Fixed Xerces compilation
This commit is contained in:
692
project/jni/xerces/include/xercesc/util/RefHash2KeysTableOf.c
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692
project/jni/xerces/include/xercesc/util/RefHash2KeysTableOf.c
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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 with
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* this work for additional information regarding copyright ownership.
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* The ASF licenses this file to You under the Apache License, Version 2.0
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* (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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/*
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* $Id: RefHash2KeysTableOf.c 679340 2008-07-24 10:28:29Z borisk $
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*/
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// ---------------------------------------------------------------------------
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// Include
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// ---------------------------------------------------------------------------
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#if defined(XERCES_TMPLSINC)
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#include <xercesc/util/RefHash2KeysTableOf.hpp>
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#endif
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#include <xercesc/util/Janitor.hpp>
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#include <xercesc/util/NullPointerException.hpp>
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#include <assert.h>
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#include <new>
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XERCES_CPP_NAMESPACE_BEGIN
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// ---------------------------------------------------------------------------
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// RefHash2KeysTableOf: Constructors and Destructor
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// ---------------------------------------------------------------------------
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template <class TVal, class THasher>
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RefHash2KeysTableOf<TVal, THasher>::RefHash2KeysTableOf(
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const XMLSize_t modulus,
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MemoryManager* const manager)
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: fMemoryManager(manager)
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, fAdoptedElems(true)
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, fBucketList(0)
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, fHashModulus(modulus)
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, fCount(0)
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{
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initialize(modulus);
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}
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template <class TVal, class THasher>
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RefHash2KeysTableOf<TVal, THasher>::RefHash2KeysTableOf(
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const XMLSize_t modulus,
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const THasher& hasher,
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MemoryManager* const manager)
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: fMemoryManager(manager)
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, fAdoptedElems(true)
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, fBucketList(0)
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, fHashModulus(modulus)
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, fCount(0)
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, fHasher (hasher)
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{
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initialize(modulus);
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}
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template <class TVal, class THasher>
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RefHash2KeysTableOf<TVal, THasher>::RefHash2KeysTableOf(
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const XMLSize_t modulus,
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const bool adoptElems,
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MemoryManager* const manager)
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: fMemoryManager(manager)
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, fAdoptedElems(adoptElems)
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, fBucketList(0)
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, fHashModulus(modulus)
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, fCount(0)
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{
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initialize(modulus);
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}
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template <class TVal, class THasher>
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RefHash2KeysTableOf<TVal, THasher>::RefHash2KeysTableOf(
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const XMLSize_t modulus,
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const bool adoptElems,
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const THasher& hasher,
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MemoryManager* const manager)
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: fMemoryManager(manager)
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, fAdoptedElems(adoptElems)
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, fBucketList(0)
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, fHashModulus(modulus)
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, fCount(0)
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, fHasher (hasher)
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{
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initialize(modulus);
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}
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template <class TVal, class THasher>
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void RefHash2KeysTableOf<TVal, THasher>::initialize(const XMLSize_t modulus)
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{
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if (modulus == 0)
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ThrowXMLwithMemMgr(IllegalArgumentException, XMLExcepts::HshTbl_ZeroModulus, fMemoryManager);
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// Allocate the bucket list and zero them
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fBucketList = (RefHash2KeysTableBucketElem<TVal>**) fMemoryManager->allocate
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(
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fHashModulus * sizeof(RefHash2KeysTableBucketElem<TVal>*)
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); //new RefHash2KeysTableBucketElem<TVal>*[fHashModulus];
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memset(fBucketList, 0, sizeof(fBucketList[0]) * fHashModulus);
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}
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template <class TVal, class THasher>
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RefHash2KeysTableOf<TVal, THasher>::~RefHash2KeysTableOf()
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{
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removeAll();
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// Then delete the bucket list & hasher
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fMemoryManager->deallocate(fBucketList); //delete [] fBucketList;
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fBucketList = 0;
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}
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// ---------------------------------------------------------------------------
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// RefHash2KeysTableOf: Element management
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// ---------------------------------------------------------------------------
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template <class TVal, class THasher>
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bool RefHash2KeysTableOf<TVal, THasher>::isEmpty() const
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{
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return (fCount==0);
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}
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template <class TVal, class THasher>
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bool RefHash2KeysTableOf<TVal, THasher>::
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containsKey(const void* const key1, const int key2) const
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{
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XMLSize_t hashVal;
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const RefHash2KeysTableBucketElem<TVal>* findIt = findBucketElem(key1, key2, hashVal);
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return (findIt != 0);
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}
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template <class TVal, class THasher>
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void RefHash2KeysTableOf<TVal, THasher>::
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removeKey(const void* const key1, const int key2)
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{
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// Hash the key
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XMLSize_t hashVal = fHasher.getHashVal(key1, fHashModulus);
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assert(hashVal < fHashModulus);
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//
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// Search the given bucket for this key. Keep up with the previous
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// element so we can patch around it.
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//
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RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[hashVal];
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RefHash2KeysTableBucketElem<TVal>* lastElem = 0;
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while (curElem)
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{
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if((key2==curElem->fKey2) && (fHasher.equals(key1, curElem->fKey1)))
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{
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if (!lastElem)
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{
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// It was the first in the bucket
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fBucketList[hashVal] = curElem->fNext;
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}
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else
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{
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// Patch around the current element
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lastElem->fNext = curElem->fNext;
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}
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// If we adopted the elements, then delete the data
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if (fAdoptedElems)
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delete curElem->fData;
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// Delete the current element
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// delete curElem;
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// destructor is empty...
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// curElem->~RefHash2KeysTableBucketElem();
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fMemoryManager->deallocate(curElem);
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fCount--;
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return;
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}
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// Move both pointers upwards
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lastElem = curElem;
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curElem = curElem->fNext;
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}
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// We never found that key
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ThrowXMLwithMemMgr(NoSuchElementException, XMLExcepts::HshTbl_NoSuchKeyExists, fMemoryManager);
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}
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template <class TVal, class THasher>
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void RefHash2KeysTableOf<TVal, THasher>::
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removeKey(const void* const key1)
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{
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// Hash the key
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XMLSize_t hashVal = fHasher.getHashVal(key1, fHashModulus);
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assert(hashVal < fHashModulus);
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//
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// Search the given bucket for this key. Keep up with the previous
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// element so we can patch around it.
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//
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RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[hashVal];
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RefHash2KeysTableBucketElem<TVal>* lastElem = 0;
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while (curElem)
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{
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if(fHasher.equals(key1, curElem->fKey1))
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{
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if (!lastElem)
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{
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// It was the first in the bucket
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fBucketList[hashVal] = curElem->fNext;
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}
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else
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{
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// Patch around the current element
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lastElem->fNext = curElem->fNext;
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}
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// If we adopted the elements, then delete the data
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if (fAdoptedElems)
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delete curElem->fData;
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RefHash2KeysTableBucketElem<TVal>* toBeDeleted=curElem;
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curElem = curElem->fNext;
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// Delete the current element
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// delete curElem;
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// destructor is empty...
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// curElem->~RefHash2KeysTableBucketElem();
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fMemoryManager->deallocate(toBeDeleted);
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fCount--;
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}
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else
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{
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// Move both pointers upwards
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lastElem = curElem;
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curElem = curElem->fNext;
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}
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}
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}
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template <class TVal, class THasher>
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void RefHash2KeysTableOf<TVal, THasher>::removeAll()
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{
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if(isEmpty())
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return;
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// Clean up the buckets first
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for (XMLSize_t buckInd = 0; buckInd < fHashModulus; buckInd++)
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{
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// Get the bucket list head for this entry
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RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[buckInd];
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RefHash2KeysTableBucketElem<TVal>* nextElem;
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while (curElem)
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{
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// Save the next element before we hose this one
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nextElem = curElem->fNext;
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// If we adopted the data, then delete it too
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// (Note: the userdata hash table instance has data type of void *.
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// This will generate compiler warnings here on some platforms, but they
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// can be ignored since fAdoptedElements is false.
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if (fAdoptedElems)
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delete curElem->fData;
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// Then delete the current element and move forward
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// destructor is empty...
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// curElem->~RefHash2KeysTableBucketElem();
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fMemoryManager->deallocate(curElem);
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curElem = nextElem;
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}
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// Clean out this entry
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fBucketList[buckInd] = 0;
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}
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fCount=0;
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}
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// this function transfer the data from key1 to key2
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template <class TVal, class THasher>
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void RefHash2KeysTableOf<TVal, THasher>::transferElement(const void* const key1, void* key2)
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{
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// Hash the key
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XMLSize_t hashVal = fHasher.getHashVal(key1, fHashModulus);
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assert(hashVal < fHashModulus);
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//
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// Search the given bucket for this key. Keep up with the previous
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// element so we can patch around it.
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//
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RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[hashVal];
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RefHash2KeysTableBucketElem<TVal>* lastElem = 0;
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while (curElem)
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{
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// if this element has the same primary key, remove it and add it using the new primary key
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if(fHasher.equals(key1, curElem->fKey1))
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{
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if (!lastElem)
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{
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// It was the first in the bucket
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fBucketList[hashVal] = curElem->fNext;
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}
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else
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{
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// Patch around the current element
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lastElem->fNext = curElem->fNext;
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}
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// this code comes from put(), but it doesn't update fCount
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XMLSize_t hashVal2;
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RefHash2KeysTableBucketElem<TVal>* newBucket = findBucketElem(key2, curElem->fKey2, hashVal2);
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if (newBucket)
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{
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if (fAdoptedElems)
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delete newBucket->fData;
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newBucket->fData = curElem->fData;
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newBucket->fKey1 = key2;
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newBucket->fKey2 = curElem->fKey2;
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}
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else
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{
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newBucket =
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new (fMemoryManager->allocate(sizeof(RefHash2KeysTableBucketElem<TVal>)))
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RefHash2KeysTableBucketElem<TVal>(key2, curElem->fKey2, curElem->fData, fBucketList[hashVal2]);
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fBucketList[hashVal2] = newBucket;
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}
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RefHash2KeysTableBucketElem<TVal>* elemToDelete = curElem;
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// Update just curElem; lastElem must stay the same
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curElem = curElem->fNext;
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// Delete the current element
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// delete elemToDelete;
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// destructor is empty...
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// curElem->~RefHash2KeysTableBucketElem();
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fMemoryManager->deallocate(elemToDelete);
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}
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else
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{
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// Move both pointers upwards
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lastElem = curElem;
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curElem = curElem->fNext;
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}
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}
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}
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// ---------------------------------------------------------------------------
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// RefHash2KeysTableOf: Getters
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// ---------------------------------------------------------------------------
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template <class TVal, class THasher>
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TVal* RefHash2KeysTableOf<TVal, THasher>::get(const void* const key1, const int key2)
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{
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XMLSize_t hashVal;
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RefHash2KeysTableBucketElem<TVal>* findIt = findBucketElem(key1, key2, hashVal);
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if (!findIt)
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return 0;
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return findIt->fData;
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}
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template <class TVal, class THasher>
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const TVal* RefHash2KeysTableOf<TVal, THasher>::
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get(const void* const key1, const int key2) const
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{
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XMLSize_t hashVal;
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const RefHash2KeysTableBucketElem<TVal>* findIt = findBucketElem(key1, key2, hashVal);
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if (!findIt)
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return 0;
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return findIt->fData;
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}
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template <class TVal, class THasher>
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MemoryManager* RefHash2KeysTableOf<TVal, THasher>::getMemoryManager() const
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{
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return fMemoryManager;
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}
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template <class TVal, class THasher>
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XMLSize_t RefHash2KeysTableOf<TVal, THasher>::getHashModulus() const
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{
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return fHashModulus;
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}
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// ---------------------------------------------------------------------------
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// RefHash2KeysTableOf: Putters
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// ---------------------------------------------------------------------------
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template <class TVal, class THasher>
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void RefHash2KeysTableOf<TVal, THasher>::put(void* key1, int key2, TVal* const valueToAdopt)
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{
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// Apply 4 load factor to find threshold.
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XMLSize_t threshold = fHashModulus * 4;
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// If we've grown too big, expand the table and rehash.
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if (fCount >= threshold)
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rehash();
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// First see if the key exists already
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XMLSize_t hashVal;
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RefHash2KeysTableBucketElem<TVal>* newBucket = findBucketElem(key1, key2, hashVal);
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//
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// If so,then update its value. If not, then we need to add it to
|
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// the right bucket
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//
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if (newBucket)
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{
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if (fAdoptedElems)
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delete newBucket->fData;
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newBucket->fData = valueToAdopt;
|
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newBucket->fKey1 = key1;
|
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newBucket->fKey2 = key2;
|
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}
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else
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{
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newBucket =
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new (fMemoryManager->allocate(sizeof(RefHash2KeysTableBucketElem<TVal>)))
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RefHash2KeysTableBucketElem<TVal>(key1, key2, valueToAdopt, fBucketList[hashVal]);
|
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fBucketList[hashVal] = newBucket;
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fCount++;
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}
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||||
}
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||||
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||||
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// ---------------------------------------------------------------------------
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// RefHash2KeysTableOf: Private methods
|
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// ---------------------------------------------------------------------------
|
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template <class TVal, class THasher>
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inline RefHash2KeysTableBucketElem<TVal>* RefHash2KeysTableOf<TVal, THasher>::
|
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findBucketElem(const void* const key1, const int key2, XMLSize_t& hashVal)
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{
|
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// Hash the key
|
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hashVal = fHasher.getHashVal(key1, fHashModulus);
|
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assert(hashVal < fHashModulus);
|
||||
|
||||
// Search that bucket for the key
|
||||
RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[hashVal];
|
||||
while (curElem)
|
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{
|
||||
if((key2==curElem->fKey2) && (fHasher.equals(key1, curElem->fKey1)))
|
||||
return curElem;
|
||||
|
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curElem = curElem->fNext;
|
||||
}
|
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return 0;
|
||||
}
|
||||
|
||||
template <class TVal, class THasher>
|
||||
inline const RefHash2KeysTableBucketElem<TVal>* RefHash2KeysTableOf<TVal, THasher>::
|
||||
findBucketElem(const void* const key1, const int key2, XMLSize_t& hashVal) const
|
||||
{
|
||||
// Hash the key
|
||||
hashVal = fHasher.getHashVal(key1, fHashModulus);
|
||||
assert(hashVal < fHashModulus);
|
||||
|
||||
// Search that bucket for the key
|
||||
const RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[hashVal];
|
||||
while (curElem)
|
||||
{
|
||||
if((key2==curElem->fKey2) && (fHasher.equals(key1, curElem->fKey1)))
|
||||
return curElem;
|
||||
|
||||
curElem = curElem->fNext;
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
||||
template <class TVal, class THasher>
|
||||
void RefHash2KeysTableOf<TVal, THasher>::
|
||||
rehash()
|
||||
{
|
||||
const XMLSize_t newMod = (fHashModulus * 8)+1;
|
||||
|
||||
RefHash2KeysTableBucketElem<TVal>** newBucketList =
|
||||
(RefHash2KeysTableBucketElem<TVal>**) fMemoryManager->allocate
|
||||
(
|
||||
newMod * sizeof(RefHash2KeysTableBucketElem<TVal>*)
|
||||
);//new RefHash2KeysTableBucketElem<TVal>*[fHashModulus];
|
||||
|
||||
// Make sure the new bucket list is destroyed if an
|
||||
// exception is thrown.
|
||||
ArrayJanitor<RefHash2KeysTableBucketElem<TVal>*> guard(newBucketList, fMemoryManager);
|
||||
|
||||
memset(newBucketList, 0, newMod * sizeof(newBucketList[0]));
|
||||
|
||||
// Rehash all existing entries.
|
||||
for (XMLSize_t index = 0; index < fHashModulus; index++)
|
||||
{
|
||||
// Get the bucket list head for this entry
|
||||
RefHash2KeysTableBucketElem<TVal>* curElem = fBucketList[index];
|
||||
while (curElem)
|
||||
{
|
||||
// Save the next element before we detach this one
|
||||
RefHash2KeysTableBucketElem<TVal>* nextElem = curElem->fNext;
|
||||
|
||||
const XMLSize_t hashVal = fHasher.getHashVal(curElem->fKey1, newMod);
|
||||
assert(hashVal < newMod);
|
||||
|
||||
RefHash2KeysTableBucketElem<TVal>* newHeadElem = newBucketList[hashVal];
|
||||
|
||||
// Insert at the start of this bucket's list.
|
||||
curElem->fNext = newHeadElem;
|
||||
newBucketList[hashVal] = curElem;
|
||||
|
||||
curElem = nextElem;
|
||||
}
|
||||
}
|
||||
|
||||
RefHash2KeysTableBucketElem<TVal>** const oldBucketList = fBucketList;
|
||||
|
||||
// Everything is OK at this point, so update the
|
||||
// member variables.
|
||||
fBucketList = guard.release();
|
||||
fHashModulus = newMod;
|
||||
|
||||
// Delete the old bucket list.
|
||||
fMemoryManager->deallocate(oldBucketList);//delete[] oldBucketList;
|
||||
|
||||
}
|
||||
|
||||
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// RefHash2KeysTableOfEnumerator: Constructors and Destructor
|
||||
// ---------------------------------------------------------------------------
|
||||
template <class TVal, class THasher>
|
||||
RefHash2KeysTableOfEnumerator<TVal, THasher>::
|
||||
RefHash2KeysTableOfEnumerator(RefHash2KeysTableOf<TVal, THasher>* const toEnum
|
||||
, const bool adopt
|
||||
, MemoryManager* const manager)
|
||||
: fAdopted(adopt), fCurElem(0), fCurHash((XMLSize_t)-1), fToEnum(toEnum)
|
||||
, fMemoryManager(manager)
|
||||
, fLockPrimaryKey(0)
|
||||
{
|
||||
if (!toEnum)
|
||||
ThrowXMLwithMemMgr(NullPointerException, XMLExcepts::CPtr_PointerIsZero, fMemoryManager);
|
||||
|
||||
//
|
||||
// Find the next available bucket element in the hash table. If it
|
||||
// comes back zero, that just means the table is empty.
|
||||
//
|
||||
// Note that the -1 in the current hash tells it to start
|
||||
// from the beginning.
|
||||
//
|
||||
findNext();
|
||||
}
|
||||
|
||||
template <class TVal, class THasher>
|
||||
RefHash2KeysTableOfEnumerator<TVal, THasher>::~RefHash2KeysTableOfEnumerator()
|
||||
{
|
||||
if (fAdopted)
|
||||
delete fToEnum;
|
||||
}
|
||||
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// RefHash2KeysTableOfEnumerator: Enum interface
|
||||
// ---------------------------------------------------------------------------
|
||||
template <class TVal, class THasher>
|
||||
bool RefHash2KeysTableOfEnumerator<TVal, THasher>::hasMoreElements() const
|
||||
{
|
||||
//
|
||||
// If our current has is at the max and there are no more elements
|
||||
// in the current bucket, then no more elements.
|
||||
//
|
||||
if (!fCurElem && (fCurHash == fToEnum->fHashModulus))
|
||||
return false;
|
||||
return true;
|
||||
}
|
||||
|
||||
template <class TVal, class THasher>
|
||||
TVal& RefHash2KeysTableOfEnumerator<TVal, THasher>::nextElement()
|
||||
{
|
||||
// Make sure we have an element to return
|
||||
if (!hasMoreElements())
|
||||
ThrowXMLwithMemMgr(NoSuchElementException, XMLExcepts::Enum_NoMoreElements, fMemoryManager);
|
||||
|
||||
//
|
||||
// Save the current element, then move up to the next one for the
|
||||
// next time around.
|
||||
//
|
||||
RefHash2KeysTableBucketElem<TVal>* saveElem = fCurElem;
|
||||
findNext();
|
||||
|
||||
return *saveElem->fData;
|
||||
}
|
||||
|
||||
template <class TVal, class THasher>
|
||||
void RefHash2KeysTableOfEnumerator<TVal, THasher>::nextElementKey(void*& retKey1, int& retKey2)
|
||||
{
|
||||
// Make sure we have an element to return
|
||||
if (!hasMoreElements())
|
||||
ThrowXMLwithMemMgr(NoSuchElementException, XMLExcepts::Enum_NoMoreElements, fMemoryManager);
|
||||
|
||||
//
|
||||
// Save the current element, then move up to the next one for the
|
||||
// next time around.
|
||||
//
|
||||
RefHash2KeysTableBucketElem<TVal>* saveElem = fCurElem;
|
||||
findNext();
|
||||
|
||||
retKey1 = saveElem->fKey1;
|
||||
retKey2 = saveElem->fKey2;
|
||||
|
||||
return;
|
||||
}
|
||||
|
||||
template <class TVal, class THasher>
|
||||
void RefHash2KeysTableOfEnumerator<TVal, THasher>::Reset()
|
||||
{
|
||||
if(fLockPrimaryKey)
|
||||
fCurHash=fToEnum->fHasher.getHashVal(fLockPrimaryKey, fToEnum->fHashModulus);
|
||||
else
|
||||
fCurHash = (XMLSize_t)-1;
|
||||
|
||||
fCurElem = 0;
|
||||
findNext();
|
||||
}
|
||||
|
||||
|
||||
template <class TVal, class THasher>
|
||||
void RefHash2KeysTableOfEnumerator<TVal, THasher>::setPrimaryKey(const void* key)
|
||||
{
|
||||
fLockPrimaryKey=key;
|
||||
Reset();
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// RefHash2KeysTableOfEnumerator: Private helper methods
|
||||
// ---------------------------------------------------------------------------
|
||||
template <class TVal, class THasher>
|
||||
void RefHash2KeysTableOfEnumerator<TVal, THasher>::findNext()
|
||||
{
|
||||
// Code to execute if we have to return only values with the primary key
|
||||
if(fLockPrimaryKey)
|
||||
{
|
||||
if(!fCurElem)
|
||||
fCurElem = fToEnum->fBucketList[fCurHash];
|
||||
else
|
||||
fCurElem = fCurElem->fNext;
|
||||
while (fCurElem && (!fToEnum->fHasher.equals(fLockPrimaryKey, fCurElem->fKey1)))
|
||||
fCurElem = fCurElem->fNext;
|
||||
// if we didn't found it, make so hasMoreElements() returns false
|
||||
if(!fCurElem)
|
||||
fCurHash = fToEnum->fHashModulus;
|
||||
return;
|
||||
}
|
||||
//
|
||||
// If there is a current element, move to its next element. If this
|
||||
// hits the end of the bucket, the next block will handle the rest.
|
||||
//
|
||||
if (fCurElem)
|
||||
fCurElem = fCurElem->fNext;
|
||||
|
||||
//
|
||||
// If the current element is null, then we have to move up to the
|
||||
// next hash value. If that is the hash modulus, then we cannot
|
||||
// go further.
|
||||
//
|
||||
if (!fCurElem)
|
||||
{
|
||||
fCurHash++;
|
||||
if (fCurHash == fToEnum->fHashModulus)
|
||||
return;
|
||||
|
||||
// Else find the next non-empty bucket
|
||||
while (fToEnum->fBucketList[fCurHash]==0)
|
||||
{
|
||||
// Bump to the next hash value. If we max out return
|
||||
fCurHash++;
|
||||
if (fCurHash == fToEnum->fHashModulus)
|
||||
return;
|
||||
}
|
||||
fCurElem = fToEnum->fBucketList[fCurHash];
|
||||
}
|
||||
}
|
||||
|
||||
XERCES_CPP_NAMESPACE_END
|
||||
Reference in New Issue
Block a user