Patches contributed by Oliver-Rainer Wittmann sw34bf06: #i117783# - Writer's implementation of XPagePrintable - apply print settings to new printing routines http://svn.apache.org/viewvc?view=revision&revision=1172115 sw34bf06: #o12311627# use <rtl_random> methods to create unique ids for list styles and list ids http://svn.apache.org/viewvc?view=revision&revision=1172112 sw34bf06 #i114725#,#i115828# - method <SwDoc::ClearDoc()> - clear list structures completely http://svn.apache.org/viewvc?view=revision&revision=1172122 i#118572 - remove ui string and help content regarding usage of Java Mail in Writer's Mail Merge as Java Mail is not used. http://svn.apache.org/viewvc?view=revision&revision=1197035 Patches contributed by Mathias Bauer cws mba34issues01: #i117718#: provide filter name in case storage of medium does not allow to detect one http://svn.apache.org/viewvc?view=revision&revision=1172350 cws mba34issues01: #i117721#: directly provide parameters retrieved from SfxMedium http://svn.apache.org/viewvc?view=revision&revision=1172353 gnumake4 work variously http://svn.apache.org/viewvc?view=revision&revision=1394707 http://svn.apache.org/viewvc?view=revision&revision=1394326 http://svn.apache.org/viewvc?view=revision&revision=1396797 http://svn.apache.org/viewvc?view=revision&revision=1397315 cws mba34issues01: #i117723#: convert assertion into trace http://svn.apache.org/viewvc?view=revision&revision=1172355 cws mba34issues01: #i117699#: keep layout alive until swdoc dies http://svn.apache.org/viewvc?view=revision&revision=1172362 cws mba34issues01: #i117943#: missing color attributes in RTF clipboard http://svn.apache.org/viewvc?view=revision&revision=1172363 Patch contributed by Henning Brinkmann imported patch i#103878 http://svn.apache.org/viewvc?view=revision&revision=1172109 Patches contributed by Michael Stahl sw34bf06: #i117955#: WW8 export: disable storing of section breaks in endnotes http://svn.apache.org/viewvc?view=revision&revision=1172119 Patch contributed by imacat Fixed the Asian language work count. http://svn.apache.org/viewvc?view=revision&revision=1241345 Patch contributed by Pedro Giffuni i#20878 - Add comment with BZ issue for reference. http://svn.apache.org/viewvc?view=revision&revision=1244517 Patch contributed by Andre Fischer Do not add targets for junit tests when junit is disabled. http://svn.apache.org/viewvc?view=revision&revision=1241508 add writerperfect dependency.
287 lines
9.1 KiB
C++
287 lines
9.1 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#ifndef _SWCACHE_HXX
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#define _SWCACHE_HXX
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/*
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* Es werden Pointer auf Objekte verwaltet. Diese werden in einem einfachen
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* PtrArray verwaltet.
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* Angelegt (new) werden die Objekte von Cache-Zugriffsklassen, zuerstoert
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* werden die Objekte vom Cache.
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*
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* Auf die Objekte kann wahlweise per Index in das Array oder per Suche
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* zugegriffen werden. Soll per Index zugegriffen werden, so obliegt die
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* Verwaltung des Index dem Anwender des Cache.
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*
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* Fuer die verwalteten Cache-Objekte gibt es eine Basisklasse, von dieser
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* sind spezifische Klassen abzuleiten.
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* In der Basisklasse werden die Cache-Objekte eines Cache doppelt verkettet,
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* das ermoeglich die Implementierung eines LRU-Algorithmus.
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*
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* Der LRU kann in der Cache-Basisklasse manipuliert werden, indem ein
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* virtueller First-Pointer gesetzt wird. Dieser kann auf den echten ersten
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* plus einem Ofst gesetzt werden. Dadurch kann man den Anfangsbereich des
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* Cache sichern und so dafuer sorgen, dass man waehrend bestimmter
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* Operationen nicht den Cache versaut. Beispiel: Der Idle-Handler sollte nicht
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* den Cache fuer den sichtbaren Bereich vernichten.
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*
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* Der Cache kann in der Groesse erweitert und wieder verkleinert werden.
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* Beispiel: Fuer jede neue Shell wird der Cache fuer FormatInfo vergrossert
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* und beim Destruieren der Shell wieder verkleinert.
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*
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*/
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#include <vector>
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#include <rtl/ustring.hxx>
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class SwCacheObj;
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typedef std::vector<SwCacheObj*> SwCacheObjArr;
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class SwCache
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{
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SwCacheObjArr m_aCacheObjects;
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std::vector<sal_uInt16> aFreePositions; //Freie Positionen fuer das Insert wenn
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//die Maximalgrenze nicht erreicht ist.
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//Immer wenn ein Objekt ausgetragen wird,
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//so wird seine Position hier eingetragen.
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SwCacheObj *pRealFirst; //_immer_ der echte LRU-erste
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SwCacheObj *pFirst; //der virtuelle erste.
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SwCacheObj *pLast;
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sal_uInt16 nCurMax; //Mehr werden nicht aufgenommen.
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void DeleteObj( SwCacheObj *pObj );
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#ifdef DBG_UTIL
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rtl::OString m_aName;
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long m_nAppend; /// number of entries appended
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long m_nInsertFree; /// number of entries inserted on freed position
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long m_nReplace; /// number of LRU replacements
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long m_nGetSuccess;
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long m_nGetFail;
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long m_nToTop; /// number of reordering (LRU)
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long m_nDelete; /// number of explicit deletes
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long m_nGetSeek; /// number of gets without index
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long m_nAverageSeekCnt; /// number of seeks for all gets without index
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long m_nFlushCnt; /// number of flush calls
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long m_nFlushedObjects;
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long m_nIncreaseMax; /// number of cache size increases
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long m_nDecreaseMax; /// number of cache size decreases
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void Check();
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#endif
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public:
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//nur sal_uInt8 hineinstecken!!!
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#ifdef DBG_UTIL
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SwCache( const sal_uInt16 nInitSize, const rtl::OString &rNm );
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#else
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SwCache( const sal_uInt16 nInitSize );
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#endif
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// the destructor will free all objects still in the vector
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~SwCache();
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void Flush( const sal_uInt8 nPercent = 100 );
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//bToTop == sal_False -> Keine LRU-Umsortierung!
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SwCacheObj *Get( const void *pOwner, const sal_Bool bToTop = sal_True );
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SwCacheObj *Get( const void *pOwner, const sal_uInt16 nIndex,
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const sal_Bool bToTop = sal_True );
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void ToTop( SwCacheObj *pObj );
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sal_Bool Insert( SwCacheObj *pNew );
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void Delete( const void *pOwner );
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// void Delete( const void *pOwner, const sal_uInt16 nIndex );
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void SetLRUOfst( const sal_uInt16 nOfst ); //nOfst sagt wieviele unangetastet
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//bleiben sollen.
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void ResetLRUOfst() { pFirst = pRealFirst; }
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inline void IncreaseMax( const sal_uInt16 nAdd );
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inline void DecreaseMax( const sal_uInt16 nSub );
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sal_uInt16 GetCurMax() const { return nCurMax; }
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inline SwCacheObj *First() { return pRealFirst; }
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inline SwCacheObj *Last() { return pLast; }
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inline SwCacheObj *Next( SwCacheObj *pCacheObj);
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inline SwCacheObj* operator[](sal_uInt16 nIndex) { return m_aCacheObjects[nIndex]; }
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inline sal_uInt16 size() { return m_aCacheObjects.size(); }
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};
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//Cache-Manipulation auf die sichere Art.
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class SwSaveSetLRUOfst
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{
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SwCache &rCache;
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public:
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SwSaveSetLRUOfst( SwCache &rC, const sal_uInt16 nOfst )
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: rCache( rC ) { rCache.SetLRUOfst( nOfst ); }
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~SwSaveSetLRUOfst() { rCache.ResetLRUOfst(); }
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};
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//Das allgemeine CacheObjekt. Anwender des Cache muessen eine Klasse vom
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//CacheObjekt ableiten und dort die Nutzdaten unterbringen.
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class SwCacheObj
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{
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friend class SwCache; //Der darf alles
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SwCacheObj *pNext; //Fuer die LRU-Verkettung.
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SwCacheObj *pPrev;
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sal_uInt16 nCachePos; //Position im Cache-Array.
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sal_uInt8 nLock;
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inline SwCacheObj *GetNext() { return pNext; }
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inline SwCacheObj *GetPrev() { return pPrev; }
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inline void SetNext( SwCacheObj *pNew ) { pNext = pNew; }
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inline void SetPrev( SwCacheObj *pNew ) { pPrev = pNew; }
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inline void SetCachePos( const sal_uInt16 nNew ) { nCachePos = nNew; }
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protected:
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const void *pOwner;
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inline void SetOwner( const void *pNew ) { pOwner = pNew; }
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public:
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SwCacheObj( const void *pOwner );
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virtual ~SwCacheObj();
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inline const void *GetOwner() const { return pOwner; }
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inline sal_Bool IsOwner( const void *pNew ) const;
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inline sal_uInt16 GetCachePos() const { return nCachePos; }
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inline void Invalidate() { pOwner = 0; }
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inline sal_Bool IsLocked() const { return 0 != nLock; }
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#ifdef DBG_UTIL
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void Lock();
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void Unlock();
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#else
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inline void Lock() { ++nLock; }
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inline void Unlock() { --nLock; }
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#endif
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SwCacheObj *Next() { return pNext; }
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SwCacheObj *Prev() { return pPrev; }
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};
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//Zugriffsklasse fuer den Cache. Im CTor wird das CacheObjekt erzeugt.
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//Wenn der Cache keines herausrueckt wird der Member zunaechst auf 0 gesetzt.
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//Beim Get wird dann eines erzeugt und, falls moeglich, in den Cache
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//eingetragen.
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//Anwender der des Cache muessen eine Klasse vom Access ableiten um
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//fuer Typsicherheit zu sorgen, die Basisklasse sollte fuer das Get aber immer
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//gerufen werden, ein Abgeleitetes Get sollte nur der Typsicherheit dienen.
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//Cache-Objekte werden stets gelockt solange die Instanz lebt.
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class SwCacheAccess
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{
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SwCache &rCache;
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void _Get();
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protected:
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SwCacheObj *pObj;
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const void *pOwner; //Kann ggf. in NewObj benutzt werden.
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virtual SwCacheObj *NewObj() = 0;
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inline SwCacheObj *Get();
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inline SwCacheAccess( SwCache &rCache, const void *pOwner, sal_Bool bSeek = sal_True );
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inline SwCacheAccess( SwCache &rCache, const void *pOwner, const sal_uInt16 nIndex );
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public:
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virtual ~SwCacheAccess();
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virtual sal_Bool IsAvailable() const;
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//Abkuerzung fuer diejenigen, die wissen, das die Ableitung das IsAvailable
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//nicht ueberladen haben.
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sal_Bool IsAvail() const { return pObj != 0; }
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};
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inline void SwCache::IncreaseMax( const sal_uInt16 nAdd )
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{
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nCurMax = nCurMax + sal::static_int_cast< sal_uInt16 >(nAdd);
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#ifdef DBG_UTIL
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++m_nIncreaseMax;
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#endif
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}
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inline void SwCache::DecreaseMax( const sal_uInt16 nSub )
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{
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if ( nCurMax > nSub )
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nCurMax = nCurMax - sal::static_int_cast< sal_uInt16 >(nSub);
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#ifdef DBG_UTIL
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++m_nDecreaseMax;
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#endif
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}
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inline sal_Bool SwCacheObj::IsOwner( const void *pNew ) const
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{
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return pOwner && pOwner == pNew;
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}
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inline SwCacheObj *SwCache::Next( SwCacheObj *pCacheObj)
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{
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if ( pCacheObj )
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return pCacheObj->GetNext();
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else
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return NULL;
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}
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inline SwCacheAccess::SwCacheAccess( SwCache &rC, const void *pOwn, sal_Bool bSeek ) :
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rCache( rC ),
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pObj( 0 ),
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pOwner( pOwn )
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{
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if ( bSeek && pOwner && 0 != (pObj = rCache.Get( pOwner )) )
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pObj->Lock();
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}
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inline SwCacheAccess::SwCacheAccess( SwCache &rC, const void *pOwn,
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const sal_uInt16 nIndex ) :
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rCache( rC ),
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pObj( 0 ),
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pOwner( pOwn )
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{
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if ( pOwner && 0 != (pObj = rCache.Get( pOwner, nIndex )) )
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pObj->Lock();
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}
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inline SwCacheObj *SwCacheAccess::Get()
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{
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if ( !pObj )
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_Get();
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return pObj;
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}
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#endif
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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