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317 lines
8.0 KiB
317 lines
8.0 KiB
/*++
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Copyright (c) 2000 Microsoft Corporation
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Module Name:
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Write.c
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Abstract:
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This module implements the File Write routine for Write called by the
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Fsd/Fsp dispatch drivers.
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// @@BEGIN_DDKSPLIT
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Author:
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Tom Jolly [tomjolly] 8-Aug-2000
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Revision History:
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// @@END_DDKSPLIT
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--*/
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#include "UdfProcs.h"
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//
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// The Bug check file id for this module
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//
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#define BugCheckFileId (UDFS_BUG_CHECK_WRITE)
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//
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// The local debug trace level
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//
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#define Dbg (UDFS_DEBUG_LEVEL_WRITE)
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NTSTATUS
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UdfCommonWrite (
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IN PIRP_CONTEXT IrpContext,
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IN PIRP Irp
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)
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{
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PIO_STACK_LOCATION IrpSp;
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PFILE_OBJECT FileObject;
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TYPE_OF_OPEN TypeOfOpen;
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PFCB Fcb;
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PCCB Ccb;
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BOOLEAN Wait;
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BOOLEAN PagingIo;
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BOOLEAN SynchronousIo;
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BOOLEAN WriteToEof;
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LONGLONG StartingOffset;
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LONGLONG ByteCount;
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NTSTATUS Status = STATUS_SUCCESS;
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UDF_IO_CONTEXT LocalIoContext;
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//
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// Get current Irp stack location and file object
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//
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IrpSp = IoGetCurrentIrpStackLocation( Irp );
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FileObject = IrpSp->FileObject;
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DebugTrace((+1, Dbg, "UdfCommonWrite\n"));
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DebugTrace(( 0, Dbg, "Irp = %8lx\n", Irp));
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DebugTrace(( 0, Dbg, "ByteCount = %8lx\n", IrpSp->Parameters.Write.Length));
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DebugTrace(( 0, Dbg, "ByteOffset.LowPart = %8lx\n", IrpSp->Parameters.Write.ByteOffset.LowPart));
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DebugTrace(( 0, Dbg, "ByteOffset.HighPart = %8lx\n", IrpSp->Parameters.Write.ByteOffset.HighPart));
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//
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// Extract the nature of the write from the file object, and case on it
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//
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TypeOfOpen = UdfDecodeFileObject( FileObject, &Fcb, &Ccb);
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//
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// We only support write to the volume file
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//
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if (TypeOfOpen != UserVolumeOpen) {
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Irp->IoStatus.Information = 0;
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UdfCompleteRequest( IrpContext, Irp, STATUS_NOT_IMPLEMENTED );
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return STATUS_NOT_IMPLEMENTED;
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}
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ASSERT( Fcb == IrpContext->Vcb->VolumeDasdFcb);
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ASSERT( Ccb != NULL);
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//
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// Initialize the appropriate local variables.
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//
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Wait = BooleanFlagOn(IrpContext->Flags, IRP_CONTEXT_FLAG_WAIT);
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PagingIo = BooleanFlagOn(Irp->Flags, IRP_PAGING_IO);
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SynchronousIo = BooleanFlagOn(FileObject->Flags, FO_SYNCHRONOUS_IO);
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//
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// Extract the bytecount and starting offset
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//
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ByteCount = IrpSp->Parameters.Write.Length;
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StartingOffset = IrpSp->Parameters.Write.ByteOffset.QuadPart;
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WriteToEof = (StartingOffset == -1);
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Irp->IoStatus.Information = 0;
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//
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// If there is nothing to write, return immediately
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//
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if (ByteCount == 0) {
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UdfCompleteRequest( IrpContext, Irp, STATUS_SUCCESS );
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return STATUS_SUCCESS;
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}
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//
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// Watch for overflow
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//
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if ((MAXLONGLONG - StartingOffset) < ByteCount) {
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UdfCompleteRequest( IrpContext, Irp, STATUS_INVALID_PARAMETER );
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return STATUS_INVALID_PARAMETER;
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}
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//
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// Not sure what we're synchronising against, but....
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//
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UdfAcquireFileShared( IrpContext, Fcb );
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try {
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//
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// Verify the Fcb. Allow writes if this handle is dismounting
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// the volume.
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//
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if ((NULL == Ccb) || !FlagOn( Ccb->Flags, CCB_FLAG_DISMOUNT_ON_CLOSE)) {
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UdfVerifyFcbOperation( IrpContext, Fcb );
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}
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if ((NULL == Ccb) || !FlagOn( Ccb->Flags, CCB_FLAG_ALLOW_EXTENDED_DASD_IO )) {
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//
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// Clamp to volume size
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//
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if ( StartingOffset >= Fcb->FileSize.QuadPart) {
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try_leave( NOTHING);
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}
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if ( ByteCount > (Fcb->FileSize.QuadPart - StartingOffset)) {
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ByteCount = Fcb->FileSize.QuadPart - StartingOffset;
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if (0 == ByteCount) {
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try_leave( NOTHING);
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}
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}
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}
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else {
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//
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// This has a peculiar interpretation, but just adjust the starting
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// byte to the end of the visible volume.
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//
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if (WriteToEof) {
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StartingOffset = Fcb->FileSize.QuadPart;
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}
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}
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//
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// Initialize the IoContext for the write.
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// If there is a context pointer, we need to make sure it was
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// allocated and not a stale stack pointer.
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//
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if (IrpContext->IoContext == NULL ||
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!FlagOn( IrpContext->Flags, IRP_CONTEXT_FLAG_ALLOC_IO )) {
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//
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// If we can wait, use the context on the stack. Otherwise
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// we need to allocate one.
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//
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if (Wait) {
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IrpContext->IoContext = &LocalIoContext;
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ClearFlag( IrpContext->Flags, IRP_CONTEXT_FLAG_ALLOC_IO );
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} else {
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IrpContext->IoContext = UdfAllocateIoContext();
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SetFlag( IrpContext->Flags, IRP_CONTEXT_FLAG_ALLOC_IO );
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}
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}
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RtlZeroMemory( IrpContext->IoContext, sizeof( UDF_IO_CONTEXT ));
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//
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// Store whether we allocated this context structure in the structure
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// itself.
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//
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IrpContext->IoContext->AllocatedContext =
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BooleanFlagOn( IrpContext->Flags, IRP_CONTEXT_FLAG_ALLOC_IO );
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if (Wait) {
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KeInitializeEvent( &IrpContext->IoContext->SyncEvent,
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NotificationEvent,
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FALSE );
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} else {
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IrpContext->IoContext->ResourceThreadId = ExGetCurrentResourceThread();
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IrpContext->IoContext->Resource = Fcb->Resource;
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IrpContext->IoContext->RequestedByteCount = (ULONG)ByteCount;
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}
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//
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// For DASD we have to probe and lock the user's buffer
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//
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UdfLockUserBuffer( IrpContext, (ULONG)ByteCount, IoReadAccess );
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//
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// Set the FO_MODIFIED flag here to trigger a verify when this
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// handle is closed. Note that we can err on the conservative
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// side with no problem, i.e. if we accidently do an extra
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// verify there is no problem.
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//
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SetFlag( FileObject->Flags, FO_FILE_MODIFIED );
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//
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// Write the data and wait for the results
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//
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Irp->IoStatus.Information = (ULONG)ByteCount;
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UdfSingleAsync( IrpContext,
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StartingOffset,
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(ULONG)ByteCount);
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if (!Wait) {
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//
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// We, nor anybody else, need the IrpContext any more.
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//
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ClearFlag( IrpContext->Flags, IRP_CONTEXT_FLAG_ALLOC_IO);
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UdfCleanupIrpContext( IrpContext, TRUE);
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DebugTrace((-1, Dbg, "UdfCommonWrite -> STATUS_PENDING\n"));
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try_leave( Status = STATUS_PENDING);
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}
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UdfWaitSync( IrpContext );
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//
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// If the call didn't succeed, raise the error status
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//
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Status = Irp->IoStatus.Status;
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if (!NT_SUCCESS( Status)) {
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UdfNormalizeAndRaiseStatus( IrpContext, Status );
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}
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//
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// Update the current file position. We assume that
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// open/create zeros out the CurrentByteOffset field.
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//
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if (SynchronousIo && !PagingIo) {
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FileObject->CurrentByteOffset.QuadPart =
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StartingOffset + Irp->IoStatus.Information;
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}
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}
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finally {
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UdfReleaseFile( IrpContext, Fcb);
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DebugTrace((-1, Dbg, "UdfCommonWrite -> %08lx\n", Status ));
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}
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if (STATUS_PENDING != Status) {
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UdfCompleteRequest( IrpContext, Irp, Status );
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}
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return Status;
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}
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