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https://git.openldap.org/openldap/openldap.git
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eb9a3c1876
unifdef -DSLAP_ACL_HONOR_MANAGE unifdef -DSLAP_OVERLAY_ACCESS unifdef -DSLAP_ORDERED_PRETTYNORM unifdef -DSLAP_AUTHZ_SYNTAX Move LDAP_COLLECTIVE_ATTRIBUTES, LDAP_COMP_MATCH, and LDAP_SYNC_TIMESTAMP back behind LDAP_DEVEL (as these either too experimental or not yet implemented).
257 lines
5.4 KiB
C
257 lines
5.4 KiB
C
/* search.c - monitor backend search function */
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/* $OpenLDAP$ */
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/* This work is part of OpenLDAP Software <http://www.openldap.org/>.
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*
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* Copyright 2001-2006 The OpenLDAP Foundation.
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* Portions Copyright 2001-2003 Pierangelo Masarati.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted only as authorized by the OpenLDAP
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* Public License.
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*
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* A copy of this license is available in file LICENSE in the
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* top-level directory of the distribution or, alternatively, at
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* <http://www.OpenLDAP.org/license.html>.
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*/
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/* ACKNOWLEDGEMENTS:
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* This work was initially developed by Pierangelo Masarati for inclusion
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* in OpenLDAP Software.
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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 <ac/socket.h>
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#include "slap.h"
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#include "back-monitor.h"
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#include "proto-back-monitor.h"
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static int
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monitor_send_children(
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Operation *op,
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SlapReply *rs,
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Entry *e_parent,
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int sub
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)
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{
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monitor_info_t *mi = ( monitor_info_t * )op->o_bd->be_private;
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Entry *e,
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*e_tmp,
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*e_ch = NULL,
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*e_nonvolatile = NULL;
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monitor_entry_t *mp;
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int rc,
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nonvolatile = 0;
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mp = ( monitor_entry_t * )e_parent->e_private;
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e_nonvolatile = e = mp->mp_children;
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if ( MONITOR_HAS_VOLATILE_CH( mp ) ) {
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monitor_entry_create( op, rs, NULL, e_parent, &e_ch );
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}
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monitor_cache_release( mi, e_parent );
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/* no volatile entries? */
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if ( e_ch == NULL ) {
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/* no persistent entries? return */
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if ( e == NULL ) {
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return LDAP_SUCCESS;
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}
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/* volatile entries */
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} else {
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/* if no persistent, return only volatile */
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if ( e == NULL ) {
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e = e_ch;
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/* else append persistent to volatile */
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} else {
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e_tmp = e_ch;
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do {
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mp = ( monitor_entry_t * )e_tmp->e_private;
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e_tmp = mp->mp_next;
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if ( e_tmp == NULL ) {
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mp->mp_next = e;
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break;
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}
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} while ( e_tmp );
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e = e_ch;
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}
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}
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/* return entries */
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for ( monitor_cache_lock( e ); e != NULL; ) {
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monitor_entry_update( op, rs, e );
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if ( op->o_abandon ) {
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/* FIXME: may leak generated children */
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if ( nonvolatile == 0 ) {
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for ( e_tmp = e; e_tmp != NULL; ) {
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mp = ( monitor_entry_t * )e_tmp->e_private;
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e = e_tmp;
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e_tmp = mp->mp_next;
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monitor_cache_release( mi, e );
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if ( e_tmp == e_nonvolatile ) {
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break;
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}
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}
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} else {
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monitor_cache_release( mi, e );
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}
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return SLAPD_ABANDON;
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}
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rc = test_filter( op, e, op->oq_search.rs_filter );
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if ( rc == LDAP_COMPARE_TRUE ) {
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rs->sr_entry = e;
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rs->sr_flags = 0;
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rc = send_search_entry( op, rs );
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rs->sr_entry = NULL;
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}
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mp = ( monitor_entry_t * )e->e_private;
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e_tmp = mp->mp_next;
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if ( sub ) {
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rc = monitor_send_children( op, rs, e, sub );
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if ( rc ) {
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/* FIXME: may leak generated children */
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if ( nonvolatile == 0 ) {
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for ( ; e_tmp != NULL; ) {
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mp = ( monitor_entry_t * )e_tmp->e_private;
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e = e_tmp;
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e_tmp = mp->mp_next;
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monitor_cache_release( mi, e );
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if ( e_tmp == e_nonvolatile ) {
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break;
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}
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}
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}
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return( rc );
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}
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}
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if ( e_tmp != NULL ) {
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monitor_cache_lock( e_tmp );
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}
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if ( !sub ) {
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/* otherwise the recursive call already released */
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monitor_cache_release( mi, e );
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}
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e = e_tmp;
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if ( e == e_nonvolatile ) {
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nonvolatile = 1;
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}
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}
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return LDAP_SUCCESS;
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}
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int
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monitor_back_search( Operation *op, SlapReply *rs )
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{
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monitor_info_t *mi = ( monitor_info_t * )op->o_bd->be_private;
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int rc = LDAP_SUCCESS;
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Entry *e = NULL, *matched = NULL;
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slap_mask_t mask;
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Debug( LDAP_DEBUG_TRACE, "=> monitor_back_search\n", 0, 0, 0 );
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/* get entry with reader lock */
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monitor_cache_dn2entry( op, rs, &op->o_req_ndn, &e, &matched );
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if ( e == NULL ) {
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rs->sr_err = LDAP_NO_SUCH_OBJECT;
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if ( matched ) {
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if ( !access_allowed_mask( op, matched,
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slap_schema.si_ad_entry,
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NULL, ACL_DISCLOSE, NULL, NULL ) )
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{
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/* do nothing */ ;
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} else {
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rs->sr_matched = matched->e_dn;
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}
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}
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send_ldap_result( op, rs );
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if ( matched ) {
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monitor_cache_release( mi, matched );
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rs->sr_matched = NULL;
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}
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return rs->sr_err;
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}
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/* NOTE: __NEW__ "search" access is required
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* on searchBase object */
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if ( !access_allowed_mask( op, e, slap_schema.si_ad_entry,
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NULL, ACL_SEARCH, NULL, &mask ) )
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{
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monitor_cache_release( mi, e );
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if ( !ACL_GRANT( mask, ACL_DISCLOSE ) ) {
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rs->sr_err = LDAP_NO_SUCH_OBJECT;
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} else {
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rs->sr_err = LDAP_INSUFFICIENT_ACCESS;
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}
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send_ldap_result( op, rs );
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return rs->sr_err;
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}
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rs->sr_attrs = op->oq_search.rs_attrs;
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switch ( op->oq_search.rs_scope ) {
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case LDAP_SCOPE_BASE:
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monitor_entry_update( op, rs, e );
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rc = test_filter( op, e, op->oq_search.rs_filter );
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if ( rc == LDAP_COMPARE_TRUE ) {
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rs->sr_entry = e;
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rs->sr_flags = 0;
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send_search_entry( op, rs );
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rs->sr_entry = NULL;
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}
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rc = LDAP_SUCCESS;
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monitor_cache_release( mi, e );
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break;
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case LDAP_SCOPE_ONELEVEL:
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rc = monitor_send_children( op, rs, e, 0 );
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break;
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case LDAP_SCOPE_SUBTREE:
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monitor_entry_update( op, rs, e );
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rc = test_filter( op, e, op->oq_search.rs_filter );
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if ( rc == LDAP_COMPARE_TRUE ) {
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rs->sr_entry = e;
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rs->sr_flags = 0;
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send_search_entry( op, rs );
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rs->sr_entry = NULL;
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}
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rc = monitor_send_children( op, rs, e, 1 );
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break;
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}
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rs->sr_attrs = NULL;
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rs->sr_err = rc;
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if ( rs->sr_err != SLAPD_ABANDON ) {
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send_ldap_result( op, rs );
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}
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return rs->sr_err;
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}
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