crypt32: Test and implement encoding signed messages with certificates.
[wine/wine-kai.git] / dlls / crypt32 / encode.c
blobd8ccf7e54c291a939333495608bd7f0c81681b68
1 /*
2 * Copyright 2005 Juan Lang
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation; either
7 * version 2.1 of the License, or (at your option) any later version.
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the Free Software
16 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
18 * This file implements ASN.1 DER encoding of a limited set of types.
19 * It isn't a full ASN.1 implementation. Microsoft implements BER
20 * encoding of many of the basic types in msasn1.dll, but that interface is
21 * undocumented, so I implement them here.
23 * References:
24 * "A Layman's Guide to a Subset of ASN.1, BER, and DER", by Burton Kaliski
25 * (available online, look for a PDF copy as the HTML versions tend to have
26 * translation errors.)
28 * RFC3280, http://www.faqs.org/rfcs/rfc3280.html
30 * MSDN, especially:
31 * http://msdn.microsoft.com/library/en-us/seccrypto/security/constants_for_cryptencodeobject_and_cryptdecodeobject.asp
34 #include <assert.h>
35 #include <stdarg.h>
36 #include <stdio.h>
37 #include <stdlib.h>
39 #define NONAMELESSUNION
41 #include "windef.h"
42 #include "winbase.h"
43 #include "wincrypt.h"
44 #include "snmp.h"
45 #include "wine/debug.h"
46 #include "wine/exception.h"
47 #include "wine/unicode.h"
48 #include "crypt32_private.h"
50 WINE_DEFAULT_DEBUG_CHANNEL(crypt);
52 typedef BOOL (WINAPI *CryptEncodeObjectFunc)(DWORD, LPCSTR, const void *,
53 BYTE *, DWORD *);
55 /* Prototypes for built-in encoders. They follow the Ex style prototypes.
56 * The dwCertEncodingType and lpszStructType are ignored by the built-in
57 * functions, but the parameters are retained to simplify CryptEncodeObjectEx,
58 * since it must call functions in external DLLs that follow these signatures.
60 BOOL WINAPI CRYPT_AsnEncodeOid(DWORD dwCertEncodingType,
61 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
62 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
63 static BOOL WINAPI CRYPT_AsnEncodeExtensions(DWORD dwCertEncodingType,
64 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
65 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
66 static BOOL WINAPI CRYPT_AsnEncodeSequenceOfAny(DWORD dwCertEncodingType,
67 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
68 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
69 static BOOL WINAPI CRYPT_AsnEncodeBool(DWORD dwCertEncodingType,
70 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
71 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
72 static BOOL WINAPI CRYPT_AsnEncodePubKeyInfo(DWORD dwCertEncodingType,
73 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
74 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
75 static BOOL WINAPI CRYPT_AsnEncodeBits(DWORD dwCertEncodingType,
76 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
77 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
78 static BOOL WINAPI CRYPT_AsnEncodeBitsSwapBytes(DWORD dwCertEncodingType,
79 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
80 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
81 static BOOL WINAPI CRYPT_AsnEncodeInt(DWORD dwCertEncodingType,
82 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
83 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
84 static BOOL WINAPI CRYPT_AsnEncodeInteger(DWORD dwCertEncodingType,
85 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
86 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
87 static BOOL WINAPI CRYPT_AsnEncodeUnsignedInteger(DWORD dwCertEncodingType,
88 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
89 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
90 static BOOL WINAPI CRYPT_AsnEncodeChoiceOfTime(DWORD dwCertEncodingType,
91 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
92 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
94 BOOL WINAPI CryptEncodeObject(DWORD dwCertEncodingType, LPCSTR lpszStructType,
95 const void *pvStructInfo, BYTE *pbEncoded, DWORD *pcbEncoded)
97 static HCRYPTOIDFUNCSET set = NULL;
98 BOOL ret = FALSE;
99 HCRYPTOIDFUNCADDR hFunc;
100 CryptEncodeObjectFunc pCryptEncodeObject;
102 TRACE("(0x%08x, %s, %p, %p, %p)\n", dwCertEncodingType,
103 debugstr_a(lpszStructType), pvStructInfo, pbEncoded,
104 pcbEncoded);
106 if (!pbEncoded && !pcbEncoded)
108 SetLastError(ERROR_INVALID_PARAMETER);
109 return FALSE;
112 /* Try registered DLL first.. */
113 if (!set)
114 set = CryptInitOIDFunctionSet(CRYPT_OID_ENCODE_OBJECT_FUNC, 0);
115 CryptGetOIDFunctionAddress(set, dwCertEncodingType, lpszStructType, 0,
116 (void **)&pCryptEncodeObject, &hFunc);
117 if (pCryptEncodeObject)
119 ret = pCryptEncodeObject(dwCertEncodingType, lpszStructType,
120 pvStructInfo, pbEncoded, pcbEncoded);
121 CryptFreeOIDFunctionAddress(hFunc, 0);
123 else
125 /* If not, use CryptEncodeObjectEx */
126 ret = CryptEncodeObjectEx(dwCertEncodingType, lpszStructType,
127 pvStructInfo, 0, NULL, pbEncoded, pcbEncoded);
129 return ret;
132 BOOL CRYPT_EncodeEnsureSpace(DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara,
133 BYTE *pbEncoded, DWORD *pcbEncoded, DWORD bytesNeeded)
135 BOOL ret = TRUE;
137 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
139 if (pEncodePara && pEncodePara->pfnAlloc)
140 *(BYTE **)pbEncoded = pEncodePara->pfnAlloc(bytesNeeded);
141 else
142 *(BYTE **)pbEncoded = LocalAlloc(0, bytesNeeded);
143 if (!*(BYTE **)pbEncoded)
144 ret = FALSE;
145 else
146 *pcbEncoded = bytesNeeded;
148 else if (bytesNeeded > *pcbEncoded)
150 *pcbEncoded = bytesNeeded;
151 SetLastError(ERROR_MORE_DATA);
152 ret = FALSE;
154 else
155 *pcbEncoded = bytesNeeded;
156 return ret;
159 BOOL CRYPT_EncodeLen(DWORD len, BYTE *pbEncoded, DWORD *pcbEncoded)
161 DWORD bytesNeeded, significantBytes = 0;
163 if (len <= 0x7f)
164 bytesNeeded = 1;
165 else
167 DWORD temp;
169 for (temp = len, significantBytes = sizeof(temp); !(temp & 0xff000000);
170 temp <<= 8, significantBytes--)
172 bytesNeeded = significantBytes + 1;
174 if (!pbEncoded)
176 *pcbEncoded = bytesNeeded;
177 return TRUE;
179 if (*pcbEncoded < bytesNeeded)
181 SetLastError(ERROR_MORE_DATA);
182 return FALSE;
184 if (len <= 0x7f)
185 *pbEncoded = (BYTE)len;
186 else
188 DWORD i;
190 *pbEncoded++ = significantBytes | 0x80;
191 for (i = 0; i < significantBytes; i++)
193 *(pbEncoded + significantBytes - i - 1) = (BYTE)(len & 0xff);
194 len >>= 8;
197 *pcbEncoded = bytesNeeded;
198 return TRUE;
201 BOOL WINAPI CRYPT_AsnEncodeSequence(DWORD dwCertEncodingType,
202 struct AsnEncodeSequenceItem items[], DWORD cItem, DWORD dwFlags,
203 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
205 BOOL ret;
206 DWORD i, dataLen = 0;
208 TRACE("%p, %d, %08x, %p, %p, %d\n", items, cItem, dwFlags, pEncodePara,
209 pbEncoded, *pcbEncoded);
210 for (i = 0, ret = TRUE; ret && i < cItem; i++)
212 ret = items[i].encodeFunc(dwCertEncodingType, NULL,
213 items[i].pvStructInfo, dwFlags & ~CRYPT_ENCODE_ALLOC_FLAG, NULL,
214 NULL, &items[i].size);
215 /* Some functions propagate their errors through the size */
216 if (!ret)
217 *pcbEncoded = items[i].size;
218 dataLen += items[i].size;
220 if (ret)
222 DWORD lenBytes, bytesNeeded;
224 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
225 bytesNeeded = 1 + lenBytes + dataLen;
226 if (!pbEncoded)
227 *pcbEncoded = bytesNeeded;
228 else
230 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
231 pcbEncoded, bytesNeeded)))
233 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
234 pbEncoded = *(BYTE **)pbEncoded;
235 *pbEncoded++ = ASN_SEQUENCE;
236 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
237 pbEncoded += lenBytes;
238 for (i = 0; ret && i < cItem; i++)
240 ret = items[i].encodeFunc(dwCertEncodingType, NULL,
241 items[i].pvStructInfo, dwFlags & ~CRYPT_ENCODE_ALLOC_FLAG,
242 NULL, pbEncoded, &items[i].size);
243 /* Some functions propagate their errors through the size */
244 if (!ret)
245 *pcbEncoded = items[i].size;
246 pbEncoded += items[i].size;
251 TRACE("returning %d (%08x)\n", ret, GetLastError());
252 return ret;
255 BOOL WINAPI CRYPT_AsnEncodeConstructed(DWORD dwCertEncodingType,
256 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
257 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
259 BOOL ret;
260 const struct AsnConstructedItem *item =
261 (const struct AsnConstructedItem *)pvStructInfo;
262 DWORD len;
264 if ((ret = item->encodeFunc(dwCertEncodingType, lpszStructType,
265 item->pvStructInfo, dwFlags & ~CRYPT_ENCODE_ALLOC_FLAG, NULL, NULL, &len)))
267 DWORD dataLen, bytesNeeded;
269 CRYPT_EncodeLen(len, NULL, &dataLen);
270 bytesNeeded = 1 + dataLen + len;
271 if (!pbEncoded)
272 *pcbEncoded = bytesNeeded;
273 else if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
274 pbEncoded, pcbEncoded, bytesNeeded)))
276 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
277 pbEncoded = *(BYTE **)pbEncoded;
278 *pbEncoded++ = ASN_CONTEXT | ASN_CONSTRUCTOR | item->tag;
279 CRYPT_EncodeLen(len, pbEncoded, &dataLen);
280 pbEncoded += dataLen;
281 ret = item->encodeFunc(dwCertEncodingType, lpszStructType,
282 item->pvStructInfo, dwFlags & ~CRYPT_ENCODE_ALLOC_FLAG, NULL,
283 pbEncoded, &len);
284 if (!ret)
286 /* Some functions propagate their errors through the size */
287 *pcbEncoded = len;
291 else
293 /* Some functions propagate their errors through the size */
294 *pcbEncoded = len;
296 return ret;
299 struct AsnEncodeTagSwappedItem
301 BYTE tag;
302 const void *pvStructInfo;
303 CryptEncodeObjectExFunc encodeFunc;
306 /* Sort of a wacky hack, it encodes something using the struct
307 * AsnEncodeTagSwappedItem's encodeFunc, then replaces the tag byte with the tag
308 * given in the struct AsnEncodeTagSwappedItem.
310 static BOOL WINAPI CRYPT_AsnEncodeSwapTag(DWORD dwCertEncodingType,
311 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
312 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
314 BOOL ret;
315 const struct AsnEncodeTagSwappedItem *item =
316 (const struct AsnEncodeTagSwappedItem *)pvStructInfo;
318 ret = item->encodeFunc(dwCertEncodingType, lpszStructType,
319 item->pvStructInfo, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
320 if (ret && pbEncoded)
321 *pbEncoded = item->tag;
322 return ret;
325 static BOOL WINAPI CRYPT_AsnEncodeCertVersion(DWORD dwCertEncodingType,
326 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
327 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
329 const DWORD *ver = (const DWORD *)pvStructInfo;
330 BOOL ret;
332 /* CERT_V1 is not encoded */
333 if (*ver == CERT_V1)
335 *pcbEncoded = 0;
336 ret = TRUE;
338 else
340 struct AsnConstructedItem item = { 0, ver, CRYPT_AsnEncodeInt };
342 ret = CRYPT_AsnEncodeConstructed(dwCertEncodingType, X509_INTEGER,
343 &item, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
345 return ret;
348 static BOOL WINAPI CRYPT_CopyEncodedBlob(DWORD dwCertEncodingType,
349 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
350 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
352 const CRYPT_DER_BLOB *blob = (const CRYPT_DER_BLOB *)pvStructInfo;
353 BOOL ret;
355 if (!pbEncoded)
357 *pcbEncoded = blob->cbData;
358 ret = TRUE;
360 else
362 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
363 pcbEncoded, blob->cbData)))
365 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
366 pbEncoded = *(BYTE **)pbEncoded;
367 if (blob->cbData)
368 memcpy(pbEncoded, blob->pbData, blob->cbData);
369 *pcbEncoded = blob->cbData;
370 ret = TRUE;
373 return ret;
376 static BOOL WINAPI CRYPT_AsnEncodeValidity(DWORD dwCertEncodingType,
377 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
378 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
380 BOOL ret;
381 /* This has two filetimes in a row, a NotBefore and a NotAfter */
382 const FILETIME *timePtr = (const FILETIME *)pvStructInfo;
383 struct AsnEncodeSequenceItem items[] = {
384 { timePtr++, CRYPT_AsnEncodeChoiceOfTime, 0 },
385 { timePtr, CRYPT_AsnEncodeChoiceOfTime, 0 },
388 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
389 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
390 pcbEncoded);
391 return ret;
394 /* Like CRYPT_AsnEncodeAlgorithmId, but encodes parameters as an asn.1 NULL
395 * if they are empty.
397 static BOOL WINAPI CRYPT_AsnEncodeAlgorithmIdWithNullParams(
398 DWORD dwCertEncodingType, LPCSTR lpszStructType, const void *pvStructInfo,
399 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
400 DWORD *pcbEncoded)
402 const CRYPT_ALGORITHM_IDENTIFIER *algo =
403 (const CRYPT_ALGORITHM_IDENTIFIER *)pvStructInfo;
404 static const BYTE asn1Null[] = { ASN_NULL, 0 };
405 static const CRYPT_DATA_BLOB nullBlob = { sizeof(asn1Null),
406 (LPBYTE)asn1Null };
407 BOOL ret;
408 struct AsnEncodeSequenceItem items[2] = {
409 { algo->pszObjId, CRYPT_AsnEncodeOid, 0 },
410 { NULL, CRYPT_CopyEncodedBlob, 0 },
413 if (algo->Parameters.cbData)
414 items[1].pvStructInfo = &algo->Parameters;
415 else
416 items[1].pvStructInfo = &nullBlob;
417 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
418 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
419 pcbEncoded);
420 return ret;
423 static BOOL WINAPI CRYPT_AsnEncodeAlgorithmId(DWORD dwCertEncodingType,
424 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
425 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
427 const CRYPT_ALGORITHM_IDENTIFIER *algo =
428 (const CRYPT_ALGORITHM_IDENTIFIER *)pvStructInfo;
429 BOOL ret;
430 struct AsnEncodeSequenceItem items[] = {
431 { algo->pszObjId, CRYPT_AsnEncodeOid, 0 },
432 { &algo->Parameters, CRYPT_CopyEncodedBlob, 0 },
435 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
436 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
437 pcbEncoded);
438 return ret;
441 static BOOL WINAPI CRYPT_AsnEncodePubKeyInfo(DWORD dwCertEncodingType,
442 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
443 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
445 BOOL ret;
447 __TRY
449 const CERT_PUBLIC_KEY_INFO *info =
450 (const CERT_PUBLIC_KEY_INFO *)pvStructInfo;
451 struct AsnEncodeSequenceItem items[] = {
452 { &info->Algorithm, CRYPT_AsnEncodeAlgorithmId, 0 },
453 { &info->PublicKey, CRYPT_AsnEncodeBits, 0 },
456 TRACE("Encoding public key with OID %s\n",
457 debugstr_a(info->Algorithm.pszObjId));
458 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
459 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
460 pcbEncoded);
462 __EXCEPT_PAGE_FAULT
464 SetLastError(STATUS_ACCESS_VIOLATION);
465 ret = FALSE;
467 __ENDTRY
468 return ret;
471 static BOOL WINAPI CRYPT_AsnEncodeCert(DWORD dwCertEncodingType,
472 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
473 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
475 BOOL ret;
477 __TRY
479 const CERT_SIGNED_CONTENT_INFO *info =
480 (const CERT_SIGNED_CONTENT_INFO *)pvStructInfo;
481 struct AsnEncodeSequenceItem items[] = {
482 { &info->ToBeSigned, CRYPT_CopyEncodedBlob, 0 },
483 { &info->SignatureAlgorithm, CRYPT_AsnEncodeAlgorithmId, 0 },
484 { &info->Signature, CRYPT_AsnEncodeBitsSwapBytes, 0 },
487 if (dwFlags & CRYPT_ENCODE_NO_SIGNATURE_BYTE_REVERSAL_FLAG)
488 items[2].encodeFunc = CRYPT_AsnEncodeBits;
489 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
490 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
491 pcbEncoded);
493 __EXCEPT_PAGE_FAULT
495 SetLastError(STATUS_ACCESS_VIOLATION);
496 ret = FALSE;
498 __ENDTRY
499 return ret;
502 /* Like in Windows, this blithely ignores the validity of the passed-in
503 * CERT_INFO, and just encodes it as-is. The resulting encoded data may not
504 * decode properly, see CRYPT_AsnDecodeCertInfo.
506 static BOOL WINAPI CRYPT_AsnEncodeCertInfo(DWORD dwCertEncodingType,
507 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
508 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
510 BOOL ret;
512 __TRY
514 const CERT_INFO *info = (const CERT_INFO *)pvStructInfo;
515 struct AsnEncodeSequenceItem items[10] = {
516 { &info->dwVersion, CRYPT_AsnEncodeCertVersion, 0 },
517 { &info->SerialNumber, CRYPT_AsnEncodeInteger, 0 },
518 { &info->SignatureAlgorithm, CRYPT_AsnEncodeAlgorithmId, 0 },
519 { &info->Issuer, CRYPT_CopyEncodedBlob, 0 },
520 { &info->NotBefore, CRYPT_AsnEncodeValidity, 0 },
521 { &info->Subject, CRYPT_CopyEncodedBlob, 0 },
522 { &info->SubjectPublicKeyInfo, CRYPT_AsnEncodePubKeyInfo, 0 },
523 { 0 }
525 struct AsnConstructedItem constructed[3] = { { 0 } };
526 DWORD cItem = 7, cConstructed = 0;
528 if (info->IssuerUniqueId.cbData)
530 constructed[cConstructed].tag = 1;
531 constructed[cConstructed].pvStructInfo = &info->IssuerUniqueId;
532 constructed[cConstructed].encodeFunc = CRYPT_AsnEncodeBits;
533 items[cItem].pvStructInfo = &constructed[cConstructed];
534 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
535 cConstructed++;
536 cItem++;
538 if (info->SubjectUniqueId.cbData)
540 constructed[cConstructed].tag = 2;
541 constructed[cConstructed].pvStructInfo = &info->SubjectUniqueId;
542 constructed[cConstructed].encodeFunc = CRYPT_AsnEncodeBits;
543 items[cItem].pvStructInfo = &constructed[cConstructed];
544 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
545 cConstructed++;
546 cItem++;
548 if (info->cExtension)
550 constructed[cConstructed].tag = 3;
551 constructed[cConstructed].pvStructInfo = &info->cExtension;
552 constructed[cConstructed].encodeFunc = CRYPT_AsnEncodeExtensions;
553 items[cItem].pvStructInfo = &constructed[cConstructed];
554 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
555 cConstructed++;
556 cItem++;
559 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items, cItem,
560 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
562 __EXCEPT_PAGE_FAULT
564 SetLastError(STATUS_ACCESS_VIOLATION);
565 ret = FALSE;
567 __ENDTRY
568 return ret;
571 static BOOL WINAPI CRYPT_AsnEncodeCRLEntry(const CRL_ENTRY *entry,
572 BYTE *pbEncoded, DWORD *pcbEncoded)
574 struct AsnEncodeSequenceItem items[3] = {
575 { &entry->SerialNumber, CRYPT_AsnEncodeInteger, 0 },
576 { &entry->RevocationDate, CRYPT_AsnEncodeChoiceOfTime, 0 },
577 { 0 }
579 DWORD cItem = 2;
580 BOOL ret;
582 TRACE("%p, %p, %p\n", entry, pbEncoded, pcbEncoded);
584 if (entry->cExtension)
586 items[cItem].pvStructInfo = &entry->cExtension;
587 items[cItem].encodeFunc = CRYPT_AsnEncodeExtensions;
588 cItem++;
591 ret = CRYPT_AsnEncodeSequence(X509_ASN_ENCODING, items, cItem, 0, NULL,
592 pbEncoded, pcbEncoded);
594 TRACE("returning %d (%08x)\n", ret, GetLastError());
595 return ret;
598 static BOOL WINAPI CRYPT_AsnEncodeCRLEntries(DWORD dwCertEncodingType,
599 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
600 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
602 DWORD cCRLEntry = *(const DWORD *)pvStructInfo;
603 DWORD bytesNeeded, dataLen, lenBytes, i;
604 const CRL_ENTRY *rgCRLEntry = *(const CRL_ENTRY *const *)
605 ((const BYTE *)pvStructInfo + sizeof(DWORD));
606 BOOL ret = TRUE;
608 for (i = 0, dataLen = 0; ret && i < cCRLEntry; i++)
610 DWORD size;
612 ret = CRYPT_AsnEncodeCRLEntry(&rgCRLEntry[i], NULL, &size);
613 if (ret)
614 dataLen += size;
616 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
617 bytesNeeded = 1 + lenBytes + dataLen;
618 if (!pbEncoded)
619 *pcbEncoded = bytesNeeded;
620 else
622 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
623 pcbEncoded, bytesNeeded)))
625 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
626 pbEncoded = *(BYTE **)pbEncoded;
627 *pbEncoded++ = ASN_SEQUENCEOF;
628 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
629 pbEncoded += lenBytes;
630 for (i = 0; i < cCRLEntry; i++)
632 DWORD size = dataLen;
634 ret = CRYPT_AsnEncodeCRLEntry(&rgCRLEntry[i], pbEncoded, &size);
635 pbEncoded += size;
636 dataLen -= size;
640 return ret;
643 static BOOL WINAPI CRYPT_AsnEncodeCRLVersion(DWORD dwCertEncodingType,
644 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
645 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
647 const DWORD *ver = (const DWORD *)pvStructInfo;
648 BOOL ret;
650 /* CRL_V1 is not encoded */
651 if (*ver == CRL_V1)
653 *pcbEncoded = 0;
654 ret = TRUE;
656 else
657 ret = CRYPT_AsnEncodeInt(dwCertEncodingType, X509_INTEGER, ver,
658 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
659 return ret;
662 /* Like in Windows, this blithely ignores the validity of the passed-in
663 * CRL_INFO, and just encodes it as-is. The resulting encoded data may not
664 * decode properly, see CRYPT_AsnDecodeCRLInfo.
666 static BOOL WINAPI CRYPT_AsnEncodeCRLInfo(DWORD dwCertEncodingType,
667 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
668 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
670 BOOL ret;
672 __TRY
674 const CRL_INFO *info = (const CRL_INFO *)pvStructInfo;
675 struct AsnEncodeSequenceItem items[7] = {
676 { &info->dwVersion, CRYPT_AsnEncodeCRLVersion, 0 },
677 { &info->SignatureAlgorithm, CRYPT_AsnEncodeAlgorithmId, 0 },
678 { &info->Issuer, CRYPT_CopyEncodedBlob, 0 },
679 { &info->ThisUpdate, CRYPT_AsnEncodeChoiceOfTime, 0 },
680 { 0 }
682 struct AsnConstructedItem constructed[1] = { { 0 } };
683 DWORD cItem = 4, cConstructed = 0;
685 if (info->NextUpdate.dwLowDateTime || info->NextUpdate.dwHighDateTime)
687 items[cItem].pvStructInfo = &info->NextUpdate;
688 items[cItem].encodeFunc = CRYPT_AsnEncodeChoiceOfTime;
689 cItem++;
691 if (info->cCRLEntry)
693 items[cItem].pvStructInfo = &info->cCRLEntry;
694 items[cItem].encodeFunc = CRYPT_AsnEncodeCRLEntries;
695 cItem++;
697 if (info->cExtension)
699 constructed[cConstructed].tag = 0;
700 constructed[cConstructed].pvStructInfo = &info->cExtension;
701 constructed[cConstructed].encodeFunc = CRYPT_AsnEncodeExtensions;
702 items[cItem].pvStructInfo = &constructed[cConstructed];
703 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
704 cConstructed++;
705 cItem++;
708 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items, cItem,
709 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
711 __EXCEPT_PAGE_FAULT
713 SetLastError(STATUS_ACCESS_VIOLATION);
714 ret = FALSE;
716 __ENDTRY
717 return ret;
720 static BOOL CRYPT_AsnEncodeExtension(CERT_EXTENSION *ext, BYTE *pbEncoded,
721 DWORD *pcbEncoded)
723 BOOL ret;
724 struct AsnEncodeSequenceItem items[3] = {
725 { ext->pszObjId, CRYPT_AsnEncodeOid, 0 },
726 { NULL, NULL, 0 },
727 { NULL, NULL, 0 },
729 DWORD cItem = 1;
731 TRACE("%p, %p, %d\n", ext, pbEncoded, *pcbEncoded);
733 if (ext->fCritical)
735 items[cItem].pvStructInfo = &ext->fCritical;
736 items[cItem].encodeFunc = CRYPT_AsnEncodeBool;
737 cItem++;
739 items[cItem].pvStructInfo = &ext->Value;
740 items[cItem].encodeFunc = CRYPT_AsnEncodeOctets;
741 cItem++;
743 ret = CRYPT_AsnEncodeSequence(X509_ASN_ENCODING, items, cItem, 0, NULL,
744 pbEncoded, pcbEncoded);
745 TRACE("returning %d (%08x)\n", ret, GetLastError());
746 return ret;
749 static BOOL WINAPI CRYPT_AsnEncodeExtensions(DWORD dwCertEncodingType,
750 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
751 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
753 BOOL ret;
755 __TRY
757 DWORD bytesNeeded, dataLen, lenBytes, i;
758 const CERT_EXTENSIONS *exts = (const CERT_EXTENSIONS *)pvStructInfo;
760 ret = TRUE;
761 for (i = 0, dataLen = 0; ret && i < exts->cExtension; i++)
763 DWORD size;
765 ret = CRYPT_AsnEncodeExtension(&exts->rgExtension[i], NULL, &size);
766 if (ret)
767 dataLen += size;
769 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
770 bytesNeeded = 1 + lenBytes + dataLen;
771 if (!pbEncoded)
772 *pcbEncoded = bytesNeeded;
773 else
775 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
776 pcbEncoded, bytesNeeded)))
778 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
779 pbEncoded = *(BYTE **)pbEncoded;
780 *pbEncoded++ = ASN_SEQUENCEOF;
781 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
782 pbEncoded += lenBytes;
783 for (i = 0; i < exts->cExtension; i++)
785 DWORD size = dataLen;
787 ret = CRYPT_AsnEncodeExtension(&exts->rgExtension[i],
788 pbEncoded, &size);
789 pbEncoded += size;
790 dataLen -= size;
795 __EXCEPT_PAGE_FAULT
797 SetLastError(STATUS_ACCESS_VIOLATION);
798 ret = FALSE;
800 __ENDTRY
801 return ret;
804 BOOL WINAPI CRYPT_AsnEncodeOid(DWORD dwCertEncodingType,
805 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
806 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
808 LPCSTR pszObjId = (LPCSTR)pvStructInfo;
809 DWORD bytesNeeded = 0, lenBytes;
810 BOOL ret = TRUE;
811 int firstPos = 0;
812 BYTE firstByte = 0;
814 TRACE("%s\n", debugstr_a(pszObjId));
816 if (pszObjId)
818 const char *ptr;
819 int val1, val2;
821 if (sscanf(pszObjId, "%d.%d.%n", &val1, &val2, &firstPos) != 2)
823 SetLastError(CRYPT_E_ASN1_ERROR);
824 return FALSE;
826 bytesNeeded++;
827 firstByte = val1 * 40 + val2;
828 ptr = pszObjId + firstPos;
829 while (ret && *ptr)
831 int pos;
833 /* note I assume each component is at most 32-bits long in base 2 */
834 if (sscanf(ptr, "%d%n", &val1, &pos) == 1)
836 if (val1 >= 0x10000000)
837 bytesNeeded += 5;
838 else if (val1 >= 0x200000)
839 bytesNeeded += 4;
840 else if (val1 >= 0x4000)
841 bytesNeeded += 3;
842 else if (val1 >= 0x80)
843 bytesNeeded += 2;
844 else
845 bytesNeeded += 1;
846 ptr += pos;
847 if (*ptr == '.')
848 ptr++;
850 else
852 SetLastError(CRYPT_E_ASN1_ERROR);
853 return FALSE;
856 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
858 else
859 lenBytes = 1;
860 bytesNeeded += 1 + lenBytes;
861 if (pbEncoded)
863 if (*pcbEncoded < bytesNeeded)
865 SetLastError(ERROR_MORE_DATA);
866 ret = FALSE;
868 else
870 *pbEncoded++ = ASN_OBJECTIDENTIFIER;
871 CRYPT_EncodeLen(bytesNeeded - 1 - lenBytes, pbEncoded, &lenBytes);
872 pbEncoded += lenBytes;
873 if (pszObjId)
875 const char *ptr;
876 int val, pos;
878 *pbEncoded++ = firstByte;
879 ptr = pszObjId + firstPos;
880 while (ret && *ptr)
882 sscanf(ptr, "%d%n", &val, &pos);
884 unsigned char outBytes[5];
885 int numBytes, i;
887 if (val >= 0x10000000)
888 numBytes = 5;
889 else if (val >= 0x200000)
890 numBytes = 4;
891 else if (val >= 0x4000)
892 numBytes = 3;
893 else if (val >= 0x80)
894 numBytes = 2;
895 else
896 numBytes = 1;
897 for (i = numBytes; i > 0; i--)
899 outBytes[i - 1] = val & 0x7f;
900 val >>= 7;
902 for (i = 0; i < numBytes - 1; i++)
903 *pbEncoded++ = outBytes[i] | 0x80;
904 *pbEncoded++ = outBytes[i];
905 ptr += pos;
906 if (*ptr == '.')
907 ptr++;
913 *pcbEncoded = bytesNeeded;
914 return ret;
917 static BOOL CRYPT_AsnEncodeStringCoerce(const CERT_NAME_VALUE *value,
918 BYTE tag, DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
919 DWORD *pcbEncoded)
921 BOOL ret = TRUE;
922 LPCSTR str = (LPCSTR)value->Value.pbData;
923 DWORD bytesNeeded, lenBytes, encodedLen;
925 encodedLen = value->Value.cbData ? value->Value.cbData : lstrlenA(str);
926 CRYPT_EncodeLen(encodedLen, NULL, &lenBytes);
927 bytesNeeded = 1 + lenBytes + encodedLen;
928 if (!pbEncoded)
929 *pcbEncoded = bytesNeeded;
930 else
932 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
933 pbEncoded, pcbEncoded, bytesNeeded)))
935 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
936 pbEncoded = *(BYTE **)pbEncoded;
937 *pbEncoded++ = tag;
938 CRYPT_EncodeLen(encodedLen, pbEncoded, &lenBytes);
939 pbEncoded += lenBytes;
940 memcpy(pbEncoded, str, encodedLen);
943 return ret;
946 static BOOL CRYPT_AsnEncodeBMPString(const CERT_NAME_VALUE *value,
947 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
948 DWORD *pcbEncoded)
950 BOOL ret = TRUE;
951 LPCWSTR str = (LPCWSTR)value->Value.pbData;
952 DWORD bytesNeeded, lenBytes, strLen;
954 strLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
955 lstrlenW(str);
956 CRYPT_EncodeLen(strLen * 2, NULL, &lenBytes);
957 bytesNeeded = 1 + lenBytes + strLen * 2;
958 if (!pbEncoded)
959 *pcbEncoded = bytesNeeded;
960 else
962 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
963 pbEncoded, pcbEncoded, bytesNeeded)))
965 DWORD i;
967 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
968 pbEncoded = *(BYTE **)pbEncoded;
969 *pbEncoded++ = ASN_BMPSTRING;
970 CRYPT_EncodeLen(strLen * 2, pbEncoded, &lenBytes);
971 pbEncoded += lenBytes;
972 for (i = 0; i < strLen; i++)
974 *pbEncoded++ = (str[i] & 0xff00) >> 8;
975 *pbEncoded++ = str[i] & 0x00ff;
979 return ret;
982 static BOOL CRYPT_AsnEncodeUTF8String(const CERT_NAME_VALUE *value,
983 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
984 DWORD *pcbEncoded)
986 BOOL ret = TRUE;
987 LPCWSTR str = (LPCWSTR)value->Value.pbData;
988 DWORD bytesNeeded, lenBytes, encodedLen, strLen;
990 strLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
991 lstrlenW(str);
992 encodedLen = WideCharToMultiByte(CP_UTF8, 0, str, strLen, NULL, 0, NULL,
993 NULL);
994 CRYPT_EncodeLen(encodedLen, NULL, &lenBytes);
995 bytesNeeded = 1 + lenBytes + encodedLen;
996 if (!pbEncoded)
997 *pcbEncoded = bytesNeeded;
998 else
1000 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1001 pbEncoded, pcbEncoded, bytesNeeded)))
1003 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1004 pbEncoded = *(BYTE **)pbEncoded;
1005 *pbEncoded++ = ASN_UTF8STRING;
1006 CRYPT_EncodeLen(encodedLen, pbEncoded, &lenBytes);
1007 pbEncoded += lenBytes;
1008 WideCharToMultiByte(CP_UTF8, 0, str, strLen, (LPSTR)pbEncoded,
1009 bytesNeeded - lenBytes - 1, NULL, NULL);
1012 return ret;
1015 static BOOL WINAPI CRYPT_AsnEncodeNameValue(DWORD dwCertEncodingType,
1016 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1017 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1019 BOOL ret = TRUE;
1021 __TRY
1023 const CERT_NAME_VALUE *value = (const CERT_NAME_VALUE *)pvStructInfo;
1025 switch (value->dwValueType)
1027 case CERT_RDN_ANY_TYPE:
1028 /* explicitly disallowed */
1029 SetLastError(E_INVALIDARG);
1030 ret = FALSE;
1031 break;
1032 case CERT_RDN_ENCODED_BLOB:
1033 ret = CRYPT_CopyEncodedBlob(dwCertEncodingType, NULL,
1034 &value->Value, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1035 break;
1036 case CERT_RDN_OCTET_STRING:
1037 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_OCTETSTRING,
1038 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1039 break;
1040 case CERT_RDN_NUMERIC_STRING:
1041 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_NUMERICSTRING,
1042 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1043 break;
1044 case CERT_RDN_PRINTABLE_STRING:
1045 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_PRINTABLESTRING,
1046 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1047 break;
1048 case CERT_RDN_TELETEX_STRING:
1049 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_T61STRING,
1050 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1051 break;
1052 case CERT_RDN_VIDEOTEX_STRING:
1053 ret = CRYPT_AsnEncodeStringCoerce(value,
1054 ASN_VIDEOTEXSTRING, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1055 break;
1056 case CERT_RDN_IA5_STRING:
1057 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_IA5STRING,
1058 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1059 break;
1060 case CERT_RDN_GRAPHIC_STRING:
1061 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_GRAPHICSTRING,
1062 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1063 break;
1064 case CERT_RDN_VISIBLE_STRING:
1065 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_VISIBLESTRING,
1066 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1067 break;
1068 case CERT_RDN_GENERAL_STRING:
1069 ret = CRYPT_AsnEncodeStringCoerce(value, ASN_GENERALSTRING,
1070 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1071 break;
1072 case CERT_RDN_UNIVERSAL_STRING:
1073 FIXME("CERT_RDN_UNIVERSAL_STRING: unimplemented\n");
1074 SetLastError(CRYPT_E_ASN1_CHOICE);
1075 ret = FALSE;
1076 break;
1077 case CERT_RDN_BMP_STRING:
1078 ret = CRYPT_AsnEncodeBMPString(value, dwFlags, pEncodePara,
1079 pbEncoded, pcbEncoded);
1080 break;
1081 case CERT_RDN_UTF8_STRING:
1082 ret = CRYPT_AsnEncodeUTF8String(value, dwFlags, pEncodePara,
1083 pbEncoded, pcbEncoded);
1084 break;
1085 default:
1086 SetLastError(CRYPT_E_ASN1_CHOICE);
1087 ret = FALSE;
1090 __EXCEPT_PAGE_FAULT
1092 SetLastError(STATUS_ACCESS_VIOLATION);
1093 ret = FALSE;
1095 __ENDTRY
1096 return ret;
1099 static BOOL WINAPI CRYPT_AsnEncodeRdnAttr(DWORD dwCertEncodingType,
1100 CERT_RDN_ATTR *attr, CryptEncodeObjectExFunc nameValueEncodeFunc,
1101 BYTE *pbEncoded, DWORD *pcbEncoded)
1103 DWORD bytesNeeded = 0, lenBytes, size;
1104 BOOL ret;
1106 ret = CRYPT_AsnEncodeOid(dwCertEncodingType, NULL, attr->pszObjId,
1107 0, NULL, NULL, &size);
1108 if (ret)
1110 bytesNeeded += size;
1111 /* hack: a CERT_RDN_ATTR is identical to a CERT_NAME_VALUE beginning
1112 * with dwValueType, so "cast" it to get its encoded size
1114 ret = nameValueEncodeFunc(dwCertEncodingType, NULL,
1115 (CERT_NAME_VALUE *)&attr->dwValueType, 0, NULL, NULL, &size);
1116 if (ret)
1118 bytesNeeded += size;
1119 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
1120 bytesNeeded += 1 + lenBytes;
1121 if (pbEncoded)
1123 if (*pcbEncoded < bytesNeeded)
1125 SetLastError(ERROR_MORE_DATA);
1126 ret = FALSE;
1128 else
1130 *pbEncoded++ = ASN_SEQUENCE;
1131 CRYPT_EncodeLen(bytesNeeded - lenBytes - 1, pbEncoded,
1132 &lenBytes);
1133 pbEncoded += lenBytes;
1134 size = bytesNeeded - 1 - lenBytes;
1135 ret = CRYPT_AsnEncodeOid(dwCertEncodingType, NULL,
1136 attr->pszObjId, 0, NULL, pbEncoded, &size);
1137 if (ret)
1139 pbEncoded += size;
1140 size = bytesNeeded - 1 - lenBytes - size;
1141 ret = nameValueEncodeFunc(dwCertEncodingType,
1142 NULL, (CERT_NAME_VALUE *)&attr->dwValueType,
1143 0, NULL, pbEncoded, &size);
1144 if (!ret)
1145 *pcbEncoded = size;
1149 if (ret)
1150 *pcbEncoded = bytesNeeded;
1152 else
1154 /* Have to propagate index of failing character */
1155 *pcbEncoded = size;
1158 return ret;
1161 static int BLOBComp(const void *l, const void *r)
1163 const CRYPT_DER_BLOB *a = (const CRYPT_DER_BLOB *)l, *b = (const CRYPT_DER_BLOB *)r;
1164 int ret;
1166 if (!(ret = memcmp(a->pbData, b->pbData, min(a->cbData, b->cbData))))
1167 ret = a->cbData - b->cbData;
1168 return ret;
1171 typedef struct _CRYPT_SET_OF {
1172 DWORD cValue;
1173 PCRYPT_DER_BLOB rgValue;
1174 } CRYPT_SET_OF;
1176 /* This encodes a SET OF, which in DER must be lexicographically sorted.
1178 static BOOL WINAPI CRYPT_DEREncodeSet(DWORD dwCertEncodingType,
1179 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1180 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1182 const CRYPT_SET_OF *set = (const CRYPT_SET_OF *)pvStructInfo;
1183 DWORD bytesNeeded = 0, lenBytes, i;
1184 BOOL ret;
1186 for (i = 0; i < set->cValue; i++)
1187 bytesNeeded += set->rgValue[i].cbData;
1188 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
1189 bytesNeeded += 1 + lenBytes;
1190 if (!pbEncoded)
1192 *pcbEncoded = bytesNeeded;
1193 ret = TRUE;
1195 else if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1196 pbEncoded, pcbEncoded, bytesNeeded)))
1198 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1199 pbEncoded = *(BYTE **)pbEncoded;
1200 qsort(set->rgValue, set->cValue, sizeof(CRYPT_DER_BLOB), BLOBComp);
1201 *pbEncoded++ = ASN_CONSTRUCTOR | ASN_SETOF;
1202 CRYPT_EncodeLen(bytesNeeded - lenBytes - 1, pbEncoded, &lenBytes);
1203 pbEncoded += lenBytes;
1204 for (i = 0; ret && i < set->cValue; i++)
1206 memcpy(pbEncoded, set->rgValue[i].pbData, set->rgValue[i].cbData);
1207 pbEncoded += set->rgValue[i].cbData;
1210 return ret;
1213 struct DERSetDescriptor
1215 DWORD cItems;
1216 const void *items;
1217 size_t itemSize;
1218 off_t itemOffset;
1219 CryptEncodeObjectExFunc encode;
1222 static BOOL WINAPI CRYPT_DEREncodeItemsAsSet(DWORD dwCertEncodingType,
1223 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1224 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1226 const struct DERSetDescriptor *desc =
1227 (const struct DERSetDescriptor *)pvStructInfo;
1228 CRYPT_SET_OF setOf = { 0, NULL };
1229 BOOL ret = TRUE;
1230 DWORD i;
1232 if (desc->cItems)
1234 setOf.rgValue = CryptMemAlloc(setOf.cValue * sizeof(CRYPT_DER_BLOB));
1235 if (!setOf.rgValue)
1236 ret = FALSE;
1237 else
1239 setOf.cValue = desc->cItems;
1240 memset(setOf.rgValue, 0, setOf.cValue * sizeof(CRYPT_DER_BLOB));
1243 for (i = 0; ret && i < setOf.cValue; i++)
1245 ret = desc->encode(dwCertEncodingType, lpszStructType,
1246 (const BYTE *)desc->items + i * desc->itemSize + desc->itemOffset,
1247 0, NULL, NULL, &setOf.rgValue[i].cbData);
1248 if (ret)
1250 setOf.rgValue[i].pbData = CryptMemAlloc(setOf.rgValue[i].cbData);
1251 if (!setOf.rgValue[i].pbData)
1252 ret = FALSE;
1253 else
1254 ret = desc->encode(dwCertEncodingType, lpszStructType,
1255 (const BYTE *)desc->items + i * desc->itemSize +
1256 desc->itemOffset, 0, NULL, setOf.rgValue[i].pbData,
1257 &setOf.rgValue[i].cbData);
1259 /* Some functions propagate their errors through the size */
1260 if (!ret)
1261 *pcbEncoded = setOf.rgValue[i].cbData;
1263 if (ret)
1265 DWORD bytesNeeded = 0, lenBytes;
1266 BOOL ret;
1268 for (i = 0; i < setOf.cValue; i++)
1269 bytesNeeded += setOf.rgValue[i].cbData;
1270 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
1271 bytesNeeded += 1 + lenBytes;
1272 if (!pbEncoded)
1273 *pcbEncoded = bytesNeeded;
1274 else if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1275 pbEncoded, pcbEncoded, bytesNeeded)))
1277 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1278 pbEncoded = *(BYTE **)pbEncoded;
1279 qsort(setOf.rgValue, setOf.cValue, sizeof(CRYPT_DER_BLOB),
1280 BLOBComp);
1281 *pbEncoded++ = ASN_CONSTRUCTOR | ASN_SETOF;
1282 CRYPT_EncodeLen(bytesNeeded - lenBytes - 1, pbEncoded, &lenBytes);
1283 pbEncoded += lenBytes;
1284 for (i = 0; i < setOf.cValue; i++)
1286 memcpy(pbEncoded, setOf.rgValue[i].pbData,
1287 setOf.rgValue[i].cbData);
1288 pbEncoded += setOf.rgValue[i].cbData;
1292 for (i = 0; i < setOf.cValue; i++)
1293 CryptMemFree(setOf.rgValue[i].pbData);
1294 CryptMemFree(setOf.rgValue);
1295 return ret;
1298 static BOOL WINAPI CRYPT_AsnEncodeRdn(DWORD dwCertEncodingType, CERT_RDN *rdn,
1299 CryptEncodeObjectExFunc nameValueEncodeFunc, BYTE *pbEncoded,
1300 DWORD *pcbEncoded)
1302 BOOL ret;
1303 CRYPT_SET_OF setOf = { 0, NULL };
1305 __TRY
1307 DWORD i;
1309 ret = TRUE;
1310 if (rdn->cRDNAttr)
1312 setOf.cValue = rdn->cRDNAttr;
1313 setOf.rgValue = CryptMemAlloc(rdn->cRDNAttr *
1314 sizeof(CRYPT_DER_BLOB));
1315 if (!setOf.rgValue)
1316 ret = FALSE;
1317 else
1318 memset(setOf.rgValue, 0, setOf.cValue * sizeof(CRYPT_DER_BLOB));
1320 for (i = 0; ret && i < rdn->cRDNAttr; i++)
1322 setOf.rgValue[i].cbData = 0;
1323 ret = CRYPT_AsnEncodeRdnAttr(dwCertEncodingType, &rdn->rgRDNAttr[i],
1324 nameValueEncodeFunc, NULL, &setOf.rgValue[i].cbData);
1325 if (ret)
1327 setOf.rgValue[i].pbData =
1328 CryptMemAlloc(setOf.rgValue[i].cbData);
1329 if (!setOf.rgValue[i].pbData)
1330 ret = FALSE;
1331 else
1332 ret = CRYPT_AsnEncodeRdnAttr(dwCertEncodingType,
1333 &rdn->rgRDNAttr[i], nameValueEncodeFunc,
1334 setOf.rgValue[i].pbData, &setOf.rgValue[i].cbData);
1336 if (!ret)
1338 /* Have to propagate index of failing character */
1339 *pcbEncoded = setOf.rgValue[i].cbData;
1342 if (ret)
1343 ret = CRYPT_DEREncodeSet(X509_ASN_ENCODING, NULL, &setOf, 0, NULL,
1344 pbEncoded, pcbEncoded);
1345 for (i = 0; i < setOf.cValue; i++)
1346 CryptMemFree(setOf.rgValue[i].pbData);
1348 __EXCEPT_PAGE_FAULT
1350 SetLastError(STATUS_ACCESS_VIOLATION);
1351 ret = FALSE;
1353 __ENDTRY
1354 CryptMemFree(setOf.rgValue);
1355 return ret;
1358 static BOOL WINAPI CRYPT_AsnEncodeUnicodeNameValue(DWORD dwCertEncodingType,
1359 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1360 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded);
1362 static BOOL WINAPI CRYPT_AsnEncodeOrCopyUnicodeNameValue(
1363 DWORD dwCertEncodingType, LPCSTR lpszStructType, const void *pvStructInfo,
1364 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1365 DWORD *pcbEncoded)
1367 const CERT_NAME_VALUE *value = (const CERT_NAME_VALUE *)pvStructInfo;
1368 BOOL ret;
1370 if (value->dwValueType == CERT_RDN_ENCODED_BLOB)
1371 ret = CRYPT_CopyEncodedBlob(dwCertEncodingType, NULL, &value->Value,
1372 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1373 else
1374 ret = CRYPT_AsnEncodeUnicodeNameValue(dwCertEncodingType, NULL, value,
1375 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1376 return ret;
1379 static BOOL WINAPI CRYPT_AsnEncodeUnicodeName(DWORD dwCertEncodingType,
1380 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1381 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1383 BOOL ret = TRUE;
1385 __TRY
1387 const CERT_NAME_INFO *info = (const CERT_NAME_INFO *)pvStructInfo;
1388 DWORD bytesNeeded = 0, lenBytes, size, i;
1390 TRACE("encoding name with %d RDNs\n", info->cRDN);
1391 ret = TRUE;
1392 for (i = 0; ret && i < info->cRDN; i++)
1394 ret = CRYPT_AsnEncodeRdn(dwCertEncodingType, &info->rgRDN[i],
1395 CRYPT_AsnEncodeOrCopyUnicodeNameValue, NULL, &size);
1396 if (ret)
1397 bytesNeeded += size;
1398 else
1399 *pcbEncoded = size;
1401 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
1402 bytesNeeded += 1 + lenBytes;
1403 if (ret)
1405 if (!pbEncoded)
1406 *pcbEncoded = bytesNeeded;
1407 else
1409 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1410 pbEncoded, pcbEncoded, bytesNeeded)))
1412 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1413 pbEncoded = *(BYTE **)pbEncoded;
1414 *pbEncoded++ = ASN_SEQUENCEOF;
1415 CRYPT_EncodeLen(bytesNeeded - lenBytes - 1, pbEncoded,
1416 &lenBytes);
1417 pbEncoded += lenBytes;
1418 for (i = 0; ret && i < info->cRDN; i++)
1420 size = bytesNeeded;
1421 ret = CRYPT_AsnEncodeRdn(dwCertEncodingType,
1422 &info->rgRDN[i], CRYPT_AsnEncodeOrCopyUnicodeNameValue,
1423 pbEncoded, &size);
1424 if (ret)
1426 pbEncoded += size;
1427 bytesNeeded -= size;
1429 else
1430 *pcbEncoded = size;
1436 __EXCEPT_PAGE_FAULT
1438 SetLastError(STATUS_ACCESS_VIOLATION);
1439 ret = FALSE;
1441 __ENDTRY
1442 return ret;
1445 static BOOL WINAPI CRYPT_AsnEncodePKCSAttribute(DWORD dwCertEncodingType,
1446 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1447 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1449 BOOL ret = FALSE;
1451 __TRY
1453 const CRYPT_ATTRIBUTE *attr = (const CRYPT_ATTRIBUTE *)pvStructInfo;
1455 if (!attr->pszObjId)
1456 SetLastError(E_INVALIDARG);
1457 else
1459 struct AsnEncodeSequenceItem items[2] = {
1460 { attr->pszObjId, CRYPT_AsnEncodeOid, 0 },
1461 { &attr->cValue, CRYPT_DEREncodeSet, 0 },
1464 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
1465 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
1466 pcbEncoded);
1469 __EXCEPT_PAGE_FAULT
1471 SetLastError(STATUS_ACCESS_VIOLATION);
1473 __ENDTRY
1474 return ret;
1477 static BOOL WINAPI CRYPT_AsnEncodePKCSAttributes(DWORD dwCertEncodingType,
1478 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1479 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1481 BOOL ret = FALSE;
1483 __TRY
1485 const CRYPT_ATTRIBUTES *attributes =
1486 (const CRYPT_ATTRIBUTES *)pvStructInfo;
1487 struct DERSetDescriptor desc = { attributes->cAttr, attributes->rgAttr,
1488 sizeof(CRYPT_ATTRIBUTE), 0, CRYPT_AsnEncodePKCSAttribute };
1490 ret = CRYPT_DEREncodeItemsAsSet(X509_ASN_ENCODING, lpszStructType,
1491 &desc, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1493 __EXCEPT_PAGE_FAULT
1495 SetLastError(STATUS_ACCESS_VIOLATION);
1497 __ENDTRY
1498 return ret;
1501 /* Like CRYPT_AsnEncodePKCSContentInfo, but allows the OID to be NULL */
1502 static BOOL WINAPI CRYPT_AsnEncodePKCSContentInfoInternal(
1503 DWORD dwCertEncodingType, LPCSTR lpszStructType, const void *pvStructInfo,
1504 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1505 DWORD *pcbEncoded)
1507 const CRYPT_CONTENT_INFO *info = (const CRYPT_CONTENT_INFO *)pvStructInfo;
1508 struct AsnEncodeSequenceItem items[2] = {
1509 { info->pszObjId, CRYPT_AsnEncodeOid, 0 },
1510 { NULL, NULL, 0 },
1512 struct AsnConstructedItem constructed = { 0 };
1513 DWORD cItem = 1;
1515 if (info->Content.cbData)
1517 constructed.tag = 0;
1518 constructed.pvStructInfo = &info->Content;
1519 constructed.encodeFunc = CRYPT_CopyEncodedBlob;
1520 items[cItem].pvStructInfo = &constructed;
1521 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
1522 cItem++;
1524 return CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
1525 cItem, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1528 BOOL CRYPT_AsnEncodePKCSDigestedData(CRYPT_DIGESTED_DATA *digestedData,
1529 void *pvData, DWORD *pcbData)
1531 struct AsnEncodeSequenceItem items[] = {
1532 { &digestedData->version, CRYPT_AsnEncodeInt, 0 },
1533 { &digestedData->DigestAlgorithm, CRYPT_AsnEncodeAlgorithmIdWithNullParams,
1534 0 },
1535 { &digestedData->ContentInfo, CRYPT_AsnEncodePKCSContentInfoInternal, 0 },
1536 { &digestedData->hash, CRYPT_AsnEncodeOctets, 0 },
1539 return CRYPT_AsnEncodeSequence(X509_ASN_ENCODING, items,
1540 sizeof(items) / sizeof(items[0]), 0, NULL, pvData, pcbData);
1543 static BOOL WINAPI CRYPT_AsnEncodePKCSContentInfo(DWORD dwCertEncodingType,
1544 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1545 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1547 BOOL ret = FALSE;
1549 __TRY
1551 const CRYPT_CONTENT_INFO *info =
1552 (const CRYPT_CONTENT_INFO *)pvStructInfo;
1554 if (!info->pszObjId)
1555 SetLastError(E_INVALIDARG);
1556 else
1557 ret = CRYPT_AsnEncodePKCSContentInfoInternal(dwCertEncodingType,
1558 lpszStructType, pvStructInfo, dwFlags, pEncodePara, pbEncoded,
1559 pcbEncoded);
1561 __EXCEPT_PAGE_FAULT
1563 SetLastError(STATUS_ACCESS_VIOLATION);
1565 __ENDTRY
1566 return ret;
1569 static BOOL CRYPT_AsnEncodeUnicodeStringCoerce(const CERT_NAME_VALUE *value,
1570 BYTE tag, DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1571 DWORD *pcbEncoded)
1573 BOOL ret = TRUE;
1574 LPCWSTR str = (LPCWSTR)value->Value.pbData;
1575 DWORD bytesNeeded, lenBytes, encodedLen;
1577 encodedLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
1578 lstrlenW(str);
1579 CRYPT_EncodeLen(encodedLen, NULL, &lenBytes);
1580 bytesNeeded = 1 + lenBytes + encodedLen;
1581 if (!pbEncoded)
1582 *pcbEncoded = bytesNeeded;
1583 else
1585 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1586 pbEncoded, pcbEncoded, bytesNeeded)))
1588 DWORD i;
1590 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1591 pbEncoded = *(BYTE **)pbEncoded;
1592 *pbEncoded++ = tag;
1593 CRYPT_EncodeLen(encodedLen, pbEncoded, &lenBytes);
1594 pbEncoded += lenBytes;
1595 for (i = 0; i < encodedLen; i++)
1596 *pbEncoded++ = (BYTE)str[i];
1599 return ret;
1602 static BOOL CRYPT_AsnEncodeNumericString(const CERT_NAME_VALUE *value,
1603 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1604 DWORD *pcbEncoded)
1606 BOOL ret = TRUE;
1607 LPCWSTR str = (LPCWSTR)value->Value.pbData;
1608 DWORD bytesNeeded, lenBytes, encodedLen;
1610 encodedLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
1611 lstrlenW(str);
1612 CRYPT_EncodeLen(encodedLen, NULL, &lenBytes);
1613 bytesNeeded = 1 + lenBytes + encodedLen;
1614 if (!pbEncoded)
1615 *pcbEncoded = bytesNeeded;
1616 else
1618 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1619 pbEncoded, pcbEncoded, bytesNeeded)))
1621 DWORD i;
1623 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1624 pbEncoded = *(BYTE **)pbEncoded;
1625 *pbEncoded++ = ASN_NUMERICSTRING;
1626 CRYPT_EncodeLen(encodedLen, pbEncoded, &lenBytes);
1627 pbEncoded += lenBytes;
1628 for (i = 0; ret && i < encodedLen; i++)
1630 if (isdigitW(str[i]))
1631 *pbEncoded++ = (BYTE)str[i];
1632 else
1634 *pcbEncoded = i;
1635 SetLastError(CRYPT_E_INVALID_NUMERIC_STRING);
1636 ret = FALSE;
1641 return ret;
1644 static inline int isprintableW(WCHAR wc)
1646 return isalnumW(wc) || isspaceW(wc) || wc == '\'' || wc == '(' ||
1647 wc == ')' || wc == '+' || wc == ',' || wc == '-' || wc == '.' ||
1648 wc == '/' || wc == ':' || wc == '=' || wc == '?';
1651 static BOOL CRYPT_AsnEncodePrintableString(const CERT_NAME_VALUE *value,
1652 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1653 DWORD *pcbEncoded)
1655 BOOL ret = TRUE;
1656 LPCWSTR str = (LPCWSTR)value->Value.pbData;
1657 DWORD bytesNeeded, lenBytes, encodedLen;
1659 encodedLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
1660 lstrlenW(str);
1661 CRYPT_EncodeLen(encodedLen, NULL, &lenBytes);
1662 bytesNeeded = 1 + lenBytes + encodedLen;
1663 if (!pbEncoded)
1664 *pcbEncoded = bytesNeeded;
1665 else
1667 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1668 pbEncoded, pcbEncoded, bytesNeeded)))
1670 DWORD i;
1672 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1673 pbEncoded = *(BYTE **)pbEncoded;
1674 *pbEncoded++ = ASN_PRINTABLESTRING;
1675 CRYPT_EncodeLen(encodedLen, pbEncoded, &lenBytes);
1676 pbEncoded += lenBytes;
1677 for (i = 0; ret && i < encodedLen; i++)
1679 if (isprintableW(str[i]))
1680 *pbEncoded++ = (BYTE)str[i];
1681 else
1683 *pcbEncoded = i;
1684 SetLastError(CRYPT_E_INVALID_PRINTABLE_STRING);
1685 ret = FALSE;
1690 return ret;
1693 static BOOL CRYPT_AsnEncodeIA5String(const CERT_NAME_VALUE *value,
1694 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1695 DWORD *pcbEncoded)
1697 BOOL ret = TRUE;
1698 LPCWSTR str = (LPCWSTR)value->Value.pbData;
1699 DWORD bytesNeeded, lenBytes, encodedLen;
1701 encodedLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
1702 lstrlenW(str);
1703 CRYPT_EncodeLen(encodedLen, NULL, &lenBytes);
1704 bytesNeeded = 1 + lenBytes + encodedLen;
1705 if (!pbEncoded)
1706 *pcbEncoded = bytesNeeded;
1707 else
1709 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1710 pbEncoded, pcbEncoded, bytesNeeded)))
1712 DWORD i;
1714 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1715 pbEncoded = *(BYTE **)pbEncoded;
1716 *pbEncoded++ = ASN_IA5STRING;
1717 CRYPT_EncodeLen(encodedLen, pbEncoded, &lenBytes);
1718 pbEncoded += lenBytes;
1719 for (i = 0; ret && i < encodedLen; i++)
1721 if (str[i] <= 0x7f)
1722 *pbEncoded++ = (BYTE)str[i];
1723 else
1725 *pcbEncoded = i;
1726 SetLastError(CRYPT_E_INVALID_IA5_STRING);
1727 ret = FALSE;
1732 return ret;
1735 static BOOL CRYPT_AsnEncodeUniversalString(const CERT_NAME_VALUE *value,
1736 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
1737 DWORD *pcbEncoded)
1739 BOOL ret = TRUE;
1740 LPCWSTR str = (LPCWSTR)value->Value.pbData;
1741 DWORD bytesNeeded, lenBytes, strLen;
1743 /* FIXME: doesn't handle composite characters */
1744 strLen = value->Value.cbData ? value->Value.cbData / sizeof(WCHAR) :
1745 lstrlenW(str);
1746 CRYPT_EncodeLen(strLen * 4, NULL, &lenBytes);
1747 bytesNeeded = 1 + lenBytes + strLen * 4;
1748 if (!pbEncoded)
1749 *pcbEncoded = bytesNeeded;
1750 else
1752 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1753 pbEncoded, pcbEncoded, bytesNeeded)))
1755 DWORD i;
1757 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1758 pbEncoded = *(BYTE **)pbEncoded;
1759 *pbEncoded++ = ASN_UNIVERSALSTRING;
1760 CRYPT_EncodeLen(strLen * 4, pbEncoded, &lenBytes);
1761 pbEncoded += lenBytes;
1762 for (i = 0; i < strLen; i++)
1764 *pbEncoded++ = 0;
1765 *pbEncoded++ = 0;
1766 *pbEncoded++ = (BYTE)((str[i] & 0xff00) >> 8);
1767 *pbEncoded++ = (BYTE)(str[i] & 0x00ff);
1771 return ret;
1774 static BOOL WINAPI CRYPT_AsnEncodeUnicodeNameValue(DWORD dwCertEncodingType,
1775 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1776 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1778 BOOL ret = FALSE;
1780 __TRY
1782 const CERT_NAME_VALUE *value = (const CERT_NAME_VALUE *)pvStructInfo;
1784 switch (value->dwValueType)
1786 case CERT_RDN_ANY_TYPE:
1787 case CERT_RDN_ENCODED_BLOB:
1788 case CERT_RDN_OCTET_STRING:
1789 SetLastError(CRYPT_E_NOT_CHAR_STRING);
1790 break;
1791 case CERT_RDN_NUMERIC_STRING:
1792 ret = CRYPT_AsnEncodeNumericString(value, dwFlags, pEncodePara,
1793 pbEncoded, pcbEncoded);
1794 break;
1795 case CERT_RDN_PRINTABLE_STRING:
1796 ret = CRYPT_AsnEncodePrintableString(value, dwFlags, pEncodePara,
1797 pbEncoded, pcbEncoded);
1798 break;
1799 case CERT_RDN_TELETEX_STRING:
1800 ret = CRYPT_AsnEncodeUnicodeStringCoerce(value, ASN_T61STRING,
1801 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1802 break;
1803 case CERT_RDN_VIDEOTEX_STRING:
1804 ret = CRYPT_AsnEncodeUnicodeStringCoerce(value,
1805 ASN_VIDEOTEXSTRING, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1806 break;
1807 case CERT_RDN_IA5_STRING:
1808 ret = CRYPT_AsnEncodeIA5String(value, dwFlags, pEncodePara,
1809 pbEncoded, pcbEncoded);
1810 break;
1811 case CERT_RDN_GRAPHIC_STRING:
1812 ret = CRYPT_AsnEncodeUnicodeStringCoerce(value, ASN_GRAPHICSTRING,
1813 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1814 break;
1815 case CERT_RDN_VISIBLE_STRING:
1816 ret = CRYPT_AsnEncodeUnicodeStringCoerce(value, ASN_VISIBLESTRING,
1817 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1818 break;
1819 case CERT_RDN_GENERAL_STRING:
1820 ret = CRYPT_AsnEncodeUnicodeStringCoerce(value, ASN_GENERALSTRING,
1821 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
1822 break;
1823 case CERT_RDN_UNIVERSAL_STRING:
1824 ret = CRYPT_AsnEncodeUniversalString(value, dwFlags, pEncodePara,
1825 pbEncoded, pcbEncoded);
1826 break;
1827 case CERT_RDN_BMP_STRING:
1828 ret = CRYPT_AsnEncodeBMPString(value, dwFlags, pEncodePara,
1829 pbEncoded, pcbEncoded);
1830 break;
1831 case CERT_RDN_UTF8_STRING:
1832 ret = CRYPT_AsnEncodeUTF8String(value, dwFlags, pEncodePara,
1833 pbEncoded, pcbEncoded);
1834 break;
1835 default:
1836 SetLastError(CRYPT_E_ASN1_CHOICE);
1839 __EXCEPT_PAGE_FAULT
1841 SetLastError(STATUS_ACCESS_VIOLATION);
1843 __ENDTRY
1844 return ret;
1847 static BOOL WINAPI CRYPT_AsnEncodeName(DWORD dwCertEncodingType,
1848 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1849 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1851 BOOL ret;
1853 __TRY
1855 const CERT_NAME_INFO *info = (const CERT_NAME_INFO *)pvStructInfo;
1856 DWORD bytesNeeded = 0, lenBytes, size, i;
1858 TRACE("encoding name with %d RDNs\n", info->cRDN);
1859 ret = TRUE;
1860 for (i = 0; ret && i < info->cRDN; i++)
1862 ret = CRYPT_AsnEncodeRdn(dwCertEncodingType, &info->rgRDN[i],
1863 CRYPT_AsnEncodeNameValue, NULL, &size);
1864 if (ret)
1865 bytesNeeded += size;
1867 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
1868 bytesNeeded += 1 + lenBytes;
1869 if (ret)
1871 if (!pbEncoded)
1872 *pcbEncoded = bytesNeeded;
1873 else
1875 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
1876 pbEncoded, pcbEncoded, bytesNeeded)))
1878 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
1879 pbEncoded = *(BYTE **)pbEncoded;
1880 *pbEncoded++ = ASN_SEQUENCEOF;
1881 CRYPT_EncodeLen(bytesNeeded - lenBytes - 1, pbEncoded,
1882 &lenBytes);
1883 pbEncoded += lenBytes;
1884 for (i = 0; ret && i < info->cRDN; i++)
1886 size = bytesNeeded;
1887 ret = CRYPT_AsnEncodeRdn(dwCertEncodingType,
1888 &info->rgRDN[i], CRYPT_AsnEncodeNameValue, pbEncoded,
1889 &size);
1890 if (ret)
1892 pbEncoded += size;
1893 bytesNeeded -= size;
1900 __EXCEPT_PAGE_FAULT
1902 SetLastError(STATUS_ACCESS_VIOLATION);
1903 ret = FALSE;
1905 __ENDTRY
1906 return ret;
1909 static BOOL WINAPI CRYPT_AsnEncodeBool(DWORD dwCertEncodingType,
1910 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
1911 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
1913 BOOL val = *(const BOOL *)pvStructInfo, ret;
1915 TRACE("%d\n", val);
1917 if (!pbEncoded)
1919 *pcbEncoded = 3;
1920 ret = TRUE;
1922 else if (*pcbEncoded < 3)
1924 *pcbEncoded = 3;
1925 SetLastError(ERROR_MORE_DATA);
1926 ret = FALSE;
1928 else
1930 *pcbEncoded = 3;
1931 *pbEncoded++ = ASN_BOOL;
1932 *pbEncoded++ = 1;
1933 *pbEncoded++ = val ? 0xff : 0;
1934 ret = TRUE;
1936 TRACE("returning %d (%08x)\n", ret, GetLastError());
1937 return ret;
1940 static BOOL CRYPT_AsnEncodeAltNameEntry(const CERT_ALT_NAME_ENTRY *entry,
1941 BYTE *pbEncoded, DWORD *pcbEncoded)
1943 BOOL ret;
1944 DWORD dataLen;
1946 ret = TRUE;
1947 switch (entry->dwAltNameChoice)
1949 case CERT_ALT_NAME_RFC822_NAME:
1950 case CERT_ALT_NAME_DNS_NAME:
1951 case CERT_ALT_NAME_URL:
1952 if (entry->u.pwszURL)
1954 DWORD i;
1956 /* Not + 1: don't encode the NULL-terminator */
1957 dataLen = lstrlenW(entry->u.pwszURL);
1958 for (i = 0; ret && i < dataLen; i++)
1960 if (entry->u.pwszURL[i] > 0x7f)
1962 SetLastError(CRYPT_E_INVALID_IA5_STRING);
1963 ret = FALSE;
1964 *pcbEncoded = i;
1968 else
1969 dataLen = 0;
1970 break;
1971 case CERT_ALT_NAME_IP_ADDRESS:
1972 dataLen = entry->u.IPAddress.cbData;
1973 break;
1974 case CERT_ALT_NAME_REGISTERED_ID:
1975 /* FIXME: encode OID */
1976 case CERT_ALT_NAME_OTHER_NAME:
1977 case CERT_ALT_NAME_DIRECTORY_NAME:
1978 FIXME("name type %d unimplemented\n", entry->dwAltNameChoice);
1979 return FALSE;
1980 default:
1981 SetLastError(E_INVALIDARG);
1982 return FALSE;
1984 if (ret)
1986 DWORD bytesNeeded, lenBytes;
1988 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
1989 bytesNeeded = 1 + dataLen + lenBytes;
1990 if (!pbEncoded)
1991 *pcbEncoded = bytesNeeded;
1992 else if (*pcbEncoded < bytesNeeded)
1994 SetLastError(ERROR_MORE_DATA);
1995 *pcbEncoded = bytesNeeded;
1996 ret = FALSE;
1998 else
2000 *pbEncoded++ = ASN_CONTEXT | (entry->dwAltNameChoice - 1);
2001 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
2002 pbEncoded += lenBytes;
2003 switch (entry->dwAltNameChoice)
2005 case CERT_ALT_NAME_RFC822_NAME:
2006 case CERT_ALT_NAME_DNS_NAME:
2007 case CERT_ALT_NAME_URL:
2009 DWORD i;
2011 for (i = 0; i < dataLen; i++)
2012 *pbEncoded++ = (BYTE)entry->u.pwszURL[i];
2013 break;
2015 case CERT_ALT_NAME_IP_ADDRESS:
2016 memcpy(pbEncoded, entry->u.IPAddress.pbData, dataLen);
2017 break;
2019 if (ret)
2020 *pcbEncoded = bytesNeeded;
2023 TRACE("returning %d (%08x)\n", ret, GetLastError());
2024 return ret;
2027 static BOOL WINAPI CRYPT_AsnEncodeAuthorityKeyId(DWORD dwCertEncodingType,
2028 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2029 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2031 BOOL ret;
2033 __TRY
2035 const CERT_AUTHORITY_KEY_ID_INFO *info =
2036 (const CERT_AUTHORITY_KEY_ID_INFO *)pvStructInfo;
2037 struct AsnEncodeSequenceItem items[3] = { { 0 } };
2038 struct AsnEncodeTagSwappedItem swapped[3] = { { 0 } };
2039 struct AsnConstructedItem constructed = { 0 };
2040 DWORD cItem = 0, cSwapped = 0;
2042 if (info->KeyId.cbData)
2044 swapped[cSwapped].tag = ASN_CONTEXT | 0;
2045 swapped[cSwapped].pvStructInfo = &info->KeyId;
2046 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeInteger;
2047 items[cItem].pvStructInfo = &swapped[cSwapped];
2048 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2049 cSwapped++;
2050 cItem++;
2052 if (info->CertIssuer.cbData)
2054 constructed.tag = 1;
2055 constructed.pvStructInfo = &info->CertIssuer;
2056 constructed.encodeFunc = CRYPT_CopyEncodedBlob;
2057 items[cItem].pvStructInfo = &constructed;
2058 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
2059 cItem++;
2061 if (info->CertSerialNumber.cbData)
2063 swapped[cSwapped].tag = ASN_CONTEXT | 2;
2064 swapped[cSwapped].pvStructInfo = &info->CertSerialNumber;
2065 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeInteger;
2066 items[cItem].pvStructInfo = &swapped[cSwapped];
2067 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2068 cSwapped++;
2069 cItem++;
2071 ret = CRYPT_AsnEncodeSequence(X509_ASN_ENCODING, items, cItem, dwFlags,
2072 pEncodePara, pbEncoded, pcbEncoded);
2074 __EXCEPT_PAGE_FAULT
2076 SetLastError(STATUS_ACCESS_VIOLATION);
2077 ret = FALSE;
2079 __ENDTRY
2080 return ret;
2083 static BOOL WINAPI CRYPT_AsnEncodeAltName(DWORD dwCertEncodingType,
2084 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2085 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2087 BOOL ret;
2089 __TRY
2091 const CERT_ALT_NAME_INFO *info =
2092 (const CERT_ALT_NAME_INFO *)pvStructInfo;
2093 DWORD bytesNeeded, dataLen, lenBytes, i;
2095 ret = TRUE;
2096 /* FIXME: should check that cAltEntry is not bigger than 0xff, since we
2097 * can't encode an erroneous entry index if it's bigger than this.
2099 for (i = 0, dataLen = 0; ret && i < info->cAltEntry; i++)
2101 DWORD len;
2103 ret = CRYPT_AsnEncodeAltNameEntry(&info->rgAltEntry[i], NULL,
2104 &len);
2105 if (ret)
2106 dataLen += len;
2107 else if (GetLastError() == CRYPT_E_INVALID_IA5_STRING)
2109 /* CRYPT_AsnEncodeAltNameEntry encoded the index of
2110 * the bad character, now set the index of the bad
2111 * entry
2113 *pcbEncoded = (BYTE)i <<
2114 CERT_ALT_NAME_ENTRY_ERR_INDEX_SHIFT | len;
2117 if (ret)
2119 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
2120 bytesNeeded = 1 + lenBytes + dataLen;
2121 if (!pbEncoded)
2123 *pcbEncoded = bytesNeeded;
2124 ret = TRUE;
2126 else
2128 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
2129 pbEncoded, pcbEncoded, bytesNeeded)))
2131 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2132 pbEncoded = *(BYTE **)pbEncoded;
2133 *pbEncoded++ = ASN_SEQUENCEOF;
2134 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
2135 pbEncoded += lenBytes;
2136 for (i = 0; ret && i < info->cAltEntry; i++)
2138 DWORD len = dataLen;
2140 ret = CRYPT_AsnEncodeAltNameEntry(&info->rgAltEntry[i],
2141 pbEncoded, &len);
2142 if (ret)
2144 pbEncoded += len;
2145 dataLen -= len;
2152 __EXCEPT_PAGE_FAULT
2154 SetLastError(STATUS_ACCESS_VIOLATION);
2155 ret = FALSE;
2157 __ENDTRY
2158 return ret;
2161 static BOOL WINAPI CRYPT_AsnEncodeAuthorityKeyId2(DWORD dwCertEncodingType,
2162 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2163 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2165 BOOL ret;
2167 __TRY
2169 const CERT_AUTHORITY_KEY_ID2_INFO *info =
2170 (const CERT_AUTHORITY_KEY_ID2_INFO *)pvStructInfo;
2171 struct AsnEncodeSequenceItem items[3] = { { 0 } };
2172 struct AsnEncodeTagSwappedItem swapped[3] = { { 0 } };
2173 DWORD cItem = 0, cSwapped = 0;
2175 if (info->KeyId.cbData)
2177 swapped[cSwapped].tag = ASN_CONTEXT | 0;
2178 swapped[cSwapped].pvStructInfo = &info->KeyId;
2179 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeInteger;
2180 items[cItem].pvStructInfo = &swapped[cSwapped];
2181 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2182 cSwapped++;
2183 cItem++;
2185 if (info->AuthorityCertIssuer.cAltEntry)
2187 swapped[cSwapped].tag = ASN_CONTEXT | ASN_CONSTRUCTOR | 1;
2188 swapped[cSwapped].pvStructInfo = &info->AuthorityCertIssuer;
2189 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeAltName;
2190 items[cItem].pvStructInfo = &swapped[cSwapped];
2191 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2192 cSwapped++;
2193 cItem++;
2195 if (info->AuthorityCertSerialNumber.cbData)
2197 swapped[cSwapped].tag = ASN_CONTEXT | 2;
2198 swapped[cSwapped].pvStructInfo = &info->AuthorityCertSerialNumber;
2199 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeInteger;
2200 items[cItem].pvStructInfo = &swapped[cSwapped];
2201 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2202 cSwapped++;
2203 cItem++;
2205 ret = CRYPT_AsnEncodeSequence(X509_ASN_ENCODING, items, cItem, dwFlags,
2206 pEncodePara, pbEncoded, pcbEncoded);
2208 __EXCEPT_PAGE_FAULT
2210 SetLastError(STATUS_ACCESS_VIOLATION);
2211 ret = FALSE;
2213 __ENDTRY
2214 return ret;
2217 static BOOL WINAPI CRYPT_AsnEncodeBasicConstraints(DWORD dwCertEncodingType,
2218 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2219 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2221 BOOL ret;
2223 __TRY
2225 const CERT_BASIC_CONSTRAINTS_INFO *info =
2226 (const CERT_BASIC_CONSTRAINTS_INFO *)pvStructInfo;
2227 struct AsnEncodeSequenceItem items[3] = {
2228 { &info->SubjectType, CRYPT_AsnEncodeBits, 0 },
2229 { 0 }
2231 DWORD cItem = 1;
2233 if (info->fPathLenConstraint)
2235 items[cItem].pvStructInfo = &info->dwPathLenConstraint;
2236 items[cItem].encodeFunc = CRYPT_AsnEncodeInt;
2237 cItem++;
2239 if (info->cSubtreesConstraint)
2241 items[cItem].pvStructInfo = &info->cSubtreesConstraint;
2242 items[cItem].encodeFunc = CRYPT_AsnEncodeSequenceOfAny;
2243 cItem++;
2245 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items, cItem,
2246 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
2248 __EXCEPT_PAGE_FAULT
2250 SetLastError(STATUS_ACCESS_VIOLATION);
2251 ret = FALSE;
2253 __ENDTRY
2254 return ret;
2257 static BOOL WINAPI CRYPT_AsnEncodeBasicConstraints2(DWORD dwCertEncodingType,
2258 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2259 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2261 BOOL ret;
2263 __TRY
2265 const CERT_BASIC_CONSTRAINTS2_INFO *info =
2266 (const CERT_BASIC_CONSTRAINTS2_INFO *)pvStructInfo;
2267 struct AsnEncodeSequenceItem items[2] = { { 0 } };
2268 DWORD cItem = 0;
2270 if (info->fCA)
2272 items[cItem].pvStructInfo = &info->fCA;
2273 items[cItem].encodeFunc = CRYPT_AsnEncodeBool;
2274 cItem++;
2276 if (info->fPathLenConstraint)
2278 items[cItem].pvStructInfo = &info->dwPathLenConstraint;
2279 items[cItem].encodeFunc = CRYPT_AsnEncodeInt;
2280 cItem++;
2282 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items, cItem,
2283 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
2285 __EXCEPT_PAGE_FAULT
2287 SetLastError(STATUS_ACCESS_VIOLATION);
2288 ret = FALSE;
2290 __ENDTRY
2291 return ret;
2294 static BOOL WINAPI CRYPT_AsnEncodeRsaPubKey(DWORD dwCertEncodingType,
2295 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2296 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2298 BOOL ret;
2300 __TRY
2302 const BLOBHEADER *hdr =
2303 (const BLOBHEADER *)pvStructInfo;
2305 if (hdr->bType != PUBLICKEYBLOB)
2307 SetLastError(E_INVALIDARG);
2308 ret = FALSE;
2310 else
2312 const RSAPUBKEY *rsaPubKey = (const RSAPUBKEY *)
2313 ((const BYTE *)pvStructInfo + sizeof(BLOBHEADER));
2314 CRYPT_INTEGER_BLOB blob = { rsaPubKey->bitlen / 8,
2315 (BYTE *)pvStructInfo + sizeof(BLOBHEADER) + sizeof(RSAPUBKEY) };
2316 struct AsnEncodeSequenceItem items[] = {
2317 { &blob, CRYPT_AsnEncodeUnsignedInteger, 0 },
2318 { &rsaPubKey->pubexp, CRYPT_AsnEncodeInt, 0 },
2321 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
2322 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
2323 pcbEncoded);
2326 __EXCEPT_PAGE_FAULT
2328 SetLastError(STATUS_ACCESS_VIOLATION);
2329 ret = FALSE;
2331 __ENDTRY
2332 return ret;
2335 BOOL WINAPI CRYPT_AsnEncodeOctets(DWORD dwCertEncodingType,
2336 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2337 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2339 BOOL ret;
2341 __TRY
2343 const CRYPT_DATA_BLOB *blob = (const CRYPT_DATA_BLOB *)pvStructInfo;
2344 DWORD bytesNeeded, lenBytes;
2346 TRACE("(%d, %p), %08x, %p, %p, %d\n", blob->cbData, blob->pbData,
2347 dwFlags, pEncodePara, pbEncoded, *pcbEncoded);
2349 CRYPT_EncodeLen(blob->cbData, NULL, &lenBytes);
2350 bytesNeeded = 1 + lenBytes + blob->cbData;
2351 if (!pbEncoded)
2353 *pcbEncoded = bytesNeeded;
2354 ret = TRUE;
2356 else
2358 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
2359 pcbEncoded, bytesNeeded)))
2361 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2362 pbEncoded = *(BYTE **)pbEncoded;
2363 *pbEncoded++ = ASN_OCTETSTRING;
2364 CRYPT_EncodeLen(blob->cbData, pbEncoded, &lenBytes);
2365 pbEncoded += lenBytes;
2366 if (blob->cbData)
2367 memcpy(pbEncoded, blob->pbData, blob->cbData);
2371 __EXCEPT_PAGE_FAULT
2373 SetLastError(STATUS_ACCESS_VIOLATION);
2374 ret = FALSE;
2376 __ENDTRY
2377 TRACE("returning %d (%08x)\n", ret, GetLastError());
2378 return ret;
2381 static BOOL WINAPI CRYPT_AsnEncodeBits(DWORD dwCertEncodingType,
2382 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2383 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2385 BOOL ret;
2387 __TRY
2389 const CRYPT_BIT_BLOB *blob = (const CRYPT_BIT_BLOB *)pvStructInfo;
2390 DWORD bytesNeeded, lenBytes, dataBytes;
2391 BYTE unusedBits;
2393 /* yep, MS allows cUnusedBits to be >= 8 */
2394 if (!blob->cUnusedBits)
2396 dataBytes = blob->cbData;
2397 unusedBits = 0;
2399 else if (blob->cbData * 8 > blob->cUnusedBits)
2401 dataBytes = (blob->cbData * 8 - blob->cUnusedBits) / 8 + 1;
2402 unusedBits = blob->cUnusedBits >= 8 ? blob->cUnusedBits / 8 :
2403 blob->cUnusedBits;
2405 else
2407 dataBytes = 0;
2408 unusedBits = 0;
2410 CRYPT_EncodeLen(dataBytes + 1, NULL, &lenBytes);
2411 bytesNeeded = 1 + lenBytes + dataBytes + 1;
2412 if (!pbEncoded)
2414 *pcbEncoded = bytesNeeded;
2415 ret = TRUE;
2417 else
2419 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
2420 pcbEncoded, bytesNeeded)))
2422 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2423 pbEncoded = *(BYTE **)pbEncoded;
2424 *pbEncoded++ = ASN_BITSTRING;
2425 CRYPT_EncodeLen(dataBytes + 1, pbEncoded, &lenBytes);
2426 pbEncoded += lenBytes;
2427 *pbEncoded++ = unusedBits;
2428 if (dataBytes)
2430 BYTE mask = 0xff << unusedBits;
2432 if (dataBytes > 1)
2434 memcpy(pbEncoded, blob->pbData, dataBytes - 1);
2435 pbEncoded += dataBytes - 1;
2437 *pbEncoded = *(blob->pbData + dataBytes - 1) & mask;
2442 __EXCEPT_PAGE_FAULT
2444 SetLastError(STATUS_ACCESS_VIOLATION);
2445 ret = FALSE;
2447 __ENDTRY
2448 return ret;
2451 static BOOL WINAPI CRYPT_AsnEncodeBitsSwapBytes(DWORD dwCertEncodingType,
2452 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2453 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2455 BOOL ret;
2457 __TRY
2459 const CRYPT_BIT_BLOB *blob = (const CRYPT_BIT_BLOB *)pvStructInfo;
2460 CRYPT_BIT_BLOB newBlob = { blob->cbData, NULL, blob->cUnusedBits };
2462 ret = TRUE;
2463 if (newBlob.cbData)
2465 newBlob.pbData = CryptMemAlloc(newBlob.cbData);
2466 if (newBlob.pbData)
2468 DWORD i;
2470 for (i = 0; i < newBlob.cbData; i++)
2471 newBlob.pbData[newBlob.cbData - i - 1] = blob->pbData[i];
2473 else
2474 ret = FALSE;
2476 if (ret)
2477 ret = CRYPT_AsnEncodeBits(dwCertEncodingType, lpszStructType,
2478 &newBlob, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
2479 CryptMemFree(newBlob.pbData);
2481 __EXCEPT_PAGE_FAULT
2483 SetLastError(STATUS_ACCESS_VIOLATION);
2484 ret = FALSE;
2486 __ENDTRY
2487 return ret;
2490 BOOL WINAPI CRYPT_AsnEncodeInt(DWORD dwCertEncodingType,
2491 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2492 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2494 CRYPT_INTEGER_BLOB blob = { sizeof(INT), (BYTE *)pvStructInfo };
2496 return CRYPT_AsnEncodeInteger(dwCertEncodingType, X509_MULTI_BYTE_INTEGER,
2497 &blob, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
2500 static BOOL WINAPI CRYPT_AsnEncodeInteger(DWORD dwCertEncodingType,
2501 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2502 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2504 BOOL ret;
2506 __TRY
2508 DWORD significantBytes, lenBytes;
2509 BYTE padByte = 0, bytesNeeded;
2510 BOOL pad = FALSE;
2511 const CRYPT_INTEGER_BLOB *blob =
2512 (const CRYPT_INTEGER_BLOB *)pvStructInfo;
2514 significantBytes = blob->cbData;
2515 if (significantBytes)
2517 if (blob->pbData[significantBytes - 1] & 0x80)
2519 /* negative, lop off leading (little-endian) 0xffs */
2520 for (; significantBytes > 0 &&
2521 blob->pbData[significantBytes - 1] == 0xff; significantBytes--)
2523 if (blob->pbData[significantBytes - 1] < 0x80)
2525 padByte = 0xff;
2526 pad = TRUE;
2529 else
2531 /* positive, lop off leading (little-endian) zeroes */
2532 for (; significantBytes > 0 &&
2533 !blob->pbData[significantBytes - 1]; significantBytes--)
2535 if (significantBytes == 0)
2536 significantBytes = 1;
2537 if (blob->pbData[significantBytes - 1] > 0x7f)
2539 padByte = 0;
2540 pad = TRUE;
2544 if (pad)
2545 CRYPT_EncodeLen(significantBytes + 1, NULL, &lenBytes);
2546 else
2547 CRYPT_EncodeLen(significantBytes, NULL, &lenBytes);
2548 bytesNeeded = 1 + lenBytes + significantBytes;
2549 if (pad)
2550 bytesNeeded++;
2551 if (!pbEncoded)
2553 *pcbEncoded = bytesNeeded;
2554 ret = TRUE;
2556 else
2558 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
2559 pcbEncoded, bytesNeeded)))
2561 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2562 pbEncoded = *(BYTE **)pbEncoded;
2563 *pbEncoded++ = ASN_INTEGER;
2564 if (pad)
2566 CRYPT_EncodeLen(significantBytes + 1, pbEncoded, &lenBytes);
2567 pbEncoded += lenBytes;
2568 *pbEncoded++ = padByte;
2570 else
2572 CRYPT_EncodeLen(significantBytes, pbEncoded, &lenBytes);
2573 pbEncoded += lenBytes;
2575 for (; significantBytes > 0; significantBytes--)
2576 *(pbEncoded++) = blob->pbData[significantBytes - 1];
2580 __EXCEPT_PAGE_FAULT
2582 SetLastError(STATUS_ACCESS_VIOLATION);
2583 ret = FALSE;
2585 __ENDTRY
2586 return ret;
2589 static BOOL WINAPI CRYPT_AsnEncodeUnsignedInteger(DWORD dwCertEncodingType,
2590 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2591 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2593 BOOL ret;
2595 __TRY
2597 DWORD significantBytes, lenBytes;
2598 BYTE bytesNeeded;
2599 BOOL pad = FALSE;
2600 const CRYPT_INTEGER_BLOB *blob =
2601 (const CRYPT_INTEGER_BLOB *)pvStructInfo;
2603 significantBytes = blob->cbData;
2604 if (significantBytes)
2606 /* positive, lop off leading (little-endian) zeroes */
2607 for (; significantBytes > 0 && !blob->pbData[significantBytes - 1];
2608 significantBytes--)
2610 if (significantBytes == 0)
2611 significantBytes = 1;
2612 if (blob->pbData[significantBytes - 1] > 0x7f)
2613 pad = TRUE;
2615 if (pad)
2616 CRYPT_EncodeLen(significantBytes + 1, NULL, &lenBytes);
2617 else
2618 CRYPT_EncodeLen(significantBytes, NULL, &lenBytes);
2619 bytesNeeded = 1 + lenBytes + significantBytes;
2620 if (pad)
2621 bytesNeeded++;
2622 if (!pbEncoded)
2624 *pcbEncoded = bytesNeeded;
2625 ret = TRUE;
2627 else
2629 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
2630 pcbEncoded, bytesNeeded)))
2632 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2633 pbEncoded = *(BYTE **)pbEncoded;
2634 *pbEncoded++ = ASN_INTEGER;
2635 if (pad)
2637 CRYPT_EncodeLen(significantBytes + 1, pbEncoded, &lenBytes);
2638 pbEncoded += lenBytes;
2639 *pbEncoded++ = 0;
2641 else
2643 CRYPT_EncodeLen(significantBytes, pbEncoded, &lenBytes);
2644 pbEncoded += lenBytes;
2646 for (; significantBytes > 0; significantBytes--)
2647 *(pbEncoded++) = blob->pbData[significantBytes - 1];
2651 __EXCEPT_PAGE_FAULT
2653 SetLastError(STATUS_ACCESS_VIOLATION);
2654 ret = FALSE;
2656 __ENDTRY
2657 return ret;
2660 static BOOL WINAPI CRYPT_AsnEncodeEnumerated(DWORD dwCertEncodingType,
2661 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2662 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2664 CRYPT_INTEGER_BLOB blob;
2665 BOOL ret;
2667 /* Encode as an unsigned integer, then change the tag to enumerated */
2668 blob.cbData = sizeof(DWORD);
2669 blob.pbData = (BYTE *)pvStructInfo;
2670 ret = CRYPT_AsnEncodeUnsignedInteger(dwCertEncodingType,
2671 X509_MULTI_BYTE_UINT, &blob, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
2672 if (ret && pbEncoded)
2674 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2675 pbEncoded = *(BYTE **)pbEncoded;
2676 pbEncoded[0] = ASN_ENUMERATED;
2678 return ret;
2681 static BOOL WINAPI CRYPT_AsnEncodeUtcTime(DWORD dwCertEncodingType,
2682 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2683 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2685 BOOL ret;
2687 __TRY
2689 SYSTEMTIME sysTime;
2690 /* sorry, magic number: enough for tag, len, YYMMDDHHMMSSZ\0. I use a
2691 * temporary buffer because the output buffer is not NULL-terminated.
2693 char buf[16];
2694 static const DWORD bytesNeeded = sizeof(buf) - 1;
2696 if (!pbEncoded)
2698 *pcbEncoded = bytesNeeded;
2699 ret = TRUE;
2701 else
2703 /* Sanity check the year, this is a two-digit year format */
2704 ret = FileTimeToSystemTime((const FILETIME *)pvStructInfo,
2705 &sysTime);
2706 if (ret && (sysTime.wYear < 1950 || sysTime.wYear > 2050))
2708 SetLastError(CRYPT_E_BAD_ENCODE);
2709 ret = FALSE;
2711 if (ret)
2713 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
2714 pbEncoded, pcbEncoded, bytesNeeded)))
2716 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2717 pbEncoded = *(BYTE **)pbEncoded;
2718 buf[0] = ASN_UTCTIME;
2719 buf[1] = bytesNeeded - 2;
2720 snprintf(buf + 2, sizeof(buf) - 2,
2721 "%02d%02d%02d%02d%02d%02dZ", sysTime.wYear >= 2000 ?
2722 sysTime.wYear - 2000 : sysTime.wYear - 1900,
2723 sysTime.wMonth, sysTime.wDay, sysTime.wHour,
2724 sysTime.wMinute, sysTime.wSecond);
2725 memcpy(pbEncoded, buf, bytesNeeded);
2730 __EXCEPT_PAGE_FAULT
2732 SetLastError(STATUS_ACCESS_VIOLATION);
2733 ret = FALSE;
2735 __ENDTRY
2736 return ret;
2739 static BOOL WINAPI CRYPT_AsnEncodeGeneralizedTime(DWORD dwCertEncodingType,
2740 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2741 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2743 BOOL ret;
2745 __TRY
2747 SYSTEMTIME sysTime;
2748 /* sorry, magic number: enough for tag, len, YYYYMMDDHHMMSSZ\0. I use a
2749 * temporary buffer because the output buffer is not NULL-terminated.
2751 char buf[18];
2752 static const DWORD bytesNeeded = sizeof(buf) - 1;
2754 if (!pbEncoded)
2756 *pcbEncoded = bytesNeeded;
2757 ret = TRUE;
2759 else
2761 ret = FileTimeToSystemTime((const FILETIME *)pvStructInfo,
2762 &sysTime);
2763 if (ret)
2764 ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
2765 pcbEncoded, bytesNeeded);
2766 if (ret)
2768 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2769 pbEncoded = *(BYTE **)pbEncoded;
2770 buf[0] = ASN_GENERALTIME;
2771 buf[1] = bytesNeeded - 2;
2772 snprintf(buf + 2, sizeof(buf) - 2, "%04d%02d%02d%02d%02d%02dZ",
2773 sysTime.wYear, sysTime.wMonth, sysTime.wDay, sysTime.wHour,
2774 sysTime.wMinute, sysTime.wSecond);
2775 memcpy(pbEncoded, buf, bytesNeeded);
2779 __EXCEPT_PAGE_FAULT
2781 SetLastError(STATUS_ACCESS_VIOLATION);
2782 ret = FALSE;
2784 __ENDTRY
2785 return ret;
2788 static BOOL WINAPI CRYPT_AsnEncodeChoiceOfTime(DWORD dwCertEncodingType,
2789 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2790 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2792 BOOL ret;
2794 __TRY
2796 SYSTEMTIME sysTime;
2798 /* Check the year, if it's in the UTCTime range call that encode func */
2799 if (!FileTimeToSystemTime((const FILETIME *)pvStructInfo, &sysTime))
2800 return FALSE;
2801 if (sysTime.wYear >= 1950 && sysTime.wYear <= 2050)
2802 ret = CRYPT_AsnEncodeUtcTime(dwCertEncodingType, lpszStructType,
2803 pvStructInfo, dwFlags, pEncodePara, pbEncoded, pcbEncoded);
2804 else
2805 ret = CRYPT_AsnEncodeGeneralizedTime(dwCertEncodingType,
2806 lpszStructType, pvStructInfo, dwFlags, pEncodePara, pbEncoded,
2807 pcbEncoded);
2809 __EXCEPT_PAGE_FAULT
2811 SetLastError(STATUS_ACCESS_VIOLATION);
2812 ret = FALSE;
2814 __ENDTRY
2815 return ret;
2818 static BOOL WINAPI CRYPT_AsnEncodeSequenceOfAny(DWORD dwCertEncodingType,
2819 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2820 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2822 BOOL ret;
2824 __TRY
2826 DWORD bytesNeeded, dataLen, lenBytes, i;
2827 const CRYPT_SEQUENCE_OF_ANY *seq =
2828 (const CRYPT_SEQUENCE_OF_ANY *)pvStructInfo;
2830 for (i = 0, dataLen = 0; i < seq->cValue; i++)
2831 dataLen += seq->rgValue[i].cbData;
2832 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
2833 bytesNeeded = 1 + lenBytes + dataLen;
2834 if (!pbEncoded)
2836 *pcbEncoded = bytesNeeded;
2837 ret = TRUE;
2839 else
2841 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara, pbEncoded,
2842 pcbEncoded, bytesNeeded)))
2844 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2845 pbEncoded = *(BYTE **)pbEncoded;
2846 *pbEncoded++ = ASN_SEQUENCEOF;
2847 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
2848 pbEncoded += lenBytes;
2849 for (i = 0; i < seq->cValue; i++)
2851 memcpy(pbEncoded, seq->rgValue[i].pbData,
2852 seq->rgValue[i].cbData);
2853 pbEncoded += seq->rgValue[i].cbData;
2858 __EXCEPT_PAGE_FAULT
2860 SetLastError(STATUS_ACCESS_VIOLATION);
2861 ret = FALSE;
2863 __ENDTRY
2864 return ret;
2867 static BOOL CRYPT_AsnEncodeDistPoint(const CRL_DIST_POINT *distPoint,
2868 BYTE *pbEncoded, DWORD *pcbEncoded)
2870 BOOL ret = TRUE;
2871 struct AsnEncodeSequenceItem items[3] = { { 0 } };
2872 struct AsnConstructedItem constructed = { 0 };
2873 struct AsnEncodeTagSwappedItem swapped[3] = { { 0 } };
2874 DWORD cItem = 0, cSwapped = 0;
2876 switch (distPoint->DistPointName.dwDistPointNameChoice)
2878 case CRL_DIST_POINT_NO_NAME:
2879 /* do nothing */
2880 break;
2881 case CRL_DIST_POINT_FULL_NAME:
2882 swapped[cSwapped].tag = ASN_CONTEXT | ASN_CONSTRUCTOR | 0;
2883 swapped[cSwapped].pvStructInfo = &distPoint->DistPointName.u.FullName;
2884 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeAltName;
2885 constructed.tag = 0;
2886 constructed.pvStructInfo = &swapped[cSwapped];
2887 constructed.encodeFunc = CRYPT_AsnEncodeSwapTag;
2888 items[cItem].pvStructInfo = &constructed;
2889 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
2890 cSwapped++;
2891 cItem++;
2892 break;
2893 case CRL_DIST_POINT_ISSUER_RDN_NAME:
2894 FIXME("unimplemented for CRL_DIST_POINT_ISSUER_RDN_NAME\n");
2895 ret = FALSE;
2896 break;
2897 default:
2898 ret = FALSE;
2900 if (ret && distPoint->ReasonFlags.cbData)
2902 swapped[cSwapped].tag = ASN_CONTEXT | 1;
2903 swapped[cSwapped].pvStructInfo = &distPoint->ReasonFlags;
2904 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeBits;
2905 items[cItem].pvStructInfo = &swapped[cSwapped];
2906 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2907 cSwapped++;
2908 cItem++;
2910 if (ret && distPoint->CRLIssuer.cAltEntry)
2912 swapped[cSwapped].tag = ASN_CONTEXT | ASN_CONSTRUCTOR | 2;
2913 swapped[cSwapped].pvStructInfo = &distPoint->CRLIssuer;
2914 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeAltName;
2915 items[cItem].pvStructInfo = &swapped[cSwapped];
2916 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
2917 cSwapped++;
2918 cItem++;
2920 if (ret)
2921 ret = CRYPT_AsnEncodeSequence(X509_ASN_ENCODING, items, cItem, 0, NULL,
2922 pbEncoded, pcbEncoded);
2923 return ret;
2926 static BOOL WINAPI CRYPT_AsnEncodeCRLDistPoints(DWORD dwCertEncodingType,
2927 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
2928 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
2930 BOOL ret;
2932 __TRY
2934 const CRL_DIST_POINTS_INFO *info =
2935 (const CRL_DIST_POINTS_INFO *)pvStructInfo;
2937 if (!info->cDistPoint)
2939 SetLastError(E_INVALIDARG);
2940 ret = FALSE;
2942 else
2944 DWORD bytesNeeded, dataLen, lenBytes, i;
2946 ret = TRUE;
2947 for (i = 0, dataLen = 0; ret && i < info->cDistPoint; i++)
2949 DWORD len;
2951 ret = CRYPT_AsnEncodeDistPoint(&info->rgDistPoint[i], NULL,
2952 &len);
2953 if (ret)
2954 dataLen += len;
2955 else if (GetLastError() == CRYPT_E_INVALID_IA5_STRING)
2957 /* Have to propagate index of failing character */
2958 *pcbEncoded = len;
2961 if (ret)
2963 CRYPT_EncodeLen(dataLen, NULL, &lenBytes);
2964 bytesNeeded = 1 + lenBytes + dataLen;
2965 if (!pbEncoded)
2967 *pcbEncoded = bytesNeeded;
2968 ret = TRUE;
2970 else
2972 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
2973 pbEncoded, pcbEncoded, bytesNeeded)))
2975 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
2976 pbEncoded = *(BYTE **)pbEncoded;
2977 *pbEncoded++ = ASN_SEQUENCEOF;
2978 CRYPT_EncodeLen(dataLen, pbEncoded, &lenBytes);
2979 pbEncoded += lenBytes;
2980 for (i = 0; ret && i < info->cDistPoint; i++)
2982 DWORD len = dataLen;
2984 ret = CRYPT_AsnEncodeDistPoint(
2985 &info->rgDistPoint[i], pbEncoded, &len);
2986 if (ret)
2988 pbEncoded += len;
2989 dataLen -= len;
2997 __EXCEPT_PAGE_FAULT
2999 SetLastError(STATUS_ACCESS_VIOLATION);
3000 ret = FALSE;
3002 __ENDTRY
3003 return ret;
3006 static BOOL WINAPI CRYPT_AsnEncodeEnhancedKeyUsage(DWORD dwCertEncodingType,
3007 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
3008 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
3010 BOOL ret;
3012 __TRY
3014 const CERT_ENHKEY_USAGE *usage =
3015 (const CERT_ENHKEY_USAGE *)pvStructInfo;
3016 DWORD bytesNeeded = 0, lenBytes, size, i;
3018 ret = TRUE;
3019 for (i = 0; ret && i < usage->cUsageIdentifier; i++)
3021 ret = CRYPT_AsnEncodeOid(dwCertEncodingType, NULL,
3022 usage->rgpszUsageIdentifier[i],
3023 dwFlags & ~CRYPT_ENCODE_ALLOC_FLAG, NULL, NULL, &size);
3024 if (ret)
3025 bytesNeeded += size;
3027 CRYPT_EncodeLen(bytesNeeded, NULL, &lenBytes);
3028 bytesNeeded += 1 + lenBytes;
3029 if (ret)
3031 if (!pbEncoded)
3032 *pcbEncoded = bytesNeeded;
3033 else
3035 if ((ret = CRYPT_EncodeEnsureSpace(dwFlags, pEncodePara,
3036 pbEncoded, pcbEncoded, bytesNeeded)))
3038 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG)
3039 pbEncoded = *(BYTE **)pbEncoded;
3040 *pbEncoded++ = ASN_SEQUENCEOF;
3041 CRYPT_EncodeLen(bytesNeeded - lenBytes - 1, pbEncoded,
3042 &lenBytes);
3043 pbEncoded += lenBytes;
3044 for (i = 0; ret && i < usage->cUsageIdentifier; i++)
3046 size = bytesNeeded;
3047 ret = CRYPT_AsnEncodeOid(dwCertEncodingType, NULL,
3048 usage->rgpszUsageIdentifier[i],
3049 dwFlags & ~CRYPT_ENCODE_ALLOC_FLAG, NULL, pbEncoded,
3050 &size);
3051 if (ret)
3053 pbEncoded += size;
3054 bytesNeeded -= size;
3061 __EXCEPT_PAGE_FAULT
3063 SetLastError(STATUS_ACCESS_VIOLATION);
3064 ret = FALSE;
3066 __ENDTRY
3067 return ret;
3070 static BOOL WINAPI CRYPT_AsnEncodeIssuingDistPoint(DWORD dwCertEncodingType,
3071 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
3072 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
3074 BOOL ret;
3076 __TRY
3078 const CRL_ISSUING_DIST_POINT *point =
3079 (const CRL_ISSUING_DIST_POINT *)pvStructInfo;
3080 struct AsnEncodeSequenceItem items[6] = { { 0 } };
3081 struct AsnConstructedItem constructed = { 0 };
3082 struct AsnEncodeTagSwappedItem swapped[5] = { { 0 } };
3083 DWORD cItem = 0, cSwapped = 0;
3085 ret = TRUE;
3086 switch (point->DistPointName.dwDistPointNameChoice)
3088 case CRL_DIST_POINT_NO_NAME:
3089 /* do nothing */
3090 break;
3091 case CRL_DIST_POINT_FULL_NAME:
3092 swapped[cSwapped].tag = ASN_CONTEXT | ASN_CONSTRUCTOR | 0;
3093 swapped[cSwapped].pvStructInfo = &point->DistPointName.u.FullName;
3094 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeAltName;
3095 constructed.tag = 0;
3096 constructed.pvStructInfo = &swapped[cSwapped];
3097 constructed.encodeFunc = CRYPT_AsnEncodeSwapTag;
3098 items[cItem].pvStructInfo = &constructed;
3099 items[cItem].encodeFunc = CRYPT_AsnEncodeConstructed;
3100 cSwapped++;
3101 cItem++;
3102 break;
3103 default:
3104 SetLastError(E_INVALIDARG);
3105 ret = FALSE;
3107 if (ret && point->fOnlyContainsUserCerts)
3109 swapped[cSwapped].tag = ASN_CONTEXT | 1;
3110 swapped[cSwapped].pvStructInfo = &point->fOnlyContainsUserCerts;
3111 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeBool;
3112 items[cItem].pvStructInfo = &swapped[cSwapped];
3113 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
3114 cSwapped++;
3115 cItem++;
3117 if (ret && point->fOnlyContainsCACerts)
3119 swapped[cSwapped].tag = ASN_CONTEXT | 2;
3120 swapped[cSwapped].pvStructInfo = &point->fOnlyContainsCACerts;
3121 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeBool;
3122 items[cItem].pvStructInfo = &swapped[cSwapped];
3123 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
3124 cSwapped++;
3125 cItem++;
3127 if (ret && point->OnlySomeReasonFlags.cbData)
3129 swapped[cSwapped].tag = ASN_CONTEXT | 3;
3130 swapped[cSwapped].pvStructInfo = &point->OnlySomeReasonFlags;
3131 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeBits;
3132 items[cItem].pvStructInfo = &swapped[cSwapped];
3133 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
3134 cSwapped++;
3135 cItem++;
3137 if (ret && point->fIndirectCRL)
3139 swapped[cSwapped].tag = ASN_CONTEXT | 4;
3140 swapped[cSwapped].pvStructInfo = &point->fIndirectCRL;
3141 swapped[cSwapped].encodeFunc = CRYPT_AsnEncodeBool;
3142 items[cItem].pvStructInfo = &swapped[cSwapped];
3143 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
3144 cSwapped++;
3145 cItem++;
3147 if (ret)
3148 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items, cItem,
3149 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
3151 __EXCEPT_PAGE_FAULT
3153 SetLastError(STATUS_ACCESS_VIOLATION);
3154 ret = FALSE;
3156 __ENDTRY
3157 return ret;
3160 static BOOL WINAPI CRYPT_AsnEncodeIssuerSerialNumber(
3161 DWORD dwCertEncodingType, LPCSTR lpszStructType, const void *pvStructInfo,
3162 DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded,
3163 DWORD *pcbEncoded)
3165 BOOL ret;
3166 const CERT_ISSUER_SERIAL_NUMBER *issuerSerial =
3167 (const CERT_ISSUER_SERIAL_NUMBER *)pvStructInfo;
3168 struct AsnEncodeSequenceItem items[] = {
3169 { &issuerSerial->Issuer, CRYPT_CopyEncodedBlob, 0 },
3170 { &issuerSerial->SerialNumber, CRYPT_AsnEncodeInteger, 0 },
3173 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items,
3174 sizeof(items) / sizeof(items[0]), dwFlags, pEncodePara, pbEncoded,
3175 pcbEncoded);
3176 return ret;
3179 static BOOL WINAPI CRYPT_AsnEncodePKCSSignerInfo(DWORD dwCertEncodingType,
3180 LPCSTR lpszStructType, const void *pvStructInfo, DWORD dwFlags,
3181 PCRYPT_ENCODE_PARA pEncodePara, BYTE *pbEncoded, DWORD *pcbEncoded)
3183 BOOL ret = FALSE;
3185 if (!(dwCertEncodingType & PKCS_7_ASN_ENCODING))
3187 SetLastError(E_INVALIDARG);
3188 return FALSE;
3191 __TRY
3193 const CMSG_SIGNER_INFO *info = (const CMSG_SIGNER_INFO *)pvStructInfo;
3195 if (!info->Issuer.cbData)
3196 SetLastError(E_INVALIDARG);
3197 else
3199 struct AsnEncodeSequenceItem items[7] = {
3200 { &info->dwVersion, CRYPT_AsnEncodeInt, 0 },
3201 { &info->Issuer, CRYPT_AsnEncodeIssuerSerialNumber, 0 },
3202 { &info->HashAlgorithm, CRYPT_AsnEncodeAlgorithmIdWithNullParams,
3203 0 },
3204 { &info->HashEncryptionAlgorithm,
3205 CRYPT_AsnEncodeAlgorithmIdWithNullParams, 0 },
3207 DWORD cItem = 4;
3209 if (info->AuthAttrs.cAttr)
3211 items[cItem].pvStructInfo = &info->AuthAttrs;
3212 items[cItem].encodeFunc = CRYPT_AsnEncodePKCSAttributes;
3213 cItem++;
3215 if (info->UnauthAttrs.cAttr)
3217 items[cItem].pvStructInfo = &info->UnauthAttrs;
3218 items[cItem].encodeFunc = CRYPT_AsnEncodePKCSAttributes;
3219 cItem++;
3221 items[cItem].pvStructInfo = &info->EncryptedHash;
3222 items[cItem].encodeFunc = CRYPT_AsnEncodeOctets;
3223 cItem++;
3224 ret = CRYPT_AsnEncodeSequence(dwCertEncodingType, items, cItem,
3225 dwFlags, pEncodePara, pbEncoded, pcbEncoded);
3228 __EXCEPT_PAGE_FAULT
3230 SetLastError(STATUS_ACCESS_VIOLATION);
3232 __ENDTRY
3233 return ret;
3236 BOOL CRYPT_AsnEncodePKCSSignedInfo(CRYPT_SIGNED_INFO *signedInfo, void *pvData,
3237 DWORD *pcbData)
3239 struct AsnEncodeSequenceItem items[7] = {
3240 { &signedInfo->version, CRYPT_AsnEncodeInt, 0 },
3242 struct DERSetDescriptor digestAlgorithmsSet = { 0 }, certSet = { 0 };
3243 struct DERSetDescriptor signerSet = { 0 };
3244 struct AsnEncodeTagSwappedItem swapped[2] = { { 0 } };
3245 DWORD cItem = 1, cSwapped = 0;
3246 BOOL ret = TRUE;
3248 if (signedInfo->cCrlEncoded)
3249 FIXME("unimplemented for CRLs\n");
3250 if (signedInfo->cAttrCertEncoded)
3251 FIXME("unimplemented for attr certs\n");
3252 if (signedInfo->cSignerInfo)
3254 digestAlgorithmsSet.cItems = signedInfo->cSignerInfo;
3255 digestAlgorithmsSet.items = signedInfo->rgSignerInfo;
3256 digestAlgorithmsSet.itemSize = sizeof(CMSG_SIGNER_INFO);
3257 digestAlgorithmsSet.itemOffset =
3258 offsetof(CMSG_SIGNER_INFO, HashAlgorithm);
3259 digestAlgorithmsSet.encode = CRYPT_AsnEncodeAlgorithmIdWithNullParams;
3260 items[cItem].pvStructInfo = &digestAlgorithmsSet;
3261 items[cItem].encodeFunc = CRYPT_DEREncodeItemsAsSet;
3262 cItem++;
3264 items[cItem].pvStructInfo = &signedInfo->content;
3265 items[cItem].encodeFunc = CRYPT_AsnEncodePKCSContentInfoInternal;
3266 cItem++;
3267 if (signedInfo->cCertEncoded)
3269 certSet.cItems = signedInfo->cCertEncoded;
3270 certSet.items = signedInfo->rgCertEncoded;
3271 certSet.itemSize = sizeof(CERT_BLOB);
3272 certSet.itemOffset = 0;
3273 certSet.encode = CRYPT_CopyEncodedBlob;
3274 swapped[cSwapped].tag = ASN_CONSTRUCTOR | ASN_CONTEXT | 0;
3275 swapped[cSwapped].pvStructInfo = &certSet;
3276 swapped[cSwapped].encodeFunc = CRYPT_DEREncodeItemsAsSet;
3277 items[cItem].pvStructInfo = &swapped[cSwapped];
3278 items[cItem].encodeFunc = CRYPT_AsnEncodeSwapTag;
3279 cSwapped++;
3280 cItem++;
3282 if (ret && signedInfo->cSignerInfo)
3284 signerSet.cItems = signedInfo->cSignerInfo;
3285 signerSet.items = signedInfo->rgSignerInfo;
3286 signerSet.itemSize = sizeof(CMSG_SIGNER_INFO);
3287 signerSet.itemOffset = 0;
3288 signerSet.encode = CRYPT_AsnEncodePKCSSignerInfo;
3289 items[cItem].pvStructInfo = &signerSet;
3290 items[cItem].encodeFunc = CRYPT_DEREncodeItemsAsSet;
3291 cItem++;
3293 if (ret)
3294 ret = CRYPT_AsnEncodeSequence(X509_ASN_ENCODING | PKCS_7_ASN_ENCODING,
3295 items, cItem, 0, NULL, pvData, pcbData);
3297 return ret;
3300 BOOL WINAPI CryptEncodeObjectEx(DWORD dwCertEncodingType, LPCSTR lpszStructType,
3301 const void *pvStructInfo, DWORD dwFlags, PCRYPT_ENCODE_PARA pEncodePara,
3302 void *pvEncoded, DWORD *pcbEncoded)
3304 static HCRYPTOIDFUNCSET set = NULL;
3305 BOOL ret = FALSE;
3306 CryptEncodeObjectExFunc encodeFunc = NULL;
3307 HCRYPTOIDFUNCADDR hFunc = NULL;
3309 TRACE("(0x%08x, %s, %p, 0x%08x, %p, %p, %p)\n", dwCertEncodingType,
3310 debugstr_a(lpszStructType), pvStructInfo, dwFlags, pEncodePara,
3311 pvEncoded, pcbEncoded);
3313 if (!pvEncoded && !pcbEncoded)
3315 SetLastError(ERROR_INVALID_PARAMETER);
3316 return FALSE;
3318 if ((dwCertEncodingType & CERT_ENCODING_TYPE_MASK) != X509_ASN_ENCODING
3319 && (dwCertEncodingType & CMSG_ENCODING_TYPE_MASK) != PKCS_7_ASN_ENCODING)
3321 SetLastError(ERROR_FILE_NOT_FOUND);
3322 return FALSE;
3325 SetLastError(NOERROR);
3326 if (dwFlags & CRYPT_ENCODE_ALLOC_FLAG && pvEncoded)
3327 *(BYTE **)pvEncoded = NULL;
3328 if (!HIWORD(lpszStructType))
3330 switch (LOWORD(lpszStructType))
3332 case (WORD)X509_CERT:
3333 encodeFunc = CRYPT_AsnEncodeCert;
3334 break;
3335 case (WORD)X509_CERT_TO_BE_SIGNED:
3336 encodeFunc = CRYPT_AsnEncodeCertInfo;
3337 break;
3338 case (WORD)X509_CERT_CRL_TO_BE_SIGNED:
3339 encodeFunc = CRYPT_AsnEncodeCRLInfo;
3340 break;
3341 case (WORD)X509_EXTENSIONS:
3342 encodeFunc = CRYPT_AsnEncodeExtensions;
3343 break;
3344 case (WORD)X509_NAME_VALUE:
3345 encodeFunc = CRYPT_AsnEncodeNameValue;
3346 break;
3347 case (WORD)X509_NAME:
3348 encodeFunc = CRYPT_AsnEncodeName;
3349 break;
3350 case (WORD)X509_PUBLIC_KEY_INFO:
3351 encodeFunc = CRYPT_AsnEncodePubKeyInfo;
3352 break;
3353 case (WORD)X509_AUTHORITY_KEY_ID:
3354 encodeFunc = CRYPT_AsnEncodeAuthorityKeyId;
3355 break;
3356 case (WORD)X509_ALTERNATE_NAME:
3357 encodeFunc = CRYPT_AsnEncodeAltName;
3358 break;
3359 case (WORD)X509_BASIC_CONSTRAINTS:
3360 encodeFunc = CRYPT_AsnEncodeBasicConstraints;
3361 break;
3362 case (WORD)X509_BASIC_CONSTRAINTS2:
3363 encodeFunc = CRYPT_AsnEncodeBasicConstraints2;
3364 break;
3365 case (WORD)RSA_CSP_PUBLICKEYBLOB:
3366 encodeFunc = CRYPT_AsnEncodeRsaPubKey;
3367 break;
3368 case (WORD)X509_UNICODE_NAME:
3369 encodeFunc = CRYPT_AsnEncodeUnicodeName;
3370 break;
3371 case (WORD)PKCS_CONTENT_INFO:
3372 encodeFunc = CRYPT_AsnEncodePKCSContentInfo;
3373 break;
3374 case (WORD)PKCS_ATTRIBUTE:
3375 encodeFunc = CRYPT_AsnEncodePKCSAttribute;
3376 break;
3377 case (WORD)X509_UNICODE_NAME_VALUE:
3378 encodeFunc = CRYPT_AsnEncodeUnicodeNameValue;
3379 break;
3380 case (WORD)X509_OCTET_STRING:
3381 encodeFunc = CRYPT_AsnEncodeOctets;
3382 break;
3383 case (WORD)X509_BITS:
3384 case (WORD)X509_KEY_USAGE:
3385 encodeFunc = CRYPT_AsnEncodeBits;
3386 break;
3387 case (WORD)X509_INTEGER:
3388 encodeFunc = CRYPT_AsnEncodeInt;
3389 break;
3390 case (WORD)X509_MULTI_BYTE_INTEGER:
3391 encodeFunc = CRYPT_AsnEncodeInteger;
3392 break;
3393 case (WORD)X509_MULTI_BYTE_UINT:
3394 encodeFunc = CRYPT_AsnEncodeUnsignedInteger;
3395 break;
3396 case (WORD)X509_ENUMERATED:
3397 encodeFunc = CRYPT_AsnEncodeEnumerated;
3398 break;
3399 case (WORD)X509_CHOICE_OF_TIME:
3400 encodeFunc = CRYPT_AsnEncodeChoiceOfTime;
3401 break;
3402 case (WORD)X509_AUTHORITY_KEY_ID2:
3403 encodeFunc = CRYPT_AsnEncodeAuthorityKeyId2;
3404 break;
3405 case (WORD)X509_SEQUENCE_OF_ANY:
3406 encodeFunc = CRYPT_AsnEncodeSequenceOfAny;
3407 break;
3408 case (WORD)PKCS_UTC_TIME:
3409 encodeFunc = CRYPT_AsnEncodeUtcTime;
3410 break;
3411 case (WORD)X509_CRL_DIST_POINTS:
3412 encodeFunc = CRYPT_AsnEncodeCRLDistPoints;
3413 break;
3414 case (WORD)X509_ENHANCED_KEY_USAGE:
3415 encodeFunc = CRYPT_AsnEncodeEnhancedKeyUsage;
3416 break;
3417 case (WORD)PKCS_ATTRIBUTES:
3418 encodeFunc = CRYPT_AsnEncodePKCSAttributes;
3419 break;
3420 case (WORD)X509_ISSUING_DIST_POINT:
3421 encodeFunc = CRYPT_AsnEncodeIssuingDistPoint;
3422 break;
3423 case (WORD)PKCS7_SIGNER_INFO:
3424 encodeFunc = CRYPT_AsnEncodePKCSSignerInfo;
3425 break;
3426 default:
3427 FIXME("%d: unimplemented\n", LOWORD(lpszStructType));
3430 else if (!strcmp(lpszStructType, szOID_CERT_EXTENSIONS))
3431 encodeFunc = CRYPT_AsnEncodeExtensions;
3432 else if (!strcmp(lpszStructType, szOID_RSA_signingTime))
3433 encodeFunc = CRYPT_AsnEncodeUtcTime;
3434 else if (!strcmp(lpszStructType, szOID_AUTHORITY_KEY_IDENTIFIER))
3435 encodeFunc = CRYPT_AsnEncodeAuthorityKeyId;
3436 else if (!strcmp(lpszStructType, szOID_AUTHORITY_KEY_IDENTIFIER2))
3437 encodeFunc = CRYPT_AsnEncodeAuthorityKeyId2;
3438 else if (!strcmp(lpszStructType, szOID_CRL_REASON_CODE))
3439 encodeFunc = CRYPT_AsnEncodeEnumerated;
3440 else if (!strcmp(lpszStructType, szOID_KEY_USAGE))
3441 encodeFunc = CRYPT_AsnEncodeBits;
3442 else if (!strcmp(lpszStructType, szOID_SUBJECT_KEY_IDENTIFIER))
3443 encodeFunc = CRYPT_AsnEncodeOctets;
3444 else if (!strcmp(lpszStructType, szOID_BASIC_CONSTRAINTS))
3445 encodeFunc = CRYPT_AsnEncodeBasicConstraints;
3446 else if (!strcmp(lpszStructType, szOID_BASIC_CONSTRAINTS2))
3447 encodeFunc = CRYPT_AsnEncodeBasicConstraints2;
3448 else if (!strcmp(lpszStructType, szOID_ISSUER_ALT_NAME))
3449 encodeFunc = CRYPT_AsnEncodeAltName;
3450 else if (!strcmp(lpszStructType, szOID_ISSUER_ALT_NAME2))
3451 encodeFunc = CRYPT_AsnEncodeAltName;
3452 else if (!strcmp(lpszStructType, szOID_NEXT_UPDATE_LOCATION))
3453 encodeFunc = CRYPT_AsnEncodeAltName;
3454 else if (!strcmp(lpszStructType, szOID_SUBJECT_ALT_NAME))
3455 encodeFunc = CRYPT_AsnEncodeAltName;
3456 else if (!strcmp(lpszStructType, szOID_SUBJECT_ALT_NAME2))
3457 encodeFunc = CRYPT_AsnEncodeAltName;
3458 else if (!strcmp(lpszStructType, szOID_CRL_DIST_POINTS))
3459 encodeFunc = CRYPT_AsnEncodeCRLDistPoints;
3460 else if (!strcmp(lpszStructType, szOID_ENHANCED_KEY_USAGE))
3461 encodeFunc = CRYPT_AsnEncodeEnhancedKeyUsage;
3462 else if (!strcmp(lpszStructType, szOID_ISSUING_DIST_POINT))
3463 encodeFunc = CRYPT_AsnEncodeIssuingDistPoint;
3464 else
3465 TRACE("OID %s not found or unimplemented, looking for DLL\n",
3466 debugstr_a(lpszStructType));
3467 if (!encodeFunc)
3469 if (!set)
3470 set = CryptInitOIDFunctionSet(CRYPT_OID_ENCODE_OBJECT_EX_FUNC, 0);
3471 CryptGetOIDFunctionAddress(set, dwCertEncodingType, lpszStructType, 0,
3472 (void **)&encodeFunc, &hFunc);
3474 if (encodeFunc)
3475 ret = encodeFunc(dwCertEncodingType, lpszStructType, pvStructInfo,
3476 dwFlags, pEncodePara, pvEncoded, pcbEncoded);
3477 else
3478 SetLastError(ERROR_FILE_NOT_FOUND);
3479 if (hFunc)
3480 CryptFreeOIDFunctionAddress(hFunc, 0);
3481 return ret;
3484 BOOL WINAPI CryptExportPublicKeyInfo(HCRYPTPROV hCryptProv, DWORD dwKeySpec,
3485 DWORD dwCertEncodingType, PCERT_PUBLIC_KEY_INFO pInfo, DWORD *pcbInfo)
3487 return CryptExportPublicKeyInfoEx(hCryptProv, dwKeySpec, dwCertEncodingType,
3488 NULL, 0, NULL, pInfo, pcbInfo);
3491 static BOOL WINAPI CRYPT_ExportRsaPublicKeyInfoEx(HCRYPTPROV hCryptProv,
3492 DWORD dwKeySpec, DWORD dwCertEncodingType, LPSTR pszPublicKeyObjId,
3493 DWORD dwFlags, void *pvAuxInfo, PCERT_PUBLIC_KEY_INFO pInfo, DWORD *pcbInfo)
3495 BOOL ret;
3496 HCRYPTKEY key;
3497 static CHAR oid[] = szOID_RSA_RSA;
3499 TRACE("(%08lx, %d, %08x, %s, %08x, %p, %p, %p)\n", hCryptProv, dwKeySpec,
3500 dwCertEncodingType, debugstr_a(pszPublicKeyObjId), dwFlags, pvAuxInfo,
3501 pInfo, pcbInfo);
3503 if (!pszPublicKeyObjId)
3504 pszPublicKeyObjId = oid;
3505 if ((ret = CryptGetUserKey(hCryptProv, dwKeySpec, &key)))
3507 DWORD keySize = 0;
3509 ret = CryptExportKey(key, 0, PUBLICKEYBLOB, 0, NULL, &keySize);
3510 if (ret)
3512 LPBYTE pubKey = CryptMemAlloc(keySize);
3514 if (pubKey)
3516 ret = CryptExportKey(key, 0, PUBLICKEYBLOB, 0, pubKey,
3517 &keySize);
3518 if (ret)
3520 DWORD encodedLen = 0;
3522 ret = CryptEncodeObject(dwCertEncodingType,
3523 RSA_CSP_PUBLICKEYBLOB, pubKey, NULL, &encodedLen);
3524 if (ret)
3526 DWORD sizeNeeded = sizeof(CERT_PUBLIC_KEY_INFO) +
3527 strlen(pszPublicKeyObjId) + 1 + encodedLen;
3529 if (!pInfo)
3530 *pcbInfo = sizeNeeded;
3531 else if (*pcbInfo < sizeNeeded)
3533 SetLastError(ERROR_MORE_DATA);
3534 *pcbInfo = sizeNeeded;
3535 ret = FALSE;
3537 else
3539 pInfo->Algorithm.pszObjId = (char *)pInfo +
3540 sizeof(CERT_PUBLIC_KEY_INFO);
3541 lstrcpyA(pInfo->Algorithm.pszObjId,
3542 pszPublicKeyObjId);
3543 pInfo->Algorithm.Parameters.cbData = 0;
3544 pInfo->Algorithm.Parameters.pbData = NULL;
3545 pInfo->PublicKey.pbData =
3546 (BYTE *)pInfo->Algorithm.pszObjId
3547 + lstrlenA(pInfo->Algorithm.pszObjId) + 1;
3548 pInfo->PublicKey.cbData = encodedLen;
3549 pInfo->PublicKey.cUnusedBits = 0;
3550 ret = CryptEncodeObject(dwCertEncodingType,
3551 RSA_CSP_PUBLICKEYBLOB, pubKey,
3552 pInfo->PublicKey.pbData, &pInfo->PublicKey.cbData);
3556 CryptMemFree(pubKey);
3558 else
3559 ret = FALSE;
3561 CryptDestroyKey(key);
3563 return ret;
3566 typedef BOOL (WINAPI *ExportPublicKeyInfoExFunc)(HCRYPTPROV hCryptProv,
3567 DWORD dwKeySpec, DWORD dwCertEncodingType, LPSTR pszPublicKeyObjId,
3568 DWORD dwFlags, void *pvAuxInfo, PCERT_PUBLIC_KEY_INFO pInfo, DWORD *pcbInfo);
3570 BOOL WINAPI CryptExportPublicKeyInfoEx(HCRYPTPROV hCryptProv, DWORD dwKeySpec,
3571 DWORD dwCertEncodingType, LPSTR pszPublicKeyObjId, DWORD dwFlags,
3572 void *pvAuxInfo, PCERT_PUBLIC_KEY_INFO pInfo, DWORD *pcbInfo)
3574 static HCRYPTOIDFUNCSET set = NULL;
3575 BOOL ret;
3576 ExportPublicKeyInfoExFunc exportFunc = NULL;
3577 HCRYPTOIDFUNCADDR hFunc = NULL;
3579 TRACE("(%08lx, %d, %08x, %s, %08x, %p, %p, %p)\n", hCryptProv, dwKeySpec,
3580 dwCertEncodingType, debugstr_a(pszPublicKeyObjId), dwFlags, pvAuxInfo,
3581 pInfo, pcbInfo);
3583 if (!hCryptProv)
3585 SetLastError(ERROR_INVALID_PARAMETER);
3586 return FALSE;
3589 if (pszPublicKeyObjId)
3591 if (!set)
3592 set = CryptInitOIDFunctionSet(CRYPT_OID_EXPORT_PUBLIC_KEY_INFO_FUNC,
3594 CryptGetOIDFunctionAddress(set, dwCertEncodingType, pszPublicKeyObjId,
3595 0, (void **)&exportFunc, &hFunc);
3597 if (!exportFunc)
3598 exportFunc = CRYPT_ExportRsaPublicKeyInfoEx;
3599 ret = exportFunc(hCryptProv, dwKeySpec, dwCertEncodingType,
3600 pszPublicKeyObjId, dwFlags, pvAuxInfo, pInfo, pcbInfo);
3601 if (hFunc)
3602 CryptFreeOIDFunctionAddress(hFunc, 0);
3603 return ret;
3606 BOOL WINAPI CryptImportPublicKeyInfo(HCRYPTPROV hCryptProv,
3607 DWORD dwCertEncodingType, PCERT_PUBLIC_KEY_INFO pInfo, HCRYPTKEY *phKey)
3609 return CryptImportPublicKeyInfoEx(hCryptProv, dwCertEncodingType, pInfo,
3610 0, 0, NULL, phKey);
3613 static BOOL WINAPI CRYPT_ImportRsaPublicKeyInfoEx(HCRYPTPROV hCryptProv,
3614 DWORD dwCertEncodingType, PCERT_PUBLIC_KEY_INFO pInfo, ALG_ID aiKeyAlg,
3615 DWORD dwFlags, void *pvAuxInfo, HCRYPTKEY *phKey)
3617 BOOL ret;
3618 DWORD pubKeySize = 0;
3620 TRACE("(%08lx, %d, %p, %d, %08x, %p, %p)\n", hCryptProv,
3621 dwCertEncodingType, pInfo, aiKeyAlg, dwFlags, pvAuxInfo, phKey);
3623 ret = CryptDecodeObject(dwCertEncodingType, RSA_CSP_PUBLICKEYBLOB,
3624 pInfo->PublicKey.pbData, pInfo->PublicKey.cbData, 0, NULL, &pubKeySize);
3625 if (ret)
3627 LPBYTE pubKey = CryptMemAlloc(pubKeySize);
3629 if (pubKey)
3631 ret = CryptDecodeObject(dwCertEncodingType, RSA_CSP_PUBLICKEYBLOB,
3632 pInfo->PublicKey.pbData, pInfo->PublicKey.cbData, 0, pubKey,
3633 &pubKeySize);
3634 if (ret)
3635 ret = CryptImportKey(hCryptProv, pubKey, pubKeySize, 0, 0,
3636 phKey);
3637 CryptMemFree(pubKey);
3639 else
3640 ret = FALSE;
3642 return ret;
3645 typedef BOOL (WINAPI *ImportPublicKeyInfoExFunc)(HCRYPTPROV hCryptProv,
3646 DWORD dwCertEncodingType, PCERT_PUBLIC_KEY_INFO pInfo, ALG_ID aiKeyAlg,
3647 DWORD dwFlags, void *pvAuxInfo, HCRYPTKEY *phKey);
3649 BOOL WINAPI CryptImportPublicKeyInfoEx(HCRYPTPROV hCryptProv,
3650 DWORD dwCertEncodingType, PCERT_PUBLIC_KEY_INFO pInfo, ALG_ID aiKeyAlg,
3651 DWORD dwFlags, void *pvAuxInfo, HCRYPTKEY *phKey)
3653 static HCRYPTOIDFUNCSET set = NULL;
3654 BOOL ret;
3655 ImportPublicKeyInfoExFunc importFunc = NULL;
3656 HCRYPTOIDFUNCADDR hFunc = NULL;
3658 TRACE("(%08lx, %d, %p, %d, %08x, %p, %p)\n", hCryptProv,
3659 dwCertEncodingType, pInfo, aiKeyAlg, dwFlags, pvAuxInfo, phKey);
3661 if (!set)
3662 set = CryptInitOIDFunctionSet(CRYPT_OID_IMPORT_PUBLIC_KEY_INFO_FUNC, 0);
3663 CryptGetOIDFunctionAddress(set, dwCertEncodingType,
3664 pInfo->Algorithm.pszObjId, 0, (void **)&importFunc, &hFunc);
3665 if (!importFunc)
3666 importFunc = CRYPT_ImportRsaPublicKeyInfoEx;
3667 ret = importFunc(hCryptProv, dwCertEncodingType, pInfo, aiKeyAlg, dwFlags,
3668 pvAuxInfo, phKey);
3669 if (hFunc)
3670 CryptFreeOIDFunctionAddress(hFunc, 0);
3671 return ret;