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https://git.openldap.org/openldap/openldap.git
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259 lines
5.1 KiB
C
259 lines
5.1 KiB
C
/* id2entry.c - routines to deal with the id2entry database */
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/* $OpenLDAP$ */
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/*
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* Copyright 1998-2002 The OpenLDAP Foundation, All Rights Reserved.
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* COPYING RESTRICTIONS APPLY, see COPYRIGHT file
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*/
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#include "portable.h"
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#include <stdio.h>
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#include <ac/string.h>
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#include "back-bdb.h"
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int bdb_id2entry_put(
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BackendDB *be,
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DB_TXN *tid,
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Entry *e,
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int flag )
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{
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struct bdb_info *bdb = (struct bdb_info *) be->be_private;
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DB *db = bdb->bi_id2entry->bdi_db;
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DBT key, data;
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struct berval bv;
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int rc;
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#ifdef BDB_HIER
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char *odn, *ondn;
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/* We only store rdns, and they go in the id2parent database. */
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odn = e->e_dn; ondn = e->e_ndn;
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e->e_dn = ""; e->e_ndn = "";
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#endif
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DBTzero( &key );
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key.data = (char *) &e->e_id;
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key.size = sizeof(ID);
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rc = entry_encode( e, &bv );
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#ifdef BDB_HIER
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e->e_dn = odn; e->e_ndn = ondn;
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#endif
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if( rc != LDAP_SUCCESS ) {
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return -1;
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}
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DBTzero( &data );
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bv2DBT( &bv, &data );
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rc = db->put( db, tid, &key, &data, flag );
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free( bv.bv_val );
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return rc;
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}
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/*
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* This routine adds (or updates) an entry on disk.
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* The cache should be already be updated.
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*/
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int bdb_id2entry_add(
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BackendDB *be,
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DB_TXN *tid,
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Entry *e )
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{
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return bdb_id2entry_put(be, tid, e, DB_NOOVERWRITE);
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}
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int bdb_id2entry_update(
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BackendDB *be,
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DB_TXN *tid,
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Entry *e )
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{
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return bdb_id2entry_put(be, tid, e, 0);
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}
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int bdb_id2entry_rw(
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BackendDB *be,
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DB_TXN *tid,
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ID id,
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Entry **e,
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int rw,
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u_int32_t locker,
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DB_LOCK *lock )
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{
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struct bdb_info *bdb = (struct bdb_info *) be->be_private;
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DB *db = bdb->bi_id2entry->bdi_db;
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DBT key, data;
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struct berval bv;
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int rc = 0, ret = 0;
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*e = NULL;
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DBTzero( &key );
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key.data = (char *) &id;
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key.size = sizeof(ID);
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DBTzero( &data );
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data.flags = DB_DBT_MALLOC;
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if ((*e = bdb_cache_find_entry_id(bdb->bi_dbenv, &bdb->bi_cache, id, rw, locker, lock)) != NULL) {
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return 0;
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}
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/* fetch it */
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rc = db->get( db, tid, &key, &data, bdb->bi_db_opflags | ( rw ? DB_RMW : 0 ));
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if( rc != 0 ) {
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return rc;
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}
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DBT2bv( &data, &bv );
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rc = entry_decode( &bv, e );
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if( rc == 0 ) {
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(*e)->e_id = id;
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} else {
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/* only free on error. On success, the entry was
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* decoded in place.
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*/
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ch_free( data.data );
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}
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if ( rc == 0 ) {
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ret = bdb_cache_add_entry_rw( bdb->bi_dbenv,
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&bdb->bi_cache, *e, rw, locker, lock);
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while ( ret == 1 || ret == -1 ) {
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Entry *ee;
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int add_loop_cnt = 0;
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if ( (*e)->e_private != NULL ) {
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free ((*e)->e_private);
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}
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(*e)->e_private = NULL;
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if ( (ee = bdb_cache_find_entry_id
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(bdb->bi_dbenv, &bdb->bi_cache, id, rw, locker, lock) ) != NULL) {
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bdb_entry_return ( *e );
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*e = ee;
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return 0;
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}
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if ( ++add_loop_cnt == BDB_MAX_ADD_LOOP ) {
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bdb_entry_return ( *e );
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*e = NULL;
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return LDAP_BUSY;
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}
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}
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if ( ret != 0 ) {
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if ( (*e)->e_private != NULL )
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free ( (*e)->e_private );
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bdb_entry_return( *e );
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*e = NULL;
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ch_free( data.data );
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}
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rc = ret;
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}
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#ifdef BDB_HIER
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bdb_fix_dn(be, id, *e);
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#endif
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if (rc == 0) {
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bdb_cache_entry_commit(*e);
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}
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return rc;
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}
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int bdb_id2entry_delete(
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BackendDB *be,
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DB_TXN *tid,
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Entry *e )
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{
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struct bdb_info *bdb = (struct bdb_info *) be->be_private;
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DB *db = bdb->bi_id2entry->bdi_db;
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DBT key;
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int rc;
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bdb_cache_delete_entry(&bdb->bi_cache, e);
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DBTzero( &key );
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key.data = (char *) &e->e_id;
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key.size = sizeof(ID);
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/* delete from database */
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rc = db->del( db, tid, &key, 0 );
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return rc;
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}
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int bdb_entry_return(
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Entry *e )
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{
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/* Our entries are allocated in two blocks; the data comes from
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* the db itself and the Entry structure and associated pointers
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* are allocated in entry_decode. The db data pointer is saved
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* in e_bv. Since the Entry structure is allocated as a single
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* block, e_attrs is always a fixed offset from e. The exception
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* is when an entry has been modified, in which case we also need
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* to free e_attrs.
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*/
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if( !e->e_bv.bv_val ) { /* A regular entry, from do_add */
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entry_free( e );
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return 0;
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}
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if( (void *) e->e_attrs != (void *) (e+1)) {
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attrs_free( e->e_attrs );
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}
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#ifndef BDB_HIER
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/* See if the DNs were changed by modrdn */
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if( e->e_nname.bv_val < e->e_bv.bv_val || e->e_nname.bv_val >
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e->e_bv.bv_val + e->e_bv.bv_len ) {
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ch_free(e->e_name.bv_val);
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ch_free(e->e_nname.bv_val);
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e->e_name.bv_val = NULL;
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e->e_nname.bv_val = NULL;
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}
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#else
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/* We had to construct the dn and ndn as well, in a single block */
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if( e->e_name.bv_val ) {
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free( e->e_name.bv_val );
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}
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#endif
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/* In tool mode the e_bv buffer is realloc'd, leave it alone */
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if( !(slapMode & SLAP_TOOL_MODE) ) {
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free( e->e_bv.bv_val );
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}
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free( e );
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return 0;
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}
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int bdb_entry_release(
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BackendDB *be,
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Connection *c,
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Operation *o,
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Entry *e,
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int rw )
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{
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struct bdb_info *bdb = (struct bdb_info *) be->be_private;
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/* slapMode : SLAP_SERVER_MODE, SLAP_TOOL_MODE,
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SLAP_TRUNCATE_MODE, SLAP_UNDEFINED_MODE */
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if ( slapMode == SLAP_SERVER_MODE ) {
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/* free entry and reader or writer lock */
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bdb_unlocked_cache_return_entry_rw( &bdb->bi_cache, e, rw );
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} else {
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if (e->e_private != NULL)
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free (e->e_private);
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e->e_private = NULL;
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bdb_entry_return ( e );
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}
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return 0;
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}
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