1 /*
2    Unix SMB/CIFS implementation.
3 
4    Generic Authentication Interface
5 
6    Copyright (C) Andrew Tridgell 2003
7    Copyright (C) Andrew Bartlett <abartlet@samba.org> 2004-2006
8 
9    This program is free software; you can redistribute it and/or modify
10    it under the terms of the GNU General Public License as published by
11    the Free Software Foundation; either version 3 of the License, or
12    (at your option) any later version.
13 
14    This program is distributed in the hope that it will be useful,
15    but WITHOUT ANY WARRANTY; without even the implied warranty of
16    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17    GNU General Public License for more details.
18 
19    You should have received a copy of the GNU General Public License
20    along with this program.  If not, see <http://www.gnu.org/licenses/>.
21 */
22 
23 #include "includes.h"
24 #include "system/network.h"
25 #define TEVENT_DEPRECATED 1
26 #include <tevent.h>
27 #include "lib/tsocket/tsocket.h"
28 #include "lib/util/tevent_ntstatus.h"
29 #include "auth/gensec/gensec.h"
30 #include "auth/gensec/gensec_internal.h"
31 #include "librpc/gen_ndr/dcerpc.h"
32 #include "auth/common_auth.h"
33 
34 #undef DBGC_CLASS
35 #define DBGC_CLASS DBGC_AUTH
36 
gensec_may_reset_crypto(struct gensec_security * gensec_security,bool full_reset)37 _PRIVATE_ NTSTATUS gensec_may_reset_crypto(struct gensec_security *gensec_security,
38 					   bool full_reset)
39 {
40 	if (!gensec_security->ops->may_reset_crypto) {
41 		return NT_STATUS_OK;
42 	}
43 
44 	return gensec_security->ops->may_reset_crypto(gensec_security, full_reset);
45 }
46 
47 /*
48   wrappers for the gensec function pointers
49 */
gensec_unseal_packet(struct gensec_security * gensec_security,uint8_t * data,size_t length,const uint8_t * whole_pdu,size_t pdu_length,const DATA_BLOB * sig)50 _PUBLIC_ NTSTATUS gensec_unseal_packet(struct gensec_security *gensec_security,
51 			      uint8_t *data, size_t length,
52 			      const uint8_t *whole_pdu, size_t pdu_length,
53 			      const DATA_BLOB *sig)
54 {
55 	if (!gensec_security->ops->unseal_packet) {
56 		return NT_STATUS_NOT_IMPLEMENTED;
57 	}
58 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
59 		return NT_STATUS_INVALID_PARAMETER;
60 	}
61 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SEAL)) {
62 		return NT_STATUS_INVALID_PARAMETER;
63 	}
64 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_DCE_STYLE)) {
65 		return NT_STATUS_INVALID_PARAMETER;
66 	}
67 
68 	return gensec_security->ops->unseal_packet(gensec_security,
69 						   data, length,
70 						   whole_pdu, pdu_length,
71 						   sig);
72 }
73 
gensec_check_packet(struct gensec_security * gensec_security,const uint8_t * data,size_t length,const uint8_t * whole_pdu,size_t pdu_length,const DATA_BLOB * sig)74 _PUBLIC_ NTSTATUS gensec_check_packet(struct gensec_security *gensec_security,
75 			     const uint8_t *data, size_t length,
76 			     const uint8_t *whole_pdu, size_t pdu_length,
77 			     const DATA_BLOB *sig)
78 {
79 	if (!gensec_security->ops->check_packet) {
80 		return NT_STATUS_NOT_IMPLEMENTED;
81 	}
82 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
83 		return NT_STATUS_INVALID_PARAMETER;
84 	}
85 
86 	return gensec_security->ops->check_packet(gensec_security, data, length, whole_pdu, pdu_length, sig);
87 }
88 
gensec_seal_packet(struct gensec_security * gensec_security,TALLOC_CTX * mem_ctx,uint8_t * data,size_t length,const uint8_t * whole_pdu,size_t pdu_length,DATA_BLOB * sig)89 _PUBLIC_ NTSTATUS gensec_seal_packet(struct gensec_security *gensec_security,
90 			    TALLOC_CTX *mem_ctx,
91 			    uint8_t *data, size_t length,
92 			    const uint8_t *whole_pdu, size_t pdu_length,
93 			    DATA_BLOB *sig)
94 {
95 	if (!gensec_security->ops->seal_packet) {
96 		return NT_STATUS_NOT_IMPLEMENTED;
97 	}
98 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SEAL)) {
99 		return NT_STATUS_INVALID_PARAMETER;
100 	}
101 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
102 		return NT_STATUS_INVALID_PARAMETER;
103 	}
104 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_DCE_STYLE)) {
105 		return NT_STATUS_INVALID_PARAMETER;
106 	}
107 
108 	return gensec_security->ops->seal_packet(gensec_security, mem_ctx, data, length, whole_pdu, pdu_length, sig);
109 }
110 
gensec_sign_packet(struct gensec_security * gensec_security,TALLOC_CTX * mem_ctx,const uint8_t * data,size_t length,const uint8_t * whole_pdu,size_t pdu_length,DATA_BLOB * sig)111 _PUBLIC_ NTSTATUS gensec_sign_packet(struct gensec_security *gensec_security,
112 			    TALLOC_CTX *mem_ctx,
113 			    const uint8_t *data, size_t length,
114 			    const uint8_t *whole_pdu, size_t pdu_length,
115 			    DATA_BLOB *sig)
116 {
117 	if (!gensec_security->ops->sign_packet) {
118 		return NT_STATUS_NOT_IMPLEMENTED;
119 	}
120 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
121 		return NT_STATUS_INVALID_PARAMETER;
122 	}
123 
124 	return gensec_security->ops->sign_packet(gensec_security, mem_ctx, data, length, whole_pdu, pdu_length, sig);
125 }
126 
gensec_sig_size(struct gensec_security * gensec_security,size_t data_size)127 _PUBLIC_ size_t gensec_sig_size(struct gensec_security *gensec_security, size_t data_size)
128 {
129 	if (!gensec_security->ops->sig_size) {
130 		return 0;
131 	}
132 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
133 		return 0;
134 	}
135 	if (gensec_have_feature(gensec_security, GENSEC_FEATURE_SEAL)) {
136 		if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_DCE_STYLE)) {
137 			return 0;
138 		}
139 	}
140 
141 	return gensec_security->ops->sig_size(gensec_security, data_size);
142 }
143 
gensec_max_wrapped_size(struct gensec_security * gensec_security)144 _PUBLIC_ size_t gensec_max_wrapped_size(struct gensec_security *gensec_security)
145 {
146 	if (!gensec_security->ops->max_wrapped_size) {
147 		return (1 << 17);
148 	}
149 
150 	return gensec_security->ops->max_wrapped_size(gensec_security);
151 }
152 
gensec_max_input_size(struct gensec_security * gensec_security)153 _PUBLIC_ size_t gensec_max_input_size(struct gensec_security *gensec_security)
154 {
155 	if (!gensec_security->ops->max_input_size) {
156 		return (1 << 17) - gensec_sig_size(gensec_security, 1 << 17);
157 	}
158 
159 	return gensec_security->ops->max_input_size(gensec_security);
160 }
161 
gensec_wrap(struct gensec_security * gensec_security,TALLOC_CTX * mem_ctx,const DATA_BLOB * in,DATA_BLOB * out)162 _PUBLIC_ NTSTATUS gensec_wrap(struct gensec_security *gensec_security,
163 		     TALLOC_CTX *mem_ctx,
164 		     const DATA_BLOB *in,
165 		     DATA_BLOB *out)
166 {
167 	if (!gensec_security->ops->wrap) {
168 		return NT_STATUS_NOT_IMPLEMENTED;
169 	}
170 	return gensec_security->ops->wrap(gensec_security, mem_ctx, in, out);
171 }
172 
gensec_unwrap(struct gensec_security * gensec_security,TALLOC_CTX * mem_ctx,const DATA_BLOB * in,DATA_BLOB * out)173 _PUBLIC_ NTSTATUS gensec_unwrap(struct gensec_security *gensec_security,
174 		       TALLOC_CTX *mem_ctx,
175 		       const DATA_BLOB *in,
176 		       DATA_BLOB *out)
177 {
178 	if (!gensec_security->ops->unwrap) {
179 		return NT_STATUS_NOT_IMPLEMENTED;
180 	}
181 	return gensec_security->ops->unwrap(gensec_security, mem_ctx, in, out);
182 }
183 
gensec_session_key(struct gensec_security * gensec_security,TALLOC_CTX * mem_ctx,DATA_BLOB * session_key)184 _PUBLIC_ NTSTATUS gensec_session_key(struct gensec_security *gensec_security,
185 				     TALLOC_CTX *mem_ctx,
186 				     DATA_BLOB *session_key)
187 {
188 	if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SESSION_KEY)) {
189 		return NT_STATUS_NO_USER_SESSION_KEY;
190 	}
191 
192 	if (!gensec_security->ops->session_key) {
193 		return NT_STATUS_NOT_IMPLEMENTED;
194 	}
195 
196 	return gensec_security->ops->session_key(gensec_security, mem_ctx, session_key);
197 }
198 
gensec_final_auth_type(struct gensec_security * gensec_security)199 const char *gensec_final_auth_type(struct gensec_security *gensec_security)
200 {
201 	if (!gensec_security->ops->final_auth_type) {
202 		return gensec_security->ops->name;
203 	}
204 
205 	return gensec_security->ops->final_auth_type(gensec_security);
206 }
207 
208 /*
209  * Log details of a successful GENSEC authorization to a service.
210  *
211  * Only successful authorizations are logged, as only these call gensec_session_info()
212  *
213  * The service may later refuse authorization due to an ACL.
214  *
215  */
log_successful_gensec_authz_event(struct gensec_security * gensec_security,struct auth_session_info * session_info)216 static void log_successful_gensec_authz_event(struct gensec_security *gensec_security,
217 					      struct auth_session_info *session_info)
218 {
219 	const struct tsocket_address *remote
220 		= gensec_get_remote_address(gensec_security);
221 	const struct tsocket_address *local
222 		= gensec_get_local_address(gensec_security);
223 	const char *service_description
224 		= gensec_get_target_service_description(gensec_security);
225 	const char *final_auth_type
226 		= gensec_final_auth_type(gensec_security);
227 	const char *transport_protection = NULL;
228 	if (gensec_security->want_features & GENSEC_FEATURE_SMB_TRANSPORT) {
229 		transport_protection = AUTHZ_TRANSPORT_PROTECTION_SMB;
230 	} else if (gensec_security->want_features & GENSEC_FEATURE_LDAPS_TRANSPORT) {
231 		transport_protection = AUTHZ_TRANSPORT_PROTECTION_TLS;
232 	} else if (gensec_have_feature(gensec_security, GENSEC_FEATURE_SEAL)) {
233 		transport_protection = AUTHZ_TRANSPORT_PROTECTION_SEAL;
234 	} else if (gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
235 		transport_protection = AUTHZ_TRANSPORT_PROTECTION_SIGN;
236 	} else {
237 		transport_protection = AUTHZ_TRANSPORT_PROTECTION_NONE;
238 	}
239 	log_successful_authz_event(gensec_security->auth_context->msg_ctx,
240 				   gensec_security->auth_context->lp_ctx,
241 				   remote, local,
242 				   service_description,
243 				   final_auth_type,
244 				   transport_protection,
245 				   session_info);
246 }
247 
248 
249 /**
250  * Return the credentials of a logged on user, including session keys
251  * etc.
252  *
253  * Only valid after a successful authentication
254  *
255  * May only be called once per authentication.  This will also make an
256  * authorization log entry, as it is already called by all the
257  * callers.
258  *
259  */
260 
gensec_session_info(struct gensec_security * gensec_security,TALLOC_CTX * mem_ctx,struct auth_session_info ** session_info)261 _PUBLIC_ NTSTATUS gensec_session_info(struct gensec_security *gensec_security,
262 				      TALLOC_CTX *mem_ctx,
263 				      struct auth_session_info **session_info)
264 {
265 	NTSTATUS status;
266 	if (!gensec_security->ops->session_info) {
267 		return NT_STATUS_NOT_IMPLEMENTED;
268 	}
269 	status = gensec_security->ops->session_info(gensec_security, mem_ctx, session_info);
270 
271 	if (NT_STATUS_IS_OK(status) && !gensec_security->subcontext
272 	    && (gensec_security->want_features & GENSEC_FEATURE_NO_AUTHZ_LOG) == 0) {
273 		log_successful_gensec_authz_event(gensec_security, *session_info);
274 	}
275 
276 	return status;
277 }
278 
gensec_set_max_update_size(struct gensec_security * gensec_security,uint32_t max_update_size)279 _PUBLIC_ void gensec_set_max_update_size(struct gensec_security *gensec_security,
280 				uint32_t max_update_size)
281 {
282 	gensec_security->max_update_size = max_update_size;
283 }
284 
gensec_max_update_size(struct gensec_security * gensec_security)285 _PUBLIC_ size_t gensec_max_update_size(struct gensec_security *gensec_security)
286 {
287 	if (gensec_security->max_update_size == 0) {
288 		return UINT32_MAX;
289 	}
290 
291 	return gensec_security->max_update_size;
292 }
293 
gensec_verify_features(struct gensec_security * gensec_security)294 static NTSTATUS gensec_verify_features(struct gensec_security *gensec_security)
295 {
296 	bool ok;
297 
298 	/*
299 	 * gensec_want_feature(GENSEC_FEATURE_SIGN)
300 	 * and
301 	 * gensec_want_feature(GENSEC_FEATURE_SEAL)
302 	 * require these flags to be available.
303 	 */
304 	if (gensec_security->want_features & GENSEC_FEATURE_SIGN) {
305 		if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
306 			DEBUG(0,("Did not manage to negotiate mandatory feature "
307 				 "SIGN\n"));
308 			return NT_STATUS_ACCESS_DENIED;
309 		}
310 	}
311 	if (gensec_security->want_features & GENSEC_FEATURE_SEAL) {
312 		if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SEAL)) {
313 			DEBUG(0,("Did not manage to negotiate mandatory feature "
314 				 "SEAL\n"));
315 			return NT_STATUS_ACCESS_DENIED;
316 		}
317 		if (!gensec_have_feature(gensec_security, GENSEC_FEATURE_SIGN)) {
318 			DEBUG(0,("Did not manage to negotiate mandatory feature "
319 				 "SIGN for SEAL\n"));
320 			return NT_STATUS_ACCESS_DENIED;
321 		}
322 	}
323 
324 	if (gensec_security->dcerpc_auth_level < DCERPC_AUTH_LEVEL_PACKET) {
325 		return NT_STATUS_OK;
326 	}
327 
328 	ok = gensec_have_feature(gensec_security,
329 				 GENSEC_FEATURE_SIGN_PKT_HEADER);
330 	if (!ok) {
331 		DBG_ERR("backend [%s] does not support header signing! "
332 			"auth_level[0x%x]\n",
333 			gensec_security->ops->name,
334 			gensec_security->dcerpc_auth_level);
335 		return NT_STATUS_INTERNAL_ERROR;
336 	}
337 
338 	return NT_STATUS_OK;
339 }
340 
341 /**
342  * Next state function for the GENSEC state machine
343  *
344  * @param gensec_security GENSEC State
345  * @param out_mem_ctx The TALLOC_CTX for *out to be allocated on
346  * @param in The request, as a DATA_BLOB
347  * @param out The reply, as an talloc()ed DATA_BLOB, on *out_mem_ctx
348  * @return Error, MORE_PROCESSING_REQUIRED if a reply is sent,
349  *                or NT_STATUS_OK if the user is authenticated.
350  */
gensec_update(struct gensec_security * gensec_security,TALLOC_CTX * out_mem_ctx,const DATA_BLOB in,DATA_BLOB * out)351 _PUBLIC_ NTSTATUS gensec_update(struct gensec_security *gensec_security,
352 				TALLOC_CTX *out_mem_ctx,
353 				const DATA_BLOB in, DATA_BLOB *out)
354 {
355 	NTSTATUS status;
356 	TALLOC_CTX *frame = NULL;
357 	struct tevent_context *ev = NULL;
358 	struct tevent_req *subreq = NULL;
359 	bool ok;
360 
361 	if (gensec_security->subcontext) {
362 		/*
363 		 * gensec modules are not allowed to call the sync version.
364 		 */
365 		return NT_STATUS_INTERNAL_ERROR;
366 	}
367 
368 	frame = talloc_stackframe();
369 
370 	ev = samba_tevent_context_init(frame);
371 	if (ev == NULL) {
372 		status = NT_STATUS_NO_MEMORY;
373 		goto fail;
374 	}
375 
376 	/*
377 	 * TODO: remove this hack once the backends
378 	 * are fixed.
379 	 */
380 	tevent_loop_allow_nesting(ev);
381 
382 	subreq = gensec_update_send(frame, ev, gensec_security, in);
383 	if (subreq == NULL) {
384 		status = NT_STATUS_NO_MEMORY;
385 		goto fail;
386 	}
387 	ok = tevent_req_poll_ntstatus(subreq, ev, &status);
388 	if (!ok) {
389 		goto fail;
390 	}
391 	status = gensec_update_recv(subreq, out_mem_ctx, out);
392  fail:
393 	TALLOC_FREE(frame);
394 	return status;
395 }
396 
397 struct gensec_update_state {
398 	const struct gensec_security_ops *ops;
399 	struct gensec_security *gensec_security;
400 	NTSTATUS status;
401 	DATA_BLOB out;
402 };
403 
404 static void gensec_update_cleanup(struct tevent_req *req,
405 				  enum tevent_req_state req_state);
406 static void gensec_update_done(struct tevent_req *subreq);
407 
408 /**
409  * Next state function for the GENSEC state machine async version
410  *
411  * @param mem_ctx The memory context for the request
412  * @param ev The event context for the request
413  * @param gensec_security GENSEC State
414  * @param in The request, as a DATA_BLOB
415  *
416  * @return The request handle or NULL on no memory failure
417  */
418 
gensec_update_send(TALLOC_CTX * mem_ctx,struct tevent_context * ev,struct gensec_security * gensec_security,const DATA_BLOB in)419 _PUBLIC_ struct tevent_req *gensec_update_send(TALLOC_CTX *mem_ctx,
420 					       struct tevent_context *ev,
421 					       struct gensec_security *gensec_security,
422 					       const DATA_BLOB in)
423 {
424 	struct tevent_req *req = NULL;
425 	struct gensec_update_state *state = NULL;
426 	struct tevent_req *subreq = NULL;
427 
428 	req = tevent_req_create(mem_ctx, &state,
429 				struct gensec_update_state);
430 	if (req == NULL) {
431 		return NULL;
432 	}
433 	state->ops = gensec_security->ops;
434 	state->gensec_security = gensec_security;
435 
436 	if (gensec_security->update_busy_ptr != NULL) {
437 		tevent_req_nterror(req, NT_STATUS_INTERNAL_ERROR);
438 		return tevent_req_post(req, ev);
439 	}
440 
441 	if (gensec_security->child_security != NULL) {
442 		tevent_req_nterror(req, NT_STATUS_INVALID_PARAMETER);
443 		return tevent_req_post(req, ev);
444 	}
445 
446 	gensec_security->update_busy_ptr = &state->gensec_security;
447 	tevent_req_set_cleanup_fn(req, gensec_update_cleanup);
448 
449 	subreq = state->ops->update_send(state, ev, gensec_security, in);
450 	if (tevent_req_nomem(subreq, req)) {
451 		return tevent_req_post(req, ev);
452 	}
453 	tevent_req_set_callback(subreq, gensec_update_done, req);
454 
455 	DBG_DEBUG("%s[%p]: subreq: %p\n", state->ops->name,
456 		  state->gensec_security, subreq);
457 
458 	return req;
459 }
460 
gensec_update_cleanup(struct tevent_req * req,enum tevent_req_state req_state)461 static void gensec_update_cleanup(struct tevent_req *req,
462 				  enum tevent_req_state req_state)
463 {
464 	struct gensec_update_state *state =
465 		tevent_req_data(req,
466 		struct gensec_update_state);
467 
468 	if (state->gensec_security == NULL) {
469 		return;
470 	}
471 
472 	if (state->gensec_security->update_busy_ptr == &state->gensec_security) {
473 		state->gensec_security->update_busy_ptr = NULL;
474 	}
475 
476 	state->gensec_security = NULL;
477 }
478 
gensec_update_done(struct tevent_req * subreq)479 static void gensec_update_done(struct tevent_req *subreq)
480 {
481 	struct tevent_req *req =
482 		tevent_req_callback_data(subreq,
483 		struct tevent_req);
484 	struct gensec_update_state *state =
485 		tevent_req_data(req,
486 		struct gensec_update_state);
487 	NTSTATUS status;
488 	const char *debug_subreq = NULL;
489 
490 	if (CHECK_DEBUGLVL(DBGLVL_DEBUG)) {
491 		/*
492 		 * We need to call tevent_req_print()
493 		 * before calling the _recv function,
494 		 * before tevent_req_received() was called.
495 		 * in order to print the pointer value of
496 		 * the subreq state.
497 		 */
498 		debug_subreq = tevent_req_print(state, subreq);
499 	}
500 
501 	status = state->ops->update_recv(subreq, state, &state->out);
502 	TALLOC_FREE(subreq);
503 	state->status = status;
504 	if (GENSEC_UPDATE_IS_NTERROR(status)) {
505 		DBG_INFO("%s[%p]: %s%s%s\n", state->ops->name,
506 			 state->gensec_security, nt_errstr(status),
507 			 debug_subreq ? " " : "",
508 			 debug_subreq ? debug_subreq : "");
509 		tevent_req_nterror(req, status);
510 		return;
511 	}
512 	DBG_DEBUG("%s[%p]: %s %s\n", state->ops->name,
513 		  state->gensec_security, nt_errstr(status),
514 		  debug_subreq);
515 	if (NT_STATUS_EQUAL(status, NT_STATUS_MORE_PROCESSING_REQUIRED)) {
516 		tevent_req_done(req);
517 		return;
518 	}
519 
520 	/*
521 	 * Because callers using the
522 	 * gensec_start_mech_by_authtype() never call
523 	 * gensec_want_feature(), it isn't sensible for them
524 	 * to have to call gensec_have_feature() manually, and
525 	 * these are not points of negotiation, but are
526 	 * asserted by the client
527 	 */
528 	status = gensec_verify_features(state->gensec_security);
529 	if (tevent_req_nterror(req, status)) {
530 		return;
531 	}
532 
533 	tevent_req_done(req);
534 }
535 
536 /**
537  * Next state function for the GENSEC state machine
538  *
539  * @param req request state
540  * @param out_mem_ctx The TALLOC_CTX for *out to be allocated on
541  * @param out The reply, as an talloc()ed DATA_BLOB, on *out_mem_ctx
542  * @return Error, MORE_PROCESSING_REQUIRED if a reply is sent,
543  *                or NT_STATUS_OK if the user is authenticated.
544  */
gensec_update_recv(struct tevent_req * req,TALLOC_CTX * out_mem_ctx,DATA_BLOB * out)545 _PUBLIC_ NTSTATUS gensec_update_recv(struct tevent_req *req,
546 				     TALLOC_CTX *out_mem_ctx,
547 				     DATA_BLOB *out)
548 {
549 	struct gensec_update_state *state =
550 		tevent_req_data(req, struct gensec_update_state);
551 	NTSTATUS status;
552 
553 	*out = data_blob_null;
554 
555 	if (tevent_req_is_nterror(req, &status)) {
556 		tevent_req_received(req);
557 		return status;
558 	}
559 
560 	*out = state->out;
561 	talloc_steal(out_mem_ctx, out->data);
562 	status = state->status;
563 	tevent_req_received(req);
564 	return status;
565 }
566 
567 /**
568  * Set the requirement for a certain feature on the connection
569  *
570  */
571 
gensec_want_feature(struct gensec_security * gensec_security,uint32_t feature)572 _PUBLIC_ void gensec_want_feature(struct gensec_security *gensec_security,
573 			 uint32_t feature)
574 {
575 	if (!gensec_security->ops || !gensec_security->ops->want_feature) {
576 		gensec_security->want_features |= feature;
577 		return;
578 	}
579 	gensec_security->ops->want_feature(gensec_security, feature);
580 }
581 
582 /**
583  * Check the requirement for a certain feature on the connection
584  *
585  */
586 
gensec_have_feature(struct gensec_security * gensec_security,uint32_t feature)587 _PUBLIC_ bool gensec_have_feature(struct gensec_security *gensec_security,
588 			 uint32_t feature)
589 {
590 	if (!gensec_security->ops || !gensec_security->ops->have_feature) {
591 		return false;
592 	}
593 
594 	/* We might 'have' features that we don't 'want', because the
595 	 * other end demanded them, or we can't neotiate them off */
596 	return gensec_security->ops->have_feature(gensec_security, feature);
597 }
598 
gensec_expire_time(struct gensec_security * gensec_security)599 _PUBLIC_ NTTIME gensec_expire_time(struct gensec_security *gensec_security)
600 {
601 	if (!gensec_security->ops->expire_time) {
602 		return GENSEC_EXPIRE_TIME_INFINITY;
603 	}
604 
605 	return gensec_security->ops->expire_time(gensec_security);
606 }
607 /**
608  * Return the credentials structure associated with a GENSEC context
609  *
610  */
611 
gensec_get_credentials(struct gensec_security * gensec_security)612 _PUBLIC_ struct cli_credentials *gensec_get_credentials(struct gensec_security *gensec_security)
613 {
614 	if (!gensec_security) {
615 		return NULL;
616 	}
617 	return gensec_security->credentials;
618 }
619 
620 /**
621  * Set the target service (such as 'http' or 'host') on a GENSEC context - ensures it is talloc()ed
622  *
623  * This is used for Kerberos service principal name resolution.
624  */
625 
gensec_set_target_service(struct gensec_security * gensec_security,const char * service)626 _PUBLIC_ NTSTATUS gensec_set_target_service(struct gensec_security *gensec_security, const char *service)
627 {
628 	gensec_security->target.service = talloc_strdup(gensec_security, service);
629 	if (!gensec_security->target.service) {
630 		return NT_STATUS_NO_MEMORY;
631 	}
632 	return NT_STATUS_OK;
633 }
634 
gensec_get_target_service(struct gensec_security * gensec_security)635 _PUBLIC_ const char *gensec_get_target_service(struct gensec_security *gensec_security)
636 {
637 	if (gensec_security->target.service) {
638 		return gensec_security->target.service;
639 	}
640 
641 	return "host";
642 }
643 
644 /**
645  * Set the target service (such as 'samr') on an GENSEC context - ensures it is talloc()ed.
646  *
647  * This is not the Kerberos service principal, instead this is a
648  * constant value that can be logged as part of authentication and
649  * authorization logging
650  */
gensec_set_target_service_description(struct gensec_security * gensec_security,const char * service)651 _PUBLIC_ NTSTATUS gensec_set_target_service_description(struct gensec_security *gensec_security,
652 							const char *service)
653 {
654 	gensec_security->target.service_description = talloc_strdup(gensec_security, service);
655 	if (!gensec_security->target.service_description) {
656 		return NT_STATUS_NO_MEMORY;
657 	}
658 	return NT_STATUS_OK;
659 }
660 
gensec_get_target_service_description(struct gensec_security * gensec_security)661 _PUBLIC_ const char *gensec_get_target_service_description(struct gensec_security *gensec_security)
662 {
663 	if (gensec_security->target.service_description) {
664 		return gensec_security->target.service_description;
665 	} else if (gensec_security->target.service) {
666 		return gensec_security->target.service;
667 	}
668 
669 	return NULL;
670 }
671 
672 /**
673  * Set the target hostname (suitable for kerberos resolutation) on a GENSEC context - ensures it is talloc()ed
674  *
675  */
676 
gensec_set_target_hostname(struct gensec_security * gensec_security,const char * hostname)677 _PUBLIC_ NTSTATUS gensec_set_target_hostname(struct gensec_security *gensec_security, const char *hostname)
678 {
679 	gensec_security->target.hostname = talloc_strdup(gensec_security, hostname);
680 	if (hostname && !gensec_security->target.hostname) {
681 		return NT_STATUS_NO_MEMORY;
682 	}
683 	return NT_STATUS_OK;
684 }
685 
gensec_get_target_hostname(struct gensec_security * gensec_security)686 _PUBLIC_ const char *gensec_get_target_hostname(struct gensec_security *gensec_security)
687 {
688 	/* We allow the target hostname to be overridden for testing purposes */
689 	if (gensec_security->settings->target_hostname) {
690 		return gensec_security->settings->target_hostname;
691 	}
692 
693 	if (gensec_security->target.hostname) {
694 		return gensec_security->target.hostname;
695 	}
696 
697 	/* We could add use the 'set sockaddr' call, and do a reverse
698 	 * lookup, but this would be both insecure (compromising the
699 	 * way kerberos works) and add DNS timeouts */
700 	return NULL;
701 }
702 
703 /**
704  * Set (and copy) local and peer socket addresses onto a socket
705  * context on the GENSEC context.
706  *
707  * This is so that kerberos can include these addresses in
708  * cryptographic tokens, to avoid certain attacks.
709  */
710 
711 /**
712  * @brief Set the local gensec address.
713  *
714  * @param  gensec_security   The gensec security context to use.
715  *
716  * @param  remote       The local address to set.
717  *
718  * @return              On success NT_STATUS_OK is returned or an NT_STATUS
719  *                      error.
720  */
gensec_set_local_address(struct gensec_security * gensec_security,const struct tsocket_address * local)721 _PUBLIC_ NTSTATUS gensec_set_local_address(struct gensec_security *gensec_security,
722 		const struct tsocket_address *local)
723 {
724 	TALLOC_FREE(gensec_security->local_addr);
725 
726 	if (local == NULL) {
727 		return NT_STATUS_OK;
728 	}
729 
730 	gensec_security->local_addr = tsocket_address_copy(local, gensec_security);
731 	if (gensec_security->local_addr == NULL) {
732 		return NT_STATUS_NO_MEMORY;
733 	}
734 
735 	return NT_STATUS_OK;
736 }
737 
738 /**
739  * @brief Set the remote gensec address.
740  *
741  * @param  gensec_security   The gensec security context to use.
742  *
743  * @param  remote       The remote address to set.
744  *
745  * @return              On success NT_STATUS_OK is returned or an NT_STATUS
746  *                      error.
747  */
gensec_set_remote_address(struct gensec_security * gensec_security,const struct tsocket_address * remote)748 _PUBLIC_ NTSTATUS gensec_set_remote_address(struct gensec_security *gensec_security,
749 		const struct tsocket_address *remote)
750 {
751 	TALLOC_FREE(gensec_security->remote_addr);
752 
753 	if (remote == NULL) {
754 		return NT_STATUS_OK;
755 	}
756 
757 	gensec_security->remote_addr = tsocket_address_copy(remote, gensec_security);
758 	if (gensec_security->remote_addr == NULL) {
759 		return NT_STATUS_NO_MEMORY;
760 	}
761 
762 	return NT_STATUS_OK;
763 }
764 
765 /**
766  * @brief Get the local address from a gensec security context.
767  *
768  * @param  gensec_security   The security context to get the address from.
769  *
770  * @return              The address as tsocket_address which could be NULL if
771  *                      no address is set.
772  */
gensec_get_local_address(struct gensec_security * gensec_security)773 _PUBLIC_ const struct tsocket_address *gensec_get_local_address(struct gensec_security *gensec_security)
774 {
775 	if (gensec_security == NULL) {
776 		return NULL;
777 	}
778 	return gensec_security->local_addr;
779 }
780 
781 /**
782  * @brief Get the remote address from a gensec security context.
783  *
784  * @param  gensec_security   The security context to get the address from.
785  *
786  * @return              The address as tsocket_address which could be NULL if
787  *                      no address is set.
788  */
gensec_get_remote_address(struct gensec_security * gensec_security)789 _PUBLIC_ const struct tsocket_address *gensec_get_remote_address(struct gensec_security *gensec_security)
790 {
791 	if (gensec_security == NULL) {
792 		return NULL;
793 	}
794 	return gensec_security->remote_addr;
795 }
796 
797 /**
798  * Set the target principal (assuming it it known, say from the SPNEGO reply)
799  *  - ensures it is talloc()ed
800  *
801  */
802 
gensec_set_target_principal(struct gensec_security * gensec_security,const char * principal)803 _PUBLIC_ NTSTATUS gensec_set_target_principal(struct gensec_security *gensec_security, const char *principal)
804 {
805 	gensec_security->target.principal = talloc_strdup(gensec_security, principal);
806 	if (!gensec_security->target.principal) {
807 		return NT_STATUS_NO_MEMORY;
808 	}
809 	return NT_STATUS_OK;
810 }
811 
gensec_get_target_principal(struct gensec_security * gensec_security)812 _PUBLIC_ const char *gensec_get_target_principal(struct gensec_security *gensec_security)
813 {
814 	if (gensec_security->target.principal) {
815 		return gensec_security->target.principal;
816 	}
817 
818 	return NULL;
819 }
820