mirror of
https://github.com/samba-team/samba.git
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c6881d1e65
be able to send a message to the "ldap_server" task without having to know its task ID. (This used to be commit 8f69867867857e0c9a9246c2dec9612ccc234724)
485 lines
12 KiB
C
485 lines
12 KiB
C
/*
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Unix SMB/CIFS implementation.
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LDAP server
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Copyright (C) Andrew Tridgell 2005
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Copyright (C) Volker Lendecke 2004
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Copyright (C) Stefan Metzmacher 2004
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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#include "lib/events/events.h"
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#include "auth/auth.h"
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#include "dlinklist.h"
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#include "asn_1.h"
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#include "ldap_server/ldap_server.h"
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#include "smbd/service_task.h"
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#include "smbd/service_stream.h"
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#include "lib/socket/socket.h"
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#include "lib/tls/tls.h"
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#include "lib/messaging/irpc.h"
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/*
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close the socket and shutdown a server_context
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*/
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static void ldapsrv_terminate_connection(struct ldapsrv_connection *conn,
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const char *reason)
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{
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talloc_free(conn->tls);
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conn->tls = NULL;
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stream_terminate_connection(conn->connection, reason);
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}
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/*
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process a decoded ldap message
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*/
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static void ldapsrv_process_message(struct ldapsrv_connection *conn,
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struct ldap_message *msg)
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{
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struct ldapsrv_call *call;
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NTSTATUS status;
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DATA_BLOB blob;
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struct ldapsrv_send *q;
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BOOL enable_wrap = conn->enable_wrap;
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call = talloc(conn, struct ldapsrv_call);
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if (!call) {
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ldapsrv_terminate_connection(conn, "no memory");
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return;
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}
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call->request = talloc_steal(call, msg);
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call->conn = conn;
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call->replies = NULL;
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/* make the call */
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status = ldapsrv_do_call(call);
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if (!NT_STATUS_IS_OK(status)) {
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goto failed;
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}
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blob = data_blob(NULL, 0);
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if (call->replies == NULL) {
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talloc_free(call);
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return;
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}
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/* build all the replies into a single blob */
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while (call->replies) {
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DATA_BLOB b;
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msg = call->replies->msg;
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if (!ldap_encode(msg, &b)) {
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DEBUG(0,("Failed to encode ldap reply of type %d\n", msg->type));
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goto failed;
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}
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status = data_blob_append(call, &blob, b.data, b.length);
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if (!NT_STATUS_IS_OK(status)) goto failed;
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DLIST_REMOVE(call->replies, call->replies);
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}
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/* possibly encrypt/sign the reply */
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if (enable_wrap) {
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DATA_BLOB wrapped;
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status = gensec_wrap(conn->gensec, call, &blob, &wrapped);
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if (!NT_STATUS_IS_OK(status)) {
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goto failed;
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}
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data_blob_free(&blob);
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blob = data_blob_talloc(call, NULL, wrapped.length + 4);
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if (blob.data == NULL) {
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goto failed;
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}
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RSIVAL(blob.data, 0, wrapped.length);
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memcpy(blob.data+4, wrapped.data, wrapped.length);
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data_blob_free(&wrapped);
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}
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q = talloc(conn, struct ldapsrv_send);
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if (q == NULL) goto failed;
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q->data = blob;
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talloc_steal(q, blob.data);
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if (conn->send_queue == NULL) {
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EVENT_FD_WRITEABLE(conn->connection->event.fde);
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}
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DLIST_ADD_END(conn->send_queue, q, struct ldapsrv_send *);
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talloc_free(call);
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return;
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failed:
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talloc_free(call);
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}
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/*
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try and decode the partial input buffer
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*/
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static void ldapsrv_try_decode_plain(struct ldapsrv_connection *conn)
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{
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struct asn1_data asn1;
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if (!asn1_load(&asn1, conn->partial)) {
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ldapsrv_terminate_connection(conn, "out of memory");
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return;
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}
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/* try and decode - this will fail if we don't have a full packet yet */
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while (asn1.ofs < asn1.length) {
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struct ldap_message *msg = talloc(conn, struct ldap_message);
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off_t saved_ofs = asn1.ofs;
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if (msg == NULL) {
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ldapsrv_terminate_connection(conn, "out of memory");
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return;
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}
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if (ldap_decode(&asn1, msg)) {
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ldapsrv_process_message(conn, msg);
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} else {
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if (asn1.ofs < asn1.length) {
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ldapsrv_terminate_connection(conn, "ldap_decode failed");
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return;
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}
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asn1.ofs = saved_ofs;
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talloc_free(msg);
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break;
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}
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}
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/* keep any remaining data in conn->partial */
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data_blob_free(&conn->partial);
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if (asn1.ofs != asn1.length) {
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conn->partial = data_blob_talloc(conn,
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asn1.data + asn1.ofs,
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asn1.length - asn1.ofs);
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}
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asn1_free(&asn1);
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}
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/*
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try and decode/process wrapped data
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*/
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static void ldapsrv_try_decode_wrapped(struct ldapsrv_connection *conn)
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{
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uint32_t len;
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/* keep decoding while we have a full wrapped packet */
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while (conn->partial.length >= 4 &&
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(len=RIVAL(conn->partial.data, 0)) <= conn->partial.length-4) {
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DATA_BLOB wrapped, unwrapped;
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struct asn1_data asn1;
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struct ldap_message *msg = talloc(conn, struct ldap_message);
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NTSTATUS status;
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if (msg == NULL) {
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ldapsrv_terminate_connection(conn, "out of memory");
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return;
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}
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wrapped.data = conn->partial.data+4;
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wrapped.length = len;
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status = gensec_unwrap(conn->gensec, msg, &wrapped, &unwrapped);
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if (!NT_STATUS_IS_OK(status)) {
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ldapsrv_terminate_connection(conn, "gensec unwrap failed");
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return;
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}
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if (!asn1_load(&asn1, unwrapped)) {
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ldapsrv_terminate_connection(conn, "out of memory");
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return;
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}
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while (ldap_decode(&asn1, msg)) {
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ldapsrv_process_message(conn, msg);
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msg = talloc(conn, struct ldap_message);
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}
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if (asn1.ofs < asn1.length) {
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ldapsrv_terminate_connection(conn, "ldap_decode failed");
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return;
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}
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talloc_free(msg);
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asn1_free(&asn1);
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if (conn->partial.length == len + 4) {
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data_blob_free(&conn->partial);
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} else {
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memmove(conn->partial.data, conn->partial.data+len+4,
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conn->partial.length - (len+4));
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conn->partial.length -= len + 4;
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}
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}
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}
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/*
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called when a LDAP socket becomes readable
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*/
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static void ldapsrv_recv(struct stream_connection *c, uint16_t flags)
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{
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struct ldapsrv_connection *conn =
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talloc_get_type(c->private, struct ldapsrv_connection);
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NTSTATUS status;
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size_t npending, nread;
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if (conn->processing) {
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EVENT_FD_NOT_READABLE(c->event.fde);
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return;
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}
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/* work out how much data is pending */
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status = tls_socket_pending(conn->tls, &npending);
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if (!NT_STATUS_IS_OK(status)) {
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ldapsrv_terminate_connection(conn, "socket_pening() failed");
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return;
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}
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if (npending == 0) {
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ldapsrv_terminate_connection(conn, "EOF from client");
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return;
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}
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conn->partial.data = talloc_realloc_size(conn, conn->partial.data,
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conn->partial.length + npending);
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if (conn->partial.data == NULL) {
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ldapsrv_terminate_connection(conn, "out of memory");
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return;
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}
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/* receive the data */
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status = tls_socket_recv(conn->tls, conn->partial.data + conn->partial.length,
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npending, &nread);
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if (NT_STATUS_IS_ERR(status)) {
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ldapsrv_terminate_connection(conn, "socket_recv() failed");
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return;
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}
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if (!NT_STATUS_IS_OK(status)) {
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return;
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}
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if (nread == 0) {
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ldapsrv_terminate_connection(conn, "EOF from client");
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return;
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}
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conn->partial.length += nread;
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conn->processing = True;
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/* see if we can decode what we have */
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if (conn->enable_wrap) {
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ldapsrv_try_decode_wrapped(conn);
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} else {
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ldapsrv_try_decode_plain(conn);
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}
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conn->processing = False;
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EVENT_FD_READABLE(c->event.fde);
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}
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/*
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called when a LDAP socket becomes writable
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*/
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static void ldapsrv_send(struct stream_connection *c, uint16_t flags)
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{
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struct ldapsrv_connection *conn =
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talloc_get_type(c->private, struct ldapsrv_connection);
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while (conn->send_queue) {
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struct ldapsrv_send *q = conn->send_queue;
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size_t nsent;
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NTSTATUS status;
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status = tls_socket_send(conn->tls, &q->data, &nsent);
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if (NT_STATUS_EQUAL(status, STATUS_MORE_ENTRIES)) {
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break;
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}
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if (!NT_STATUS_IS_OK(status)) {
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ldapsrv_terminate_connection(conn, "socket_send error");
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return;
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}
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q->data.data += nsent;
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q->data.length -= nsent;
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if (q->data.length == 0) {
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DLIST_REMOVE(conn->send_queue, q);
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}
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}
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if (conn->send_queue == NULL) {
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EVENT_FD_NOT_WRITEABLE(c->event.fde);
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}
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}
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/*
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initialise a server_context from a open socket and register a event handler
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for reading from that socket
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*/
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static void ldapsrv_accept(struct stream_connection *c)
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{
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struct ldapsrv_service *ldapsrv_service =
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talloc_get_type(c->private, struct ldapsrv_service);
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struct ldapsrv_connection *conn;
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int port;
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conn = talloc_zero(c, struct ldapsrv_connection);
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if (conn == NULL) goto failed;
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conn->enable_wrap = False;
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conn->partial = data_blob(NULL, 0);
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conn->send_queue = NULL;
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conn->connection = c;
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conn->service = talloc_get_type(c->private, struct ldapsrv_service);
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conn->processing = False;
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c->private = conn;
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port = socket_get_my_port(c->socket);
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/* note that '0' is a ASN1_SEQUENCE(0), which is the first byte on
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any ldap connection */
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conn->tls = tls_init_server(ldapsrv_service->tls_params, c->socket,
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c->event.fde, NULL, port != 389);
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if (conn->tls == NULL) goto failed;
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irpc_add_name(c->msg_ctx, "ldap_server");
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return;
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failed:
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talloc_free(c);
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}
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static const struct stream_server_ops ldap_stream_ops = {
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.name = "ldap",
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.accept_connection = ldapsrv_accept,
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.recv_handler = ldapsrv_recv,
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.send_handler = ldapsrv_send,
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};
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/*
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add a socket address to the list of events, one event per port
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*/
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static NTSTATUS add_socket(struct event_context *event_context,
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const struct model_ops *model_ops,
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const char *address, struct ldapsrv_service *ldap_service)
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{
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uint16_t port = 389;
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NTSTATUS status;
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status = stream_setup_socket(event_context, model_ops, &ldap_stream_ops,
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"ipv4", address, &port, ldap_service);
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if (!NT_STATUS_IS_OK(status)) {
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DEBUG(0,("ldapsrv failed to bind to %s:%u - %s\n",
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address, port, nt_errstr(status)));
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}
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if (tls_support(ldap_service->tls_params)) {
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/* add ldaps server */
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port = 636;
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status = stream_setup_socket(event_context, model_ops, &ldap_stream_ops,
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"ipv4", address, &port, ldap_service);
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if (!NT_STATUS_IS_OK(status)) {
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DEBUG(0,("ldapsrv failed to bind to %s:%u - %s\n",
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address, port, nt_errstr(status)));
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}
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}
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return status;
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}
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/*
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open the ldap server sockets
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*/
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static void ldapsrv_task_init(struct task_server *task)
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{
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struct ldapsrv_service *ldap_service;
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struct ldapsrv_partition *rootDSE_part;
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struct ldapsrv_partition *part;
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NTSTATUS status;
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ldap_service = talloc_zero(task, struct ldapsrv_service);
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if (ldap_service == NULL) goto failed;
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ldap_service->tls_params = tls_initialise(ldap_service);
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if (ldap_service->tls_params == NULL) goto failed;
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rootDSE_part = talloc(ldap_service, struct ldapsrv_partition);
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if (rootDSE_part == NULL) goto failed;
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rootDSE_part->base_dn = ""; /* RootDSE */
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rootDSE_part->ops = ldapsrv_get_rootdse_partition_ops();
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ldap_service->rootDSE = rootDSE_part;
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DLIST_ADD_END(ldap_service->partitions, rootDSE_part, struct ldapsrv_partition *);
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part = talloc(ldap_service, struct ldapsrv_partition);
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if (part == NULL) goto failed;
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part->base_dn = "*"; /* default partition */
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if (lp_parm_bool(-1, "ldapsrv", "hacked", False)) {
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part->ops = ldapsrv_get_hldb_partition_ops();
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} else {
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part->ops = ldapsrv_get_sldb_partition_ops();
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}
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ldap_service->default_partition = part;
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DLIST_ADD_END(ldap_service->partitions, part, struct ldapsrv_partition *);
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if (lp_interfaces() && lp_bind_interfaces_only()) {
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int num_interfaces = iface_count();
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int i;
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/* We have been given an interfaces line, and been
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told to only bind to those interfaces. Create a
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socket per interface and bind to only these.
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*/
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for(i = 0; i < num_interfaces; i++) {
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const char *address = iface_n_ip(i);
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status = add_socket(task->event_ctx, task->model_ops, address, ldap_service);
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if (!NT_STATUS_IS_OK(status)) goto failed;
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}
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} else {
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status = add_socket(task->event_ctx, task->model_ops, lp_socket_address(), ldap_service);
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if (!NT_STATUS_IS_OK(status)) goto failed;
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}
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return;
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failed:
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task_server_terminate(task, "Failed to startup ldap server task");
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}
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/*
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called on startup of the web server service It's job is to start
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listening on all configured sockets
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*/
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static NTSTATUS ldapsrv_init(struct event_context *event_context,
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const struct model_ops *model_ops)
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{
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return task_server_startup(event_context, model_ops, ldapsrv_task_init);
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}
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NTSTATUS server_service_ldap_init(void)
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{
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return register_server_service("ldap", ldapsrv_init);
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}
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