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/************************************************************************
The hash table with external chains
(c) 1994-1997 Innobase Oy
Created 8/18/1994 Heikki Tuuri
*************************************************************************/
#include "ut0rnd.h"
#include "mem0mem.h"
/***************************************************************
Deletes a hash node. */
void
ha_delete_hash_node(
/*================*/
hash_table_t* table, /* in: hash table */
ha_node_t* del_node); /* in: node to be deleted */
/**********************************************************************
Gets a hash node data. */
UNIV_INLINE
void*
ha_node_get_data(
/*=============*/
/* out: pointer to the data */
ha_node_t* node) /* in: hash chain node */
{
return(node->data);
}
/**********************************************************************
Sets hash node data. */
UNIV_INLINE
void
ha_node_set_data(
/*=============*/
ha_node_t* node, /* in: hash chain node */
void* data) /* in: pointer to the data */
{
node->data = data;
}
/**********************************************************************
Gets the next node in a hash chain. */
UNIV_INLINE
ha_node_t*
ha_chain_get_next(
/*==============*/
/* out: next node, NULL if none */
ha_node_t* node) /* in: hash chain node */
{
return(node->next);
}
/**********************************************************************
Gets the first node in a hash chain. */
UNIV_INLINE
ha_node_t*
ha_chain_get_first(
/*===============*/
/* out: first node, NULL if none */
hash_table_t* table, /* in: hash table */
ulint fold) /* in: fold value determining the chain */
{
return(hash_get_nth_cell(table, hash_calc_hash(fold, table))->node);
}
/*****************************************************************
Looks for an element in a hash table. */
UNIV_INLINE
ha_node_t*
ha_search(
/*======*/
/* out: pointer to the first hash table node
in chain having the fold number, NULL if not
found */
hash_table_t* table, /* in: hash table */
ulint fold) /* in: folded value of the searched data */
{
ha_node_t* node;
ut_ad(!table->mutexes || mutex_own(hash_get_mutex(table, fold)));
node = ha_chain_get_first(table, fold);
while (node) {
if (node->fold == fold) {
return(node);
}
node = ha_chain_get_next(node);
}
return(NULL);
}
/*****************************************************************
Looks for an element in a hash table. */
UNIV_INLINE
void*
ha_search_and_get_data(
/*===================*/
/* out: pointer to the data of the first hash
table node in chain having the fold number,
NULL if not found */
hash_table_t* table, /* in: hash table */
ulint fold) /* in: folded value of the searched data */
{
ha_node_t* node;
ut_ad(!table->mutexes || mutex_own(hash_get_mutex(table, fold)));
node = ha_chain_get_first(table, fold);
while (node) {
if (node->fold == fold) {
return(node->data);
}
node = ha_chain_get_next(node);
}
return(NULL);
}
/*************************************************************
Looks for an element when we know the pointer to the data. */
UNIV_INLINE
ha_node_t*
ha_search_with_data(
/*================*/
/* out: pointer to the hash table node, NULL
if not found in the table */
hash_table_t* table, /* in: hash table */
ulint fold, /* in: folded value of the searched data */
void* data) /* in: pointer to the data */
{
ha_node_t* node;
ut_ad(!table->mutexes || mutex_own(hash_get_mutex(table, fold)));
node = ha_chain_get_first(table, fold);
while (node) {
if (node->data == data) {
return(node);
}
node = ha_chain_get_next(node);
}
return(NULL);
}
/*************************************************************
Looks for an element when we know the pointer to the data, and deletes
it from the hash table, if found. */
UNIV_INLINE
ibool
ha_search_and_delete_if_found(
/*==========================*/
/* out: TRUE if found */
hash_table_t* table, /* in: hash table */
ulint fold, /* in: folded value of the searched data */
void* data) /* in: pointer to the data */
{
ha_node_t* node;
ut_ad(!table->mutexes || mutex_own(hash_get_mutex(table, fold)));
node = ha_search_with_data(table, fold, data);
if (node) {
ha_delete_hash_node(table, node);
return(TRUE);
}
return(FALSE);
}
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