195 lines
4.2 KiB
C++
195 lines
4.2 KiB
C++
//+-------------------------------------------------------------------------
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//
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// Microsoft Windows
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//
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// Copyright (C) Microsoft Corporation, 1990 - 1999
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//
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// File: sdict2.cxx
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//
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//--------------------------------------------------------------------------
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/* --------------------------------------------------------------------
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File : sdict2.cxx
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Title : Simple dictionary.
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Description :
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History :
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-------------------------------------------------------------------- */
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#include <precomp.hxx>
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#include <sdict2.hxx>
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SIMPLE_DICT2::SIMPLE_DICT2 (
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)
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{
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int iDictSlots;
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ALLOCATE_THIS(SIMPLE_DICT2);
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cDictSlots = INITIALDICT2SLOTS;
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DictKeys = InitialDictKeys;
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DictItems = InitialDictItems;
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for (iDictSlots = 0; iDictSlots < cDictSlots; iDictSlots++)
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{
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DictKeys [iDictSlots] = (void *) 0;
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DictItems[iDictSlots] = (void *) 0;
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}
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}
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SIMPLE_DICT2::~SIMPLE_DICT2 (
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)
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{
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if (DictKeys != InitialDictKeys)
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{
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ASSERT(DictItems != InitialDictItems);
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delete DictKeys;
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delete DictItems;
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}
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}
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int
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SIMPLE_DICT2::Insert (
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void * Key,
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void * Item
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)
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{
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int iDictSlots;
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void * * NewDictKeys;
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void * * NewDictItems;
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for (iDictSlots = 0; iDictSlots < cDictSlots; iDictSlots++)
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{
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if (DictKeys[iDictSlots] == (void *) 0)
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{
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DictKeys[iDictSlots] = Key;
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DictItems[iDictSlots] = Item;
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return(0);
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}
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}
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// Otherwise, we need to expand the size of the dictionary.
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NewDictKeys = (void * *)
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new unsigned char [sizeof(void *) * cDictSlots * 2];
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NewDictItems = (void * *)
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new unsigned char [sizeof(void *) * cDictSlots * 2];
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if (NewDictKeys == (void *) 0)
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{
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if (NewDictItems)
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delete NewDictItems;
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return(-1);
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}
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if (NewDictItems == (void *) 0)
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{
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delete NewDictKeys;
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return(-1);
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}
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for (iDictSlots = 0; iDictSlots < cDictSlots; iDictSlots++)
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{
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NewDictKeys[iDictSlots] = DictKeys[iDictSlots];
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NewDictItems[iDictSlots] = DictItems[iDictSlots];
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}
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cDictSlots *= 2;
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NewDictKeys[iDictSlots] = Key;
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NewDictItems[iDictSlots] = Item;
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for (iDictSlots++; iDictSlots < cDictSlots; iDictSlots++)
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{
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NewDictKeys[iDictSlots] = (void *) 0;
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NewDictItems[iDictSlots] = (void *) 0;
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}
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if (DictKeys != InitialDictKeys)
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{
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ASSERT(DictItems != InitialDictItems);
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delete DictKeys;
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delete DictItems;
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}
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DictKeys = NewDictKeys;
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DictItems = NewDictItems;
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return(0);
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}
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void *
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SIMPLE_DICT2::Delete (
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void * Key
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)
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{
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int iDictSlots;
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for (iDictSlots = 0; iDictSlots < cDictSlots; iDictSlots++)
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{
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if (DictKeys[iDictSlots] == Key)
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{
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void * Item = DictItems[iDictSlots];
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DictKeys [iDictSlots] = (void *) 0;
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DictItems[iDictSlots] = (void *) 0;
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return Item;
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}
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}
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return((void *) 0);
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}
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void *
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SIMPLE_DICT2::Find (
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void * Key
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)
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{
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int iDictSlots;
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for (iDictSlots = 0; iDictSlots < cDictSlots; iDictSlots++)
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{
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if (DictKeys[iDictSlots] == Key)
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{
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return(DictItems[iDictSlots]);
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}
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}
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return((void *) 0);
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}
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void
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SIMPLE_DICT2::Update (
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void * Key,
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void *Item
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)
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{
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int iDictSlots;
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for (iDictSlots = 0; iDictSlots < cDictSlots; iDictSlots++)
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{
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if (DictKeys[iDictSlots] == Key)
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{
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DictItems[iDictSlots] = Item ;
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return;
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}
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}
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ASSERT(0) ;
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}
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void *SIMPLE_DICT2::Next (DictionaryCursor &cursor, BOOL fRemove)
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{
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for ( ; cursor < cDictSlots; cursor++)
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{
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if (DictKeys[cursor])
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{
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if (fRemove)
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{
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DictKeys[cursor] = 0;
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}
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return(DictItems[cursor++]);
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}
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}
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cursor = Nil;
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return(Nil);
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}
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