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620 lines
16 KiB
620 lines
16 KiB
/*++
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Copyright (c) 1999 Microsoft Corporation
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Module Name:
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ifsurtl.h
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Abstract:
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This module defines all EXIFS shared routines exported to user-mode.
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Author:
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Rajeev Rajan [RajeevR] 2-June-1999
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Rohan Phillips [Rohanp] 23-June-1999 - Added provider functions
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Revision History:
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--*/
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#ifndef _IFSURTL_H_
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#define _IFSURTL_H_
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#ifdef __cplusplus
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extern "C" {
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#endif
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#ifdef _IFSURTL_IMPLEMENTATION_
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#ifndef IFSURTL_EXPORT
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#define IFSURTL_EXPORT __declspec( dllexport )
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#endif
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#else
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#ifndef IFSURTL_EXPORT
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#define IFSURTL_EXPORT __declspec( dllimport )
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#endif
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#endif
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#ifndef IFSURTL_CALLTYPE
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#define IFSURTL_CALLTYPE __stdcall
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#endif
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///////////////////////////////////////////////////////////////////////////////
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//
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// Callback for IFS functions
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//
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///////////////////////////////////////////////////////////////////////////////
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typedef void (WINAPI *PFN_IFSCALLBACK)(PVOID);
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///////////////////////////////////////////////////////////////////////////////
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//
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// Following are the structures / definitions for the large buffer package
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//
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///////////////////////////////////////////////////////////////////////////////
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#define IFS_LARGE_BUFFER_SIGNATURE (ULONG) 'fubL'
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#define IFS_CURSOR_SIGNATURE (ULONG) 'rsrC'
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#define IFS_LARGE_BUFFER_SHARED_VIEWSIZE (256*1024)
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//
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// An IFS_LARGE_BUFFER object encapsulates a temp file containing
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// data that can be passed around and used like a buffer. Typically,
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// a producer would make one of these objects and stream in large
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// amounts of data. A consumer would read different chunks of the
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// data. The object will maintain a single mapping/view of the first
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// 256K of the file.
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//
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// Consumers will need to access data using IFS_CURSORS that specify
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// the <offset,len> pair for the span of data they are interested in.
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// In the most common case, this should lie in the first 256K region,
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// which would yield the default view. If it is beyond this region,
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// views will be mapped/unmapped on demand.
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//
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typedef struct _IFS_LARGE_BUFFER {
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//
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// Signature
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//
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ULONG m_Signature;
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//
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// Handle
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//
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HANDLE m_FileContext1;
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//
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// FileObject
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//
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PVOID m_FileContext2;
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//
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// FileMapping context for first 256K or filesize
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//
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HANDLE m_MappingContext;
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//
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// Process context (optional)
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//
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PVOID m_ProcessContext;
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//
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// Memory pointer for first 256K or filesize
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//
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PBYTE m_MemoryPtr;
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//
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// Ref count - the lower WORD will count cursor refs
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// the higher WORD will count object refs
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//
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ULONG m_ReferenceCount;
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//
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// Is this a reference or a live object ?
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// If this is a reference, the fields above are NULL and
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// the m_TempFileName should be used to make a new object !
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//
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BOOL m_IsThisAReference;
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//
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// Current ValidDataLength
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//
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LARGE_INTEGER m_ValidDataLength;
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//
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// Name of temp file - we will use fixed
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// names so we can make simplyfying assumptions
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// about the filename len !
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//
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WCHAR m_TempFileName [MAX_PATH+1];
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} IFS_LARGE_BUFFER,*PIFS_LARGE_BUFFER;
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#define IsScatterListLarge( s ) FlagOn((s)->Flags, IFS_SLIST_FLAGS_LARGE_BUFFER)
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#define EXIFS_EA_LEN_LARGE_SCATTER_LIST \
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LongAlign(FIELD_OFFSET( FILE_FULL_EA_INFORMATION, EaName[0] ) + \
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sizeof(EXIFS_EA_NAME_SCATTER_LIST) + \
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LongAlign(sizeof(SCATTER_LIST) + sizeof(IFS_LARGE_BUFFER) ))
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#define EXIFS_EA_VALUE_LEN_LARGE_SCATTER_LIST \
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LongAlign(sizeof(SCATTER_LIST) + sizeof(IFS_LARGE_BUFFER) )
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//
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// An IFS_CURSOR object provides a view into a large buffer.
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// Usage is as follows:
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// + Call IfsStartCursor() to init a cursor and get a pointer
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// + Use the pointer to read/write data via IfsConsumeCursor()
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// + Call IfsFinishCursor() to close the cursor
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//
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// NOTE: Cursor usage will bump ref counts on the LARGE_BUFFER
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// object. If the LARGE_BUFFER object passed in is NOT live it
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// will instantiate one from the reference !
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//
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typedef struct _IFS_CURSOR {
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//
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// Signature
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//
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ULONG m_Signature;
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//
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// Owning large buffer object
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//
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PIFS_LARGE_BUFFER m_pLargeBuffer;
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//
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// Current Offset to start of data
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//
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LARGE_INTEGER m_Offset;
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//
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// Current Span of data
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//
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ULONG m_Length;
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//
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// Append mode - if TRUE client can cursor beyond EOF
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//
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BOOL m_AppendMode;
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//
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// Is this a shared view
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//
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BOOL m_IsViewShared;
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//
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// Did we open the buffer
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//
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HANDLE m_OwnBufferOpen;
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//
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// Did we attach to the large buffer process
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//
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BOOL m_AttachedToProcess;
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//
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// The following fields are relevant only if the view is not shared.
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// The first 256K view is shared via the mapping in the large buffer object.
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// Cursors that extend beyond 256K make their own mapping - See Below.
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//
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//
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// FileMapping context for this cursor
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//
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HANDLE m_MappingContext;
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//
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// Memory pointer for this cursor
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//
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PBYTE m_MemoryPtr;
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} IFS_CURSOR,*PIFS_CURSOR;
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//
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// Returns a pointer to data that can be used to
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// read/write. The pointer is valid only for the length
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// requested !
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// NOTE: If AppendMode is TRUE, cursors will be allowed
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// beyond EOF. This should be used by clients that wish
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// to append data to the large buffer.
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//
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PBYTE
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsGetFirstCursor(
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IN PIFS_LARGE_BUFFER pLargeBuffer,
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IN PIFS_CURSOR pCursor,
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IN ULONG StartOffsetHigh,
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IN ULONG StartOffsetLow,
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IN ULONG StartLength,
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IN BOOL fAppendMode
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);
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//
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// Consume bytes within current cursor
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// returns next pointer at which to read/write data !
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//
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// NOTE: If all the data in the cursor is consumed, returns NULL
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//
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PBYTE
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsConsumeCursor(
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IN PIFS_CURSOR pCursor,
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IN ULONG Length
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);
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//
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// Returns a pointer to data that can be used to
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// read/write. The pointer is valid only for the length
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// requested relative to the current cursor !
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//
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// NOTE: This call advances the cursor in the large buffer
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//
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PBYTE
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsGetNextCursor(
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IN PIFS_CURSOR pCursor,
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IN ULONG NextLength
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);
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//
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// Should be called for every matching GetFirstCursor() call.
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//
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VOID
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsFinishCursor(
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IN PIFS_CURSOR pCursor
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);
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//
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// Should be called to truncate the large buffer's valid data length
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//
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VOID
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsTruncateLargeBuffer(
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IN PIFS_LARGE_BUFFER pLargeBuffer,
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IN PLARGE_INTEGER pSizeToTruncate
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);
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//
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// Rules for passing around IFS_LARGE_BUFFERs:
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// 1. These objects should be passed around by reference. eg passing
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// between user & kernel or between kernel and the namecache.
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// 2. Use IfsCopyBufferByReference() to create a reference.
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// 3. If a reference exists, there should always be a live object whose
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// lifetime encapsulates the reference. This allows the consumer of the
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// reference to make a *real* copy using the reference.
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// 4. A reference can be converted into a live object. It is the responsibility
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// of the module that does this conversion to close the live object.
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// 5. Example: When EA is checked in to the namecache during CLOSE,
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// it will be passed in as a reference. During checkin, the namecache should
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// call IfsOpenBufferToReference() to hold on to the buffer. Thus,
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// when the namecache blob is finalized, it needs to call IfsCloseBuffer()
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// to close the large buffer !
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//
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//
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// IN: pLargeBuffer should be allocated by caller of the function
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// IN: Len of the buffer required - zero if len is not known apriori
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//
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// NOTE: Object needs to be closed via IfsCloseBuffer()
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//
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// USAGE: Should be used when caller needs to instantiate a large buffer
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//
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NTSTATUS
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCreateNewBuffer(
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IN PIFS_LARGE_BUFFER pLargeBuffer,
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IN DWORD dwSizeHigh,
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IN DWORD dwSizeLow,
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IN PVOID ProcessContext // optional
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);
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//
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// IN: pLargeBuffer should be allocated by caller of the function
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// IN: Len of the buffer required - zero if len is not known apriori
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//
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// NOTE: Object needs to be closed via IfsCloseBuffer()
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//
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// USAGE: Should be used when caller needs to instantiate a large buffer
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//
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NTSTATUS
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCreateNewBufferEx(
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IN PIFS_LARGE_BUFFER pLargeBuffer,
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IN DWORD dwSizeHigh,
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IN DWORD dwSizeLow,
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IN PVOID ProcessContext, // optional
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IN PUNICODE_STRING FilePath // optional
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);
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//
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// IN: pSrcLargeBuffer points to a live large buffer object
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// IN OUT: pDstLargeBuffer is initialized as a reference to the Src
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//
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// USAGE: Should be used to pass large buffers between user/kernel
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//
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VOID
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCopyBufferToReference(
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IN PIFS_LARGE_BUFFER pSrcLargeBuffer,
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IN OUT PIFS_LARGE_BUFFER pDstLargeBuffer
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);
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//
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// IN: pSrcLargeBuffer points to a large buffer object (or reference)
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// IN OUT: pDstLargeBuffer will be initialized as a live object based on
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// the reference passed in
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//
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// USAGE: Should be used to pass large buffers between user/kernel
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//
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NTSTATUS
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCopyReferenceToBuffer(
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IN PIFS_LARGE_BUFFER pSrcLargeBuffer,
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IN PVOID ProcessContext, // optional
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IN OUT PIFS_LARGE_BUFFER pDstLargeBuffer
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);
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//
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// IN: pLargeBuffer points to a large buffer object (or reference)
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//
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// NOTE: Object needs to be closed via IfsCloseBuffer()
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// OpenBuffer will always assume that the buffer len is fixed !
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//
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// USAGE: Should be used when caller needs to convert a reference to a
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// live object. If the object is already live, this will bump
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// a reference on the object !
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//
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NTSTATUS
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsOpenBufferToReference(
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IN PIFS_LARGE_BUFFER pLargeBuffer
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);
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//
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// IN: pLargeBuffer coming in points to a live large buffer
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// OUT: pLargeBuffer going out points to a NEW live large buffer
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// The functions does a (deep) copy of the buffer data.
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//
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// NOTE: Since the incoming object is live, it is closed and a
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// new object is instantiated in its place. Thus, IfsCloseBuffer()
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// needs to be called as usual on this !
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//
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NTSTATUS
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCopyBufferToNewBuffer(
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IN OUT PIFS_LARGE_BUFFER pLargeBuffer
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);
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//
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// IN: Object should have been initialized by IfsCreateNewBuffer() or
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// IfsOpenBufferToReference() or IfsCopyReferenceToBuffer()
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//
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VOID
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCloseBuffer(
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IN PIFS_LARGE_BUFFER pLargeBuffer
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);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsInitializeProvider(DWORD OsType);
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DWORD
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCloseProvider(void);
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HANDLE
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCreateFileProv(WCHAR * FileName, DWORD DesiredAccess, DWORD ShareMode, PVOID
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lpSecurityAttributes, DWORD CreateDisposition, DWORD FlagsAndAttributes,
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PVOID EaBuffer, DWORD EaBufferSize);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsInitializeRoot(HANDLE hFileHandle, WCHAR * szRootName, WCHAR * SlvFileName, DWORD InstanceId,
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DWORD AllocationUnit, DWORD FileFlags);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsSpaceGrantRoot(HANDLE hFileHandle, WCHAR * szRootName, PSCATTER_LIST pSList, size_t cbListSize);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsSetEndOfFileRoot(HANDLE hFileHandle, WCHAR * szRootName, LONGLONG EndOfFile);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsSpaceRequestRoot(HANDLE hFileHandle, WCHAR * szRootName, PFN_IFSCALLBACK pfnIfsCallBack,
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PVOID pContext, PVOID Ov);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsQueryEaFile(HANDLE hFileHandle, WCHAR * szFileName, WCHAR * NetRootName, PVOID EaBufferIn, DWORD EaBufferInSize,
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PVOID EaBufferOut, DWORD EaBufferOutSize, DWORD * RequiredLength);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsSetEaFile(HANDLE hFileHandle, WCHAR * szFileName, PVOID EaBufferIn, DWORD EaBufferInSize);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsTerminateRoot(HANDLE hFileHandle, WCHAR *szRootName, ULONG Mode);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsGetOverlappedResult(HANDLE hFileHandle, PVOID Ov, DWORD * BytesReturned, BOOL Wait);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsReadFile(HANDLE hFileHandle, BYTE * InputBuffer, DWORD BytesToRead, PFN_IFSCALLBACK IfsCallBack,
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PVOID Overlapped);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsWriteFile(HANDLE hFileHandle, BYTE * InputBuffer, DWORD BytesToWrite, PFN_IFSCALLBACK IfsCallBack,
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PVOID Overlapped);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsDeviceIoControl(HANDLE hDevice, DWORD dwIoControlCode, LPVOID lpInputBuffer, DWORD cbInBufferSize,
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LPVOID lpOutBuffer, DWORD cbOutBufferSize, LPDWORD lpBytesReturned, PVOID Overlapped);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsExpungName(HANDLE hFileHandle, WCHAR * szRootName, WCHAR * szFileName, ULONG cbPath);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsDirChangeReport(HANDLE hFileHandle, WCHAR * szRootName, ULONG ulFilterMatch,
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ULONG ulAction, PWSTR pwszPath, ULONG cbPath);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsQueryRootStats(HANDLE hFileHandle, WCHAR * szRootName, PVOID Buffer, DWORD BuffSize);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsRegisterUmrThread(HANDLE hFileHandle, PFN_IFSCALLBACK pfnIfsCallBack);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsUmrEnableNetRoot(HANDLE hFileHandle, WCHAR * szRootName, DWORD * InstanceId);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsUmrDisableNetRoot(HANDLE hFileHandle, WCHAR * szRootName);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsStopUmrEngine(HANDLE hFileHandle, WCHAR * szRootName);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsStartUmrEngine(HANDLE hFileHandle, WCHAR * szRootName);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsCloseHandle(HANDLE hFileHandle);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsSetRootMap(HANDLE hFileHandle, WCHAR * szRootName, PSCATTER_LIST pSList, size_t cbListSize);
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BOOL
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IFSURTL_EXPORT
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IFSURTL_CALLTYPE
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IfsResetRootMap(HANDLE hFileHandle, WCHAR * szRootName);
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NTSTATUS
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IFSURTL_EXPORT
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NTAPI
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IfsNtCreateFile(
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OUT PHANDLE FileHandle,
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IN ACCESS_MASK DesiredAccess,
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IN POBJECT_ATTRIBUTES ObjectAttributes,
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|
OUT PIO_STATUS_BLOCK IoStatusBlock,
|
|
IN PLARGE_INTEGER AllocationSize OPTIONAL,
|
|
IN ULONG FileAttributes,
|
|
IN ULONG ShareAccess,
|
|
IN ULONG CreateDisposition,
|
|
IN ULONG CreateOptions,
|
|
IN PVOID EaBuffer OPTIONAL,
|
|
IN ULONG EaLength
|
|
);
|
|
|
|
|
|
|
|
NTSTATUS
|
|
IFSURTL_EXPORT
|
|
NTAPI
|
|
IfsNtQueryEaFile(
|
|
IN HANDLE FileHandle,
|
|
OUT PIO_STATUS_BLOCK IoStatusBlock,
|
|
OUT PVOID Buffer,
|
|
IN ULONG Length,
|
|
IN BOOLEAN ReturnSingleEntry,
|
|
IN PVOID EaList OPTIONAL,
|
|
IN ULONG EaListLength,
|
|
IN PULONG EaIndex OPTIONAL,
|
|
IN BOOLEAN RestartScan
|
|
);
|
|
|
|
|
|
|
|
VOID
|
|
IFSURTL_EXPORT
|
|
NTAPI
|
|
IfsRtlInitUnicodeString(
|
|
PUNICODE_STRING DestinationString,
|
|
PCWSTR SourceString
|
|
);
|
|
|
|
|
|
|
|
LONG
|
|
IFSURTL_EXPORT
|
|
NTAPI
|
|
IfsRtlCompareUnicodeString(
|
|
PUNICODE_STRING String1,
|
|
PUNICODE_STRING String2,
|
|
BOOLEAN CaseInSensitive
|
|
);
|
|
|
|
|
|
BOOL
|
|
IFSURTL_EXPORT
|
|
IFSURTL_CALLTYPE
|
|
IfsFlushHandle(HANDLE hFileHandle,
|
|
WCHAR * szFileName,
|
|
WCHAR * NetRootName,
|
|
PVOID EaBufferIn,
|
|
DWORD EaBufferInSize
|
|
);
|
|
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|
|
|
|
#endif // _IFSURTL_H_
|
|
|