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370 lines
10 KiB
C
370 lines
10 KiB
C
/* modify.c - modify request handler for back-asyncmeta */
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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 2016-2018 The OpenLDAP Foundation.
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* Portions Copyright 2016 Symas Corporation.
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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 the 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 developed by Symas Corporation
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* based on back-meta module for inclusion in OpenLDAP Software.
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* This work was sponsored by Ericsson. */
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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-ldap/back-ldap.h"
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#include "back-asyncmeta.h"
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#include "../../../libraries/liblber/lber-int.h"
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#include "../../../libraries/libldap/ldap-int.h"
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meta_search_candidate_t
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asyncmeta_back_modify_start(Operation *op,
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SlapReply *rs,
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a_metaconn_t *mc,
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bm_context_t *bc,
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int candidate)
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{
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int i, isupdate, rc = 0, nretries = 1;
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a_dncookie dc;
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a_metainfo_t *mi = mc->mc_info;
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a_metatarget_t *mt = mi->mi_targets[ candidate ];
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LDAPMod **modv = NULL;
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LDAPMod *mods = NULL;
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struct berval mdn;
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Modifications *ml;
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struct berval mapped;
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meta_search_candidate_t retcode = META_SEARCH_CANDIDATE;
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BerElement *ber = NULL;
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a_metasingleconn_t *msc = &mc->mc_conns[ candidate ];
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SlapReply *candidates = bc->candidates;
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ber_int_t msgid;
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LDAPControl **ctrls = NULL;
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/*
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* Rewrite the modify dn, if needed
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*/
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dc.target = mt;
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dc.conn = op->o_conn;
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dc.rs = rs;
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dc.ctx = "modifyDN";
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switch ( asyncmeta_dn_massage( &dc, &op->o_req_dn, &mdn ) )
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{
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case LDAP_SUCCESS:
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break;
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case LDAP_UNWILLING_TO_PERFORM:
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rs->sr_err = LDAP_UNWILLING_TO_PERFORM;
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rs->sr_text = "Operation not allowed";
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retcode = META_SEARCH_ERR;
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goto doreturn;
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default:
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rs->sr_err = LDAP_NO_SUCH_OBJECT;
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retcode = META_SEARCH_NOT_CANDIDATE;
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goto doreturn;
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}
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for ( i = 0, ml = op->orm_modlist; ml; i++ ,ml = ml->sml_next )
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;
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mods = ch_malloc( sizeof( LDAPMod )*i );
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if ( mods == NULL ) {
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rs->sr_err = LDAP_OTHER;
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retcode = META_SEARCH_ERR;
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goto doreturn;
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}
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modv = ( LDAPMod ** )ch_malloc( ( i + 1 )*sizeof( LDAPMod * ) );
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if ( modv == NULL ) {
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rs->sr_err = LDAP_OTHER;
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retcode = META_SEARCH_ERR;
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goto doreturn;
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}
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dc.ctx = "modifyAttrDN";
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isupdate = be_shadow_update( op );
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for ( i = 0, ml = op->orm_modlist; ml; ml = ml->sml_next ) {
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int j, is_oc = 0;
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if ( !isupdate && !get_relax( op ) && ml->sml_desc->ad_type->sat_no_user_mod )
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{
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continue;
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}
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if ( ml->sml_desc == slap_schema.si_ad_objectClass
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|| ml->sml_desc == slap_schema.si_ad_structuralObjectClass )
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{
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is_oc = 1;
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mapped = ml->sml_desc->ad_cname;
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} else {
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asyncmeta_map( &mt->mt_rwmap.rwm_at,
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&ml->sml_desc->ad_cname, &mapped,
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BACKLDAP_MAP );
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if ( BER_BVISNULL( &mapped ) || BER_BVISEMPTY( &mapped ) ) {
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continue;
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}
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}
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modv[ i ] = &mods[ i ];
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mods[ i ].mod_op = ml->sml_op | LDAP_MOD_BVALUES;
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mods[ i ].mod_type = mapped.bv_val;
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/*
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* FIXME: dn-valued attrs should be rewritten
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* to allow their use in ACLs at the back-ldap
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* level.
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*/
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if ( ml->sml_values != NULL ) {
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if ( is_oc ) {
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for ( j = 0; !BER_BVISNULL( &ml->sml_values[ j ] ); j++ )
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;
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mods[ i ].mod_bvalues =
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(struct berval **)ch_malloc( ( j + 1 ) *
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sizeof( struct berval * ) );
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for ( j = 0; !BER_BVISNULL( &ml->sml_values[ j ] ); ) {
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struct ldapmapping *mapping;
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asyncmeta_mapping( &mt->mt_rwmap.rwm_oc,
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&ml->sml_values[ j ], &mapping, BACKLDAP_MAP );
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if ( mapping == NULL ) {
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if ( mt->mt_rwmap.rwm_oc.drop_missing ) {
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continue;
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}
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mods[ i ].mod_bvalues[ j ] = &ml->sml_values[ j ];
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} else {
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mods[ i ].mod_bvalues[ j ] = &mapping->dst;
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}
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j++;
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}
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mods[ i ].mod_bvalues[ j ] = NULL;
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} else {
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if ( ml->sml_desc->ad_type->sat_syntax ==
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slap_schema.si_syn_distinguishedName )
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{
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( void )asyncmeta_dnattr_rewrite( &dc, ml->sml_values );
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if ( ml->sml_values == NULL ) {
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continue;
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}
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}
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for ( j = 0; !BER_BVISNULL( &ml->sml_values[ j ] ); j++ )
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;
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mods[ i ].mod_bvalues =
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(struct berval **)ch_malloc( ( j + 1 ) *
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sizeof( struct berval * ) );
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for ( j = 0; !BER_BVISNULL( &ml->sml_values[ j ] ); j++ ) {
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mods[ i ].mod_bvalues[ j ] = &ml->sml_values[ j ];
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}
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mods[ i ].mod_bvalues[ j ] = NULL;
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}
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} else {
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mods[ i ].mod_bvalues = NULL;
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}
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i++;
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}
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modv[ i ] = 0;
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retry:;
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ctrls = op->o_ctrls;
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if ( asyncmeta_controls_add( op, rs, mc, candidate, &ctrls ) != LDAP_SUCCESS )
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{
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candidates[ candidate ].sr_msgid = META_MSGID_IGNORE;
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retcode = META_SEARCH_ERR;
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goto done;
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}
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ber = ldap_build_modify_req( msc->msc_ld, mdn.bv_val, modv, ctrls, NULL, &msgid);
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if (ber) {
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candidates[ candidate ].sr_msgid = msgid;
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rc = ldap_send_initial_request( msc->msc_ld, LDAP_REQ_MODIFY,
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mdn.bv_val, ber, msgid );
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if (rc == msgid)
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rc = LDAP_SUCCESS;
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else
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rc = LDAP_SERVER_DOWN;
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switch ( rc ) {
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case LDAP_SUCCESS:
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retcode = META_SEARCH_CANDIDATE;
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asyncmeta_set_msc_time(msc);
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break;
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case LDAP_SERVER_DOWN:
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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asyncmeta_clear_one_msc(NULL, mc, candidate);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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if ( nretries && asyncmeta_retry( op, rs, &mc, candidate, LDAP_BACK_DONTSEND ) ) {
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nretries = 0;
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/* if the identity changed, there might be need to re-authz */
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(void)mi->mi_ldap_extra->controls_free( op, rs, &ctrls );
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goto retry;
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}
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default:
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candidates[ candidate ].sr_msgid = META_MSGID_IGNORE;
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retcode = META_SEARCH_ERR;
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}
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}
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done:
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(void)mi->mi_ldap_extra->controls_free( op, rs, &ctrls );
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if ( mdn.bv_val != op->o_req_dn.bv_val ) {
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free( mdn.bv_val );
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BER_BVZERO( &mdn );
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}
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if ( modv != NULL ) {
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for ( i = 0; modv[ i ]; i++ ) {
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free( modv[ i ]->mod_bvalues );
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}
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}
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free( mods );
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free( modv );
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doreturn:;
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Debug( LDAP_DEBUG_TRACE, "%s <<< asyncmeta_back_modify_start[%p]=%d\n", op->o_log_prefix, msc, candidates[candidate].sr_msgid );
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return retcode;
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}
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int
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asyncmeta_back_modify( Operation *op, SlapReply *rs )
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{
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a_metainfo_t *mi = ( a_metainfo_t * )op->o_bd->be_private;
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a_metatarget_t *mt;
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a_metaconn_t *mc;
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int rc, candidate = -1;
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OperationBuffer opbuf;
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bm_context_t *bc;
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SlapReply *candidates;
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slap_callback *cb = op->o_callback;
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Debug(LDAP_DEBUG_ARGS, "==> asyncmeta_back_modify: %s\n",
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op->o_req_dn.bv_val, 0, 0 );
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asyncmeta_new_bm_context(op, rs, &bc, mi->mi_ntargets );
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if (bc == NULL) {
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rs->sr_err = LDAP_OTHER;
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asyncmeta_sender_error(op, rs, cb);
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return rs->sr_err;
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}
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candidates = bc->candidates;
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mc = asyncmeta_getconn( op, rs, candidates, &candidate, LDAP_BACK_DONTSEND, 0);
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if ( !mc || rs->sr_err != LDAP_SUCCESS) {
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asyncmeta_sender_error(op, rs, cb);
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asyncmeta_clear_bm_context(bc);
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return rs->sr_err;
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}
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mt = mi->mi_targets[ candidate ];
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bc->timeout = mt->mt_timeout[ SLAP_OP_MODIFY ];
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bc->retrying = LDAP_BACK_RETRYING;
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bc->sendok = ( LDAP_BACK_SENDRESULT | bc->retrying );
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bc->stoptime = op->o_time + bc->timeout;
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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rc = asyncmeta_add_message_queue(mc, bc);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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if (rc != LDAP_SUCCESS) {
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rs->sr_err = LDAP_BUSY;
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rs->sr_text = "Maximum pending ops limit exceeded";
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asyncmeta_clear_bm_context(bc);
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asyncmeta_sender_error(op, rs, cb);
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goto finish;
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}
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rc = asyncmeta_dobind_init_with_retry(op, rs, bc, mc, candidate);
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switch (rc)
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{
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case META_SEARCH_CANDIDATE:
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/* target is already bound, just send the request */
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Debug( LDAP_DEBUG_TRACE, "%s asyncmeta_back_modify: "
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"cnd=\"%ld\"\n", op->o_log_prefix, candidate , 0);
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rc = asyncmeta_back_modify_start( op, rs, mc, bc, candidate);
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if (rc == META_SEARCH_ERR) {
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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asyncmeta_drop_bc(mc, bc);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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asyncmeta_sender_error(op, rs, cb);
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asyncmeta_clear_bm_context(bc);
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goto finish;
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}
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break;
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case META_SEARCH_NOT_CANDIDATE:
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Debug( LDAP_DEBUG_TRACE, "%s asyncmeta_back_modify: NOT_CANDIDATE "
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"cnd=\"%ld\"\n", op->o_log_prefix, candidate , 0);
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candidates[ candidate ].sr_msgid = META_MSGID_IGNORE;
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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asyncmeta_drop_bc(mc, bc);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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asyncmeta_sender_error(op, rs, cb);
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asyncmeta_clear_bm_context(bc);
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goto finish;
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case META_SEARCH_NEED_BIND:
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case META_SEARCH_CONNECTING:
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Debug( LDAP_DEBUG_TRACE, "%s asyncmeta_back_modify: NEED_BIND "
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"cnd=\"%ld\" %p\n", op->o_log_prefix, candidate , &mc->mc_conns[candidate]);
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rc = asyncmeta_dobind_init(op, rs, bc, mc, candidate);
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if (rc == META_SEARCH_ERR) {
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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asyncmeta_drop_bc(mc, bc);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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asyncmeta_sender_error(op, rs, cb);
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asyncmeta_clear_bm_context(bc);
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goto finish;
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}
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break;
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case META_SEARCH_BINDING:
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Debug( LDAP_DEBUG_TRACE, "%s asyncmeta_back_modify: BINDING "
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"cnd=\"%ld\" %p\n", op->o_log_prefix, candidate , &mc->mc_conns[candidate]);
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/* Todo add the context to the message queue but do not send the request
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the receiver must send this when we are done binding */
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/* question - how would do receiver know to which targets??? */
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break;
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case META_SEARCH_ERR:
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Debug( LDAP_DEBUG_TRACE, "%s asyncmeta_back_modify: ERR "
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"cnd=\"%ldd\"\n", op->o_log_prefix, candidate , 0);
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candidates[ candidate ].sr_msgid = META_MSGID_IGNORE;
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candidates[ candidate ].sr_type = REP_RESULT;
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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asyncmeta_drop_bc(mc, bc);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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asyncmeta_sender_error(op, rs, cb);
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asyncmeta_clear_bm_context(bc);
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goto finish;
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default:
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assert( 0 );
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break;
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}
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ldap_pvt_thread_mutex_lock( &mc->mc_om_mutex);
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asyncmeta_start_one_listener(mc, candidates, bc, candidate);
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ldap_pvt_thread_mutex_unlock( &mc->mc_om_mutex);
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finish:
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return rs->sr_err;
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}
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