388 lines
7.2 KiB
C++
388 lines
7.2 KiB
C++
/*++
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Copyright (C) Microsoft Corporation, 1995 - 1998
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All rights reserved.
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Module Name:
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Select.cxx
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Abstract:
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Handles queuing and processing of commands.
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This module should _not_ be aware of any interfaces beyond
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TPrinter and MPrinterClient (i.e., no listview code).
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Author:
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Albert Ting (AlbertT) 07-13-1995
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Steve Kiraly (SteveKi) 10-23-1995 Additional comments.
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Revision History:
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--*/
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#include "precomp.hxx"
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#pragma hdrstop
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#include "select.hxx"
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/********************************************************************
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Retrieve state of selected items.
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********************************************************************/
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TSelection::
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TSelection(
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IN const MPrinterClient* pPrinterClient,
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IN const TPrinter* pPrinter
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) : _pid( NULL ), _cSelected( 0 )
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/*++
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Routine Description:
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Get the JobIds of all selected jobs and the one that currently
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has focus. This is used when a refresh occurs and we need
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to update the queue while keeping selected items selected.
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Note: this routine is very slow, so we may want to optimize
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it if it uses too much cpu bandwidth. It should only be called on a
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full refresh (every 10 seconds on downlevel, rare on uplevel).
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This routine is very inefficient with TDataNotify, and not
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as bad with TDataRefresh.
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Must be called from UI thread.
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Arguments:
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pPrinterClient - Client from which we will grab selections.
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pPrinter - Printer.
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Return Value:
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--*/
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{
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UNREFERENCED_PARAMETER( pPrinter );
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SINGLETHREAD(UIThread);
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//
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// Quit if no printer client.
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//
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if( !pPrinterClient ){
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return;
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}
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//
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// Quit if no selections.
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//
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_cSelected = pPrinterClient->cSelected();
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if( !_cSelected ){
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return;
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}
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//
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// Allocate the variable length Job Id array within the
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// selection class. This optimizes the number of memory allocations.
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// Note the non-use of the new operator. This really is not a good
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// thing, it is the price we pay for greater efficiency.
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//
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_pid = (PIDENT) AllocMem( sizeof( IDENT ) * _cSelected );
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if( !_pid ){
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return;
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}
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if( pPrinterClient ){
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//
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// Put selected jobs in array.
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//
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HITEM hItem = pPrinterClient->GetFirstSelItem();
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COUNT i = 0;
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//
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// Strange looking FOR loop to prevent GetNextSelItem being
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// called any extra times.
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//
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for( ; ; ){
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_pid[i] = pPrinterClient->GetId( hItem );
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++i;
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if( i == _cSelected ){
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break;
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}
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hItem = pPrinterClient->GetNextSelItem( hItem );
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}
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}
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}
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TSelection::
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~TSelection(
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VOID
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)
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/*++
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Routine Description:
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Free the object.
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Callable from any thread.
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Arguments:
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Return Value:
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--*/
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{
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FreeMem( _pid );
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}
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/********************************************************************
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Command line argument selection
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********************************************************************/
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TSelect::
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TSelect(
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VOID
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)
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{
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}
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TSelect::
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~TSelect(
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VOID
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)
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{
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}
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TSelect::
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bValid(
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VOID
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)
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{
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return TRUE;
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}
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BOOL
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TSelect::
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bLookup(
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IN Selection *pSelection,
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IN PVOID pInfo,
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IN LPCTSTR pKey,
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IN LPCTSTR pValue
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)
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{
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SPLASSERT( pSelection );
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SPLASSERT( pInfo );
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SPLASSERT( pKey );
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SPLASSERT( pValue );
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BOOL bStatus = FALSE;
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if( pKey && pValue )
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{
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for( ; pSelection->iKeyWord; pSelection++ )
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{
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if( bMatch( pKey, pSelection->iKeyWord ) )
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{
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switch( pSelection->eDataType )
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{
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case kString:
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*(LPCTSTR *)((LPBYTE)pInfo+pSelection->iOffset) = pValue;
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bStatus = TRUE;
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break;
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case kInt:
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{
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LPCTSTR pszFmt = (*pValue == TEXT('0') && *(pValue+1) == TEXT('x')) ? TEXT("%x") : TEXT("%d");
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bStatus = _stscanf( pValue, pszFmt, (LPBYTE)pInfo+pSelection->iOffset );
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}
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break;
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case kBitTable:
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bStatus = bLookupBitTable( (SelectionBit *)pSelection->pTable, pValue );
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break;
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case kValTable:
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bStatus = bLookupValTable( (SelectionVal *)pSelection->pTable, pInfo, pValue );
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break;
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default:
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bStatus = FALSE;
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break;
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}
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break;
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}
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}
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}
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return bStatus;
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}
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BOOL
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TSelect::
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bLookupBitTable(
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IN SelectionBit *pBitTable,
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IN LPCTSTR pKey
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)
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{
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SPLASSERT( pBitTable );
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SPLASSERT( pKey );
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BOOL bStatus = FALSE;
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if( pKey )
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{
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EOperation Op = kNop;
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switch ( *pKey )
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{
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case TEXT('-'):
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Op = kNot;
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pKey++;
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break;
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case TEXT('+'):
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Op = kOr;
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pKey++;
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break;
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case TEXT('&'):
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Op = kAnd;
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pKey++;
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break;
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case TEXT('^'):
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Op = kXor;
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pKey++;
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break;
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default:
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Op = kOr;
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break;
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}
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for( ; pBitTable->iKeyWord; pBitTable++ )
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{
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if( bMatch( pKey, pBitTable->iKeyWord ) )
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{
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pBitTable->Op = Op;
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bStatus = TRUE;
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break;
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}
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}
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}
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return bStatus;
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}
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BOOL
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TSelect::
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bLookupValTable(
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IN SelectionVal *pValTable,
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IN PVOID pInfo,
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IN LPCTSTR pKey
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)
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{
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SPLASSERT( pValTable );
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SPLASSERT( pInfo );
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SPLASSERT( pKey );
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BOOL bStatus = FALSE;
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if( pKey )
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{
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for( ; pValTable->iKeyWord; pValTable++ )
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{
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if( bMatch( pKey, pValTable->iKeyWord ) )
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{
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*(UINT *)((LPBYTE)pInfo+pValTable->iOffset) = pValTable->uValue;
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bStatus = TRUE;
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break;
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}
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}
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}
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return bStatus;
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}
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BOOL
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TSelect::
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bApplyBitTableToValue(
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IN SelectionBit *pBitTable,
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IN UINT uBit,
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IN LPDWORD pdwBit
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)
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{
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SPLASSERT( pBitTable );
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SPLASSERT( pdwBit );
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BOOL bStatus = FALSE;
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for( ; pBitTable->iKeyWord; pBitTable++ )
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{
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switch ( pBitTable->Op )
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{
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case kNot:
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uBit = uBit & ~pBitTable->uBit;
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bStatus = TRUE;
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break;
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case kOr:
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uBit = uBit | pBitTable->uBit;
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bStatus = TRUE;
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break;
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case kAnd:
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uBit = uBit & pBitTable->uBit;
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bStatus = TRUE;
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break;
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case kXor:
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uBit = uBit ^ pBitTable->uBit;
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bStatus = TRUE;
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break;
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case kNop:
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break;
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default:
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break;
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}
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}
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if( bStatus && pdwBit )
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{
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*pdwBit = uBit;
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}
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return bStatus;
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}
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BOOL
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TSelect::
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bMatch(
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IN LPCTSTR pszString,
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IN UINT iResId
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)
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{
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TString strString;
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TStatusB bStatus;
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bStatus DBGCHK = strString.bLoadString( ghInst, iResId );
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return bStatus && !_tcsicmp( pszString, strString );
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}
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