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736 lines
22 KiB
736 lines
22 KiB
/*++
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Copyright (c) 1989 Microsoft Corporation
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Module Name:
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mm.c
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Abstract:
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This module implements the memory managment routines for the SMB mini
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redirector
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Author:
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Balan Sethu Raman [SethuR] 7-March-1995
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Revision History:
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Notes:
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The SMB mini redirector manipulates entities which have very different usage
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patterns. They range from very static entities ( which are allocated and freed
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with a very low frequency ) to very dynamic entities.
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The entities manipulated in the SMB mini redirector are SMBCE_SERVER, SMBCE_NET_ROOT,
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SMBCE_VC, SMBCE_SESSION. These represent a connection to a server, a share on
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a particular server, a virtual circuit used in the connection and a session
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for a particular user.
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These are not very dynamic, i.e., the allocation/deallocation is very infrequent.
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The SMB_EXCHANGE and SMBCE_REQUEST map to the SMB's that are sent along that
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a connection. Every file operation in turn maps to a certain number of calls
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for allocationg/freeing exchanges and requests. Therefore it is imperative
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that some form of scavenging/caching of recently freed entries be maintained
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to satisfy requests quickly.
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In the current implementation the exchanges and requests are implemented
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using the zone allocation primitives.
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The exchange allocation and free routines are currently implemented as wrappers
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around the RxAllocate and RxFree routines. It would be far more efficient if
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a look aside cache of some exchange instances are maintained.
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--*/
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#include "precomp.h"
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#pragma hdrstop
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#include <exsessup.h>
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#include <mssndrcv.h>
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#include <vcsndrcv.h>
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(PAGE, SmbMmAllocateSessionEntry)
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#pragma alloc_text(PAGE, SmbMmFreeSessionEntry)
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#pragma alloc_text(PAGE, SmbMmAllocateServerTransport)
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#pragma alloc_text(PAGE, SmbMmFreeServerTransport)
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#pragma alloc_text(PAGE, SmbMmInit)
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#pragma alloc_text(PAGE, SmbMmTearDown)
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#endif
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#define SMBMM_ZONE_ALLOCATION 0x10
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// The memory management package addresses a number of concerns w.r.t debugging
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// and performance. By centralizing all the allocation/deallocation routines to
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// thsi one module it is possible to build up profiles regarding various data
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// structures used by the connection engine. In addition debugging support is
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// provided by thereading together all allocated objects of a particular type
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// are threaded together in a linked list according to type.
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//
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// At any stage by inspecting these lists the currently active instances of a
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// particular type can be enumerated.
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//
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// Each type handled by this module is provided with two routines, e.g., for
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// server entries there are SmbMmInitializeEntry and SmbMmUninitializeEntry. The
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// first routine is called before handing over a pointer of a newly created
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// instance. This will ensure that the instance is in a wll known initial state.
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// Similarly the second routine is called just before deallocating the pool
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// associated with the instance. This helps enforce the necessary integrity
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// constraints, e.g., all enclosed pointers must be NULL etc.
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//
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// The pool allocation/deallocation is handled by the following routines
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//
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// SmbMmAllocateObjectPool/SmbMmFreeObjectPool
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//
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// SmbMmAllocateExchange/SmbMmFreeExchange
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//
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// The Object allocation routines are split up into two parts so as to be able to
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// handle the session allocationson par with other objects even though they are
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// further subtyped.
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//
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// On debug builds additional pool is allocated and the appropriate linking is
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// done into the corresponding list. On retail builds these map to the regular
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// pool allocation wrappers.
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//
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// Zone allocation to speed up memory management of RxCe entities.
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//
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ULONG SmbMmRequestZoneEntrySize;
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ZONE_HEADER SmbMmRequestZone;
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PVOID SmbMmRequestZoneSegmentPtr;
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//
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// Pool allocation resources and spin locks
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//
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KSPIN_LOCK SmbMmSpinLock;
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ULONG SmbMmExchangeId;
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//
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// List of the various objects/exchanges allocated.
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//
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LIST_ENTRY SmbMmExchangesInUse[SENTINEL_EXCHANGE];
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LIST_ENTRY SmbMmObjectsInUse[SMBCEDB_OT_SENTINEL];
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ULONG ObjectSizeInBytes[SMBCEDB_OT_SENTINEL];
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ULONG ExchangeSizeInBytes[SENTINEL_EXCHANGE];
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//
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// Lookaside lists for Exchange allocation
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//
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NPAGED_LOOKASIDE_LIST SmbMmExchangesLookasideList[SENTINEL_EXCHANGE];
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INLINE PSMBCE_OBJECT_HEADER
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SmbMmAllocateObjectPool(
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SMBCEDB_OBJECT_TYPE ObjectType,
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ULONG PoolType,
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ULONG PoolSize)
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{
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KIRQL SavedIrql;
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PVOID pv = NULL;
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UCHAR Flags = 0;
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PSMBCE_OBJECT_HEADER pHeader = NULL;
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ASSERT((ObjectType >= 0) && (ObjectType < SMBCEDB_OT_SENTINEL));
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if (ObjectType == SMBCEDB_OT_REQUEST) {
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// Acquire the resource lock.
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KeAcquireSpinLock( &SmbMmSpinLock, &SavedIrql );
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if (!ExIsFullZone( &SmbMmRequestZone )) {
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pv = ExAllocateFromZone( &SmbMmRequestZone );
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Flags = SMBMM_ZONE_ALLOCATION;
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}
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// Release the resource lock.
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KeReleaseSpinLock( &SmbMmSpinLock, SavedIrql );
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}
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if (pv == NULL) {
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PLIST_ENTRY pListEntry;
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pv = RxAllocatePoolWithTag(
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PoolType,
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PoolSize + sizeof(LIST_ENTRY),
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MRXSMB_MM_POOLTAG);
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if (pv != NULL) {
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pListEntry = (PLIST_ENTRY)pv;
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pHeader = (PSMBCE_OBJECT_HEADER)(pListEntry + 1);
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ExInterlockedInsertTailList(
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&SmbMmObjectsInUse[ObjectType],
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pListEntry,
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&SmbMmSpinLock);
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}
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} else {
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pHeader = (PSMBCE_OBJECT_HEADER)pv;
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}
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if (pHeader != NULL) {
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// Zero the memory.
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RtlZeroMemory( pHeader, PoolSize);
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pHeader->Flags = Flags;
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}
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return pHeader;
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}
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VOID
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SmbMmFreeObjectPool(
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PSMBCE_OBJECT_HEADER pHeader)
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{
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KIRQL SavedIrql;
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BOOLEAN ZoneAllocation = FALSE;
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PLIST_ENTRY pListEntry;
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ASSERT((pHeader->ObjectType >= 0) && (pHeader->ObjectType < SMBCEDB_OT_SENTINEL));
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// Acquire the resource lock.
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KeAcquireSpinLock( &SmbMmSpinLock, &SavedIrql );
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// Check if it was a zone allocation
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if (pHeader->Flags & SMBMM_ZONE_ALLOCATION) {
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ZoneAllocation = TRUE;
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ExFreeToZone(&SmbMmRequestZone,pHeader);
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} else {
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pListEntry = (PLIST_ENTRY)((PCHAR)pHeader - sizeof(LIST_ENTRY));
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RemoveEntryList(pListEntry);
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}
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// Release the resource lock.
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KeReleaseSpinLock( &SmbMmSpinLock, SavedIrql );
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if (!ZoneAllocation) {
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RxFreePool(pListEntry);
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}
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}
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// Construction and destruction of various SMB connection engine objects
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//
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#define SmbMmInitializeServerEntry(pServerEntry) \
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InitializeListHead(&(pServerEntry)->OutstandingRequests.ListHead); \
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InitializeListHead(&(pServerEntry)->MidAssignmentRequests.ListHead); \
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InitializeListHead(&(pServerEntry)->SecuritySignatureSyncRequests.ListHead); \
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InitializeListHead(&(pServerEntry)->Sessions.ListHead); \
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InitializeListHead(&(pServerEntry)->NetRoots.ListHead); \
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InitializeListHead(&(pServerEntry)->VNetRootContexts.ListHead); \
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InitializeListHead(&(pServerEntry)->ActiveExchanges); \
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InitializeListHead(&(pServerEntry)->ExpiredExchanges); \
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InitializeListHead(&(pServerEntry)->Sessions.DefaultSessionList); \
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(pServerEntry)->pTransport = NULL; \
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(pServerEntry)->pMidAtlas = NULL
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#define SmbMmInitializeSessionEntry(pSessionEntry) \
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InitializeListHead(&(pSessionEntry)->Requests.ListHead); \
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InitializeListHead(&(pSessionEntry)->SerializationList); \
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(pSessionEntry)->DefaultSessionLink.Flink = NULL; \
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(pSessionEntry)->DefaultSessionLink.Blink = NULL
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#define SmbMmInitializeNetRootEntry(pNetRootEntry) \
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InitializeListHead(&(pNetRootEntry)->Requests.ListHead)
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#define SmbMmUninitializeServerEntry(pServerEntry) \
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ASSERT(IsListEmpty(&(pServerEntry)->OutstandingRequests.ListHead) && \
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IsListEmpty(&(pServerEntry)->MidAssignmentRequests.ListHead) && \
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IsListEmpty(&(pServerEntry)->SecuritySignatureSyncRequests.ListHead) && \
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IsListEmpty(&(pServerEntry)->Sessions.ListHead) && \
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IsListEmpty(&(pServerEntry)->NetRoots.ListHead) && \
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((pServerEntry)->pMidAtlas == NULL))
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#define SmbMmUninitializeSessionEntry(pSessionEntry) \
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ASSERT(IsListEmpty(&(pSessionEntry)->Requests.ListHead) && \
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((pSessionEntry)->DefaultSessionLink.Flink == NULL))
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#define SmbMmUninitializeNetRootEntry(pNetRootEntry) \
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ASSERT(IsListEmpty(&(pNetRootEntry)->Requests.ListHead))
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#define SmbMmInitializeRequestEntry(pRequestEntry)
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#define SmbMmUninitializeRequestEntry(pRequestEntry)
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PVOID
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SmbMmAllocateObject(
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SMBCEDB_OBJECT_TYPE ObjectType)
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{
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PSMBCE_OBJECT_HEADER pHeader;
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ASSERT((ObjectType >= 0) && (ObjectType < SMBCEDB_OT_SENTINEL));
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pHeader = SmbMmAllocateObjectPool(
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ObjectType,
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NonPagedPool,
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ObjectSizeInBytes[ObjectType]);
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if (pHeader != NULL) {
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pHeader->NodeType = SMB_CONNECTION_ENGINE_NTC(ObjectType);
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pHeader->State = SMBCEDB_START_CONSTRUCTION;
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switch (ObjectType) {
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case SMBCEDB_OT_SERVER :
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SmbMmInitializeServerEntry((PSMBCEDB_SERVER_ENTRY)pHeader);
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break;
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case SMBCEDB_OT_NETROOT :
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SmbMmInitializeNetRootEntry((PSMBCEDB_NET_ROOT_ENTRY)pHeader);
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break;
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case SMBCEDB_OT_REQUEST :
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SmbMmInitializeRequestEntry((PSMBCEDB_REQUEST_ENTRY)pHeader);
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break;
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default:
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ASSERT(!"Valid Type for SmbMmAllocateObject");
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break;
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}
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}
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return pHeader;
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}
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VOID
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SmbMmFreeObject(
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PVOID pv)
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{
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PSMBCE_OBJECT_HEADER pHeader = (PSMBCE_OBJECT_HEADER)pv;
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switch (pHeader->ObjectType) {
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case SMBCEDB_OT_SERVER :
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SmbMmUninitializeServerEntry((PSMBCEDB_SERVER_ENTRY)pHeader);
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break;
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case SMBCEDB_OT_NETROOT :
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SmbMmUninitializeNetRootEntry((PSMBCEDB_NET_ROOT_ENTRY)pHeader);
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break;
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case SMBCEDB_OT_REQUEST :
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SmbMmUninitializeRequestEntry((PSMBCEDB_REQUEST_ENTRY)pHeader);
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break;
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default:
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ASSERT(!"Valid Type for SmbMmFreeObject");
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break;
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}
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SmbMmFreeObjectPool(pHeader);
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}
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PSMBCEDB_SESSION_ENTRY
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SmbMmAllocateSessionEntry(
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PSMBCEDB_SERVER_ENTRY pServerEntry,
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BOOLEAN RemoteBootSession)
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{
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PSMBCEDB_SESSION_ENTRY pSessionEntry;
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SESSION_TYPE SessionType;
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ULONG SessionSize;
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PAGED_CODE();
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SessionSize = sizeof(SMBCEDB_SESSION_ENTRY) -
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sizeof(SMBCE_SESSION);
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if (pServerEntry->Header.State != SMBCEDB_INVALID) {
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if ((pServerEntry->Server.DialectFlags & DF_EXTENDED_SECURITY) && !RemoteBootSession) {
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SessionSize += sizeof(SMBCE_EXTENDED_SESSION);
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SessionType = EXTENDED_NT_SESSION;
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} else {
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// allocate a LANMAN session
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SessionSize += sizeof(SMBCE_SESSION);
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SessionType = LANMAN_SESSION;
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}
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} else {
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SessionSize += sizeof(SMBCE_EXTENDED_SESSION);
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SessionType = UNINITIALIZED_SESSION;
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}
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pSessionEntry = (PSMBCEDB_SESSION_ENTRY)
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SmbMmAllocateObjectPool(
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SMBCEDB_OT_SESSION,
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NonPagedPool,
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SessionSize);
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if (pSessionEntry != NULL) {
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pSessionEntry->Header.NodeType = SMB_CONNECTION_ENGINE_NTC(SMBCEDB_OT_SESSION);
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pSessionEntry->Header.State = SMBCEDB_START_CONSTRUCTION;
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pSessionEntry->Session.Type = SessionType;
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SmbMmInitializeSessionEntry(pSessionEntry);
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SecInvalidateHandle( &pSessionEntry->Session.CredentialHandle );
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SecInvalidateHandle( &pSessionEntry->Session.SecurityContextHandle );
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if (SessionType == EXTENDED_NT_SESSION) {
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PSMBCE_EXTENDED_SESSION pExtSecuritySession = (PSMBCE_EXTENDED_SESSION)&pSessionEntry->Session;
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pExtSecuritySession->pServerResponseBlob = NULL;
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pExtSecuritySession->ServerResponseBlobLength = 0;
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}
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}
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return pSessionEntry;
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}
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VOID
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SmbMmFreeSessionEntry(
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PSMBCEDB_SESSION_ENTRY pSessionEntry)
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{
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PAGED_CODE();
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if (pSessionEntry->Session.Type == EXTENDED_NT_SESSION) {
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// KERBEROS specific asserts
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}
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SmbMmUninitializeSessionEntry(pSessionEntry);
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SmbMmFreeObjectPool(&pSessionEntry->Header);
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}
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PVOID
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SmbMmAllocateExchange(
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SMB_EXCHANGE_TYPE ExchangeType,
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PVOID pv)
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{
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KIRQL SavedIrql;
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ULONG SizeInBytes;
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USHORT Flags = 0;
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PSMB_EXCHANGE pExchange = NULL;
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PLIST_ENTRY pListEntry;
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ASSERT((ExchangeType >= 0) && (ExchangeType < SENTINEL_EXCHANGE));
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if (pv==NULL) {
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pv = ExAllocateFromNPagedLookasideList(
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&SmbMmExchangesLookasideList[ExchangeType]);
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} else {
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Flags |= SMBCE_EXCHANGE_NOT_FROM_POOL;
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}
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if (pv != NULL) {
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// Initialize the object header
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pExchange = (PSMB_EXCHANGE)(pv);
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// Zero the memory.
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RtlZeroMemory(
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pExchange,
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ExchangeSizeInBytes[ExchangeType]);
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pExchange->NodeTypeCode = SMB_EXCHANGE_NTC(ExchangeType);
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pExchange->NodeByteSize = (USHORT)ExchangeSizeInBytes[ExchangeType];
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pExchange->SmbCeState = SMBCE_EXCHANGE_INITIALIZATION_START;
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pExchange->SmbCeFlags = Flags;
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InitializeListHead(&pExchange->ExchangeList);
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InitializeListHead(&pExchange->CancelledList);
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switch (pExchange->Type) {
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case CONSTRUCT_NETROOT_EXCHANGE:
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pExchange->pDispatchVector = &ConstructNetRootExchangeDispatch;
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break;
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case TRANSACT_EXCHANGE :
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pExchange->pDispatchVector = &TransactExchangeDispatch;
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break;
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case EXTENDED_SESSION_SETUP_EXCHANGE:
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pExchange->pDispatchVector = &ExtendedSessionSetupExchangeDispatch;
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break;
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case ADMIN_EXCHANGE:
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pExchange->pDispatchVector = &AdminExchangeDispatch;
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break;
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}
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// Acquire the resource lock.
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KeAcquireSpinLock( &SmbMmSpinLock, &SavedIrql );
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InsertTailList(
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&SmbMmExchangesInUse[pExchange->Type],
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&pExchange->SmbMmInUseListEntry);
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pExchange->Id = SmbMmExchangeId++;
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|
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// Release the resource lock.
|
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KeReleaseSpinLock( &SmbMmSpinLock, SavedIrql );
|
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}
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return pExchange;
|
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}
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VOID
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SmbMmFreeExchange(
|
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PSMB_EXCHANGE pExchange)
|
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{
|
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if (pExchange != NULL) {
|
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SMB_EXCHANGE_TYPE ExchangeType;
|
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|
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KIRQL SavedIrql;
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ExchangeType = pExchange->Type;
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|
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ASSERT((ExchangeType >= 0) && (ExchangeType < SENTINEL_EXCHANGE));
|
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ASSERT(pExchange->MdlForServerResponse == NULL &&
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pExchange->BufferForServerResponse == NULL);
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|
|
if (pExchange->WorkQueueItem.List.Flink != NULL) {
|
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//DbgBreakPoint();
|
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}
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|
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// Acquire the resource lock.
|
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KeAcquireSpinLock( &SmbMmSpinLock, &SavedIrql );
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|
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RemoveEntryList(&pExchange->SmbMmInUseListEntry);
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// Release the resource lock.
|
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KeReleaseSpinLock( &SmbMmSpinLock, SavedIrql );
|
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|
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if (!FlagOn(pExchange->SmbCeFlags,SMBCE_EXCHANGE_NOT_FROM_POOL)) {
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ExFreeToNPagedLookasideList(
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&SmbMmExchangesLookasideList[ExchangeType],
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pExchange);
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}
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}
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}
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|
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PVOID
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SmbMmAllocateServerTransport(
|
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SMBCE_SERVER_TRANSPORT_TYPE ServerTransportType)
|
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{
|
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PSMBCE_OBJECT_HEADER pHeader;
|
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|
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ULONG AllocationSize;
|
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ULONG PoolTag;
|
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|
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PAGED_CODE();
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|
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switch (ServerTransportType) {
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case SMBCE_STT_VC:
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AllocationSize = sizeof(SMBCE_SERVER_VC_TRANSPORT);
|
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PoolTag = MRXSMB_VC_POOLTAG;
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break;
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case SMBCE_STT_MAILSLOT:
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AllocationSize = sizeof(SMBCE_SERVER_MAILSLOT_TRANSPORT);
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PoolTag = MRXSMB_MAILSLOT_POOLTAG;
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break;
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|
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default:
|
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ASSERT(!"Valid Server Transport Type");
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return NULL;
|
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}
|
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|
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pHeader = (PSMBCE_OBJECT_HEADER)
|
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RxAllocatePoolWithTag(
|
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NonPagedPool,
|
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AllocationSize,
|
|
PoolTag);
|
|
|
|
if (pHeader != NULL) {
|
|
PSMBCE_SERVER_TRANSPORT pServerTransport;
|
|
|
|
RtlZeroMemory(pHeader,AllocationSize);
|
|
|
|
pHeader->ObjectCategory = SMB_SERVER_TRANSPORT_CATEGORY;
|
|
pHeader->ObjectType = (UCHAR)ServerTransportType;
|
|
pHeader->SwizzleCount = 0;
|
|
pHeader->State = 0;
|
|
pHeader->Flags = 0;
|
|
|
|
pServerTransport = (PSMBCE_SERVER_TRANSPORT)pHeader;
|
|
|
|
pServerTransport->pRundownEvent = NULL;
|
|
|
|
switch (ServerTransportType) {
|
|
case SMBCE_STT_MAILSLOT:
|
|
break;
|
|
|
|
case SMBCE_STT_VC:
|
|
{
|
|
PSMBCE_SERVER_VC_TRANSPORT pVcTransport;
|
|
|
|
pVcTransport = (PSMBCE_SERVER_VC_TRANSPORT)pHeader;
|
|
}
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
return pHeader;
|
|
}
|
|
|
|
VOID
|
|
SmbMmFreeServerTransport(
|
|
PSMBCE_SERVER_TRANSPORT pServerTransport)
|
|
{
|
|
PAGED_CODE();
|
|
|
|
ASSERT((pServerTransport->SwizzleCount == 0) &&
|
|
(pServerTransport->ObjectCategory == SMB_SERVER_TRANSPORT_CATEGORY));
|
|
|
|
RxFreePool(pServerTransport);
|
|
}
|
|
|
|
NTSTATUS SmbMmInit()
|
|
/*++
|
|
|
|
Routine Description:
|
|
|
|
This routine initialises the connection engine structures for memory management
|
|
|
|
Return Value:
|
|
|
|
STATUS_SUCCESS if successful, otherwise an informative error code.
|
|
|
|
--*/
|
|
{
|
|
NTSTATUS Status = STATUS_SUCCESS;
|
|
ULONG ZoneSegmentSize;
|
|
|
|
PAGED_CODE();
|
|
|
|
// Initialize the resource lock for the zone allocator.
|
|
KeInitializeSpinLock( &SmbMmSpinLock );
|
|
|
|
SmbMmRequestZoneEntrySize = QuadAlign(sizeof(SMBCEDB_REQUEST_ENTRY));
|
|
|
|
// Currently the request zone size is restricted to that of a page. This can and should
|
|
// be fine tuned.
|
|
ZoneSegmentSize = PAGE_SIZE;
|
|
|
|
SmbMmRequestZoneSegmentPtr = RxAllocatePoolWithTag(
|
|
NonPagedPool,
|
|
ZoneSegmentSize,
|
|
MRXSMB_MM_POOLTAG);
|
|
|
|
if (SmbMmRequestZoneSegmentPtr != NULL) {
|
|
SMB_EXCHANGE_TYPE ExchangeType;
|
|
|
|
ExInitializeZone(
|
|
&SmbMmRequestZone,
|
|
SmbMmRequestZoneEntrySize,
|
|
SmbMmRequestZoneSegmentPtr,
|
|
ZoneSegmentSize );
|
|
|
|
// set up the sizes for allocation.
|
|
ObjectSizeInBytes[SMBCEDB_OT_SERVER] = sizeof(SMBCEDB_SERVER_ENTRY);
|
|
ObjectSizeInBytes[SMBCEDB_OT_NETROOT] = sizeof(SMBCEDB_NET_ROOT_ENTRY);
|
|
ObjectSizeInBytes[SMBCEDB_OT_SESSION] = sizeof(SMBCEDB_SESSION_ENTRY);
|
|
ObjectSizeInBytes[SMBCEDB_OT_REQUEST] = sizeof(SMBCEDB_REQUEST_ENTRY);
|
|
|
|
ExchangeSizeInBytes[CONSTRUCT_NETROOT_EXCHANGE] = sizeof(SMB_CONSTRUCT_NETROOT_EXCHANGE);
|
|
ExchangeSizeInBytes[TRANSACT_EXCHANGE] = sizeof(SMB_TRANSACT_EXCHANGE);
|
|
ExchangeSizeInBytes[ORDINARY_EXCHANGE] = sizeof(SMB_PSE_ORDINARY_EXCHANGE);
|
|
ExchangeSizeInBytes[EXTENDED_SESSION_SETUP_EXCHANGE]
|
|
= sizeof(SMB_EXTENDED_SESSION_SETUP_EXCHANGE);
|
|
ExchangeSizeInBytes[ADMIN_EXCHANGE] = sizeof(SMB_ADMIN_EXCHANGE);
|
|
|
|
InitializeListHead(&SmbMmExchangesInUse[CONSTRUCT_NETROOT_EXCHANGE]);
|
|
ExInitializeNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[CONSTRUCT_NETROOT_EXCHANGE],
|
|
ExAllocatePoolWithTag,
|
|
ExFreePool,
|
|
0,
|
|
sizeof(SMB_CONSTRUCT_NETROOT_EXCHANGE),
|
|
MRXSMB_MM_POOLTAG,
|
|
1);
|
|
|
|
InitializeListHead(&SmbMmExchangesInUse[TRANSACT_EXCHANGE]);
|
|
ExInitializeNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[TRANSACT_EXCHANGE],
|
|
ExAllocatePoolWithTag,
|
|
ExFreePool,
|
|
0,
|
|
sizeof(SMB_TRANSACT_EXCHANGE),
|
|
MRXSMB_MM_POOLTAG,
|
|
2);
|
|
|
|
InitializeListHead(&SmbMmExchangesInUse[ORDINARY_EXCHANGE]);
|
|
ExInitializeNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[ORDINARY_EXCHANGE],
|
|
ExAllocatePoolWithTag,
|
|
ExFreePool,
|
|
0,
|
|
sizeof(SMB_PSE_ORDINARY_EXCHANGE),
|
|
MRXSMB_MM_POOLTAG,
|
|
4);
|
|
|
|
InitializeListHead(&SmbMmExchangesInUse[EXTENDED_SESSION_SETUP_EXCHANGE]);
|
|
ExInitializeNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[EXTENDED_SESSION_SETUP_EXCHANGE],
|
|
ExAllocatePoolWithTag,
|
|
ExFreePool,
|
|
0,
|
|
sizeof(SMB_EXTENDED_SESSION_SETUP_EXCHANGE),
|
|
MRXSMB_MM_POOLTAG,
|
|
1);
|
|
|
|
InitializeListHead(&SmbMmExchangesInUse[ADMIN_EXCHANGE]);
|
|
ExInitializeNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[ADMIN_EXCHANGE],
|
|
ExAllocatePoolWithTag,
|
|
ExFreePool,
|
|
0,
|
|
sizeof(SMB_ADMIN_EXCHANGE),
|
|
MRXSMB_MM_POOLTAG,
|
|
1);
|
|
|
|
InitializeListHead(&SmbMmObjectsInUse[SMBCEDB_OT_SERVER]);
|
|
InitializeListHead(&SmbMmObjectsInUse[SMBCEDB_OT_SESSION]);
|
|
InitializeListHead(&SmbMmObjectsInUse[SMBCEDB_OT_NETROOT]);
|
|
InitializeListHead(&SmbMmObjectsInUse[SMBCEDB_OT_REQUEST]);
|
|
|
|
SmbMmExchangeId = 1;
|
|
} else {
|
|
Status = STATUS_INSUFFICIENT_RESOURCES;
|
|
}
|
|
|
|
return Status;
|
|
}
|
|
|
|
VOID SmbMmTearDown()
|
|
/*++
|
|
|
|
Routine Description:
|
|
|
|
This routine tears down the memory management structures in the SMB connection
|
|
engine
|
|
|
|
--*/
|
|
{
|
|
NTSTATUS Status;
|
|
|
|
PAGED_CODE();
|
|
|
|
// free the segment associated with RxCe object allocation.
|
|
RxFreePool(SmbMmRequestZoneSegmentPtr);
|
|
|
|
ExDeleteNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[CONSTRUCT_NETROOT_EXCHANGE]);
|
|
|
|
ExDeleteNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[TRANSACT_EXCHANGE]);
|
|
|
|
ExDeleteNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[ORDINARY_EXCHANGE]);
|
|
|
|
ExDeleteNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[EXTENDED_SESSION_SETUP_EXCHANGE]);
|
|
|
|
ExDeleteNPagedLookasideList(
|
|
&SmbMmExchangesLookasideList[ADMIN_EXCHANGE]);
|
|
}
|
|
|
|
|
|
|