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274 lines
6.5 KiB
274 lines
6.5 KiB
/*++
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Copyright (c) 1990 Microsoft Corporation
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Module Name:
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RstrtSup.c
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Abstract:
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This module implements support for dealing with the Lfs restart area.
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Author:
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Brian Andrew [BrianAn] 20-June-1991
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Revision History:
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--*/
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#include "lfsprocs.h"
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//
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// The debug trace level
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//
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#define Dbg (DEBUG_TRACE_RESTART_SUP)
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(PAGE, LfsFindOldestClientLsn)
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#pragma alloc_text(PAGE, LfsWriteLfsRestart)
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#endif
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VOID
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LfsWriteLfsRestart (
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IN PLFCB Lfcb,
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IN ULONG ThisRestartSize,
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IN BOOLEAN WaitForIo
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)
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/*++
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Routine Description:
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This routine puts the Lfs restart area on the queue of operations to
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write to the file. We do this by allocating a second restart area
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and attaching it to the Lfcb. We also allocate a buffer control
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block to use for this write. We look at the WaitForIo boolean to
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determine whether this thread can perform the I/O. This also indicates
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whether this thread gives up the Lfcb.
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Arguments:
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Lfcb - A pointer to the log file control block for this operation.
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ThisRestartSize - This is the size to use for the restart area.
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WaitForIo - Indicates if this thread is to perform the work.
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Return Value:
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None.
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--*/
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{
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PLBCB NewLbcb = NULL;
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PLFS_RESTART_AREA NewRestart = NULL;
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PAGED_CODE();
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DebugTrace( +1, Dbg, "LfsWriteLfsRestart: Entered\n", 0 );
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DebugTrace( 0, Dbg, "Lfcb -> %08lx\n", Lfcb );
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DebugTrace( 0, Dbg, "Write Chkdsk -> %04x\n", WriteChkdsk );
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DebugTrace( 0, Dbg, "Restart Size -> %08lx\n", ThisRestartSize );
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DebugTrace( 0, Dbg, "WaitForIo -> %08lx\n", WaitForIo );
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//
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// We'd absolutely hate for this to happen on a read only volume.
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//
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ASSERT(!(FlagOn( Lfcb->Flags, LFCB_READ_ONLY )));
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//
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// Use a try-finally to facilitate cleanup.
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//
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try {
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PLBCB ActiveLbcb;
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//
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// We allocate another restart area and
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// copy the current area into it. Attach the new area to the Lfcb.
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//
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LfsAllocateRestartArea( &NewRestart, ThisRestartSize );
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//
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// We allocate a Lbcb structure and update the values to
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// reflect this restart area.
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//
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LfsAllocateLbcb( Lfcb, &NewLbcb );
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SetFlag( NewLbcb->LbcbFlags, LBCB_RESTART_LBCB );
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//
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// If this is the second page, then add a page to the offset.
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//
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if (!Lfcb->InitialRestartArea) {
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NewLbcb->FileOffset = Lfcb->LogPageSize + NewLbcb->FileOffset;
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}
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(ULONG)NewLbcb->Length = ThisRestartSize;
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NewLbcb->PageHeader = (PVOID) Lfcb->RestartArea;
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//
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// Lets put the current lsn in the Lbcb.
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//
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NewLbcb->LastEndLsn = NewLbcb->LastLsn = Lfcb->NextRestartLsn;
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Lfcb->NextRestartLsn.QuadPart = 1 + Lfcb->NextRestartLsn.QuadPart;
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//
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// Copy the existing restart area into the new area.
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//
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RtlCopyMemory( NewRestart, Lfcb->RestartArea, ThisRestartSize );
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Lfcb->RestartArea = NewRestart;
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Lfcb->ClientArray = Add2Ptr( NewRestart, Lfcb->ClientArrayOffset, PLFS_CLIENT_RECORD );
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NewRestart = NULL;
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//
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// Update the Lfcb to indicate that the other restart area
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// on the disk is to be used.
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//
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Lfcb->InitialRestartArea = !Lfcb->InitialRestartArea;
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//
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// Add this Lbcb to the end of the workque and flush to that point.
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//
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InsertTailList( &Lfcb->LbcbWorkque, &NewLbcb->WorkqueLinks );
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//
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// If we don't support a packed log file then we need to make
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// sure that all file records written out ahead of this
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// restart area make it out to disk and we don't add anything
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// to this page.
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//
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if (!FlagOn( Lfcb->Flags, LFCB_PACK_LOG )
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&& !IsListEmpty( &Lfcb->LbcbActive )) {
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ActiveLbcb = CONTAINING_RECORD( Lfcb->LbcbActive.Flink,
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LBCB,
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ActiveLinks );
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if (FlagOn( ActiveLbcb->LbcbFlags, LBCB_NOT_EMPTY )) {
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RemoveEntryList( &ActiveLbcb->ActiveLinks );
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ClearFlag( ActiveLbcb->LbcbFlags, LBCB_ON_ACTIVE_QUEUE );
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}
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}
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if (WaitForIo) {
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LfsFlushLbcb( Lfcb, NewLbcb );
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}
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} finally {
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DebugUnwind( LfsWriteLfsRestart );
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if (NewRestart != NULL) {
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ExFreePool( NewRestart );
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}
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DebugTrace( -1, Dbg, "LfsWriteLfsRestart: Exit\n", 0 );
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}
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return;
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}
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VOID
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LfsFindOldestClientLsn (
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IN PLFS_RESTART_AREA RestartArea,
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IN PLFS_CLIENT_RECORD ClientArray,
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OUT PLSN OldestLsn
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)
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/*++
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Routine Description:
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This routine walks through the active clients to determine the oldest
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Lsn the system must maintain.
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Arguments:
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RestartArea - This is the Restart Area to examine.
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ClientArray - This is the start of the client data array.
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OldestLsn - We store the oldest Lsn we find in this value. It is
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initialized with a starting value, we won't return a more recent
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Lsn.
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Return Value:
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None.
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--*/
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{
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USHORT NextClient;
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PLFS_CLIENT_RECORD ClientBlock;
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PAGED_CODE();
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DebugTrace( +1, Dbg, "LfsFindOldestClientLsn: Entered\n", 0 );
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DebugTrace( 0, Dbg, "RestartArea -> %08lx\n", RestartArea );
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DebugTrace( 0, Dbg, "Base Lsn (Low) -> %08lx\n", BaseLsn.LowPart );
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DebugTrace( 0, Dbg, "Base Lsn (High) -> %08lx\n", BaseLsn.HighPart );
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//
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// Take the first client off the in use list.
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//
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NextClient = RestartArea->ClientInUseList;
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//
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// While there are more clients, compare their oldest Lsn with the
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// current oldest.
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//
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while (NextClient != LFS_NO_CLIENT) {
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ClientBlock = ClientArray + NextClient;
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//
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// We ignore this block if it's oldest Lsn is 0.
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//
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if (( ClientBlock->OldestLsn.QuadPart != 0 )
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&& ( ClientBlock->OldestLsn.QuadPart < OldestLsn->QuadPart )) {
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*OldestLsn = ClientBlock->OldestLsn;
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}
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//
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// Try the next client block.
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//
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NextClient = ClientBlock->NextClient;
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}
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DebugTrace( 0, Dbg, "OldestLsn (Low) -> %08lx\n", BaseLsn.LowPart );
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DebugTrace( 0, Dbg, "OldestLsn (High) -> %08lx\n", BaseLsn.HighPart );
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DebugTrace( -1, Dbg, "LfsFindOldestClientLsn: Exit\n", 0 );
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return;
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}
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