s4:rpc_server: only pass dcesrv_auth to auth_state.session_key_fn()
[samba.git] / source4 / kdc / kdc-heimdal.c
1 /*
2    Unix SMB/CIFS implementation.
3
4    KDC Server startup
5
6    Copyright (C) Andrew Bartlett <abartlet@samba.org> 2005-2008
7    Copyright (C) Andrew Tridgell        2005
8    Copyright (C) Stefan Metzmacher      2005
9
10    This program is free software; you can redistribute it and/or modify
11    it under the terms of the GNU General Public License as published by
12    the Free Software Foundation; either version 3 of the License, or
13    (at your option) any later version.
14
15    This program is distributed in the hope that it will be useful,
16    but WITHOUT ANY WARRANTY; without even the implied warranty of
17    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18    GNU General Public License for more details.
19
20    You should have received a copy of the GNU General Public License
21    along with this program.  If not, see <http://www.gnu.org/licenses/>.
22 */
23
24 #include "includes.h"
25 #include "smbd/process_model.h"
26 #include "lib/tsocket/tsocket.h"
27 #include "lib/messaging/irpc.h"
28 #include "librpc/gen_ndr/ndr_irpc.h"
29 #include "librpc/gen_ndr/ndr_krb5pac.h"
30 #include "lib/socket/netif.h"
31 #include "param/param.h"
32 #include "kdc/kdc-server.h"
33 #include "kdc/kdc-proxy.h"
34 #include "kdc/kdc-glue.h"
35 #include "kdc/pac-glue.h"
36 #include "kdc/kpasswd-service.h"
37 #include "dsdb/samdb/samdb.h"
38 #include "auth/session.h"
39 #include "libds/common/roles.h"
40 #include <kdc.h>
41 #include <hdb.h>
42
43 NTSTATUS server_service_kdc_init(TALLOC_CTX *);
44
45 extern struct krb5plugin_windc_ftable windc_plugin_table;
46
47 /**
48    Wrapper for krb5_kdc_process_krb5_request, converting to/from Samba
49    calling conventions
50 */
51
52 static kdc_code kdc_process(struct kdc_server *kdc,
53                             TALLOC_CTX *mem_ctx,
54                             DATA_BLOB *input,
55                             DATA_BLOB *reply,
56                             struct tsocket_address *peer_addr,
57                             struct tsocket_address *my_addr,
58                             int datagram_reply)
59 {
60         int ret;
61         char *pa;
62         struct sockaddr_storage ss;
63         krb5_data k5_reply;
64         krb5_kdc_configuration *kdc_config =
65                 (krb5_kdc_configuration *)kdc->private_data;
66
67         krb5_data_zero(&k5_reply);
68
69         krb5_kdc_update_time(NULL);
70
71         ret = tsocket_address_bsd_sockaddr(peer_addr, (struct sockaddr *) &ss,
72                                 sizeof(struct sockaddr_storage));
73         if (ret < 0) {
74                 return KDC_ERROR;
75         }
76         pa = tsocket_address_string(peer_addr, mem_ctx);
77         if (pa == NULL) {
78                 return KDC_ERROR;
79         }
80
81         DBG_DEBUG("Received KDC packet of length %lu from %s\n",
82                   (long)input->length - 4, pa);
83
84         ret = krb5_kdc_process_krb5_request(kdc->smb_krb5_context->krb5_context,
85                                             kdc_config,
86                                             input->data, input->length,
87                                             &k5_reply,
88                                             pa,
89                                             (struct sockaddr *) &ss,
90                                             datagram_reply);
91         if (ret == -1) {
92                 *reply = data_blob(NULL, 0);
93                 return KDC_ERROR;
94         }
95
96         if (ret == HDB_ERR_NOT_FOUND_HERE) {
97                 *reply = data_blob(NULL, 0);
98                 return KDC_PROXY_REQUEST;
99         }
100
101         if (k5_reply.length) {
102                 *reply = data_blob_talloc(mem_ctx, k5_reply.data, k5_reply.length);
103                 krb5_data_free(&k5_reply);
104         } else {
105                 *reply = data_blob(NULL, 0);
106         }
107         return KDC_OK;
108 }
109
110 /*
111   setup our listening sockets on the configured network interfaces
112 */
113 static NTSTATUS kdc_startup_interfaces(struct kdc_server *kdc,
114                                        struct loadparm_context *lp_ctx,
115                                        struct interface *ifaces,
116                                        const struct model_ops *model_ops)
117 {
118         int num_interfaces;
119         TALLOC_CTX *tmp_ctx = talloc_new(kdc);
120         NTSTATUS status;
121         int i;
122         uint16_t kdc_port = lpcfg_krb5_port(lp_ctx);
123         uint16_t kpasswd_port = lpcfg_kpasswd_port(lp_ctx);
124         bool done_wildcard = false;
125
126         num_interfaces = iface_list_count(ifaces);
127
128         /* if we are allowing incoming packets from any address, then
129            we need to bind to the wildcard address */
130         if (!lpcfg_bind_interfaces_only(lp_ctx)) {
131                 int num_binds = 0;
132                 char **wcard = iface_list_wildcard(kdc);
133                 NT_STATUS_HAVE_NO_MEMORY(wcard);
134                 for (i=0; wcard[i]; i++) {
135                         if (kdc_port) {
136                                 status = kdc_add_socket(kdc, model_ops,
137                                                         "kdc", wcard[i], kdc_port,
138                                                         kdc_process, false);
139                                 if (NT_STATUS_IS_OK(status)) {
140                                         num_binds++;
141                                 }
142                         }
143
144                         if (kpasswd_port) {
145                                 status = kdc_add_socket(kdc, model_ops,
146                                                         "kpasswd", wcard[i], kpasswd_port,
147                                                         kpasswd_process, false);
148                                 if (NT_STATUS_IS_OK(status)) {
149                                         num_binds++;
150                                 }
151                         }
152                 }
153                 talloc_free(wcard);
154                 if (num_binds == 0) {
155                         return NT_STATUS_INVALID_PARAMETER_MIX;
156                 }
157                 done_wildcard = true;
158         }
159
160         for (i=0; i<num_interfaces; i++) {
161                 const char *address = talloc_strdup(tmp_ctx, iface_list_n_ip(ifaces, i));
162
163                 if (kdc_port) {
164                         status = kdc_add_socket(kdc, model_ops,
165                                                 "kdc", address, kdc_port,
166                                                 kdc_process, done_wildcard);
167                         NT_STATUS_NOT_OK_RETURN(status);
168                 }
169
170                 if (kpasswd_port) {
171                         status = kdc_add_socket(kdc, model_ops,
172                                                 "kpasswd", address, kpasswd_port,
173                                                 kpasswd_process, done_wildcard);
174                         NT_STATUS_NOT_OK_RETURN(status);
175                 }
176         }
177
178         talloc_free(tmp_ctx);
179
180         return NT_STATUS_OK;
181 }
182
183 static NTSTATUS kdc_check_generic_kerberos(struct irpc_message *msg,
184                                  struct kdc_check_generic_kerberos *r)
185 {
186         struct PAC_Validate pac_validate;
187         DATA_BLOB srv_sig;
188         struct PAC_SIGNATURE_DATA kdc_sig;
189         struct kdc_server *kdc = talloc_get_type(msg->private_data, struct kdc_server);
190         krb5_kdc_configuration *kdc_config =
191                 (krb5_kdc_configuration *)kdc->private_data;
192         enum ndr_err_code ndr_err;
193         int ret;
194         hdb_entry_ex ent;
195         krb5_principal principal;
196
197
198         /* There is no reply to this request */
199         r->out.generic_reply = data_blob(NULL, 0);
200
201         ndr_err = ndr_pull_struct_blob(&r->in.generic_request, msg, &pac_validate,
202                                        (ndr_pull_flags_fn_t)ndr_pull_PAC_Validate);
203         if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err)) {
204                 return NT_STATUS_INVALID_PARAMETER;
205         }
206
207         if (pac_validate.MessageType != NETLOGON_GENERIC_KRB5_PAC_VALIDATE) {
208                 /* We don't implement any other message types - such as certificate validation - yet */
209                 return NT_STATUS_INVALID_PARAMETER;
210         }
211
212         if (pac_validate.ChecksumAndSignature.length != (pac_validate.ChecksumLength + pac_validate.SignatureLength)
213             || pac_validate.ChecksumAndSignature.length < pac_validate.ChecksumLength
214             || pac_validate.ChecksumAndSignature.length < pac_validate.SignatureLength ) {
215                 return NT_STATUS_INVALID_PARAMETER;
216         }
217
218         srv_sig = data_blob_const(pac_validate.ChecksumAndSignature.data,
219                                   pac_validate.ChecksumLength);
220
221         ret = krb5_make_principal(kdc->smb_krb5_context->krb5_context, &principal,
222                                   lpcfg_realm(kdc->task->lp_ctx),
223                                   "krbtgt", lpcfg_realm(kdc->task->lp_ctx),
224                                   NULL);
225
226         if (ret != 0) {
227                 return NT_STATUS_NO_MEMORY;
228         }
229
230         ret = kdc_config->db[0]->hdb_fetch_kvno(kdc->smb_krb5_context->krb5_context,
231                                                  kdc_config->db[0],
232                                                  principal,
233                                                  HDB_F_GET_KRBTGT | HDB_F_DECRYPT,
234                                                  0,
235                                                  &ent);
236
237         if (ret != 0) {
238                 hdb_free_entry(kdc->smb_krb5_context->krb5_context, &ent);
239                 krb5_free_principal(kdc->smb_krb5_context->krb5_context, principal);
240
241                 return NT_STATUS_LOGON_FAILURE;
242         }
243
244         kdc_sig.type = pac_validate.SignatureType;
245         kdc_sig.signature = data_blob_const(&pac_validate.ChecksumAndSignature.data[pac_validate.ChecksumLength],
246                                             pac_validate.SignatureLength);
247
248         ret = kdc_check_pac(kdc->smb_krb5_context->krb5_context, srv_sig, &kdc_sig, &ent);
249
250         hdb_free_entry(kdc->smb_krb5_context->krb5_context, &ent);
251         krb5_free_principal(kdc->smb_krb5_context->krb5_context, principal);
252
253         if (ret != 0) {
254                 return NT_STATUS_LOGON_FAILURE;
255         }
256
257         return NT_STATUS_OK;
258 }
259
260
261 /*
262   startup the kdc task
263 */
264 static NTSTATUS kdc_task_init(struct task_server *task)
265 {
266         struct kdc_server *kdc;
267         NTSTATUS status;
268         struct interface *ifaces;
269
270         switch (lpcfg_server_role(task->lp_ctx)) {
271         case ROLE_STANDALONE:
272                 task_server_terminate(task, "kdc: no KDC required in standalone configuration", false);
273                 return NT_STATUS_INVALID_DOMAIN_ROLE;
274         case ROLE_DOMAIN_MEMBER:
275                 task_server_terminate(task, "kdc: no KDC required in member server configuration", false);
276                 return NT_STATUS_INVALID_DOMAIN_ROLE;
277         case ROLE_DOMAIN_PDC:
278         case ROLE_DOMAIN_BDC:
279                 task_server_terminate(
280                     task, "Cannot start KDC as a 'classic Samba' DC", false);
281                 return NT_STATUS_INVALID_DOMAIN_ROLE;
282         case ROLE_ACTIVE_DIRECTORY_DC:
283                 /* Yes, we want a KDC */
284                 break;
285         }
286
287         load_interface_list(task, task->lp_ctx, &ifaces);
288
289         if (iface_list_count(ifaces) == 0) {
290                 task_server_terminate(task, "kdc: no network interfaces configured", false);
291                 return NT_STATUS_UNSUCCESSFUL;
292         }
293
294         task_server_set_title(task, "task[kdc]");
295
296         kdc = talloc_zero(task, struct kdc_server);
297         if (kdc == NULL) {
298                 task_server_terminate(task, "kdc: out of memory", true);
299                 return NT_STATUS_NO_MEMORY;
300         }
301
302         kdc->task = task;
303         task->private_data = kdc;
304
305         /* start listening on the configured network interfaces */
306         status = kdc_startup_interfaces(kdc, task->lp_ctx, ifaces,
307                                         task->model_ops);
308         if (!NT_STATUS_IS_OK(status)) {
309                 task_server_terminate(task, "kdc failed to setup interfaces", true);
310                 return status;
311         }
312
313
314         return NT_STATUS_OK;
315 }
316
317 /*
318   initialise the kdc task after a fork
319 */
320 static void kdc_post_fork(struct task_server *task, struct process_details *pd)
321 {
322         struct kdc_server *kdc;
323         krb5_kdc_configuration *kdc_config = NULL;
324         NTSTATUS status;
325         krb5_error_code ret;
326         int ldb_ret;
327
328         if (task == NULL) {
329                 task_server_terminate(task, "kdc: Null task", true);
330                 return;
331         }
332         if (task->private_data == NULL) {
333                 task_server_terminate(task, "kdc: No kdc_server info", true);
334                 return;
335         }
336         kdc = talloc_get_type_abort(task->private_data, struct kdc_server);
337
338         /* get a samdb connection */
339         kdc->samdb = samdb_connect(kdc,
340                                    kdc->task->event_ctx,
341                                    kdc->task->lp_ctx,
342                                    system_session(kdc->task->lp_ctx),
343                                    NULL,
344                                    0);
345         if (!kdc->samdb) {
346                 DBG_WARNING("kdc_task_init: unable to connect to samdb\n");
347                 task_server_terminate(task, "kdc: krb5_init_context samdb connect failed", true);
348                 return;
349         }
350
351         ldb_ret = samdb_rodc(kdc->samdb, &kdc->am_rodc);
352         if (ldb_ret != LDB_SUCCESS) {
353                 DBG_WARNING("kdc_task_init: "
354                             "Cannot determine if we are an RODC: %s\n",
355                             ldb_errstring(kdc->samdb));
356                 task_server_terminate(task, "kdc: krb5_init_context samdb RODC connect failed", true);
357                 return;
358         }
359
360         kdc->proxy_timeout = lpcfg_parm_int(kdc->task->lp_ctx, NULL, "kdc", "proxy timeout", 5);
361
362         initialize_krb5_error_table();
363
364         ret = smb_krb5_init_context(kdc, task->lp_ctx, &kdc->smb_krb5_context);
365         if (ret) {
366                 DBG_WARNING("kdc_task_init: krb5_init_context failed (%s)\n",
367                             error_message(ret));
368                 task_server_terminate(task, "kdc: krb5_init_context failed", true);
369                 return;
370         }
371
372         krb5_add_et_list(kdc->smb_krb5_context->krb5_context, initialize_hdb_error_table_r);
373
374         ret = krb5_kdc_get_config(kdc->smb_krb5_context->krb5_context,
375                                   &kdc_config);
376         if(ret) {
377                 task_server_terminate(task, "kdc: failed to get KDC configuration", true);
378                 return;
379         }
380
381         kdc_config->logf = (krb5_log_facility *)kdc->smb_krb5_context->pvt_log_data;
382         kdc_config->db = talloc(kdc, struct HDB *);
383         if (!kdc_config->db) {
384                 task_server_terminate(task, "kdc: out of memory", true);
385                 return;
386         }
387         kdc_config->num_db = 1;
388
389         /*
390          * This restores the behavior before
391          * commit 255e3e18e00f717d99f3bc57c8a8895ff624f3c3
392          * s4:heimdal: import lorikeet-heimdal-201107150856
393          * (commit 48936803fae4a2fb362c79365d31f420c917b85b)
394          *
395          * as_use_strongest_session_key,preauth_use_strongest_session_key
396          * and tgs_use_strongest_session_key are input to the
397          * _kdc_find_etype() function. The old bahavior is in
398          * the use_strongest_session_key=FALSE code path.
399          * (The only remaining difference in _kdc_find_etype()
400          *  is the is_preauth parameter.)
401          *
402          * The old behavior in the _kdc_get_preferred_key()
403          * function is use_strongest_server_key=TRUE.
404          */
405         kdc_config->as_use_strongest_session_key = false;
406         kdc_config->preauth_use_strongest_session_key = false;
407         kdc_config->tgs_use_strongest_session_key = false;
408         kdc_config->use_strongest_server_key = true;
409
410         kdc_config->autodetect_referrals = false;
411
412         /* Register hdb-samba4 hooks for use as a keytab */
413
414         kdc->base_ctx = talloc_zero(kdc, struct samba_kdc_base_context);
415         if (!kdc->base_ctx) {
416                 task_server_terminate(task, "kdc: out of memory", true);
417                 return;
418         }
419
420         kdc->base_ctx->ev_ctx = task->event_ctx;
421         kdc->base_ctx->lp_ctx = task->lp_ctx;
422         kdc->base_ctx->msg_ctx = task->msg_ctx;
423
424         status = hdb_samba4_create_kdc(kdc->base_ctx,
425                                        kdc->smb_krb5_context->krb5_context,
426                                        &kdc_config->db[0]);
427         if (!NT_STATUS_IS_OK(status)) {
428                 task_server_terminate(task, "kdc: hdb_samba4_create_kdc (setup KDC database) failed", true);
429                 return;
430         }
431
432         ret = krb5_plugin_register(kdc->smb_krb5_context->krb5_context,
433                                    PLUGIN_TYPE_DATA, "hdb",
434                                    &hdb_samba4_interface);
435         if(ret) {
436                 task_server_terminate(task, "kdc: failed to register hdb plugin", true);
437                 return;
438         }
439
440         ret = krb5_kt_register(kdc->smb_krb5_context->krb5_context, &hdb_kt_ops);
441         if(ret) {
442                 task_server_terminate(task, "kdc: failed to register keytab plugin", true);
443                 return;
444         }
445
446         kdc->keytab_name = talloc_asprintf(kdc, "HDB:samba4&%p", kdc->base_ctx);
447         if (kdc->keytab_name == NULL) {
448                 task_server_terminate(task,
449                                       "kdc: Failed to set keytab name",
450                                       true);
451                 return;
452         }
453
454         /* Register WinDC hooks */
455         ret = krb5_plugin_register(kdc->smb_krb5_context->krb5_context,
456                                    PLUGIN_TYPE_DATA, "windc",
457                                    &windc_plugin_table);
458         if(ret) {
459                 task_server_terminate(task, "kdc: failed to register windc plugin", true);
460                 return;
461         }
462
463         ret = krb5_kdc_windc_init(kdc->smb_krb5_context->krb5_context);
464
465         if(ret) {
466                 task_server_terminate(task, "kdc: failed to init windc plugin", true);
467                 return;
468         }
469
470         ret = krb5_kdc_pkinit_config(kdc->smb_krb5_context->krb5_context, kdc_config);
471
472         if(ret) {
473                 task_server_terminate(task, "kdc: failed to init kdc pkinit subsystem", true);
474                 return;
475         }
476         kdc->private_data = kdc_config;
477
478         status = IRPC_REGISTER(task->msg_ctx, irpc, KDC_CHECK_GENERIC_KERBEROS,
479                                kdc_check_generic_kerberos, kdc);
480         if (!NT_STATUS_IS_OK(status)) {
481                 task_server_terminate(task, "kdc failed to setup monitoring", true);
482                 return;
483         }
484
485         irpc_add_name(task->msg_ctx, "kdc_server");
486 }
487
488
489 /* called at smbd startup - register ourselves as a server service */
490 NTSTATUS server_service_kdc_init(TALLOC_CTX *ctx)
491 {
492         static const struct service_details details = {
493                 .inhibit_fork_on_accept = true,
494                 .inhibit_pre_fork = false,
495                 .task_init = kdc_task_init,
496                 .post_fork = kdc_post_fork
497         };
498         return register_server_service(ctx, "kdc", &details);
499 }