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289 lines
6.3 KiB
C
289 lines
6.3 KiB
C
/* abandon.c */
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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 1998-2004 The OpenLDAP Foundation.
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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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/* Portions Copyright (c) 1990 Regents of the University of Michigan.
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* All rights reserved.
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*/
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/* Portions Copyright (C) The Internet Society (1997).
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* ASN.1 fragments are from RFC 2251; see RFC for full legal notices.
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*/
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/*
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* An abandon request looks like this:
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* AbandonRequest ::= MessageID
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*/
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#include "portable.h"
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#include <stdio.h>
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#include <ac/stdlib.h>
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#include <ac/socket.h>
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#include <ac/string.h>
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#include <ac/time.h>
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#include "ldap-int.h"
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static int do_abandon LDAP_P((
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LDAP *ld,
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ber_int_t origid,
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ber_int_t msgid,
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LDAPControl **sctrls,
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LDAPControl **cctrls));
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/*
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* ldap_abandon_ext - perform an ldap extended abandon operation.
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*
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* Parameters:
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* ld LDAP descriptor
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* msgid The message id of the operation to abandon
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* scntrls Server Controls
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* ccntrls Client Controls
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*
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* ldap_abandon_ext returns a LDAP error code.
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* (LDAP_SUCCESS if everything went ok)
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*
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* Example:
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* ldap_abandon_ext( ld, msgid, scntrls, ccntrls );
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*/
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int
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ldap_abandon_ext(
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LDAP *ld,
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int msgid,
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LDAPControl **sctrls,
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LDAPControl **cctrls )
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{
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int rc;
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#ifdef NEW_LOGGING
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LDAP_LOG ( OPERATION, ARGS, "ldap_abandon_ext %d\n", msgid, 0, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE, "ldap_abandon_ext %d\n", msgid, 0, 0 );
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#endif
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/* check client controls */
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#ifdef LDAP_R_COMPILE
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ldap_pvt_thread_mutex_lock( &ld->ld_req_mutex );
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#endif
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rc = ldap_int_client_controls( ld, cctrls );
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if( rc == LDAP_SUCCESS )
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rc = do_abandon( ld, msgid, msgid, sctrls, cctrls );
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#ifdef LDAP_R_COMPILE
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ldap_pvt_thread_mutex_unlock( &ld->ld_req_mutex );
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#endif
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return rc;
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}
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/*
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* ldap_abandon - perform an ldap abandon operation. Parameters:
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*
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* ld LDAP descriptor
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* msgid The message id of the operation to abandon
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*
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* ldap_abandon returns 0 if everything went ok, -1 otherwise.
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*
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* Example:
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* ldap_abandon( ld, msgid );
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*/
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int
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ldap_abandon( LDAP *ld, int msgid )
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{
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#ifdef NEW_LOGGING
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LDAP_LOG ( OPERATION, ARGS, "ldap_abandon %d\n", msgid, 0, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE, "ldap_abandon %d\n", msgid, 0, 0 );
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#endif
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return ldap_abandon_ext( ld, msgid, NULL, NULL ) == LDAP_SUCCESS
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? 0 : -1;
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}
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static int
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do_abandon(
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LDAP *ld,
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ber_int_t origid,
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ber_int_t msgid,
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LDAPControl **sctrls,
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LDAPControl **cctrls)
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{
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BerElement *ber;
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int i, err, sendabandon;
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ber_int_t *old_abandon;
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Sockbuf *sb;
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LDAPRequest *lr;
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#ifdef NEW_LOGGING
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LDAP_LOG ( OPERATION, ARGS, "do_abandon %d, msgid %d\n", origid, msgid, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE, "do_abandon origid %d, msgid %d\n",
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origid, msgid, 0 );
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#endif
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sendabandon = 1;
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/* find the request that we are abandoning */
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for ( lr = ld->ld_requests; lr != NULL; lr = lr->lr_next ) {
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if ( lr->lr_msgid == msgid ) { /* this message */
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break;
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}
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if ( lr->lr_origid == msgid ) {/* child: abandon it */
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(void) do_abandon( ld,
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msgid, lr->lr_msgid, sctrls, cctrls );
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}
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}
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if ( lr != NULL ) {
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if ( origid == msgid && lr->lr_parent != NULL ) {
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/* don't let caller abandon child requests! */
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ld->ld_errno = LDAP_PARAM_ERROR;
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return( LDAP_PARAM_ERROR );
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}
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if ( lr->lr_status != LDAP_REQST_INPROGRESS ) {
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/* no need to send abandon message */
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sendabandon = 0;
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}
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}
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/* ldap_msgdelete locks the res_mutex. Give up the req_mutex
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* while we're in there.
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*/
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#ifdef LDAP_R_COMPILE
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ldap_pvt_thread_mutex_unlock( &ld->ld_req_mutex );
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#endif
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err = ldap_msgdelete( ld, msgid );
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#ifdef LDAP_R_COMPILE
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ldap_pvt_thread_mutex_lock( &ld->ld_req_mutex );
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#endif
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if ( err == 0 ) {
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ld->ld_errno = LDAP_SUCCESS;
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return LDAP_SUCCESS;
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}
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err = 0;
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if ( sendabandon ) {
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if( ber_sockbuf_ctrl( ld->ld_sb, LBER_SB_OPT_GET_FD, NULL ) == -1 ) {
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/* not connected */
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err = -1;
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ld->ld_errno = LDAP_SERVER_DOWN;
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} else if ( (ber = ldap_alloc_ber_with_options( ld )) == NULL ) {
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/* BER element alocation failed */
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err = -1;
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ld->ld_errno = LDAP_NO_MEMORY;
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} else {
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LDAP_NEXT_MSGID(ld, i);
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#ifdef LDAP_CONNECTIONLESS
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if ( LDAP_IS_UDP(ld) ) {
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err = ber_write( ber, ld->ld_options.ldo_peer,
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sizeof(struct sockaddr), 0);
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}
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if ( LDAP_IS_UDP(ld) && ld->ld_options.ldo_version ==
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LDAP_VERSION2) {
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char *dn = ld->ld_options.ldo_cldapdn;
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if (!dn) dn = "";
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err = ber_printf( ber, "{isti", /* '}' */
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i, dn,
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LDAP_REQ_ABANDON, msgid );
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} else
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#endif
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{
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/* create a message to send */
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err = ber_printf( ber, "{iti", /* '}' */
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i,
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LDAP_REQ_ABANDON, msgid );
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}
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if( err == -1 ) {
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/* encoding error */
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ld->ld_errno = LDAP_ENCODING_ERROR;
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} else {
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/* Put Server Controls */
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if ( ldap_int_put_controls( ld, sctrls, ber )
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!= LDAP_SUCCESS )
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{
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err = -1;
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} else {
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/* close '{' */
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err = ber_printf( ber, /*{*/ "N}" );
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if( err == -1 ) {
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/* encoding error */
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ld->ld_errno = LDAP_ENCODING_ERROR;
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}
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}
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}
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if ( err == -1 ) {
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ber_free( ber, 1 );
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} else {
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/* send the message */
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if ( lr != NULL ) {
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sb = lr->lr_conn->lconn_sb;
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} else {
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sb = ld->ld_sb;
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}
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if ( ber_flush( sb, ber, 1 ) != 0 ) {
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ld->ld_errno = LDAP_SERVER_DOWN;
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err = -1;
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} else {
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err = 0;
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}
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}
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}
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}
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if ( lr != NULL ) {
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if ( sendabandon || lr->lr_status == LDAP_REQST_WRITING ) {
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ldap_free_connection( ld, lr->lr_conn, 0, 1 );
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}
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if ( origid == msgid ) {
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ldap_free_request( ld, lr );
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}
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}
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i = 0;
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if ( ld->ld_abandoned != NULL ) {
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for ( ; ld->ld_abandoned[i] != -1; i++ )
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; /* NULL */
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}
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old_abandon = ld->ld_abandoned;
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ld->ld_abandoned = (ber_int_t *) LDAP_REALLOC( (char *)
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ld->ld_abandoned, (i + 2) * sizeof(ber_int_t) );
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if ( ld->ld_abandoned == NULL ) {
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ld->ld_abandoned = old_abandon;
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ld->ld_errno = LDAP_NO_MEMORY;
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return( ld->ld_errno );
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}
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ld->ld_abandoned[i] = msgid;
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ld->ld_abandoned[i + 1] = -1;
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if ( err != -1 ) {
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ld->ld_errno = LDAP_SUCCESS;
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}
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return( ld->ld_errno );
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}
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