- merge audio headers
[reactos.git] / dll / win32 / rpcrt4 / rpc_binding.c
1 /*
2 * RPC binding API
3 *
4 * Copyright 2001 Ove Kåven, TransGaming Technologies
5 * Copyright 2003 Mike Hearn
6 * Copyright 2004 Filip Navara
7 * Copyright 2006 CodeWeavers
8 *
9 * This library is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU Lesser General Public
11 * License as published by the Free Software Foundation; either
12 * version 2.1 of the License, or (at your option) any later version.
13 *
14 * This library 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 GNU
17 * Lesser General Public License for more details.
18 *
19 * You should have received a copy of the GNU Lesser General Public
20 * License along with this library; if not, write to the Free Software
21 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
22 */
23
24 #include <stdarg.h>
25 #include <stdio.h>
26 #include <string.h>
27 #include <assert.h>
28
29 #include "windef.h"
30 #include "winbase.h"
31 #include "winnls.h"
32 #include "winerror.h"
33 #include "winternl.h"
34 #include "wine/unicode.h"
35
36 #include "rpc.h"
37 #include "rpcndr.h"
38
39 #include "wine/debug.h"
40
41 #include "rpc_binding.h"
42 #include "rpc_assoc.h"
43
44 WINE_DEFAULT_DEBUG_CHANNEL(rpc);
45
46 LPSTR RPCRT4_strndupA(LPCSTR src, INT slen)
47 {
48 DWORD len;
49 LPSTR s;
50 if (!src) return NULL;
51 if (slen == -1) slen = strlen(src);
52 len = slen;
53 s = HeapAlloc(GetProcessHeap(), 0, len+1);
54 memcpy(s, src, len);
55 s[len] = 0;
56 return s;
57 }
58
59 LPSTR RPCRT4_strdupWtoA(LPCWSTR src)
60 {
61 DWORD len;
62 LPSTR s;
63 if (!src) return NULL;
64 len = WideCharToMultiByte(CP_ACP, 0, src, -1, NULL, 0, NULL, NULL);
65 s = HeapAlloc(GetProcessHeap(), 0, len);
66 WideCharToMultiByte(CP_ACP, 0, src, -1, s, len, NULL, NULL);
67 return s;
68 }
69
70 LPWSTR RPCRT4_strdupAtoW(LPCSTR src)
71 {
72 DWORD len;
73 LPWSTR s;
74 if (!src) return NULL;
75 len = MultiByteToWideChar(CP_ACP, 0, src, -1, NULL, 0);
76 s = HeapAlloc(GetProcessHeap(), 0, len*sizeof(WCHAR));
77 MultiByteToWideChar(CP_ACP, 0, src, -1, s, len);
78 return s;
79 }
80
81 static LPWSTR RPCRT4_strndupAtoW(LPCSTR src, INT slen)
82 {
83 DWORD len;
84 LPWSTR s;
85 if (!src) return NULL;
86 len = MultiByteToWideChar(CP_ACP, 0, src, slen, NULL, 0);
87 s = HeapAlloc(GetProcessHeap(), 0, len*sizeof(WCHAR));
88 MultiByteToWideChar(CP_ACP, 0, src, slen, s, len);
89 return s;
90 }
91
92 LPWSTR RPCRT4_strndupW(LPCWSTR src, INT slen)
93 {
94 DWORD len;
95 LPWSTR s;
96 if (!src) return NULL;
97 if (slen == -1) slen = strlenW(src);
98 len = slen;
99 s = HeapAlloc(GetProcessHeap(), 0, (len+1)*sizeof(WCHAR));
100 memcpy(s, src, len*sizeof(WCHAR));
101 s[len] = 0;
102 return s;
103 }
104
105 void RPCRT4_strfree(LPSTR src)
106 {
107 HeapFree(GetProcessHeap(), 0, src);
108 }
109
110 static RPC_STATUS RPCRT4_AllocBinding(RpcBinding** Binding, BOOL server)
111 {
112 RpcBinding* NewBinding;
113
114 NewBinding = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, sizeof(RpcBinding));
115 NewBinding->refs = 1;
116 NewBinding->server = server;
117
118 *Binding = NewBinding;
119
120 return RPC_S_OK;
121 }
122
123 static RPC_STATUS RPCRT4_CreateBindingA(RpcBinding** Binding, BOOL server, LPCSTR Protseq)
124 {
125 RpcBinding* NewBinding;
126
127 RPCRT4_AllocBinding(&NewBinding, server);
128 NewBinding->Protseq = RPCRT4_strdupA(Protseq);
129
130 TRACE("binding: %p\n", NewBinding);
131 *Binding = NewBinding;
132
133 return RPC_S_OK;
134 }
135
136 static RPC_STATUS RPCRT4_CreateBindingW(RpcBinding** Binding, BOOL server, LPCWSTR Protseq)
137 {
138 RpcBinding* NewBinding;
139
140 RPCRT4_AllocBinding(&NewBinding, server);
141 NewBinding->Protseq = RPCRT4_strdupWtoA(Protseq);
142
143 TRACE("binding: %p\n", NewBinding);
144 *Binding = NewBinding;
145
146 return RPC_S_OK;
147 }
148
149 static RPC_STATUS RPCRT4_CompleteBindingA(RpcBinding* Binding, LPCSTR NetworkAddr,
150 LPCSTR Endpoint, LPCSTR NetworkOptions)
151 {
152 RPC_STATUS status;
153
154 TRACE("(RpcBinding == ^%p, NetworkAddr == %s, EndPoint == %s, NetworkOptions == %s)\n", Binding,
155 debugstr_a(NetworkAddr), debugstr_a(Endpoint), debugstr_a(NetworkOptions));
156
157 RPCRT4_strfree(Binding->NetworkAddr);
158 Binding->NetworkAddr = RPCRT4_strdupA(NetworkAddr);
159 RPCRT4_strfree(Binding->Endpoint);
160 Binding->Endpoint = RPCRT4_strdupA(Endpoint);
161 HeapFree(GetProcessHeap(), 0, Binding->NetworkOptions);
162 Binding->NetworkOptions = RPCRT4_strdupAtoW(NetworkOptions);
163
164 /* only attempt to get an association if the binding is complete */
165 if (Endpoint && Endpoint[0] != '\0')
166 {
167 status = RPCRT4_GetAssociation(Binding->Protseq, Binding->NetworkAddr,
168 Binding->Endpoint, Binding->NetworkOptions,
169 &Binding->Assoc);
170 if (status != RPC_S_OK)
171 return status;
172 }
173
174 return RPC_S_OK;
175 }
176
177 static RPC_STATUS RPCRT4_CompleteBindingW(RpcBinding* Binding, LPCWSTR NetworkAddr,
178 LPCWSTR Endpoint, LPCWSTR NetworkOptions)
179 {
180 RPC_STATUS status;
181
182 TRACE("(RpcBinding == ^%p, NetworkAddr == %s, EndPoint == %s, NetworkOptions == %s)\n", Binding,
183 debugstr_w(NetworkAddr), debugstr_w(Endpoint), debugstr_w(NetworkOptions));
184
185 RPCRT4_strfree(Binding->NetworkAddr);
186 Binding->NetworkAddr = RPCRT4_strdupWtoA(NetworkAddr);
187 RPCRT4_strfree(Binding->Endpoint);
188 Binding->Endpoint = RPCRT4_strdupWtoA(Endpoint);
189 HeapFree(GetProcessHeap(), 0, Binding->NetworkOptions);
190 Binding->NetworkOptions = RPCRT4_strdupW(NetworkOptions);
191
192 /* only attempt to get an association if the binding is complete */
193 if (Endpoint && Endpoint[0] != '\0')
194 {
195 status = RPCRT4_GetAssociation(Binding->Protseq, Binding->NetworkAddr,
196 Binding->Endpoint, Binding->NetworkOptions,
197 &Binding->Assoc);
198 if (status != RPC_S_OK)
199 return status;
200 }
201
202 return RPC_S_OK;
203 }
204
205 RPC_STATUS RPCRT4_ResolveBinding(RpcBinding* Binding, LPCSTR Endpoint)
206 {
207 RPC_STATUS status;
208
209 TRACE("(RpcBinding == ^%p, EndPoint == \"%s\"\n", Binding, Endpoint);
210
211 RPCRT4_strfree(Binding->Endpoint);
212 Binding->Endpoint = RPCRT4_strdupA(Endpoint);
213
214 if (Binding->Assoc) RpcAssoc_Release(Binding->Assoc);
215 Binding->Assoc = NULL;
216 status = RPCRT4_GetAssociation(Binding->Protseq, Binding->NetworkAddr,
217 Binding->Endpoint, Binding->NetworkOptions,
218 &Binding->Assoc);
219 if (status != RPC_S_OK)
220 return status;
221
222 return RPC_S_OK;
223 }
224
225 RPC_STATUS RPCRT4_SetBindingObject(RpcBinding* Binding, const UUID* ObjectUuid)
226 {
227 TRACE("(*RpcBinding == ^%p, UUID == %s)\n", Binding, debugstr_guid(ObjectUuid));
228 if (ObjectUuid) Binding->ObjectUuid = *ObjectUuid;
229 else UuidCreateNil(&Binding->ObjectUuid);
230 return RPC_S_OK;
231 }
232
233 RPC_STATUS RPCRT4_MakeBinding(RpcBinding** Binding, RpcConnection* Connection)
234 {
235 RpcBinding* NewBinding;
236 TRACE("(RpcBinding == ^%p, Connection == ^%p)\n", Binding, Connection);
237
238 RPCRT4_AllocBinding(&NewBinding, Connection->server);
239 NewBinding->Protseq = RPCRT4_strdupA(rpcrt4_conn_get_name(Connection));
240 NewBinding->NetworkAddr = RPCRT4_strdupA(Connection->NetworkAddr);
241 NewBinding->Endpoint = RPCRT4_strdupA(Connection->Endpoint);
242 NewBinding->FromConn = Connection;
243
244 TRACE("binding: %p\n", NewBinding);
245 *Binding = NewBinding;
246
247 return RPC_S_OK;
248 }
249
250 void RPCRT4_AddRefBinding(RpcBinding* Binding)
251 {
252 InterlockedIncrement(&Binding->refs);
253 }
254
255 RPC_STATUS RPCRT4_ReleaseBinding(RpcBinding* Binding)
256 {
257 if (InterlockedDecrement(&Binding->refs))
258 return RPC_S_OK;
259
260 TRACE("binding: %p\n", Binding);
261 if (Binding->Assoc) RpcAssoc_Release(Binding->Assoc);
262 RPCRT4_strfree(Binding->Endpoint);
263 RPCRT4_strfree(Binding->NetworkAddr);
264 RPCRT4_strfree(Binding->Protseq);
265 HeapFree(GetProcessHeap(), 0, Binding->NetworkOptions);
266 if (Binding->AuthInfo) RpcAuthInfo_Release(Binding->AuthInfo);
267 if (Binding->QOS) RpcQualityOfService_Release(Binding->QOS);
268 HeapFree(GetProcessHeap(), 0, Binding);
269 return RPC_S_OK;
270 }
271
272 RPC_STATUS RPCRT4_OpenBinding(RpcBinding* Binding, RpcConnection** Connection,
273 const RPC_SYNTAX_IDENTIFIER *TransferSyntax,
274 const RPC_SYNTAX_IDENTIFIER *InterfaceId)
275 {
276 TRACE("(Binding == ^%p)\n", Binding);
277
278 if (!Binding->server) {
279 return RpcAssoc_GetClientConnection(Binding->Assoc, InterfaceId,
280 TransferSyntax, Binding->AuthInfo, Binding->QOS, Connection);
281 } else {
282 /* we already have a connection with acceptable binding, so use it */
283 if (Binding->FromConn) {
284 *Connection = Binding->FromConn;
285 return RPC_S_OK;
286 } else {
287 ERR("no connection in binding\n");
288 return RPC_S_INTERNAL_ERROR;
289 }
290 }
291 }
292
293 RPC_STATUS RPCRT4_CloseBinding(RpcBinding* Binding, RpcConnection* Connection)
294 {
295 TRACE("(Binding == ^%p)\n", Binding);
296 if (!Connection) return RPC_S_OK;
297 if (Binding->server) {
298 /* don't destroy a connection that is cached in the binding */
299 if (Binding->FromConn == Connection)
300 return RPC_S_OK;
301 return RPCRT4_DestroyConnection(Connection);
302 }
303 else {
304 RpcAssoc_ReleaseIdleConnection(Binding->Assoc, Connection);
305 return RPC_S_OK;
306 }
307 }
308
309 static LPSTR RPCRT4_strconcatA(LPSTR dst, LPCSTR src)
310 {
311 DWORD len = strlen(dst), slen = strlen(src);
312 LPSTR ndst = HeapReAlloc(GetProcessHeap(), 0, dst, (len+slen+2)*sizeof(CHAR));
313 if (!ndst)
314 {
315 HeapFree(GetProcessHeap(), 0, dst);
316 return NULL;
317 }
318 ndst[len] = ',';
319 memcpy(ndst+len+1, src, slen+1);
320 return ndst;
321 }
322
323 static LPWSTR RPCRT4_strconcatW(LPWSTR dst, LPCWSTR src)
324 {
325 DWORD len = strlenW(dst), slen = strlenW(src);
326 LPWSTR ndst = HeapReAlloc(GetProcessHeap(), 0, dst, (len+slen+2)*sizeof(WCHAR));
327 if (!ndst)
328 {
329 HeapFree(GetProcessHeap(), 0, dst);
330 return NULL;
331 }
332 ndst[len] = ',';
333 memcpy(ndst+len+1, src, (slen+1)*sizeof(WCHAR));
334 return ndst;
335 }
336
337 /* Copies the escaped version of a component into a string binding.
338 * Note: doesn't nul-terminate the string */
339 static RPC_CSTR escape_string_binding_component(RPC_CSTR string_binding,
340 const unsigned char *component)
341 {
342 for (; *component; component++) {
343 switch (*component) {
344 case '@':
345 case ':':
346 case '[':
347 case ']':
348 case '\\':
349 *string_binding++ = '\\';
350 *string_binding++ = *component;
351 break;
352 default:
353 *string_binding++ = *component;
354 break;
355 }
356 }
357 return string_binding;
358 }
359
360 static RPC_WSTR escape_string_binding_componentW(RPC_WSTR string_binding,
361 const WCHAR *component)
362 {
363 for (; *component; component++) {
364 switch (*component) {
365 case '@':
366 case ':':
367 case '[':
368 case ']':
369 case '\\':
370 *string_binding++ = '\\';
371 *string_binding++ = *component;
372 break;
373 default:
374 *string_binding++ = *component;
375 break;
376 }
377 }
378 return string_binding;
379 }
380
381 static const unsigned char *string_binding_find_delimiter(
382 const unsigned char *string_binding, unsigned char delim)
383 {
384 const unsigned char *next;
385 for (next = string_binding; *next; next++) {
386 if (*next == '\\') {
387 next++;
388 continue;
389 }
390 if (*next == delim)
391 return next;
392 }
393 return NULL;
394 }
395
396 static const WCHAR *string_binding_find_delimiterW(
397 const WCHAR *string_binding, WCHAR delim)
398 {
399 const WCHAR *next;
400 for (next = string_binding; *next; next++) {
401 if (*next == '\\') {
402 next++;
403 continue;
404 }
405 if (*next == delim)
406 return next;
407 }
408 return NULL;
409 }
410
411 static RPC_CSTR unescape_string_binding_component(
412 const unsigned char *string_binding, int len)
413 {
414 RPC_CSTR component, p;
415
416 if (len == -1) len = strlen((const char *)string_binding);
417
418 component = HeapAlloc(GetProcessHeap(), 0, (len + 1) * sizeof(*component));
419 if (!component) return NULL;
420 for (p = component; len > 0; string_binding++, len--) {
421 if (*string_binding == '\\') {
422 string_binding++;
423 len--;
424 *p++ = *string_binding;
425 } else {
426 *p++ = *string_binding;
427 }
428 }
429 *p = '\0';
430 return component;
431 }
432
433 static RPC_WSTR unescape_string_binding_componentW(
434 const WCHAR *string_binding, int len)
435 {
436 RPC_WSTR component, p;
437
438 if (len == -1) len = strlenW(string_binding);
439
440 component = HeapAlloc(GetProcessHeap(), 0, (len + 1) * sizeof(*component));
441 if (!component) return NULL;
442 for (p = component; len > 0; string_binding++, len--) {
443 if (*string_binding == '\\') {
444 string_binding++;
445 len--;
446 *p++ = *string_binding;
447 } else {
448 *p++ = *string_binding;
449 }
450 }
451 *p = '\0';
452 return component;
453 }
454
455 /***********************************************************************
456 * RpcStringBindingComposeA (RPCRT4.@)
457 */
458 RPC_STATUS WINAPI RpcStringBindingComposeA(RPC_CSTR ObjUuid, RPC_CSTR Protseq,
459 RPC_CSTR NetworkAddr, RPC_CSTR Endpoint,
460 RPC_CSTR Options, RPC_CSTR *StringBinding )
461 {
462 DWORD len = 1;
463 RPC_CSTR data;
464
465 TRACE( "(%s,%s,%s,%s,%s,%p)\n",
466 debugstr_a( (char*)ObjUuid ), debugstr_a( (char*)Protseq ),
467 debugstr_a( (char*)NetworkAddr ), debugstr_a( (char*)Endpoint ),
468 debugstr_a( (char*)Options ), StringBinding );
469
470 /* overestimate for each component for escaping of delimiters */
471 if (ObjUuid && *ObjUuid) len += strlen((char*)ObjUuid) * 2 + 1;
472 if (Protseq && *Protseq) len += strlen((char*)Protseq) * 2 + 1;
473 if (NetworkAddr && *NetworkAddr) len += strlen((char*)NetworkAddr) * 2;
474 if (Endpoint && *Endpoint) len += strlen((char*)Endpoint) * 2 + 2;
475 if (Options && *Options) len += strlen((char*)Options) * 2 + 2;
476
477 data = HeapAlloc(GetProcessHeap(), 0, len);
478 *StringBinding = data;
479
480 if (ObjUuid && *ObjUuid) {
481 data = escape_string_binding_component(data, ObjUuid);
482 *data++ = '@';
483 }
484 if (Protseq && *Protseq) {
485 data = escape_string_binding_component(data, Protseq);
486 *data++ = ':';
487 }
488 if (NetworkAddr && *NetworkAddr)
489 data = escape_string_binding_component(data, NetworkAddr);
490
491 if ((Endpoint && *Endpoint) ||
492 (Options && *Options)) {
493 *data++ = '[';
494 if (Endpoint && *Endpoint) {
495 data = escape_string_binding_component(data, Endpoint);
496 if (Options && *Options) *data++ = ',';
497 }
498 if (Options && *Options) {
499 data = escape_string_binding_component(data, Options);
500 }
501 *data++ = ']';
502 }
503 *data = 0;
504
505 return RPC_S_OK;
506 }
507
508 /***********************************************************************
509 * RpcStringBindingComposeW (RPCRT4.@)
510 */
511 RPC_STATUS WINAPI RpcStringBindingComposeW( RPC_WSTR ObjUuid, RPC_WSTR Protseq,
512 RPC_WSTR NetworkAddr, RPC_WSTR Endpoint,
513 RPC_WSTR Options, RPC_WSTR* StringBinding )
514 {
515 DWORD len = 1;
516 RPC_WSTR data;
517
518 TRACE("(%s,%s,%s,%s,%s,%p)\n",
519 debugstr_w( ObjUuid ), debugstr_w( Protseq ),
520 debugstr_w( NetworkAddr ), debugstr_w( Endpoint ),
521 debugstr_w( Options ), StringBinding);
522
523 /* overestimate for each component for escaping of delimiters */
524 if (ObjUuid && *ObjUuid) len += strlenW(ObjUuid) * 2 + 1;
525 if (Protseq && *Protseq) len += strlenW(Protseq) * 2 + 1;
526 if (NetworkAddr && *NetworkAddr) len += strlenW(NetworkAddr) * 2;
527 if (Endpoint && *Endpoint) len += strlenW(Endpoint) * 2 + 2;
528 if (Options && *Options) len += strlenW(Options) * 2 + 2;
529
530 data = HeapAlloc(GetProcessHeap(), 0, len*sizeof(WCHAR));
531 *StringBinding = data;
532
533 if (ObjUuid && *ObjUuid) {
534 data = escape_string_binding_componentW(data, ObjUuid);
535 *data++ = '@';
536 }
537 if (Protseq && *Protseq) {
538 data = escape_string_binding_componentW(data, Protseq);
539 *data++ = ':';
540 }
541 if (NetworkAddr && *NetworkAddr) {
542 data = escape_string_binding_componentW(data, NetworkAddr);
543 }
544 if ((Endpoint && *Endpoint) ||
545 (Options && *Options)) {
546 *data++ = '[';
547 if (Endpoint && *Endpoint) {
548 data = escape_string_binding_componentW(data, Endpoint);
549 if (Options && *Options) *data++ = ',';
550 }
551 if (Options && *Options) {
552 data = escape_string_binding_componentW(data, Options);
553 }
554 *data++ = ']';
555 }
556 *data = 0;
557
558 return RPC_S_OK;
559 }
560
561
562 /***********************************************************************
563 * RpcStringBindingParseA (RPCRT4.@)
564 */
565 RPC_STATUS WINAPI RpcStringBindingParseA( RPC_CSTR StringBinding, RPC_CSTR *ObjUuid,
566 RPC_CSTR *Protseq, RPC_CSTR *NetworkAddr,
567 RPC_CSTR *Endpoint, RPC_CSTR *Options)
568 {
569 const unsigned char *data, *next;
570 static const char ep_opt[] = "endpoint=";
571 BOOL endpoint_already_found = FALSE;
572
573 TRACE("(%s,%p,%p,%p,%p,%p)\n", debugstr_a((char*)StringBinding),
574 ObjUuid, Protseq, NetworkAddr, Endpoint, Options);
575
576 if (ObjUuid) *ObjUuid = NULL;
577 if (Protseq) *Protseq = NULL;
578 if (NetworkAddr) *NetworkAddr = NULL;
579 if (Endpoint) *Endpoint = NULL;
580 if (Options) *Options = NULL;
581
582 data = StringBinding;
583
584 next = string_binding_find_delimiter(data, '@');
585 if (next) {
586 UUID uuid;
587 RPC_STATUS status;
588 RPC_CSTR str_uuid = unescape_string_binding_component(data, next - data);
589 status = UuidFromStringA(str_uuid, &uuid);
590 if (status != RPC_S_OK) {
591 HeapFree(GetProcessHeap(), 0, str_uuid);
592 return status;
593 }
594 if (ObjUuid)
595 *ObjUuid = str_uuid;
596 else
597 HeapFree(GetProcessHeap(), 0, str_uuid);
598 data = next+1;
599 }
600
601 next = string_binding_find_delimiter(data, ':');
602 if (next) {
603 if (Protseq) *Protseq = unescape_string_binding_component(data, next - data);
604 data = next+1;
605 }
606
607 next = string_binding_find_delimiter(data, '[');
608 if (next) {
609 const unsigned char *close;
610 RPC_CSTR opt;
611
612 if (NetworkAddr) *NetworkAddr = unescape_string_binding_component(data, next - data);
613 data = next+1;
614 close = string_binding_find_delimiter(data, ']');
615 if (!close) goto fail;
616
617 /* tokenize options */
618 while (data < close) {
619 next = string_binding_find_delimiter(data, ',');
620 if (!next || next > close) next = close;
621 /* FIXME: this is kind of inefficient */
622 opt = unescape_string_binding_component(data, next - data);
623 data = next+1;
624
625 /* parse option */
626 next = string_binding_find_delimiter(opt, '=');
627 if (!next) {
628 /* not an option, must be an endpoint */
629 if (endpoint_already_found) goto fail;
630 if (Endpoint) *Endpoint = opt;
631 else HeapFree(GetProcessHeap(), 0, opt);
632 endpoint_already_found = TRUE;
633 } else {
634 if (strncmp((const char *)opt, ep_opt, strlen(ep_opt)) == 0) {
635 /* endpoint option */
636 if (endpoint_already_found) goto fail;
637 if (Endpoint) *Endpoint = unescape_string_binding_component(next+1, -1);
638 HeapFree(GetProcessHeap(), 0, opt);
639 endpoint_already_found = TRUE;
640 } else {
641 /* network option */
642 if (Options) {
643 if (*Options) {
644 /* FIXME: this is kind of inefficient */
645 *Options = (unsigned char*) RPCRT4_strconcatA( (char*)*Options, (char *)opt);
646 HeapFree(GetProcessHeap(), 0, opt);
647 } else
648 *Options = opt;
649 } else
650 HeapFree(GetProcessHeap(), 0, opt);
651 }
652 }
653 }
654
655 data = close+1;
656 if (*data) goto fail;
657 }
658 else if (NetworkAddr)
659 *NetworkAddr = unescape_string_binding_component(data, -1);
660
661 return RPC_S_OK;
662
663 fail:
664 if (ObjUuid) RpcStringFreeA((unsigned char**)ObjUuid);
665 if (Protseq) RpcStringFreeA((unsigned char**)Protseq);
666 if (NetworkAddr) RpcStringFreeA((unsigned char**)NetworkAddr);
667 if (Endpoint) RpcStringFreeA((unsigned char**)Endpoint);
668 if (Options) RpcStringFreeA((unsigned char**)Options);
669 return RPC_S_INVALID_STRING_BINDING;
670 }
671
672 /***********************************************************************
673 * RpcStringBindingParseW (RPCRT4.@)
674 */
675 RPC_STATUS WINAPI RpcStringBindingParseW( RPC_WSTR StringBinding, RPC_WSTR *ObjUuid,
676 RPC_WSTR *Protseq, RPC_WSTR *NetworkAddr,
677 RPC_WSTR *Endpoint, RPC_WSTR *Options)
678 {
679 const WCHAR *data, *next;
680 static const WCHAR ep_opt[] = {'e','n','d','p','o','i','n','t','=',0};
681 BOOL endpoint_already_found = FALSE;
682
683 TRACE("(%s,%p,%p,%p,%p,%p)\n", debugstr_w(StringBinding),
684 ObjUuid, Protseq, NetworkAddr, Endpoint, Options);
685
686 if (ObjUuid) *ObjUuid = NULL;
687 if (Protseq) *Protseq = NULL;
688 if (NetworkAddr) *NetworkAddr = NULL;
689 if (Endpoint) *Endpoint = NULL;
690 if (Options) *Options = NULL;
691
692 data = StringBinding;
693
694 next = string_binding_find_delimiterW(data, '@');
695 if (next) {
696 UUID uuid;
697 RPC_STATUS status;
698 RPC_WSTR str_uuid = unescape_string_binding_componentW(data, next - data);
699 status = UuidFromStringW(str_uuid, &uuid);
700 if (status != RPC_S_OK) {
701 HeapFree(GetProcessHeap(), 0, str_uuid);
702 return status;
703 }
704 if (ObjUuid)
705 *ObjUuid = str_uuid;
706 else
707 HeapFree(GetProcessHeap(), 0, str_uuid);
708 data = next+1;
709 }
710
711 next = string_binding_find_delimiterW(data, ':');
712 if (next) {
713 if (Protseq) *Protseq = unescape_string_binding_componentW(data, next - data);
714 data = next+1;
715 }
716
717 next = string_binding_find_delimiterW(data, '[');
718 if (next) {
719 const WCHAR *close;
720 RPC_WSTR opt;
721
722 if (NetworkAddr) *NetworkAddr = unescape_string_binding_componentW(data, next - data);
723 data = next+1;
724 close = string_binding_find_delimiterW(data, ']');
725 if (!close) goto fail;
726
727 /* tokenize options */
728 while (data < close) {
729 next = string_binding_find_delimiterW(data, ',');
730 if (!next || next > close) next = close;
731 /* FIXME: this is kind of inefficient */
732 opt = unescape_string_binding_componentW(data, next - data);
733 data = next+1;
734
735 /* parse option */
736 next = string_binding_find_delimiterW(opt, '=');
737 if (!next) {
738 /* not an option, must be an endpoint */
739 if (endpoint_already_found) goto fail;
740 if (Endpoint) *Endpoint = opt;
741 else HeapFree(GetProcessHeap(), 0, opt);
742 endpoint_already_found = TRUE;
743 } else {
744 if (strncmpW(opt, ep_opt, strlenW(ep_opt)) == 0) {
745 /* endpoint option */
746 if (endpoint_already_found) goto fail;
747 if (Endpoint) *Endpoint = unescape_string_binding_componentW(next+1, -1);
748 HeapFree(GetProcessHeap(), 0, opt);
749 endpoint_already_found = TRUE;
750 } else {
751 /* network option */
752 if (Options) {
753 if (*Options) {
754 /* FIXME: this is kind of inefficient */
755 *Options = RPCRT4_strconcatW(*Options, opt);
756 HeapFree(GetProcessHeap(), 0, opt);
757 } else
758 *Options = opt;
759 } else
760 HeapFree(GetProcessHeap(), 0, opt);
761 }
762 }
763 }
764
765 data = close+1;
766 if (*data) goto fail;
767 } else if (NetworkAddr)
768 *NetworkAddr = unescape_string_binding_componentW(data, -1);
769
770 return RPC_S_OK;
771
772 fail:
773 if (ObjUuid) RpcStringFreeW(ObjUuid);
774 if (Protseq) RpcStringFreeW(Protseq);
775 if (NetworkAddr) RpcStringFreeW(NetworkAddr);
776 if (Endpoint) RpcStringFreeW(Endpoint);
777 if (Options) RpcStringFreeW(Options);
778 return RPC_S_INVALID_STRING_BINDING;
779 }
780
781 /***********************************************************************
782 * RpcBindingFree (RPCRT4.@)
783 */
784 RPC_STATUS WINAPI RpcBindingFree( RPC_BINDING_HANDLE* Binding )
785 {
786 RPC_STATUS status;
787 TRACE("(%p) = %p\n", Binding, *Binding);
788 if (*Binding)
789 status = RPCRT4_ReleaseBinding(*Binding);
790 else
791 status = RPC_S_INVALID_BINDING;
792 if (status == RPC_S_OK) *Binding = NULL;
793 return status;
794 }
795
796 /***********************************************************************
797 * RpcBindingVectorFree (RPCRT4.@)
798 */
799 RPC_STATUS WINAPI RpcBindingVectorFree( RPC_BINDING_VECTOR** BindingVector )
800 {
801 RPC_STATUS status;
802 unsigned long c;
803
804 TRACE("(%p)\n", BindingVector);
805 for (c=0; c<(*BindingVector)->Count; c++) {
806 status = RpcBindingFree(&(*BindingVector)->BindingH[c]);
807 }
808 HeapFree(GetProcessHeap(), 0, *BindingVector);
809 *BindingVector = NULL;
810 return RPC_S_OK;
811 }
812
813 /***********************************************************************
814 * RpcBindingInqObject (RPCRT4.@)
815 */
816 RPC_STATUS WINAPI RpcBindingInqObject( RPC_BINDING_HANDLE Binding, UUID* ObjectUuid )
817 {
818 RpcBinding* bind = (RpcBinding*)Binding;
819
820 TRACE("(%p,%p) = %s\n", Binding, ObjectUuid, debugstr_guid(&bind->ObjectUuid));
821 *ObjectUuid = bind->ObjectUuid;
822 return RPC_S_OK;
823 }
824
825 /***********************************************************************
826 * RpcBindingSetObject (RPCRT4.@)
827 */
828 RPC_STATUS WINAPI RpcBindingSetObject( RPC_BINDING_HANDLE Binding, UUID* ObjectUuid )
829 {
830 RpcBinding* bind = (RpcBinding*)Binding;
831
832 TRACE("(%p,%s)\n", Binding, debugstr_guid(ObjectUuid));
833 if (bind->server) return RPC_S_WRONG_KIND_OF_BINDING;
834 return RPCRT4_SetBindingObject(Binding, ObjectUuid);
835 }
836
837 /***********************************************************************
838 * RpcBindingFromStringBindingA (RPCRT4.@)
839 */
840 RPC_STATUS WINAPI RpcBindingFromStringBindingA( RPC_CSTR StringBinding, RPC_BINDING_HANDLE* Binding )
841 {
842 RPC_STATUS ret;
843 RpcBinding* bind = NULL;
844 RPC_CSTR ObjectUuid, Protseq, NetworkAddr, Endpoint, Options;
845 UUID Uuid;
846
847 TRACE("(%s,%p)\n", debugstr_a((char*)StringBinding), Binding);
848
849 ret = RpcStringBindingParseA(StringBinding, &ObjectUuid, &Protseq,
850 &NetworkAddr, &Endpoint, &Options);
851 if (ret != RPC_S_OK) return ret;
852
853 ret = UuidFromStringA(ObjectUuid, &Uuid);
854
855 if (ret == RPC_S_OK)
856 ret = RPCRT4_CreateBindingA(&bind, FALSE, (char*)Protseq);
857 if (ret != RPC_S_OK) return ret;
858 ret = RPCRT4_SetBindingObject(bind, &Uuid);
859 if (ret == RPC_S_OK)
860 ret = RPCRT4_CompleteBindingA(bind, (char*)NetworkAddr, (char*)Endpoint, (char*)Options);
861
862 RpcStringFreeA((unsigned char**)&Options);
863 RpcStringFreeA((unsigned char**)&Endpoint);
864 RpcStringFreeA((unsigned char**)&NetworkAddr);
865 RpcStringFreeA((unsigned char**)&Protseq);
866 RpcStringFreeA((unsigned char**)&ObjectUuid);
867
868 if (ret == RPC_S_OK)
869 *Binding = (RPC_BINDING_HANDLE)bind;
870 else
871 RPCRT4_ReleaseBinding(bind);
872
873 return ret;
874 }
875
876 /***********************************************************************
877 * RpcBindingFromStringBindingW (RPCRT4.@)
878 */
879 RPC_STATUS WINAPI RpcBindingFromStringBindingW( RPC_WSTR StringBinding, RPC_BINDING_HANDLE* Binding )
880 {
881 RPC_STATUS ret;
882 RpcBinding* bind = NULL;
883 RPC_WSTR ObjectUuid, Protseq, NetworkAddr, Endpoint, Options;
884 UUID Uuid;
885
886 TRACE("(%s,%p)\n", debugstr_w(StringBinding), Binding);
887
888 ret = RpcStringBindingParseW(StringBinding, &ObjectUuid, &Protseq,
889 &NetworkAddr, &Endpoint, &Options);
890 if (ret != RPC_S_OK) return ret;
891
892 ret = UuidFromStringW(ObjectUuid, &Uuid);
893
894 if (ret == RPC_S_OK)
895 ret = RPCRT4_CreateBindingW(&bind, FALSE, Protseq);
896 if (ret != RPC_S_OK) return ret;
897 ret = RPCRT4_SetBindingObject(bind, &Uuid);
898 if (ret == RPC_S_OK)
899 ret = RPCRT4_CompleteBindingW(bind, NetworkAddr, Endpoint, Options);
900
901 RpcStringFreeW(&Options);
902 RpcStringFreeW(&Endpoint);
903 RpcStringFreeW(&NetworkAddr);
904 RpcStringFreeW(&Protseq);
905 RpcStringFreeW(&ObjectUuid);
906
907 if (ret == RPC_S_OK)
908 *Binding = (RPC_BINDING_HANDLE)bind;
909 else
910 RPCRT4_ReleaseBinding(bind);
911
912 return ret;
913 }
914
915 /***********************************************************************
916 * RpcBindingToStringBindingA (RPCRT4.@)
917 */
918 RPC_STATUS WINAPI RpcBindingToStringBindingA( RPC_BINDING_HANDLE Binding, RPC_CSTR *StringBinding )
919 {
920 RPC_STATUS ret;
921 RpcBinding* bind = (RpcBinding*)Binding;
922 RPC_CSTR ObjectUuid;
923
924 TRACE("(%p,%p)\n", Binding, StringBinding);
925
926 if (UuidIsNil(&bind->ObjectUuid, &ret))
927 ObjectUuid = NULL;
928 else
929 {
930 ret = UuidToStringA(&bind->ObjectUuid, &ObjectUuid);
931 if (ret != RPC_S_OK) return ret;
932 }
933
934 ret = RpcStringBindingComposeA(ObjectUuid, (unsigned char*)bind->Protseq, (unsigned char*) bind->NetworkAddr,
935 (unsigned char*) bind->Endpoint, NULL, StringBinding);
936
937 RpcStringFreeA(&ObjectUuid);
938
939 return ret;
940 }
941
942 /***********************************************************************
943 * RpcBindingToStringBindingW (RPCRT4.@)
944 */
945 RPC_STATUS WINAPI RpcBindingToStringBindingW( RPC_BINDING_HANDLE Binding, RPC_WSTR *StringBinding )
946 {
947 RPC_STATUS ret;
948 unsigned char *str = NULL;
949 TRACE("(%p,%p)\n", Binding, StringBinding);
950 ret = RpcBindingToStringBindingA(Binding, &str);
951 *StringBinding = RPCRT4_strdupAtoW((char*)str);
952 RpcStringFreeA((unsigned char**)&str);
953 return ret;
954 }
955
956 /***********************************************************************
957 * I_RpcBindingInqTransportType (RPCRT4.@)
958 */
959 RPC_STATUS WINAPI I_RpcBindingInqTransportType( RPC_BINDING_HANDLE Binding, unsigned int * Type )
960 {
961
962 FIXME( "(%p,%p): stub\n", Binding, Type);
963 *Type = TRANSPORT_TYPE_LPC;
964 return RPC_S_OK;
965 }
966
967 /***********************************************************************
968 * I_RpcBindingSetAsync (RPCRT4.@)
969 * NOTES
970 * Exists in win9x and winNT, but with different number of arguments
971 * (9x version has 3 arguments, NT has 2).
972 */
973 RPC_STATUS WINAPI I_RpcBindingSetAsync( RPC_BINDING_HANDLE Binding, RPC_BLOCKING_FN BlockingFn)
974 {
975 RpcBinding* bind = (RpcBinding*)Binding;
976
977 TRACE( "(%p,%p): stub\n", Binding, BlockingFn );
978
979 bind->BlockingFn = BlockingFn;
980
981 return RPC_S_OK;
982 }
983
984 /***********************************************************************
985 * RpcBindingCopy (RPCRT4.@)
986 */
987 RPC_STATUS RPC_ENTRY RpcBindingCopy(
988 RPC_BINDING_HANDLE SourceBinding,
989 RPC_BINDING_HANDLE* DestinationBinding)
990 {
991 RpcBinding *DestBinding;
992 RpcBinding *SrcBinding = (RpcBinding*)SourceBinding;
993 RPC_STATUS status;
994
995 TRACE("(%p, %p)\n", SourceBinding, DestinationBinding);
996
997 status = RPCRT4_AllocBinding(&DestBinding, SrcBinding->server);
998 if (status != RPC_S_OK) return status;
999
1000 DestBinding->ObjectUuid = SrcBinding->ObjectUuid;
1001 DestBinding->BlockingFn = SrcBinding->BlockingFn;
1002 DestBinding->Protseq = RPCRT4_strndupA(SrcBinding->Protseq, -1);
1003 DestBinding->NetworkAddr = RPCRT4_strndupA(SrcBinding->NetworkAddr, -1);
1004 DestBinding->Endpoint = RPCRT4_strndupA(SrcBinding->Endpoint, -1);
1005 DestBinding->NetworkOptions = RPCRT4_strdupW(SrcBinding->NetworkOptions);
1006 if (SrcBinding->Assoc) SrcBinding->Assoc->refs++;
1007 DestBinding->Assoc = SrcBinding->Assoc;
1008
1009 if (SrcBinding->AuthInfo) RpcAuthInfo_AddRef(SrcBinding->AuthInfo);
1010 DestBinding->AuthInfo = SrcBinding->AuthInfo;
1011 if (SrcBinding->QOS) RpcQualityOfService_AddRef(SrcBinding->QOS);
1012 DestBinding->QOS = SrcBinding->QOS;
1013
1014 *DestinationBinding = DestBinding;
1015 return RPC_S_OK;
1016 }
1017
1018 /***********************************************************************
1019 * RpcBindingReset (RPCRT4.@)
1020 */
1021 RPC_STATUS RPC_ENTRY RpcBindingReset(RPC_BINDING_HANDLE Binding)
1022 {
1023 RpcBinding *bind = Binding;
1024
1025 TRACE("(%p)\n", Binding);
1026
1027 RPCRT4_strfree(bind->Endpoint);
1028 bind->Endpoint = NULL;
1029 if (bind->Assoc) RpcAssoc_Release(bind->Assoc);
1030 bind->Assoc = NULL;
1031
1032 return RPC_S_OK;
1033 }
1034
1035 /***********************************************************************
1036 * RpcImpersonateClient (RPCRT4.@)
1037 *
1038 * Impersonates the client connected via a binding handle so that security
1039 * checks are done in the context of the client.
1040 *
1041 * PARAMS
1042 * BindingHandle [I] Handle to the binding to the client.
1043 *
1044 * RETURNS
1045 * Success: RPS_S_OK.
1046 * Failure: RPC_STATUS value.
1047 *
1048 * NOTES
1049 *
1050 * If BindingHandle is NULL then the function impersonates the client
1051 * connected to the binding handle of the current thread.
1052 */
1053 RPC_STATUS WINAPI RpcImpersonateClient(RPC_BINDING_HANDLE BindingHandle)
1054 {
1055 FIXME("(%p): stub\n", BindingHandle);
1056 ImpersonateSelf(SecurityImpersonation);
1057 return RPC_S_OK;
1058 }
1059
1060 /***********************************************************************
1061 * RpcRevertToSelfEx (RPCRT4.@)
1062 *
1063 * Stops impersonating the client connected to the binding handle so that security
1064 * checks are no longer done in the context of the client.
1065 *
1066 * PARAMS
1067 * BindingHandle [I] Handle to the binding to the client.
1068 *
1069 * RETURNS
1070 * Success: RPS_S_OK.
1071 * Failure: RPC_STATUS value.
1072 *
1073 * NOTES
1074 *
1075 * If BindingHandle is NULL then the function stops impersonating the client
1076 * connected to the binding handle of the current thread.
1077 */
1078 RPC_STATUS WINAPI RpcRevertToSelfEx(RPC_BINDING_HANDLE BindingHandle)
1079 {
1080 FIXME("(%p): stub\n", BindingHandle);
1081 return RPC_S_OK;
1082 }
1083
1084 static inline BOOL has_nt_auth_identity(ULONG AuthnLevel)
1085 {
1086 switch (AuthnLevel)
1087 {
1088 case RPC_C_AUTHN_GSS_NEGOTIATE:
1089 case RPC_C_AUTHN_WINNT:
1090 case RPC_C_AUTHN_GSS_KERBEROS:
1091 return TRUE;
1092 default:
1093 return FALSE;
1094 }
1095 }
1096
1097 static RPC_STATUS RpcAuthInfo_Create(ULONG AuthnLevel, ULONG AuthnSvc,
1098 CredHandle cred, TimeStamp exp,
1099 ULONG cbMaxToken,
1100 RPC_AUTH_IDENTITY_HANDLE identity,
1101 RpcAuthInfo **ret)
1102 {
1103 RpcAuthInfo *AuthInfo = HeapAlloc(GetProcessHeap(), 0, sizeof(*AuthInfo));
1104 if (!AuthInfo)
1105 return ERROR_OUTOFMEMORY;
1106
1107 AuthInfo->refs = 1;
1108 AuthInfo->AuthnLevel = AuthnLevel;
1109 AuthInfo->AuthnSvc = AuthnSvc;
1110 AuthInfo->cred = cred;
1111 AuthInfo->exp = exp;
1112 AuthInfo->cbMaxToken = cbMaxToken;
1113 AuthInfo->identity = identity;
1114 AuthInfo->server_principal_name = NULL;
1115
1116 /* duplicate the SEC_WINNT_AUTH_IDENTITY structure, if applicable, to
1117 * enable better matching in RpcAuthInfo_IsEqual */
1118 if (identity && has_nt_auth_identity(AuthnSvc))
1119 {
1120 const SEC_WINNT_AUTH_IDENTITY_W *nt_identity = identity;
1121 AuthInfo->nt_identity = HeapAlloc(GetProcessHeap(), 0, sizeof(*AuthInfo->nt_identity));
1122 if (!AuthInfo->nt_identity)
1123 {
1124 HeapFree(GetProcessHeap(), 0, AuthInfo);
1125 return ERROR_OUTOFMEMORY;
1126 }
1127
1128 AuthInfo->nt_identity->Flags = SEC_WINNT_AUTH_IDENTITY_UNICODE;
1129 if (nt_identity->Flags & SEC_WINNT_AUTH_IDENTITY_UNICODE)
1130 AuthInfo->nt_identity->User = RPCRT4_strndupW(nt_identity->User, nt_identity->UserLength);
1131 else
1132 AuthInfo->nt_identity->User = RPCRT4_strndupAtoW((const char *)nt_identity->User, nt_identity->UserLength);
1133 AuthInfo->nt_identity->UserLength = nt_identity->UserLength;
1134 if (nt_identity->Flags & SEC_WINNT_AUTH_IDENTITY_UNICODE)
1135 AuthInfo->nt_identity->Domain = RPCRT4_strndupW(nt_identity->Domain, nt_identity->DomainLength);
1136 else
1137 AuthInfo->nt_identity->Domain = RPCRT4_strndupAtoW((const char *)nt_identity->Domain, nt_identity->DomainLength);
1138 AuthInfo->nt_identity->DomainLength = nt_identity->DomainLength;
1139 if (nt_identity->Flags & SEC_WINNT_AUTH_IDENTITY_UNICODE)
1140 AuthInfo->nt_identity->Password = RPCRT4_strndupW(nt_identity->Password, nt_identity->PasswordLength);
1141 else
1142 AuthInfo->nt_identity->Password = RPCRT4_strndupAtoW((const char *)nt_identity->Password, nt_identity->PasswordLength);
1143 AuthInfo->nt_identity->PasswordLength = nt_identity->PasswordLength;
1144
1145 if ((nt_identity->User && !AuthInfo->nt_identity->User) ||
1146 (nt_identity->Domain && !AuthInfo->nt_identity->Domain) ||
1147 (nt_identity->Password && !AuthInfo->nt_identity->Password))
1148 {
1149 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity->User);
1150 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity->Domain);
1151 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity->Password);
1152 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity);
1153 HeapFree(GetProcessHeap(), 0, AuthInfo);
1154 return ERROR_OUTOFMEMORY;
1155 }
1156 }
1157 else
1158 AuthInfo->nt_identity = NULL;
1159 *ret = AuthInfo;
1160 return RPC_S_OK;
1161 }
1162
1163 ULONG RpcAuthInfo_AddRef(RpcAuthInfo *AuthInfo)
1164 {
1165 return InterlockedIncrement(&AuthInfo->refs);
1166 }
1167
1168 ULONG RpcAuthInfo_Release(RpcAuthInfo *AuthInfo)
1169 {
1170 ULONG refs = InterlockedDecrement(&AuthInfo->refs);
1171
1172 if (!refs)
1173 {
1174 FreeCredentialsHandle(&AuthInfo->cred);
1175 if (AuthInfo->nt_identity)
1176 {
1177 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity->User);
1178 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity->Domain);
1179 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity->Password);
1180 HeapFree(GetProcessHeap(), 0, AuthInfo->nt_identity);
1181 }
1182 HeapFree(GetProcessHeap(), 0, AuthInfo->server_principal_name);
1183 HeapFree(GetProcessHeap(), 0, AuthInfo);
1184 }
1185
1186 return refs;
1187 }
1188
1189 BOOL RpcAuthInfo_IsEqual(const RpcAuthInfo *AuthInfo1, const RpcAuthInfo *AuthInfo2)
1190 {
1191 if (AuthInfo1 == AuthInfo2)
1192 return TRUE;
1193
1194 if (!AuthInfo1 || !AuthInfo2)
1195 return FALSE;
1196
1197 if ((AuthInfo1->AuthnLevel != AuthInfo2->AuthnLevel) ||
1198 (AuthInfo1->AuthnSvc != AuthInfo2->AuthnSvc))
1199 return FALSE;
1200
1201 if (AuthInfo1->identity == AuthInfo2->identity)
1202 return TRUE;
1203
1204 if (!AuthInfo1->identity || !AuthInfo2->identity)
1205 return FALSE;
1206
1207 if (has_nt_auth_identity(AuthInfo1->AuthnSvc))
1208 {
1209 const SEC_WINNT_AUTH_IDENTITY_W *identity1 = AuthInfo1->nt_identity;
1210 const SEC_WINNT_AUTH_IDENTITY_W *identity2 = AuthInfo2->nt_identity;
1211 /* compare user names */
1212 if (identity1->UserLength != identity2->UserLength ||
1213 memcmp(identity1->User, identity2->User, identity1->UserLength))
1214 return FALSE;
1215 /* compare domain names */
1216 if (identity1->DomainLength != identity2->DomainLength ||
1217 memcmp(identity1->Domain, identity2->Domain, identity1->DomainLength))
1218 return FALSE;
1219 /* compare passwords */
1220 if (identity1->PasswordLength != identity2->PasswordLength ||
1221 memcmp(identity1->Password, identity2->Password, identity1->PasswordLength))
1222 return FALSE;
1223 }
1224 else
1225 return FALSE;
1226
1227 return TRUE;
1228 }
1229
1230 static RPC_STATUS RpcQualityOfService_Create(const RPC_SECURITY_QOS *qos_src, BOOL unicode, RpcQualityOfService **qos_dst)
1231 {
1232 RpcQualityOfService *qos = HeapAlloc(GetProcessHeap(), 0, sizeof(*qos));
1233
1234 if (!qos)
1235 return RPC_S_OUT_OF_RESOURCES;
1236
1237 qos->refs = 1;
1238 qos->qos = HeapAlloc(GetProcessHeap(), 0, sizeof(*qos->qos));
1239 if (!qos->qos) goto error;
1240 qos->qos->Version = qos_src->Version;
1241 qos->qos->Capabilities = qos_src->Capabilities;
1242 qos->qos->IdentityTracking = qos_src->IdentityTracking;
1243 qos->qos->ImpersonationType = qos_src->ImpersonationType;
1244 qos->qos->AdditionalSecurityInfoType = 0;
1245
1246 if (qos_src->Version >= 2)
1247 {
1248 const RPC_SECURITY_QOS_V2_W *qos_src2 = (const RPC_SECURITY_QOS_V2_W *)qos_src;
1249 qos->qos->AdditionalSecurityInfoType = qos_src2->AdditionalSecurityInfoType;
1250 if (qos_src2->AdditionalSecurityInfoType == RPC_C_AUTHN_INFO_TYPE_HTTP)
1251 {
1252 const RPC_HTTP_TRANSPORT_CREDENTIALS_W *http_credentials_src = qos_src2->u.HttpCredentials;
1253 RPC_HTTP_TRANSPORT_CREDENTIALS_W *http_credentials_dst;
1254
1255 http_credentials_dst = HeapAlloc(GetProcessHeap(), 0, sizeof(*http_credentials_dst));
1256 qos->qos->u.HttpCredentials = http_credentials_dst;
1257 if (!http_credentials_dst) goto error;
1258 http_credentials_dst->TransportCredentials = NULL;
1259 http_credentials_dst->Flags = http_credentials_src->Flags;
1260 http_credentials_dst->AuthenticationTarget = http_credentials_src->AuthenticationTarget;
1261 http_credentials_dst->NumberOfAuthnSchemes = http_credentials_src->NumberOfAuthnSchemes;
1262 http_credentials_dst->AuthnSchemes = NULL;
1263 http_credentials_dst->ServerCertificateSubject = NULL;
1264 if (http_credentials_src->TransportCredentials)
1265 {
1266 SEC_WINNT_AUTH_IDENTITY_W *cred_dst;
1267 cred_dst = http_credentials_dst->TransportCredentials = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, sizeof(*cred_dst));
1268 if (!cred_dst) goto error;
1269 cred_dst->Flags = SEC_WINNT_AUTH_IDENTITY_UNICODE;
1270 if (unicode)
1271 {
1272 const SEC_WINNT_AUTH_IDENTITY_W *cred_src = http_credentials_src->TransportCredentials;
1273 cred_dst->UserLength = cred_src->UserLength;
1274 cred_dst->PasswordLength = cred_src->PasswordLength;
1275 cred_dst->DomainLength = cred_src->DomainLength;
1276 cred_dst->User = RPCRT4_strndupW(cred_src->User, cred_src->UserLength);
1277 cred_dst->Password = RPCRT4_strndupW(cred_src->Password, cred_src->PasswordLength);
1278 cred_dst->Domain = RPCRT4_strndupW(cred_src->Domain, cred_src->DomainLength);
1279 }
1280 else
1281 {
1282 const SEC_WINNT_AUTH_IDENTITY_A *cred_src = (const SEC_WINNT_AUTH_IDENTITY_A *)http_credentials_src->TransportCredentials;
1283 cred_dst->UserLength = MultiByteToWideChar(CP_ACP, 0, (char *)cred_src->User, cred_src->UserLength, NULL, 0);
1284 cred_dst->DomainLength = MultiByteToWideChar(CP_ACP, 0, (char *)cred_src->Domain, cred_src->DomainLength, NULL, 0);
1285 cred_dst->PasswordLength = MultiByteToWideChar(CP_ACP, 0, (char *)cred_src->Password, cred_src->PasswordLength, NULL, 0);
1286 cred_dst->User = HeapAlloc(GetProcessHeap(), 0, cred_dst->UserLength * sizeof(WCHAR));
1287 cred_dst->Password = HeapAlloc(GetProcessHeap(), 0, cred_dst->PasswordLength * sizeof(WCHAR));
1288 cred_dst->Domain = HeapAlloc(GetProcessHeap(), 0, cred_dst->DomainLength * sizeof(WCHAR));
1289 if (!cred_dst || !cred_dst->Password || !cred_dst->Domain) goto error;
1290 MultiByteToWideChar(CP_ACP, 0, (char *)cred_src->User, cred_src->UserLength, cred_dst->User, cred_dst->UserLength);
1291 MultiByteToWideChar(CP_ACP, 0, (char *)cred_src->Domain, cred_src->DomainLength, cred_dst->Domain, cred_dst->DomainLength);
1292 MultiByteToWideChar(CP_ACP, 0, (char *)cred_src->Password, cred_src->PasswordLength, cred_dst->Password, cred_dst->PasswordLength);
1293 }
1294 }
1295 if (http_credentials_src->NumberOfAuthnSchemes)
1296 {
1297 http_credentials_dst->AuthnSchemes = HeapAlloc(GetProcessHeap(), 0, http_credentials_src->NumberOfAuthnSchemes * sizeof(*http_credentials_dst->AuthnSchemes));
1298 if (!http_credentials_dst->AuthnSchemes) goto error;
1299 memcpy(http_credentials_dst->AuthnSchemes, http_credentials_src->AuthnSchemes, http_credentials_src->NumberOfAuthnSchemes * sizeof(*http_credentials_dst->AuthnSchemes));
1300 }
1301 if (http_credentials_src->ServerCertificateSubject)
1302 {
1303 if (unicode)
1304 http_credentials_dst->ServerCertificateSubject =
1305 RPCRT4_strndupW(http_credentials_src->ServerCertificateSubject,
1306 strlenW(http_credentials_src->ServerCertificateSubject));
1307 else
1308 http_credentials_dst->ServerCertificateSubject =
1309 RPCRT4_strdupAtoW((char *)http_credentials_src->ServerCertificateSubject);
1310 if (!http_credentials_dst->ServerCertificateSubject) goto error;
1311 }
1312 }
1313 }
1314 *qos_dst = qos;
1315 return RPC_S_OK;
1316
1317 error:
1318 if (qos->qos)
1319 {
1320 if (qos->qos->AdditionalSecurityInfoType == RPC_C_AUTHN_INFO_TYPE_HTTP &&
1321 qos->qos->u.HttpCredentials)
1322 {
1323 if (qos->qos->u.HttpCredentials->TransportCredentials)
1324 {
1325 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials->User);
1326 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials->Domain);
1327 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials->Password);
1328 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials);
1329 }
1330 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->AuthnSchemes);
1331 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->ServerCertificateSubject);
1332 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials);
1333 }
1334 HeapFree(GetProcessHeap(), 0, qos->qos);
1335 }
1336 HeapFree(GetProcessHeap(), 0, qos);
1337 return RPC_S_OUT_OF_RESOURCES;
1338 }
1339
1340 ULONG RpcQualityOfService_AddRef(RpcQualityOfService *qos)
1341 {
1342 return InterlockedIncrement(&qos->refs);
1343 }
1344
1345 ULONG RpcQualityOfService_Release(RpcQualityOfService *qos)
1346 {
1347 ULONG refs = InterlockedDecrement(&qos->refs);
1348
1349 if (!refs)
1350 {
1351 if (qos->qos->AdditionalSecurityInfoType == RPC_C_AUTHN_INFO_TYPE_HTTP)
1352 {
1353 if (qos->qos->u.HttpCredentials->TransportCredentials)
1354 {
1355 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials->User);
1356 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials->Domain);
1357 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials->Password);
1358 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->TransportCredentials);
1359 }
1360 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->AuthnSchemes);
1361 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials->ServerCertificateSubject);
1362 HeapFree(GetProcessHeap(), 0, qos->qos->u.HttpCredentials);
1363 }
1364 HeapFree(GetProcessHeap(), 0, qos->qos);
1365 HeapFree(GetProcessHeap(), 0, qos);
1366 }
1367 return refs;
1368 }
1369
1370 BOOL RpcQualityOfService_IsEqual(const RpcQualityOfService *qos1, const RpcQualityOfService *qos2)
1371 {
1372 if (qos1 == qos2)
1373 return TRUE;
1374
1375 if (!qos1 || !qos2)
1376 return FALSE;
1377
1378 TRACE("qos1 = { %d %d %d %d }, qos2 = { %d %d %d %d }\n",
1379 qos1->qos->Capabilities, qos1->qos->IdentityTracking,
1380 qos1->qos->ImpersonationType, qos1->qos->AdditionalSecurityInfoType,
1381 qos2->qos->Capabilities, qos2->qos->IdentityTracking,
1382 qos2->qos->ImpersonationType, qos2->qos->AdditionalSecurityInfoType);
1383
1384 if ((qos1->qos->Capabilities != qos2->qos->Capabilities) ||
1385 (qos1->qos->IdentityTracking != qos2->qos->IdentityTracking) ||
1386 (qos1->qos->ImpersonationType != qos2->qos->ImpersonationType) ||
1387 (qos1->qos->AdditionalSecurityInfoType != qos2->qos->AdditionalSecurityInfoType))
1388 return FALSE;
1389
1390 if (qos1->qos->AdditionalSecurityInfoType == RPC_C_AUTHN_INFO_TYPE_HTTP)
1391 {
1392 const RPC_HTTP_TRANSPORT_CREDENTIALS_W *http_credentials1 = qos1->qos->u.HttpCredentials;
1393 const RPC_HTTP_TRANSPORT_CREDENTIALS_W *http_credentials2 = qos2->qos->u.HttpCredentials;
1394
1395 if (http_credentials1->Flags != http_credentials2->Flags)
1396 return FALSE;
1397
1398 if (http_credentials1->AuthenticationTarget != http_credentials2->AuthenticationTarget)
1399 return FALSE;
1400
1401 /* authentication schemes and server certificate subject not currently used */
1402
1403 if (http_credentials1->TransportCredentials != http_credentials2->TransportCredentials)
1404 {
1405 const SEC_WINNT_AUTH_IDENTITY_W *identity1 = http_credentials1->TransportCredentials;
1406 const SEC_WINNT_AUTH_IDENTITY_W *identity2 = http_credentials2->TransportCredentials;
1407
1408 if (!identity1 || !identity2)
1409 return FALSE;
1410
1411 /* compare user names */
1412 if (identity1->UserLength != identity2->UserLength ||
1413 memcmp(identity1->User, identity2->User, identity1->UserLength))
1414 return FALSE;
1415 /* compare domain names */
1416 if (identity1->DomainLength != identity2->DomainLength ||
1417 memcmp(identity1->Domain, identity2->Domain, identity1->DomainLength))
1418 return FALSE;
1419 /* compare passwords */
1420 if (identity1->PasswordLength != identity2->PasswordLength ||
1421 memcmp(identity1->Password, identity2->Password, identity1->PasswordLength))
1422 return FALSE;
1423 }
1424 }
1425
1426 return TRUE;
1427 }
1428
1429 /***********************************************************************
1430 * RpcRevertToSelf (RPCRT4.@)
1431 */
1432 RPC_STATUS WINAPI RpcRevertToSelf(void)
1433 {
1434 FIXME("stub\n");
1435 RevertToSelf();
1436 return RPC_S_OK;
1437 }
1438
1439 /***********************************************************************
1440 * RpcMgmtSetComTimeout (RPCRT4.@)
1441 */
1442 RPC_STATUS WINAPI RpcMgmtSetComTimeout(RPC_BINDING_HANDLE BindingHandle, unsigned int Timeout)
1443 {
1444 FIXME("(%p, %d): stub\n", BindingHandle, Timeout);
1445 return RPC_S_OK;
1446 }
1447
1448 /***********************************************************************
1449 * RpcBindingInqAuthInfoExA (RPCRT4.@)
1450 */
1451 RPCRTAPI RPC_STATUS RPC_ENTRY
1452 RpcBindingInqAuthInfoExA( RPC_BINDING_HANDLE Binding, RPC_CSTR *ServerPrincName, ULONG *AuthnLevel,
1453 ULONG *AuthnSvc, RPC_AUTH_IDENTITY_HANDLE *AuthIdentity, ULONG *AuthzSvc,
1454 ULONG RpcQosVersion, RPC_SECURITY_QOS *SecurityQOS )
1455 {
1456 FIXME("%p %p %p %p %p %p %u %p\n", Binding, ServerPrincName, AuthnLevel,
1457 AuthnSvc, AuthIdentity, AuthzSvc, RpcQosVersion, SecurityQOS);
1458 return RPC_S_INVALID_BINDING;
1459 }
1460
1461 /***********************************************************************
1462 * RpcBindingInqAuthInfoExW (RPCRT4.@)
1463 */
1464 RPCRTAPI RPC_STATUS RPC_ENTRY
1465 RpcBindingInqAuthInfoExW( RPC_BINDING_HANDLE Binding, RPC_WSTR *ServerPrincName, ULONG *AuthnLevel,
1466 ULONG *AuthnSvc, RPC_AUTH_IDENTITY_HANDLE *AuthIdentity, ULONG *AuthzSvc,
1467 ULONG RpcQosVersion, RPC_SECURITY_QOS *SecurityQOS )
1468 {
1469 FIXME("%p %p %p %p %p %p %u %p\n", Binding, ServerPrincName, AuthnLevel,
1470 AuthnSvc, AuthIdentity, AuthzSvc, RpcQosVersion, SecurityQOS);
1471 return RPC_S_INVALID_BINDING;
1472 }
1473
1474 /***********************************************************************
1475 * RpcBindingInqAuthInfoA (RPCRT4.@)
1476 */
1477 RPCRTAPI RPC_STATUS RPC_ENTRY
1478 RpcBindingInqAuthInfoA( RPC_BINDING_HANDLE Binding, RPC_CSTR *ServerPrincName, ULONG *AuthnLevel,
1479 ULONG *AuthnSvc, RPC_AUTH_IDENTITY_HANDLE *AuthIdentity, ULONG *AuthzSvc )
1480 {
1481 FIXME("%p %p %p %p %p %p\n", Binding, ServerPrincName, AuthnLevel,
1482 AuthnSvc, AuthIdentity, AuthzSvc);
1483 return RPC_S_INVALID_BINDING;
1484 }
1485
1486 /***********************************************************************
1487 * RpcBindingInqAuthInfoW (RPCRT4.@)
1488 */
1489 RPCRTAPI RPC_STATUS RPC_ENTRY
1490 RpcBindingInqAuthInfoW( RPC_BINDING_HANDLE Binding, RPC_WSTR *ServerPrincName, ULONG *AuthnLevel,
1491 ULONG *AuthnSvc, RPC_AUTH_IDENTITY_HANDLE *AuthIdentity, ULONG *AuthzSvc )
1492 {
1493 FIXME("%p %p %p %p %p %p\n", Binding, ServerPrincName, AuthnLevel,
1494 AuthnSvc, AuthIdentity, AuthzSvc);
1495 return RPC_S_INVALID_BINDING;
1496 }
1497
1498 /***********************************************************************
1499 * RpcBindingSetAuthInfoExA (RPCRT4.@)
1500 */
1501 RPCRTAPI RPC_STATUS RPC_ENTRY
1502 RpcBindingSetAuthInfoExA( RPC_BINDING_HANDLE Binding, RPC_CSTR ServerPrincName,
1503 ULONG AuthnLevel, ULONG AuthnSvc,
1504 RPC_AUTH_IDENTITY_HANDLE AuthIdentity, ULONG AuthzSvr,
1505 RPC_SECURITY_QOS *SecurityQos )
1506 {
1507 RpcBinding* bind = (RpcBinding*)Binding;
1508 SECURITY_STATUS r;
1509 CredHandle cred;
1510 TimeStamp exp;
1511 ULONG package_count;
1512 ULONG i;
1513 PSecPkgInfoA packages;
1514 ULONG cbMaxToken;
1515
1516 TRACE("%p %s %u %u %p %u %p\n", Binding, debugstr_a((const char*)ServerPrincName),
1517 AuthnLevel, AuthnSvc, AuthIdentity, AuthzSvr, SecurityQos);
1518
1519 if (SecurityQos)
1520 {
1521 RPC_STATUS status;
1522
1523 TRACE("SecurityQos { Version=%d, Capabilities=0x%x, IdentityTracking=%d, ImpersonationLevel=%d",
1524 SecurityQos->Version, SecurityQos->Capabilities, SecurityQos->IdentityTracking, SecurityQos->ImpersonationType);
1525 if (SecurityQos->Version >= 2)
1526 {
1527 const RPC_SECURITY_QOS_V2_A *SecurityQos2 = (const RPC_SECURITY_QOS_V2_A *)SecurityQos;
1528 TRACE(", AdditionalSecurityInfoType=%d", SecurityQos2->AdditionalSecurityInfoType);
1529 if (SecurityQos2->AdditionalSecurityInfoType == RPC_C_AUTHN_INFO_TYPE_HTTP)
1530 TRACE(", { %p, 0x%x, %d, %d, %p, %s }",
1531 SecurityQos2->u.HttpCredentials->TransportCredentials,
1532 SecurityQos2->u.HttpCredentials->Flags,
1533 SecurityQos2->u.HttpCredentials->AuthenticationTarget,
1534 SecurityQos2->u.HttpCredentials->NumberOfAuthnSchemes,
1535 SecurityQos2->u.HttpCredentials->AuthnSchemes,
1536 SecurityQos2->u.HttpCredentials->ServerCertificateSubject);
1537 }
1538 TRACE("}\n");
1539 status = RpcQualityOfService_Create(SecurityQos, FALSE, &bind->QOS);
1540 if (status != RPC_S_OK)
1541 return status;
1542 }
1543 else
1544 {
1545 if (bind->QOS) RpcQualityOfService_Release(bind->QOS);
1546 bind->QOS = NULL;
1547 }
1548
1549 if (AuthnSvc == RPC_C_AUTHN_DEFAULT)
1550 AuthnSvc = RPC_C_AUTHN_WINNT;
1551
1552 /* FIXME: the mapping should probably be retrieved using SSPI somehow */
1553 if (AuthnLevel == RPC_C_AUTHN_LEVEL_DEFAULT)
1554 AuthnLevel = RPC_C_AUTHN_LEVEL_NONE;
1555
1556 if ((AuthnLevel == RPC_C_AUTHN_LEVEL_NONE) || (AuthnSvc == RPC_C_AUTHN_NONE))
1557 {
1558 if (bind->AuthInfo) RpcAuthInfo_Release(bind->AuthInfo);
1559 bind->AuthInfo = NULL;
1560 return RPC_S_OK;
1561 }
1562
1563 if (AuthnLevel > RPC_C_AUTHN_LEVEL_PKT_PRIVACY)
1564 {
1565 FIXME("unknown AuthnLevel %u\n", AuthnLevel);
1566 return RPC_S_UNKNOWN_AUTHN_LEVEL;
1567 }
1568
1569 /* RPC_C_AUTHN_WINNT ignores the AuthzSvr parameter */
1570 if (AuthzSvr && AuthnSvc != RPC_C_AUTHN_WINNT)
1571 {
1572 FIXME("unsupported AuthzSvr %u\n", AuthzSvr);
1573 return RPC_S_UNKNOWN_AUTHZ_SERVICE;
1574 }
1575
1576 r = EnumerateSecurityPackagesA(&package_count, &packages);
1577 if (r != SEC_E_OK)
1578 {
1579 ERR("EnumerateSecurityPackagesA failed with error 0x%08x\n", r);
1580 return RPC_S_SEC_PKG_ERROR;
1581 }
1582
1583 for (i = 0; i < package_count; i++)
1584 if (packages[i].wRPCID == AuthnSvc)
1585 break;
1586
1587 if (i == package_count)
1588 {
1589 FIXME("unsupported AuthnSvc %u\n", AuthnSvc);
1590 FreeContextBuffer(packages);
1591 return RPC_S_UNKNOWN_AUTHN_SERVICE;
1592 }
1593
1594 TRACE("found package %s for service %u\n", packages[i].Name, AuthnSvc);
1595 r = AcquireCredentialsHandleA(NULL, packages[i].Name, SECPKG_CRED_OUTBOUND, NULL,
1596 AuthIdentity, NULL, NULL, &cred, &exp);
1597 cbMaxToken = packages[i].cbMaxToken;
1598 FreeContextBuffer(packages);
1599 if (r == ERROR_SUCCESS)
1600 {
1601 RpcAuthInfo *new_auth_info;
1602 r = RpcAuthInfo_Create(AuthnLevel, AuthnSvc, cred, exp, cbMaxToken,
1603 AuthIdentity, &new_auth_info);
1604 if (r == RPC_S_OK)
1605 {
1606 new_auth_info->server_principal_name = RPCRT4_strdupAtoW((char *)ServerPrincName);
1607 if (new_auth_info->server_principal_name)
1608 {
1609 if (bind->AuthInfo) RpcAuthInfo_Release(bind->AuthInfo);
1610 bind->AuthInfo = new_auth_info;
1611 }
1612 else
1613 {
1614 RpcAuthInfo_Release(new_auth_info);
1615 r = ERROR_OUTOFMEMORY;
1616 }
1617 }
1618 else
1619 FreeCredentialsHandle(&cred);
1620 return r;
1621 }
1622 else
1623 {
1624 ERR("AcquireCredentialsHandleA failed with error 0x%08x\n", r);
1625 return RPC_S_SEC_PKG_ERROR;
1626 }
1627 }
1628
1629 /***********************************************************************
1630 * RpcBindingSetAuthInfoExW (RPCRT4.@)
1631 */
1632 RPCRTAPI RPC_STATUS RPC_ENTRY
1633 RpcBindingSetAuthInfoExW( RPC_BINDING_HANDLE Binding, RPC_WSTR ServerPrincName, ULONG AuthnLevel,
1634 ULONG AuthnSvc, RPC_AUTH_IDENTITY_HANDLE AuthIdentity, ULONG AuthzSvr,
1635 RPC_SECURITY_QOS *SecurityQos )
1636 {
1637 RpcBinding* bind = (RpcBinding*)Binding;
1638 SECURITY_STATUS r;
1639 CredHandle cred;
1640 TimeStamp exp;
1641 ULONG package_count;
1642 ULONG i;
1643 PSecPkgInfoW packages;
1644 ULONG cbMaxToken;
1645
1646 TRACE("%p %s %u %u %p %u %p\n", Binding, debugstr_w((const WCHAR*)ServerPrincName),
1647 AuthnLevel, AuthnSvc, AuthIdentity, AuthzSvr, SecurityQos);
1648
1649 if (SecurityQos)
1650 {
1651 RPC_STATUS status;
1652
1653 TRACE("SecurityQos { Version=%d, Capabilities=0x%x, IdentityTracking=%d, ImpersonationLevel=%d",
1654 SecurityQos->Version, SecurityQos->Capabilities, SecurityQos->IdentityTracking, SecurityQos->ImpersonationType);
1655 if (SecurityQos->Version >= 2)
1656 {
1657 const RPC_SECURITY_QOS_V2_W *SecurityQos2 = (const RPC_SECURITY_QOS_V2_W *)SecurityQos;
1658 TRACE(", AdditionalSecurityInfoType=%d", SecurityQos2->AdditionalSecurityInfoType);
1659 if (SecurityQos2->AdditionalSecurityInfoType == RPC_C_AUTHN_INFO_TYPE_HTTP)
1660 TRACE(", { %p, 0x%x, %d, %d, %p, %s }",
1661 SecurityQos2->u.HttpCredentials->TransportCredentials,
1662 SecurityQos2->u.HttpCredentials->Flags,
1663 SecurityQos2->u.HttpCredentials->AuthenticationTarget,
1664 SecurityQos2->u.HttpCredentials->NumberOfAuthnSchemes,
1665 SecurityQos2->u.HttpCredentials->AuthnSchemes,
1666 debugstr_w(SecurityQos2->u.HttpCredentials->ServerCertificateSubject));
1667 }
1668 TRACE("}\n");
1669 status = RpcQualityOfService_Create(SecurityQos, TRUE, &bind->QOS);
1670 if (status != RPC_S_OK)
1671 return status;
1672 }
1673 else
1674 {
1675 if (bind->QOS) RpcQualityOfService_Release(bind->QOS);
1676 bind->QOS = NULL;
1677 }
1678
1679 if (AuthnSvc == RPC_C_AUTHN_DEFAULT)
1680 AuthnSvc = RPC_C_AUTHN_WINNT;
1681
1682 /* FIXME: the mapping should probably be retrieved using SSPI somehow */
1683 if (AuthnLevel == RPC_C_AUTHN_LEVEL_DEFAULT)
1684 AuthnLevel = RPC_C_AUTHN_LEVEL_NONE;
1685
1686 if ((AuthnLevel == RPC_C_AUTHN_LEVEL_NONE) || (AuthnSvc == RPC_C_AUTHN_NONE))
1687 {
1688 if (bind->AuthInfo) RpcAuthInfo_Release(bind->AuthInfo);
1689 bind->AuthInfo = NULL;
1690 return RPC_S_OK;
1691 }
1692
1693 if (AuthnLevel > RPC_C_AUTHN_LEVEL_PKT_PRIVACY)
1694 {
1695 FIXME("unknown AuthnLevel %u\n", AuthnLevel);
1696 return RPC_S_UNKNOWN_AUTHN_LEVEL;
1697 }
1698
1699 /* RPC_C_AUTHN_WINNT ignores the AuthzSvr parameter */
1700 if (AuthzSvr && AuthnSvc != RPC_C_AUTHN_WINNT)
1701 {
1702 FIXME("unsupported AuthzSvr %u\n", AuthzSvr);
1703 return RPC_S_UNKNOWN_AUTHZ_SERVICE;
1704 }
1705
1706 r = EnumerateSecurityPackagesW(&package_count, &packages);
1707 if (r != SEC_E_OK)
1708 {
1709 ERR("EnumerateSecurityPackagesW failed with error 0x%08x\n", r);
1710 return RPC_S_SEC_PKG_ERROR;
1711 }
1712
1713 for (i = 0; i < package_count; i++)
1714 if (packages[i].wRPCID == AuthnSvc)
1715 break;
1716
1717 if (i == package_count)
1718 {
1719 FIXME("unsupported AuthnSvc %u\n", AuthnSvc);
1720 FreeContextBuffer(packages);
1721 return RPC_S_UNKNOWN_AUTHN_SERVICE;
1722 }
1723
1724 TRACE("found package %s for service %u\n", debugstr_w(packages[i].Name), AuthnSvc);
1725 r = AcquireCredentialsHandleW(NULL, packages[i].Name, SECPKG_CRED_OUTBOUND, NULL,
1726 AuthIdentity, NULL, NULL, &cred, &exp);
1727 cbMaxToken = packages[i].cbMaxToken;
1728 FreeContextBuffer(packages);
1729 if (r == ERROR_SUCCESS)
1730 {
1731 RpcAuthInfo *new_auth_info;
1732 r = RpcAuthInfo_Create(AuthnLevel, AuthnSvc, cred, exp, cbMaxToken,
1733 AuthIdentity, &new_auth_info);
1734 if (r == RPC_S_OK)
1735 {
1736 new_auth_info->server_principal_name = RPCRT4_strdupW(ServerPrincName);
1737 if (!ServerPrincName || new_auth_info->server_principal_name)
1738 {
1739 if (bind->AuthInfo) RpcAuthInfo_Release(bind->AuthInfo);
1740 bind->AuthInfo = new_auth_info;
1741 }
1742 else
1743 {
1744 RpcAuthInfo_Release(new_auth_info);
1745 r = ERROR_OUTOFMEMORY;
1746 }
1747 }
1748 else
1749 FreeCredentialsHandle(&cred);
1750 return r;
1751 }
1752 else
1753 {
1754 ERR("AcquireCredentialsHandleW failed with error 0x%08x\n", r);
1755 return RPC_S_SEC_PKG_ERROR;
1756 }
1757 }
1758
1759 /***********************************************************************
1760 * RpcBindingSetAuthInfoA (RPCRT4.@)
1761 */
1762 RPCRTAPI RPC_STATUS RPC_ENTRY
1763 RpcBindingSetAuthInfoA( RPC_BINDING_HANDLE Binding, RPC_CSTR ServerPrincName, ULONG AuthnLevel,
1764 ULONG AuthnSvc, RPC_AUTH_IDENTITY_HANDLE AuthIdentity, ULONG AuthzSvr )
1765 {
1766 TRACE("%p %s %u %u %p %u\n", Binding, debugstr_a((const char*)ServerPrincName),
1767 AuthnLevel, AuthnSvc, AuthIdentity, AuthzSvr);
1768 return RpcBindingSetAuthInfoExA(Binding, ServerPrincName, AuthnLevel, AuthnSvc, AuthIdentity, AuthzSvr, NULL);
1769 }
1770
1771 /***********************************************************************
1772 * RpcBindingSetAuthInfoW (RPCRT4.@)
1773 */
1774 RPCRTAPI RPC_STATUS RPC_ENTRY
1775 RpcBindingSetAuthInfoW( RPC_BINDING_HANDLE Binding, RPC_WSTR ServerPrincName, ULONG AuthnLevel,
1776 ULONG AuthnSvc, RPC_AUTH_IDENTITY_HANDLE AuthIdentity, ULONG AuthzSvr )
1777 {
1778 TRACE("%p %s %u %u %p %u\n", Binding, debugstr_w((const WCHAR*)ServerPrincName),
1779 AuthnLevel, AuthnSvc, AuthIdentity, AuthzSvr);
1780 return RpcBindingSetAuthInfoExW(Binding, ServerPrincName, AuthnLevel, AuthnSvc, AuthIdentity, AuthzSvr, NULL);
1781 }
1782
1783 /***********************************************************************
1784 * RpcBindingSetOption (RPCRT4.@)
1785 */
1786 RPC_STATUS WINAPI RpcBindingSetOption(RPC_BINDING_HANDLE BindingHandle, ULONG Option, ULONG_PTR OptionValue)
1787 {
1788 FIXME("(%p, %d, %ld): stub\n", BindingHandle, Option, OptionValue);
1789 return RPC_S_OK;
1790 }