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639 lines
17 KiB
639 lines
17 KiB
/*++
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Copyright (c) 1995 Microsoft Corporation
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Module Name:
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autodial.c
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Abstract:
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This file provides routines for interacting
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with the automatic connection driver (acd.sys).
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Author:
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Anthony Discolo (adiscolo) 9-6-95
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Revision History:
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--*/
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#include "precomp.h" // procedure headings
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#ifdef RASAUTODIAL
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#ifndef VXD
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#include <acd.h>
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#include <acdapi.h>
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#endif
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//******************* Pageable Routine Declarations ****************
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#ifdef ALLOC_PRAGMA
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#pragma CTEMakePageable(INIT, NbtAcdBind)
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#pragma CTEMakePageable(PAGE, NbtAcdUnbind)
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#endif
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//******************* Pageable Routine Declarations ****************
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//
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// Automatic connection global variables.
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//
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BOOLEAN fAcdLoadedG;
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ACD_DRIVER AcdDriverG;
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ULONG ulDriverIdG = 'Nbt ';
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//
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// Imported routines.
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//
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VOID
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CleanUpPartialConnection(
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IN NTSTATUS status,
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IN tCONNECTELE *pConnEle,
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IN tDGRAM_SEND_TRACKING *pTracker,
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IN PIRP pClientIrp,
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IN CTELockHandle irqlJointLock,
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IN CTELockHandle irqlConnEle
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);
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NTSTATUS
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NbtConnectCommon(
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IN TDI_REQUEST *pRequest,
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IN PVOID pTimeout,
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IN PTDI_CONNECTION_INFORMATION pCallInfo,
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IN PIRP pIrp
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);
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NTSTATUS
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NbtpConnectCompletionRoutine(
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PDEVICE_OBJECT pDeviceObject,
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PIRP pIrp,
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PVOID pCompletionContext
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);
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VOID
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NbtRetryPreConnect(
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IN BOOLEAN fSuccess,
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IN PVOID *pArgs
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)
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/*++
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Routine Description:
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This routine is called indirectly by the automatic
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connection driver to continue the connection process
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after an automatic connection has been made.
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Arguments:
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fSuccess - TRUE if the connection attempt was successful.
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pArgs - a pointer to the argument vector
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Return Value:
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None.
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--*/
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{
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NTSTATUS status;
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tCONNECTELE *pConnEle = pArgs[0];
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PVOID pTimeout = pArgs[1];
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PTDI_CONNECTION_INFORMATION pCallInfo = pArgs[2];
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PIRP pIrp = pArgs[3];
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TDI_REQUEST request;
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KIRQL irql;
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CTELockHandle OldIrq;
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tDEVICECONTEXT *pDeviceContext = pConnEle->pDeviceContext;
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IF_DBG(NBT_DEBUG_NAME)
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KdPrint(("Nbt.NbtRetryPreConnect: fSuccess=%d, pIrp=0x%x, pIrp->Cancel=%d, pConnEle=0x%x\n",
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fSuccess, pIrp, pIrp->Cancel, pConnEle));
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request.Handle.ConnectionContext = pConnEle;
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status = NbtCancelCancelRoutine (pIrp);
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if (status != STATUS_CANCELLED)
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{
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//
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// We're done with the connection progress,
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// so clear the fAutoConnecting flag. We
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// set the fAutoConnected flag to prevent us
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// from re-attempting another automatic
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// connection on this connection.
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//
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CTESpinLock(pConnEle,OldIrq);
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pConnEle->fAutoConnecting = FALSE;
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pConnEle->fAutoConnected = TRUE;
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CTESpinFree(pConnEle,OldIrq);
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status = fSuccess ? NbtConnectCommon (&request, pTimeout, pCallInfo, pIrp) :
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STATUS_BAD_NETWORK_PATH;
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//
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// We are responsible for completing
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// the irp.
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//
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if (status != STATUS_PENDING)
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{
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//
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// Clear out the Irp pointer in the Connection object so that we dont try to
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// complete it again when we clean up the connection. Do this under the connection
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// lock.
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//
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CTESpinLock(pConnEle,OldIrq);
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pConnEle->pIrp = NULL;
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CTESpinFree(pConnEle,OldIrq);
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pIrp->IoStatus.Status = status;
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IoCompleteRequest(pIrp, IO_NO_INCREMENT);
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}
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NBT_DEREFERENCE_DEVICE (pDeviceContext, REF_DEV_AUTODIAL, FALSE);
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}
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} // NbtRetryPreConnect
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BOOLEAN
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NbtCancelAutoDialRequest(
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IN PVOID pArg,
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IN ULONG ulFlags,
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IN ACD_CONNECT_CALLBACK pProc,
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IN USHORT nArgs,
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IN PVOID *pArgs
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)
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{
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if (nArgs != 5)
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return FALSE;
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return (pArgs[4] == pArg);
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} // NbtCancelAutoDialRequest
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BOOLEAN
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NbtCancelPreConnect(
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IN PDEVICE_OBJECT pDeviceObject,
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IN PIRP pIrp
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)
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{
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NTSTATUS status;
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PIO_STACK_LOCATION pIrpSp;
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tCONNECTELE *pConnEle;
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KIRQL irql;
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ACD_ADDR *pAddr;
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BOOLEAN fCancelled;
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CTELockHandle OldIrq;
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UNREFERENCED_PARAMETER(pDeviceObject);
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pIrpSp = IoGetCurrentIrpStackLocation(pIrp);
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pConnEle = (tCONNECTELE *) pIrpSp->FileObject->FsContext;
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if ((!pConnEle) ||
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(!NBT_VERIFY_HANDLE2 (pConnEle, NBT_VERIFY_CONNECTION, NBT_VERIFY_CONNECTION_DOWN)) ||
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(!(pAddr = (ACD_ADDR *) NbtAllocMem(sizeof(ACD_ADDR),NBT_TAG('A')))))
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{
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IoReleaseCancelSpinLock(pIrp->CancelIrql);
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ASSERTMSG ("Nbt.NbtCancelPreConnect: ERROR - Invalid Connection Handle\n", 0);
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return FALSE;
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}
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IF_DBG(NBT_DEBUG_NAME)
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KdPrint(("NbtCancelPreConnect: pIrp=0x%x, pConnEle=0x%x\n", pIrp, pConnEle));
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//
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// Get the address of the connection.
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//
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pAddr->fType = ACD_ADDR_NB;
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RtlCopyMemory(&pAddr->cNetbios, pConnEle->RemoteName, 16);
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//
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// Cancel the autodial request.
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//
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fCancelled = (*AcdDriverG.lpfnCancelConnection) (ulDriverIdG, pAddr, NbtCancelAutoDialRequest, pIrp);
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if (fCancelled)
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{
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IoSetCancelRoutine(pIrp, NULL);
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}
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IoReleaseCancelSpinLock(pIrp->CancelIrql);
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CTEMemFree(pAddr);
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//
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// If the request could not be found
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// in the driver, then it has already
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// been completed, so we simply return.
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//
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if (!fCancelled)
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{
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return FALSE;
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}
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KeRaiseIrql(DISPATCH_LEVEL, &irql);
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pIrp->IoStatus.Status = STATUS_CANCELLED;
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pIrp->IoStatus.Information = 0;
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NBT_DEREFERENCE_DEVICE (pConnEle->pDeviceContext, REF_DEV_AUTODIAL, FALSE);
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//
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// Clear out the Irp pointer in the Connection object so that we dont try to
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// complete it again when we clean up the connection. Do this under the connection
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// lock.
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//
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// This should not be needed since before we call NbtConnectCommon, the Cancel routine
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// is NULLed out, so it cannot happen that the pIrp ptr in the connection is set to the
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// Irp, and this cancel routine is called.
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//
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CTESpinLock(pConnEle,OldIrq);
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pConnEle->pIrp = NULL;
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CTESpinFree(pConnEle,OldIrq);
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IoCompleteRequest(pIrp, IO_NO_INCREMENT);
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KeLowerIrql(irql);
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return TRUE;
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} // NbtCancelPreConnect
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BOOLEAN
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NbtCancelPostConnect(
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IN PIRP pIrp
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)
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{
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PIO_STACK_LOCATION pIrpSp = IoGetCurrentIrpStackLocation(pIrp);
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tCONNECTELE *pConnEle = (tCONNECTELE *)pIrpSp->FileObject->FsContext;
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ACD_ADDR *pAddr;
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BOOLEAN fCancelled;
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if ((!pConnEle) ||
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(!NBT_VERIFY_HANDLE2 (pConnEle, NBT_VERIFY_CONNECTION, NBT_VERIFY_CONNECTION_DOWN)) ||
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(!(pAddr = (ACD_ADDR *) NbtAllocMem(sizeof(ACD_ADDR),NBT_TAG('A')))))
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{
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ASSERTMSG ("Nbt.NbtCancelPostConnect: ERROR - Invalid Connection Handle\n", 0);
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return FALSE;
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}
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IF_DBG(NBT_DEBUG_NAME)
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KdPrint(("Nbt.NbtCancelPostConnect: pIrp=0x%x, pConnEle=0x%x\n", pIrp, pConnEle));
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//
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// Get the address of the connection.
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//
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pAddr->fType = ACD_ADDR_NB;
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RtlCopyMemory(&pAddr->cNetbios, pConnEle->RemoteName, 15);
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//
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// Cancel the autodial request.
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//
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fCancelled = (*AcdDriverG.lpfnCancelConnection) (ulDriverIdG, pAddr, NbtCancelAutoDialRequest, pIrp);
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if (fCancelled)
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{
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NBT_DEREFERENCE_DEVICE (pConnEle->pDeviceContext, REF_DEV_AUTODIAL, FALSE);
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}
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CTEMemFree(pAddr);
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return (fCancelled);
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} // NbtCancelPostConnect
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BOOLEAN
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NbtAttemptAutoDial(
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IN tCONNECTELE *pConnEle,
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IN PVOID pTimeout,
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IN PTDI_CONNECTION_INFORMATION pCallInfo,
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IN PIRP pIrp,
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IN ULONG ulFlags,
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IN ACD_CONNECT_CALLBACK pProc
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)
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/*++
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Routine Description:
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Call the automatic connection driver to attempt an
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automatic connection. The first five parameters are
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used in the call to NbtConnect after the connection
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completes successfully.
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Arguments:
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...
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ulFlags - automatic connection flags
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pProc - callback procedure when the automatic connection completes
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Return Value:
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TRUE if the automatic connection was started successfully,
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FALSE otherwise.
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--*/
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{
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NTSTATUS status;
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BOOLEAN fSuccess;
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ACD_ADDR *pAddr = NULL;
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KIRQL irql;
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PVOID pArgs[4];
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PCHAR pName;
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ULONG ulcbName;
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LONG lNameType;
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TDI_ADDRESS_NETBT_INTERNAL TdiAddr;
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PIO_STACK_LOCATION pIrpSp;
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ASSERT(pCallInfo);
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//
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// If this connection has already been through the
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// automatic connection process, don't do it again.
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//
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if ((pConnEle->fAutoConnected)) {
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return FALSE;
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}
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pIrpSp = IoGetCurrentIrpStackLocation(pIrp);
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if (pIrpSp->CompletionRoutine != NbtpConnectCompletionRoutine) {
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status = GetNetBiosNameFromTransportAddress((PTRANSPORT_ADDRESS) pCallInfo->RemoteAddress,
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pCallInfo->RemoteAddressLength, &TdiAddr);
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} else {
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ASSERT(((PTRANSPORT_ADDRESS)pCallInfo->RemoteAddress)->Address[0].AddressType == TDI_ADDRESS_TYPE_UNSPEC);
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CTEMemCopy(&TdiAddr,
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(PTDI_ADDRESS_NETBT_INTERNAL)((PTRANSPORT_ADDRESS)pCallInfo->RemoteAddress)->Address[0].Address,
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sizeof(TdiAddr));
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status = STATUS_SUCCESS;
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}
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if (status != STATUS_SUCCESS || (!NBT_REFERENCE_DEVICE (pConnEle->pDeviceContext, REF_DEV_AUTODIAL, FALSE)) ||
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(!(pAddr = (ACD_ADDR *) NbtAllocMem(sizeof(ACD_ADDR),NBT_TAG('A'))))) {
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if (pAddr) {
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CTEMemFree(pAddr);
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}
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return FALSE;
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}
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pName = TdiAddr.OEMRemoteName.Buffer;
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ulcbName = TdiAddr.OEMRemoteName.Length;
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lNameType = TdiAddr.NameType;
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//
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// Save the address for pre-connect attempts,
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// because if we have to cancel this irp,
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// it is not saved anywhere else.
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//
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CTESpinLock(pConnEle, irql);
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pConnEle->fAutoConnecting = TRUE;
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CTEMemCopy(pConnEle->RemoteName, pName, NETBIOS_NAME_SIZE);
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CTESpinFree(pConnEle, irql);
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pAddr->fType = ACD_ADDR_NB;
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RtlCopyMemory(&pAddr->cNetbios, pName, NETBIOS_NAME_SIZE);
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IF_DBG(NBT_DEBUG_NAME)
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KdPrint(("Nbt.NbtAttemptAutodial: szAddr=%-15.15s\n", pName));
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//
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// Enqueue this request on the network
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// connection pending queue.
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//
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pArgs[0] = pConnEle;
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pArgs[1] = pTimeout;
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pArgs[2] = pCallInfo;
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pArgs[3] = pIrp;
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fSuccess = (*AcdDriverG.lpfnStartConnection) (ulDriverIdG, pAddr, ulFlags, pProc, 4, pArgs);
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//
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// If fSuccess is TRUE, then it means that the NetBT proc has
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// already been called to setup the connection, and hence the
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// data in pConnEle may not be valid now
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//
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// In the case it is FALSE, then pProc has not been called, and
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// we should set the fAutoConnecting flag to FALSE also
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//
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if (!fSuccess)
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{
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NBT_DEREFERENCE_DEVICE (pConnEle->pDeviceContext, REF_DEV_AUTODIAL, FALSE);
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CTESpinLock(pConnEle, irql);
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pConnEle->fAutoConnecting = FALSE;
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CTESpinFree(pConnEle, irql);
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}
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CTEMemFree(pAddr);
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return fSuccess;
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} // NbtAttemptAutoDial
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VOID
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NbtNoteNewConnection(
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IN tNAMEADDR *pNameAddr,
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IN ULONG IpAddress
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)
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/*++
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Routine Description:
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Inform the automatic connection driver of a
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successful new connection.
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Arguments:
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pNameAddr - a pointer to the remote name
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IpAddress - Source IP address of the connection
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Return Value:
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None.
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--*/
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{
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ACD_ADDR *pAddr = NULL;
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ACD_ADAPTER *pAdapter = NULL;
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//
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// Notify the AcdDriver only if we have a valid Source address
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//
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// We can end up blowing the stack if we pre-allocate ACD_ADDR
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// and ACD_ADAPTER on the stack -- so allocate them dynamically!
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//
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if ((IpAddress) &&
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(pAddr = (ACD_ADDR *) NbtAllocMem(sizeof(ACD_ADDR),NBT_TAG('A'))) &&
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(pAdapter = (ACD_ADAPTER *) NbtAllocMem(sizeof(ACD_ADAPTER),NBT_TAG('A'))))
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{
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pAddr->fType = ACD_ADDR_NB;
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RtlCopyMemory(&pAddr->cNetbios, pNameAddr->Name, 15);
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pAdapter->fType = ACD_ADAPTER_IP;
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pAdapter->ulIpaddr = htonl(IpAddress); // Get the source IP address of the connection.
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(*AcdDriverG.lpfnNewConnection) (pAddr, pAdapter);
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}
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if (pAddr)
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{
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CTEMemFree(pAddr);
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}
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if (pAdapter)
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{
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CTEMemFree(pAdapter);
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}
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} // NbtNoteNewConnection
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VOID
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NbtAcdBind()
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{
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NTSTATUS status;
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UNICODE_STRING nameString;
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IO_STATUS_BLOCK ioStatusBlock;
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PIRP pIrp;
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PFILE_OBJECT pAcdFileObject;
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PDEVICE_OBJECT pAcdDeviceObject;
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PACD_DRIVER pDriver = &AcdDriverG;
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//
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// Initialize the name of the automatic
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// connection device.
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//
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RtlInitUnicodeString(&nameString, ACD_DEVICE_NAME);
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//
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// Get the file and device objects for the
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// device.
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//
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status = IoGetDeviceObjectPointer(
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&nameString,
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SYNCHRONIZE|GENERIC_READ|GENERIC_WRITE,
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&pAcdFileObject,
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&pAcdDeviceObject);
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if (status != STATUS_SUCCESS)
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return;
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//
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// Reference the device object.
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//
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ObReferenceObject(pAcdDeviceObject);
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//
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// Remove the reference IoGetDeviceObjectPointer()
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// put on the file object.
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//
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ObDereferenceObject(pAcdFileObject);
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//
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// Initialize our part of the ACD_DRIVER
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// structure.
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//
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KeInitializeSpinLock(&AcdDriverG.SpinLock);
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AcdDriverG.ulDriverId = ulDriverIdG;
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AcdDriverG.fEnabled = FALSE;
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//
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// Build a request to get the automatic
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// connection driver entry points.
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//
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pIrp = IoBuildDeviceIoControlRequest (IOCTL_INTERNAL_ACD_BIND,
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pAcdDeviceObject,
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(PVOID)&pDriver,
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sizeof (pDriver),
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NULL,
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0,
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TRUE,
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NULL,
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&ioStatusBlock);
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if (pIrp == NULL)
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{
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ObDereferenceObject(pAcdDeviceObject);
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return;
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}
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//
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// Submit the request to the
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// automatic connection driver.
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//
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status = IoCallDriver(pAcdDeviceObject, pIrp);
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fAcdLoadedG = (status == STATUS_SUCCESS);
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//
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// Close the device.
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//
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ObDereferenceObject(pAcdDeviceObject);
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} // NbtAcdBind
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|
|
|
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|
VOID
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|
NbtAcdUnbind()
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{
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|
NTSTATUS status;
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|
UNICODE_STRING nameString;
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IO_STATUS_BLOCK ioStatusBlock;
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|
PIRP pIrp;
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PFILE_OBJECT pAcdFileObject;
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PDEVICE_OBJECT pAcdDeviceObject;
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PACD_DRIVER pDriver = &AcdDriverG;
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|
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//
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|
// Don't bother to unbind if we
|
|
// didn't successfully bind in the
|
|
// first place.
|
|
//
|
|
if (!fAcdLoadedG)
|
|
{
|
|
return;
|
|
}
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|
|
|
fAcdLoadedG = FALSE;
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|
|
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//
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|
// Initialize the name of the automatic
|
|
// connection device.
|
|
//
|
|
RtlInitUnicodeString(&nameString, ACD_DEVICE_NAME);
|
|
//
|
|
// Get the file and device objects for the
|
|
// device.
|
|
//
|
|
status = IoGetDeviceObjectPointer (&nameString,
|
|
SYNCHRONIZE|GENERIC_READ|GENERIC_WRITE,
|
|
&pAcdFileObject,
|
|
&pAcdDeviceObject);
|
|
if (status != STATUS_SUCCESS)
|
|
{
|
|
return;
|
|
}
|
|
|
|
//
|
|
// Reference the device object.
|
|
//
|
|
ObReferenceObject(pAcdDeviceObject);
|
|
//
|
|
// Remove the reference IoGetDeviceObjectPointer()
|
|
// put on the file object.
|
|
//
|
|
ObDereferenceObject(pAcdFileObject);
|
|
//
|
|
// Build a request to unbind from
|
|
// the automatic connection driver.
|
|
//
|
|
pIrp = IoBuildDeviceIoControlRequest (IOCTL_INTERNAL_ACD_UNBIND,
|
|
pAcdDeviceObject,
|
|
(PVOID)&pDriver,
|
|
sizeof (pDriver),
|
|
NULL,
|
|
0,
|
|
TRUE,
|
|
NULL,
|
|
&ioStatusBlock);
|
|
if (pIrp == NULL)
|
|
{
|
|
ObDereferenceObject(pAcdDeviceObject);
|
|
return;
|
|
}
|
|
|
|
//
|
|
// Submit the request to the
|
|
// automatic connection driver.
|
|
//
|
|
status = IoCallDriver(pAcdDeviceObject, pIrp);
|
|
//
|
|
// Close the device.
|
|
//
|
|
ObDereferenceObject(pAcdDeviceObject);
|
|
} // NbtAcdUnbind
|
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|
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#endif // RASAUTODIAL
|