openldap/servers/slapd/modify.c

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/* $OpenLDAP$ */
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/*
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* Copyright 1998-2002 The OpenLDAP Foundation, All Rights Reserved.
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* COPYING RESTRICTIONS APPLY, see COPYRIGHT file
*/
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/*
* Copyright (c) 1995 Regents of the University of Michigan.
* All rights reserved.
*
* Redistribution and use in source and binary forms are permitted
* provided that this notice is preserved and that due credit is given
* to the University of Michigan at Ann Arbor. The name of the University
* may not be used to endorse or promote products derived from this
* software without specific prior written permission. This software
* is provided ``as is'' without express or implied warranty.
*/
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#include "portable.h"
#include "slapi_common.h"
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#include <stdio.h>
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#include <ac/socket.h>
#include <ac/string.h>
#include <ac/time.h>
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#include "lutil.h"
#include "ldap_pvt.h"
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#include "slap.h"
#include "slapi.h"
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int
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do_modify(
Connection *conn,
Operation *op )
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{
struct berval dn = { 0, NULL };
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struct berval pdn = { 0, NULL };
struct berval ndn = { 0, NULL };
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char *last;
ber_tag_t tag;
ber_len_t len;
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Modifications *modlist = NULL;
Modifications **modtail = &modlist;
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#ifdef LDAP_DEBUG
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Modifications *tmp;
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#endif
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Backend *be;
int rc;
const char *text;
int manageDSAit;
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Slapi_PBlock *pb = op->o_pb;
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ENTRY, "do_modify: enter\n", 0, 0, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE, "do_modify\n", 0, 0, 0 );
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#endif
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/*
* Parse the modify request. It looks like this:
*
* ModifyRequest := [APPLICATION 6] SEQUENCE {
* name DistinguishedName,
* mods SEQUENCE OF SEQUENCE {
* operation ENUMERATED {
* add (0),
* delete (1),
* replace (2)
* },
* modification SEQUENCE {
* type AttributeType,
* values SET OF AttributeValue
* }
* }
* }
*/
if ( ber_scanf( op->o_ber, "{m" /*}*/, &dn ) == LBER_ERROR ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR, "do_modify: ber_scanf failed\n", 0, 0, 0 );
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#else
Debug( LDAP_DEBUG_ANY, "do_modify: ber_scanf failed\n", 0, 0, 0 );
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#endif
send_ldap_disconnect( conn, op,
LDAP_PROTOCOL_ERROR, "decoding error" );
return SLAPD_DISCONNECT;
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}
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ARGS, "do_modify: dn (%s)\n", dn.bv_val, 0, 0 );
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#else
Debug( LDAP_DEBUG_ARGS, "do_modify: dn (%s)\n", dn.bv_val, 0, 0 );
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#endif
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/* collect modifications & save for later */
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for ( tag = ber_first_element( op->o_ber, &len, &last );
tag != LBER_DEFAULT;
tag = ber_next_element( op->o_ber, &len, last ) )
{
ber_int_t mop;
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Modifications tmp, *mod;
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if ( ber_scanf( op->o_ber, "{i{m[W]}}", &mop,
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&tmp.sml_type, &tmp.sml_bvalues )
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== LBER_ERROR )
{
send_ldap_disconnect( conn, op,
LDAP_PROTOCOL_ERROR, "decoding modlist error" );
rc = SLAPD_DISCONNECT;
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goto cleanup;
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}
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mod = (Modifications *) ch_malloc( sizeof(Modifications) );
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mod->sml_op = mop;
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mod->sml_type = tmp.sml_type;
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mod->sml_bvalues = tmp.sml_bvalues;
mod->sml_desc = NULL;
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mod->sml_next =NULL;
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*modtail = mod;
switch( mop ) {
case LDAP_MOD_ADD:
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if ( mod->sml_bvalues == NULL ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"do_modify: modify/add operation (%ld) requires values\n",
(long)mop, 0, 0 );
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#else
Debug( LDAP_DEBUG_ANY,
"do_modify: modify/add operation (%ld) requires values\n",
(long) mop, 0, 0 );
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#endif
send_ldap_result( conn, op, LDAP_PROTOCOL_ERROR,
NULL, "modify/add operation requires values",
NULL, NULL );
rc = LDAP_PROTOCOL_ERROR;
goto cleanup;
}
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/* fall through */
case LDAP_MOD_DELETE:
case LDAP_MOD_REPLACE:
break;
default: {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"do_modify: invalid modify operation (%ld)\n", (long)mop, 0, 0 );
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#else
Debug( LDAP_DEBUG_ANY,
"do_modify: invalid modify operation (%ld)\n",
(long) mop, 0, 0 );
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#endif
send_ldap_result( conn, op, LDAP_PROTOCOL_ERROR,
NULL, "unrecognized modify operation", NULL, NULL );
rc = LDAP_PROTOCOL_ERROR;
goto cleanup;
}
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}
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modtail = &mod->sml_next;
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}
*modtail = NULL;
if( (rc = get_ctrls( conn, op, 1 )) != LDAP_SUCCESS ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR, "do_modify: get_ctrls failed\n", 0, 0, 0 );
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#else
Debug( LDAP_DEBUG_ANY, "do_modify: get_ctrls failed\n", 0, 0, 0 );
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#endif
goto cleanup;
}
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rc = dnPrettyNormal( NULL, &dn, &pdn, &ndn );
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if( rc != LDAP_SUCCESS ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, INFO, "do_modify: conn %d invalid dn (%s)\n",
conn->c_connid, dn.bv_val, 0 );
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#else
Debug( LDAP_DEBUG_ANY,
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"do_modify: invalid dn (%s)\n", dn.bv_val, 0, 0 );
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#endif
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send_ldap_result( conn, op, rc = LDAP_INVALID_DN_SYNTAX, NULL,
"invalid DN", NULL, NULL );
goto cleanup;
}
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if( ndn.bv_len == 0 ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"do_modify: attempt to modify root DSE.\n",0, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ANY, "do_modify: root dse!\n", 0, 0, 0 );
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#endif
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send_ldap_result( conn, op, rc = LDAP_UNWILLING_TO_PERFORM,
NULL, "modify upon the root DSE not supported", NULL, NULL );
goto cleanup;
} else if ( bvmatch( &ndn, &global_schemandn ) ) {
#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"do_modify: attempt to modify subschema subentry.\n" , 0, 0, 0 );
#else
Debug( LDAP_DEBUG_ANY, "do_modify: subschema subentry!\n", 0, 0, 0 );
#endif
send_ldap_result( conn, op, rc = LDAP_UNWILLING_TO_PERFORM,
NULL, "modification of subschema subentry not supported",
NULL, NULL );
goto cleanup;
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}
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#ifdef LDAP_DEBUG
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, DETAIL1, "do_modify: modifications:\n", 0, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ARGS, "modifications:\n", 0, 0, 0 );
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#endif
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for ( tmp = modlist; tmp != NULL; tmp = tmp->sml_next ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, DETAIL1, "\t%s: %s\n",
tmp->sml_op == LDAP_MOD_ADD ?
"add" : (tmp->sml_op == LDAP_MOD_DELETE ?
"delete" : "replace"), tmp->sml_type.bv_val, 0 );
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if ( tmp->sml_bvalues == NULL ) {
LDAP_LOG( OPERATION, DETAIL1, "\t\tno values", 0, 0, 0 );
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} else if ( tmp->sml_bvalues[0].bv_val == NULL ) {
LDAP_LOG( OPERATION, DETAIL1, "\t\tzero values", 0, 0, 0 );
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} else if ( tmp->sml_bvalues[1].bv_val == NULL ) {
LDAP_LOG( OPERATION, DETAIL1, "\t\tone value", 0, 0, 0 );
} else {
LDAP_LOG( OPERATION, DETAIL1, "\t\tmultiple values", 0, 0, 0 );
}
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#else
Debug( LDAP_DEBUG_ARGS, "\t%s: %s\n",
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tmp->sml_op == LDAP_MOD_ADD
? "add" : (tmp->sml_op == LDAP_MOD_DELETE
? "delete" : "replace"), tmp->sml_type.bv_val, 0 );
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if ( tmp->sml_bvalues == NULL ) {
Debug( LDAP_DEBUG_ARGS, "%s\n",
"\t\tno values", NULL, NULL );
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} else if ( tmp->sml_bvalues[0].bv_val == NULL ) {
Debug( LDAP_DEBUG_ARGS, "%s\n",
"\t\tzero values", NULL, NULL );
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} else if ( tmp->sml_bvalues[1].bv_val == NULL ) {
Debug( LDAP_DEBUG_ARGS, "%s, length %ld\n",
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"\t\tone value", (long) tmp->sml_bvalues[0].bv_len, NULL );
} else {
Debug( LDAP_DEBUG_ARGS, "%s\n",
"\t\tmultiple values", NULL, NULL );
}
#endif
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}
#endif
Statslog( LDAP_DEBUG_STATS, "conn=%lu op=%lu MOD dn=\"%s\"\n",
op->o_connid, op->o_opid, dn.bv_val, 0, 0 );
manageDSAit = get_manageDSAit( op );
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/*
* We could be serving multiple database backends. Select the
* appropriate one, or send a referral to our "referral server"
* if we don't hold it.
*/
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if ( (be = select_backend( &ndn, manageDSAit, 0 )) == NULL ) {
BerVarray ref = referral_rewrite( default_referral,
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NULL, &pdn, LDAP_SCOPE_DEFAULT );
send_ldap_result( conn, op, rc = LDAP_REFERRAL,
NULL, NULL, ref ? ref : default_referral, NULL );
ber_bvarray_free( ref );
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goto cleanup;
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}
/* check restrictions */
rc = backend_check_restrictions( be, conn, op, NULL, &text ) ;
if( rc != LDAP_SUCCESS ) {
send_ldap_result( conn, op, rc,
NULL, text, NULL, NULL );
goto cleanup;
}
/* check for referrals */
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rc = backend_check_referrals( be, conn, op, &pdn, &ndn );
if ( rc != LDAP_SUCCESS ) {
goto cleanup;
}
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/* deref suffix alias if appropriate */
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suffix_alias( be, &ndn );
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#if defined( LDAP_SLAPI )
slapi_pblock_set( pb, SLAPI_BACKEND, (void *)be );
slapi_pblock_set( pb, SLAPI_CONNECTION, (void *)conn );
slapi_pblock_set( pb, SLAPI_OPERATION, (void *)op );
slapi_pblock_set( pb, SLAPI_BIND_TARGET, (void *)dn.bv_val );
slapi_pblock_set( pb, SLAPI_REQCONTROLS, (void *)op->o_ctrls );
slapi_pblock_set( pb, SLAPI_MANAGEDSAIT, (void *)(1) );
rc = doPluginFNs( be, SLAPI_PLUGIN_PRE_MODIFY_FN, pb );
if ( rc != 0 && rc != LDAP_OTHER ) {
/*
* either there is no preOp (modify) plugins
* or a plugin failed. Just log it
*
* FIXME: is this correct?
*/
#ifdef NEW_LOGGING
LDAP_LOG(( "operation", LDAP_LEVEL_INFO, "do_modify: modify preOps failed\n"));
#else
Debug (LDAP_DEBUG_TRACE, " modify preOps failed.\n", 0, 0, 0);
#endif
}
#endif /* defined( LDAP_SLAPI ) */
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/*
* do the modify if 1 && (2 || 3)
* 1) there is a modify function implemented in this backend;
* 2) this backend is master for what it holds;
* 3) it's a replica and the dn supplied is the update_ndn.
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*/
if ( be->be_modify ) {
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/* do the update here */
int repl_user = be_isupdate( be, &op->o_ndn );
#ifndef SLAPD_MULTIMASTER
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/* Multimaster slapd does not have to check for replicator dn
* because it accepts each modify request
*/
if ( !be->be_update_ndn.bv_len || repl_user )
#endif
{
int update = be->be_update_ndn.bv_len;
const char *text;
char textbuf[SLAP_TEXT_BUFLEN];
size_t textlen = sizeof textbuf;
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rc = slap_mods_check( modlist, update, &text,
textbuf, textlen );
if( rc != LDAP_SUCCESS ) {
send_ldap_result( conn, op, rc,
NULL, text, NULL, NULL );
goto cleanup;
}
if ( !repl_user ) {
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for( modtail = &modlist;
*modtail != NULL;
modtail = &(*modtail)->sml_next )
{
/* empty */
}
rc = slap_mods_opattrs( be, op, modlist, modtail, &text,
textbuf, textlen );
if( rc != LDAP_SUCCESS ) {
send_ldap_result( conn, op, rc,
NULL, text,
NULL, NULL );
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goto cleanup;
}
}
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if ( (*be->be_modify)( be, conn, op, &pdn, &ndn, modlist ) == 0
#ifdef SLAPD_MULTIMASTER
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&& !repl_user
#endif
) {
/* but we log only the ones not from a replicator user */
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replog( be, op, &pdn, &ndn, modlist );
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}
#ifndef SLAPD_MULTIMASTER
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/* send a referral */
} else {
BerVarray defref = be->be_update_refs
? be->be_update_refs : default_referral;
BerVarray ref = referral_rewrite( defref,
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NULL, &pdn, LDAP_SCOPE_DEFAULT );
send_ldap_result( conn, op, rc = LDAP_REFERRAL, NULL, NULL,
ref ? ref : defref, NULL );
ber_bvarray_free( ref );
#endif
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}
} else {
send_ldap_result( conn, op, rc = LDAP_UNWILLING_TO_PERFORM,
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NULL, "operation not supported within namingContext",
NULL, NULL );
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}
#if defined( LDAP_SLAPI )
rc = doPluginFNs( be, SLAPI_PLUGIN_POST_MODIFY_FN, pb );
if ( rc != 0 && rc != LDAP_OTHER ) {
/*
* either there is no postOp (modify) plugins
* or a plugin failed. Just log it
*
* FIXME: is this correct?
*/
#ifdef NEW_LOGGING
LDAP_LOG(( "operation", LDAP_LEVEL_INFO, "do_modify: modify postOps failed\n"));
#else
Debug (LDAP_DEBUG_TRACE, " modify postOps failed.\n", 0, 0, 0);
#endif
}
#endif /* defined( LDAP_SLAPI ) */
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cleanup:
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free( pdn.bv_val );
free( ndn.bv_val );
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if ( modlist != NULL )
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slap_mods_free( modlist );
return rc;
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}
/*
* Do basic attribute type checking and syntax validation.
*/
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int slap_mods_check(
Modifications *ml,
int update,
const char **text,
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char *textbuf,
size_t textlen )
{
int rc;
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for( ; ml != NULL; ml = ml->sml_next ) {
AttributeDescription *ad = NULL;
/* convert to attribute description */
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rc = slap_bv2ad( &ml->sml_type, &ml->sml_desc, text );
if( rc != LDAP_SUCCESS ) {
snprintf( textbuf, textlen, "%s: %s",
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ml->sml_type.bv_val, *text );
*text = textbuf;
return rc;
}
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ad = ml->sml_desc;
if( slap_syntax_is_binary( ad->ad_type->sat_syntax )
&& !slap_ad_is_binary( ad ))
{
/* attribute requires binary transfer */
snprintf( textbuf, textlen,
"%s: requires ;binary transfer",
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ml->sml_type.bv_val );
*text = textbuf;
return LDAP_UNDEFINED_TYPE;
}
if( !slap_syntax_is_binary( ad->ad_type->sat_syntax )
&& slap_ad_is_binary( ad ))
{
/* attribute requires binary transfer */
snprintf( textbuf, textlen,
"%s: disallows ;binary transfer",
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ml->sml_type.bv_val );
*text = textbuf;
return LDAP_UNDEFINED_TYPE;
}
if( slap_ad_is_tag_range( ad )) {
/* attribute requires binary transfer */
snprintf( textbuf, textlen,
"%s: inappropriate use of tag range option",
ml->sml_type.bv_val );
*text = textbuf;
return LDAP_UNDEFINED_TYPE;
}
if (!update && is_at_no_user_mod( ad->ad_type )) {
/* user modification disallowed */
snprintf( textbuf, textlen,
"%s: no user modification allowed",
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ml->sml_type.bv_val );
*text = textbuf;
return LDAP_CONSTRAINT_VIOLATION;
}
if ( is_at_obsolete( ad->ad_type ) &&
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( ml->sml_op == LDAP_MOD_ADD || ml->sml_bvalues != NULL ) )
{
/*
* attribute is obsolete,
* only allow replace/delete with no values
*/
snprintf( textbuf, textlen,
"%s: attribute is obsolete",
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ml->sml_type.bv_val );
*text = textbuf;
return LDAP_CONSTRAINT_VIOLATION;
}
/*
* check values
*/
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if( ml->sml_bvalues != NULL ) {
ber_len_t nvals;
slap_syntax_validate_func *validate =
ad->ad_type->sat_syntax->ssyn_validate;
slap_syntax_transform_func *pretty =
ad->ad_type->sat_syntax->ssyn_pretty;
if( !pretty && !validate ) {
*text = "no validator for syntax";
snprintf( textbuf, textlen,
"%s: no validator for syntax %s",
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ml->sml_type.bv_val,
ad->ad_type->sat_syntax->ssyn_oid );
*text = textbuf;
return LDAP_INVALID_SYNTAX;
}
/*
* check that each value is valid per syntax
* and pretty if appropriate
*/
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for( nvals = 0; ml->sml_bvalues[nvals].bv_val; nvals++ ) {
struct berval pval;
if( pretty ) {
rc = pretty( ad->ad_type->sat_syntax,
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&ml->sml_bvalues[nvals], &pval );
} else {
rc = validate( ad->ad_type->sat_syntax,
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&ml->sml_bvalues[nvals] );
}
if( rc != 0 ) {
snprintf( textbuf, textlen,
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"%s: value #%ld invalid per syntax",
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ml->sml_type.bv_val, (long) nvals );
*text = textbuf;
return LDAP_INVALID_SYNTAX;
}
if( pretty ) {
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ber_memfree( ml->sml_bvalues[nvals].bv_val );
ml->sml_bvalues[nvals] = pval;
}
}
/*
* a rough single value check... an additional check is needed
* to catch add of single value to existing single valued attribute
*/
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if( ( ml->sml_op == LDAP_MOD_ADD || ml->sml_op == LDAP_MOD_REPLACE )
&& nvals > 1 && is_at_single_value( ad->ad_type ))
{
snprintf( textbuf, textlen,
"%s: multiple value provided",
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ml->sml_type.bv_val );
*text = textbuf;
return LDAP_CONSTRAINT_VIOLATION;
}
}
}
return LDAP_SUCCESS;
}
int slap_mods_opattrs(
Backend *be,
Operation *op,
Modifications *mods,
Modifications **modtail,
const char **text,
char *textbuf, size_t textlen )
{
struct berval name, timestamp, csn;
char timebuf[ LDAP_LUTIL_GENTIME_BUFSIZE ];
char csnbuf[ LDAP_LUTIL_CSNSTR_BUFSIZE ];
Modifications *mod;
int mop = op->o_tag == LDAP_REQ_ADD
? LDAP_MOD_ADD : LDAP_MOD_REPLACE;
assert( modtail != NULL );
assert( *modtail == NULL );
if( SLAP_LASTMOD(be) ) {
struct tm *ltm;
time_t now = slap_get_time();
ldap_pvt_thread_mutex_lock( &gmtime_mutex );
ltm = gmtime( &now );
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lutil_gentime( timebuf, sizeof(timebuf), ltm );
csn.bv_len = lutil_csnstr( csnbuf, sizeof( csnbuf ), 0, 0 );
ldap_pvt_thread_mutex_unlock( &gmtime_mutex );
csn.bv_val = csnbuf;
timestamp.bv_val = timebuf;
timestamp.bv_len = strlen(timebuf);
if( op->o_dn.bv_len == 0 ) {
name.bv_val = SLAPD_ANONYMOUS;
name.bv_len = sizeof(SLAPD_ANONYMOUS)-1;
} else {
name = op->o_dn;
}
}
if( op->o_tag == LDAP_REQ_ADD ) {
struct berval tmpval;
if( global_schemacheck ) {
int rc = mods_structural_class( mods, &tmpval,
text, textbuf, textlen );
if( rc != LDAP_SUCCESS ) {
return rc;
}
mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_structuralObjectClass;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
ber_dupbv( &mod->sml_bvalues[0], &tmpval );
mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
}
if( SLAP_LASTMOD(be) ) {
char uuidbuf[ LDAP_LUTIL_UUIDSTR_BUFSIZE ];
tmpval.bv_len = lutil_uuidstr( uuidbuf, sizeof( uuidbuf ) );
tmpval.bv_val = uuidbuf;
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mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
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mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_entryUUID;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
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ber_dupbv( &mod->sml_bvalues[0], &tmpval );
mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_creatorsName;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
ber_dupbv( &mod->sml_bvalues[0], &name );
mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_createTimestamp;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
ber_dupbv( &mod->sml_bvalues[0], &timestamp );
mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
}
}
if( SLAP_LASTMOD(be) ) {
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mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
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mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_entryCSN;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
ber_dupbv( &mod->sml_bvalues[0], &csn );
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mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
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mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
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mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_modifiersName;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
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ber_dupbv( &mod->sml_bvalues[0], &name );
mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
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mod = (Modifications *) ch_malloc( sizeof( Modifications ) );
mod->sml_op = mop;
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mod->sml_type.bv_val = NULL;
mod->sml_desc = slap_schema.si_ad_modifyTimestamp;
mod->sml_bvalues = (BerVarray) ch_malloc( 2 * sizeof( struct berval ) );
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ber_dupbv( &mod->sml_bvalues[0], &timestamp );
mod->sml_bvalues[1].bv_val = NULL;
assert( mod->sml_bvalues[0].bv_val );
*modtail = mod;
modtail = &mod->sml_next;
}
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*modtail = NULL;
return LDAP_SUCCESS;
}