mirror of
https://github.com/reactos/reactos.git
synced 2024-12-28 18:15:11 +00:00
14c3936251
Adapt some comments to new name. CORE-16373
673 lines
20 KiB
C
673 lines
20 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: drivers/fs/vfat/misc.c
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* PURPOSE: VFAT Filesystem
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* PROGRAMMER:
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*
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*/
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/* INCLUDES *****************************************************************/
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#include "vfat.h"
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#define NDEBUG
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#include <debug.h>
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/* GLOBALS ******************************************************************/
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const char* MajorFunctionNames[] =
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{
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"IRP_MJ_CREATE",
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"IRP_MJ_CREATE_NAMED_PIPE",
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"IRP_MJ_CLOSE",
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"IRP_MJ_READ",
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"IRP_MJ_WRITE",
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"IRP_MJ_QUERY_INFORMATION",
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"IRP_MJ_SET_INFORMATION",
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"IRP_MJ_QUERY_EA",
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"IRP_MJ_SET_EA",
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"IRP_MJ_FLUSH_BUFFERS",
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"IRP_MJ_QUERY_VOLUME_INFORMATION",
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"IRP_MJ_SET_VOLUME_INFORMATION",
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"IRP_MJ_DIRECTORY_CONTROL",
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"IRP_MJ_FILE_SYSTEM_CONTROL",
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"IRP_MJ_DEVICE_CONTROL",
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"IRP_MJ_INTERNAL_DEVICE_CONTROL",
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"IRP_MJ_SHUTDOWN",
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"IRP_MJ_LOCK_CONTROL",
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"IRP_MJ_CLEANUP",
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"IRP_MJ_CREATE_MAILSLOT",
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"IRP_MJ_QUERY_SECURITY",
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"IRP_MJ_SET_SECURITY",
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"IRP_MJ_POWER",
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"IRP_MJ_SYSTEM_CONTROL",
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"IRP_MJ_DEVICE_CHANGE",
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"IRP_MJ_QUERY_QUOTA",
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"IRP_MJ_SET_QUOTA",
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"IRP_MJ_PNP",
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"IRP_MJ_MAXIMUM_FUNCTION"
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};
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static LONG QueueCount = 0;
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static VOID VfatFreeIrpContext(PVFAT_IRP_CONTEXT);
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static PVFAT_IRP_CONTEXT VfatAllocateIrpContext(PDEVICE_OBJECT, PIRP);
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static NTSTATUS VfatQueueRequest(PVFAT_IRP_CONTEXT);
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/* FUNCTIONS ****************************************************************/
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static
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NTSTATUS
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VfatLockControl(
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IN PVFAT_IRP_CONTEXT IrpContext)
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{
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PVFATFCB Fcb;
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NTSTATUS Status;
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DPRINT("VfatLockControl(IrpContext %p)\n", IrpContext);
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ASSERT(IrpContext);
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Fcb = (PVFATFCB)IrpContext->FileObject->FsContext;
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if (IrpContext->DeviceObject == VfatGlobalData->DeviceObject)
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{
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return STATUS_INVALID_DEVICE_REQUEST;
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}
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if (vfatFCBIsDirectory(Fcb))
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{
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return STATUS_INVALID_PARAMETER;
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}
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IrpContext->Flags &= ~IRPCONTEXT_COMPLETE;
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Status = FsRtlProcessFileLock(&Fcb->FileLock,
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IrpContext->Irp,
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NULL);
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return Status;
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}
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static
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NTSTATUS
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VfatDeviceControl(
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IN PVFAT_IRP_CONTEXT IrpContext)
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{
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IoSkipCurrentIrpStackLocation(IrpContext->Irp);
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IrpContext->Flags &= ~IRPCONTEXT_COMPLETE;
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return IoCallDriver(IrpContext->DeviceExt->StorageDevice, IrpContext->Irp);
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}
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static
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NTSTATUS
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VfatDispatchRequest(
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IN PVFAT_IRP_CONTEXT IrpContext)
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{
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NTSTATUS Status;
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BOOLEAN QueueIrp, CompleteIrp;
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DPRINT("VfatDispatchRequest (IrpContext %p), is called for %s\n", IrpContext,
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IrpContext->MajorFunction >= IRP_MJ_MAXIMUM_FUNCTION ? "????" : MajorFunctionNames[IrpContext->MajorFunction]);
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ASSERT(IrpContext);
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FsRtlEnterFileSystem();
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switch (IrpContext->MajorFunction)
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{
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case IRP_MJ_CLOSE:
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Status = VfatClose(IrpContext);
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break;
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case IRP_MJ_CREATE:
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Status = VfatCreate(IrpContext);
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break;
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case IRP_MJ_READ:
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Status = VfatRead(IrpContext);
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break;
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case IRP_MJ_WRITE:
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Status = VfatWrite(&IrpContext);
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break;
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case IRP_MJ_FILE_SYSTEM_CONTROL:
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Status = VfatFileSystemControl(IrpContext);
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break;
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case IRP_MJ_QUERY_INFORMATION:
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Status = VfatQueryInformation(IrpContext);
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break;
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case IRP_MJ_SET_INFORMATION:
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Status = VfatSetInformation(IrpContext);
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break;
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case IRP_MJ_DIRECTORY_CONTROL:
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Status = VfatDirectoryControl(IrpContext);
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break;
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case IRP_MJ_QUERY_VOLUME_INFORMATION:
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Status = VfatQueryVolumeInformation(IrpContext);
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break;
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case IRP_MJ_SET_VOLUME_INFORMATION:
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Status = VfatSetVolumeInformation(IrpContext);
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break;
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case IRP_MJ_LOCK_CONTROL:
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Status = VfatLockControl(IrpContext);
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break;
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case IRP_MJ_DEVICE_CONTROL:
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Status = VfatDeviceControl(IrpContext);
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break;
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case IRP_MJ_CLEANUP:
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Status = VfatCleanup(IrpContext);
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break;
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case IRP_MJ_FLUSH_BUFFERS:
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Status = VfatFlush(IrpContext);
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break;
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case IRP_MJ_PNP:
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Status = VfatPnp(IrpContext);
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break;
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default:
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DPRINT1("Unexpected major function %x\n", IrpContext->MajorFunction);
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Status = STATUS_DRIVER_INTERNAL_ERROR;
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}
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if (IrpContext != NULL)
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{
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QueueIrp = BooleanFlagOn(IrpContext->Flags, IRPCONTEXT_QUEUE);
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CompleteIrp = BooleanFlagOn(IrpContext->Flags, IRPCONTEXT_COMPLETE);
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ASSERT((!CompleteIrp && !QueueIrp) ||
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(CompleteIrp && !QueueIrp) ||
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(!CompleteIrp && QueueIrp));
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if (CompleteIrp)
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{
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IrpContext->Irp->IoStatus.Status = Status;
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IoCompleteRequest(IrpContext->Irp, IrpContext->PriorityBoost);
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}
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if (QueueIrp)
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{
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/* Reset our status flags before queueing the IRP */
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IrpContext->Flags |= IRPCONTEXT_COMPLETE;
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IrpContext->Flags &= ~IRPCONTEXT_QUEUE;
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Status = VfatQueueRequest(IrpContext);
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}
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else
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{
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/* Unless the IRP was queued, always free the IRP context */
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VfatFreeIrpContext(IrpContext);
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}
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}
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FsRtlExitFileSystem();
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return Status;
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}
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VOID
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NTAPI
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VfatHandleDeferredWrite(
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IN PVOID IrpContext,
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IN PVOID Unused)
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{
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VfatDispatchRequest((PVFAT_IRP_CONTEXT)IrpContext);
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}
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NTSTATUS
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NTAPI
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VfatBuildRequest(
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IN PDEVICE_OBJECT DeviceObject,
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IN PIRP Irp)
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{
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NTSTATUS Status;
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PVFAT_IRP_CONTEXT IrpContext;
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DPRINT("VfatBuildRequest (DeviceObject %p, Irp %p)\n", DeviceObject, Irp);
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ASSERT(DeviceObject);
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ASSERT(Irp);
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IrpContext = VfatAllocateIrpContext(DeviceObject, Irp);
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if (IrpContext == NULL)
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{
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Status = STATUS_INSUFFICIENT_RESOURCES;
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Irp->IoStatus.Status = Status;
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IoCompleteRequest(Irp, IO_NO_INCREMENT);
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}
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else
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{
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Status = VfatDispatchRequest(IrpContext);
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}
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return Status;
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}
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static
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VOID
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VfatFreeIrpContext(
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PVFAT_IRP_CONTEXT IrpContext)
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{
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ASSERT(IrpContext);
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ExFreeToNPagedLookasideList(&VfatGlobalData->IrpContextLookasideList, IrpContext);
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}
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static
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PVFAT_IRP_CONTEXT
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VfatAllocateIrpContext(
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PDEVICE_OBJECT DeviceObject,
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PIRP Irp)
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{
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PVFAT_IRP_CONTEXT IrpContext;
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/*PIO_STACK_LOCATION Stack;*/
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UCHAR MajorFunction;
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DPRINT("VfatAllocateIrpContext(DeviceObject %p, Irp %p)\n", DeviceObject, Irp);
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ASSERT(DeviceObject);
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ASSERT(Irp);
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IrpContext = ExAllocateFromNPagedLookasideList(&VfatGlobalData->IrpContextLookasideList);
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if (IrpContext)
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{
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RtlZeroMemory(IrpContext, sizeof(VFAT_IRP_CONTEXT));
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IrpContext->Irp = Irp;
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IrpContext->DeviceObject = DeviceObject;
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IrpContext->DeviceExt = DeviceObject->DeviceExtension;
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IrpContext->Stack = IoGetCurrentIrpStackLocation(Irp);
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ASSERT(IrpContext->Stack);
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MajorFunction = IrpContext->MajorFunction = IrpContext->Stack->MajorFunction;
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IrpContext->MinorFunction = IrpContext->Stack->MinorFunction;
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IrpContext->FileObject = IrpContext->Stack->FileObject;
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IrpContext->Flags = IRPCONTEXT_COMPLETE;
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/* Easy cases that can wait */
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if (MajorFunction == IRP_MJ_CLEANUP ||
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MajorFunction == IRP_MJ_CREATE ||
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MajorFunction == IRP_MJ_SHUTDOWN ||
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MajorFunction == IRP_MJ_CLOSE /* likely to be fixed */)
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{
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SetFlag(IrpContext->Flags, IRPCONTEXT_CANWAIT);
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}
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/* Cases that can wait if synchronous IRP */
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else if ((MajorFunction == IRP_MJ_DEVICE_CONTROL ||
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MajorFunction == IRP_MJ_QUERY_INFORMATION ||
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MajorFunction == IRP_MJ_SET_INFORMATION ||
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MajorFunction == IRP_MJ_FLUSH_BUFFERS ||
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MajorFunction == IRP_MJ_LOCK_CONTROL ||
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MajorFunction == IRP_MJ_QUERY_VOLUME_INFORMATION ||
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MajorFunction == IRP_MJ_SET_VOLUME_INFORMATION ||
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MajorFunction == IRP_MJ_DIRECTORY_CONTROL ||
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MajorFunction == IRP_MJ_WRITE ||
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MajorFunction == IRP_MJ_READ) &&
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IoIsOperationSynchronous(Irp))
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{
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SetFlag(IrpContext->Flags, IRPCONTEXT_CANWAIT);
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}
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/* Cases that can wait if synchronous or if no FO */
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else if ((MajorFunction == IRP_MJ_FILE_SYSTEM_CONTROL ||
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MajorFunction == IRP_MJ_PNP) &&
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(IoGetCurrentIrpStackLocation(Irp)->FileObject == NULL ||
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IoIsOperationSynchronous(Irp)))
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{
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SetFlag(IrpContext->Flags, IRPCONTEXT_CANWAIT);
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}
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KeInitializeEvent(&IrpContext->Event, NotificationEvent, FALSE);
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IrpContext->RefCount = 0;
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IrpContext->PriorityBoost = IO_NO_INCREMENT;
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}
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return IrpContext;
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}
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static WORKER_THREAD_ROUTINE VfatDoRequest;
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static
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VOID
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NTAPI
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VfatDoRequest(
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PVOID Context)
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{
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PVFAT_IRP_CONTEXT IrpContext = Context;
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PDEVICE_EXTENSION DeviceExt;
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KIRQL OldIrql;
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InterlockedDecrement(&QueueCount);
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if (IrpContext->Stack->FileObject != NULL)
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{
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DeviceExt = IrpContext->Stack->DeviceObject->DeviceExtension;
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ObReferenceObject(DeviceExt->VolumeDevice);
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}
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do
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{
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DPRINT("VfatDoRequest(IrpContext %p), MajorFunction %x, %d\n",
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IrpContext, IrpContext->MajorFunction, QueueCount);
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VfatDispatchRequest(IrpContext);
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IrpContext = NULL;
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/* Now process any overflow items */
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if (DeviceExt != NULL)
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{
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KeAcquireSpinLock(&DeviceExt->OverflowQueueSpinLock, &OldIrql);
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if (DeviceExt->OverflowQueueCount != 0)
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{
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IrpContext = CONTAINING_RECORD(RemoveHeadList(&DeviceExt->OverflowQueue),
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VFAT_IRP_CONTEXT,
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WorkQueueItem.List);
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DeviceExt->OverflowQueueCount--;
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DPRINT("Processing overflow item for IRP %p context %p (%lu)\n",
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IrpContext->Irp, IrpContext, DeviceExt->OverflowQueueCount);
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}
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else
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{
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ASSERT(IsListEmpty(&DeviceExt->OverflowQueue));
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DeviceExt->PostedRequestCount--;
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}
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KeReleaseSpinLock(&DeviceExt->OverflowQueueSpinLock, OldIrql);
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}
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} while (IrpContext != NULL);
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if (DeviceExt != NULL)
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{
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ObDereferenceObject(DeviceExt->VolumeDevice);
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}
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}
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static
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NTSTATUS
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VfatQueueRequest(
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PVFAT_IRP_CONTEXT IrpContext)
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{
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PDEVICE_EXTENSION DeviceExt;
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KIRQL OldIrql;
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BOOLEAN Overflow;
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InterlockedIncrement(&QueueCount);
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DPRINT("VfatQueueRequest(IrpContext %p), %d\n", IrpContext, QueueCount);
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ASSERT(IrpContext != NULL);
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ASSERT(IrpContext->Irp != NULL);
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ASSERT(!(IrpContext->Flags & IRPCONTEXT_QUEUE) &&
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(IrpContext->Flags & IRPCONTEXT_COMPLETE));
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Overflow = FALSE;
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IrpContext->Flags |= IRPCONTEXT_CANWAIT;
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IoMarkIrpPending(IrpContext->Irp);
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/* We should not block more than two worker threads per volume,
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* or we might stop Cc from doing the work to unblock us.
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* Add additional requests into the overflow queue instead and process
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* them all in an existing worker thread (see VfatDoRequest above).
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*/
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if (IrpContext->Stack->FileObject != NULL)
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{
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DeviceExt = IrpContext->Stack->DeviceObject->DeviceExtension;
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KeAcquireSpinLock(&DeviceExt->OverflowQueueSpinLock, &OldIrql);
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if (DeviceExt->PostedRequestCount > 2)
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{
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DeviceExt->OverflowQueueCount++;
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DPRINT("Queue overflow. Adding IRP %p context %p to overflow queue (%lu)\n",
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IrpContext->Irp, IrpContext, DeviceExt->OverflowQueueCount);
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InsertTailList(&DeviceExt->OverflowQueue,
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&IrpContext->WorkQueueItem.List);
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Overflow = TRUE;
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}
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else
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{
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DeviceExt->PostedRequestCount++;
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}
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KeReleaseSpinLock(&DeviceExt->OverflowQueueSpinLock, OldIrql);
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}
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if (!Overflow)
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{
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ExInitializeWorkItem(&IrpContext->WorkQueueItem, VfatDoRequest, IrpContext);
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ExQueueWorkItem(&IrpContext->WorkQueueItem, CriticalWorkQueue);
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}
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return STATUS_PENDING;
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}
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PVOID
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VfatGetUserBuffer(
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IN PIRP Irp,
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IN BOOLEAN Paging)
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{
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ASSERT(Irp);
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if (Irp->MdlAddress)
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{
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return MmGetSystemAddressForMdlSafe(Irp->MdlAddress, (Paging ? HighPagePriority : NormalPagePriority));
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}
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else
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{
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return Irp->UserBuffer;
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}
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}
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NTSTATUS
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VfatLockUserBuffer(
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IN PIRP Irp,
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IN ULONG Length,
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IN LOCK_OPERATION Operation)
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{
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ASSERT(Irp);
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if (Irp->MdlAddress)
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{
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return STATUS_SUCCESS;
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}
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IoAllocateMdl(Irp->UserBuffer, Length, FALSE, FALSE, Irp);
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if (!Irp->MdlAddress)
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{
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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_SEH2_TRY
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{
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MmProbeAndLockPages(Irp->MdlAddress, Irp->RequestorMode, Operation);
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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IoFreeMdl(Irp->MdlAddress);
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Irp->MdlAddress = NULL;
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_SEH2_YIELD(return _SEH2_GetExceptionCode());
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}
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_SEH2_END;
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return STATUS_SUCCESS;
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}
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BOOLEAN
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VfatCheckForDismount(
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IN PDEVICE_EXTENSION DeviceExt,
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IN BOOLEAN Force)
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{
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KIRQL OldIrql;
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ULONG UnCleanCount;
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PVPB Vpb;
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BOOLEAN Delete;
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DPRINT1("VfatCheckForDismount(%p, %u)\n", DeviceExt, Force);
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/* If the VCB is OK (not under uninitialization) and we don't force dismount, do nothing */
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if (BooleanFlagOn(DeviceExt->Flags, VCB_GOOD) && !Force)
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{
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return FALSE;
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}
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/*
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* NOTE: In their *CheckForDismount() function, our 3rd-party FS drivers
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* as well as MS' fastfat, perform a comparison check of the current VCB's
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* VPB ReferenceCount with some sort of "dangling"/"residual" open count,
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* depending on whether or not we are in IRP_MJ_CREATE.
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* It seems to be related to the fact that the volume root directory as
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* well as auxiliary data stream(s) are still opened, and only these are
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* allowed to be opened at that moment. After analysis it appears that for
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* the ReactOS' vfatfs, this number is equal to "2".
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*/
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UnCleanCount = 2;
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/* Lock VPB */
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IoAcquireVpbSpinLock(&OldIrql);
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/* Reference it and check if a create is being done */
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Vpb = DeviceExt->IoVPB;
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DPRINT("Vpb->ReferenceCount = %d\n", Vpb->ReferenceCount);
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if (Vpb->ReferenceCount != UnCleanCount || DeviceExt->OpenHandleCount != 0)
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{
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/* If we force-unmount, copy the VPB to our local own to prepare later dismount */
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if (Force && Vpb->RealDevice->Vpb == Vpb && DeviceExt->SpareVPB != NULL)
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{
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RtlZeroMemory(DeviceExt->SpareVPB, sizeof(VPB));
|
|
DeviceExt->SpareVPB->Type = IO_TYPE_VPB;
|
|
DeviceExt->SpareVPB->Size = sizeof(VPB);
|
|
DeviceExt->SpareVPB->RealDevice = DeviceExt->IoVPB->RealDevice;
|
|
DeviceExt->SpareVPB->DeviceObject = NULL;
|
|
DeviceExt->SpareVPB->Flags = DeviceExt->IoVPB->Flags & VPB_REMOVE_PENDING;
|
|
DeviceExt->IoVPB->RealDevice->Vpb = DeviceExt->SpareVPB;
|
|
DeviceExt->SpareVPB = NULL;
|
|
DeviceExt->IoVPB->Flags |= VPB_PERSISTENT;
|
|
|
|
/* We are uninitializing, the VCB cannot be used anymore */
|
|
ClearFlag(DeviceExt->Flags, VCB_GOOD);
|
|
}
|
|
|
|
/* Don't do anything for now */
|
|
Delete = FALSE;
|
|
}
|
|
else
|
|
{
|
|
/* Otherwise, delete the volume */
|
|
Delete = TRUE;
|
|
|
|
/* Swap the VPB with our local own */
|
|
if (Vpb->RealDevice->Vpb == Vpb && DeviceExt->SpareVPB != NULL)
|
|
{
|
|
RtlZeroMemory(DeviceExt->SpareVPB, sizeof(VPB));
|
|
DeviceExt->SpareVPB->Type = IO_TYPE_VPB;
|
|
DeviceExt->SpareVPB->Size = sizeof(VPB);
|
|
DeviceExt->SpareVPB->RealDevice = DeviceExt->IoVPB->RealDevice;
|
|
DeviceExt->SpareVPB->DeviceObject = NULL;
|
|
DeviceExt->SpareVPB->Flags = DeviceExt->IoVPB->Flags & VPB_REMOVE_PENDING;
|
|
DeviceExt->IoVPB->RealDevice->Vpb = DeviceExt->SpareVPB;
|
|
DeviceExt->SpareVPB = NULL;
|
|
DeviceExt->IoVPB->Flags |= VPB_PERSISTENT;
|
|
|
|
/* We are uninitializing, the VCB cannot be used anymore */
|
|
ClearFlag(DeviceExt->Flags, VCB_GOOD);
|
|
}
|
|
|
|
/*
|
|
* We defer setting the VPB's DeviceObject to NULL for later because
|
|
* we want to handle the closing of the internal opened meta-files.
|
|
*/
|
|
|
|
/* Clear the mounted and locked flags in the VPB */
|
|
ClearFlag(Vpb->Flags, VPB_MOUNTED | VPB_LOCKED);
|
|
}
|
|
|
|
/* Release lock and return status */
|
|
IoReleaseVpbSpinLock(OldIrql);
|
|
|
|
/* If we were to delete, delete volume */
|
|
if (Delete)
|
|
{
|
|
LARGE_INTEGER Zero = {{0,0}};
|
|
PVFATFCB Fcb;
|
|
|
|
/* We are uninitializing, the VCB cannot be used anymore */
|
|
ClearFlag(DeviceExt->Flags, VCB_GOOD);
|
|
|
|
/* Invalidate and close the internal opened meta-files */
|
|
if (DeviceExt->RootFcb)
|
|
{
|
|
Fcb = DeviceExt->RootFcb;
|
|
CcUninitializeCacheMap(Fcb->FileObject,
|
|
&Zero,
|
|
NULL);
|
|
ObDereferenceObject(Fcb->FileObject);
|
|
DeviceExt->RootFcb = NULL;
|
|
vfatDestroyFCB(Fcb);
|
|
}
|
|
if (DeviceExt->VolumeFcb)
|
|
{
|
|
Fcb = DeviceExt->VolumeFcb;
|
|
#ifndef VOLUME_IS_NOT_CACHED_WORK_AROUND_IT
|
|
CcUninitializeCacheMap(Fcb->FileObject,
|
|
&Zero,
|
|
NULL);
|
|
ObDereferenceObject(Fcb->FileObject);
|
|
#endif
|
|
DeviceExt->VolumeFcb = NULL;
|
|
vfatDestroyFCB(Fcb);
|
|
}
|
|
if (DeviceExt->FATFileObject)
|
|
{
|
|
Fcb = DeviceExt->FATFileObject->FsContext;
|
|
CcUninitializeCacheMap(DeviceExt->FATFileObject,
|
|
&Zero,
|
|
NULL);
|
|
DeviceExt->FATFileObject->FsContext = NULL;
|
|
ObDereferenceObject(DeviceExt->FATFileObject);
|
|
DeviceExt->FATFileObject = NULL;
|
|
vfatDestroyFCB(Fcb);
|
|
}
|
|
|
|
ASSERT(DeviceExt->OverflowQueueCount == 0);
|
|
ASSERT(IsListEmpty(&DeviceExt->OverflowQueue));
|
|
ASSERT(DeviceExt->PostedRequestCount == 0);
|
|
|
|
/*
|
|
* Now that the closing of the internal opened meta-files has been
|
|
* handled, we can now set the VPB's DeviceObject to NULL.
|
|
*/
|
|
Vpb->DeviceObject = NULL;
|
|
|
|
/* If we have a local VPB, we'll have to delete it
|
|
* but we won't dismount us - something went bad before
|
|
*/
|
|
if (DeviceExt->SpareVPB)
|
|
{
|
|
ExFreePool(DeviceExt->SpareVPB);
|
|
}
|
|
/* Otherwise, delete any of the available VPB if its reference count is zero */
|
|
else if (DeviceExt->IoVPB->ReferenceCount == 0)
|
|
{
|
|
ExFreePool(DeviceExt->IoVPB);
|
|
}
|
|
|
|
/* Remove the volume from the list */
|
|
ExAcquireResourceExclusiveLite(&VfatGlobalData->VolumeListLock, TRUE);
|
|
RemoveEntryList(&DeviceExt->VolumeListEntry);
|
|
ExReleaseResourceLite(&VfatGlobalData->VolumeListLock);
|
|
|
|
/* Uninitialize the notify synchronization object */
|
|
FsRtlNotifyUninitializeSync(&DeviceExt->NotifySync);
|
|
|
|
/* Release resources */
|
|
ExFreePoolWithTag(DeviceExt->Statistics, TAG_STATS);
|
|
ExDeleteResourceLite(&DeviceExt->DirResource);
|
|
ExDeleteResourceLite(&DeviceExt->FatResource);
|
|
|
|
/* Dismount our device if possible */
|
|
ObDereferenceObject(DeviceExt->StorageDevice);
|
|
IoDeleteDevice(DeviceExt->VolumeDevice);
|
|
}
|
|
|
|
return Delete;
|
|
}
|