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https://git.openldap.org/openldap/openldap.git
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494 lines
12 KiB
C
494 lines
12 KiB
C
/*
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* Copyright 1998-1999 The OpenLDAP Foundation, All Rights Reserved.
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* COPYING RESTRICTIONS APPLY, see COPYRIGHT file
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*/
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/* Portions
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* Copyright (c) 1990 Regents of the University of Michigan.
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* All rights reserved.
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*
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* ufn.c
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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 <ctype.h>
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#include <stdlib.h>
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#include <ac/socket.h>
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#include <ac/time.h>
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#include "ldap-int.h"
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#include "ldapconfig.h"
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typedef int (*cancelptype) LDAP_P(( void *cancelparm ));
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/* local functions */
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static int ldap_ufn_search_ctx LDAP_P(( LDAP *ld, char **ufncomp, int ncomp,
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char *prefix, char **attrs, int attrsonly, LDAPMessage **res,
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cancelptype cancelproc, void *cancelparm, char *tag1, char *tag2,
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char *tag3 ));
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static LDAPMessage *ldap_msg_merge LDAP_P(( LDAP *ld, LDAPMessage *a, LDAPMessage *b ));
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static LDAPMessage *ldap_ufn_expand LDAP_P(( LDAP *ld, cancelptype cancelproc,
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void *cancelparm, char **dns, char *filter, int scope,
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char **attrs, int aonly, int *err ));
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/*
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* ldap_ufn_search_ctx - do user friendly searching; provide cancel feature;
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* specify ldapfilter.conf tags for each phase of search
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*
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* ld LDAP descriptor
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* ufncomp the exploded user friendly name to look for
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* ncomp number of elements in ufncomp
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* prefix where to start searching
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* attrs list of attribute types to return for matches
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* attrsonly 1 => attributes only 0 => attributes and values
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* res will contain the result of the search
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* cancelproc routine that returns non-zero if operation should be
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* cancelled. This can be a null function pointer. If
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* it is not 0, the routine will be called periodically.
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* cancelparm void * that is passed to cancelproc
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* tag[123] the ldapfilter.conf tag that will be used in phases
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* 1, 2, and 3 of the search, respectively
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*
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* Example:
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* char *attrs[] = { "mail", "title", 0 };
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* char *ufncomp[] = { "howes", "umich", "us", 0 }
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* LDAPMessage *res;
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* error = ldap_ufn_search_ctx( ld, ufncomp, 3, NULL, attrs, attrsonly,
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* &res, acancelproc, along, "ufn first",
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* "ufn intermediate", "ufn last" );
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*/
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static int
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ldap_ufn_search_ctx( LDAP *ld, char **ufncomp, int ncomp, char *prefix,
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char **attrs, int attrsonly, LDAPMessage **res, cancelptype cancelproc,
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void *cancelparm, char *tag1, char *tag2, char *tag3 )
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{
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char *dn, *ftag = NULL;
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char **dns = NULL;
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int max, i, err, scope = 0, phase, tries;
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LDAPFiltInfo *fi;
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LDAPMessage *tmpcand;
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LDAPMessage *candidates;
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static char *objattrs[] = { "objectClass", NULL };
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/*
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* look up ufn components from most to least significant.
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* there are 3 phases.
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* phase 1 search the root for orgs or countries
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* phase 2 search for orgs
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* phase 3 search for a person
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* in phases 1 and 2, we are building a list of candidate DNs,
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* below which we will search for the final component of the ufn.
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* for each component we try the filters listed in the
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* filterconfig file, first one-level (except the last compoment),
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* then subtree. if any of them produce any results, we go on to
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* the next component.
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*/
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*res = NULL;
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candidates = NULL;
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phase = 1;
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for ( ncomp--; ncomp != -1; ncomp-- ) {
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if ( *ufncomp[ncomp] == '"' ) {
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char *quote;
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if ( (quote = strrchr( ufncomp[ncomp], '"' )) != NULL )
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*quote = '\0';
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SAFEMEMCPY( ufncomp[ncomp], ufncomp[ncomp] + 1,
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strlen( ufncomp[ncomp] + 1 ) + 1 );
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}
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if ( ncomp == 0 )
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phase = 3;
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switch ( phase ) {
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case 1:
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ftag = tag1;
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scope = LDAP_SCOPE_ONELEVEL;
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break;
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case 2:
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ftag = tag2;
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scope = LDAP_SCOPE_ONELEVEL;
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break;
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case 3:
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ftag = tag3;
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scope = LDAP_SCOPE_SUBTREE;
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break;
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}
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/*
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* construct an array of DN's to search below from the
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* list of candidates.
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*/
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if ( candidates == NULL ) {
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if ( prefix != NULL ) {
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if ( (dns = (char **) malloc( sizeof(char *)
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* 2 )) == NULL ) {
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return( ld->ld_errno = LDAP_NO_MEMORY );
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}
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dns[0] = strdup( prefix );
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dns[1] = NULL;
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} else {
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dns = NULL;
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}
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} else {
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i = 0, max = 0;
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for ( tmpcand = candidates; tmpcand != NULL &&
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tmpcand->lm_msgtype != LDAP_RES_SEARCH_RESULT;
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tmpcand = tmpcand->lm_chain )
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{
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if ( (dn = ldap_get_dn( ld, tmpcand )) == NULL )
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continue;
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if ( dns == NULL ) {
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if ( (dns = (char **) malloc(
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sizeof(char *) * 8 )) == NULL ) {
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ld->ld_errno = LDAP_NO_MEMORY;
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return( LDAP_NO_MEMORY );
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}
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max = 8;
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} else if ( i >= max ) {
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if ( (dns = (char **) realloc( dns,
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sizeof(char *) * 2 * max ))
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== NULL )
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{
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ld->ld_errno = LDAP_NO_MEMORY;
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return( LDAP_NO_MEMORY );
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}
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max *= 2;
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}
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dns[i++] = dn;
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dns[i] = NULL;
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}
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ldap_msgfree( candidates );
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candidates = NULL;
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}
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tries = 0;
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tryagain:
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tries++;
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for ( fi = ldap_getfirstfilter( ld->ld_filtd, ftag,
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ufncomp[ncomp] ); fi != NULL;
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fi = ldap_getnextfilter( ld->ld_filtd ) )
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{
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if ( (candidates = ldap_ufn_expand( ld, cancelproc,
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cancelparm, dns, fi->lfi_filter, scope,
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phase == 3 ? attrs : objattrs,
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phase == 3 ? attrsonly : 1, &err )) != NULL )
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{
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break;
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}
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if ( err == -1 || err == LDAP_USER_CANCELLED ) {
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if ( dns != NULL ) {
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ldap_value_free( dns );
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dns = NULL;
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}
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return( err );
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}
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}
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if ( candidates == NULL ) {
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if ( tries < 2 && phase != 3 ) {
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scope = LDAP_SCOPE_SUBTREE;
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goto tryagain;
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} else {
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if ( dns != NULL ) {
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ldap_value_free( dns );
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dns = NULL;
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}
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return( err );
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}
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}
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/* go on to the next component */
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if ( phase == 1 )
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phase++;
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if ( dns != NULL ) {
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ldap_value_free( dns );
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dns = NULL;
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}
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}
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*res = candidates;
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return( err );
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}
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int
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ldap_ufn_search_ct( LDAP *ld, char *ufn, char **attrs, int attrsonly,
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LDAPMessage **res, cancelptype cancelproc, void *cancelparm,
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char *tag1, char *tag2, char *tag3 )
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{
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char **ufncomp, **prefixcomp;
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char *pbuf;
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int ncomp, pcomp, i, err = 0;
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/* initialize the getfilter stuff if it's not already */
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if ( ld->ld_filtd == NULL && ldap_ufn_setfilter( ld, FILTERFILE )
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== NULL ) {
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return( ld->ld_errno = LDAP_LOCAL_ERROR );
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}
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/* call ldap_explode_dn() to break the ufn into its components */
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if ( (ufncomp = ldap_explode_dn( ufn, 0 )) == NULL )
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return( ld->ld_errno = LDAP_LOCAL_ERROR );
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for ( ncomp = 0; ufncomp[ncomp] != NULL; ncomp++ )
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; /* NULL */
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/* more than two components => try it fully qualified first */
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if ( ncomp > 2 || ld->ld_ufnprefix == NULL ) {
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err = ldap_ufn_search_ctx( ld, ufncomp, ncomp, NULL, attrs,
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attrsonly, res, cancelproc, cancelparm, tag1, tag2, tag3 );
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if ( ldap_count_entries( ld, *res ) > 0 ) {
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ldap_value_free( ufncomp );
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return( err );
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} else {
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ldap_msgfree( *res );
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*res = NULL;
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}
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}
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if ( ld->ld_ufnprefix == NULL ) {
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ldap_value_free( ufncomp );
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return( err );
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}
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/* if that failed, or < 2 components, use the prefix */
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if ( (prefixcomp = ldap_explode_dn( ld->ld_ufnprefix, 0 )) == NULL ) {
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ldap_value_free( ufncomp );
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return( ld->ld_errno = LDAP_LOCAL_ERROR );
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}
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for ( pcomp = 0; prefixcomp[pcomp] != NULL; pcomp++ )
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; /* NULL */
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if ( (pbuf = (char *) malloc( strlen( ld->ld_ufnprefix ) + 1 ))
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== NULL ) {
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ldap_value_free( ufncomp );
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ldap_value_free( prefixcomp );
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return( ld->ld_errno = LDAP_NO_MEMORY );
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}
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for ( i = 0; i < pcomp; i++ ) {
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int j;
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*pbuf = '\0';
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for ( j = i; j < pcomp; j++ ) {
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strcat( pbuf, prefixcomp[j] );
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if ( j + 1 < pcomp )
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strcat( pbuf, "," );
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}
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err = ldap_ufn_search_ctx( ld, ufncomp, ncomp, pbuf, attrs,
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attrsonly, res, cancelproc, cancelparm, tag1, tag2, tag3 );
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if ( ldap_count_entries( ld, *res ) > 0 ) {
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break;
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} else {
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ldap_msgfree( *res );
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*res = NULL;
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}
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}
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ldap_value_free( ufncomp );
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ldap_value_free( prefixcomp );
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free( pbuf );
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return( err );
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}
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/*
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* same as ldap_ufn_search_ct, except without the ability to specify
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* ldapfilter.conf tags.
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*/
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int
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ldap_ufn_search_c( LDAP *ld, char *ufn, char **attrs, int attrsonly,
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LDAPMessage **res, cancelptype cancelproc, void *cancelparm )
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{
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return( ldap_ufn_search_ct( ld, ufn, attrs, attrsonly, res, cancelproc,
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cancelparm, "ufn first", "ufn intermediate", "ufn last" ) );
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}
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/*
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* same as ldap_ufn_search_c without the cancel function
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*/
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int
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ldap_ufn_search_s( LDAP *ld, char *ufn, char **attrs, int attrsonly,
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LDAPMessage **res )
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{
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struct timeval tv;
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tv.tv_sec = ld->ld_timelimit;
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return( ldap_ufn_search_ct( ld, ufn, attrs, attrsonly, res,
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ld->ld_timelimit ? ldap_ufn_timeout : NULL,
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ld->ld_timelimit ? (void *) &tv : NULL,
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"ufn first", "ufn intermediate", "ufn last" ) );
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}
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/*
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* ldap_msg_merge - merge two ldap search result chains. the more
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* serious of the two error result codes is kept.
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*/
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static LDAPMessage *
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ldap_msg_merge( LDAP *ld, LDAPMessage *a, LDAPMessage *b )
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{
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LDAPMessage *end, *aprev, *aend, *bprev, *bend;
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if ( a == NULL )
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return( b );
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if ( b == NULL )
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return( a );
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/* find the ends of the a and b chains */
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aprev = NULL;
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for ( aend = a; aend->lm_chain != NULL; aend = aend->lm_chain )
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aprev = aend;
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bprev = NULL;
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for ( bend = b; bend->lm_chain != NULL; bend = bend->lm_chain )
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bprev = bend;
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/* keep result a */
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if ( ldap_result2error( ld, aend, 0 ) != LDAP_SUCCESS ) {
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/* remove result b */
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ldap_msgfree( bend );
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if ( bprev != NULL )
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bprev->lm_chain = NULL;
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else
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b = NULL;
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end = aend;
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if ( aprev != NULL )
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aprev->lm_chain = NULL;
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else
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a = NULL;
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/* keep result b */
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} else {
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/* remove result a */
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ldap_msgfree( aend );
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if ( aprev != NULL )
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aprev->lm_chain = NULL;
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else
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a = NULL;
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end = bend;
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if ( bprev != NULL )
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bprev->lm_chain = NULL;
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else
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b = NULL;
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}
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if ( (a == NULL && b == NULL) || (a == NULL && bprev == NULL) ||
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(b == NULL && aprev == NULL) )
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return( end );
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if ( a == NULL ) {
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bprev->lm_chain = end;
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return( b );
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} else if ( b == NULL ) {
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aprev->lm_chain = end;
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return( a );
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} else {
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bprev->lm_chain = end;
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aprev->lm_chain = b;
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return( a );
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}
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}
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static LDAPMessage *
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ldap_ufn_expand( LDAP *ld, cancelptype cancelproc, void *cancelparm,
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char **dns, char *filter, int scope, char **attrs, int aonly,
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int *err )
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{
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LDAPMessage *tmpcand, *tmpres;
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char *dn;
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int i, msgid;
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struct timeval tv;
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/* search for this component below the current candidates */
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tmpcand = NULL;
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i = 0;
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do {
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if ( dns != NULL )
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dn = dns[i];
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else
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dn = "";
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if (( msgid = ldap_search( ld, dn, scope, filter, attrs,
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aonly )) == -1 ) {
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ldap_msgfree( tmpcand );
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*err = ld->ld_errno;
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return( NULL );
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}
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tv.tv_sec = 0;
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tv.tv_usec = 100000; /* 1/10 of a second */
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do {
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*err = ldap_result( ld, msgid, 1, &tv, &tmpres );
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if ( *err == 0 && cancelproc != 0 &&
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(*cancelproc)( cancelparm ) != 0 ) {
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ldap_abandon( ld, msgid );
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*err = LDAP_USER_CANCELLED;
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ld->ld_errno = LDAP_USER_CANCELLED;
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}
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} while ( *err == 0 );
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if ( *err == LDAP_USER_CANCELLED || *err < 0 ||
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( *err = ldap_result2error( ld, tmpres, 0 )) == -1 ) {
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ldap_msgfree( tmpcand );
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return( NULL );
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}
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tmpcand = ldap_msg_merge( ld, tmpcand, tmpres );
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i++;
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} while ( dns != NULL && dns[i] != NULL );
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if ( ldap_count_entries( ld, tmpcand ) > 0 ) {
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return( tmpcand );
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} else {
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ldap_msgfree( tmpcand );
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return( NULL );
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}
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}
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/*
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* ldap_ufn_setfilter - set the filter config file used in ufn searching
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*/
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LDAPFiltDesc *
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ldap_ufn_setfilter( LDAP *ld, char *fname )
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{
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if ( ld->ld_filtd != NULL )
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ldap_getfilter_free( ld->ld_filtd );
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return( ld->ld_filtd = ldap_init_getfilter( fname ) );
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}
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void
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ldap_ufn_setprefix( LDAP *ld, char *prefix )
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{
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if ( ld->ld_ufnprefix != NULL )
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free( ld->ld_ufnprefix );
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ld->ld_ufnprefix = strdup( prefix );
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}
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int
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ldap_ufn_timeout( void *tvparam )
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{
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struct timeval *tv;
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tv = (struct timeval *)tvparam;
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if ( tv->tv_sec != 0 ) {
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tv->tv_usec = tv->tv_sec * 1000000; /* sec => micro sec */
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tv->tv_sec = 0;
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}
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tv->tv_usec -= 100000; /* 1/10 of a second */
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return( tv->tv_usec <= 0 ? 1 : 0 );
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}
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