
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IF_DEBUG( DFS ) {
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KdPrint(( "SrvSmbGetDfsReferral: bad parameter byte counts: "
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"%ld\n",
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transaction->ParameterCount ));
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if( !SMB_IS_UNICODE( WorkContext ) ) {
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KdPrint(( "SrvSmbGetDfsReferral: NOT UNICODE!\n" ));
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}
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}
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SrvLogInvalidSmb( WorkContext );
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SrvSetSmbError( WorkContext, STATUS_INVALID_SMB );
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SmbStatus = SmbTransStatusErrorWithoutData;
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status = STATUS_INVALID_SMB;
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goto Cleanup;
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}
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//
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// This SMB can only be sent over IPC$, by a logged-in user
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//
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treeConnect = transaction->TreeConnect;
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share = treeConnect->Share;
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if( share->ShareType != ShareTypePipe ) {
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IF_DEBUG( DFS ) {
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if( share->ShareType != ShareTypePipe ) {
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KdPrint(( "SrvSmbGetDfsReferral: Wrong share type %d\n", share->ShareType ));
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}
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}
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SrvSetSmbError( WorkContext, STATUS_ACCESS_DENIED );
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SmbStatus = SmbTransStatusErrorWithoutData;
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status = STATUS_ACCESS_DENIED;
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goto Cleanup;
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}
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dfsName.Buffer = (PWCHAR)( request->RequestFileName );
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dfsName.Length = (USHORT)(transaction->TotalParameterCount -
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FIELD_OFFSET(REQ_GET_DFS_REFERRAL, RequestFileName));
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dfsName.MaximumLength = dfsName.Length;
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dfsName.Length -= sizeof(UNICODE_NULL);
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dataCount = transaction->MaxDataCount;
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status = DfsGetReferrals( WorkContext->Connection->ClientIPAddress,
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&dfsName, request->MaxReferralLevel,
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transaction->OutData,
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&dataCount );
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if( !NT_SUCCESS( status ) ) {
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SrvSetSmbError( WorkContext, status );
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SmbStatus = SmbTransStatusErrorWithoutData;
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goto Cleanup;
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}
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transaction->SetupCount = 0;
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transaction->ParameterCount = 0;
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transaction->DataCount = dataCount;
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SmbStatus = SmbTransStatusSuccess;
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Cleanup:
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SrvWmiEndContext(WorkContext);
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return SmbStatus;
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}
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NTSTATUS
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DfsGetReferrals(
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ULONG IPAddress,
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PUNICODE_STRING DfsName,
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USHORT MaxReferralLevel,
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PVOID ReferralListBuffer,
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PULONG SizeReferralListBuffer
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)
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{
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DFS_GET_REFERRALS_INPUT_ARG dfsArgs;
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IO_STATUS_BLOCK ioStatus;
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PRESP_GET_DFS_REFERRAL pResp;
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PUCHAR eBuffer;
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ULONG i;
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PAGED_CODE();
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if( SrvDfsFastIoDeviceControl == NULL ) {
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return STATUS_FS_DRIVER_REQUIRED;
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}
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IF_DEBUG( DFS ) {
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KdPrint(( "SRV: Referral sought for: <%wZ>\n", DfsName ));
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}
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//
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// Call DFS, getting back the vector of referrals
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//
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RtlZeroMemory( &dfsArgs, sizeof(dfsArgs) );
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dfsArgs.DfsPathName = *DfsName;
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dfsArgs.MaxReferralLevel = MaxReferralLevel;
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if( IPAddress != 0 ) {
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dfsArgs.IpAddress.IpFamily = TDI_ADDRESS_TYPE_IP;
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dfsArgs.IpAddress.IpLen = sizeof( IPAddress );
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RtlCopyMemory( dfsArgs.IpAddress.IpData, &IPAddress, sizeof( IPAddress ) );
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}
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SrvDfsFastIoDeviceControl(
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SrvDfsFileObject,
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TRUE,
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&dfsArgs,
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sizeof( dfsArgs ),
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ReferralListBuffer,
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*SizeReferralListBuffer,
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FSCTL_DFS_GET_REFERRALS,
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&ioStatus,
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SrvDfsDeviceObject
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);
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if( NT_SUCCESS( ioStatus.Status ) ||
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ioStatus.Status == STATUS_BUFFER_OVERFLOW ) {
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*SizeReferralListBuffer = (ULONG)ioStatus.Information;
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} else {
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IF_DEBUG( DFS ) {
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KdPrint(("\tSrvDfsFastIoDeviceControl returned %X, 0x%p\n",
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ioStatus.Status, (PVOID)ioStatus.Information ));
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}
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}
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return ioStatus.Status;
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}
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SMB_TRANS_STATUS
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SrvSmbReportDfsInconsistency (
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IN OUT PWORK_CONTEXT WorkContext
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)
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{
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//
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// We no longer support middle triangles in DFS
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//
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SrvSetSmbError( WorkContext, STATUS_NOT_SUPPORTED );
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return SmbTransStatusErrorWithoutData;
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#if XXX
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PTRANSACTION transaction;
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UNICODE_STRING dfsName;
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PREQ_REPORT_DFS_INCONSISTENCY request;
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PDFS_REFERRAL_V1 ref;
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PTREE_CONNECT treeConnect;
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PSHARE share;
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DFS_REPORT_INCONSISTENCY_ARG dfsArgs;
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IO_STATUS_BLOCK ioStatus;
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PAGED_CODE();
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transaction = WorkContext->Parameters.Transaction;
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request = (PREQ_REPORT_DFS_INCONSISTENCY)transaction->InParameters;
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ref = (PDFS_REFERRAL_V1)transaction->InData;
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//
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// Verify that enough parameter bytes were sent and the SMB is unicode
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//
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if( transaction->ParameterCount < sizeof( *request ) ||
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!SMB_IS_UNICODE( WorkContext ) ) {
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//
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// Not enough parameter bytes were sent.
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//
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IF_DEBUG( DFS ) {
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KdPrint(( "SrvSmbReportDfsInconsistency: bad parameter byte counts: "
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"%ld %ld\n",
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transaction->ParameterCount, sizeof( *request ) ));
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if( !SMB_IS_UNICODE( WorkContext ) ) {
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KdPrint(( "SrvSmbReportDfsInconsistency: NOT UNICODE!\n" ));
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}
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}
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SrvLogInvalidSmb( WorkContext );
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SrvSetSmbError( WorkContext, STATUS_INVALID_SMB );
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return SmbTransStatusErrorWithoutData;
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}
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//
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// This SMB can only be sent over IPC$, by a logged-in user
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//
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treeConnect = transaction->TreeConnect;
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share = treeConnect->Share;
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if( share->ShareType != ShareTypePipe ||
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transaction->Session->IsNullSession ) {
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IF_DEBUG( DFS ) {
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if( share->ShareType != ShareTypePipe ) {
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KdPrint(( "SrvSmbReportDfsInconsistency: Wrong share type %d\n", share->ShareType ));
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}
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if( transaction->Session->IsNullSession ) {
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KdPrint(( "SrvSmbReportDfsInconsistency: NULL session!\n" ));
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}
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}
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SrvSetSmbError( WorkContext, STATUS_ACCESS_DENIED );
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return SmbTransStatusErrorWithoutData;
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}
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dfsName.Buffer = ALIGN_SMB_WSTR( request->RequestFileName );
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dfsName.Length = (USHORT)transaction->TotalParameterCount -
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sizeof(UNICODE_NULL);
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dfsName.MaximumLength = dfsName.Length;
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IF_DEBUG( DFS ) {
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KdPrint(( "SrvSmbReportDfsInconsistency: %wZ\n", &dfsName ));
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}
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dfsArgs.DfsPathName = dfsName;
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dfsArgs.Ref = (PBYTE) ref;
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if (SrvDfsFastIoDeviceControl != NULL) {
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SrvDfsFastIoDeviceControl(
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SrvDfsFileObject,
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TRUE,
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&dfsArgs,
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sizeof( dfsArgs ),
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NULL,
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0,
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FSCTL_DFS_REPORT_INCONSISTENCY,
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&ioStatus,
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SrvDfsDeviceObject
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);
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}
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transaction->ParameterCount = 0;
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transaction->DataCount = 0;
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return SmbTransStatusSuccess;
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#endif
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}
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NTSTATUS SRVFASTCALL
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DfsNormalizeName(
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IN PSHARE Share,
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IN PUNICODE_STRING RelatedPath OPTIONAL,
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IN BOOLEAN StripLastComponent,
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IN PUNICODE_STRING String
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)
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{
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DFS_TRANSLATE_PATH_ARG dfsArgs;
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IO_STATUS_BLOCK ioStatus;
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#if DBG
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UNICODE_STRING save = *String;
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#endif
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PAGED_CODE();
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//
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// If Share->NtPathName covers String, then the remaining pathname in String->Buffer should
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// be moved to String->Buffer and String->Length should be adjusted. In other words, on return
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// the value of String->Buffer must not be changed, but the contents of String->Buffer needs to
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// be adjusted.
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//
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ASSERT( String->Buffer != NULL );
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IF_DEBUG( DFS ) {
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KdPrint(( "DfsNormalizeName: %p, Share: %wZ\n", String, &Share->NtPathName ));
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}
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if( Share->ShareType == ShareTypeDisk &&
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SrvDfsFastIoDeviceControl != NULL ) {
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//
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// Make an FSCTL to the DFS driver to normalize the name
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//
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dfsArgs.Flags = 0;
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if (StripLastComponent)
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dfsArgs.Flags |= DFS_TRANSLATE_STRIP_LAST_COMPONENT;
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dfsArgs.SubDirectory = Share->NtPathName;
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if (ARGUMENT_PRESENT(RelatedPath)) {
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UNICODE_STRING Parent;
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//ASSERT(RelatedPath->Length >= Share->DosPathName.Length);
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if (RelatedPath->Length <= Share->DosPathName.Length) {
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Parent.MaximumLength = Parent.Length = sizeof(WCHAR);
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Parent.Buffer = L"\\";
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} else {
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Parent.MaximumLength = Parent.Length =
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RelatedPath->Length - Share->DosPathName.Length;
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Parent.Buffer =
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&RelatedPath->Buffer[ Share->DosPathName.Length/sizeof(WCHAR) ];
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}
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dfsArgs.ParentPathName = Parent;
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} else {
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dfsArgs.ParentPathName.Length = 0;
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dfsArgs.ParentPathName.MaximumLength = 0;
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dfsArgs.ParentPathName.Buffer = NULL;
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}
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dfsArgs.DfsPathName = *String;
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SrvDfsFastIoDeviceControl(
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SrvDfsFileObject,
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TRUE,
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&dfsArgs,
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sizeof( dfsArgs ),
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NULL,
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0,
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FSCTL_DFS_TRANSLATE_PATH,
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&ioStatus,
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SrvDfsDeviceObject
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);
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if (NT_SUCCESS(ioStatus.Status)) {
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ASSERT( dfsArgs.DfsPathName.Buffer == String->Buffer );
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ASSERT( dfsArgs.DfsPathName.Length <= String->Length );
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ASSERT( dfsArgs.DfsPathName.MaximumLength >= dfsArgs.DfsPathName.Length );
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*String = dfsArgs.DfsPathName;
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IF_DEBUG( DFS ) {
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KdPrint(( "\t%wZ\n", String ));
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}
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}
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} else {
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ioStatus.Status = STATUS_FS_DRIVER_REQUIRED;
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}
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ASSERT( save.Buffer == String->Buffer );
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ASSERT( save.Length >= String->Length );
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if( !NT_SUCCESS( ioStatus.Status ) ) {
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IF_DEBUG( DFS ) {
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KdPrint(( "\tStatus %X\n", ioStatus.Status ));
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}
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}
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return ioStatus.Status;
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}
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|
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NTSTATUS SRVFASTCALL
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DfsFindShareName(
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IN PUNICODE_STRING ShareName
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)
|
|
{
|
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NTSTATUS status = STATUS_BAD_NETWORK_NAME;
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DFS_FIND_SHARE_ARG dfsArgs;
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IO_STATUS_BLOCK ioStatus;
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KAPC_STATE ApcState;
|
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PEPROCESS process;
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|
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//
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// Ensure we are in the system process
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//
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process = IoGetCurrentProcess();
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if ( process != SrvServerProcess ) {
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KeStackAttachProcess( SrvServerProcess, &ApcState );
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}
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//
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// If 'shareName' is known to the DFS driver, then we must return
|
|
// STATUS_PATH_NOT_COVERED. Otherwise we must return STATUS_BAD_NETWORK_NAME.
|
|
// This will cause the DFS client to come back and ask for a referral through
|
|
// the normal mechanism.
|
|
//
|
|
|
|
IF_DEBUG( DFS ) {
|
|
KdPrint(( "SRV: DfsFindShareName: %wZ\n", ShareName ));
|
|
}
|
|
|
|
if( SrvDfsFastIoDeviceControl != NULL ) {
|
|
|
|
dfsArgs.ShareName = *ShareName;
|
|
|
|
SrvDfsFastIoDeviceControl(
|
|
SrvDfsFileObject,
|
|
TRUE,
|
|
&dfsArgs,
|
|
sizeof( dfsArgs ),
|
|
NULL,
|
|
0,
|
|
FSCTL_DFS_FIND_SHARE,
|
|
&ioStatus,
|
|
SrvDfsDeviceObject
|
|
);
|
|
|
|
if( ioStatus.Status == STATUS_PATH_NOT_COVERED ) {
|
|
status = ioStatus.Status;
|
|
}
|
|
}
|
|
|
|
IF_DEBUG( DFS ) {
|
|
KdPrint(( "SRV: DfsFindShareName: status %X\n", status ));
|
|
}
|
|
|
|
//
|
|
// Get back to where we were
|
|
//
|
|
if( process != SrvServerProcess ) {
|
|
KeUnstackDetachProcess( &ApcState );
|
|
}
|
|
|
|
return status;
|
|
}
|
|
|
|
VOID SRVFASTCALL
|
|
SrvIsShareInDfs(
|
|
IN PSHARE Share,
|
|
OUT BOOLEAN *IsDfs,
|
|
OUT BOOLEAN *IsDfsRoot
|
|
)
|
|
{
|
|
DFS_IS_SHARE_IN_DFS_ARG dfsArgs;
|
|
IO_STATUS_BLOCK ioStatus;
|
|
KAPC_STATE ApcState;
|
|
PEPROCESS process;
|
|
|
|
PAGED_CODE();
|
|
|
|
*IsDfs = FALSE;
|
|
*IsDfsRoot = FALSE;
|
|
|
|
if( Share->ShareType != ShareTypeDisk ||
|
|
SrvDfsFastIoDeviceControl == NULL ) {
|
|
|
|
return;
|
|
}
|
|
|
|
dfsArgs.ServerType = 1; // SMB server
|
|
dfsArgs.ShareName = Share->ShareName;
|
|
dfsArgs.SharePath = Share->NtPathName;
|
|
|
|
//
|
|
// Ensure we are in the system process
|
|
//
|
|
process = IoGetCurrentProcess();
|
|
if ( process != SrvServerProcess ) {
|
|
KeStackAttachProcess( SrvServerProcess, &ApcState );
|
|
}
|
|
|
|
SrvDfsFastIoDeviceControl(
|
|
SrvDfsFileObject,
|
|
TRUE,
|
|
&dfsArgs,
|
|
sizeof( dfsArgs ),
|
|
NULL,
|
|
0,
|
|
FSCTL_DFS_IS_SHARE_IN_DFS,
|
|
&ioStatus,
|
|
SrvDfsDeviceObject
|
|
);
|
|
|
|
//
|
|
// Get back to where we were
|
|
//
|
|
if( process != SrvServerProcess ) {
|
|
KeUnstackDetachProcess( &ApcState );
|
|
}
|
|
|
|
if (NT_SUCCESS(ioStatus.Status)) {
|
|
|
|
if (dfsArgs.ShareType & DFS_SHARE_TYPE_DFS_VOLUME)
|
|
*IsDfs = TRUE;
|
|
|
|
if (dfsArgs.ShareType & DFS_SHARE_TYPE_ROOT)
|
|
*IsDfsRoot = TRUE;
|
|
|
|
}
|
|
|
|
}
|