mirror of https://gitee.com/openkylin/libvirt.git
oops, forgot hash.[ch], Daniel
This commit is contained in:
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/*
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* hash.c: chained hash tables
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*
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* Reference: Your favorite introductory book on algorithms
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*
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* Copyright (C) 2000 Bjorn Reese and Daniel Veillard.
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*
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* Permission to use, copy, modify, and distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
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* MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE. THE AUTHORS AND
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* CONTRIBUTORS ACCEPT NO RESPONSIBILITY IN ANY CONCEIVABLE MANNER.
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*
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* Author: breese@users.sourceforge.net
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*/
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#define IN_LIBXML
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#include <string.h>
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#include "hash.h"
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#define MAX_HASH_LEN 8
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/* #define DEBUG_GROW */
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/*
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* A single entry in the hash table
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*/
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typedef struct _xenHashEntry xenHashEntry;
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typedef xenHashEntry *xenHashEntryPtr;
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struct _xenHashEntry {
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struct _xenHashEntry *next;
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char *name;
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void *payload;
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int valid;
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};
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/*
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* The entire hash table
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*/
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struct _xenHashTable {
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struct _xenHashEntry *table;
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int size;
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int nbElems;
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};
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/*
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* xenHashComputeKey:
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* Calculate the hash key
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*/
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static unsigned long
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xenHashComputeKey(xenHashTablePtr table, const char *name) {
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unsigned long value = 0L;
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char ch;
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if (name != NULL) {
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value += 30 * (*name);
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while ((ch = *name++) != 0) {
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value = value ^ ((value << 5) + (value >> 3) + (unsigned long)ch);
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}
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}
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return (value % table->size);
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}
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/**
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* xenHashCreate:
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* @size: the size of the hash table
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*
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* Create a new xenHashTablePtr.
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*
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* Returns the newly created object, or NULL if an error occured.
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*/
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xenHashTablePtr
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xenHashCreate(int size) {
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xenHashTablePtr table;
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if (size <= 0)
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size = 256;
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table = malloc(sizeof(xenHashTable));
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if (table) {
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table->size = size;
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table->nbElems = 0;
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table->table = malloc(size * sizeof(xenHashEntry));
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if (table->table) {
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memset(table->table, 0, size * sizeof(xenHashEntry));
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return(table);
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}
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free(table);
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}
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return(NULL);
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}
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/**
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* xenHashGrow:
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* @table: the hash table
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* @size: the new size of the hash table
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*
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* resize the hash table
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*
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* Returns 0 in case of success, -1 in case of failure
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*/
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static int
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xenHashGrow(xenHashTablePtr table, int size) {
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unsigned long key;
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int oldsize, i;
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xenHashEntryPtr iter, next;
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struct _xenHashEntry *oldtable;
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#ifdef DEBUG_GROW
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unsigned long nbElem = 0;
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#endif
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if (table == NULL)
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return(-1);
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if (size < 8)
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return(-1);
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if (size > 8 * 2048)
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return(-1);
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oldsize = table->size;
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oldtable = table->table;
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if (oldtable == NULL)
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return(-1);
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table->table = malloc(size * sizeof(xenHashEntry));
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if (table->table == NULL) {
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table->table = oldtable;
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return(-1);
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}
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memset(table->table, 0, size * sizeof(xenHashEntry));
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table->size = size;
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/* If the two loops are merged, there would be situations where
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a new entry needs to allocated and data copied into it from
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the main table. So instead, we run through the array twice, first
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copying all the elements in the main array (where we can't get
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conflicts) and then the rest, so we only free (and don't allocate)
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*/
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for (i = 0; i < oldsize; i++) {
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if (oldtable[i].valid == 0)
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continue;
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key = xenHashComputeKey(table, oldtable[i].name);
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memcpy(&(table->table[key]), &(oldtable[i]), sizeof(xenHashEntry));
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table->table[key].next = NULL;
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}
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for (i = 0; i < oldsize; i++) {
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iter = oldtable[i].next;
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while (iter) {
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next = iter->next;
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/*
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* put back the entry in the new table
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*/
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key = xenHashComputeKey(table, iter->name);
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if (table->table[key].valid == 0) {
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memcpy(&(table->table[key]), iter, sizeof(xenHashEntry));
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table->table[key].next = NULL;
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free(iter);
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} else {
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iter->next = table->table[key].next;
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table->table[key].next = iter;
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}
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#ifdef DEBUG_GROW
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nbElem++;
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#endif
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iter = next;
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}
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}
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free(oldtable);
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#ifdef DEBUG_GROW
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xmlGenericError(xmlGenericErrorContext,
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"xenHashGrow : from %d to %d, %d elems\n", oldsize, size, nbElem);
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#endif
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return(0);
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}
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/**
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* xenHashFree:
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* @table: the hash table
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* @f: the deallocator function for items in the hash
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*
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* Free the hash @table and its contents. The userdata is
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* deallocated with @f if provided.
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*/
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void
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xenHashFree(xenHashTablePtr table, xenHashDeallocator f) {
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int i;
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xenHashEntryPtr iter;
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xenHashEntryPtr next;
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int inside_table = 0;
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int nbElems;
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if (table == NULL)
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return;
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if (table->table) {
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nbElems = table->nbElems;
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for(i = 0; (i < table->size) && (nbElems > 0); i++) {
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iter = &(table->table[i]);
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if (iter->valid == 0)
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continue;
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inside_table = 1;
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while (iter) {
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next = iter->next;
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if ((f != NULL) && (iter->payload != NULL))
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f(iter->payload, iter->name);
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if (iter->name)
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free(iter->name);
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iter->payload = NULL;
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if (!inside_table)
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free(iter);
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nbElems--;
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inside_table = 0;
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iter = next;
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}
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inside_table = 0;
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}
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free(table->table);
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}
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free(table);
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}
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/**
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* xenHashAddEntry3:
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* @table: the hash table
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* @name: the name of the userdata
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* @userdata: a pointer to the userdata
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*
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* Add the @userdata to the hash @table. This can later be retrieved
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* by using @name. Duplicate entries generate errors.
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*
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* Returns 0 the addition succeeded and -1 in case of error.
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*/
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int
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xenHashAddEntry(xenHashTablePtr table, const char *name,
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void *userdata) {
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unsigned long key, len = 0;
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xenHashEntryPtr entry;
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xenHashEntryPtr insert;
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if ((table == NULL) || (name == NULL))
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return(-1);
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/*
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* Check for duplicate and insertion location.
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*/
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key = xenHashComputeKey(table, name);
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if (table->table[key].valid == 0) {
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insert = NULL;
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} else {
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for (insert = &(table->table[key]); insert->next != NULL;
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insert = insert->next) {
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if (!strcmp(insert->name, name))
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return(-1);
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len++;
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}
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if (!strcmp(insert->name, name))
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return(-1);
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}
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if (insert == NULL) {
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entry = &(table->table[key]);
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} else {
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entry = malloc(sizeof(xenHashEntry));
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if (entry == NULL)
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return(-1);
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}
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entry->name = strdup(name);
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entry->payload = userdata;
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entry->next = NULL;
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entry->valid = 1;
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if (insert != NULL)
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insert->next = entry;
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table->nbElems++;
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if (len > MAX_HASH_LEN)
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xenHashGrow(table, MAX_HASH_LEN * table->size);
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return(0);
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}
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/**
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* xenHashUpdateEntry:
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* @table: the hash table
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* @name: the name of the userdata
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* @userdata: a pointer to the userdata
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* @f: the deallocator function for replaced item (if any)
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*
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* Add the @userdata to the hash @table. This can later be retrieved
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* by using @name. Existing entry for this tuple
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* will be removed and freed with @f if found.
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*
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* Returns 0 the addition succeeded and -1 in case of error.
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*/
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int
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xenHashUpdateEntry(xenHashTablePtr table, const char *name,
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void *userdata, xenHashDeallocator f) {
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unsigned long key;
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xenHashEntryPtr entry;
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xenHashEntryPtr insert;
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if ((table == NULL) || name == NULL)
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return(-1);
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/*
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* Check for duplicate and insertion location.
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*/
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key = xenHashComputeKey(table, name);
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if (table->table[key].valid == 0) {
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insert = NULL;
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} else {
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for (insert = &(table->table[key]); insert->next != NULL;
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insert = insert->next) {
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if (!strcmp(insert->name, name)) {
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if (f)
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f(insert->payload, insert->name);
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insert->payload = userdata;
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return(0);
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}
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}
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if (!strcmp(insert->name, name)) {
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if (f)
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f(insert->payload, insert->name);
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insert->payload = userdata;
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return(0);
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}
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}
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if (insert == NULL) {
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entry = &(table->table[key]);
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} else {
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entry = malloc(sizeof(xenHashEntry));
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if (entry == NULL)
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return(-1);
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}
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entry->name = strdup(name);
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entry->payload = userdata;
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entry->next = NULL;
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entry->valid = 1;
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table->nbElems++;
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if (insert != NULL) {
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insert->next = entry;
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}
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return(0);
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}
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/**
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* xenHashLookup:
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* @table: the hash table
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* @name: the name of the userdata
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*
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* Find the userdata specified by the (@name, @name2, @name3) tuple.
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*
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* Returns the a pointer to the userdata
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*/
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void *
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xenHashLookup(xenHashTablePtr table, const char *name) {
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unsigned long key;
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xenHashEntryPtr entry;
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if (table == NULL)
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return(NULL);
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if (name == NULL)
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return(NULL);
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key = xenHashComputeKey(table, name);
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if (table->table[key].valid == 0)
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return(NULL);
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for (entry = &(table->table[key]); entry != NULL; entry = entry->next) {
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if (!strcmp(entry->name, name))
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return(entry->payload);
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}
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return(NULL);
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}
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/**
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* xenHashSize:
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* @table: the hash table
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*
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* Query the number of elements installed in the hash @table.
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*
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* Returns the number of elements in the hash table or
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* -1 in case of error
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*/
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int
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xenHashSize(xenHashTablePtr table) {
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if (table == NULL)
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return(-1);
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return(table->nbElems);
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}
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/**
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* xenHashRemoveEntry:
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* @table: the hash table
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* @name: the name of the userdata
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* @f: the deallocator function for removed item (if any)
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*
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* Find the userdata specified by the @name and remove
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* it from the hash @table. Existing userdata for this tuple will be removed
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* and freed with @f.
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*
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* Returns 0 if the removal succeeded and -1 in case of error or not found.
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*/
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int
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xenHashRemoveEntry(xenHashTablePtr table, const char *name,
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xenHashDeallocator f) {
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unsigned long key;
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xenHashEntryPtr entry;
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xenHashEntryPtr prev = NULL;
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if (table == NULL || name == NULL)
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return(-1);
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key = xenHashComputeKey(table, name);
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if (table->table[key].valid == 0) {
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return(-1);
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} else {
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for (entry = &(table->table[key]); entry != NULL; entry = entry->next) {
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if (!strcmp(entry->name, name)) {
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if ((f != NULL) && (entry->payload != NULL))
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f(entry->payload, entry->name);
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entry->payload = NULL;
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if(entry->name)
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free(entry->name);
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if(prev) {
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prev->next = entry->next;
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free(entry);
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} else {
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if (entry->next == NULL) {
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entry->valid = 0;
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} else {
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entry = entry->next;
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memcpy(&(table->table[key]), entry, sizeof(xenHashEntry));
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free(entry);
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}
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}
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table->nbElems--;
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return(0);
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}
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prev = entry;
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}
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return(-1);
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}
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}
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@ -0,0 +1,71 @@
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/*
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* Summary: Chained hash tables
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* Description: This module implements the hash table support used in
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* various places in the library.
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*
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* Copy: See Copyright for the status of this software.
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*
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* Author: Bjorn Reese <bjorn.reese@systematic.dk>
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*/
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#ifndef __XEN_HASH_H__
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#define __XEN_HASH_H__
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#ifdef __cplusplus
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extern "C" {
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#endif
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/*
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* The hash table.
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*/
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typedef struct _xenHashTable xenHashTable;
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typedef xenHashTable *xenHashTablePtr;
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/*
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* function types:
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*/
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/**
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* xenHashDeallocator:
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* @payload: the data in the hash
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* @name: the name associated
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*
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* Callback to free data from a hash.
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*/
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typedef void (*xenHashDeallocator)(void *payload, char *name);
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/*
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* Constructor and destructor.
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*/
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xenHashTablePtr xenHashCreate (int size);
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void
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xenHashFree (xenHashTablePtr table,
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xenHashDeallocator f);
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int xenHashSize (xenHashTablePtr table);
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/*
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* Add a new entry to the hash table.
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*/
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int xenHashAddEntry (xenHashTablePtr table,
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const char *name,
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void *userdata);
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int xenHashUpdateEntry(xenHashTablePtr table,
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const char *name,
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void *userdata,
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xenHashDeallocator f);
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/*
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* Remove an entry from the hash table.
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*/
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int xenHashRemoveEntry(xenHashTablePtr table,
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const char *name,
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xenHashDeallocator f);
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/*
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* Retrieve the userdata.
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*/
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void * xenHashLookup (xenHashTablePtr table,
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const char *name);
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#ifdef __cplusplus
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}
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#endif
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#endif /* ! __XEN_HASH_H__ */
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