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838 lines
21 KiB
C
838 lines
21 KiB
C
/*++
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Copyright (c) 1997-2000 Microsoft Corporation
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Module Name:
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Pnp.c
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Abstract:
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This module implements the Plug and Play routines for CDFS called by
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the dispatch driver.
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--*/
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#include "cdprocs.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 (CDFS_BUG_CHECK_PNP)
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpQueryRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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);
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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);
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpSurpriseRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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);
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpCancelRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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);
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// Tell prefast this is a completion routine.
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IO_COMPLETION_ROUTINE CdPnpCompletionRoutine;
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NTSTATUS
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NTAPI /* ReactOS Change: GCC Does not support STDCALL by default */
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CdPnpCompletionRoutine (
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_In_ PDEVICE_OBJECT DeviceObject,
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_In_ PIRP Irp,
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_In_reads_opt_(_Inexpressible_("varies")) PVOID Contxt
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);
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(PAGE, CdCommonPnp)
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#pragma alloc_text(PAGE, CdPnpCancelRemove)
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#pragma alloc_text(PAGE, CdPnpQueryRemove)
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#pragma alloc_text(PAGE, CdPnpRemove)
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#pragma alloc_text(PAGE, CdPnpSurpriseRemove)
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#endif
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_Requires_lock_held_(_Global_critical_region_)
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NTSTATUS
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CdCommonPnp (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp
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)
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/*++
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Routine Description:
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This is the common routine for doing PnP operations called
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by both the fsd and fsp threads
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Arguments:
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Irp - Supplies the Irp to process
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Return Value:
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NTSTATUS - The return status for the operation
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--*/
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{
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NTSTATUS Status = STATUS_SUCCESS;
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BOOLEAN PassThrough = FALSE;
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PIO_STACK_LOCATION IrpSp;
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PVOLUME_DEVICE_OBJECT OurDeviceObject;
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PVCB Vcb;
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PAGED_CODE();
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// Global lock object is acquired based on internal book-keeping
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_Analysis_suppress_lock_checking_(CdData.DataResource);
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//
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// Get the current Irp stack location.
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//
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IrpSp = IoGetCurrentIrpStackLocation( Irp );
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//
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// Find our Vcb. This is tricky since we have no file object in the Irp.
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//
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OurDeviceObject = (PVOLUME_DEVICE_OBJECT) IrpSp->DeviceObject;
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//
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// IO holds a handle reference on our VDO and holds the device lock, which
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// syncs us against mounts/verifies. However we hold no reference on the
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// volume, which may already have been torn down (and the Vpb freed), for
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// example by a force dismount. Check for this condition. We must hold this
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// lock until the pnp worker functions take additional locks/refs on the Vcb.
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//
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CdAcquireCdData( IrpContext);
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//
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// Make sure this device object really is big enough to be a volume device
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// object. If it isn't, we need to get out before we try to reference some
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// field that takes us past the end of an ordinary device object.
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//
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#ifdef _MSC_VER
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#pragma prefast(suppress: 28175, "this is a filesystem driver, touching the size member is allowed")
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#endif
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if (OurDeviceObject->DeviceObject.Size != sizeof(VOLUME_DEVICE_OBJECT) ||
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NodeType( &OurDeviceObject->Vcb ) != CDFS_NTC_VCB) {
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//
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// We were called with something we don't understand.
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//
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Status = STATUS_INVALID_PARAMETER;
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CdReleaseCdData( IrpContext);
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CdCompleteRequest( IrpContext, Irp, Status );
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return Status;
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}
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//
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// Force all PnP operations to be synchronous.
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//
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SetFlag( IrpContext->Flags, IRP_CONTEXT_FLAG_WAIT );
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Vcb = &OurDeviceObject->Vcb;
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//
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// Check that the Vcb hasn't already been deleted. If so, just pass the
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// request through to the driver below, we don't need to do anything.
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//
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if (NULL == Vcb->Vpb) {
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PassThrough = TRUE;
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}
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else {
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//
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// Case on the minor code.
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//
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switch ( IrpSp->MinorFunction ) {
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case IRP_MN_QUERY_REMOVE_DEVICE:
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Status = CdPnpQueryRemove( IrpContext, Irp, Vcb );
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break;
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case IRP_MN_SURPRISE_REMOVAL:
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Status = CdPnpSurpriseRemove( IrpContext, Irp, Vcb );
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break;
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case IRP_MN_REMOVE_DEVICE:
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Status = CdPnpRemove( IrpContext, Irp, Vcb );
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break;
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case IRP_MN_CANCEL_REMOVE_DEVICE:
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Status = CdPnpCancelRemove( IrpContext, Irp, Vcb );
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break;
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default:
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PassThrough = TRUE;
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break;
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}
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}
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if (PassThrough) {
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CdReleaseCdData( IrpContext);
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//
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// Just pass the IRP on. As we do not need to be in the
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// way on return, ellide ourselves out of the stack.
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//
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IoSkipCurrentIrpStackLocation( Irp );
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Status = IoCallDriver(Vcb->TargetDeviceObject, Irp);
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//
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// Cleanup our Irp Context. The driver has completed the Irp.
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//
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CdCompleteRequest( IrpContext, NULL, STATUS_SUCCESS );
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}
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return Status;
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}
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpQueryRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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)
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/*++
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Routine Description:
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This routine handles the PnP query remove operation. The filesystem
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is responsible for answering whether there are any reasons it sees
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that the volume can not go away (and the device removed). Initiation
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of the dismount begins when we answer yes to this question.
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Query will be followed by a Cancel or Remove.
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Arguments:
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Irp - Supplies the Irp to process
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Vcb - Supplies the volume being queried.
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Return Value:
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NTSTATUS - The return status for the operation
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--*/
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{
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NTSTATUS Status;
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KEVENT Event;
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BOOLEAN VcbPresent = TRUE;
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PAGED_CODE();
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ASSERT_EXCLUSIVE_CDDATA;
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//
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// Having said yes to a QUERY, any communication with the
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// underlying storage stack is undefined (and may block)
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// until the bounding CANCEL or REMOVE is sent.
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//
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// Acquire the global resource so that we can try to vaporize the volume,
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// and the vcb resource itself.
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//
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CdAcquireVcbExclusive( IrpContext, Vcb, FALSE );
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//
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// Drop a reference on the Vcb to keep it around after we drop the locks.
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//
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CdLockVcb( IrpContext, Vcb);
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Vcb->VcbReference += 1;
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CdUnlockVcb( IrpContext, Vcb);
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CdReleaseCdData( IrpContext);
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Status = CdLockVolumeInternal( IrpContext, Vcb, NULL );
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//
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// Reacquire the global lock, which means dropping the Vcb resource.
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//
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CdReleaseVcb( IrpContext, Vcb );
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CdAcquireCdData( IrpContext );
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CdAcquireVcbExclusive( IrpContext, Vcb, FALSE );
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//
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// Remove our extra reference.
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//
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CdLockVcb( IrpContext, Vcb);
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Vcb->VcbReference -= 1;
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CdUnlockVcb( IrpContext, Vcb);
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if (NT_SUCCESS( Status )) {
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//
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// We need to pass this down before starting the dismount, which
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// could disconnect us immediately from the stack.
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//
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//
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// Get the next stack location, and copy over the stack location
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//
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IoCopyCurrentIrpStackLocationToNext( Irp );
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//
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// Set up the completion routine
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//
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KeInitializeEvent( &Event, NotificationEvent, FALSE );
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IoSetCompletionRoutine( Irp,
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CdPnpCompletionRoutine,
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&Event,
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TRUE,
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TRUE,
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TRUE );
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//
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// Send the request and wait.
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//
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Status = IoCallDriver(Vcb->TargetDeviceObject, Irp);
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if (Status == STATUS_PENDING) {
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(VOID)KeWaitForSingleObject( &Event,
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Executive,
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KernelMode,
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FALSE,
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NULL );
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Status = Irp->IoStatus.Status;
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}
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//
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// Now if no one below us failed already, initiate the dismount
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// on this volume, make it go away. PnP needs to see our internal
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// streams close and drop their references to the target device.
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//
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// Since we were able to lock the volume, we are guaranteed to
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// move this volume into dismount state and disconnect it from
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// the underlying storage stack. The force on our part is actually
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// unnecesary, though complete.
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//
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// What is not strictly guaranteed, though, is that the closes
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// for the metadata streams take effect synchronously underneath
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// of this call. This would leave references on the target device
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// even though we are disconnected!
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//
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if (NT_SUCCESS( Status )) {
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VcbPresent = CdCheckForDismount( IrpContext, Vcb, TRUE );
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NT_ASSERT( !VcbPresent || Vcb->VcbCondition == VcbDismountInProgress );
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}
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//
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// Note: Normally everything will complete and the internal streams will
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// vaporise. However there is some code in the system which drops additional
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// references on fileobjects, including our internal stream file objects,
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// for (WMI) tracing purposes. If that happens to run concurrently with our
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// teardown, our internal streams will not vaporise until those references
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// are removed. So it's possible that the volume still remains at this
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// point. The pnp query remove will fail due to our references on the device.
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// To be cleaner we will return an error here. We could pend the pnp
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// IRP until the volume goes away, but since we don't know when that will
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// be, and this is a very rare case, we'll just fail the query.
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//
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// The reason this is the case is that handles/fileobjects place a reference
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// on the device objects they overly. In the filesystem case, these references
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// are on our target devices. PnP correcly thinks that if references remain
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// on the device objects in the stack that someone has a handle, and that this
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// counts as a reason to not succeed the query - even though every interrogated
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// driver thinks that it is OK.
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//
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if (NT_SUCCESS( Status) && VcbPresent && (Vcb->VcbReference != 0)) {
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Status = STATUS_DEVICE_BUSY;
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}
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}
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//
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// Release the Vcb if it could still remain.
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//
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if (VcbPresent) {
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CdReleaseVcb( IrpContext, Vcb );
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}
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else {
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_Analysis_assume_lock_not_held_(Vcb->VcbResource);
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}
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CdReleaseCdData( IrpContext );
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//
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// Cleanup our IrpContext and complete the IRP if neccesary.
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//
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CdCompleteRequest( IrpContext, Irp, Status );
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return Status;
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}
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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)
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/*++
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Routine Description:
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This routine handles the PnP remove operation. This is our notification
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that the underlying storage device for the volume we have is gone, and
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an excellent indication that the volume will never reappear. The filesystem
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is responsible for initiation or completion the dismount.
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Arguments:
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Irp - Supplies the Irp to process
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Vcb - Supplies the volume being removed.
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Return Value:
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NTSTATUS - The return status for the operation
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--*/
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{
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NTSTATUS Status;
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KEVENT Event;
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BOOLEAN VcbPresent = TRUE;
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PAGED_CODE();
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ASSERT_EXCLUSIVE_CDDATA;
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//
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// REMOVE - a storage device is now gone. We either got
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// QUERY'd and said yes OR got a SURPRISE OR a storage
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// stack failed to spin back up from a sleep/stop state
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// (the only case in which this will be the first warning).
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//
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// Note that it is entirely unlikely that we will be around
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// for a REMOVE in the first two cases, as we try to intiate
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// dismount.
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//
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//
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// Acquire the global resource so that we can try to vaporize
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// the volume, and the vcb resource itself.
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//
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CdAcquireVcbExclusive( IrpContext, Vcb, FALSE );
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//
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// The device will be going away. Remove our lock and find
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// out if we ever had one in the first place.
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//
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Status = CdUnlockVolumeInternal( IrpContext, Vcb, NULL );
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//
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// If the volume had not been locked, we must invalidate the
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// volume to ensure it goes away properly. The remove will
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// succeed.
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//
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if (!NT_SUCCESS( Status )) {
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CdLockVcb( IrpContext, Vcb );
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if (Vcb->VcbCondition != VcbDismountInProgress) {
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CdUpdateVcbCondition( Vcb, VcbInvalid);
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}
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CdUnlockVcb( IrpContext, Vcb );
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Status = STATUS_SUCCESS;
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}
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//
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// We need to pass this down before starting the dismount, which
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// could disconnect us immediately from the stack.
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//
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//
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// Get the next stack location, and copy over the stack location
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//
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IoCopyCurrentIrpStackLocationToNext( Irp );
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//
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// Set up the completion routine
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//
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KeInitializeEvent( &Event, NotificationEvent, FALSE );
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IoSetCompletionRoutine( Irp,
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CdPnpCompletionRoutine,
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&Event,
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TRUE,
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TRUE,
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TRUE );
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//
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// Send the request and wait.
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//
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Status = IoCallDriver(Vcb->TargetDeviceObject, Irp);
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if (Status == STATUS_PENDING) {
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(VOID)KeWaitForSingleObject( &Event,
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Executive,
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KernelMode,
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FALSE,
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NULL );
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Status = Irp->IoStatus.Status;
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}
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//
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// Now make our dismount happen. This may not vaporize the
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// Vcb, of course, since there could be any number of handles
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// outstanding if we were not preceeded by a QUERY.
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//
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// PnP will take care of disconnecting this stack if we
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// couldn't get off of it immediately.
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//
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VcbPresent = CdCheckForDismount( IrpContext, Vcb, TRUE );
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//
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// Release the Vcb if it could still remain.
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//
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if (VcbPresent) {
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CdReleaseVcb( IrpContext, Vcb );
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}
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else {
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_Analysis_assume_lock_not_held_(Vcb->VcbResource);
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}
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CdReleaseCdData( IrpContext );
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//
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// Cleanup our IrpContext and complete the IRP.
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//
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CdCompleteRequest( IrpContext, Irp, Status );
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return Status;
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}
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_Requires_lock_held_(_Global_critical_region_)
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_Releases_nonreentrant_lock_(CdData.DataResource)
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NTSTATUS
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CdPnpSurpriseRemove (
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_Inout_ PIRP_CONTEXT IrpContext,
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_Inout_ PIRP Irp,
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_Inout_ PVCB Vcb
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)
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/*++
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Routine Description:
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This routine handles the PnP surprise remove operation. This is another
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type of notification that the underlying storage device for the volume we
|
|
have is gone, and is excellent indication that the volume will never reappear.
|
|
The filesystem is responsible for initiation or completion the dismount.
|
|
|
|
For the most part, only "real" drivers care about the distinction of a
|
|
surprise remove, which is a result of our noticing that a user (usually)
|
|
physically reached into the machine and pulled something out.
|
|
|
|
Surprise will be followed by a Remove when all references have been shut down.
|
|
|
|
Arguments:
|
|
|
|
Irp - Supplies the Irp to process
|
|
|
|
Vcb - Supplies the volume being removed.
|
|
|
|
Return Value:
|
|
|
|
NTSTATUS - The return status for the operation
|
|
|
|
--*/
|
|
|
|
{
|
|
NTSTATUS Status;
|
|
KEVENT Event;
|
|
BOOLEAN VcbPresent = TRUE;
|
|
|
|
PAGED_CODE();
|
|
|
|
ASSERT_EXCLUSIVE_CDDATA;
|
|
|
|
//
|
|
// SURPRISE - a device was physically yanked away without
|
|
// any warning. This means external forces.
|
|
//
|
|
|
|
CdAcquireVcbExclusive( IrpContext, Vcb, FALSE );
|
|
|
|
//
|
|
// Invalidate the volume right now.
|
|
//
|
|
// The intent here is to make every subsequent operation
|
|
// on the volume fail and grease the rails toward dismount.
|
|
// By definition there is no going back from a SURPRISE.
|
|
//
|
|
|
|
CdLockVcb( IrpContext, Vcb );
|
|
|
|
if (Vcb->VcbCondition != VcbDismountInProgress) {
|
|
|
|
CdUpdateVcbCondition( Vcb, VcbInvalid);
|
|
}
|
|
|
|
CdUnlockVcb( IrpContext, Vcb );
|
|
|
|
//
|
|
// We need to pass this down before starting the dismount, which
|
|
// could disconnect us immediately from the stack.
|
|
//
|
|
|
|
//
|
|
// Get the next stack location, and copy over the stack location
|
|
//
|
|
|
|
IoCopyCurrentIrpStackLocationToNext( Irp );
|
|
|
|
//
|
|
// Set up the completion routine
|
|
//
|
|
|
|
KeInitializeEvent( &Event, NotificationEvent, FALSE );
|
|
IoSetCompletionRoutine( Irp,
|
|
CdPnpCompletionRoutine,
|
|
&Event,
|
|
TRUE,
|
|
TRUE,
|
|
TRUE );
|
|
|
|
//
|
|
// Send the request and wait.
|
|
//
|
|
|
|
Status = IoCallDriver(Vcb->TargetDeviceObject, Irp);
|
|
|
|
if (Status == STATUS_PENDING) {
|
|
|
|
(VOID)KeWaitForSingleObject( &Event,
|
|
Executive,
|
|
KernelMode,
|
|
FALSE,
|
|
NULL );
|
|
|
|
Status = Irp->IoStatus.Status;
|
|
}
|
|
|
|
//
|
|
// Now make our dismount happen. This may not vaporize the
|
|
// Vcb, of course, since there could be any number of handles
|
|
// outstanding since this is an out of band notification.
|
|
//
|
|
|
|
|
|
VcbPresent = CdCheckForDismount( IrpContext, Vcb, TRUE );
|
|
|
|
//
|
|
// Release the Vcb if it could still remain.
|
|
//
|
|
|
|
if (VcbPresent) {
|
|
|
|
CdReleaseVcb( IrpContext, Vcb );
|
|
}
|
|
else {
|
|
_Analysis_assume_lock_not_held_(Vcb->VcbResource);
|
|
}
|
|
|
|
CdReleaseCdData( IrpContext );
|
|
|
|
//
|
|
// Cleanup our IrpContext and complete the IRP.
|
|
//
|
|
|
|
CdCompleteRequest( IrpContext, Irp, Status );
|
|
|
|
return Status;
|
|
}
|
|
|
|
_Requires_lock_held_(_Global_critical_region_)
|
|
_Releases_nonreentrant_lock_(CdData.DataResource)
|
|
NTSTATUS
|
|
CdPnpCancelRemove (
|
|
_Inout_ PIRP_CONTEXT IrpContext,
|
|
_Inout_ PIRP Irp,
|
|
_Inout_ PVCB Vcb
|
|
)
|
|
|
|
/*++
|
|
|
|
Routine Description:
|
|
|
|
This routine handles the PnP cancel remove operation. This is our
|
|
notification that a previously proposed remove (query) was eventually
|
|
vetoed by a component. The filesystem is responsible for cleaning up
|
|
and getting ready for more IO.
|
|
|
|
Arguments:
|
|
|
|
Irp - Supplies the Irp to process
|
|
|
|
Vcb - Supplies the volume being removed.
|
|
|
|
Return Value:
|
|
|
|
NTSTATUS - The return status for the operation
|
|
|
|
--*/
|
|
|
|
{
|
|
NTSTATUS Status;
|
|
|
|
PAGED_CODE();
|
|
|
|
ASSERT_EXCLUSIVE_CDDATA;
|
|
|
|
//
|
|
// CANCEL - a previous QUERY has been rescinded as a result
|
|
// of someone vetoing. Since PnP cannot figure out who may
|
|
// have gotten the QUERY (think about it: stacked drivers),
|
|
// we must expect to deal with getting a CANCEL without having
|
|
// seen the QUERY.
|
|
//
|
|
// For CDFS, this is quite easy. In fact, we can't get a
|
|
// CANCEL if the underlying drivers succeeded the QUERY since
|
|
// we disconnect the Vpb on our dismount initiation. This is
|
|
// actually pretty important because if PnP could get to us
|
|
// after the disconnect we'd be thoroughly unsynchronized
|
|
// with respect to the Vcb getting torn apart - merely referencing
|
|
// the volume device object is insufficient to keep us intact.
|
|
//
|
|
|
|
CdAcquireVcbExclusive( IrpContext, Vcb, FALSE );
|
|
CdReleaseCdData( IrpContext);
|
|
|
|
//
|
|
// Unlock the volume. This is benign if we never had seen
|
|
// a QUERY.
|
|
//
|
|
|
|
(VOID) CdUnlockVolumeInternal( IrpContext, Vcb, NULL );
|
|
|
|
CdReleaseVcb( IrpContext, Vcb );
|
|
|
|
//
|
|
// Send the request. The underlying driver will complete the
|
|
// IRP. Since we don't need to be in the way, simply ellide
|
|
// ourselves out of the IRP stack.
|
|
//
|
|
|
|
IoSkipCurrentIrpStackLocation( Irp );
|
|
|
|
Status = IoCallDriver(Vcb->TargetDeviceObject, Irp);
|
|
|
|
CdCompleteRequest( IrpContext, NULL, STATUS_SUCCESS );
|
|
|
|
return Status;
|
|
}
|
|
|
|
|
|
//
|
|
// Local support routine
|
|
//
|
|
|
|
NTSTATUS
|
|
NTAPI /* ReactOS Change: GCC Does not support STDCALL by default */
|
|
CdPnpCompletionRoutine (
|
|
_In_ PDEVICE_OBJECT DeviceObject,
|
|
_In_ PIRP Irp,
|
|
_In_reads_opt_(_Inexpressible_("varies")) PVOID Contxt
|
|
)
|
|
{
|
|
PKEVENT Event = (PKEVENT) Contxt;
|
|
_Analysis_assume_(Contxt != NULL);
|
|
|
|
KeSetEvent( Event, 0, FALSE );
|
|
|
|
return STATUS_MORE_PROCESSING_REQUIRED;
|
|
|
|
UNREFERENCED_PARAMETER( DeviceObject );
|
|
UNREFERENCED_PARAMETER( Irp );
|
|
UNREFERENCED_PARAMETER( Contxt );
|
|
}
|
|
|
|
|