source: trunk/src/crypt32/oid.c@ 21311

Last change on this file since 21311 was 21311, checked in by vladest, 16 years ago

Added CRYPT32 and MSCMS APIs support

File size: 55.9 KB
Line 
1/*
2 * Copyright 2002 Mike McCormack for CodeWeavers
3 * Copyright 2005-2006 Juan Lang
4 *
5 * This library is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU Lesser General Public
7 * License as published by the Free Software Foundation; either
8 * version 2.1 of the License, or (at your option) any later version.
9 *
10 * This library is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * Lesser General Public License for more details.
14 *
15 * You should have received a copy of the GNU Lesser General Public
16 * License along with this library; if not, write to the Free Software
17 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
18 */
19
20#include "config.h"
21#include "wine/port.h"
22
23#include <stdio.h>
24#include <stdarg.h>
25#define NONAMELESSUNION
26#include "windef.h"
27#include "winbase.h"
28#include "wincrypt.h"
29#include "winreg.h"
30#include "winuser.h"
31#include "wine/debug.h"
32#include "wine/list.h"
33#include "crypt32_private.h"
34#include "cryptres.h"
35
36//WINE_DEFAULT_DEBUG_CHANNEL(crypt);
37
38static const WCHAR DllW[] = { 'D','l','l',0 };
39
40static void init_oid_info(void);
41static void free_function_sets(void);
42static void free_oid_info(void);
43
44void crypt_oid_init(void)
45{
46 init_oid_info();
47}
48
49void crypt_oid_free(void)
50{
51 dprintf(("oid: cp1"));
52 free_function_sets();
53 dprintf(("oid: cp2"));
54 free_oid_info();
55 dprintf(("oid: cp3"));
56}
57
58static RTL_CRITICAL_SECTION funcSetCS;
59static RTL_CRITICAL_SECTION_DEBUG funcSetCSDebug =
60{
61 0, 0, &funcSetCS,
62 { &funcSetCSDebug.ProcessLocksList, &funcSetCSDebug.ProcessLocksList },
63 0, 0, { (DWORD_PTR)(__FILE__ ": funcSetCS") }
64};
65static RTL_CRITICAL_SECTION funcSetCS = { &funcSetCSDebug, -1, 0, 0, 0, 0 };
66static struct list funcSets = { &funcSets, &funcSets };
67
68struct OIDFunctionSet
69{
70 LPSTR name;
71 RTL_CRITICAL_SECTION cs; /* protects functions */
72 struct list functions;
73 struct list next;
74};
75
76struct OIDFunction
77{
78 DWORD encoding;
79 CRYPT_OID_FUNC_ENTRY entry;
80 struct list next;
81};
82
83static const WCHAR ROOT[] = {'R','O','O','T',0};
84static const WCHAR MY[] = {'M','Y',0};
85static const WCHAR CA[] = {'C','A',0};
86static const WCHAR ADDRESSBOOK[] = {'A','D','D','R','E','S','S','B','O','O','K',0};
87static const LPCWSTR LocalizedKeys[] = {ROOT,MY,CA,ADDRESSBOOK};
88static WCHAR LocalizedNames[4][256];
89
90static void free_function_sets(void)
91{
92 struct OIDFunctionSet *setCursor, *setNext;
93
94 LIST_FOR_EACH_ENTRY_SAFE(setCursor, setNext, &funcSets,
95 struct OIDFunctionSet, next)
96 {
97 struct OIDFunction *functionCursor, *funcNext;
98
99 list_remove(&setCursor->next);
100 CryptMemFree(setCursor->name);
101 LIST_FOR_EACH_ENTRY_SAFE(functionCursor, funcNext,
102 &setCursor->functions, struct OIDFunction, next)
103 {
104 list_remove(&functionCursor->next);
105 CryptMemFree(functionCursor);
106 }
107 setCursor->cs.DebugInfo->Spare[0] = 0;
108 DeleteCriticalSection(&setCursor->cs);
109 CryptMemFree(setCursor);
110 }
111}
112
113/* There is no free function associated with this; therefore, the sets are
114 * freed when crypt32.dll is unloaded.
115 */
116HCRYPTOIDFUNCSET WINAPI CryptInitOIDFunctionSet(LPCSTR pszFuncName,
117 DWORD dwFlags)
118{
119 struct OIDFunctionSet *cursor, *ret = NULL;
120
121 TRACE("(%s, %x)\n", debugstr_a(pszFuncName), dwFlags);
122
123 EnterCriticalSection(&funcSetCS);
124 LIST_FOR_EACH_ENTRY(cursor, &funcSets, struct OIDFunctionSet, next)
125 {
126 if (!strcasecmp(pszFuncName, cursor->name))
127 {
128 ret = (HCRYPTOIDFUNCSET)cursor;
129 break;
130 }
131 }
132 if (!ret)
133 {
134 ret = CryptMemAlloc(sizeof(struct OIDFunctionSet));
135 if (ret)
136 {
137 memset(ret, 0, sizeof(*ret));
138 ret->name = CryptMemAlloc(strlen(pszFuncName) + 1);
139 if (ret->name)
140 {
141 InitializeCriticalSection(&ret->cs);
142 ret->cs.DebugInfo->Spare[0] = (DWORD_PTR)(__FILE__ ": OIDFunctionSet.cs");
143 list_init(&ret->functions);
144 strcpy(ret->name, pszFuncName);
145 list_add_tail(&funcSets, &ret->next);
146 }
147 else
148 {
149 CryptMemFree(ret);
150 ret = NULL;
151 }
152 }
153 }
154 LeaveCriticalSection(&funcSetCS);
155
156 return (HCRYPTOIDFUNCSET)ret;
157}
158
159static char *CRYPT_GetKeyName(DWORD dwEncodingType, LPCSTR pszFuncName,
160 LPCSTR pszOID)
161{
162 static const char szEncodingTypeFmt[] =
163 "Software\\Microsoft\\Cryptography\\OID\\EncodingType %d\\%s\\%s";
164 UINT len;
165 char numericOID[7]; /* enough for "#65535" */
166 const char *oid;
167 LPSTR szKey;
168
169 /* MSDN says the encoding type is a mask, but it isn't treated that way.
170 * (E.g., if dwEncodingType were 3, the key names "EncodingType 1" and
171 * "EncodingType 2" would be expected if it were a mask. Instead native
172 * stores values in "EncodingType 3".
173 */
174 if (!HIWORD(pszOID))
175 {
176 snprintf(numericOID, sizeof(numericOID), "#%d", LOWORD(pszOID));
177 oid = numericOID;
178 }
179 else
180 oid = pszOID;
181
182 /* This is enough: the lengths of the two string parameters are explicitly
183 * counted, and we need up to five additional characters for the encoding
184 * type. These are covered by the "%d", "%s", and "%s" characters in the
185 * format specifier that are removed by sprintf.
186 */
187 len = sizeof(szEncodingTypeFmt) + lstrlenA(pszFuncName) + lstrlenA(oid);
188 szKey = CryptMemAlloc(len);
189 if (szKey)
190 sprintf(szKey, szEncodingTypeFmt,
191 GET_CERT_ENCODING_TYPE(dwEncodingType), pszFuncName, oid);
192 return szKey;
193}
194
195BOOL WINAPI CryptGetDefaultOIDDllList(HCRYPTOIDFUNCSET hFuncSet,
196 DWORD dwEncodingType, LPWSTR pwszDllList, DWORD *pcchDllList)
197{
198 BOOL ret = TRUE;
199 struct OIDFunctionSet *set = (struct OIDFunctionSet *)hFuncSet;
200 char *keyName;
201 HKEY key;
202 long rc;
203
204 TRACE("(%p, %d, %p, %p)\n", hFuncSet, dwEncodingType, pwszDllList,
205 pcchDllList);
206
207 keyName = CRYPT_GetKeyName(dwEncodingType, set->name, "DEFAULT");
208 rc = RegCreateKeyExA(HKEY_LOCAL_MACHINE, keyName, 0, NULL, 0,
209 KEY_READ, NULL, &key, NULL);
210 if (!rc)
211 {
212 DWORD size = *pcchDllList * sizeof(WCHAR);
213
214 rc = RegQueryValueExW(key, DllW, NULL, NULL, (LPBYTE)pwszDllList,
215 &size);
216 if (!rc)
217 *pcchDllList = size / sizeof(WCHAR);
218 else
219 {
220 /* No value, return an empty list */
221 if (pwszDllList && *pcchDllList)
222 *pwszDllList = '\0';
223 *pcchDllList = 1;
224 }
225 RegCloseKey(key);
226 }
227 else
228 {
229 /* No value, return an empty list */
230 if (pwszDllList && *pcchDllList)
231 *pwszDllList = '\0';
232 *pcchDllList = 1;
233 }
234 CryptMemFree(keyName);
235
236 return ret;
237}
238
239BOOL WINAPI CryptInstallOIDFunctionAddress(HMODULE hModule,
240 DWORD dwEncodingType, LPCSTR pszFuncName, DWORD cFuncEntry,
241 const CRYPT_OID_FUNC_ENTRY rgFuncEntry[], DWORD dwFlags)
242{
243 BOOL ret = TRUE;
244 struct OIDFunctionSet *set;
245
246 TRACE("(%p, %d, %s, %d, %p, %08x)\n", hModule, dwEncodingType,
247 debugstr_a(pszFuncName), cFuncEntry, rgFuncEntry, dwFlags);
248
249 set = (struct OIDFunctionSet *)CryptInitOIDFunctionSet(pszFuncName, 0);
250 if (set)
251 {
252 DWORD i;
253
254 EnterCriticalSection(&set->cs);
255 for (i = 0; ret && i < cFuncEntry; i++)
256 {
257 struct OIDFunction *func;
258
259 if (HIWORD(rgFuncEntry[i].pszOID))
260 func = CryptMemAlloc(sizeof(struct OIDFunction)
261 + strlen(rgFuncEntry[i].pszOID) + 1);
262 else
263 func = CryptMemAlloc(sizeof(struct OIDFunction));
264 if (func)
265 {
266 func->encoding = GET_CERT_ENCODING_TYPE(dwEncodingType);
267 if (HIWORD(rgFuncEntry[i].pszOID))
268 {
269 LPSTR oid;
270
271 oid = (LPSTR)((LPBYTE)func + sizeof(*func));
272 strcpy(oid, rgFuncEntry[i].pszOID);
273 func->entry.pszOID = oid;
274 }
275 else
276 func->entry.pszOID = rgFuncEntry[i].pszOID;
277 func->entry.pvFuncAddr = rgFuncEntry[i].pvFuncAddr;
278 list_add_tail(&set->functions, &func->next);
279 }
280 else
281 ret = FALSE;
282 }
283 LeaveCriticalSection(&set->cs);
284 }
285 else
286 ret = FALSE;
287 return ret;
288}
289
290struct FuncAddr
291{
292 HMODULE lib;
293 LPWSTR dllList;
294 LPWSTR currentDll;
295};
296
297static BOOL CRYPT_GetFuncFromReg(DWORD dwEncodingType, LPCSTR pszOID,
298 LPCSTR szFuncName, LPVOID *ppvFuncAddr, HCRYPTOIDFUNCADDR *phFuncAddr)
299{
300 BOOL ret = FALSE;
301 char *keyName;
302 const char *funcName;
303 HKEY key;
304 long rc;
305
306 keyName = CRYPT_GetKeyName(dwEncodingType, szFuncName, pszOID);
307 rc = RegOpenKeyExA(HKEY_LOCAL_MACHINE, keyName, 0, KEY_READ, &key);
308 if (!rc)
309 {
310 DWORD type, size = 0;
311
312 rc = RegQueryValueExA(key, "FuncName", NULL, &type, NULL, &size);
313 if ((!rc || rc == ERROR_MORE_DATA) && type == REG_SZ)
314 {
315 funcName = CryptMemAlloc(size);
316 rc = RegQueryValueExA(key, "FuncName", NULL, &type,
317 (LPBYTE)funcName, &size);
318 }
319 else
320 funcName = szFuncName;
321 rc = RegQueryValueExW(key, DllW, NULL, &type, NULL, &size);
322 if ((!rc || rc == ERROR_MORE_DATA) && type == REG_SZ)
323 {
324 LPWSTR dllName = CryptMemAlloc(size);
325
326 if (dllName)
327 {
328 rc = RegQueryValueExW(key, DllW, NULL, NULL,
329 (LPBYTE)dllName, &size);
330 if (!rc)
331 {
332 HMODULE lib;
333
334 /* This is a bit of a hack; MSDN describes a more
335 * complicated unload routine than this will allow.
336 * Still, this seems to suffice for now.
337 */
338 lib = LoadLibraryW(dllName);
339 if (lib)
340 {
341 *ppvFuncAddr = GetProcAddress(lib, funcName);
342 if (*ppvFuncAddr)
343 {
344 struct FuncAddr *addr =
345 CryptMemAlloc(sizeof(struct FuncAddr));
346
347 if (addr)
348 {
349 addr->lib = lib;
350 addr->dllList = addr->currentDll = NULL;
351 *phFuncAddr = addr;
352 ret = TRUE;
353 }
354 else
355 {
356 *phFuncAddr = NULL;
357 FreeLibrary(lib);
358 }
359 }
360 else
361 {
362 /* Unload the library, the caller doesn't want
363 * to unload it when the return value is NULL.
364 */
365 FreeLibrary(lib);
366 }
367 }
368 }
369 else
370 SetLastError(rc);
371 CryptMemFree(dllName);
372 }
373 }
374 else
375 SetLastError(rc);
376 if (funcName != szFuncName)
377 CryptMemFree((char *)funcName);
378 RegCloseKey(key);
379 }
380 else
381 SetLastError(rc);
382 CryptMemFree(keyName);
383 return ret;
384}
385
386BOOL WINAPI CryptGetOIDFunctionAddress(HCRYPTOIDFUNCSET hFuncSet,
387 DWORD dwEncodingType, LPCSTR pszOID, DWORD dwFlags, void **ppvFuncAddr,
388 HCRYPTOIDFUNCADDR *phFuncAddr)
389{
390 BOOL ret = FALSE;
391 struct OIDFunctionSet *set = (struct OIDFunctionSet *)hFuncSet;
392
393 TRACE("(%p, %d, %s, %08x, %p, %p)\n", hFuncSet, dwEncodingType,
394 debugstr_a(pszOID), dwFlags, ppvFuncAddr, phFuncAddr);
395
396 *ppvFuncAddr = NULL;
397 if (!(dwFlags & CRYPT_GET_INSTALLED_OID_FUNC_FLAG))
398 {
399 struct OIDFunction *function;
400
401 EnterCriticalSection(&set->cs);
402 LIST_FOR_EACH_ENTRY(function, &set->functions, struct OIDFunction, next)
403 {
404 if (function->encoding == GET_CERT_ENCODING_TYPE(dwEncodingType))
405 {
406 if (HIWORD(pszOID))
407 {
408 if (HIWORD(function->entry.pszOID) &&
409 !strcasecmp(function->entry.pszOID, pszOID))
410 {
411 *ppvFuncAddr = function->entry.pvFuncAddr;
412 *phFuncAddr = NULL; /* FIXME: what should it be? */
413 ret = TRUE;
414 break;
415 }
416 }
417 else if (function->entry.pszOID == pszOID)
418 {
419 *ppvFuncAddr = function->entry.pvFuncAddr;
420 *phFuncAddr = NULL; /* FIXME: what should it be? */
421 ret = TRUE;
422 break;
423 }
424 }
425 }
426 LeaveCriticalSection(&set->cs);
427 }
428 if (!*ppvFuncAddr)
429 ret = CRYPT_GetFuncFromReg(dwEncodingType, pszOID, set->name,
430 ppvFuncAddr, phFuncAddr);
431 TRACE("returning %d\n", ret);
432 return ret;
433}
434
435BOOL WINAPI CryptFreeOIDFunctionAddress(HCRYPTOIDFUNCADDR hFuncAddr,
436 DWORD dwFlags)
437{
438 TRACE("(%p, %08x)\n", hFuncAddr, dwFlags);
439
440 /* FIXME: as MSDN states, need to check for DllCanUnloadNow in the DLL,
441 * and only unload it if it can be unloaded. Also need to implement ref
442 * counting on the functions.
443 */
444 if (hFuncAddr)
445 {
446 struct FuncAddr *addr = (struct FuncAddr *)hFuncAddr;
447
448 CryptMemFree(addr->dllList);
449 FreeLibrary(addr->lib);
450 CryptMemFree(addr);
451 }
452 return TRUE;
453}
454
455static BOOL CRYPT_GetFuncFromDll(LPCWSTR dll, LPCSTR func, HMODULE *lib,
456 void **ppvFuncAddr)
457{
458 BOOL ret = FALSE;
459
460 *lib = LoadLibraryW(dll);
461 if (*lib)
462 {
463 *ppvFuncAddr = GetProcAddress(*lib, func);
464 if (*ppvFuncAddr)
465 ret = TRUE;
466 else
467 {
468 FreeLibrary(*lib);
469 *lib = NULL;
470 }
471 }
472 return ret;
473}
474
475BOOL WINAPI CryptGetDefaultOIDFunctionAddress(HCRYPTOIDFUNCSET hFuncSet,
476 DWORD dwEncodingType, LPCWSTR pwszDll, DWORD dwFlags, void **ppvFuncAddr,
477 HCRYPTOIDFUNCADDR *phFuncAddr)
478{
479 struct OIDFunctionSet *set = (struct OIDFunctionSet *)hFuncSet;
480 BOOL ret = FALSE;
481
482 TRACE("(%p, %d, %s, %08x, %p, %p)\n", hFuncSet, dwEncodingType,
483 debugstr_w(pwszDll), dwFlags, ppvFuncAddr, phFuncAddr);
484
485 if (pwszDll)
486 {
487 HMODULE lib;
488
489 *phFuncAddr = NULL;
490 ret = CRYPT_GetFuncFromDll(pwszDll, set->name, &lib, ppvFuncAddr);
491 if (ret)
492 {
493 struct FuncAddr *addr = CryptMemAlloc(sizeof(struct FuncAddr));
494
495 if (addr)
496 {
497 addr->lib = lib;
498 addr->dllList = addr->currentDll = NULL;
499 *phFuncAddr = addr;
500 }
501 else
502 {
503 FreeLibrary(lib);
504 *ppvFuncAddr = NULL;
505 SetLastError(ERROR_OUTOFMEMORY);
506 ret = FALSE;
507 }
508 }
509 else
510 SetLastError(ERROR_FILE_NOT_FOUND);
511 }
512 else
513 {
514 struct FuncAddr *addr = (struct FuncAddr *)*phFuncAddr;
515
516 if (!addr)
517 {
518 DWORD size;
519
520 ret = CryptGetDefaultOIDDllList(hFuncSet, dwEncodingType, NULL,
521 &size);
522 if (ret)
523 {
524 LPWSTR dllList = CryptMemAlloc(size * sizeof(WCHAR));
525
526 if (dllList)
527 {
528 ret = CryptGetDefaultOIDDllList(hFuncSet, dwEncodingType,
529 dllList, &size);
530 if (ret)
531 {
532 addr = CryptMemAlloc(sizeof(struct FuncAddr));
533 if (addr)
534 {
535 addr->dllList = dllList;
536 addr->currentDll = dllList;
537 addr->lib = NULL;
538 *phFuncAddr = addr;
539 }
540 else
541 {
542 CryptMemFree(dllList);
543 SetLastError(ERROR_OUTOFMEMORY);
544 ret = FALSE;
545 }
546 }
547 }
548 else
549 {
550 SetLastError(ERROR_OUTOFMEMORY);
551 ret = FALSE;
552 }
553 }
554 }
555 if (addr)
556 {
557 if (!*addr->currentDll)
558 {
559 CryptFreeOIDFunctionAddress(*phFuncAddr, 0);
560 SetLastError(ERROR_FILE_NOT_FOUND);
561 *phFuncAddr = NULL;
562 ret = FALSE;
563 }
564 else
565 {
566 /* FIXME: as elsewhere, can't free until DllCanUnloadNow says
567 * it's possible, and should defer unloading for some time to
568 * avoid repeated LoadLibrary/FreeLibrary on the same dll.
569 */
570 FreeLibrary(addr->lib);
571 ret = CRYPT_GetFuncFromDll(addr->currentDll, set->name,
572 &addr->lib, ppvFuncAddr);
573 if (ret)
574 {
575 /* Move past the current DLL */
576 addr->currentDll += lstrlenW(addr->currentDll) + 1;
577 *phFuncAddr = addr;
578 }
579 else
580 {
581 CryptFreeOIDFunctionAddress(*phFuncAddr, 0);
582 SetLastError(ERROR_FILE_NOT_FOUND);
583 *phFuncAddr = NULL;
584 }
585 }
586 }
587 }
588 return ret;
589}
590
591/***********************************************************************
592 * CryptRegisterOIDFunction (CRYPT32.@)
593 *
594 * Register the DLL and the functions it uses to cover the combination
595 * of encoding type, functionname and OID.
596 *
597 * PARAMS
598 * dwEncodingType [I] Encoding type to be used.
599 * pszFuncName [I] Name of the function to be registered.
600 * pszOID [I] OID of the function (numeric or string).
601 * pwszDll [I] The DLL that is to be registered.
602 * pszOverrideFuncName [I] Name of the function in the DLL.
603 *
604 * RETURNS
605 * Success: TRUE.
606 * Failure: FALSE. (Look at GetLastError()).
607 *
608 * NOTES
609 * Registry errors are always reported via SetLastError().
610 */
611BOOL WINAPI CryptRegisterOIDFunction(DWORD dwEncodingType, LPCSTR pszFuncName,
612 LPCSTR pszOID, LPCWSTR pwszDll, LPCSTR pszOverrideFuncName)
613{
614 LONG r;
615 HKEY hKey;
616 LPSTR szKey;
617
618 TRACE("(%x, %s, %s, %s, %s)\n", dwEncodingType, pszFuncName,
619 debugstr_a(pszOID), debugstr_w(pwszDll), pszOverrideFuncName);
620
621 /* Native does nothing pwszDll is NULL */
622 if (!pwszDll)
623 return TRUE;
624
625 /* I'm not matching MS bug for bug here, because I doubt any app depends on
626 * it: native "succeeds" if pszFuncName is NULL, but the nonsensical entry
627 * it creates would never be used.
628 */
629 if (!pszFuncName || !pszOID)
630 {
631 SetLastError(E_INVALIDARG);
632 return FALSE;
633 }
634
635 szKey = CRYPT_GetKeyName(dwEncodingType, pszFuncName, pszOID);
636 TRACE("Key name is %s\n", debugstr_a(szKey));
637
638 if (!szKey)
639 return FALSE;
640
641 r = RegCreateKeyA(HKEY_LOCAL_MACHINE, szKey, &hKey);
642 CryptMemFree(szKey);
643
644 if (r != ERROR_SUCCESS) goto error_close_key;
645
646 /* write the values */
647 if (pszOverrideFuncName)
648 {
649 r = RegSetValueExA(hKey, "FuncName", 0, REG_SZ,
650 (const BYTE*)pszOverrideFuncName, lstrlenA(pszOverrideFuncName) + 1);
651 if (r != ERROR_SUCCESS) goto error_close_key;
652 }
653 r = RegSetValueExW(hKey, DllW, 0, REG_SZ, (const BYTE*) pwszDll,
654 (lstrlenW(pwszDll) + 1) * sizeof (WCHAR));
655
656error_close_key:
657
658 RegCloseKey(hKey);
659
660 if (r != ERROR_SUCCESS)
661 {
662 SetLastError(r);
663 return FALSE;
664 }
665
666 return TRUE;
667}
668
669/***********************************************************************
670 * CryptUnregisterOIDFunction (CRYPT32.@)
671 */
672BOOL WINAPI CryptUnregisterOIDFunction(DWORD dwEncodingType, LPCSTR pszFuncName,
673 LPCSTR pszOID)
674{
675 LPSTR szKey;
676 LONG rc;
677
678 TRACE("%x %s %s\n", dwEncodingType, debugstr_a(pszFuncName),
679 debugstr_a(pszOID));
680
681 if (!pszFuncName || !pszOID)
682 {
683 SetLastError(ERROR_INVALID_PARAMETER);
684 return FALSE;
685 }
686
687 szKey = CRYPT_GetKeyName(dwEncodingType, pszFuncName, pszOID);
688 rc = RegDeleteKeyA(HKEY_LOCAL_MACHINE, szKey);
689 CryptMemFree(szKey);
690 if (rc)
691 SetLastError(rc);
692 return rc ? FALSE : TRUE;
693}
694
695BOOL WINAPI CryptGetOIDFunctionValue(DWORD dwEncodingType, LPCSTR pszFuncName,
696 LPCSTR pszOID, LPCWSTR pwszValueName, DWORD *pdwValueType, BYTE *pbValueData,
697 DWORD *pcbValueData)
698{
699 LPSTR szKey;
700 LONG rc;
701 HKEY hKey;
702
703 TRACE("%x %s %s %s %p %p %p\n", dwEncodingType, debugstr_a(pszFuncName),
704 debugstr_a(pszOID), debugstr_w(pwszValueName), pdwValueType, pbValueData,
705 pcbValueData);
706
707 if (!GET_CERT_ENCODING_TYPE(dwEncodingType))
708 return TRUE;
709
710 if (!pszFuncName || !pszOID || !pwszValueName)
711 {
712 SetLastError(ERROR_INVALID_PARAMETER);
713 return FALSE;
714 }
715
716 szKey = CRYPT_GetKeyName(dwEncodingType, pszFuncName, pszOID);
717 rc = RegOpenKeyA(HKEY_LOCAL_MACHINE, szKey, &hKey);
718 CryptMemFree(szKey);
719 if (rc)
720 SetLastError(rc);
721 else
722 {
723 rc = RegQueryValueExW(hKey, pwszValueName, NULL, pdwValueType,
724 pbValueData, pcbValueData);
725 if (rc)
726 SetLastError(rc);
727 RegCloseKey(hKey);
728 }
729 return rc ? FALSE : TRUE;
730}
731
732BOOL WINAPI CryptSetOIDFunctionValue(DWORD dwEncodingType, LPCSTR pszFuncName,
733 LPCSTR pszOID, LPCWSTR pwszValueName, DWORD dwValueType,
734 const BYTE *pbValueData, DWORD cbValueData)
735{
736 LPSTR szKey;
737 LONG rc;
738 HKEY hKey;
739
740 TRACE("%x %s %s %s %d %p %d\n", dwEncodingType, debugstr_a(pszFuncName),
741 debugstr_a(pszOID), debugstr_w(pwszValueName), dwValueType, pbValueData,
742 cbValueData);
743
744 if (!GET_CERT_ENCODING_TYPE(dwEncodingType))
745 return TRUE;
746
747 if (!pszFuncName || !pszOID || !pwszValueName)
748 {
749 SetLastError(ERROR_INVALID_PARAMETER);
750 return FALSE;
751 }
752
753 szKey = CRYPT_GetKeyName(dwEncodingType, pszFuncName, pszOID);
754 rc = RegOpenKeyA(HKEY_LOCAL_MACHINE, szKey, &hKey);
755 CryptMemFree(szKey);
756 if (rc)
757 SetLastError(rc);
758 else
759 {
760 rc = RegSetValueExW(hKey, pwszValueName, 0, dwValueType, pbValueData,
761 cbValueData);
762 if (rc)
763 SetLastError(rc);
764 RegCloseKey(hKey);
765 }
766 return rc ? FALSE : TRUE;
767}
768
769static LPCWSTR CRYPT_FindStringInMultiString(LPCWSTR multi, LPCWSTR toFind)
770{
771 LPCWSTR ret = NULL, ptr;
772
773 for (ptr = multi; ptr && *ptr && !ret; ptr += lstrlenW(ptr) + 1)
774 {
775 if (!lstrcmpiW(ptr, toFind))
776 ret = ptr;
777 }
778 return ret;
779}
780
781static DWORD CRYPT_GetMultiStringCharacterLen(LPCWSTR multi)
782{
783 DWORD ret;
784
785 if (multi)
786 {
787 LPCWSTR ptr;
788
789 /* Count terminating empty string */
790 ret = 1;
791 for (ptr = multi; *ptr; ptr += lstrlenW(ptr) + 1)
792 ret += lstrlenW(ptr) + 1;
793 }
794 else
795 ret = 0;
796 return ret;
797}
798
799static LPWSTR CRYPT_AddStringToMultiString(LPWSTR multi, LPCWSTR toAdd,
800 DWORD index)
801{
802 LPWSTR ret;
803
804 if (!multi)
805 {
806 /* FIXME: ignoring index, is that okay? */
807 ret = CryptMemAlloc((lstrlenW(toAdd) + 2) * sizeof(WCHAR));
808 if (ret)
809 {
810 /* copy string, including NULL terminator */
811 memcpy(ret, toAdd, (lstrlenW(toAdd) + 1) * sizeof(WCHAR));
812 /* add terminating empty string */
813 *(ret + lstrlenW(toAdd) + 1) = 0;
814 }
815 }
816 else
817 {
818 DWORD len = CRYPT_GetMultiStringCharacterLen(multi);
819
820 ret = CryptMemRealloc(multi, (len + lstrlenW(toAdd) + 1) *
821 sizeof(WCHAR));
822 if (ret)
823 {
824 LPWSTR spotToAdd;
825
826 if (index == CRYPT_REGISTER_LAST_INDEX)
827 spotToAdd = ret + len - 1;
828 else
829 {
830 DWORD i;
831
832 /* FIXME: if index is too large for the string, toAdd is
833 * added to the end. Is that okay?
834 */
835 for (i = 0, spotToAdd = ret; i < index && *spotToAdd;
836 spotToAdd += lstrlenW(spotToAdd) + 1)
837 ;
838 }
839 if (spotToAdd)
840 {
841 /* Copy existing string "right" */
842 memmove(spotToAdd + lstrlenW(toAdd) + 1, spotToAdd,
843 (len - (spotToAdd - ret)) * sizeof(WCHAR));
844 /* Copy new string */
845 memcpy(spotToAdd, toAdd, (lstrlenW(toAdd) + 1) * sizeof(WCHAR));
846 }
847 else
848 {
849 CryptMemFree(ret);
850 ret = NULL;
851 }
852 }
853 }
854 return ret;
855}
856
857static BOOL CRYPT_RemoveStringFromMultiString(LPWSTR multi, LPCWSTR toRemove)
858{
859 LPWSTR spotToRemove = (LPWSTR)CRYPT_FindStringInMultiString(multi,
860 toRemove);
861 BOOL ret;
862
863 if (spotToRemove)
864 {
865 DWORD len = CRYPT_GetMultiStringCharacterLen(multi);
866
867 /* Copy remainder of string "left" */
868 memmove(spotToRemove, spotToRemove + lstrlenW(toRemove) + 1,
869 (len - (spotToRemove - multi)) * sizeof(WCHAR));
870 ret = TRUE;
871 }
872 else
873 {
874 SetLastError(ERROR_FILE_NOT_FOUND);
875 ret = FALSE;
876 }
877 return ret;
878}
879
880static BOOL CRYPT_GetDefaultOIDKey(DWORD dwEncodingType, LPCSTR pszFuncName,
881 PHKEY key)
882{
883 LPSTR keyName;
884 LONG r;
885
886 keyName = CRYPT_GetKeyName(dwEncodingType, pszFuncName, "DEFAULT");
887 TRACE("Key name is %s\n", debugstr_a(keyName));
888
889 if (!keyName)
890 return FALSE;
891
892 r = RegCreateKeyExA(HKEY_LOCAL_MACHINE, keyName, 0, NULL, 0, KEY_ALL_ACCESS,
893 NULL, key, NULL);
894 CryptMemFree(keyName);
895 if (r != ERROR_SUCCESS)
896 {
897 SetLastError(r);
898 return FALSE;
899 }
900 return TRUE;
901}
902
903static LPWSTR CRYPT_GetDefaultOIDDlls(HKEY key)
904{
905 LONG r;
906 DWORD type, size;
907 LPWSTR dlls;
908
909 r = RegQueryValueExW(key, DllW, NULL, &type, NULL, &size);
910 if (r == ERROR_SUCCESS && type == REG_MULTI_SZ)
911 {
912 dlls = CryptMemAlloc(size);
913 r = RegQueryValueExW(key, DllW, NULL, &type, (LPBYTE)dlls, &size);
914 if (r != ERROR_SUCCESS)
915 {
916 CryptMemFree(dlls);
917 dlls = NULL;
918 }
919 }
920 else
921 dlls = NULL;
922 return dlls;
923}
924
925static inline BOOL CRYPT_SetDefaultOIDDlls(HKEY key, LPCWSTR dlls)
926{
927 DWORD len = CRYPT_GetMultiStringCharacterLen(dlls);
928 LONG r;
929
930 if ((r = RegSetValueExW(key, DllW, 0, REG_MULTI_SZ, (const BYTE *)dlls,
931 len * sizeof (WCHAR))))
932 SetLastError(r);
933 return r == ERROR_SUCCESS;
934}
935
936/***********************************************************************
937 * CryptRegisterDefaultOIDFunction (CRYPT32.@)
938 */
939BOOL WINAPI CryptRegisterDefaultOIDFunction(DWORD dwEncodingType,
940 LPCSTR pszFuncName, DWORD dwIndex, LPCWSTR pwszDll)
941{
942 HKEY key;
943 LPWSTR dlls;
944 BOOL ret = FALSE;
945
946 TRACE("(%x, %s, %d, %s)\n", dwEncodingType, debugstr_a(pszFuncName),
947 dwIndex, debugstr_w(pwszDll));
948
949 if (!pwszDll)
950 {
951 SetLastError(E_INVALIDARG);
952 return FALSE;
953 }
954
955 if (!CRYPT_GetDefaultOIDKey(dwEncodingType, pszFuncName, &key))
956 return FALSE;
957
958 dlls = CRYPT_GetDefaultOIDDlls(key);
959 if (CRYPT_FindStringInMultiString(dlls, pwszDll))
960 SetLastError(ERROR_FILE_EXISTS);
961 else
962 {
963 dlls = CRYPT_AddStringToMultiString(dlls, pwszDll, dwIndex);
964 if (dlls)
965 ret = CRYPT_SetDefaultOIDDlls(key, dlls);
966 }
967 CryptMemFree(dlls);
968 RegCloseKey(key);
969 return ret;
970}
971
972BOOL WINAPI CryptUnregisterDefaultOIDFunction(DWORD dwEncodingType,
973 LPCSTR pszFuncName, LPCWSTR pwszDll)
974{
975 HKEY key;
976 LPWSTR dlls;
977 BOOL ret;
978
979 TRACE("(%x, %s, %s)\n", dwEncodingType, debugstr_a(pszFuncName),
980 debugstr_w(pwszDll));
981
982 if (!pwszDll)
983 {
984 SetLastError(E_INVALIDARG);
985 return FALSE;
986 }
987
988 if (!CRYPT_GetDefaultOIDKey(dwEncodingType, pszFuncName, &key))
989 return FALSE;
990
991 dlls = CRYPT_GetDefaultOIDDlls(key);
992 if ((ret = CRYPT_RemoveStringFromMultiString(dlls, pwszDll)))
993 ret = CRYPT_SetDefaultOIDDlls(key, dlls);
994 CryptMemFree(dlls);
995 RegCloseKey(key);
996 return ret;
997}
998
999static void oid_init_localizednames(void)
1000{
1001 unsigned int i;
1002
1003 for(i = 0; i < sizeof(LocalizedKeys)/sizeof(LPCWSTR); i++)
1004 {
1005 LoadStringW(hInstance, IDS_LOCALIZEDNAME_ROOT+i, LocalizedNames[i], 256);
1006 }
1007}
1008
1009/********************************************************************
1010 * CryptFindLocalizedName (CRYPT32.@)
1011 */
1012LPCWSTR WINAPI CryptFindLocalizedName(LPCWSTR pwszCryptName)
1013{
1014 unsigned int i;
1015
1016 for(i = 0; i < sizeof(LocalizedKeys)/sizeof(LPCWSTR); i++)
1017 {
1018 if(!lstrcmpiW(LocalizedKeys[i], pwszCryptName))
1019 {
1020 return LocalizedNames[i];
1021 }
1022 }
1023
1024 FIXME("No name for: %s - stub\n",debugstr_w(pwszCryptName));
1025 return NULL;
1026}
1027
1028static RTL_CRITICAL_SECTION oidInfoCS;
1029static RTL_CRITICAL_SECTION_DEBUG oidInfoCSDebug =
1030{
1031 0, 0, &oidInfoCS,
1032 { &oidInfoCSDebug.ProcessLocksList, &oidInfoCSDebug.ProcessLocksList },
1033 0, 0, { (DWORD_PTR)(__FILE__ ": oidInfoCS") }
1034};
1035static RTL_CRITICAL_SECTION oidInfoCS = { &oidInfoCSDebug, -1, 0, 0, 0, 0 };
1036static struct list oidInfo = { &oidInfo, &oidInfo };
1037
1038static const WCHAR tripledes[] = { '3','d','e','s',0 };
1039static const WCHAR cms3deswrap[] = { 'C','M','S','3','D','E','S','w','r','a',
1040 'p',0 };
1041static const WCHAR cmsrc2wrap[] = { 'C','M','S','R','C','2','w','r','a','p',0 };
1042static const WCHAR des[] = { 'd','e','s',0 };
1043static const WCHAR md2[] = { 'm','d','2',0 };
1044static const WCHAR md4[] = { 'm','d','4',0 };
1045static const WCHAR md5[] = { 'm','d','5',0 };
1046static const WCHAR rc2[] = { 'r','c','2',0 };
1047static const WCHAR rc4[] = { 'r','c','4',0 };
1048static const WCHAR sha[] = { 's','h','a',0 };
1049static const WCHAR sha1[] = { 's','h','a','1',0 };
1050static const WCHAR RSA[] = { 'R','S','A',0 };
1051static const WCHAR RSA_KEYX[] = { 'R','S','A','_','K','E','Y','X',0 };
1052static const WCHAR RSA_SIGN[] = { 'R','S','A','_','S','I','G','N',0 };
1053static const WCHAR DSA[] = { 'D','S','A',0 };
1054static const WCHAR DSA_SIGN[] = { 'D','S','A','_','S','I','G','N',0 };
1055static const WCHAR DH[] = { 'D','H',0 };
1056static const WCHAR DSS[] = { 'D','S','S',0 };
1057static const WCHAR mosaicKMandUpdSig[] =
1058 { 'm','o','s','a','i','c','K','M','a','n','d','U','p','d','S','i','g',0 };
1059static const WCHAR ESDH[] = { 'E','S','D','H',0 };
1060static const WCHAR NO_SIGN[] = { 'N','O','S','I','G','N',0 };
1061static const WCHAR dsaSHA1[] = { 'd','s','a','S','H','A','1',0 };
1062static const WCHAR md2RSA[] = { 'm','d','2','R','S','A',0 };
1063static const WCHAR md4RSA[] = { 'm','d','4','R','S','A',0 };
1064static const WCHAR md5RSA[] = { 'm','d','5','R','S','A',0 };
1065static const WCHAR shaDSA[] = { 's','h','a','D','S','A',0 };
1066static const WCHAR sha1DSA[] = { 's','h','a','1','D','S','A',0 };
1067static const WCHAR shaRSA[] = { 's','h','a','R','S','A',0 };
1068static const WCHAR sha1RSA[] = { 's','h','a','1','R','S','A',0 };
1069static const WCHAR mosaicUpdatedSig[] =
1070 { 'm','o','s','a','i','c','U','p','d','a','t','e','d','S','i','g',0 };
1071static const WCHAR CN[] = { 'C','N',0 };
1072static const WCHAR L[] = { 'L',0 };
1073static const WCHAR O[] = { 'O',0 };
1074static const WCHAR OU[] = { 'O','U',0 };
1075static const WCHAR E[] = { 'E',0 };
1076static const WCHAR C[] = { 'C',0 };
1077static const WCHAR S[] = { 'S',0 };
1078static const WCHAR ST[] = { 'S','T',0 };
1079static const WCHAR STREET[] = { 'S','T','R','E','E','T',0 };
1080static const WCHAR T[] = { 'T',0 };
1081static const WCHAR Title[] = { 'T','i','t','l','e',0 };
1082static const WCHAR G[] = { 'G',0 };
1083static const WCHAR GivenName[] = { 'G','i','v','e','n','N','a','m','e',0 };
1084static const WCHAR I[] = { 'I',0 };
1085static const WCHAR Initials[] = { 'I','n','i','t','i','a','l','s',0 };
1086static const WCHAR SN[] = { 'S','N',0 };
1087static const WCHAR DC[] = { 'D','C',0 };
1088static const WCHAR Description[] =
1089 { 'D','e','s','c','r','i','p','t','i','o','n',0 };
1090static const WCHAR PostalCode[] = { 'P','o','s','t','a','l','C','o','d','e',0 };
1091static const WCHAR POBox[] = { 'P','O','B','o','x',0 };
1092static const WCHAR Phone[] = { 'P','h','o','n','e',0 };
1093static const WCHAR X21Address[] = { 'X','2','1','A','d','d','r','e','s','s',0 };
1094static const WCHAR dnQualifier[] =
1095 { 'd','n','Q','u','a','l','i','f','i','e','r',0 };
1096static const WCHAR Email[] = { 'E','m','a','i','l',0 };
1097static const WCHAR GN[] = { 'G','N',0 };
1098
1099static const DWORD noNullFlag = CRYPT_OID_NO_NULL_ALGORITHM_PARA_FLAG;
1100static const DWORD mosaicFlags = CRYPT_OID_INHIBIT_SIGNATURE_FORMAT_FLAG |
1101 CRYPT_OID_NO_NULL_ALGORITHM_PARA_FLAG;
1102static const CRYPT_DATA_BLOB noNullBlob = { sizeof(noNullFlag),
1103 (LPBYTE)&noNullFlag };
1104static const CRYPT_DATA_BLOB mosaicFlagsBlob = { sizeof(mosaicFlags),
1105 (LPBYTE)&mosaicFlags };
1106
1107static const DWORD rsaSign = CALG_RSA_SIGN;
1108static const DWORD dssSign[2] = { CALG_DSS_SIGN,
1109 CRYPT_OID_NO_NULL_ALGORITHM_PARA_FLAG };
1110static const DWORD mosaicSign[2] = { CALG_DSS_SIGN,
1111 CRYPT_OID_INHIBIT_SIGNATURE_FORMAT_FLAG |
1112 CRYPT_OID_NO_NULL_ALGORITHM_PARA_FLAG };
1113static const CRYPT_DATA_BLOB rsaSignBlob = { sizeof(rsaSign),
1114 (LPBYTE)&rsaSign };
1115static const CRYPT_DATA_BLOB dssSignBlob = { sizeof(dssSign),
1116 (LPBYTE)dssSign };
1117static const CRYPT_DATA_BLOB mosaicSignBlob = { sizeof(mosaicSign),
1118 (LPBYTE)mosaicSign };
1119
1120static const DWORD ia5String[] = { CERT_RDN_IA5_STRING, 0 };
1121static const DWORD numericString[] = { CERT_RDN_NUMERIC_STRING, 0 };
1122static const DWORD printableString[] = { CERT_RDN_PRINTABLE_STRING, 0 };
1123static const DWORD domainCompTypes[] = { CERT_RDN_IA5_STRING,
1124 CERT_RDN_UTF8_STRING, 0 };
1125static const CRYPT_DATA_BLOB ia5StringBlob = { sizeof(ia5String),
1126 (LPBYTE)ia5String };
1127static const CRYPT_DATA_BLOB numericStringBlob = { sizeof(numericString),
1128 (LPBYTE)numericString };
1129static const CRYPT_DATA_BLOB printableStringBlob = { sizeof(printableString),
1130 (LPBYTE)printableString };
1131static const CRYPT_DATA_BLOB domainCompTypesBlob = { sizeof(domainCompTypes),
1132 (LPBYTE)domainCompTypes };
1133
1134static const struct OIDInfoConstructor {
1135 DWORD dwGroupId;
1136 LPCSTR pszOID;
1137 UINT Algid;
1138 LPCWSTR pwszName;
1139 const CRYPT_DATA_BLOB *blob;
1140} oidInfoConstructors[] = {
1141 { 1, szOID_OIWSEC_sha1, CALG_SHA1, sha1, NULL },
1142 { 1, szOID_OIWSEC_sha1, CALG_SHA1, sha, NULL },
1143 { 1, szOID_OIWSEC_sha, CALG_SHA, sha, NULL },
1144 { 1, szOID_RSA_MD5, CALG_MD5, md5, NULL },
1145 { 1, szOID_RSA_MD4, CALG_MD4, md4, NULL },
1146 { 1, szOID_RSA_MD2, CALG_MD2, md2, NULL },
1147
1148 { 2, szOID_OIWSEC_desCBC, CALG_DES, des, NULL },
1149 { 2, szOID_RSA_DES_EDE3_CBC, CALG_3DES, tripledes, NULL },
1150 { 2, szOID_RSA_RC2CBC, CALG_RC2, rc2, NULL },
1151 { 2, szOID_RSA_RC4, CALG_RC4, rc4, NULL },
1152 { 2, szOID_RSA_SMIMEalgCMS3DESwrap, CALG_3DES, cms3deswrap, NULL },
1153 { 2, szOID_RSA_SMIMEalgCMSRC2wrap, CALG_RC2, cmsrc2wrap, NULL },
1154
1155 { 3, szOID_RSA_RSA, CALG_RSA_KEYX, RSA, NULL },
1156 { 3, szOID_X957_DSA, CALG_DSS_SIGN, DSA, &noNullBlob },
1157 { 3, szOID_ANSI_X942_DH, CALG_DH_SF, DH, &noNullBlob },
1158 { 3, szOID_RSA_RSA, CALG_RSA_KEYX, RSA_KEYX, NULL },
1159 { 3, szOID_RSA_RSA, CALG_RSA_SIGN, RSA, NULL },
1160 { 3, szOID_RSA_RSA, CALG_RSA_SIGN, RSA_SIGN, NULL },
1161 { 3, szOID_OIWSEC_dsa, CALG_DSS_SIGN, DSA, &noNullBlob },
1162 { 3, szOID_OIWSEC_dsa, CALG_DSS_SIGN, DSS, &noNullBlob },
1163 { 3, szOID_OIWSEC_dsa, CALG_DSS_SIGN, DSA_SIGN, &noNullBlob },
1164 { 3, szOID_RSA_DH, CALG_DH_SF, DH, &noNullBlob },
1165 { 3, szOID_OIWSEC_rsaXchg, CALG_RSA_KEYX, RSA_KEYX, NULL },
1166 { 3, szOID_INFOSEC_mosaicKMandUpdSig, CALG_DSS_SIGN, mosaicKMandUpdSig,
1167 &mosaicFlagsBlob },
1168 { 3, szOID_RSA_SMIMEalgESDH, CALG_DH_EPHEM, ESDH, &noNullBlob },
1169 { 3, szOID_PKIX_NO_SIGNATURE, CALG_NO_SIGN, NO_SIGN, NULL },
1170
1171 { 4, szOID_RSA_SHA1RSA, CALG_SHA1, sha1RSA, &rsaSignBlob },
1172 { 4, szOID_RSA_MD5RSA, CALG_MD5, md5RSA, &rsaSignBlob },
1173 { 4, szOID_X957_SHA1DSA, CALG_SHA1, sha1DSA, &dssSignBlob },
1174 { 4, szOID_OIWSEC_sha1RSASign, CALG_SHA1, sha1RSA, &rsaSignBlob },
1175 { 4, szOID_OIWSEC_sha1RSASign, CALG_SHA1, shaRSA, &rsaSignBlob },
1176 { 4, szOID_OIWSEC_shaRSA, CALG_SHA1, shaRSA, &rsaSignBlob },
1177 { 4, szOID_OIWSEC_md5RSA, CALG_MD5, md5RSA, &rsaSignBlob },
1178 { 4, szOID_RSA_MD2RSA, CALG_MD2, md2RSA, &rsaSignBlob },
1179 { 4, szOID_RSA_MD4RSA, CALG_MD4, md4RSA, &rsaSignBlob },
1180 { 4, szOID_OIWSEC_md4RSA, CALG_MD4, md4RSA, &rsaSignBlob },
1181 { 4, szOID_OIWSEC_md4RSA2, CALG_MD4, md4RSA, &rsaSignBlob },
1182 { 4, szOID_OIWDIR_md2RSA, CALG_MD2, md2RSA, &rsaSignBlob },
1183 { 4, szOID_OIWSEC_shaDSA, CALG_SHA1, sha1DSA, &dssSignBlob },
1184 { 4, szOID_OIWSEC_shaDSA, CALG_SHA1, shaDSA, &dssSignBlob },
1185 { 4, szOID_OIWSEC_dsaSHA1, CALG_SHA1, dsaSHA1, &dssSignBlob },
1186 { 4, szOID_INFOSEC_mosaicUpdatedSig, CALG_SHA1, mosaicUpdatedSig,
1187 &mosaicSignBlob },
1188
1189 { 5, szOID_COMMON_NAME, 0, CN, NULL },
1190 { 5, szOID_LOCALITY_NAME, 0, L, NULL },
1191 { 5, szOID_ORGANIZATION_NAME, 0, O, NULL },
1192 { 5, szOID_ORGANIZATIONAL_UNIT_NAME, 0, OU, NULL },
1193 { 5, szOID_RSA_emailAddr, 0, E, &ia5StringBlob },
1194 { 5, szOID_RSA_emailAddr, 0, Email, &ia5StringBlob },
1195 { 5, szOID_COUNTRY_NAME, 0, C, &printableStringBlob },
1196 { 5, szOID_STATE_OR_PROVINCE_NAME, 0, S, NULL },
1197 { 5, szOID_STATE_OR_PROVINCE_NAME, 0, ST, NULL },
1198 { 5, szOID_STREET_ADDRESS, 0, STREET, NULL },
1199 { 5, szOID_TITLE, 0, T, NULL },
1200 { 5, szOID_TITLE, 0, Title, NULL },
1201 { 5, szOID_GIVEN_NAME, 0, G, NULL },
1202 { 5, szOID_GIVEN_NAME, 0, GN, NULL },
1203 { 5, szOID_GIVEN_NAME, 0, GivenName, NULL },
1204 { 5, szOID_INITIALS, 0, I, NULL },
1205 { 5, szOID_INITIALS, 0, Initials, NULL },
1206 { 5, szOID_SUR_NAME, 0, SN, NULL },
1207 { 5, szOID_DOMAIN_COMPONENT, 0, DC, &domainCompTypesBlob },
1208 { 5, szOID_DESCRIPTION, 0, Description, NULL },
1209 { 5, szOID_POSTAL_CODE, 0, PostalCode, NULL },
1210 { 5, szOID_POST_OFFICE_BOX, 0, POBox, NULL },
1211 { 5, szOID_TELEPHONE_NUMBER, 0, Phone, &printableStringBlob },
1212 { 5, szOID_X21_ADDRESS, 0, X21Address, &numericStringBlob },
1213 { 5, szOID_DN_QUALIFIER, 0, dnQualifier, NULL },
1214
1215 { 6, szOID_AUTHORITY_KEY_IDENTIFIER2, 0, (LPCWSTR)IDS_AUTHORITY_KEY_ID, NULL },
1216 { 6, szOID_AUTHORITY_KEY_IDENTIFIER, 0, (LPCWSTR)IDS_AUTHORITY_KEY_ID, NULL },
1217 { 6, szOID_KEY_ATTRIBUTES, 0, (LPCWSTR)IDS_KEY_ATTRIBUTES, NULL },
1218 { 6, szOID_KEY_USAGE_RESTRICTION, 0, (LPCWSTR)IDS_KEY_USAGE_RESTRICTION, NULL },
1219 { 6, szOID_SUBJECT_ALT_NAME2, 0, (LPCWSTR)IDS_SUBJECT_ALT_NAME, NULL },
1220 { 6, szOID_SUBJECT_ALT_NAME, 0, (LPCWSTR)IDS_SUBJECT_ALT_NAME, NULL },
1221 { 6, szOID_ISSUER_ALT_NAME2, 0, (LPCWSTR)IDS_ISSUER_ALT_NAME, NULL },
1222 { 6, szOID_ISSUER_ALT_NAME2, 0, (LPCWSTR)IDS_ISSUER_ALT_NAME, NULL },
1223 { 6, szOID_BASIC_CONSTRAINTS2, 0, (LPCWSTR)IDS_BASIC_CONSTRAINTS, NULL },
1224 { 6, szOID_BASIC_CONSTRAINTS, 0, (LPCWSTR)IDS_BASIC_CONSTRAINTS, NULL },
1225 { 6, szOID_KEY_USAGE, 0, (LPCWSTR)IDS_KEY_USAGE, NULL },
1226 { 6, szOID_CERT_POLICIES, 0, (LPCWSTR)IDS_CERT_POLICIES, NULL },
1227 { 6, szOID_SUBJECT_KEY_IDENTIFIER, 0, (LPCWSTR)IDS_SUBJECT_KEY_IDENTIFIER, NULL },
1228 { 6, szOID_CRL_REASON_CODE, 0, (LPCWSTR)IDS_CRL_REASON_CODE, NULL },
1229 { 6, szOID_CRL_DIST_POINTS, 0, (LPCWSTR)IDS_CRL_DIST_POINTS, NULL },
1230 { 6, szOID_ENHANCED_KEY_USAGE, 0, (LPCWSTR)IDS_ENHANCED_KEY_USAGE, NULL },
1231 { 6, szOID_AUTHORITY_INFO_ACCESS, 0, (LPCWSTR)IDS_AUTHORITY_INFO_ACCESS, NULL },
1232 { 6, szOID_CERT_EXTENSIONS, 0, (LPCWSTR)IDS_CERT_EXTENSIONS, NULL },
1233 { 6, szOID_RSA_certExtensions, 0, (LPCWSTR)IDS_CERT_EXTENSIONS, NULL },
1234 { 6, szOID_NEXT_UPDATE_LOCATION, 0, (LPCWSTR)IDS_NEXT_UPDATE_LOCATION, NULL },
1235 { 6, szOID_YESNO_TRUST_ATTR, 0, (LPCWSTR)IDS_YES_OR_NO_TRUST, NULL },
1236 { 6, szOID_RSA_emailAddr, 0, (LPCWSTR)IDS_EMAIL_ADDRESS, NULL },
1237 { 6, szOID_RSA_unstructName, 0, (LPCWSTR)IDS_UNSTRUCTURED_NAME, NULL },
1238 { 6, szOID_RSA_contentType, 0, (LPCWSTR)IDS_CONTENT_TYPE, NULL },
1239 { 6, szOID_RSA_messageDigest, 0, (LPCWSTR)IDS_MESSAGE_DIGEST, NULL },
1240 { 6, szOID_RSA_signingTime, 0, (LPCWSTR)IDS_SIGNING_TIME, NULL },
1241 { 6, szOID_RSA_counterSign, 0, (LPCWSTR)IDS_COUNTER_SIGN, NULL },
1242 { 6, szOID_RSA_challengePwd, 0, (LPCWSTR)IDS_CHALLENGE_PASSWORD, NULL },
1243 { 6, szOID_RSA_unstructAddr, 0, (LPCWSTR)IDS_UNSTRUCTURED_ADDRESS, NULL },
1244 { 6, szOID_RSA_SMIMECapabilities, 0, (LPCWSTR)IDS_SMIME_CAPABILITIES, NULL },
1245 { 6, szOID_RSA_preferSignedData, 0, (LPCWSTR)IDS_PREFER_SIGNED_DATA, NULL },
1246 { 6, szOID_PKIX_POLICY_QUALIFIER_CPS, 0, (LPCWSTR)IDS_CPS, NULL },
1247 { 6, szOID_PKIX_POLICY_QUALIFIER_USERNOTICE, 0, (LPCWSTR)IDS_USER_NOTICE, NULL },
1248 { 6, szOID_PKIX_OCSP, 0, (LPCWSTR)IDS_OCSP, NULL },
1249 { 6, szOID_PKIX_CA_ISSUERS, 0, (LPCWSTR)IDS_CA_ISSUER, NULL },
1250 { 6, szOID_ENROLL_CERTTYPE_EXTENSION, 0, (LPCWSTR)IDS_CERT_TEMPLATE_NAME, NULL },
1251 { 6, szOID_ENROLL_CERTTYPE_EXTENSION, 0, (LPCWSTR)IDS_CERT_TYPE, NULL },
1252 { 6, szOID_CERT_MANIFOLD, 0, (LPCWSTR)IDS_CERT_MANIFOLD, NULL },
1253 { 6, szOID_NETSCAPE_CERT_TYPE, 0, (LPCWSTR)IDS_NETSCAPE_CERT_TYPE, NULL },
1254 { 6, szOID_NETSCAPE_BASE_URL, 0, (LPCWSTR)IDS_NETSCAPE_BASE_URL, NULL },
1255 { 6, szOID_NETSCAPE_REVOCATION_URL, 0, (LPCWSTR)IDS_NETSCAPE_REVOCATION_URL, NULL },
1256 { 6, szOID_NETSCAPE_CA_REVOCATION_URL, 0, (LPCWSTR)IDS_NETSCAPE_CA_REVOCATION_URL, NULL },
1257 { 6, szOID_NETSCAPE_CERT_RENEWAL_URL, 0, (LPCWSTR)IDS_NETSCAPE_CERT_RENEWAL_URL, NULL },
1258 { 6, szOID_NETSCAPE_CA_POLICY_URL, 0, (LPCWSTR)IDS_NETSCAPE_CA_POLICY_URL, NULL },
1259 { 6, szOID_NETSCAPE_SSL_SERVER_NAME, 0, (LPCWSTR)IDS_NETSCAPE_SSL_SERVER_NAME, NULL },
1260 { 6, szOID_NETSCAPE_COMMENT, 0, (LPCWSTR)IDS_NETSCAPE_COMMENT, NULL },
1261 { 6, "1.3.6.1.4.1.311.2.1.10", 0, (LPCWSTR)IDS_SPC_SP_AGENCY_INFO, NULL },
1262 { 6, "1.3.6.1.4.1.311.2.1.27", 0, (LPCWSTR)IDS_SPC_FINANCIAL_CRITERIA, NULL },
1263 { 6, "1.3.6.1.4.1.311.2.1.26", 0, (LPCWSTR)IDS_SPC_MINIMAL_CRITERIA, NULL },
1264 { 6, szOID_COUNTRY_NAME, 0, (LPCWSTR)IDS_COUNTRY, NULL },
1265 { 6, szOID_ORGANIZATION_NAME, 0, (LPCWSTR)IDS_ORGANIZATION, NULL },
1266 { 6, szOID_ORGANIZATIONAL_UNIT_NAME, 0, (LPCWSTR)IDS_ORGANIZATIONAL_UNIT, NULL },
1267 { 6, szOID_COMMON_NAME, 0, (LPCWSTR)IDS_COMMON_NAME, NULL },
1268 { 6, szOID_LOCALITY_NAME, 0, (LPCWSTR)IDS_LOCALITY, NULL },
1269 { 6, szOID_STATE_OR_PROVINCE_NAME, 0, (LPCWSTR)IDS_STATE_OR_PROVINCE, NULL },
1270 { 6, szOID_TITLE, 0, (LPCWSTR)IDS_TITLE, NULL },
1271 { 6, szOID_GIVEN_NAME, 0, (LPCWSTR)IDS_GIVEN_NAME, NULL },
1272 { 6, szOID_INITIALS, 0, (LPCWSTR)IDS_INITIALS, NULL },
1273 { 6, szOID_SUR_NAME, 0, (LPCWSTR)IDS_SUR_NAME, NULL },
1274 { 6, szOID_DOMAIN_COMPONENT, 0, (LPCWSTR)IDS_DOMAIN_COMPONENT, NULL },
1275 { 6, szOID_STREET_ADDRESS, 0, (LPCWSTR)IDS_STREET_ADDRESS, NULL },
1276 { 6, szOID_DEVICE_SERIAL_NUMBER, 0, (LPCWSTR)IDS_SERIAL_NUMBER, NULL },
1277 { 6, szOID_CERTSRV_CA_VERSION, 0, (LPCWSTR)IDS_CA_VERSION, NULL },
1278 { 6, szOID_CERTSRV_CROSSCA_VERSION, 0, (LPCWSTR)IDS_CROSS_CA_VERSION, NULL },
1279 { 6, szOID_SERIALIZED, 0, (LPCWSTR)IDS_SERIALIZED_SIG_SERIAL_NUMBER, NULL },
1280 { 6, szOID_NT_PRINCIPAL_NAME, 0, (LPCWSTR)IDS_PRINCIPAL_NAME, NULL },
1281 { 6, szOID_PRODUCT_UPDATE, 0, (LPCWSTR)IDS_WINDOWS_PRODUCT_UPDATE, NULL },
1282 { 6, szOID_ENROLLMENT_NAME_VALUE_PAIR, 0, (LPCWSTR)IDS_ENROLLMENT_NAME_VALUE_PAIR, NULL },
1283 { 6, szOID_OS_VERSION, 0, (LPCWSTR)IDS_OS_VERSION, NULL },
1284 { 6, szOID_ENROLLMENT_CSP_PROVIDER, 0, (LPCWSTR)IDS_ENROLLMENT_CSP, NULL },
1285 { 6, szOID_CRL_NUMBER, 0, (LPCWSTR)IDS_CRL_NUMBER, NULL },
1286 { 6, szOID_DELTA_CRL_INDICATOR, 0, (LPCWSTR)IDS_DELTA_CRL_INDICATOR, NULL },
1287 { 6, szOID_ISSUING_DIST_POINT, 0, (LPCWSTR)IDS_ISSUING_DIST_POINT, NULL },
1288 { 6, szOID_FRESHEST_CRL, 0, (LPCWSTR)IDS_FRESHEST_CRL, NULL },
1289 { 6, szOID_NAME_CONSTRAINTS, 0, (LPCWSTR)IDS_NAME_CONSTRAINTS, NULL },
1290 { 6, szOID_POLICY_MAPPINGS, 0, (LPCWSTR)IDS_POLICY_MAPPINGS, NULL },
1291 { 6, szOID_LEGACY_POLICY_MAPPINGS, 0, (LPCWSTR)IDS_POLICY_MAPPINGS, NULL },
1292 { 6, szOID_POLICY_CONSTRAINTS, 0, (LPCWSTR)IDS_POLICY_CONSTRAINTS, NULL },
1293 { 6, szOID_CROSS_CERT_DIST_POINTS, 0, (LPCWSTR)IDS_CROSS_CERT_DIST_POINTS, NULL },
1294 { 6, szOID_APPLICATION_CERT_POLICIES, 0, (LPCWSTR)IDS_APPLICATION_POLICIES, NULL },
1295 { 6, szOID_APPLICATION_POLICY_MAPPINGS, 0, (LPCWSTR)IDS_APPLICATION_POLICY_MAPPINGS, NULL },
1296 { 6, szOID_APPLICATION_POLICY_CONSTRAINTS, 0, (LPCWSTR)IDS_APPLICATION_POLICY_CONSTRAINTS, NULL },
1297 { 6, szOID_CT_PKI_DATA, 0, (LPCWSTR)IDS_CMC_DATA, NULL },
1298 { 6, szOID_CT_PKI_RESPONSE, 0, (LPCWSTR)IDS_CMC_RESPONSE, NULL },
1299 { 6, szOID_CMC, 0, (LPCWSTR)IDS_UNSIGNED_CMC_REQUEST, NULL },
1300 { 6, szOID_CMC_STATUS_INFO, 0, (LPCWSTR)IDS_CMC_STATUS_INFO, NULL },
1301 { 6, szOID_CMC_ADD_EXTENSIONS, 0, (LPCWSTR)IDS_CMC_EXTENSIONS, NULL },
1302 { 6, szOID_CTL, 0, (LPCWSTR)IDS_CMC_ATTRIBUTES, NULL },
1303 { 6, szOID_RSA_data, 0, (LPCWSTR)IDS_PKCS_7_DATA, NULL },
1304 { 6, szOID_RSA_signedData, 0, (LPCWSTR)IDS_PKCS_7_SIGNED, NULL },
1305 { 6, szOID_RSA_envelopedData, 0, (LPCWSTR)IDS_PKCS_7_ENVELOPED, NULL },
1306 { 6, szOID_RSA_signEnvData, 0, (LPCWSTR)IDS_PKCS_7_SIGNED_ENVELOPED, NULL },
1307 { 6, szOID_RSA_digestedData, 0, (LPCWSTR)IDS_PKCS_7_DIGESTED, NULL },
1308 { 6, szOID_RSA_encryptedData, 0, (LPCWSTR)IDS_PKCS_7_ENCRYPTED, NULL },
1309 { 6, szOID_CERTSRV_PREVIOUS_CERT_HASH, 0, (LPCWSTR)IDS_PREVIOUS_CA_CERT_HASH, NULL },
1310 { 6, szOID_CRL_VIRTUAL_BASE, 0, (LPCWSTR)IDS_CRL_VIRTUAL_BASE, NULL },
1311 { 6, szOID_CRL_NEXT_PUBLISH, 0, (LPCWSTR)IDS_CRL_NEXT_PUBLISH, NULL },
1312 { 6, szOID_KP_CA_EXCHANGE, 0, (LPCWSTR)IDS_CA_EXCHANGE, NULL },
1313 { 6, szOID_KP_KEY_RECOVERY_AGENT, 0, (LPCWSTR)IDS_KEY_RECOVERY_AGENT, NULL },
1314 { 6, szOID_CERTIFICATE_TEMPLATE, 0, (LPCWSTR)IDS_CERTIFICATE_TEMPLATE, NULL },
1315 { 6, szOID_ENTERPRISE_OID_ROOT, 0, (LPCWSTR)IDS_ENTERPRISE_ROOT_OID, NULL },
1316 { 6, szOID_RDN_DUMMY_SIGNER, 0, (LPCWSTR)IDS_RDN_DUMMY_SIGNER, NULL },
1317 { 6, szOID_ARCHIVED_KEY_ATTR, 0, (LPCWSTR)IDS_ARCHIVED_KEY_ATTR, NULL },
1318 { 6, szOID_CRL_SELF_CDP, 0, (LPCWSTR)IDS_CRL_SELF_CDP, NULL },
1319 { 6, szOID_REQUIRE_CERT_CHAIN_POLICY, 0, (LPCWSTR)IDS_REQUIRE_CERT_CHAIN_POLICY, NULL },
1320 { 6, szOID_CMC_TRANSACTION_ID, 0, (LPCWSTR)IDS_TRANSACTION_ID, NULL },
1321 { 6, szOID_CMC_SENDER_NONCE, 0, (LPCWSTR)IDS_SENDER_NONCE, NULL },
1322 { 6, szOID_CMC_RECIPIENT_NONCE, 0, (LPCWSTR)IDS_RECIPIENT_NONCE, NULL },
1323 { 6, szOID_CMC_REG_INFO, 0, (LPCWSTR)IDS_REG_INFO, NULL },
1324 { 6, szOID_CMC_GET_CERT, 0, (LPCWSTR)IDS_GET_CERTIFICATE, NULL },
1325 { 6, szOID_CMC_GET_CRL, 0, (LPCWSTR)IDS_GET_CRL, NULL },
1326 { 6, szOID_CMC_REVOKE_REQUEST, 0, (LPCWSTR)IDS_REVOKE_REQUEST, NULL },
1327 { 6, szOID_CMC_QUERY_PENDING, 0, (LPCWSTR)IDS_QUERY_PENDING, NULL },
1328 { 6, szOID_SORTED_CTL, 0, (LPCWSTR)IDS_SORTED_CTL, NULL },
1329 { 6, szOID_ARCHIVED_KEY_CERT_HASH, 0, (LPCWSTR)IDS_ARCHIVED_KEY_CERT_HASH, NULL },
1330 { 6, szOID_PRIVATEKEY_USAGE_PERIOD, 0, (LPCWSTR)IDS_PRIVATE_KEY_USAGE_PERIOD, NULL },
1331 { 6, szOID_REQUEST_CLIENT_INFO, 0, (LPCWSTR)IDS_CLIENT_INFORMATION, NULL },
1332
1333 { 7, szOID_PKIX_KP_SERVER_AUTH, 0, (LPCWSTR)IDS_SERVER_AUTHENTICATION, NULL },
1334 { 7, szOID_PKIX_KP_CLIENT_AUTH, 0, (LPCWSTR)IDS_CLIENT_AUTHENTICATION, NULL },
1335 { 7, szOID_PKIX_KP_CODE_SIGNING, 0, (LPCWSTR)IDS_CODE_SIGNING, NULL },
1336 { 7, szOID_PKIX_KP_EMAIL_PROTECTION, 0, (LPCWSTR)IDS_SECURE_EMAIL, NULL },
1337 { 7, szOID_PKIX_KP_TIMESTAMP_SIGNING, 0, (LPCWSTR)IDS_TIME_STAMPING, NULL },
1338 { 7, szOID_KP_CTL_USAGE_SIGNING, 0, (LPCWSTR)IDS_MICROSOFT_TRUST_LIST_SIGNING, NULL },
1339 { 7, szOID_KP_TIME_STAMP_SIGNING, 0, (LPCWSTR)IDS_MICROSOFT_TIME_STAMPING, NULL },
1340 { 7, szOID_PKIX_KP_IPSEC_END_SYSTEM, 0, (LPCWSTR)IDS_IPSEC_END_SYSTEM, NULL },
1341 { 7, szOID_PKIX_KP_IPSEC_TUNNEL, 0, (LPCWSTR)IDS_IPSEC_TUNNEL, NULL },
1342 { 7, szOID_PKIX_KP_IPSEC_USER, 0, (LPCWSTR)IDS_IPSEC_USER, NULL },
1343 { 7, szOID_KP_EFS, 0, (LPCWSTR)IDS_EFS, NULL },
1344 { 7, szOID_WHQL_CRYPTO, 0, (LPCWSTR)IDS_WHQL_CRYPTO, NULL },
1345 { 7, szOID_NT5_CRYPTO, 0, (LPCWSTR)IDS_NT5_CRYPTO, NULL },
1346 { 7, szOID_OEM_WHQL_CRYPTO, 0, (LPCWSTR)IDS_OEM_WHQL_CRYPTO, NULL },
1347 { 7, szOID_EMBEDDED_NT_CRYPTO, 0, (LPCWSTR)IDS_EMBEDDED_NT_CRYPTO, NULL },
1348 { 7, szOID_LICENSES, 0, (LPCWSTR)IDS_KEY_PACK_LICENSES, NULL },
1349 { 7, szOID_LICENSE_SERVER, 0, (LPCWSTR)IDS_LICENSE_SERVER, NULL },
1350 { 7, szOID_KP_SMARTCARD_LOGON, 0, (LPCWSTR)IDS_SMART_CARD_LOGON, NULL },
1351 { 7, szOID_DRM, 0, (LPCWSTR)IDS_DIGITAL_RIGHTS, NULL },
1352 { 7, szOID_KP_QUALIFIED_SUBORDINATION, 0, (LPCWSTR)IDS_QUALIFIED_SUBORDINATION, NULL },
1353 { 7, szOID_KP_KEY_RECOVERY, 0, (LPCWSTR)IDS_KEY_RECOVERY, NULL },
1354 { 7, szOID_KP_DOCUMENT_SIGNING, 0, (LPCWSTR)IDS_DOCUMENT_SIGNING, NULL },
1355 { 7, szOID_IPSEC_KP_IKE_INTERMEDIATE, 0, (LPCWSTR)IDS_IPSEC_IKE_INTERMEDIATE, NULL },
1356 { 7, szOID_EFS_RECOVERY, 0, (LPCWSTR)IDS_FILE_RECOVERY, NULL },
1357 { 7, szOID_ROOT_LIST_SIGNER, 0, (LPCWSTR)IDS_ROOT_LIST_SIGNER, NULL },
1358 { 7, szOID_ANY_APPLICATION_POLICY, 0, (LPCWSTR)IDS_ANY_APPLICATION_POLICIES, NULL },
1359 { 7, szOID_DS_EMAIL_REPLICATION, 0, (LPCWSTR)IDS_DS_EMAIL_REPLICATION, NULL },
1360 { 7, szOID_ENROLLMENT_AGENT, 0, (LPCWSTR)IDS_ENROLLMENT_AGENT, NULL },
1361 { 7, szOID_KP_KEY_RECOVERY_AGENT, 0, (LPCWSTR)IDS_KEY_RECOVERY_AGENT, NULL },
1362 { 7, szOID_KP_CA_EXCHANGE, 0, (LPCWSTR)IDS_CA_EXCHANGE, NULL },
1363 { 7, szOID_KP_LIFETIME_SIGNING, 0, (LPCWSTR)IDS_LIFETIME_SIGNING, NULL },
1364
1365 { 8, szOID_ANY_CERT_POLICY, 0, (LPCWSTR)IDS_ANY_CERT_POLICY, NULL },
1366};
1367
1368struct OIDInfo {
1369 CRYPT_OID_INFO info;
1370 struct list entry;
1371};
1372
1373static void init_oid_info(void)
1374{
1375 DWORD i;
1376
1377 oid_init_localizednames();
1378 for (i = 0; i < sizeof(oidInfoConstructors) /
1379 sizeof(oidInfoConstructors[0]); i++)
1380 {
1381 if (HIWORD(oidInfoConstructors[i].pwszName))
1382 {
1383 struct OIDInfo *info = NULL;
1384
1385 /* The name is a static string, so just use the same pointer */
1386 info = CryptMemAlloc(sizeof(struct OIDInfo));
1387 if (info)
1388 {
1389#if 1
1390 memset(info, 0, sizeof(*info));
1391 info->info.cbSize = sizeof(CRYPT_OID_INFO);
1392 info->info.pszOID = oidInfoConstructors[i].pszOID;
1393 info->info.pwszName = oidInfoConstructors[i].pwszName;
1394 info->info.dwGroupId = oidInfoConstructors[i].dwGroupId;
1395 info->info.u.Algid = oidInfoConstructors[i].Algid;
1396 if (oidInfoConstructors[i].blob)
1397 {
1398 info->info.ExtraInfo.cbData =
1399 oidInfoConstructors[i].blob->cbData;
1400 info->info.ExtraInfo.pbData =
1401 oidInfoConstructors[i].blob->pbData;
1402 }
1403#endif
1404 list_add_tail(&oidInfo, &info->entry);
1405 }
1406 }
1407 else
1408 {
1409 LPCWSTR stringresource = NULL;
1410 int len = LoadStringW(hInstance,
1411 (UINT_PTR)oidInfoConstructors[i].pwszName,
1412 (LPWSTR)&stringresource, 0);
1413
1414 if (len)
1415 {
1416 struct OIDInfo *info = CryptMemAlloc(sizeof(struct OIDInfo) +
1417 (len + 1) * sizeof(WCHAR));
1418
1419 if (info)
1420 {
1421#if 1
1422 memset(info, 0, sizeof(*info));
1423 info->info.cbSize = sizeof(CRYPT_OID_INFO);
1424 info->info.pszOID = oidInfoConstructors[i].pszOID;
1425 info->info.pwszName = (LPWSTR)(info + 1);
1426 info->info.dwGroupId = oidInfoConstructors[i].dwGroupId;
1427 info->info.u.Algid = oidInfoConstructors[i].Algid;
1428 if (stringresource && (char*)stringresource != 0xAAAAAAAA)
1429 memcpy(info + 1, stringresource, len*sizeof(WCHAR));
1430 ((LPWSTR)(info + 1))[len] = 0;
1431 if (oidInfoConstructors[i].blob)
1432 {
1433 info->info.ExtraInfo.cbData =
1434 oidInfoConstructors[i].blob->cbData;
1435 info->info.ExtraInfo.pbData =
1436 oidInfoConstructors[i].blob->pbData;
1437 }
1438#endif
1439 list_add_tail(&oidInfo, &info->entry);
1440 }
1441 }
1442 }
1443 }
1444}
1445
1446static void free_oid_info(void)
1447{
1448 struct OIDInfo *info, *next;
1449
1450 LIST_FOR_EACH_ENTRY_SAFE(info, next, &oidInfo, struct OIDInfo, entry)
1451 {
1452 if (info > 0x10000)
1453 {
1454 if (&info->entry > 0x10000)
1455 list_remove(&info->entry);
1456 CryptMemFree(info);
1457 }
1458 }
1459}
1460
1461/***********************************************************************
1462 * CryptEnumOIDInfo (CRYPT32.@)
1463 */
1464BOOL WINAPI CryptEnumOIDInfo(DWORD dwGroupId, DWORD dwFlags, void *pvArg,
1465 PFN_CRYPT_ENUM_OID_INFO pfnEnumOIDInfo)
1466{
1467 BOOL ret = TRUE;
1468 struct OIDInfo *info;
1469
1470 TRACE("(%d, %08x, %p, %p)\n", dwGroupId, dwFlags, pvArg,
1471 pfnEnumOIDInfo);
1472
1473 EnterCriticalSection(&oidInfoCS);
1474 LIST_FOR_EACH_ENTRY(info, &oidInfo, struct OIDInfo, entry)
1475 {
1476 if (!dwGroupId || dwGroupId == info->info.dwGroupId)
1477 {
1478 ret = pfnEnumOIDInfo(&info->info, pvArg);
1479 if (!ret)
1480 break;
1481 }
1482 }
1483 LeaveCriticalSection(&oidInfoCS);
1484 return ret;
1485}
1486
1487PCCRYPT_OID_INFO WINAPI CryptFindOIDInfo(DWORD dwKeyType, void *pvKey,
1488 DWORD dwGroupId)
1489{
1490 PCCRYPT_OID_INFO ret = NULL;
1491
1492 TRACE("(%d, %p, %d)\n", dwKeyType, pvKey, dwGroupId);
1493
1494 switch(dwKeyType)
1495 {
1496 case CRYPT_OID_INFO_ALGID_KEY:
1497 {
1498 struct OIDInfo *info;
1499
1500 TRACE("CRYPT_OID_INFO_ALGID_KEY: %d\n", *(DWORD *)pvKey);
1501 EnterCriticalSection(&oidInfoCS);
1502 LIST_FOR_EACH_ENTRY(info, &oidInfo, struct OIDInfo, entry)
1503 {
1504 if (info->info.u.Algid == *(DWORD *)pvKey &&
1505 (!dwGroupId || info->info.dwGroupId == dwGroupId))
1506 {
1507 ret = &info->info;
1508 break;
1509 }
1510 }
1511 LeaveCriticalSection(&oidInfoCS);
1512 break;
1513 }
1514 case CRYPT_OID_INFO_NAME_KEY:
1515 {
1516 struct OIDInfo *info;
1517
1518 TRACE("CRYPT_OID_INFO_NAME_KEY: %s\n", debugstr_w((LPWSTR)pvKey));
1519 EnterCriticalSection(&oidInfoCS);
1520 LIST_FOR_EACH_ENTRY(info, &oidInfo, struct OIDInfo, entry)
1521 {
1522 if (!lstrcmpW(info->info.pwszName, (LPWSTR)pvKey) &&
1523 (!dwGroupId || info->info.dwGroupId == dwGroupId))
1524 {
1525 ret = &info->info;
1526 break;
1527 }
1528 }
1529 LeaveCriticalSection(&oidInfoCS);
1530 break;
1531 }
1532 case CRYPT_OID_INFO_OID_KEY:
1533 {
1534 struct OIDInfo *info;
1535 LPSTR oid = (LPSTR)pvKey;
1536
1537 TRACE("CRYPT_OID_INFO_OID_KEY: %s\n", debugstr_a(oid));
1538 EnterCriticalSection(&oidInfoCS);
1539 LIST_FOR_EACH_ENTRY(info, &oidInfo, struct OIDInfo, entry)
1540 {
1541 if (!lstrcmpA(info->info.pszOID, oid) &&
1542 (!dwGroupId || info->info.dwGroupId == dwGroupId))
1543 {
1544 ret = &info->info;
1545 break;
1546 }
1547 }
1548 LeaveCriticalSection(&oidInfoCS);
1549 break;
1550 }
1551 case CRYPT_OID_INFO_SIGN_KEY:
1552 {
1553 struct OIDInfo *info;
1554
1555 TRACE("CRYPT_OID_INFO_SIGN_KEY: %d\n", *(DWORD *)pvKey);
1556 EnterCriticalSection(&oidInfoCS);
1557 LIST_FOR_EACH_ENTRY(info, &oidInfo, struct OIDInfo, entry)
1558 {
1559 if (info->info.u.Algid == *(DWORD *)pvKey &&
1560 info->info.ExtraInfo.cbData >= sizeof(DWORD) &&
1561 *(DWORD *)info->info.ExtraInfo.pbData ==
1562 *(DWORD *)((LPBYTE)pvKey + sizeof(DWORD)) &&
1563 (!dwGroupId || info->info.dwGroupId == dwGroupId))
1564 {
1565 ret = &info->info;
1566 break;
1567 }
1568 }
1569 LeaveCriticalSection(&oidInfoCS);
1570 break;
1571 }
1572 }
1573 return ret;
1574}
1575
1576LPCSTR WINAPI CertAlgIdToOID(DWORD dwAlgId)
1577{
1578 LPCSTR ret;
1579 PCCRYPT_OID_INFO info = CryptFindOIDInfo(CRYPT_OID_INFO_ALGID_KEY,
1580 &dwAlgId, 0);
1581
1582 if (info)
1583 ret = info->pszOID;
1584 else
1585 ret = NULL;
1586 return ret;
1587}
1588
1589DWORD WINAPI CertOIDToAlgId(LPCSTR pszObjId)
1590{
1591 DWORD ret;
1592 PCCRYPT_OID_INFO info = CryptFindOIDInfo(CRYPT_OID_INFO_OID_KEY,
1593 (void *)pszObjId, 0);
1594
1595 if (info)
1596 ret = info->u.Algid;
1597 else
1598 ret = 0;
1599 return ret;
1600}
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