2 * Unit test suite for crypt32.dll's CryptEncodeObjectEx/CryptDecodeObjectEx
4 * Copyright 2005 Juan Lang
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
27 #include "wine/test.h"
30 static BOOL (WINAPI *pCryptDecodeObjectEx)(DWORD,LPCSTR,const BYTE*,DWORD,DWORD,PCRYPT_DECODE_PARA,void*,DWORD*);
31 static BOOL (WINAPI *pCryptEncodeObjectEx)(DWORD,LPCSTR,const void*,DWORD,PCRYPT_ENCODE_PARA,void*,DWORD*);
39 static const BYTE bin1[] = {0x02,0x01,0x01};
40 static const BYTE bin2[] = {0x02,0x01,0x7f};
41 static const BYTE bin3[] = {0x02,0x02,0x00,0x80};
42 static const BYTE bin4[] = {0x02,0x02,0x01,0x00};
43 static const BYTE bin5[] = {0x02,0x01,0x80};
44 static const BYTE bin6[] = {0x02,0x02,0xff,0x7f};
45 static const BYTE bin7[] = {0x02,0x04,0xba,0xdd,0xf0,0x0d};
47 static const struct encodedInt ints[] = {
64 static const BYTE bin8[] = {0xff,0xff,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0};
65 static const BYTE bin9[] = {0x02,0x0a,0x08,0x07,0x06,0x05,0x04,0x03,0x02,0x01,0xff,0xff,0};
66 static const BYTE bin10[] = {0xff,0xff,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0};
68 static const BYTE bin11[] = {0x08,0x07,0x06,0x05,0x04,0x03,0x02,0x01,0xff,0xff,0xff,0};
69 static const BYTE bin12[] = {0x02,0x09,0xff,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0};
70 static const BYTE bin13[] = {0x08,0x07,0x06,0x05,0x04,0x03,0x02,0x01,0xff,0};
72 static const struct encodedBigInt bigInts[] = {
73 { bin8, bin9, bin10 },
74 { bin11, bin12, bin13 },
77 static const BYTE bin14[] = {0xff,0xff,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0};
78 static const BYTE bin15[] = {0x02,0x0a,0x08,0x07,0x06,0x05,0x04,0x03,0x02,0x01,0xff,0xff,0};
79 static const BYTE bin16[] = {0x08,0x07,0x06,0x05,0x04,0x03,0x02,0x01,0xff,0xff,0xff,0};
80 static const BYTE bin17[] = {0x02,0x0c,0x00,0xff,0xff,0xff,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0};
82 /* Decoded is the same as original, so don't bother storing a separate copy */
83 static const struct encodedBigInt bigUInts[] = {
84 { bin14, bin15, NULL },
85 { bin16, bin17, NULL },
88 static void test_encodeInt(DWORD dwEncoding)
93 CRYPT_INTEGER_BLOB blob;
96 /* CryptEncodeObjectEx with NULL bufSize crashes..
97 ret = pCryptEncodeObjectEx(3, X509_INTEGER, &ints[0].val, 0, NULL, NULL,
100 /* check bogus encoding */
101 ret = pCryptEncodeObjectEx(0, X509_INTEGER, &ints[0].val, 0, NULL, NULL,
103 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
104 "Expected ERROR_FILE_NOT_FOUND, got %d\n", GetLastError());
107 /* check with NULL integer buffer. Windows XP incorrectly returns an
108 * NTSTATUS (crashes on win9x).
110 ret = pCryptEncodeObjectEx(dwEncoding, X509_INTEGER, NULL, 0, NULL, NULL,
112 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
113 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
115 for (i = 0; i < sizeof(ints) / sizeof(ints[0]); i++)
117 /* encode as normal integer */
118 ret = pCryptEncodeObjectEx(dwEncoding, X509_INTEGER, &ints[i].val, 0,
119 NULL, NULL, &bufSize);
120 ok(ret, "Expected success, got %d\n", GetLastError());
121 ret = pCryptEncodeObjectEx(dwEncoding, X509_INTEGER, &ints[i].val,
122 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
123 ok(ret, "CryptEncodeObjectEx failed: %d\n", GetLastError());
126 ok(buf[0] == 2, "Got unexpected type %d for integer (expected 2)\n",
128 ok(buf[1] == ints[i].encoded[1], "Got length %d, expected %d\n",
129 buf[1], ints[i].encoded[1]);
130 ok(!memcmp(buf + 1, ints[i].encoded + 1, ints[i].encoded[1] + 1),
131 "Encoded value of 0x%08x didn't match expected\n", ints[i].val);
134 /* encode as multibyte integer */
135 blob.cbData = sizeof(ints[i].val);
136 blob.pbData = (BYTE *)&ints[i].val;
137 ret = pCryptEncodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, &blob,
138 0, NULL, NULL, &bufSize);
139 ok(ret, "Expected success, got %d\n", GetLastError());
140 ret = pCryptEncodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, &blob,
141 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
142 ok(ret, "CryptEncodeObjectEx failed: %d\n", GetLastError());
145 ok(buf[0] == 2, "Got unexpected type %d for integer (expected 2)\n",
147 ok(buf[1] == ints[i].encoded[1], "Got length %d, expected %d\n",
148 buf[1], ints[i].encoded[1]);
149 ok(!memcmp(buf + 1, ints[i].encoded + 1, ints[i].encoded[1] + 1),
150 "Encoded value of 0x%08x didn't match expected\n", ints[i].val);
154 /* encode a couple bigger ints, just to show it's little-endian and leading
155 * sign bytes are dropped
157 for (i = 0; i < sizeof(bigInts) / sizeof(bigInts[0]); i++)
159 blob.cbData = strlen((const char*)bigInts[i].val);
160 blob.pbData = (BYTE *)bigInts[i].val;
161 ret = pCryptEncodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, &blob,
162 0, NULL, NULL, &bufSize);
163 ok(ret, "Expected success, got %d\n", GetLastError());
164 ret = pCryptEncodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, &blob,
165 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
166 ok(ret, "CryptEncodeObjectEx failed: %d\n", GetLastError());
169 ok(buf[0] == 2, "Got unexpected type %d for integer (expected 2)\n",
171 ok(buf[1] == bigInts[i].encoded[1], "Got length %d, expected %d\n",
172 buf[1], bigInts[i].encoded[1]);
173 ok(!memcmp(buf + 1, bigInts[i].encoded + 1,
174 bigInts[i].encoded[1] + 1),
175 "Encoded value didn't match expected\n");
179 /* and, encode some uints */
180 for (i = 0; i < sizeof(bigUInts) / sizeof(bigUInts[0]); i++)
182 blob.cbData = strlen((const char*)bigUInts[i].val);
183 blob.pbData = (BYTE*)bigUInts[i].val;
184 ret = pCryptEncodeObjectEx(dwEncoding, X509_MULTI_BYTE_UINT, &blob,
185 0, NULL, NULL, &bufSize);
186 ok(ret, "Expected success, got %d\n", GetLastError());
187 ret = pCryptEncodeObjectEx(dwEncoding, X509_MULTI_BYTE_UINT, &blob,
188 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
189 ok(ret, "CryptEncodeObjectEx failed: %d\n", GetLastError());
192 ok(buf[0] == 2, "Got unexpected type %d for integer (expected 2)\n",
194 ok(buf[1] == bigUInts[i].encoded[1], "Got length %d, expected %d\n",
195 buf[1], bigUInts[i].encoded[1]);
196 ok(!memcmp(buf + 1, bigUInts[i].encoded + 1,
197 bigUInts[i].encoded[1] + 1),
198 "Encoded value didn't match expected\n");
204 static void test_decodeInt(DWORD dwEncoding)
206 static const BYTE bigInt[] = { 2, 5, 0xff, 0xfe, 0xff, 0xfe, 0xff };
207 static const BYTE testStr[] = { 0x16, 4, 't', 'e', 's', 't' };
208 static const BYTE longForm[] = { 2, 0x81, 0x01, 0x01 };
209 static const BYTE bigBogus[] = { 0x02, 0x84, 0x01, 0xff, 0xff, 0xf9 };
210 static const BYTE extraBytes[] = { 2, 1, 1, 0, 0, 0, 0 };
216 /* CryptDecodeObjectEx with NULL bufSize crashes..
217 ret = pCryptDecodeObjectEx(3, X509_INTEGER, &ints[0].encoded,
218 ints[0].encoded[1] + 2, 0, NULL, NULL, NULL);
220 /* check bogus encoding */
221 ret = pCryptDecodeObjectEx(3, X509_INTEGER, (BYTE *)&ints[0].encoded,
222 ints[0].encoded[1] + 2, 0, NULL, NULL, &bufSize);
223 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
224 "Expected ERROR_FILE_NOT_FOUND, got %d\n", GetLastError());
225 /* check with NULL integer buffer */
226 ret = pCryptDecodeObjectEx(dwEncoding, X509_INTEGER, NULL, 0, 0, NULL, NULL,
228 ok(!ret && (GetLastError() == CRYPT_E_ASN1_EOD ||
229 GetLastError() == OSS_BAD_ARG /* Win9x */),
230 "Expected CRYPT_E_ASN1_EOD or OSS_BAD_ARG, got %08x\n", GetLastError());
231 /* check with a valid, but too large, integer */
232 ret = pCryptDecodeObjectEx(dwEncoding, X509_INTEGER, bigInt, bigInt[1] + 2,
233 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
234 ok((!ret && GetLastError() == CRYPT_E_ASN1_LARGE) ||
235 broken(ret) /* Win9x */,
236 "Expected CRYPT_E_ASN1_LARGE, got %d\n", GetLastError());
237 /* check with a DER-encoded string */
238 ret = pCryptDecodeObjectEx(dwEncoding, X509_INTEGER, testStr, testStr[1] + 2,
239 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
240 ok(!ret && (GetLastError() == CRYPT_E_ASN1_BADTAG ||
241 GetLastError() == OSS_PDU_MISMATCH /* Win9x */ ),
242 "Expected CRYPT_E_ASN1_BADTAG or OSS_PDU_MISMATCH, got %08x\n",
244 for (i = 0; i < sizeof(ints) / sizeof(ints[0]); i++)
246 /* When the output buffer is NULL, this always succeeds */
247 SetLastError(0xdeadbeef);
248 ret = pCryptDecodeObjectEx(dwEncoding, X509_INTEGER,
249 ints[i].encoded, ints[i].encoded[1] + 2, 0, NULL, NULL,
251 ok(ret && GetLastError() == NOERROR,
252 "Expected success and NOERROR, got %d\n", GetLastError());
253 ret = pCryptDecodeObjectEx(dwEncoding, X509_INTEGER,
254 ints[i].encoded, ints[i].encoded[1] + 2,
255 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
256 ok(ret, "CryptDecodeObjectEx failed: %d\n", GetLastError());
257 ok(bufSize == sizeof(int), "Wrong size %d\n", bufSize);
258 ok(buf != NULL, "Expected allocated buffer\n");
261 ok(!memcmp(buf, &ints[i].val, bufSize), "Expected %d, got %d\n",
262 ints[i].val, *(int *)buf);
266 for (i = 0; i < sizeof(bigInts) / sizeof(bigInts[0]); i++)
268 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER,
269 bigInts[i].encoded, bigInts[i].encoded[1] + 2, 0, NULL, NULL,
271 ok(ret && GetLastError() == NOERROR,
272 "Expected success and NOERROR, got %d\n", GetLastError());
273 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER,
274 bigInts[i].encoded, bigInts[i].encoded[1] + 2,
275 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
276 ok(ret, "CryptDecodeObjectEx failed: %d\n", GetLastError());
277 ok(bufSize >= sizeof(CRYPT_INTEGER_BLOB), "Wrong size %d\n", bufSize);
278 ok(buf != NULL, "Expected allocated buffer\n");
281 CRYPT_INTEGER_BLOB *blob = (CRYPT_INTEGER_BLOB *)buf;
283 ok(blob->cbData == strlen((const char*)bigInts[i].decoded),
284 "Expected len %d, got %d\n", lstrlenA((const char*)bigInts[i].decoded),
286 ok(!memcmp(blob->pbData, bigInts[i].decoded, blob->cbData),
287 "Unexpected value\n");
291 for (i = 0; i < sizeof(bigUInts) / sizeof(bigUInts[0]); i++)
293 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_UINT,
294 bigUInts[i].encoded, bigUInts[i].encoded[1] + 2, 0, NULL, NULL,
296 ok(ret && GetLastError() == NOERROR,
297 "Expected success and NOERROR, got %d\n", GetLastError());
298 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_UINT,
299 bigUInts[i].encoded, bigUInts[i].encoded[1] + 2,
300 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
301 ok(ret, "CryptDecodeObjectEx failed: %d\n", GetLastError());
302 ok(bufSize >= sizeof(CRYPT_INTEGER_BLOB), "Wrong size %d\n", bufSize);
303 ok(buf != NULL, "Expected allocated buffer\n");
306 CRYPT_INTEGER_BLOB *blob = (CRYPT_INTEGER_BLOB *)buf;
308 ok(blob->cbData == strlen((const char*)bigUInts[i].val),
309 "Expected len %d, got %d\n", lstrlenA((const char*)bigUInts[i].val),
311 ok(!memcmp(blob->pbData, bigUInts[i].val, blob->cbData),
312 "Unexpected value\n");
316 /* Decode the value 1 with long-form length */
317 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, longForm,
318 sizeof(longForm), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
319 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
322 ok(*(int *)buf == 1, "Expected 1, got %d\n", *(int *)buf);
325 /* check with extra bytes at the end */
326 ret = pCryptDecodeObjectEx(dwEncoding, X509_INTEGER, extraBytes,
327 sizeof(extraBytes), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
328 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
331 ok(*(int *)buf == 1, "Expected 1, got %d\n", *(int *)buf);
334 /* Try to decode some bogus large items */
335 /* The buffer size is smaller than the encoded length, so this should fail
336 * with CRYPT_E_ASN1_EOD if it's being decoded.
337 * Under XP it fails with CRYPT_E_ASN1_LARGE, which means there's a limit
338 * on the size decoded, but in ME it fails with CRYPT_E_ASN1_EOD or crashes.
339 * So this test unfortunately isn't useful.
340 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, tooBig,
341 0x7fffffff, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
342 ok(!ret && GetLastError() == CRYPT_E_ASN1_LARGE,
343 "Expected CRYPT_E_ASN1_LARGE, got %08x\n", GetLastError());
345 /* This will try to decode the buffer and overflow it, check that it's
350 /* a large buffer isn't guaranteed to crash, it depends on memory allocation order */
351 ret = pCryptDecodeObjectEx(dwEncoding, X509_MULTI_BYTE_INTEGER, bigBogus,
352 0x01ffffff, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
353 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
354 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
358 static const BYTE bin18[] = {0x0a,0x01,0x01};
359 static const BYTE bin19[] = {0x0a,0x05,0x00,0xff,0xff,0xff,0x80};
361 /* These are always encoded unsigned, and aren't constrained to be any
364 static const struct encodedInt enums[] = {
369 /* X509_CRL_REASON_CODE is also an enumerated type, but it's #defined to
372 static const LPCSTR enumeratedTypes[] = { X509_ENUMERATED,
373 szOID_CRL_REASON_CODE };
375 static void test_encodeEnumerated(DWORD dwEncoding)
379 for (i = 0; i < sizeof(enumeratedTypes) / sizeof(enumeratedTypes[0]); i++)
381 for (j = 0; j < sizeof(enums) / sizeof(enums[0]); j++)
387 ret = pCryptEncodeObjectEx(dwEncoding, enumeratedTypes[i],
388 &enums[j].val, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf,
390 ok(ret, "CryptEncodeObjectEx failed: %d\n", GetLastError());
394 "Got unexpected type %d for enumerated (expected 0xa)\n",
396 ok(buf[1] == enums[j].encoded[1],
397 "Got length %d, expected %d\n", buf[1], enums[j].encoded[1]);
398 ok(!memcmp(buf + 1, enums[j].encoded + 1,
399 enums[j].encoded[1] + 1),
400 "Encoded value of 0x%08x didn't match expected\n",
408 static void test_decodeEnumerated(DWORD dwEncoding)
412 for (i = 0; i < sizeof(enumeratedTypes) / sizeof(enumeratedTypes[0]); i++)
414 for (j = 0; j < sizeof(enums) / sizeof(enums[0]); j++)
417 DWORD bufSize = sizeof(int);
420 ret = pCryptDecodeObjectEx(dwEncoding, enumeratedTypes[i],
421 enums[j].encoded, enums[j].encoded[1] + 2, 0, NULL,
423 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
424 ok(bufSize == sizeof(int),
425 "Got unexpected size %d for enumerated\n", bufSize);
426 ok(val == enums[j].val, "Unexpected value %d, expected %d\n",
432 struct encodedFiletime
435 const BYTE *encodedTime;
438 static void testTimeEncoding(DWORD dwEncoding, LPCSTR structType,
439 const struct encodedFiletime *time)
446 ret = SystemTimeToFileTime(&time->sysTime, &ft);
447 ok(ret, "SystemTimeToFileTime failed: %d\n", GetLastError());
448 ret = pCryptEncodeObjectEx(dwEncoding, structType, &ft,
449 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
450 /* years other than 1950-2050 are not allowed for encodings other than
451 * X509_CHOICE_OF_TIME.
453 if (structType == X509_CHOICE_OF_TIME ||
454 (time->sysTime.wYear >= 1950 && time->sysTime.wYear <= 2050))
456 ok(ret, "CryptEncodeObjectEx failed: %d (0x%08x)\n", GetLastError(),
458 ok(buf != NULL, "Expected an allocated buffer\n");
461 ok(buf[0] == time->encodedTime[0],
462 "Expected type 0x%02x, got 0x%02x\n", time->encodedTime[0],
464 ok(buf[1] == time->encodedTime[1], "Expected %d bytes, got %d\n",
465 time->encodedTime[1], bufSize);
466 ok(!memcmp(time->encodedTime + 2, buf + 2, time->encodedTime[1]),
467 "Got unexpected value for time encoding\n");
472 ok((!ret && GetLastError() == CRYPT_E_BAD_ENCODE) ||
473 broken(GetLastError() == ERROR_SUCCESS),
474 "Expected CRYPT_E_BAD_ENCODE, got 0x%08x\n", GetLastError());
477 static const char *printSystemTime(const SYSTEMTIME *st)
481 sprintf(buf, "%02d-%02d-%04d %02d:%02d:%02d.%03d", st->wMonth, st->wDay,
482 st->wYear, st->wHour, st->wMinute, st->wSecond, st->wMilliseconds);
486 static const char *printFileTime(const FILETIME *ft)
491 FileTimeToSystemTime(ft, &st);
492 sprintf(buf, "%02d-%02d-%04d %02d:%02d:%02d.%03d", st.wMonth, st.wDay,
493 st.wYear, st.wHour, st.wMinute, st.wSecond, st.wMilliseconds);
497 static void compareTime(const SYSTEMTIME *expected, const FILETIME *got)
501 FileTimeToSystemTime(got, &st);
502 ok((expected->wYear == st.wYear &&
503 expected->wMonth == st.wMonth &&
504 expected->wDay == st.wDay &&
505 expected->wHour == st.wHour &&
506 expected->wMinute == st.wMinute &&
507 expected->wSecond == st.wSecond &&
508 abs(expected->wMilliseconds - st.wMilliseconds) <= 1) ||
509 /* Some Windows systems only seem to be accurate in their time decoding to
510 * within about an hour.
512 broken(expected->wYear == st.wYear &&
513 expected->wMonth == st.wMonth &&
514 expected->wDay == st.wDay &&
515 abs(expected->wHour - st.wHour) <= 1),
516 "Got unexpected value for time decoding:\nexpected %s, got %s\n",
517 printSystemTime(expected), printFileTime(got));
520 static void testTimeDecoding(DWORD dwEncoding, LPCSTR structType,
521 const struct encodedFiletime *time)
524 DWORD size = sizeof(ft);
527 ret = pCryptDecodeObjectEx(dwEncoding, structType, time->encodedTime,
528 time->encodedTime[1] + 2, 0, NULL, &ft, &size);
529 /* years other than 1950-2050 are not allowed for encodings other than
530 * X509_CHOICE_OF_TIME.
532 if (structType == X509_CHOICE_OF_TIME ||
533 (time->sysTime.wYear >= 1950 && time->sysTime.wYear <= 2050))
535 ok(ret || broken(GetLastError() == OSS_DATA_ERROR),
536 "CryptDecodeObjectEx failed: %d (0x%08x)\n", GetLastError(),
539 compareTime(&time->sysTime, &ft);
542 ok(!ret && (GetLastError() == CRYPT_E_ASN1_BADTAG ||
543 GetLastError() == OSS_PDU_MISMATCH /* Win9x */ ),
544 "Expected CRYPT_E_ASN1_BADTAG or OSS_PDU_MISMATCH, got %08x\n",
548 static const BYTE bin20[] = {
549 0x17,0x0d,'0','5','0','6','0','6','1','6','1','0','0','0','Z'};
550 static const BYTE bin21[] = {
551 0x18,0x0f,'1','9','4','5','0','6','0','6','1','6','1','0','0','0','Z'};
552 static const BYTE bin22[] = {
553 0x18,0x0f,'2','1','4','5','0','6','0','6','1','6','1','0','0','0','Z'};
555 static const struct encodedFiletime times[] = {
556 { { 2005, 6, 1, 6, 16, 10, 0, 0 }, bin20 },
557 { { 1945, 6, 1, 6, 16, 10, 0, 0 }, bin21 },
558 { { 2145, 6, 1, 6, 16, 10, 0, 0 }, bin22 },
561 static void test_encodeFiletime(DWORD dwEncoding)
565 for (i = 0; i < sizeof(times) / sizeof(times[0]); i++)
567 testTimeEncoding(dwEncoding, X509_CHOICE_OF_TIME, ×[i]);
568 testTimeEncoding(dwEncoding, PKCS_UTC_TIME, ×[i]);
569 testTimeEncoding(dwEncoding, szOID_RSA_signingTime, ×[i]);
573 static const BYTE bin23[] = {
574 0x18,0x13,'1','9','4','5','0','6','0','6','1','6','1','0','0','0','.','0','0','0','Z'};
575 static const BYTE bin24[] = {
576 0x18,0x13,'1','9','4','5','0','6','0','6','1','6','1','0','0','0','.','9','9','9','Z'};
577 static const BYTE bin25[] = {
578 0x18,0x13,'1','9','4','5','0','6','0','6','1','6','1','0','0','0','+','0','1','0','0'};
579 static const BYTE bin26[] = {
580 0x18,0x13,'1','9','4','5','0','6','0','6','1','6','1','0','0','0','-','0','1','0','0'};
581 static const BYTE bin27[] = {
582 0x18,0x13,'1','9','4','5','0','6','0','6','1','6','1','0','0','0','-','0','1','1','5'};
583 static const BYTE bin28[] = {
584 0x18,0x0a,'2','1','4','5','0','6','0','6','1','6'};
585 static const BYTE bin29[] = {
586 0x17,0x0a,'4','5','0','6','0','6','1','6','1','0'};
587 static const BYTE bin30[] = {
588 0x17,0x0b,'4','5','0','6','0','6','1','6','1','0','Z'};
589 static const BYTE bin31[] = {
590 0x17,0x0d,'4','5','0','6','0','6','1','6','1','0','+','0','1'};
591 static const BYTE bin32[] = {
592 0x17,0x0d,'4','5','0','6','0','6','1','6','1','0','-','0','1'};
593 static const BYTE bin33[] = {
594 0x17,0x0f,'4','5','0','6','0','6','1','6','1','0','+','0','1','0','0'};
595 static const BYTE bin34[] = {
596 0x17,0x0f,'4','5','0','6','0','6','1','6','1','0','-','0','1','0','0'};
597 static const BYTE bin35[] = {
598 0x17,0x08, '4','5','0','6','0','6','1','6'};
599 static const BYTE bin36[] = {
600 0x18,0x0f, 'a','a','a','a','a','a','a','a','a','a','a','a','a','a','Z'};
601 static const BYTE bin37[] = {
602 0x18,0x04, '2','1','4','5'};
603 static const BYTE bin38[] = {
604 0x18,0x08, '2','1','4','5','0','6','0','6'};
606 static void test_decodeFiletime(DWORD dwEncoding)
608 static const struct encodedFiletime otherTimes[] = {
609 { { 1945, 6, 1, 6, 16, 10, 0, 0 }, bin23 },
610 { { 1945, 6, 1, 6, 16, 10, 0, 999 }, bin24 },
611 { { 1945, 6, 1, 6, 17, 10, 0, 0 }, bin25 },
612 { { 1945, 6, 1, 6, 15, 10, 0, 0 }, bin26 },
613 { { 1945, 6, 1, 6, 14, 55, 0, 0 }, bin27 },
614 { { 2145, 6, 1, 6, 16, 0, 0, 0 }, bin28 },
615 { { 2045, 6, 1, 6, 16, 10, 0, 0 }, bin29 },
616 { { 2045, 6, 1, 6, 16, 10, 0, 0 }, bin30 },
617 { { 2045, 6, 1, 6, 17, 10, 0, 0 }, bin31 },
618 { { 2045, 6, 1, 6, 15, 10, 0, 0 }, bin32 },
619 { { 2045, 6, 1, 6, 17, 10, 0, 0 }, bin33 },
620 { { 2045, 6, 1, 6, 15, 10, 0, 0 }, bin34 },
622 /* An oddball case that succeeds in Windows, but doesn't seem correct
623 { { 2145, 6, 1, 2, 11, 31, 0, 0 }, "\x18" "\x13" "21450606161000-9999" },
625 static const unsigned char *bogusTimes[] = {
626 /* oddly, this succeeds on Windows, with year 2765
627 "\x18" "\x0f" "21r50606161000Z",
635 FILETIME ft1 = { 0 }, ft2 = { 0 };
638 /* Check bogus length with non-NULL buffer */
639 ret = SystemTimeToFileTime(×[0].sysTime, &ft1);
640 ok(ret, "SystemTimeToFileTime failed: %d\n", GetLastError());
642 ret = pCryptDecodeObjectEx(dwEncoding, X509_CHOICE_OF_TIME,
643 times[0].encodedTime, times[0].encodedTime[1] + 2, 0, NULL, &ft2, &size);
644 ok(!ret && GetLastError() == ERROR_MORE_DATA,
645 "Expected ERROR_MORE_DATA, got %d\n", GetLastError());
647 for (i = 0; i < sizeof(times) / sizeof(times[0]); i++)
649 testTimeDecoding(dwEncoding, X509_CHOICE_OF_TIME, ×[i]);
650 testTimeDecoding(dwEncoding, PKCS_UTC_TIME, ×[i]);
651 testTimeDecoding(dwEncoding, szOID_RSA_signingTime, ×[i]);
653 for (i = 0; i < sizeof(otherTimes) / sizeof(otherTimes[0]); i++)
655 testTimeDecoding(dwEncoding, X509_CHOICE_OF_TIME, &otherTimes[i]);
656 testTimeDecoding(dwEncoding, PKCS_UTC_TIME, &otherTimes[i]);
657 testTimeDecoding(dwEncoding, szOID_RSA_signingTime, &otherTimes[i]);
659 for (i = 0; i < sizeof(bogusTimes) / sizeof(bogusTimes[0]); i++)
662 ret = pCryptDecodeObjectEx(dwEncoding, X509_CHOICE_OF_TIME,
663 bogusTimes[i], bogusTimes[i][1] + 2, 0, NULL, &ft1, &size);
664 ok((!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
665 GetLastError() == OSS_DATA_ERROR /* Win9x */)) ||
666 broken(ret), /* Win9x and NT4 for bin38 */
667 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
672 static const char commonName[] = "Juan Lang";
673 static const char surName[] = "Lang";
675 static const BYTE emptySequence[] = { 0x30, 0 };
676 static const BYTE emptyRDNs[] = { 0x30, 0x02, 0x31, 0 };
677 static const BYTE twoRDNs[] = {
678 0x30,0x23,0x31,0x21,0x30,0x0c,0x06,0x03,0x55,0x04,0x04,
679 0x13,0x05,0x4c,0x61,0x6e,0x67,0x00,0x30,0x11,0x06,0x03,0x55,0x04,0x03,
680 0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0};
681 static const BYTE encodedTwoRDNs[] = {
682 0x30,0x2e,0x31,0x2c,0x30,0x2a,0x06,0x03,0x55,0x04,0x03,0x30,0x23,0x31,0x21,
683 0x30,0x0c,0x06,0x03,0x55,0x04,0x04,0x13,0x05,0x4c,0x61,0x6e,0x67,0x00,0x30,
684 0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,
688 static const BYTE us[] = { 0x55, 0x53 };
689 static const BYTE minnesota[] = { 0x4d, 0x69, 0x6e, 0x6e, 0x65, 0x73, 0x6f,
691 static const BYTE minneapolis[] = { 0x4d, 0x69, 0x6e, 0x6e, 0x65, 0x61, 0x70,
692 0x6f, 0x6c, 0x69, 0x73 };
693 static const BYTE codeweavers[] = { 0x43, 0x6f, 0x64, 0x65, 0x57, 0x65, 0x61,
694 0x76, 0x65, 0x72, 0x73 };
695 static const BYTE wine[] = { 0x57, 0x69, 0x6e, 0x65, 0x20, 0x44, 0x65, 0x76,
696 0x65, 0x6c, 0x6f, 0x70, 0x6d, 0x65, 0x6e, 0x74 };
697 static const BYTE localhostAttr[] = { 0x6c, 0x6f, 0x63, 0x61, 0x6c, 0x68, 0x6f,
699 static const BYTE aric[] = { 0x61, 0x72, 0x69, 0x63, 0x40, 0x63, 0x6f, 0x64,
700 0x65, 0x77, 0x65, 0x61, 0x76, 0x65, 0x72, 0x73, 0x2e, 0x63, 0x6f, 0x6d };
702 #define RDNA(arr) oid_ ## arr, CERT_RDN_PRINTABLE_STRING, { sizeof(arr), (LPBYTE)arr }
703 #define RDNIA5(arr) oid_ ## arr, CERT_RDN_IA5_STRING, { sizeof(arr), (LPBYTE)arr }
705 static CHAR oid_us[] = "2.5.4.6",
706 oid_minnesota[] = "2.5.4.8",
707 oid_minneapolis[] = "2.5.4.7",
708 oid_codeweavers[] = "2.5.4.10",
709 oid_wine[] = "2.5.4.11",
710 oid_localhostAttr[] = "2.5.4.3",
711 oid_aric[] = "1.2.840.113549.1.9.1";
712 static CERT_RDN_ATTR rdnAttrs[] = { { RDNA(us) },
714 { RDNA(minneapolis) },
715 { RDNA(codeweavers) },
717 { RDNA(localhostAttr) },
719 static CERT_RDN_ATTR decodedRdnAttrs[] = { { RDNA(us) },
720 { RDNA(localhostAttr) },
722 { RDNA(minneapolis) },
723 { RDNA(codeweavers) },
730 static const BYTE encodedRDNAttrs[] = {
731 0x30,0x81,0x96,0x31,0x81,0x93,0x30,0x09,0x06,0x03,0x55,0x04,0x06,0x13,0x02,0x55,
732 0x53,0x30,0x10,0x06,0x03,0x55,0x04,0x03,0x13,0x09,0x6c,0x6f,0x63,0x61,0x6c,0x68,
733 0x6f,0x73,0x74,0x30,0x10,0x06,0x03,0x55,0x04,0x08,0x13,0x09,0x4d,0x69,0x6e,0x6e,
734 0x65,0x73,0x6f,0x74,0x61,0x30,0x12,0x06,0x03,0x55,0x04,0x07,0x13,0x0b,0x4d,0x69,
735 0x6e,0x6e,0x65,0x61,0x70,0x6f,0x6c,0x69,0x73,0x30,0x12,0x06,0x03,0x55,0x04,0x0a,
736 0x13,0x0b,0x43,0x6f,0x64,0x65,0x57,0x65,0x61,0x76,0x65,0x72,0x73,0x30,0x17,0x06,
737 0x03,0x55,0x04,0x0b,0x13,0x10,0x57,0x69,0x6e,0x65,0x20,0x44,0x65,0x76,0x65,0x6c,
738 0x6f,0x70,0x6d,0x65,0x6e,0x74,0x30,0x21,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,
739 0x01,0x09,0x01,0x16,0x14,0x61,0x72,0x69,0x63,0x40,0x63,0x6f,0x64,0x65,0x77,0x65,
740 0x61,0x76,0x65,0x72,0x73,0x2e,0x63,0x6f,0x6d
743 static void test_encodeName(DWORD dwEncoding)
745 CERT_RDN_ATTR attrs[2];
748 static CHAR oid_common_name[] = szOID_COMMON_NAME,
749 oid_sur_name[] = szOID_SUR_NAME;
756 /* Test with NULL pvStructInfo (crashes on win9x) */
757 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, NULL,
758 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
759 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
760 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
762 /* Test with empty CERT_NAME_INFO */
765 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
766 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
767 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
770 ok(!memcmp(buf, emptySequence, sizeof(emptySequence)),
771 "Got unexpected encoding for empty name\n");
776 /* Test with bogus CERT_RDN (crashes on win9x) */
778 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
779 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
780 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
781 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
783 /* Test with empty CERT_RDN */
785 rdn.rgRDNAttr = NULL;
788 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
789 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
790 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
793 ok(!memcmp(buf, emptyRDNs, sizeof(emptyRDNs)),
794 "Got unexpected encoding for empty RDN array\n");
799 /* Test with bogus attr array (crashes on win9x) */
801 rdn.rgRDNAttr = NULL;
802 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
803 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
804 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
805 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
807 /* oddly, a bogus OID is accepted by Windows XP; not testing.
808 attrs[0].pszObjId = "bogus";
809 attrs[0].dwValueType = CERT_RDN_PRINTABLE_STRING;
810 attrs[0].Value.cbData = sizeof(commonName);
811 attrs[0].Value.pbData = commonName;
813 rdn.rgRDNAttr = attrs;
814 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
815 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
816 ok(!ret, "Expected failure, got success\n");
818 /* Check with two CERT_RDN_ATTRs. Note DER encoding forces the order of
819 * the encoded attributes to be swapped.
821 attrs[0].pszObjId = oid_common_name;
822 attrs[0].dwValueType = CERT_RDN_PRINTABLE_STRING;
823 attrs[0].Value.cbData = sizeof(commonName);
824 attrs[0].Value.pbData = (BYTE *)commonName;
825 attrs[1].pszObjId = oid_sur_name;
826 attrs[1].dwValueType = CERT_RDN_PRINTABLE_STRING;
827 attrs[1].Value.cbData = sizeof(surName);
828 attrs[1].Value.pbData = (BYTE *)surName;
830 rdn.rgRDNAttr = attrs;
831 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
832 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
833 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
836 ok(!memcmp(buf, twoRDNs, sizeof(twoRDNs)),
837 "Got unexpected encoding for two RDN array\n");
840 /* A name can be "encoded" with previously encoded RDN attrs. */
841 attrs[0].dwValueType = CERT_RDN_ENCODED_BLOB;
842 attrs[0].Value.pbData = (LPBYTE)twoRDNs;
843 attrs[0].Value.cbData = sizeof(twoRDNs);
845 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
846 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
847 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
850 ok(size == sizeof(encodedTwoRDNs), "Unexpected size %d\n", size);
851 ok(!memcmp(buf, encodedTwoRDNs, size),
852 "Unexpected value for re-endoded two RDN array\n");
855 /* CERT_RDN_ANY_TYPE is too vague for X509_NAMEs, check the return */
857 attrs[0].dwValueType = CERT_RDN_ANY_TYPE;
858 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME, &info,
859 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
860 ok(!ret && GetLastError() == E_INVALIDARG,
861 "Expected E_INVALIDARG, got %08x\n", GetLastError());
862 /* Test a more complex name */
863 rdn.cRDNAttr = sizeof(rdnAttrs) / sizeof(rdnAttrs[0]);
864 rdn.rgRDNAttr = rdnAttrs;
869 ret = pCryptEncodeObjectEx(X509_ASN_ENCODING, X509_NAME, &info,
870 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
871 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
874 ok(size == sizeof(encodedRDNAttrs), "Wrong size %d\n", size);
875 ok(!memcmp(buf, encodedRDNAttrs, size), "Unexpected value\n");
880 static WCHAR commonNameW[] = { 'J','u','a','n',' ','L','a','n','g',0 };
881 static WCHAR surNameW[] = { 'L','a','n','g',0 };
883 static const BYTE twoRDNsNoNull[] = {
884 0x30,0x21,0x31,0x1f,0x30,0x0b,0x06,0x03,0x55,0x04,0x04,0x13,0x04,0x4c,0x61,
885 0x6e,0x67,0x30,0x10,0x06,0x03,0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,
886 0x20,0x4c,0x61,0x6e,0x67 };
887 static const BYTE anyType[] = {
888 0x30,0x2f,0x31,0x2d,0x30,0x2b,0x06,0x03,0x55,0x04,0x03,0x1e,0x24,0x23,0x30,
889 0x21,0x31,0x0c,0x30,0x03,0x06,0x04,0x55,0x13,0x04,0x4c,0x05,0x6e,0x61,0x00,
890 0x67,0x11,0x30,0x03,0x06,0x04,0x55,0x13,0x03,0x4a,0x0a,0x61,0x75,0x20,0x6e,
891 0x61,0x4c,0x67,0x6e };
893 static void test_encodeUnicodeName(DWORD dwEncoding)
895 CERT_RDN_ATTR attrs[2];
898 static CHAR oid_common_name[] = szOID_COMMON_NAME,
899 oid_sur_name[] = szOID_SUR_NAME;
906 /* Test with NULL pvStructInfo (crashes on win9x) */
907 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME, NULL,
908 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
909 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
910 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
912 /* Test with empty CERT_NAME_INFO */
915 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME, &info,
916 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
917 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
920 ok(!memcmp(buf, emptySequence, sizeof(emptySequence)),
921 "Got unexpected encoding for empty name\n");
924 /* Check with one CERT_RDN_ATTR, that has an invalid character for the
925 * encoding (the NULL).
927 attrs[0].pszObjId = oid_common_name;
928 attrs[0].dwValueType = CERT_RDN_PRINTABLE_STRING;
929 attrs[0].Value.cbData = sizeof(commonNameW);
930 attrs[0].Value.pbData = (BYTE *)commonNameW;
932 rdn.rgRDNAttr = attrs;
935 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME, &info,
936 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
937 ok(!ret && GetLastError() == CRYPT_E_INVALID_PRINTABLE_STRING,
938 "Expected CRYPT_E_INVALID_PRINTABLE_STRING, got %08x\n", GetLastError());
939 ok(size == 9, "Unexpected error index %08x\n", size);
940 /* Check with two NULL-terminated CERT_RDN_ATTRs. Note DER encoding
941 * forces the order of the encoded attributes to be swapped.
943 attrs[0].pszObjId = oid_common_name;
944 attrs[0].dwValueType = CERT_RDN_PRINTABLE_STRING;
945 attrs[0].Value.cbData = 0;
946 attrs[0].Value.pbData = (BYTE *)commonNameW;
947 attrs[1].pszObjId = oid_sur_name;
948 attrs[1].dwValueType = CERT_RDN_PRINTABLE_STRING;
949 attrs[1].Value.cbData = 0;
950 attrs[1].Value.pbData = (BYTE *)surNameW;
952 rdn.rgRDNAttr = attrs;
955 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME, &info,
956 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
957 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
960 ok(!memcmp(buf, twoRDNsNoNull, sizeof(twoRDNsNoNull)),
961 "Got unexpected encoding for two RDN array\n");
964 /* A name can be "encoded" with previously encoded RDN attrs. */
965 attrs[0].dwValueType = CERT_RDN_ENCODED_BLOB;
966 attrs[0].Value.pbData = (LPBYTE)twoRDNs;
967 attrs[0].Value.cbData = sizeof(twoRDNs);
969 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME, &info,
970 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
971 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
974 ok(size == sizeof(encodedTwoRDNs), "Unexpected size %d\n", size);
975 ok(!memcmp(buf, encodedTwoRDNs, size),
976 "Unexpected value for re-endoded two RDN array\n");
979 /* Unicode names infer the type for CERT_RDN_ANY_TYPE */
981 attrs[0].dwValueType = CERT_RDN_ANY_TYPE;
982 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME, &info,
983 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
984 todo_wine ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
987 ok(size == sizeof(anyType), "Unexpected size %d\n", size);
988 ok(!memcmp(buf, anyType, size), "Unexpected value\n");
993 static void compareNameValues(const CERT_NAME_VALUE *expected,
994 const CERT_NAME_VALUE *got)
996 if (expected->dwValueType == CERT_RDN_UTF8_STRING &&
997 got->dwValueType == CERT_RDN_ENCODED_BLOB)
999 win_skip("Can't handle CERT_RDN_UTF8_STRING\n");
1003 ok(got->dwValueType == expected->dwValueType,
1004 "Expected string type %d, got %d\n", expected->dwValueType,
1006 ok(got->Value.cbData == expected->Value.cbData,
1007 "String type %d: unexpected data size, got %d, expected %d\n",
1008 expected->dwValueType, got->Value.cbData, expected->Value.cbData);
1009 if (got->Value.cbData && got->Value.pbData)
1010 ok(!memcmp(got->Value.pbData, expected->Value.pbData,
1011 min(got->Value.cbData, expected->Value.cbData)),
1012 "String type %d: unexpected value\n", expected->dwValueType);
1015 static void compareRDNAttrs(const CERT_RDN_ATTR *expected,
1016 const CERT_RDN_ATTR *got)
1018 if (expected->pszObjId && strlen(expected->pszObjId))
1020 ok(got->pszObjId != NULL, "Expected OID %s, got NULL\n",
1021 expected->pszObjId);
1024 ok(!strcmp(got->pszObjId, expected->pszObjId),
1025 "Got unexpected OID %s, expected %s\n", got->pszObjId,
1026 expected->pszObjId);
1029 compareNameValues((const CERT_NAME_VALUE *)&expected->dwValueType,
1030 (const CERT_NAME_VALUE *)&got->dwValueType);
1033 static void compareRDNs(const CERT_RDN *expected, const CERT_RDN *got)
1035 ok(got->cRDNAttr == expected->cRDNAttr,
1036 "Expected %d RDN attrs, got %d\n", expected->cRDNAttr, got->cRDNAttr);
1041 for (i = 0; i < got->cRDNAttr; i++)
1042 compareRDNAttrs(&expected->rgRDNAttr[i], &got->rgRDNAttr[i]);
1046 static void compareNames(const CERT_NAME_INFO *expected,
1047 const CERT_NAME_INFO *got)
1049 ok(got->cRDN == expected->cRDN, "Expected %d RDNs, got %d\n",
1050 expected->cRDN, got->cRDN);
1055 for (i = 0; i < got->cRDN; i++)
1056 compareRDNs(&expected->rgRDN[i], &got->rgRDN[i]);
1060 static const BYTE emptyIndefiniteSequence[] = { 0x30,0x80,0x00,0x00 };
1061 static const BYTE twoRDNsExtraBytes[] = {
1062 0x30,0x23,0x31,0x21,0x30,0x0c,0x06,0x03,0x55,0x04,0x04,
1063 0x13,0x05,0x4c,0x61,0x6e,0x67,0x00,0x30,0x11,0x06,0x03,0x55,0x04,0x03,
1064 0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0,0,0,0,0,0};
1066 static void test_decodeName(DWORD dwEncoding)
1072 CERT_NAME_INFO info = { 1, &rdn };
1074 /* test empty name */
1076 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME, emptySequence,
1077 emptySequence[1] + 2,
1078 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1080 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1081 /* Interestingly, in Windows, if cRDN is 0, rgRGN may not be NULL. My
1082 * decoder works the same way, so only test the count.
1086 ok(bufSize == sizeof(CERT_NAME_INFO), "Wrong bufSize %d\n", bufSize);
1087 ok(((CERT_NAME_INFO *)buf)->cRDN == 0,
1088 "Expected 0 RDNs in empty info, got %d\n",
1089 ((CERT_NAME_INFO *)buf)->cRDN);
1092 /* test empty name with indefinite-length encoding */
1093 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME, emptyIndefiniteSequence,
1094 sizeof(emptyIndefiniteSequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
1096 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1099 ok(bufSize == sizeof(CERT_NAME_INFO), "Wrong bufSize %d\n", bufSize);
1100 ok(((CERT_NAME_INFO *)buf)->cRDN == 0,
1101 "Expected 0 RDNs in empty info, got %d\n",
1102 ((CERT_NAME_INFO *)buf)->cRDN);
1105 /* test empty RDN */
1107 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME, emptyRDNs,
1109 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1111 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1114 CERT_NAME_INFO *info = (CERT_NAME_INFO *)buf;
1116 ok(bufSize == sizeof(CERT_NAME_INFO) + sizeof(CERT_RDN) &&
1117 info->cRDN == 1 && info->rgRDN && info->rgRDN[0].cRDNAttr == 0,
1118 "Got unexpected value for empty RDN\n");
1121 /* test two RDN attrs */
1123 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME, twoRDNs,
1125 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1127 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1130 static CHAR oid_sur_name[] = szOID_SUR_NAME,
1131 oid_common_name[] = szOID_COMMON_NAME;
1133 CERT_RDN_ATTR attrs[] = {
1134 { oid_sur_name, CERT_RDN_PRINTABLE_STRING, { sizeof(surName),
1135 (BYTE *)surName } },
1136 { oid_common_name, CERT_RDN_PRINTABLE_STRING, { sizeof(commonName),
1137 (BYTE *)commonName } },
1140 rdn.cRDNAttr = sizeof(attrs) / sizeof(attrs[0]);
1141 rdn.rgRDNAttr = attrs;
1142 compareNames(&info, (CERT_NAME_INFO *)buf);
1145 /* test that two RDN attrs with extra bytes succeeds */
1147 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME, twoRDNsExtraBytes,
1148 sizeof(twoRDNsExtraBytes), 0, NULL, NULL, &bufSize);
1149 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1150 /* And, a slightly more complicated name */
1153 ret = pCryptDecodeObjectEx(X509_ASN_ENCODING, X509_NAME, encodedRDNAttrs,
1154 sizeof(encodedRDNAttrs), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1155 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1158 rdn.cRDNAttr = sizeof(decodedRdnAttrs) / sizeof(decodedRdnAttrs[0]);
1159 rdn.rgRDNAttr = decodedRdnAttrs;
1160 compareNames(&info, (CERT_NAME_INFO *)buf);
1165 static void test_decodeUnicodeName(DWORD dwEncoding)
1171 CERT_NAME_INFO info = { 1, &rdn };
1173 /* test empty name */
1175 ret = pCryptDecodeObjectEx(dwEncoding, X509_UNICODE_NAME, emptySequence,
1176 emptySequence[1] + 2,
1177 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1179 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1182 ok(bufSize == sizeof(CERT_NAME_INFO),
1183 "Got wrong bufSize %d\n", bufSize);
1184 ok(((CERT_NAME_INFO *)buf)->cRDN == 0,
1185 "Expected 0 RDNs in empty info, got %d\n",
1186 ((CERT_NAME_INFO *)buf)->cRDN);
1189 /* test empty RDN */
1191 ret = pCryptDecodeObjectEx(dwEncoding, X509_UNICODE_NAME, emptyRDNs,
1193 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1195 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1198 CERT_NAME_INFO *info = (CERT_NAME_INFO *)buf;
1200 ok(bufSize == sizeof(CERT_NAME_INFO) + sizeof(CERT_RDN) &&
1201 info->cRDN == 1 && info->rgRDN && info->rgRDN[0].cRDNAttr == 0,
1202 "Got unexpected value for empty RDN\n");
1205 /* test two RDN attrs */
1207 ret = pCryptDecodeObjectEx(dwEncoding, X509_UNICODE_NAME, twoRDNsNoNull,
1208 sizeof(twoRDNsNoNull),
1209 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1211 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1214 static CHAR oid_sur_name[] = szOID_SUR_NAME,
1215 oid_common_name[] = szOID_COMMON_NAME;
1217 CERT_RDN_ATTR attrs[] = {
1218 { oid_sur_name, CERT_RDN_PRINTABLE_STRING,
1219 { lstrlenW(surNameW) * sizeof(WCHAR), (BYTE *)surNameW } },
1220 { oid_common_name, CERT_RDN_PRINTABLE_STRING,
1221 { lstrlenW(commonNameW) * sizeof(WCHAR), (BYTE *)commonNameW } },
1224 rdn.cRDNAttr = sizeof(attrs) / sizeof(attrs[0]);
1225 rdn.rgRDNAttr = attrs;
1226 compareNames(&info, (CERT_NAME_INFO *)buf);
1231 struct EncodedNameValue
1233 CERT_NAME_VALUE value;
1234 const BYTE *encoded;
1238 static const char bogusIA5[] = "\x80";
1239 static const char bogusPrintable[] = "~";
1240 static const char bogusNumeric[] = "A";
1241 static const BYTE bin42[] = { 0x16,0x02,0x80,0x00 };
1242 static const BYTE bin43[] = { 0x13,0x02,0x7e,0x00 };
1243 static const BYTE bin44[] = { 0x12,0x02,0x41,0x00 };
1244 static BYTE octetCommonNameValue[] = {
1245 0x04,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1246 static BYTE numericCommonNameValue[] = {
1247 0x12,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1248 static BYTE printableCommonNameValue[] = {
1249 0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1250 static BYTE t61CommonNameValue[] = {
1251 0x14,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1252 static BYTE videotexCommonNameValue[] = {
1253 0x15,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1254 static BYTE ia5CommonNameValue[] = {
1255 0x16,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1256 static BYTE graphicCommonNameValue[] = {
1257 0x19,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1258 static BYTE visibleCommonNameValue[] = {
1259 0x1a,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1260 static BYTE generalCommonNameValue[] = {
1261 0x1b,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1262 static BYTE bmpCommonNameValue[] = {
1263 0x1e,0x14,0x00,0x4a,0x00,0x75,0x00,0x61,0x00,0x6e,0x00,0x20,0x00,0x4c,0x00,
1264 0x61,0x00,0x6e,0x00,0x67,0x00,0x00 };
1265 static BYTE utf8CommonNameValue[] = {
1266 0x0c,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1268 static struct EncodedNameValue nameValues[] = {
1269 { { CERT_RDN_OCTET_STRING, { sizeof(commonName), (BYTE *)commonName } },
1270 octetCommonNameValue, sizeof(octetCommonNameValue) },
1271 { { CERT_RDN_NUMERIC_STRING, { sizeof(commonName), (BYTE *)commonName } },
1272 numericCommonNameValue, sizeof(numericCommonNameValue) },
1273 { { CERT_RDN_PRINTABLE_STRING, { sizeof(commonName), (BYTE *)commonName } },
1274 printableCommonNameValue, sizeof(printableCommonNameValue) },
1275 { { CERT_RDN_T61_STRING, { sizeof(commonName), (BYTE *)commonName } },
1276 t61CommonNameValue, sizeof(t61CommonNameValue) },
1277 { { CERT_RDN_VIDEOTEX_STRING, { sizeof(commonName), (BYTE *)commonName } },
1278 videotexCommonNameValue, sizeof(videotexCommonNameValue) },
1279 { { CERT_RDN_IA5_STRING, { sizeof(commonName), (BYTE *)commonName } },
1280 ia5CommonNameValue, sizeof(ia5CommonNameValue) },
1281 { { CERT_RDN_GRAPHIC_STRING, { sizeof(commonName), (BYTE *)commonName } },
1282 graphicCommonNameValue, sizeof(graphicCommonNameValue) },
1283 { { CERT_RDN_VISIBLE_STRING, { sizeof(commonName), (BYTE *)commonName } },
1284 visibleCommonNameValue, sizeof(visibleCommonNameValue) },
1285 { { CERT_RDN_GENERAL_STRING, { sizeof(commonName), (BYTE *)commonName } },
1286 generalCommonNameValue, sizeof(generalCommonNameValue) },
1287 { { CERT_RDN_BMP_STRING, { sizeof(commonNameW), (BYTE *)commonNameW } },
1288 bmpCommonNameValue, sizeof(bmpCommonNameValue) },
1289 { { CERT_RDN_UTF8_STRING, { sizeof(commonNameW), (BYTE *)commonNameW } },
1290 utf8CommonNameValue, sizeof(utf8CommonNameValue) },
1291 /* The following tests succeed under Windows, but really should fail,
1292 * they contain characters that are illegal for the encoding. I'm
1293 * including them to justify my lazy encoding.
1295 { { CERT_RDN_IA5_STRING, { sizeof(bogusIA5), (BYTE *)bogusIA5 } }, bin42,
1297 { { CERT_RDN_PRINTABLE_STRING, { sizeof(bogusPrintable),
1298 (BYTE *)bogusPrintable } }, bin43, sizeof(bin43) },
1299 { { CERT_RDN_NUMERIC_STRING, { sizeof(bogusNumeric), (BYTE *)bogusNumeric } },
1300 bin44, sizeof(bin44) },
1303 static void test_encodeNameValue(DWORD dwEncoding)
1308 CERT_NAME_VALUE value = { 0, { 0, NULL } };
1310 value.dwValueType = CERT_RDN_ENCODED_BLOB;
1311 value.Value.pbData = printableCommonNameValue;
1312 value.Value.cbData = sizeof(printableCommonNameValue);
1313 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_VALUE, &value,
1314 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1315 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
1318 ok(size == sizeof(printableCommonNameValue), "Unexpected size %d\n",
1320 ok(!memcmp(buf, printableCommonNameValue, size),
1321 "Unexpected encoding\n");
1324 for (i = 0; i < sizeof(nameValues) / sizeof(nameValues[0]); i++)
1326 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_VALUE,
1327 &nameValues[i].value, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1328 ok(ret || broken(GetLastError() == OSS_PDU_MISMATCH) /* NT4/Win9x */,
1329 "Type %d: CryptEncodeObjectEx failed: %08x\n",
1330 nameValues[i].value.dwValueType, GetLastError());
1333 ok(size == nameValues[i].encodedSize,
1334 "Expected size %d, got %d\n", nameValues[i].encodedSize, size);
1335 ok(!memcmp(buf, nameValues[i].encoded, size),
1336 "Got unexpected encoding\n");
1342 static void test_decodeNameValue(DWORD dwEncoding)
1349 for (i = 0; i < sizeof(nameValues) / sizeof(nameValues[0]); i++)
1351 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME_VALUE,
1352 nameValues[i].encoded, nameValues[i].encoded[1] + 2,
1353 CRYPT_DECODE_ALLOC_FLAG | CRYPT_DECODE_SHARE_OID_STRING_FLAG, NULL,
1355 ok(ret, "Value type %d: CryptDecodeObjectEx failed: %08x\n",
1356 nameValues[i].value.dwValueType, GetLastError());
1359 compareNameValues(&nameValues[i].value,
1360 (const CERT_NAME_VALUE *)buf);
1366 static const BYTE emptyURL[] = { 0x30, 0x02, 0x86, 0x00 };
1367 static const BYTE emptyURLExtraBytes[] = { 0x30, 0x02, 0x86, 0x00, 0, 0, 0 };
1368 static const WCHAR url[] = { 'h','t','t','p',':','/','/','w','i','n','e',
1369 'h','q','.','o','r','g',0 };
1370 static const BYTE encodedURL[] = { 0x30, 0x13, 0x86, 0x11, 0x68, 0x74,
1371 0x74, 0x70, 0x3a, 0x2f, 0x2f, 0x77, 0x69, 0x6e, 0x65, 0x68, 0x71, 0x2e,
1373 static const WCHAR nihongoURL[] = { 'h','t','t','p',':','/','/',0x226f,
1375 static const WCHAR dnsName[] = { 'w','i','n','e','h','q','.','o','r','g',0 };
1376 static const BYTE encodedDnsName[] = { 0x30, 0x0c, 0x82, 0x0a, 0x77, 0x69,
1377 0x6e, 0x65, 0x68, 0x71, 0x2e, 0x6f, 0x72, 0x67 };
1378 static const BYTE localhost[] = { 127, 0, 0, 1 };
1379 static const BYTE encodedIPAddr[] = { 0x30, 0x06, 0x87, 0x04, 0x7f, 0x00, 0x00,
1381 static const unsigned char encodedCommonName[] = {
1382 0x30,0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,'J','u','a','n',' ','L','a','n','g',0};
1383 static const BYTE encodedOidName[] = { 0x30,0x04,0x88,0x02,0x2a,0x03 };
1384 static const BYTE encodedDirectoryName[] = {
1385 0x30,0x19,0xa4,0x17,0x30,0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,
1386 0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00 };
1388 static void test_encodeAltName(DWORD dwEncoding)
1390 CERT_ALT_NAME_INFO info = { 0 };
1391 CERT_ALT_NAME_ENTRY entry = { 0 };
1395 char oid[] = "1.2.3";
1397 /* Test with empty info */
1398 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1399 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1402 ok(size == sizeof(emptySequence), "Wrong size %d\n", size);
1403 ok(!memcmp(buf, emptySequence, size), "Unexpected value\n");
1406 /* Test with an empty entry */
1408 info.rgAltEntry = &entry;
1409 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1410 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1411 ok(!ret && GetLastError() == E_INVALIDARG,
1412 "Expected E_INVALIDARG, got %08x\n", GetLastError());
1413 /* Test with an empty pointer */
1414 entry.dwAltNameChoice = CERT_ALT_NAME_URL;
1415 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1416 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1419 ok(size == sizeof(emptyURL), "Wrong size %d\n", size);
1420 ok(!memcmp(buf, emptyURL, size), "Unexpected value\n");
1423 /* Test with a real URL */
1424 U(entry).pwszURL = (LPWSTR)url;
1425 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1426 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1429 ok(size == sizeof(encodedURL), "Wrong size %d\n", size);
1430 ok(!memcmp(buf, encodedURL, size), "Unexpected value\n");
1433 /* Now with the URL containing an invalid IA5 char */
1434 U(entry).pwszURL = (LPWSTR)nihongoURL;
1435 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1436 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1437 ok(!ret && GetLastError() == CRYPT_E_INVALID_IA5_STRING,
1438 "Expected CRYPT_E_INVALID_IA5_STRING, got %08x\n", GetLastError());
1439 /* The first invalid character is at index 7 */
1440 ok(GET_CERT_ALT_NAME_VALUE_ERR_INDEX(size) == 7,
1441 "Expected invalid char at index 7, got %d\n",
1442 GET_CERT_ALT_NAME_VALUE_ERR_INDEX(size));
1443 /* Now with the URL missing a scheme */
1444 U(entry).pwszURL = (LPWSTR)dnsName;
1445 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1446 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1447 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
1450 /* This succeeds, but it shouldn't, so don't worry about conforming */
1453 /* Now with a DNS name */
1454 entry.dwAltNameChoice = CERT_ALT_NAME_DNS_NAME;
1455 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1456 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1457 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
1460 ok(size == sizeof(encodedDnsName), "Wrong size %d\n", size);
1461 ok(!memcmp(buf, encodedDnsName, size), "Unexpected value\n");
1464 /* Test with an IP address */
1465 entry.dwAltNameChoice = CERT_ALT_NAME_IP_ADDRESS;
1466 U(entry).IPAddress.cbData = sizeof(localhost);
1467 U(entry).IPAddress.pbData = (LPBYTE)localhost;
1468 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1469 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1472 ok(size == sizeof(encodedIPAddr), "Wrong size %d\n", size);
1473 ok(!memcmp(buf, encodedIPAddr, size), "Unexpected value\n");
1477 entry.dwAltNameChoice = CERT_ALT_NAME_REGISTERED_ID;
1478 U(entry).pszRegisteredID = oid;
1479 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1480 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1483 ok(size == sizeof(encodedOidName), "Wrong size %d\n", size);
1484 ok(!memcmp(buf, encodedOidName, size), "Unexpected value\n");
1487 /* Test with directory name */
1488 entry.dwAltNameChoice = CERT_ALT_NAME_DIRECTORY_NAME;
1489 U(entry).DirectoryName.cbData = sizeof(encodedCommonName);
1490 U(entry).DirectoryName.pbData = (LPBYTE)encodedCommonName;
1491 ret = pCryptEncodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, &info,
1492 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1495 ok(size == sizeof(encodedDirectoryName), "Wrong size %d\n", size);
1496 ok(!memcmp(buf, encodedDirectoryName, size), "Unexpected value\n");
1501 static void test_decodeAltName(DWORD dwEncoding)
1503 static const BYTE unimplementedType[] = { 0x30, 0x06, 0x85, 0x04, 0x7f,
1505 static const BYTE bogusType[] = { 0x30, 0x06, 0x89, 0x04, 0x7f, 0x00, 0x00,
1510 CERT_ALT_NAME_INFO *info;
1512 /* Test some bogus ones first */
1513 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME,
1514 unimplementedType, sizeof(unimplementedType), CRYPT_DECODE_ALLOC_FLAG,
1515 NULL, &buf, &bufSize);
1516 ok(!ret && (GetLastError() == CRYPT_E_ASN1_BADTAG ||
1517 GetLastError() == OSS_DATA_ERROR /* Win9x */),
1518 "Expected CRYPT_E_ASN1_BADTAG or OSS_DATA_ERROR, got %08x\n",
1520 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME,
1521 bogusType, sizeof(bogusType), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf,
1523 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
1524 GetLastError() == OSS_DATA_ERROR /* Win9x */),
1525 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
1527 /* Now expected cases */
1528 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, emptySequence,
1529 emptySequence[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1530 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1533 info = (CERT_ALT_NAME_INFO *)buf;
1535 ok(info->cAltEntry == 0, "Expected 0 entries, got %d\n",
1539 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, emptyURL,
1540 emptyURL[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1541 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1544 info = (CERT_ALT_NAME_INFO *)buf;
1546 ok(info->cAltEntry == 1, "Expected 1 entries, got %d\n",
1548 ok(info->rgAltEntry[0].dwAltNameChoice == CERT_ALT_NAME_URL,
1549 "Expected CERT_ALT_NAME_URL, got %d\n",
1550 info->rgAltEntry[0].dwAltNameChoice);
1551 ok(U(info->rgAltEntry[0]).pwszURL == NULL || !*U(info->rgAltEntry[0]).pwszURL,
1552 "Expected empty URL\n");
1555 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME,
1556 emptyURLExtraBytes, sizeof(emptyURLExtraBytes), 0, NULL, NULL, &bufSize);
1557 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1558 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, encodedURL,
1559 encodedURL[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1560 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1563 info = (CERT_ALT_NAME_INFO *)buf;
1565 ok(info->cAltEntry == 1, "Expected 1 entries, got %d\n",
1567 ok(info->rgAltEntry[0].dwAltNameChoice == CERT_ALT_NAME_URL,
1568 "Expected CERT_ALT_NAME_URL, got %d\n",
1569 info->rgAltEntry[0].dwAltNameChoice);
1570 ok(!lstrcmpW(U(info->rgAltEntry[0]).pwszURL, url), "Unexpected URL\n");
1573 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, encodedDnsName,
1574 encodedDnsName[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1575 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1578 info = (CERT_ALT_NAME_INFO *)buf;
1580 ok(info->cAltEntry == 1, "Expected 1 entries, got %d\n",
1582 ok(info->rgAltEntry[0].dwAltNameChoice == CERT_ALT_NAME_DNS_NAME,
1583 "Expected CERT_ALT_NAME_DNS_NAME, got %d\n",
1584 info->rgAltEntry[0].dwAltNameChoice);
1585 ok(!lstrcmpW(U(info->rgAltEntry[0]).pwszDNSName, dnsName),
1586 "Unexpected DNS name\n");
1589 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, encodedIPAddr,
1590 encodedIPAddr[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1591 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1594 info = (CERT_ALT_NAME_INFO *)buf;
1596 ok(info->cAltEntry == 1, "Expected 1 entries, got %d\n",
1598 ok(info->rgAltEntry[0].dwAltNameChoice == CERT_ALT_NAME_IP_ADDRESS,
1599 "Expected CERT_ALT_NAME_IP_ADDRESS, got %d\n",
1600 info->rgAltEntry[0].dwAltNameChoice);
1601 ok(U(info->rgAltEntry[0]).IPAddress.cbData == sizeof(localhost),
1602 "Unexpected IP address length %d\n",
1603 U(info->rgAltEntry[0]).IPAddress.cbData);
1604 ok(!memcmp(U(info->rgAltEntry[0]).IPAddress.pbData, localhost,
1605 sizeof(localhost)), "Unexpected IP address value\n");
1608 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME, encodedOidName,
1609 sizeof(encodedOidName), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1610 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1613 info = (CERT_ALT_NAME_INFO *)buf;
1615 ok(info->cAltEntry == 1, "Expected 1 entries, got %d\n",
1617 ok(info->rgAltEntry[0].dwAltNameChoice == CERT_ALT_NAME_REGISTERED_ID,
1618 "Expected CERT_ALT_NAME_REGISTERED_ID, got %d\n",
1619 info->rgAltEntry[0].dwAltNameChoice);
1620 ok(!strcmp(U(info->rgAltEntry[0]).pszRegisteredID, "1.2.3"),
1621 "Expected OID 1.2.3, got %s\n", U(info->rgAltEntry[0]).pszRegisteredID);
1624 ret = pCryptDecodeObjectEx(dwEncoding, X509_ALTERNATE_NAME,
1625 encodedDirectoryName, sizeof(encodedDirectoryName),
1626 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1627 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1630 info = (CERT_ALT_NAME_INFO *)buf;
1632 ok(info->cAltEntry == 1, "Expected 1 entries, got %d\n",
1634 ok(info->rgAltEntry[0].dwAltNameChoice == CERT_ALT_NAME_DIRECTORY_NAME,
1635 "Expected CERT_ALT_NAME_DIRECTORY_NAME, got %d\n",
1636 info->rgAltEntry[0].dwAltNameChoice);
1637 ok(U(info->rgAltEntry[0]).DirectoryName.cbData ==
1638 sizeof(encodedCommonName), "Unexpected directory name length %d\n",
1639 U(info->rgAltEntry[0]).DirectoryName.cbData);
1640 ok(!memcmp(U(info->rgAltEntry[0]).DirectoryName.pbData,
1641 encodedCommonName, sizeof(encodedCommonName)),
1642 "Unexpected directory name value\n");
1647 struct UnicodeExpectedError
1655 static const WCHAR oneW[] = { '1',0 };
1656 static const WCHAR aW[] = { 'a',0 };
1657 static const WCHAR quoteW[] = { '"', 0 };
1659 static struct UnicodeExpectedError unicodeErrors[] = {
1660 { CERT_RDN_ANY_TYPE, oneW, 0, CRYPT_E_NOT_CHAR_STRING },
1661 { CERT_RDN_ENCODED_BLOB, oneW, 0, CRYPT_E_NOT_CHAR_STRING },
1662 { CERT_RDN_OCTET_STRING, oneW, 0, CRYPT_E_NOT_CHAR_STRING },
1663 { CERT_RDN_NUMERIC_STRING, aW, 0, CRYPT_E_INVALID_NUMERIC_STRING },
1664 { CERT_RDN_PRINTABLE_STRING, quoteW, 0, CRYPT_E_INVALID_PRINTABLE_STRING },
1665 { CERT_RDN_IA5_STRING, nihongoURL, 7, CRYPT_E_INVALID_IA5_STRING },
1668 struct UnicodeExpectedResult
1672 CRYPT_DATA_BLOB encoded;
1675 static BYTE oneNumeric[] = { 0x12, 0x01, 0x31 };
1676 static BYTE onePrintable[] = { 0x13, 0x01, 0x31 };
1677 static BYTE oneTeletex[] = { 0x14, 0x01, 0x31 };
1678 static BYTE oneVideotex[] = { 0x15, 0x01, 0x31 };
1679 static BYTE oneIA5[] = { 0x16, 0x01, 0x31 };
1680 static BYTE oneGraphic[] = { 0x19, 0x01, 0x31 };
1681 static BYTE oneVisible[] = { 0x1a, 0x01, 0x31 };
1682 static BYTE oneUniversal[] = { 0x1c, 0x04, 0x00, 0x00, 0x00, 0x31 };
1683 static BYTE oneGeneral[] = { 0x1b, 0x01, 0x31 };
1684 static BYTE oneBMP[] = { 0x1e, 0x02, 0x00, 0x31 };
1685 static BYTE oneUTF8[] = { 0x0c, 0x01, 0x31 };
1686 static BYTE nihongoT61[] = { 0x14,0x09,0x68,0x74,0x74,0x70,0x3a,0x2f,0x2f,0x6f,
1688 static BYTE nihongoGeneral[] = { 0x1b,0x09,0x68,0x74,0x74,0x70,0x3a,0x2f,0x2f,
1690 static BYTE nihongoBMP[] = { 0x1e,0x12,0x00,0x68,0x00,0x74,0x00,0x74,0x00,0x70,
1691 0x00,0x3a,0x00,0x2f,0x00,0x2f,0x22,0x6f,0x57,0x5b };
1692 static BYTE nihongoUTF8[] = { 0x0c,0x0d,0x68,0x74,0x74,0x70,0x3a,0x2f,0x2f,
1693 0xe2,0x89,0xaf,0xe5,0x9d,0x9b };
1695 static struct UnicodeExpectedResult unicodeResults[] = {
1696 { CERT_RDN_NUMERIC_STRING, oneW, { sizeof(oneNumeric), oneNumeric } },
1697 { CERT_RDN_PRINTABLE_STRING, oneW, { sizeof(onePrintable), onePrintable } },
1698 { CERT_RDN_TELETEX_STRING, oneW, { sizeof(oneTeletex), oneTeletex } },
1699 { CERT_RDN_VIDEOTEX_STRING, oneW, { sizeof(oneVideotex), oneVideotex } },
1700 { CERT_RDN_IA5_STRING, oneW, { sizeof(oneIA5), oneIA5 } },
1701 { CERT_RDN_GRAPHIC_STRING, oneW, { sizeof(oneGraphic), oneGraphic } },
1702 { CERT_RDN_VISIBLE_STRING, oneW, { sizeof(oneVisible), oneVisible } },
1703 { CERT_RDN_UNIVERSAL_STRING, oneW, { sizeof(oneUniversal), oneUniversal } },
1704 { CERT_RDN_GENERAL_STRING, oneW, { sizeof(oneGeneral), oneGeneral } },
1705 { CERT_RDN_BMP_STRING, oneW, { sizeof(oneBMP), oneBMP } },
1706 { CERT_RDN_UTF8_STRING, oneW, { sizeof(oneUTF8), oneUTF8 } },
1707 { CERT_RDN_BMP_STRING, nihongoURL, { sizeof(nihongoBMP), nihongoBMP } },
1708 { CERT_RDN_UTF8_STRING, nihongoURL, { sizeof(nihongoUTF8), nihongoUTF8 } },
1711 static struct UnicodeExpectedResult unicodeWeirdness[] = {
1712 { CERT_RDN_TELETEX_STRING, nihongoURL, { sizeof(nihongoT61), nihongoT61 } },
1713 { CERT_RDN_GENERAL_STRING, nihongoURL, { sizeof(nihongoGeneral), nihongoGeneral } },
1716 static void test_encodeUnicodeNameValue(DWORD dwEncoding)
1721 CERT_NAME_VALUE value;
1725 /* Crashes on win9x */
1726 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, NULL,
1727 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1728 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
1729 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
1731 /* Have to have a string of some sort */
1732 value.dwValueType = 0; /* aka CERT_RDN_ANY_TYPE */
1733 value.Value.pbData = NULL;
1734 value.Value.cbData = 0;
1735 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1736 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1737 ok(!ret && GetLastError() == CRYPT_E_NOT_CHAR_STRING,
1738 "Expected CRYPT_E_NOT_CHAR_STRING, got %08x\n", GetLastError());
1739 value.dwValueType = CERT_RDN_ENCODED_BLOB;
1740 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1741 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1742 ok(!ret && GetLastError() == CRYPT_E_NOT_CHAR_STRING,
1743 "Expected CRYPT_E_NOT_CHAR_STRING, got %08x\n", GetLastError());
1744 value.dwValueType = CERT_RDN_ANY_TYPE;
1745 value.Value.pbData = (LPBYTE)oneW;
1746 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1747 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1748 ok(!ret && GetLastError() == CRYPT_E_NOT_CHAR_STRING,
1749 "Expected CRYPT_E_NOT_CHAR_STRING, got %08x\n", GetLastError());
1750 value.Value.cbData = sizeof(oneW);
1751 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1752 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1753 ok(!ret && GetLastError() == CRYPT_E_NOT_CHAR_STRING,
1754 "Expected CRYPT_E_NOT_CHAR_STRING, got %08x\n", GetLastError());
1755 /* An encoded string with specified length isn't good enough either */
1756 value.dwValueType = CERT_RDN_ENCODED_BLOB;
1757 value.Value.pbData = oneUniversal;
1758 value.Value.cbData = sizeof(oneUniversal);
1759 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1760 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1761 ok(!ret && GetLastError() == CRYPT_E_NOT_CHAR_STRING,
1762 "Expected CRYPT_E_NOT_CHAR_STRING, got %08x\n", GetLastError());
1763 /* More failure checking */
1764 value.Value.cbData = 0;
1765 for (i = 0; i < sizeof(unicodeErrors) / sizeof(unicodeErrors[0]); i++)
1767 value.Value.pbData = (LPBYTE)unicodeErrors[i].str;
1768 value.dwValueType = unicodeErrors[i].valueType;
1769 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1770 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1771 ok(!ret && GetLastError() == unicodeErrors[i].error,
1772 "Value type %d: expected %08x, got %08x\n", value.dwValueType,
1773 unicodeErrors[i].error, GetLastError());
1774 ok(size == unicodeErrors[i].errorIndex,
1775 "Expected error index %d, got %d\n", unicodeErrors[i].errorIndex,
1778 /* cbData can be zero if the string is NULL-terminated */
1779 value.Value.cbData = 0;
1780 for (i = 0; i < sizeof(unicodeResults) / sizeof(unicodeResults[0]); i++)
1782 value.Value.pbData = (LPBYTE)unicodeResults[i].str;
1783 value.dwValueType = unicodeResults[i].valueType;
1784 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1785 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1786 ok(ret || broken(GetLastError() == OSS_PDU_MISMATCH /* Win9x */),
1787 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
1790 ok(size == unicodeResults[i].encoded.cbData,
1791 "Value type %d: expected size %d, got %d\n",
1792 value.dwValueType, unicodeResults[i].encoded.cbData, size);
1793 ok(!memcmp(unicodeResults[i].encoded.pbData, buf, size),
1794 "Value type %d: unexpected value\n", value.dwValueType);
1798 /* These "encode," but they do so by truncating each unicode character
1799 * rather than properly encoding it. Kept separate from the proper results,
1800 * because the encoded forms won't decode to their original strings.
1802 for (i = 0; i < sizeof(unicodeWeirdness) / sizeof(unicodeWeirdness[0]); i++)
1804 value.Value.pbData = (LPBYTE)unicodeWeirdness[i].str;
1805 value.dwValueType = unicodeWeirdness[i].valueType;
1806 ret = pCryptEncodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE, &value,
1807 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
1808 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
1811 ok(size == unicodeWeirdness[i].encoded.cbData,
1812 "Value type %d: expected size %d, got %d\n",
1813 value.dwValueType, unicodeWeirdness[i].encoded.cbData, size);
1814 ok(!memcmp(unicodeWeirdness[i].encoded.pbData, buf, size),
1815 "Value type %d: unexpected value\n", value.dwValueType);
1821 static inline int strncmpW( const WCHAR *str1, const WCHAR *str2, int n )
1823 if (n <= 0) return 0;
1824 while ((--n > 0) && *str1 && (*str1 == *str2)) { str1++; str2++; }
1825 return *str1 - *str2;
1828 static void test_decodeUnicodeNameValue(DWORD dwEncoding)
1832 for (i = 0; i < sizeof(unicodeResults) / sizeof(unicodeResults[0]); i++)
1838 ret = pCryptDecodeObjectEx(dwEncoding, X509_UNICODE_NAME_VALUE,
1839 unicodeResults[i].encoded.pbData, unicodeResults[i].encoded.cbData,
1840 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
1841 ok(ret || broken(GetLastError() == CRYPT_E_NOT_CHAR_STRING /* Win9x */),
1842 "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1845 PCERT_NAME_VALUE value = (PCERT_NAME_VALUE)buf;
1847 ok(value->dwValueType == unicodeResults[i].valueType,
1848 "Expected value type %d, got %d\n", unicodeResults[i].valueType,
1849 value->dwValueType);
1850 ok(!strncmpW((LPWSTR)value->Value.pbData, unicodeResults[i].str,
1851 value->Value.cbData / sizeof(WCHAR)),
1852 "Unexpected decoded value for index %d (value type %d)\n", i,
1853 unicodeResults[i].valueType);
1859 struct encodedOctets
1862 const BYTE *encoded;
1865 static const unsigned char bin46[] = { 'h','i',0 };
1866 static const unsigned char bin47[] = { 0x04,0x02,'h','i',0 };
1867 static const unsigned char bin48[] = {
1868 's','o','m','e','l','o','n','g',0xff,'s','t','r','i','n','g',0 };
1869 static const unsigned char bin49[] = {
1870 0x04,0x0f,'s','o','m','e','l','o','n','g',0xff,'s','t','r','i','n','g',0 };
1871 static const unsigned char bin50[] = { 0 };
1872 static const unsigned char bin51[] = { 0x04,0x00,0 };
1874 static const struct encodedOctets octets[] = {
1880 static void test_encodeOctets(DWORD dwEncoding)
1882 CRYPT_DATA_BLOB blob;
1885 for (i = 0; i < sizeof(octets) / sizeof(octets[0]); i++)
1891 blob.cbData = strlen((const char*)octets[i].val);
1892 blob.pbData = (BYTE*)octets[i].val;
1893 ret = pCryptEncodeObjectEx(dwEncoding, X509_OCTET_STRING, &blob,
1894 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1895 ok(ret, "CryptEncodeObjectEx failed: %d\n", GetLastError());
1899 "Got unexpected type %d for octet string (expected 4)\n", buf[0]);
1900 ok(buf[1] == octets[i].encoded[1], "Got length %d, expected %d\n",
1901 buf[1], octets[i].encoded[1]);
1902 ok(!memcmp(buf + 1, octets[i].encoded + 1,
1903 octets[i].encoded[1] + 1), "Got unexpected value\n");
1909 static void test_decodeOctets(DWORD dwEncoding)
1913 for (i = 0; i < sizeof(octets) / sizeof(octets[0]); i++)
1919 ret = pCryptDecodeObjectEx(dwEncoding, X509_OCTET_STRING,
1920 octets[i].encoded, octets[i].encoded[1] + 2,
1921 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1922 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
1923 ok(bufSize >= sizeof(CRYPT_DATA_BLOB) + octets[i].encoded[1],
1924 "Expected size >= %d, got %d\n",
1925 (int)sizeof(CRYPT_DATA_BLOB) + octets[i].encoded[1], bufSize);
1926 ok(buf != NULL, "Expected allocated buffer\n");
1929 CRYPT_DATA_BLOB *blob = (CRYPT_DATA_BLOB *)buf;
1932 ok(!memcmp(blob->pbData, octets[i].val, blob->cbData),
1933 "Unexpected value\n");
1939 static const BYTE bytesToEncode[] = { 0xff, 0xff };
1944 const BYTE *encoded;
1946 const BYTE *decoded;
1949 static const unsigned char bin52[] = { 0x03,0x03,0x00,0xff,0xff };
1950 static const unsigned char bin53[] = { 0xff,0xff };
1951 static const unsigned char bin54[] = { 0x03,0x03,0x01,0xff,0xfe };
1952 static const unsigned char bin55[] = { 0xff,0xfe };
1953 static const unsigned char bin56[] = { 0x03,0x02,0x01,0xfe };
1954 static const unsigned char bin57[] = { 0xfe };
1955 static const unsigned char bin58[] = { 0x03,0x01,0x00 };
1957 static const struct encodedBits bits[] = {
1958 /* normal test cases */
1959 { 0, bin52, 2, bin53 },
1960 { 1, bin54, 2, bin55 },
1961 /* strange test case, showing cUnusedBits >= 8 is allowed */
1962 { 9, bin56, 1, bin57 },
1965 static void test_encodeBits(DWORD dwEncoding)
1969 for (i = 0; i < sizeof(bits) / sizeof(bits[0]); i++)
1971 CRYPT_BIT_BLOB blob;
1976 blob.cbData = sizeof(bytesToEncode);
1977 blob.pbData = (BYTE *)bytesToEncode;
1978 blob.cUnusedBits = bits[i].cUnusedBits;
1979 ret = pCryptEncodeObjectEx(dwEncoding, X509_BITS, &blob,
1980 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
1981 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
1984 ok(bufSize == bits[i].encoded[1] + 2,
1985 "%d: Got unexpected size %d, expected %d\n", i, bufSize,
1986 bits[i].encoded[1] + 2);
1987 ok(!memcmp(buf, bits[i].encoded, bits[i].encoded[1] + 2),
1988 "%d: Unexpected value\n", i);
1994 static void test_decodeBits(DWORD dwEncoding)
1996 static const BYTE ber[] = "\x03\x02\x01\xff";
1997 static const BYTE berDecoded = 0xfe;
2004 for (i = 0; i < sizeof(bits) / sizeof(bits[0]); i++)
2006 ret = pCryptDecodeObjectEx(dwEncoding, X509_BITS, bits[i].encoded,
2007 bits[i].encoded[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf,
2009 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2012 CRYPT_BIT_BLOB *blob;
2014 ok(bufSize >= sizeof(CRYPT_BIT_BLOB) + bits[i].cbDecoded,
2015 "Got unexpected size %d\n", bufSize);
2016 blob = (CRYPT_BIT_BLOB *)buf;
2017 ok(blob->cbData == bits[i].cbDecoded,
2018 "Got unexpected length %d, expected %d\n", blob->cbData,
2020 if (blob->cbData && bits[i].cbDecoded)
2021 ok(!memcmp(blob->pbData, bits[i].decoded, bits[i].cbDecoded),
2022 "Unexpected value\n");
2026 /* special case: check that something that's valid in BER but not in DER
2027 * decodes successfully
2029 ret = pCryptDecodeObjectEx(dwEncoding, X509_BITS, ber, ber[1] + 2,
2030 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2031 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2034 CRYPT_BIT_BLOB *blob;
2036 ok(bufSize >= sizeof(CRYPT_BIT_BLOB) + sizeof(berDecoded),
2037 "Got unexpected size %d\n", bufSize);
2038 blob = (CRYPT_BIT_BLOB *)buf;
2039 ok(blob->cbData == sizeof(berDecoded),
2040 "Got unexpected length %d\n", blob->cbData);
2042 ok(*blob->pbData == berDecoded, "Unexpected value\n");
2049 CERT_BASIC_CONSTRAINTS2_INFO info;
2050 const BYTE *encoded;
2053 static const unsigned char bin59[] = { 0x30,0x00 };
2054 static const unsigned char bin60[] = { 0x30,0x03,0x01,0x01,0xff };
2055 static const unsigned char bin61[] = { 0x30,0x03,0x02,0x01,0x00 };
2056 static const unsigned char bin62[] = { 0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
2057 static const struct Constraints2 constraints2[] = {
2058 /* empty constraints */
2059 { { FALSE, FALSE, 0}, bin59 },
2061 { { TRUE, FALSE, 0}, bin60 },
2062 /* has path length constraints set (MSDN implies fCA needs to be TRUE as well,
2063 * but that's not the case
2065 { { FALSE, TRUE, 0}, bin61 },
2066 /* can be a CA and has path length constraints set */
2067 { { TRUE, TRUE, 1}, bin62 },
2070 static const BYTE emptyConstraint[] = { 0x30, 0x03, 0x03, 0x01, 0x00 };
2071 static const BYTE encodedDomainName[] = { 0x30, 0x2b, 0x31, 0x29, 0x30, 0x11,
2072 0x06, 0x0a, 0x09, 0x92, 0x26, 0x89, 0x93, 0xf2, 0x2c, 0x64, 0x01, 0x19, 0x16,
2073 0x03, 0x6f, 0x72, 0x67, 0x30, 0x14, 0x06, 0x0a, 0x09, 0x92, 0x26, 0x89, 0x93,
2074 0xf2, 0x2c, 0x64, 0x01, 0x19, 0x16, 0x06, 0x77, 0x69, 0x6e, 0x65, 0x68, 0x71 };
2075 static const BYTE constraintWithDomainName[] = { 0x30, 0x32, 0x03, 0x01, 0x00,
2076 0x30, 0x2d, 0x30, 0x2b, 0x31, 0x29, 0x30, 0x11, 0x06, 0x0a, 0x09, 0x92, 0x26,
2077 0x89, 0x93, 0xf2, 0x2c, 0x64, 0x01, 0x19, 0x16, 0x03, 0x6f, 0x72, 0x67, 0x30,
2078 0x14, 0x06, 0x0a, 0x09, 0x92, 0x26, 0x89, 0x93, 0xf2, 0x2c, 0x64, 0x01, 0x19,
2079 0x16, 0x06, 0x77, 0x69, 0x6e, 0x65, 0x68, 0x71 };
2081 static void test_encodeBasicConstraints(DWORD dwEncoding)
2083 DWORD i, bufSize = 0;
2084 CERT_BASIC_CONSTRAINTS_INFO info = { { 0 } };
2085 CERT_NAME_BLOB nameBlob = { sizeof(encodedDomainName),
2086 (LPBYTE)encodedDomainName };
2090 /* First test with the simpler info2 */
2091 for (i = 0; i < sizeof(constraints2) / sizeof(constraints2[0]); i++)
2093 ret = pCryptEncodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS2,
2094 &constraints2[i].info, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf,
2096 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2099 ok(bufSize == constraints2[i].encoded[1] + 2,
2100 "Expected %d bytes, got %d\n", constraints2[i].encoded[1] + 2,
2102 ok(!memcmp(buf, constraints2[i].encoded,
2103 constraints2[i].encoded[1] + 2), "Unexpected value\n");
2107 /* Now test with more complex basic constraints */
2108 info.SubjectType.cbData = 0;
2109 info.fPathLenConstraint = FALSE;
2110 info.cSubtreesConstraint = 0;
2111 ret = pCryptEncodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS, &info,
2112 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2113 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2114 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2117 ok(bufSize == sizeof(emptyConstraint), "Wrong size %d\n", bufSize);
2118 ok(!memcmp(buf, emptyConstraint, sizeof(emptyConstraint)),
2119 "Unexpected value\n");
2122 /* None of the certs I examined had any subtree constraint, but I test one
2123 * anyway just in case.
2125 info.cSubtreesConstraint = 1;
2126 info.rgSubtreesConstraint = &nameBlob;
2127 ret = pCryptEncodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS, &info,
2128 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2129 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2130 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2133 ok(bufSize == sizeof(constraintWithDomainName), "Wrong size %d\n", bufSize);
2134 ok(!memcmp(buf, constraintWithDomainName,
2135 sizeof(constraintWithDomainName)), "Unexpected value\n");
2138 /* FIXME: test encoding with subject type. */
2141 static const unsigned char bin63[] = { 0x30,0x06,0x01,0x01,0x01,0x02,0x01,0x01 };
2143 static void test_decodeBasicConstraints(DWORD dwEncoding)
2145 static const BYTE inverted[] = { 0x30, 0x06, 0x02, 0x01, 0x01, 0x01, 0x01,
2147 static const struct Constraints2 badBool = { { TRUE, TRUE, 1 }, bin63 };
2153 /* First test with simpler info2 */
2154 for (i = 0; i < sizeof(constraints2) / sizeof(constraints2[0]); i++)
2156 ret = pCryptDecodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS2,
2157 constraints2[i].encoded, constraints2[i].encoded[1] + 2,
2158 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2159 ok(ret, "CryptDecodeObjectEx failed for item %d: %08x\n", i,
2163 CERT_BASIC_CONSTRAINTS2_INFO *info =
2164 (CERT_BASIC_CONSTRAINTS2_INFO *)buf;
2166 ok(!memcmp(info, &constraints2[i].info, sizeof(*info)),
2167 "Unexpected value for item %d\n", i);
2171 /* Check with the order of encoded elements inverted */
2173 ret = pCryptDecodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS2,
2174 inverted, inverted[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf,
2176 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
2177 GetLastError() == OSS_DATA_ERROR /* Win9x */),
2178 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
2180 ok(!buf, "Expected buf to be set to NULL\n");
2181 /* Check with a non-DER bool */
2182 ret = pCryptDecodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS2,
2183 badBool.encoded, badBool.encoded[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
2185 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2188 CERT_BASIC_CONSTRAINTS2_INFO *info =
2189 (CERT_BASIC_CONSTRAINTS2_INFO *)buf;
2191 ok(!memcmp(info, &badBool.info, sizeof(*info)), "Unexpected value\n");
2194 /* Check with a non-basic constraints value */
2195 ret = pCryptDecodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS2,
2196 encodedCommonName, encodedCommonName[1] + 2,
2197 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2198 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
2199 GetLastError() == OSS_DATA_ERROR /* Win9x */),
2200 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
2202 /* Now check with the more complex CERT_BASIC_CONSTRAINTS_INFO */
2203 ret = pCryptDecodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS,
2204 emptyConstraint, sizeof(emptyConstraint), CRYPT_DECODE_ALLOC_FLAG, NULL,
2206 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2209 CERT_BASIC_CONSTRAINTS_INFO *info = (CERT_BASIC_CONSTRAINTS_INFO *)buf;
2211 ok(info->SubjectType.cbData == 0, "Expected no subject type\n");
2212 ok(!info->fPathLenConstraint, "Expected no path length constraint\n");
2213 ok(info->cSubtreesConstraint == 0, "Expected no subtree constraints\n");
2216 ret = pCryptDecodeObjectEx(dwEncoding, X509_BASIC_CONSTRAINTS,
2217 constraintWithDomainName, sizeof(constraintWithDomainName),
2218 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2219 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2222 CERT_BASIC_CONSTRAINTS_INFO *info = (CERT_BASIC_CONSTRAINTS_INFO *)buf;
2224 ok(info->SubjectType.cbData == 0, "Expected no subject type\n");
2225 ok(!info->fPathLenConstraint, "Expected no path length constraint\n");
2226 ok(info->cSubtreesConstraint == 1, "Expected a subtree constraint\n");
2227 if (info->cSubtreesConstraint && info->rgSubtreesConstraint)
2229 ok(info->rgSubtreesConstraint[0].cbData ==
2230 sizeof(encodedDomainName), "Wrong size %d\n",
2231 info->rgSubtreesConstraint[0].cbData);
2232 ok(!memcmp(info->rgSubtreesConstraint[0].pbData, encodedDomainName,
2233 sizeof(encodedDomainName)), "Unexpected value\n");
2239 /* These are terrible public keys of course, I'm just testing encoding */
2240 static const BYTE modulus1[] = { 0,0,0,1,1,1,1,1 };
2241 static const BYTE modulus2[] = { 1,1,1,1,1,0,0,0 };
2242 static const BYTE modulus3[] = { 0x80,1,1,1,1,0,0,0 };
2243 static const BYTE modulus4[] = { 1,1,1,1,1,0,0,0x80 };
2244 static const BYTE mod1_encoded[] = { 0x30,0x0f,0x02,0x08,0x01,0x01,0x01,0x01,0x01,0x00,0x00,0x00,0x02,0x03,0x01,0x00,0x01 };
2245 static const BYTE mod2_encoded[] = { 0x30,0x0c,0x02,0x05,0x01,0x01,0x01,0x01,0x01,0x02,0x03,0x01,0x00,0x01 };
2246 static const BYTE mod3_encoded[] = { 0x30,0x0c,0x02,0x05,0x01,0x01,0x01,0x01,0x80,0x02,0x03,0x01,0x00,0x01 };
2247 static const BYTE mod4_encoded[] = { 0x30,0x10,0x02,0x09,0x00,0x80,0x00,0x00,0x01,0x01,0x01,0x01,0x01,0x02,0x03,0x01,0x00,0x01 };
2249 struct EncodedRSAPubKey
2251 const BYTE *modulus;
2253 const BYTE *encoded;
2254 size_t decodedModulusLen;
2257 struct EncodedRSAPubKey rsaPubKeys[] = {
2258 { modulus1, sizeof(modulus1), mod1_encoded, sizeof(modulus1) },
2259 { modulus2, sizeof(modulus2), mod2_encoded, 5 },
2260 { modulus3, sizeof(modulus3), mod3_encoded, 5 },
2261 { modulus4, sizeof(modulus4), mod4_encoded, 8 },
2264 static void test_encodeRsaPublicKey(DWORD dwEncoding)
2266 BYTE toEncode[sizeof(BLOBHEADER) + sizeof(RSAPUBKEY) + sizeof(modulus1)];
2267 BLOBHEADER *hdr = (BLOBHEADER *)toEncode;
2268 RSAPUBKEY *rsaPubKey = (RSAPUBKEY *)(toEncode + sizeof(BLOBHEADER));
2271 DWORD bufSize = 0, i;
2273 /* Try with a bogus blob type */
2275 hdr->bVersion = CUR_BLOB_VERSION;
2277 hdr->aiKeyAlg = CALG_RSA_KEYX;
2278 rsaPubKey->magic = 0x31415352;
2279 rsaPubKey->bitlen = sizeof(modulus1) * 8;
2280 rsaPubKey->pubexp = 65537;
2281 memcpy(toEncode + sizeof(BLOBHEADER) + sizeof(RSAPUBKEY), modulus1,
2284 ret = pCryptEncodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2285 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2286 ok(!ret && GetLastError() == E_INVALIDARG,
2287 "Expected E_INVALIDARG, got %08x\n", GetLastError());
2288 /* Now with a bogus reserved field */
2289 hdr->bType = PUBLICKEYBLOB;
2291 ret = pCryptEncodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2292 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2295 ok(bufSize == rsaPubKeys[0].encoded[1] + 2,
2296 "Expected size %d, got %d\n", rsaPubKeys[0].encoded[1] + 2, bufSize);
2297 ok(!memcmp(buf, rsaPubKeys[0].encoded, bufSize), "Unexpected value\n");
2300 /* Now with a bogus blob version */
2303 ret = pCryptEncodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2304 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2307 ok(bufSize == rsaPubKeys[0].encoded[1] + 2,
2308 "Expected size %d, got %d\n", rsaPubKeys[0].encoded[1] + 2, bufSize);
2309 ok(!memcmp(buf, rsaPubKeys[0].encoded, bufSize), "Unexpected value\n");
2312 /* And with a bogus alg ID */
2313 hdr->bVersion = CUR_BLOB_VERSION;
2314 hdr->aiKeyAlg = CALG_DES;
2315 ret = pCryptEncodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2316 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2319 ok(bufSize == rsaPubKeys[0].encoded[1] + 2,
2320 "Expected size %d, got %d\n", rsaPubKeys[0].encoded[1] + 2, bufSize);
2321 ok(!memcmp(buf, rsaPubKeys[0].encoded, bufSize), "Unexpected value\n");
2324 /* Check a couple of RSA-related OIDs */
2325 hdr->aiKeyAlg = CALG_RSA_KEYX;
2326 ret = pCryptEncodeObjectEx(dwEncoding, szOID_RSA_RSA,
2327 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2328 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
2329 "Expected ERROR_FILE_NOT_FOUND, got %08x\n", GetLastError());
2330 ret = pCryptEncodeObjectEx(dwEncoding, szOID_RSA_SHA1RSA,
2331 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2332 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
2333 "Expected ERROR_FILE_NOT_FOUND, got %08x\n", GetLastError());
2334 /* Finally, all valid */
2335 hdr->aiKeyAlg = CALG_RSA_KEYX;
2336 for (i = 0; i < sizeof(rsaPubKeys) / sizeof(rsaPubKeys[0]); i++)
2338 memcpy(toEncode + sizeof(BLOBHEADER) + sizeof(RSAPUBKEY),
2339 rsaPubKeys[i].modulus, rsaPubKeys[i].modulusLen);
2340 ret = pCryptEncodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2341 toEncode, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2342 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2345 ok(bufSize == rsaPubKeys[i].encoded[1] + 2,
2346 "Expected size %d, got %d\n", rsaPubKeys[i].encoded[1] + 2,
2348 ok(!memcmp(buf, rsaPubKeys[i].encoded, bufSize),
2349 "Unexpected value\n");
2355 static void test_decodeRsaPublicKey(DWORD dwEncoding)
2362 /* Try with a bad length */
2363 ret = pCryptDecodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2364 rsaPubKeys[0].encoded, rsaPubKeys[0].encoded[1],
2365 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2366 ok(!ret && (GetLastError() == CRYPT_E_ASN1_EOD ||
2367 GetLastError() == OSS_MORE_INPUT /* Win9x/NT4 */),
2368 "Expected CRYPT_E_ASN1_EOD or OSS_MORE_INPUT, got %08x\n",
2370 /* Try with a couple of RSA-related OIDs */
2371 ret = pCryptDecodeObjectEx(dwEncoding, szOID_RSA_RSA,
2372 rsaPubKeys[0].encoded, rsaPubKeys[0].encoded[1] + 2,
2373 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2374 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
2375 "Expected ERROR_FILE_NOT_FOUND, got %08x\n", GetLastError());
2376 ret = pCryptDecodeObjectEx(dwEncoding, szOID_RSA_SHA1RSA,
2377 rsaPubKeys[0].encoded, rsaPubKeys[0].encoded[1] + 2,
2378 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2379 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
2380 "Expected ERROR_FILE_NOT_FOUND, got %08x\n", GetLastError());
2381 /* Now try success cases */
2382 for (i = 0; i < sizeof(rsaPubKeys) / sizeof(rsaPubKeys[0]); i++)
2385 ret = pCryptDecodeObjectEx(dwEncoding, RSA_CSP_PUBLICKEYBLOB,
2386 rsaPubKeys[i].encoded, rsaPubKeys[i].encoded[1] + 2,
2387 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2388 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2391 BLOBHEADER *hdr = (BLOBHEADER *)buf;
2392 RSAPUBKEY *rsaPubKey = (RSAPUBKEY *)(buf + sizeof(BLOBHEADER));
2394 ok(bufSize >= sizeof(BLOBHEADER) + sizeof(RSAPUBKEY) +
2395 rsaPubKeys[i].decodedModulusLen,
2396 "Wrong size %d\n", bufSize);
2397 ok(hdr->bType == PUBLICKEYBLOB,
2398 "Expected type PUBLICKEYBLOB (%d), got %d\n", PUBLICKEYBLOB,
2400 ok(hdr->bVersion == CUR_BLOB_VERSION,
2401 "Expected version CUR_BLOB_VERSION (%d), got %d\n",
2402 CUR_BLOB_VERSION, hdr->bVersion);
2403 ok(hdr->reserved == 0, "Expected reserved 0, got %d\n",
2405 ok(hdr->aiKeyAlg == CALG_RSA_KEYX,
2406 "Expected CALG_RSA_KEYX, got %08x\n", hdr->aiKeyAlg);
2407 ok(rsaPubKey->magic == 0x31415352,
2408 "Expected magic RSA1, got %08x\n", rsaPubKey->magic);
2409 ok(rsaPubKey->bitlen == rsaPubKeys[i].decodedModulusLen * 8,
2410 "Wrong bit len %d\n", rsaPubKey->bitlen);
2411 ok(rsaPubKey->pubexp == 65537, "Expected pubexp 65537, got %d\n",
2413 ok(!memcmp(buf + sizeof(BLOBHEADER) + sizeof(RSAPUBKEY),
2414 rsaPubKeys[i].modulus, rsaPubKeys[i].decodedModulusLen),
2415 "Unexpected modulus\n");
2421 static const BYTE intSequence[] = { 0x30, 0x1b, 0x02, 0x01, 0x01, 0x02, 0x01,
2422 0x7f, 0x02, 0x02, 0x00, 0x80, 0x02, 0x02, 0x01, 0x00, 0x02, 0x01, 0x80, 0x02,
2423 0x02, 0xff, 0x7f, 0x02, 0x04, 0xba, 0xdd, 0xf0, 0x0d };
2425 static const BYTE mixedSequence[] = { 0x30, 0x27, 0x17, 0x0d, 0x30, 0x35, 0x30,
2426 0x36, 0x30, 0x36, 0x31, 0x36, 0x31, 0x30, 0x30, 0x30, 0x5a, 0x02, 0x01, 0x7f,
2427 0x02, 0x02, 0x00, 0x80, 0x02, 0x02, 0x01, 0x00, 0x02, 0x01, 0x80, 0x02, 0x02,
2428 0xff, 0x7f, 0x02, 0x04, 0xba, 0xdd, 0xf0, 0x0d };
2430 static void test_encodeSequenceOfAny(DWORD dwEncoding)
2432 CRYPT_DER_BLOB blobs[sizeof(ints) / sizeof(ints[0])];
2433 CRYPT_SEQUENCE_OF_ANY seq;
2439 /* Encode a homogeneous sequence */
2440 for (i = 0; i < sizeof(ints) / sizeof(ints[0]); i++)
2442 blobs[i].cbData = ints[i].encoded[1] + 2;
2443 blobs[i].pbData = (BYTE *)ints[i].encoded;
2445 seq.cValue = sizeof(ints) / sizeof(ints[0]);
2446 seq.rgValue = blobs;
2448 ret = pCryptEncodeObjectEx(dwEncoding, X509_SEQUENCE_OF_ANY, &seq,
2449 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2450 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2453 ok(bufSize == sizeof(intSequence), "Wrong size %d\n", bufSize);
2454 ok(!memcmp(buf, intSequence, intSequence[1] + 2), "Unexpected value\n");
2457 /* Change the type of the first element in the sequence, and give it
2460 blobs[0].cbData = times[0].encodedTime[1] + 2;
2461 blobs[0].pbData = (BYTE *)times[0].encodedTime;
2462 ret = pCryptEncodeObjectEx(dwEncoding, X509_SEQUENCE_OF_ANY, &seq,
2463 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2464 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2467 ok(bufSize == sizeof(mixedSequence), "Wrong size %d\n", bufSize);
2468 ok(!memcmp(buf, mixedSequence, mixedSequence[1] + 2),
2469 "Unexpected value\n");
2474 static void test_decodeSequenceOfAny(DWORD dwEncoding)
2480 ret = pCryptDecodeObjectEx(dwEncoding, X509_SEQUENCE_OF_ANY, intSequence,
2481 intSequence[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2482 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2485 CRYPT_SEQUENCE_OF_ANY *seq = (CRYPT_SEQUENCE_OF_ANY *)buf;
2488 ok(seq->cValue == sizeof(ints) / sizeof(ints[0]),
2489 "Wrong elements %d\n", seq->cValue);
2490 for (i = 0; i < min(seq->cValue, sizeof(ints) / sizeof(ints[0])); i++)
2492 ok(seq->rgValue[i].cbData == ints[i].encoded[1] + 2,
2493 "Expected %d bytes, got %d\n", ints[i].encoded[1] + 2,
2494 seq->rgValue[i].cbData);
2495 ok(!memcmp(seq->rgValue[i].pbData, ints[i].encoded,
2496 ints[i].encoded[1] + 2), "Unexpected value\n");
2500 ret = pCryptDecodeObjectEx(dwEncoding, X509_SEQUENCE_OF_ANY, mixedSequence,
2501 mixedSequence[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf,
2503 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2506 CRYPT_SEQUENCE_OF_ANY *seq = (CRYPT_SEQUENCE_OF_ANY *)buf;
2508 ok(seq->cValue == sizeof(ints) / sizeof(ints[0]),
2509 "Wrong elements %d\n", seq->cValue);
2510 /* Just check the first element since it's all that changed */
2511 ok(seq->rgValue[0].cbData == times[0].encodedTime[1] + 2,
2512 "Expected %d bytes, got %d\n", times[0].encodedTime[1] + 2,
2513 seq->rgValue[0].cbData);
2514 ok(!memcmp(seq->rgValue[0].pbData, times[0].encodedTime,
2515 times[0].encodedTime[1] + 2), "Unexpected value\n");
2520 struct encodedExtensions
2522 CERT_EXTENSIONS exts;
2523 const BYTE *encoded;
2526 static BYTE crit_ext_data[] = { 0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
2527 static BYTE noncrit_ext_data[] = { 0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
2528 static CHAR oid_basic_constraints2[] = szOID_BASIC_CONSTRAINTS2;
2529 static CERT_EXTENSION criticalExt =
2530 { oid_basic_constraints2, TRUE, { 8, crit_ext_data } };
2531 static CERT_EXTENSION nonCriticalExt =
2532 { oid_basic_constraints2, FALSE, { 8, noncrit_ext_data } };
2533 static CHAR oid_short[] = "1.1";
2534 static CERT_EXTENSION extWithShortOid =
2535 { oid_short, FALSE, { 0, NULL } };
2537 static const BYTE ext0[] = { 0x30,0x00 };
2538 static const BYTE ext1[] = { 0x30,0x14,0x30,0x12,0x06,0x03,0x55,0x1d,0x13,0x01,0x01,
2539 0xff,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
2540 static const BYTE ext2[] = { 0x30,0x11,0x30,0x0f,0x06,0x03,0x55,0x1d,0x13,0x04,
2541 0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
2542 static const BYTE ext3[] = { 0x30,0x07,0x30,0x05,0x06,0x01,0x29,0x04,0x00 };
2544 static const struct encodedExtensions exts[] = {
2545 { { 0, NULL }, ext0 },
2546 { { 1, &criticalExt }, ext1 },
2547 { { 1, &nonCriticalExt }, ext2 },
2548 { { 1, &extWithShortOid }, ext3 }
2551 static void test_encodeExtensions(DWORD dwEncoding)
2555 for (i = 0; i < sizeof(exts) / sizeof(exts[i]); i++)
2561 ret = pCryptEncodeObjectEx(dwEncoding, X509_EXTENSIONS, &exts[i].exts,
2562 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2563 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2566 ok(bufSize == exts[i].encoded[1] + 2,
2567 "Expected %d bytes, got %d\n", exts[i].encoded[1] + 2, bufSize);
2568 ok(!memcmp(buf, exts[i].encoded, exts[i].encoded[1] + 2),
2569 "Unexpected value\n");
2575 static void test_decodeExtensions(DWORD dwEncoding)
2579 for (i = 0; i < sizeof(exts) / sizeof(exts[i]); i++)
2585 ret = pCryptDecodeObjectEx(dwEncoding, X509_EXTENSIONS,
2586 exts[i].encoded, exts[i].encoded[1] + 2, CRYPT_DECODE_ALLOC_FLAG,
2587 NULL, &buf, &bufSize);
2588 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2591 CERT_EXTENSIONS *ext = (CERT_EXTENSIONS *)buf;
2594 ok(ext->cExtension == exts[i].exts.cExtension,
2595 "Expected %d extensions, see %d\n", exts[i].exts.cExtension,
2597 for (j = 0; j < min(ext->cExtension, exts[i].exts.cExtension); j++)
2599 ok(!strcmp(ext->rgExtension[j].pszObjId,
2600 exts[i].exts.rgExtension[j].pszObjId),
2601 "Expected OID %s, got %s\n",
2602 exts[i].exts.rgExtension[j].pszObjId,
2603 ext->rgExtension[j].pszObjId);
2604 ok(!memcmp(ext->rgExtension[j].Value.pbData,
2605 exts[i].exts.rgExtension[j].Value.pbData,
2606 exts[i].exts.rgExtension[j].Value.cbData),
2607 "Unexpected value\n");
2614 /* MS encodes public key info with a NULL if the algorithm identifier's
2615 * parameters are empty. However, when encoding an algorithm in a CERT_INFO,
2616 * it encodes them by omitting the algorithm parameters. This latter approach
2617 * seems more correct, so accept either form.
2619 struct encodedPublicKey
2621 CERT_PUBLIC_KEY_INFO info;
2622 const BYTE *encoded;
2623 const BYTE *encodedNoNull;
2624 CERT_PUBLIC_KEY_INFO decoded;
2627 static const BYTE aKey[] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 0xa, 0xb, 0xc, 0xd,
2629 static const BYTE params[] = { 0x02, 0x01, 0x01 };
2631 static const unsigned char bin64[] = {
2632 0x30,0x0b,0x30,0x06,0x06,0x02,0x2a,0x03,0x05,0x00,0x03,0x01,0x00};
2633 static const unsigned char bin65[] = {
2634 0x30,0x09,0x30,0x04,0x06,0x02,0x2a,0x03,0x03,0x01,0x00};
2635 static const unsigned char bin66[] = {
2636 0x30,0x0f,0x30,0x0a,0x06,0x06,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x05,0x00,0x03,0x01,0x00};
2637 static const unsigned char bin67[] = {
2638 0x30,0x0d,0x30,0x08,0x06,0x06,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x03,0x01,0x00};
2639 static const unsigned char bin68[] = {
2640 0x30,0x1f,0x30,0x0a,0x06,0x06,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x05,0x00,0x03,0x11,0x00,0x00,0x01,
2641 0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,0x0f};
2642 static const unsigned char bin69[] = {
2643 0x30,0x1d,0x30,0x08,0x06,0x06,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x03,0x11,0x00,0x00,0x01,
2644 0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,0x0f};
2645 static const unsigned char bin70[] = {
2646 0x30,0x20,0x30,0x0b,0x06,0x06,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x02,0x01,0x01,
2647 0x03,0x11,0x00,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,
2649 static const unsigned char bin71[] = {
2650 0x30,0x20,0x30,0x0b,0x06,0x06,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x02,0x01,0x01,
2651 0x03,0x11,0x00,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,
2653 static unsigned char bin72[] = { 0x05,0x00};
2655 static CHAR oid_bogus[] = "1.2.3",
2656 oid_rsa[] = szOID_RSA;
2658 static const struct encodedPublicKey pubKeys[] = {
2659 /* with a bogus OID */
2660 { { { oid_bogus, { 0, NULL } }, { 0, NULL, 0 } },
2662 { { oid_bogus, { 2, bin72 } }, { 0, NULL, 0 } } },
2663 /* some normal keys */
2664 { { { oid_rsa, { 0, NULL } }, { 0, NULL, 0} },
2666 { { oid_rsa, { 2, bin72 } }, { 0, NULL, 0 } } },
2667 { { { oid_rsa, { 0, NULL } }, { sizeof(aKey), (BYTE *)aKey, 0} },
2669 { { oid_rsa, { 2, bin72 } }, { sizeof(aKey), (BYTE *)aKey, 0} } },
2670 /* with add'l parameters--note they must be DER-encoded */
2671 { { { oid_rsa, { sizeof(params), (BYTE *)params } }, { sizeof(aKey),
2672 (BYTE *)aKey, 0 } },
2674 { { oid_rsa, { sizeof(params), (BYTE *)params } }, { sizeof(aKey),
2675 (BYTE *)aKey, 0 } } },
2678 static void test_encodePublicKeyInfo(DWORD dwEncoding)
2682 for (i = 0; i < sizeof(pubKeys) / sizeof(pubKeys[0]); i++)
2688 ret = pCryptEncodeObjectEx(dwEncoding, X509_PUBLIC_KEY_INFO,
2689 &pubKeys[i].info, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf,
2691 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2692 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2695 ok(bufSize == pubKeys[i].encoded[1] + 2 ||
2696 bufSize == pubKeys[i].encodedNoNull[1] + 2,
2697 "Expected %d or %d bytes, got %d\n", pubKeys[i].encoded[1] + 2,
2698 pubKeys[i].encodedNoNull[1] + 2, bufSize);
2699 if (bufSize == pubKeys[i].encoded[1] + 2)
2700 ok(!memcmp(buf, pubKeys[i].encoded, pubKeys[i].encoded[1] + 2),
2701 "Unexpected value\n");
2702 else if (bufSize == pubKeys[i].encodedNoNull[1] + 2)
2703 ok(!memcmp(buf, pubKeys[i].encodedNoNull,
2704 pubKeys[i].encodedNoNull[1] + 2), "Unexpected value\n");
2710 static void comparePublicKeyInfo(const CERT_PUBLIC_KEY_INFO *expected,
2711 const CERT_PUBLIC_KEY_INFO *got)
2713 ok(!strcmp(expected->Algorithm.pszObjId, got->Algorithm.pszObjId),
2714 "Expected OID %s, got %s\n", expected->Algorithm.pszObjId,
2715 got->Algorithm.pszObjId);
2716 ok(expected->Algorithm.Parameters.cbData ==
2717 got->Algorithm.Parameters.cbData,
2718 "Expected parameters of %d bytes, got %d\n",
2719 expected->Algorithm.Parameters.cbData, got->Algorithm.Parameters.cbData);
2720 if (expected->Algorithm.Parameters.cbData)
2721 ok(!memcmp(expected->Algorithm.Parameters.pbData,
2722 got->Algorithm.Parameters.pbData, got->Algorithm.Parameters.cbData),
2723 "Unexpected algorithm parameters\n");
2724 ok(expected->PublicKey.cbData == got->PublicKey.cbData,
2725 "Expected public key of %d bytes, got %d\n",
2726 expected->PublicKey.cbData, got->PublicKey.cbData);
2727 if (expected->PublicKey.cbData)
2728 ok(!memcmp(expected->PublicKey.pbData, got->PublicKey.pbData,
2729 got->PublicKey.cbData), "Unexpected public key value\n");
2732 static void test_decodePublicKeyInfo(DWORD dwEncoding)
2734 static const BYTE bogusPubKeyInfo[] = { 0x30, 0x22, 0x30, 0x0d, 0x06, 0x06,
2735 0x2a, 0x86, 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x01, 0x01, 0x01, 0x01, 0x03,
2736 0x11, 0x00, 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09,
2737 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f };
2743 for (i = 0; i < sizeof(pubKeys) / sizeof(pubKeys[0]); i++)
2745 /* The NULL form decodes to the decoded member */
2746 ret = pCryptDecodeObjectEx(dwEncoding, X509_PUBLIC_KEY_INFO,
2747 pubKeys[i].encoded, pubKeys[i].encoded[1] + 2, CRYPT_DECODE_ALLOC_FLAG,
2748 NULL, &buf, &bufSize);
2749 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2752 comparePublicKeyInfo(&pubKeys[i].decoded,
2753 (CERT_PUBLIC_KEY_INFO *)buf);
2756 /* The non-NULL form decodes to the original */
2757 ret = pCryptDecodeObjectEx(dwEncoding, X509_PUBLIC_KEY_INFO,
2758 pubKeys[i].encodedNoNull, pubKeys[i].encodedNoNull[1] + 2,
2759 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &bufSize);
2760 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
2763 comparePublicKeyInfo(&pubKeys[i].info, (CERT_PUBLIC_KEY_INFO *)buf);
2767 /* Test with bogus (not valid DER) parameters */
2768 ret = pCryptDecodeObjectEx(dwEncoding, X509_PUBLIC_KEY_INFO,
2769 bogusPubKeyInfo, bogusPubKeyInfo[1] + 2, CRYPT_DECODE_ALLOC_FLAG,
2770 NULL, &buf, &bufSize);
2771 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
2772 GetLastError() == OSS_DATA_ERROR /* Win9x */),
2773 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
2777 static const BYTE v1Cert[] = { 0x30, 0x33, 0x02, 0x00, 0x30, 0x02, 0x06, 0x00,
2778 0x30, 0x22, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30,
2779 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30,
2780 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x30, 0x07, 0x30,
2781 0x02, 0x06, 0x00, 0x03, 0x01, 0x00 };
2782 static const BYTE v2Cert[] = { 0x30, 0x38, 0xa0, 0x03, 0x02, 0x01, 0x01, 0x02,
2783 0x00, 0x30, 0x02, 0x06, 0x00, 0x30, 0x22, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31,
2784 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x18, 0x0f,
2785 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30,
2786 0x30, 0x5a, 0x30, 0x07, 0x30, 0x02, 0x06, 0x00, 0x03, 0x01, 0x00 };
2787 static const BYTE v3Cert[] = { 0x30, 0x38, 0xa0, 0x03, 0x02, 0x01, 0x02, 0x02,
2788 0x00, 0x30, 0x02, 0x06, 0x00, 0x30, 0x22, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31,
2789 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x18, 0x0f,
2790 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30,
2791 0x30, 0x5a, 0x30, 0x07, 0x30, 0x02, 0x06, 0x00, 0x03, 0x01, 0x00 };
2792 static const BYTE v1CertWithConstraints[] = { 0x30, 0x4b, 0x02, 0x00, 0x30,
2793 0x02, 0x06, 0x00, 0x30, 0x22, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31,
2794 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x18, 0x0f, 0x31, 0x36,
2795 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a,
2796 0x30, 0x07, 0x30, 0x02, 0x06, 0x00, 0x03, 0x01, 0x00, 0xa3, 0x16, 0x30, 0x14,
2797 0x30, 0x12, 0x06, 0x03, 0x55, 0x1d, 0x13, 0x01, 0x01, 0xff, 0x04, 0x08, 0x30,
2798 0x06, 0x01, 0x01, 0xff, 0x02, 0x01, 0x01 };
2799 static const BYTE v1CertWithSerial[] = { 0x30, 0x4c, 0x02, 0x01, 0x01, 0x30,
2800 0x02, 0x06, 0x00, 0x30, 0x22, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31,
2801 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x18, 0x0f, 0x31, 0x36,
2802 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a,
2803 0x30, 0x07, 0x30, 0x02, 0x06, 0x00, 0x03, 0x01, 0x00, 0xa3, 0x16, 0x30, 0x14,
2804 0x30, 0x12, 0x06, 0x03, 0x55, 0x1d, 0x13, 0x01, 0x01, 0xff, 0x04, 0x08, 0x30,
2805 0x06, 0x01, 0x01, 0xff, 0x02, 0x01, 0x01 };
2806 static const BYTE bigCert[] = { 0x30, 0x7a, 0x02, 0x01, 0x01, 0x30, 0x02, 0x06,
2807 0x00, 0x30, 0x15, 0x31, 0x13, 0x30, 0x11, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13,
2808 0x0a, 0x4a, 0x75, 0x61, 0x6e, 0x20, 0x4c, 0x61, 0x6e, 0x67, 0x00, 0x30, 0x22,
2809 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30,
2810 0x30, 0x30, 0x30, 0x5a, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30,
2811 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x30, 0x15, 0x31, 0x13, 0x30,
2812 0x11, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13, 0x0a, 0x4a, 0x75, 0x61, 0x6e, 0x20,
2813 0x4c, 0x61, 0x6e, 0x67, 0x00, 0x30, 0x07, 0x30, 0x02, 0x06, 0x00, 0x03, 0x01,
2814 0x00, 0xa3, 0x16, 0x30, 0x14, 0x30, 0x12, 0x06, 0x03, 0x55, 0x1d, 0x13, 0x01,
2815 0x01, 0xff, 0x04, 0x08, 0x30, 0x06, 0x01, 0x01, 0xff, 0x02, 0x01, 0x01 };
2816 static const BYTE v1CertWithPubKey[] = {
2817 0x30,0x81,0x95,0x02,0x01,0x01,0x30,0x02,0x06,0x00,0x30,0x15,0x31,0x13,0x30,
2818 0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,
2819 0x6e,0x67,0x00,0x30,0x22,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,
2820 0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,
2821 0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x15,0x31,0x13,0x30,0x11,
2822 0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,
2823 0x67,0x00,0x30,0x22,0x30,0x0d,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x01,
2824 0x01,0x01,0x05,0x00,0x03,0x11,0x00,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,
2825 0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,0x0f,0xa3,0x16,0x30,0x14,0x30,0x12,0x06,
2826 0x03,0x55,0x1d,0x13,0x01,0x01,0xff,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,
2828 static const BYTE v1CertWithPubKeyNoNull[] = {
2829 0x30,0x81,0x93,0x02,0x01,0x01,0x30,0x02,0x06,0x00,0x30,0x15,0x31,0x13,0x30,
2830 0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,
2831 0x6e,0x67,0x00,0x30,0x22,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,
2832 0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,
2833 0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x15,0x31,0x13,0x30,0x11,
2834 0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,
2835 0x67,0x00,0x30,0x20,0x30,0x0b,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x01,
2836 0x01,0x01,0x03,0x11,0x00,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,
2837 0x0a,0x0b,0x0c,0x0d,0x0e,0x0f,0xa3,0x16,0x30,0x14,0x30,0x12,0x06,0x03,0x55,
2838 0x1d,0x13,0x01,0x01,0xff,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
2839 static const BYTE v1CertWithSubjectKeyId[] = {
2840 0x30,0x7b,0x02,0x01,0x01,0x30,0x02,0x06,0x00,0x30,0x15,0x31,0x13,0x30,0x11,
2841 0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,
2842 0x67,0x00,0x30,0x22,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
2843 0x30,0x30,0x30,0x30,0x30,0x5a,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,
2844 0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x15,0x31,0x13,0x30,0x11,0x06,
2845 0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,
2846 0x00,0x30,0x07,0x30,0x02,0x06,0x00,0x03,0x01,0x00,0xa3,0x17,0x30,0x15,0x30,
2847 0x13,0x06,0x03,0x55,0x1d,0x0e,0x04,0x0c,0x04,0x0a,0x4a,0x75,0x61,0x6e,0x20,
2848 0x4c,0x61,0x6e,0x67,0x00 };
2850 static const BYTE serialNum[] = { 0x01 };
2852 static void test_encodeCertToBeSigned(DWORD dwEncoding)
2857 CERT_INFO info = { 0 };
2858 static char oid_rsa_rsa[] = szOID_RSA_RSA;
2859 static char oid_subject_key_identifier[] = szOID_SUBJECT_KEY_IDENTIFIER;
2864 /* Test with NULL pvStructInfo (crashes on win9x) */
2865 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, NULL,
2866 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2867 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
2868 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
2870 /* Test with a V1 cert */
2871 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2872 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2873 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2874 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2877 ok(size == v1Cert[1] + 2, "Expected size %d, got %d\n",
2878 v1Cert[1] + 2, size);
2879 ok(!memcmp(buf, v1Cert, size), "Got unexpected value\n");
2883 info.dwVersion = CERT_V2;
2884 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2885 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2886 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2887 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2890 ok(size == sizeof(v2Cert), "Wrong size %d\n", size);
2891 ok(!memcmp(buf, v2Cert, size), "Got unexpected value\n");
2895 info.dwVersion = CERT_V3;
2896 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2897 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2898 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2899 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2902 ok(size == sizeof(v3Cert), "Wrong size %d\n", size);
2903 ok(!memcmp(buf, v3Cert, size), "Got unexpected value\n");
2906 /* see if a V1 cert can have basic constraints set (RFC3280 says no, but
2907 * API doesn't prevent it)
2909 info.dwVersion = CERT_V1;
2910 info.cExtension = 1;
2911 info.rgExtension = &criticalExt;
2912 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2913 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2914 ok(ret || GetLastError() == OSS_BAD_PTR /* Win9x */,
2915 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
2918 ok(size == sizeof(v1CertWithConstraints), "Wrong size %d\n", size);
2919 ok(!memcmp(buf, v1CertWithConstraints, size), "Got unexpected value\n");
2922 /* test v1 cert with a serial number */
2923 info.SerialNumber.cbData = sizeof(serialNum);
2924 info.SerialNumber.pbData = (BYTE *)serialNum;
2925 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2926 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2929 ok(size == sizeof(v1CertWithSerial), "Wrong size %d\n", size);
2930 ok(!memcmp(buf, v1CertWithSerial, size), "Got unexpected value\n");
2933 /* Test v1 cert with an issuer name, a subject name, and a serial number */
2934 info.Issuer.cbData = sizeof(encodedCommonName);
2935 info.Issuer.pbData = (BYTE *)encodedCommonName;
2936 info.Subject.cbData = sizeof(encodedCommonName);
2937 info.Subject.pbData = (BYTE *)encodedCommonName;
2938 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2939 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2942 ok(size == sizeof(bigCert), "Wrong size %d\n", size);
2943 ok(!memcmp(buf, bigCert, size), "Got unexpected value\n");
2946 /* Add a public key */
2947 info.SubjectPublicKeyInfo.Algorithm.pszObjId = oid_rsa_rsa;
2948 info.SubjectPublicKeyInfo.PublicKey.cbData = sizeof(aKey);
2949 info.SubjectPublicKeyInfo.PublicKey.pbData = (LPBYTE)aKey;
2950 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2951 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2954 ok(size == sizeof(v1CertWithPubKey) ||
2955 size == sizeof(v1CertWithPubKeyNoNull), "Wrong size %d\n", size);
2956 if (size == sizeof(v1CertWithPubKey))
2957 ok(!memcmp(buf, v1CertWithPubKey, size), "Got unexpected value\n");
2958 else if (size == sizeof(v1CertWithPubKeyNoNull))
2959 ok(!memcmp(buf, v1CertWithPubKeyNoNull, size),
2960 "Got unexpected value\n");
2963 /* Remove the public key, and add a subject key identifier extension */
2964 info.SubjectPublicKeyInfo.Algorithm.pszObjId = NULL;
2965 info.SubjectPublicKeyInfo.PublicKey.cbData = 0;
2966 info.SubjectPublicKeyInfo.PublicKey.pbData = NULL;
2967 ext.pszObjId = oid_subject_key_identifier;
2968 ext.fCritical = FALSE;
2969 ext.Value.cbData = sizeof(octetCommonNameValue);
2970 ext.Value.pbData = octetCommonNameValue;
2971 info.cExtension = 1;
2972 info.rgExtension = &ext;
2973 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, &info,
2974 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
2977 ok(size == sizeof(v1CertWithSubjectKeyId), "Wrong size %d\n", size);
2978 ok(!memcmp(buf, v1CertWithSubjectKeyId, size), "Unexpected value\n");
2983 static void test_decodeCertToBeSigned(DWORD dwEncoding)
2985 static const BYTE *corruptCerts[] = { v1Cert, v2Cert, v3Cert,
2986 v1CertWithConstraints, v1CertWithSerial };
2991 /* Test with NULL pbEncoded */
2992 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, NULL, 0,
2993 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
2994 ok(!ret && (GetLastError() == CRYPT_E_ASN1_EOD ||
2995 GetLastError() == OSS_BAD_ARG /* Win9x */),
2996 "Expected CRYPT_E_ASN1_EOD or OSS_BAD_ARG, got %08x\n", GetLastError());
2999 /* Crashes on win9x */
3000 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, NULL, 1,
3001 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
3002 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
3003 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
3005 /* The following certs all fail with CRYPT_E_ASN1_CORRUPT, because at a
3006 * minimum a cert must have a non-zero serial number, an issuer, and a
3009 for (i = 0; i < sizeof(corruptCerts) / sizeof(corruptCerts[0]); i++)
3011 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED,
3012 corruptCerts[i], corruptCerts[i][1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
3014 ok(!ret, "Expected failure\n");
3016 /* Now check with serial number, subject and issuer specified */
3017 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, bigCert,
3018 sizeof(bigCert), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
3019 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3022 CERT_INFO *info = (CERT_INFO *)buf;
3024 ok(size >= sizeof(CERT_INFO), "Wrong size %d\n", size);
3025 ok(info->SerialNumber.cbData == 1,
3026 "Expected serial number size 1, got %d\n", info->SerialNumber.cbData);
3027 ok(*info->SerialNumber.pbData == *serialNum,
3028 "Expected serial number %d, got %d\n", *serialNum,
3029 *info->SerialNumber.pbData);
3030 ok(info->Issuer.cbData == sizeof(encodedCommonName),
3031 "Wrong size %d\n", info->Issuer.cbData);
3032 ok(!memcmp(info->Issuer.pbData, encodedCommonName, info->Issuer.cbData),
3033 "Unexpected issuer\n");
3034 ok(info->Subject.cbData == sizeof(encodedCommonName),
3035 "Wrong size %d\n", info->Subject.cbData);
3036 ok(!memcmp(info->Subject.pbData, encodedCommonName,
3037 info->Subject.cbData), "Unexpected subject\n");
3040 /* Check again with pub key specified */
3041 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED,
3042 v1CertWithPubKey, sizeof(v1CertWithPubKey), CRYPT_DECODE_ALLOC_FLAG, NULL,
3044 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3047 CERT_INFO *info = (CERT_INFO *)buf;
3049 ok(size >= sizeof(CERT_INFO), "Wrong size %d\n", size);
3050 ok(info->SerialNumber.cbData == 1,
3051 "Expected serial number size 1, got %d\n", info->SerialNumber.cbData);
3052 ok(*info->SerialNumber.pbData == *serialNum,
3053 "Expected serial number %d, got %d\n", *serialNum,
3054 *info->SerialNumber.pbData);
3055 ok(info->Issuer.cbData == sizeof(encodedCommonName),
3056 "Wrong size %d\n", info->Issuer.cbData);
3057 ok(!memcmp(info->Issuer.pbData, encodedCommonName, info->Issuer.cbData),
3058 "Unexpected issuer\n");
3059 ok(info->Subject.cbData == sizeof(encodedCommonName),
3060 "Wrong size %d\n", info->Subject.cbData);
3061 ok(!memcmp(info->Subject.pbData, encodedCommonName,
3062 info->Subject.cbData), "Unexpected subject\n");
3063 ok(!strcmp(info->SubjectPublicKeyInfo.Algorithm.pszObjId,
3064 szOID_RSA_RSA), "Expected szOID_RSA_RSA, got %s\n",
3065 info->SubjectPublicKeyInfo.Algorithm.pszObjId);
3066 ok(info->SubjectPublicKeyInfo.PublicKey.cbData == sizeof(aKey),
3067 "Wrong size %d\n", info->SubjectPublicKeyInfo.PublicKey.cbData);
3068 ok(!memcmp(info->SubjectPublicKeyInfo.PublicKey.pbData, aKey,
3069 sizeof(aKey)), "Unexpected public key\n");
3074 static const BYTE hash[] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 0xa, 0xb, 0xc, 0xd,
3077 static const BYTE signedBigCert[] = {
3078 0x30, 0x81, 0x93, 0x30, 0x7a, 0x02, 0x01, 0x01, 0x30, 0x02, 0x06, 0x00, 0x30,
3079 0x15, 0x31, 0x13, 0x30, 0x11, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13, 0x0a, 0x4a,
3080 0x75, 0x61, 0x6e, 0x20, 0x4c, 0x61, 0x6e, 0x67, 0x00, 0x30, 0x22, 0x18, 0x0f,
3081 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30,
3082 0x30, 0x5a, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30,
3083 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x30, 0x15, 0x31, 0x13, 0x30, 0x11, 0x06,
3084 0x03, 0x55, 0x04, 0x03, 0x13, 0x0a, 0x4a, 0x75, 0x61, 0x6e, 0x20, 0x4c, 0x61,
3085 0x6e, 0x67, 0x00, 0x30, 0x07, 0x30, 0x02, 0x06, 0x00, 0x03, 0x01, 0x00, 0xa3,
3086 0x16, 0x30, 0x14, 0x30, 0x12, 0x06, 0x03, 0x55, 0x1d, 0x13, 0x01, 0x01, 0xff,
3087 0x04, 0x08, 0x30, 0x06, 0x01, 0x01, 0xff, 0x02, 0x01, 0x01, 0x30, 0x02, 0x06,
3088 0x00, 0x03, 0x11, 0x00, 0x0f, 0x0e, 0x0d, 0x0c, 0x0b, 0x0a, 0x09, 0x08, 0x07,
3089 0x06, 0x05, 0x04, 0x03, 0x02, 0x01, 0x00 };
3091 static void test_encodeCert(DWORD dwEncoding)
3093 /* Note the SignatureAlgorithm must match that in the encoded cert. Note
3094 * also that bigCert is a NULL-terminated string, so don't count its
3095 * last byte (otherwise the signed cert won't decode.)
3097 CERT_SIGNED_CONTENT_INFO info = { { sizeof(bigCert), (BYTE *)bigCert },
3098 { NULL, { 0, NULL } }, { sizeof(hash), (BYTE *)hash, 0 } };
3103 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT, &info,
3104 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &bufSize);
3105 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3108 ok(bufSize == sizeof(signedBigCert), "Wrong size %d\n", bufSize);
3109 ok(!memcmp(buf, signedBigCert, bufSize), "Unexpected cert\n");
3114 static void test_decodeCert(DWORD dwEncoding)
3120 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT, signedBigCert,
3121 sizeof(signedBigCert), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
3122 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3125 CERT_SIGNED_CONTENT_INFO *info = (CERT_SIGNED_CONTENT_INFO *)buf;
3127 ok(info->ToBeSigned.cbData == sizeof(bigCert),
3128 "Wrong cert size %d\n", info->ToBeSigned.cbData);
3129 ok(!memcmp(info->ToBeSigned.pbData, bigCert, info->ToBeSigned.cbData),
3130 "Unexpected cert\n");
3131 ok(info->Signature.cbData == sizeof(hash),
3132 "Wrong signature size %d\n", info->Signature.cbData);
3133 ok(!memcmp(info->Signature.pbData, hash, info->Signature.cbData),
3134 "Unexpected signature\n");
3137 /* A signed cert decodes as a CERT_INFO too */
3138 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_TO_BE_SIGNED, signedBigCert,
3139 sizeof(signedBigCert), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
3140 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3143 CERT_INFO *info = (CERT_INFO *)buf;
3145 ok(size >= sizeof(CERT_INFO), "Wrong size %d\n", size);
3146 ok(info->SerialNumber.cbData == 1,
3147 "Expected serial number size 1, got %d\n", info->SerialNumber.cbData);
3148 ok(*info->SerialNumber.pbData == *serialNum,
3149 "Expected serial number %d, got %d\n", *serialNum,
3150 *info->SerialNumber.pbData);
3151 ok(info->Issuer.cbData == sizeof(encodedCommonName),
3152 "Wrong size %d\n", info->Issuer.cbData);
3153 ok(!memcmp(info->Issuer.pbData, encodedCommonName, info->Issuer.cbData),
3154 "Unexpected issuer\n");
3155 ok(info->Subject.cbData == sizeof(encodedCommonName),
3156 "Wrong size %d\n", info->Subject.cbData);
3157 ok(!memcmp(info->Subject.pbData, encodedCommonName,
3158 info->Subject.cbData), "Unexpected subject\n");
3163 static const BYTE emptyDistPoint[] = { 0x30, 0x02, 0x30, 0x00 };
3164 static const BYTE distPointWithUrl[] = { 0x30, 0x19, 0x30, 0x17, 0xa0, 0x15,
3165 0xa0, 0x13, 0x86, 0x11, 0x68, 0x74, 0x74, 0x70, 0x3a, 0x2f, 0x2f, 0x77, 0x69,
3166 0x6e, 0x65, 0x68, 0x71, 0x2e, 0x6f, 0x72, 0x67 };
3167 static const BYTE distPointWithReason[] = { 0x30, 0x06, 0x30, 0x04, 0x81, 0x02,
3169 static const BYTE distPointWithIssuer[] = { 0x30, 0x17, 0x30, 0x15, 0xa2, 0x13,
3170 0x86, 0x11, 0x68, 0x74, 0x74, 0x70, 0x3a, 0x2f, 0x2f, 0x77, 0x69, 0x6e, 0x65,
3171 0x68, 0x71, 0x2e, 0x6f, 0x72, 0x67 };
3172 static const BYTE distPointWithUrlAndIssuer[] = { 0x30, 0x2e, 0x30, 0x2c, 0xa0,
3173 0x15, 0xa0, 0x13, 0x86, 0x11, 0x68, 0x74, 0x74, 0x70, 0x3a, 0x2f, 0x2f, 0x77,
3174 0x69, 0x6e, 0x65, 0x68, 0x71, 0x2e, 0x6f, 0x72, 0x67, 0xa2, 0x13, 0x86, 0x11,
3175 0x68, 0x74, 0x74, 0x70, 0x3a, 0x2f, 0x2f, 0x77, 0x69, 0x6e, 0x65, 0x68, 0x71,
3176 0x2e, 0x6f, 0x72, 0x67 };
3177 static const BYTE crlReason = CRL_REASON_KEY_COMPROMISE |
3178 CRL_REASON_AFFILIATION_CHANGED;
3180 static void test_encodeCRLDistPoints(DWORD dwEncoding)
3182 CRL_DIST_POINTS_INFO info = { 0 };
3183 CRL_DIST_POINT point = { { 0 } };
3184 CERT_ALT_NAME_ENTRY entry = { 0 };
3189 /* Test with an empty info */
3190 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3191 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3192 ok(!ret && GetLastError() == E_INVALIDARG,
3193 "Expected E_INVALIDARG, got %08x\n", GetLastError());
3194 /* Test with one empty dist point */
3195 info.cDistPoint = 1;
3196 info.rgDistPoint = &point;
3197 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3198 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3199 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3202 ok(size == sizeof(emptyDistPoint), "Wrong size %d\n", size);
3203 ok(!memcmp(buf, emptyDistPoint, size), "Unexpected value\n");
3206 /* A dist point with an invalid name */
3207 point.DistPointName.dwDistPointNameChoice = CRL_DIST_POINT_FULL_NAME;
3208 entry.dwAltNameChoice = CERT_ALT_NAME_URL;
3209 U(entry).pwszURL = (LPWSTR)nihongoURL;
3210 U(point.DistPointName).FullName.cAltEntry = 1;
3211 U(point.DistPointName).FullName.rgAltEntry = &entry;
3212 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3213 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3214 ok(!ret && GetLastError() == CRYPT_E_INVALID_IA5_STRING,
3215 "Expected CRYPT_E_INVALID_IA5_STRING, got %08x\n", GetLastError());
3216 /* The first invalid character is at index 7 */
3217 ok(GET_CERT_ALT_NAME_VALUE_ERR_INDEX(size) == 7,
3218 "Expected invalid char at index 7, got %d\n",
3219 GET_CERT_ALT_NAME_VALUE_ERR_INDEX(size));
3220 /* A dist point with (just) a valid name */
3221 U(entry).pwszURL = (LPWSTR)url;
3222 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3223 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3224 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3227 ok(size == sizeof(distPointWithUrl), "Wrong size %d\n", size);
3228 ok(!memcmp(buf, distPointWithUrl, size), "Unexpected value\n");
3231 /* A dist point with (just) reason flags */
3232 point.DistPointName.dwDistPointNameChoice = CRL_DIST_POINT_NO_NAME;
3233 point.ReasonFlags.cbData = sizeof(crlReason);
3234 point.ReasonFlags.pbData = (LPBYTE)&crlReason;
3235 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3236 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3237 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3240 ok(size == sizeof(distPointWithReason), "Wrong size %d\n", size);
3241 ok(!memcmp(buf, distPointWithReason, size), "Unexpected value\n");
3244 /* A dist point with just an issuer */
3245 point.ReasonFlags.cbData = 0;
3246 point.CRLIssuer.cAltEntry = 1;
3247 point.CRLIssuer.rgAltEntry = &entry;
3248 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3249 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3250 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3253 ok(size == sizeof(distPointWithIssuer), "Wrong size %d\n", size);
3254 ok(!memcmp(buf, distPointWithIssuer, size), "Unexpected value\n");
3257 /* A dist point with both a name and an issuer */
3258 point.DistPointName.dwDistPointNameChoice = CRL_DIST_POINT_FULL_NAME;
3259 ret = pCryptEncodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS, &info,
3260 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3261 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3264 ok(size == sizeof(distPointWithUrlAndIssuer),
3265 "Wrong size %d\n", size);
3266 ok(!memcmp(buf, distPointWithUrlAndIssuer, size), "Unexpected value\n");
3271 static void test_decodeCRLDistPoints(DWORD dwEncoding)
3276 PCRL_DIST_POINTS_INFO info;
3277 PCRL_DIST_POINT point;
3278 PCERT_ALT_NAME_ENTRY entry;
3280 ret = pCryptDecodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS,
3281 emptyDistPoint, emptyDistPoint[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
3283 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3286 info = (PCRL_DIST_POINTS_INFO)buf;
3287 ok(size >= sizeof(CRL_DIST_POINTS_INFO) + sizeof(CRL_DIST_POINT),
3288 "Wrong size %d\n", size);
3289 ok(info->cDistPoint == 1, "Expected 1 dist points, got %d\n",
3291 point = info->rgDistPoint;
3292 ok(point->DistPointName.dwDistPointNameChoice == CRL_DIST_POINT_NO_NAME,
3293 "Expected CRL_DIST_POINT_NO_NAME, got %d\n",
3294 point->DistPointName.dwDistPointNameChoice);
3295 ok(point->ReasonFlags.cbData == 0, "Expected no reason\n");
3296 ok(point->CRLIssuer.cAltEntry == 0, "Expected no issuer\n");
3299 ret = pCryptDecodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS,
3300 distPointWithUrl, distPointWithUrl[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
3302 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3305 info = (PCRL_DIST_POINTS_INFO)buf;
3306 ok(size >= sizeof(CRL_DIST_POINTS_INFO) + sizeof(CRL_DIST_POINT),
3307 "Wrong size %d\n", size);
3308 ok(info->cDistPoint == 1, "Expected 1 dist points, got %d\n",
3310 point = info->rgDistPoint;
3311 ok(point->DistPointName.dwDistPointNameChoice ==
3312 CRL_DIST_POINT_FULL_NAME,
3313 "Expected CRL_DIST_POINT_FULL_NAME, got %d\n",
3314 point->DistPointName.dwDistPointNameChoice);
3315 ok(U(point->DistPointName).FullName.cAltEntry == 1,
3316 "Expected 1 name entry, got %d\n",
3317 U(point->DistPointName).FullName.cAltEntry);
3318 entry = U(point->DistPointName).FullName.rgAltEntry;
3319 ok(entry->dwAltNameChoice == CERT_ALT_NAME_URL,
3320 "Expected CERT_ALT_NAME_URL, got %d\n", entry->dwAltNameChoice);
3321 ok(!lstrcmpW(U(*entry).pwszURL, url), "Unexpected name\n");
3322 ok(point->ReasonFlags.cbData == 0, "Expected no reason\n");
3323 ok(point->CRLIssuer.cAltEntry == 0, "Expected no issuer\n");
3326 ret = pCryptDecodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS,
3327 distPointWithReason, distPointWithReason[1] + 2, CRYPT_DECODE_ALLOC_FLAG,
3329 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3332 info = (PCRL_DIST_POINTS_INFO)buf;
3333 ok(size >= sizeof(CRL_DIST_POINTS_INFO) + sizeof(CRL_DIST_POINT),
3334 "Wrong size %d\n", size);
3335 ok(info->cDistPoint == 1, "Expected 1 dist points, got %d\n",
3337 point = info->rgDistPoint;
3338 ok(point->DistPointName.dwDistPointNameChoice ==
3339 CRL_DIST_POINT_NO_NAME,
3340 "Expected CRL_DIST_POINT_NO_NAME, got %d\n",
3341 point->DistPointName.dwDistPointNameChoice);
3342 ok(point->ReasonFlags.cbData == sizeof(crlReason),
3343 "Expected reason length\n");
3344 ok(!memcmp(point->ReasonFlags.pbData, &crlReason, sizeof(crlReason)),
3345 "Unexpected reason\n");
3346 ok(point->CRLIssuer.cAltEntry == 0, "Expected no issuer\n");
3349 ret = pCryptDecodeObjectEx(dwEncoding, X509_CRL_DIST_POINTS,
3350 distPointWithUrlAndIssuer, distPointWithUrlAndIssuer[1] + 2,
3351 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
3352 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3355 info = (PCRL_DIST_POINTS_INFO)buf;
3356 ok(size >= sizeof(CRL_DIST_POINTS_INFO) + sizeof(CRL_DIST_POINT),
3357 "Wrong size %d\n", size);
3358 ok(info->cDistPoint == 1, "Expected 1 dist points, got %d\n",
3360 point = info->rgDistPoint;
3361 ok(point->DistPointName.dwDistPointNameChoice ==
3362 CRL_DIST_POINT_FULL_NAME,
3363 "Expected CRL_DIST_POINT_FULL_NAME, got %d\n",
3364 point->DistPointName.dwDistPointNameChoice);
3365 ok(U(point->DistPointName).FullName.cAltEntry == 1,
3366 "Expected 1 name entry, got %d\n",
3367 U(point->DistPointName).FullName.cAltEntry);
3368 entry = U(point->DistPointName).FullName.rgAltEntry;
3369 ok(entry->dwAltNameChoice == CERT_ALT_NAME_URL,
3370 "Expected CERT_ALT_NAME_URL, got %d\n", entry->dwAltNameChoice);
3371 ok(!lstrcmpW(U(*entry).pwszURL, url), "Unexpected name\n");
3372 ok(point->ReasonFlags.cbData == 0, "Expected no reason\n");
3373 ok(point->CRLIssuer.cAltEntry == 1,
3374 "Expected 1 issuer entry, got %d\n", point->CRLIssuer.cAltEntry);
3375 entry = point->CRLIssuer.rgAltEntry;
3376 ok(entry->dwAltNameChoice == CERT_ALT_NAME_URL,
3377 "Expected CERT_ALT_NAME_URL, got %d\n", entry->dwAltNameChoice);
3378 ok(!lstrcmpW(U(*entry).pwszURL, url), "Unexpected name\n");
3383 static const BYTE badFlagsIDP[] = { 0x30,0x06,0x81,0x01,0xff,0x82,0x01,0xff };
3384 static const BYTE emptyNameIDP[] = { 0x30,0x04,0xa0,0x02,0xa0,0x00 };
3385 static const BYTE urlIDP[] = { 0x30,0x17,0xa0,0x15,0xa0,0x13,0x86,0x11,0x68,
3386 0x74,0x74,0x70,0x3a,0x2f,0x2f,0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,
3389 static void test_encodeCRLIssuingDistPoint(DWORD dwEncoding)
3394 CRL_ISSUING_DIST_POINT point = { { 0 } };
3395 CERT_ALT_NAME_ENTRY entry;
3397 ret = pCryptEncodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT, NULL,
3398 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3399 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
3401 skip("no X509_ISSUING_DIST_POINT encode support\n");
3404 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
3405 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
3406 ret = pCryptEncodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT, &point,
3407 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3408 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3411 ok(size == sizeof(emptySequence), "Unexpected size %d\n", size);
3412 ok(!memcmp(buf, emptySequence, size), "Unexpected value\n");
3415 /* nonsensical flags */
3416 point.fOnlyContainsUserCerts = TRUE;
3417 point.fOnlyContainsCACerts = TRUE;
3418 ret = pCryptEncodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT, &point,
3419 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3420 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3423 ok(size == sizeof(badFlagsIDP), "Unexpected size %d\n", size);
3424 ok(!memcmp(buf, badFlagsIDP, size), "Unexpected value\n");
3427 /* unimplemented name type */
3428 point.fOnlyContainsCACerts = point.fOnlyContainsUserCerts = FALSE;
3429 point.DistPointName.dwDistPointNameChoice = CRL_DIST_POINT_ISSUER_RDN_NAME;
3430 ret = pCryptEncodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT, &point,
3431 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3432 ok(!ret && GetLastError() == E_INVALIDARG,
3433 "Expected E_INVALIDARG, got %08x\n", GetLastError());
3435 point.DistPointName.dwDistPointNameChoice = CRL_DIST_POINT_FULL_NAME;
3436 U(point.DistPointName).FullName.cAltEntry = 0;
3437 ret = pCryptEncodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT, &point,
3438 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3439 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3442 ok(size == sizeof(emptyNameIDP), "Unexpected size %d\n", size);
3443 ok(!memcmp(buf, emptyNameIDP, size), "Unexpected value\n");
3446 /* name with URL entry */
3447 entry.dwAltNameChoice = CERT_ALT_NAME_URL;
3448 U(entry).pwszURL = (LPWSTR)url;
3449 U(point.DistPointName).FullName.cAltEntry = 1;
3450 U(point.DistPointName).FullName.rgAltEntry = &entry;
3451 ret = pCryptEncodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT, &point,
3452 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3453 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3456 ok(size == sizeof(urlIDP), "Unexpected size %d\n", size);
3457 ok(!memcmp(buf, urlIDP, size), "Unexpected value\n");
3462 static void compareAltNameEntry(const CERT_ALT_NAME_ENTRY *expected,
3463 const CERT_ALT_NAME_ENTRY *got)
3465 ok(expected->dwAltNameChoice == got->dwAltNameChoice,
3466 "Expected name choice %d, got %d\n", expected->dwAltNameChoice,
3467 got->dwAltNameChoice);
3468 if (expected->dwAltNameChoice == got->dwAltNameChoice)
3470 switch (got->dwAltNameChoice)
3472 case CERT_ALT_NAME_RFC822_NAME:
3473 case CERT_ALT_NAME_DNS_NAME:
3474 case CERT_ALT_NAME_EDI_PARTY_NAME:
3475 case CERT_ALT_NAME_URL:
3476 case CERT_ALT_NAME_REGISTERED_ID:
3477 ok((!U(*expected).pwszURL && !U(*got).pwszURL) ||
3478 (!U(*expected).pwszURL && !lstrlenW(U(*got).pwszURL)) ||
3479 (!U(*got).pwszURL && !lstrlenW(U(*expected).pwszURL)) ||
3480 !lstrcmpW(U(*expected).pwszURL, U(*got).pwszURL),
3481 "Unexpected name\n");
3483 case CERT_ALT_NAME_X400_ADDRESS:
3484 case CERT_ALT_NAME_DIRECTORY_NAME:
3485 case CERT_ALT_NAME_IP_ADDRESS:
3486 ok(U(*got).IPAddress.cbData == U(*expected).IPAddress.cbData,
3487 "Unexpected IP address length %d\n", U(*got).IPAddress.cbData);
3488 ok(!memcmp(U(*got).IPAddress.pbData, U(*got).IPAddress.pbData,
3489 U(*got).IPAddress.cbData), "Unexpected value\n");
3495 static void compareAltNameInfo(const CERT_ALT_NAME_INFO *expected,
3496 const CERT_ALT_NAME_INFO *got)
3500 ok(expected->cAltEntry == got->cAltEntry, "Expected %d entries, got %d\n",
3501 expected->cAltEntry, got->cAltEntry);
3502 for (i = 0; i < min(expected->cAltEntry, got->cAltEntry); i++)
3503 compareAltNameEntry(&expected->rgAltEntry[i], &got->rgAltEntry[i]);
3506 static void compareDistPointName(const CRL_DIST_POINT_NAME *expected,
3507 const CRL_DIST_POINT_NAME *got)
3509 ok(got->dwDistPointNameChoice == expected->dwDistPointNameChoice,
3510 "Unexpected name choice %d\n", got->dwDistPointNameChoice);
3511 if (got->dwDistPointNameChoice == CRL_DIST_POINT_FULL_NAME)
3512 compareAltNameInfo(&(U(*expected).FullName), &(U(*got).FullName));
3515 static void compareCRLIssuingDistPoints(const CRL_ISSUING_DIST_POINT *expected,
3516 const CRL_ISSUING_DIST_POINT *got)
3518 compareDistPointName(&expected->DistPointName, &got->DistPointName);
3519 ok(got->fOnlyContainsUserCerts == expected->fOnlyContainsUserCerts,
3520 "Unexpected fOnlyContainsUserCerts\n");
3521 ok(got->fOnlyContainsCACerts == expected->fOnlyContainsCACerts,
3522 "Unexpected fOnlyContainsCACerts\n");
3523 ok(got->OnlySomeReasonFlags.cbData == expected->OnlySomeReasonFlags.cbData,
3524 "Unexpected reason flags\n");
3525 ok(got->fIndirectCRL == expected->fIndirectCRL,
3526 "Unexpected fIndirectCRL\n");
3529 static void test_decodeCRLIssuingDistPoint(DWORD dwEncoding)
3534 CRL_ISSUING_DIST_POINT point = { { 0 } };
3536 ret = pCryptDecodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT,
3537 emptySequence, emptySequence[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
3539 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
3541 skip("no X509_ISSUING_DIST_POINT decode support\n");
3544 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3547 compareCRLIssuingDistPoints(&point, (PCRL_ISSUING_DIST_POINT)buf);
3550 ret = pCryptDecodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT,
3551 badFlagsIDP, badFlagsIDP[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
3553 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3556 point.fOnlyContainsUserCerts = point.fOnlyContainsCACerts = TRUE;
3557 compareCRLIssuingDistPoints(&point, (PCRL_ISSUING_DIST_POINT)buf);
3560 ret = pCryptDecodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT,
3561 emptyNameIDP, emptyNameIDP[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
3563 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3566 point.fOnlyContainsCACerts = point.fOnlyContainsUserCerts = FALSE;
3567 point.DistPointName.dwDistPointNameChoice = CRL_DIST_POINT_FULL_NAME;
3568 U(point.DistPointName).FullName.cAltEntry = 0;
3569 compareCRLIssuingDistPoints(&point, (PCRL_ISSUING_DIST_POINT)buf);
3572 ret = pCryptDecodeObjectEx(dwEncoding, X509_ISSUING_DIST_POINT,
3573 urlIDP, urlIDP[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
3574 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
3577 CERT_ALT_NAME_ENTRY entry;
3579 entry.dwAltNameChoice = CERT_ALT_NAME_URL;
3580 U(entry).pwszURL = (LPWSTR)url;
3581 U(point.DistPointName).FullName.cAltEntry = 1;
3582 U(point.DistPointName).FullName.rgAltEntry = &entry;
3583 compareCRLIssuingDistPoints(&point, (PCRL_ISSUING_DIST_POINT)buf);
3588 static const BYTE v1CRL[] = { 0x30, 0x15, 0x30, 0x02, 0x06, 0x00, 0x18, 0x0f,
3589 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30,
3591 static const BYTE v2CRL[] = { 0x30, 0x18, 0x02, 0x01, 0x01, 0x30, 0x02, 0x06,
3592 0x00, 0x18, 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30,
3593 0x30, 0x30, 0x30, 0x30, 0x5a };
3594 static const BYTE v1CRLWithIssuer[] = { 0x30, 0x2c, 0x30, 0x02, 0x06, 0x00,
3595 0x30, 0x15, 0x31, 0x13, 0x30, 0x11, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13, 0x0a,
3596 0x4a, 0x75, 0x61, 0x6e, 0x20, 0x4c, 0x61, 0x6e, 0x67, 0x00, 0x18, 0x0f, 0x31,
3597 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30,
3599 static const BYTE v1CRLWithIssuerAndEmptyEntry[] = { 0x30, 0x43, 0x30, 0x02,
3600 0x06, 0x00, 0x30, 0x15, 0x31, 0x13, 0x30, 0x11, 0x06, 0x03, 0x55, 0x04, 0x03,
3601 0x13, 0x0a, 0x4a, 0x75, 0x61, 0x6e, 0x20, 0x4c, 0x61, 0x6e, 0x67, 0x00, 0x18,
3602 0x0f, 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30,
3603 0x30, 0x30, 0x5a, 0x30, 0x15, 0x30, 0x13, 0x02, 0x00, 0x18, 0x0f, 0x31, 0x36,
3604 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a };
3605 static const BYTE v1CRLWithIssuerAndEntry[] = { 0x30, 0x44, 0x30, 0x02, 0x06,
3606 0x00, 0x30, 0x15, 0x31, 0x13, 0x30, 0x11, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13,
3607 0x0a, 0x4a, 0x75, 0x61, 0x6e, 0x20, 0x4c, 0x61, 0x6e, 0x67, 0x00, 0x18, 0x0f,
3608 0x31, 0x36, 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30,
3609 0x30, 0x5a, 0x30, 0x16, 0x30, 0x14, 0x02, 0x01, 0x01, 0x18, 0x0f, 0x31, 0x36,
3610 0x30, 0x31, 0x30, 0x31, 0x30, 0x31, 0x30, 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a };
3611 static const BYTE v1CRLWithEntryExt[] = { 0x30,0x5a,0x30,0x02,0x06,0x00,0x30,
3612 0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,
3613 0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,
3614 0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x2c,0x30,0x2a,0x02,0x01,
3615 0x01,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,0x30,0x30,0x30,
3616 0x30,0x30,0x5a,0x30,0x14,0x30,0x12,0x06,0x03,0x55,0x1d,0x13,0x01,0x01,0xff,
3617 0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
3618 static const BYTE v1CRLWithExt[] = { 0x30,0x5c,0x30,0x02,0x06,0x00,0x30,0x15,
3619 0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,
3620 0x20,0x4c,0x61,0x6e,0x67,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,
3621 0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x16,0x30,0x14,0x02,0x01,0x01,
3622 0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,0x30,0x30,0x30,0x30,
3623 0x30,0x5a,0xa0,0x16,0x30,0x14,0x30,0x12,0x06,0x03,0x55,0x1d,0x13,0x01,0x01,
3624 0xff,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
3625 static const BYTE v2CRLWithExt[] = { 0x30,0x5c,0x02,0x01,0x01,0x30,0x02,0x06,
3626 0x00,0x30,0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,
3627 0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,
3628 0x30,0x31,0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x16,0x30,0x14,
3629 0x02,0x01,0x01,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,0x30,
3630 0x30,0x30,0x30,0x30,0x5a,0xa0,0x13,0x30,0x11,0x30,0x0f,0x06,0x03,0x55,0x1d,
3631 0x13,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
3632 static const BYTE v2CRLWithIssuingDistPoint[] = { 0x30,0x5c,0x02,0x01,0x01,
3633 0x30,0x02,0x06,0x00,0x30,0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,
3634 0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00,0x18,0x0f,0x31,
3635 0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,
3636 0x16,0x30,0x14,0x02,0x01,0x01,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,
3637 0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0xa0,0x13,0x30,0x11,0x30,0x0f,0x06,
3638 0x03,0x55,0x1d,0x13,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01 };
3640 static void test_encodeCRLToBeSigned(DWORD dwEncoding)
3644 static CHAR oid_issuing_dist_point[] = szOID_ISSUING_DIST_POINT;
3646 CRL_INFO info = { 0 };
3647 CRL_ENTRY entry = { { 0 }, { 0 }, 0, 0 };
3650 /* Test with a V1 CRL */
3651 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3652 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3653 ok(ret || broken(GetLastError() == OSS_DATA_ERROR /* Win9x */),
3654 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3657 ok(size == sizeof(v1CRL), "Wrong size %d\n", size);
3658 ok(!memcmp(buf, v1CRL, size), "Got unexpected value\n");
3662 info.dwVersion = CRL_V2;
3663 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3664 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3665 ok(ret || broken(GetLastError() == OSS_DATA_ERROR /* Win9x */),
3666 "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3669 ok(size == v2CRL[1] + 2, "Expected size %d, got %d\n",
3670 v2CRL[1] + 2, size);
3671 ok(!memcmp(buf, v2CRL, size), "Got unexpected value\n");
3674 /* v1 CRL with a name */
3675 info.dwVersion = CRL_V1;
3676 info.Issuer.cbData = sizeof(encodedCommonName);
3677 info.Issuer.pbData = (BYTE *)encodedCommonName;
3678 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3679 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3680 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3683 ok(size == sizeof(v1CRLWithIssuer), "Wrong size %d\n", size);
3684 ok(!memcmp(buf, v1CRLWithIssuer, size), "Got unexpected value\n");
3689 /* v1 CRL with a name and a NULL entry pointer (crashes on win9x) */
3691 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3692 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3693 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
3694 "Expected STATUS_ACCESS_VIOLATION, got %08x\n", GetLastError());
3696 /* now set an empty entry */
3698 info.rgCRLEntry = &entry;
3699 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3700 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3703 ok(size == sizeof(v1CRLWithIssuerAndEmptyEntry),
3704 "Wrong size %d\n", size);
3705 ok(!memcmp(buf, v1CRLWithIssuerAndEmptyEntry, size),
3706 "Got unexpected value\n");
3709 /* an entry with a serial number */
3710 entry.SerialNumber.cbData = sizeof(serialNum);
3711 entry.SerialNumber.pbData = (BYTE *)serialNum;
3712 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3713 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3716 ok(size == sizeof(v1CRLWithIssuerAndEntry),
3717 "Wrong size %d\n", size);
3718 ok(!memcmp(buf, v1CRLWithIssuerAndEntry, size),
3719 "Got unexpected value\n");
3722 /* an entry with an extension */
3723 entry.cExtension = 1;
3724 entry.rgExtension = &criticalExt;
3725 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3726 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3727 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3730 ok(size == sizeof(v1CRLWithEntryExt), "Wrong size %d\n", size);
3731 ok(!memcmp(buf, v1CRLWithEntryExt, size), "Got unexpected value\n");
3734 /* a CRL with an extension */
3735 entry.cExtension = 0;
3736 info.cExtension = 1;
3737 info.rgExtension = &criticalExt;
3738 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3739 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3740 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3743 ok(size == sizeof(v1CRLWithExt), "Wrong size %d\n", size);
3744 ok(!memcmp(buf, v1CRLWithExt, size), "Got unexpected value\n");
3747 /* a v2 CRL with an extension, this time non-critical */
3748 info.dwVersion = CRL_V2;
3749 info.rgExtension = &nonCriticalExt;
3750 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3751 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3752 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3755 ok(size == sizeof(v2CRLWithExt), "Wrong size %d\n", size);
3756 ok(!memcmp(buf, v2CRLWithExt, size), "Got unexpected value\n");
3759 /* a v2 CRL with an issuing dist point extension */
3760 ext.pszObjId = oid_issuing_dist_point;
3761 ext.fCritical = TRUE;
3762 ext.Value.cbData = sizeof(urlIDP);
3763 ext.Value.pbData = (LPBYTE)urlIDP;
3764 entry.rgExtension = &ext;
3765 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED, &info,
3766 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
3767 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
3770 ok(size == sizeof(v2CRLWithIssuingDistPoint), "Wrong size %d\n", size);
3771 ok(!memcmp(buf, v2CRLWithIssuingDistPoint, size), "Unexpected value\n");
3776 static const BYTE verisignCRL[] = { 0x30, 0x82, 0x01, 0xb1, 0x30, 0x82, 0x01,
3777 0x1a, 0x02, 0x01, 0x01, 0x30, 0x0d, 0x06, 0x09, 0x2a, 0x86, 0x48, 0x86, 0xf7,
3778 0x0d, 0x01, 0x01, 0x02, 0x05, 0x00, 0x30, 0x61, 0x31, 0x11, 0x30, 0x0f, 0x06,
3779 0x03, 0x55, 0x04, 0x07, 0x13, 0x08, 0x49, 0x6e, 0x74, 0x65, 0x72, 0x6e, 0x65,
3780 0x74, 0x31, 0x17, 0x30, 0x15, 0x06, 0x03, 0x55, 0x04, 0x0a, 0x13, 0x0e, 0x56,
3781 0x65, 0x72, 0x69, 0x53, 0x69, 0x67, 0x6e, 0x2c, 0x20, 0x49, 0x6e, 0x63, 0x2e,
3782 0x31, 0x33, 0x30, 0x31, 0x06, 0x03, 0x55, 0x04, 0x0b, 0x13, 0x2a, 0x56, 0x65,
3783 0x72, 0x69, 0x53, 0x69, 0x67, 0x6e, 0x20, 0x43, 0x6f, 0x6d, 0x6d, 0x65, 0x72,
3784 0x63, 0x69, 0x61, 0x6c, 0x20, 0x53, 0x6f, 0x66, 0x74, 0x77, 0x61, 0x72, 0x65,
3785 0x20, 0x50, 0x75, 0x62, 0x6c, 0x69, 0x73, 0x68, 0x65, 0x72, 0x73, 0x20, 0x43,
3786 0x41, 0x17, 0x0d, 0x30, 0x31, 0x30, 0x33, 0x32, 0x34, 0x30, 0x30, 0x30, 0x30,
3787 0x30, 0x30, 0x5a, 0x17, 0x0d, 0x30, 0x34, 0x30, 0x31, 0x30, 0x37, 0x32, 0x33,
3788 0x35, 0x39, 0x35, 0x39, 0x5a, 0x30, 0x69, 0x30, 0x21, 0x02, 0x10, 0x1b, 0x51,
3789 0x90, 0xf7, 0x37, 0x24, 0x39, 0x9c, 0x92, 0x54, 0xcd, 0x42, 0x46, 0x37, 0x99,
3790 0x6a, 0x17, 0x0d, 0x30, 0x31, 0x30, 0x31, 0x33, 0x30, 0x30, 0x30, 0x30, 0x31,
3791 0x32, 0x34, 0x5a, 0x30, 0x21, 0x02, 0x10, 0x75, 0x0e, 0x40, 0xff, 0x97, 0xf0,
3792 0x47, 0xed, 0xf5, 0x56, 0xc7, 0x08, 0x4e, 0xb1, 0xab, 0xfd, 0x17, 0x0d, 0x30,
3793 0x31, 0x30, 0x31, 0x33, 0x31, 0x30, 0x30, 0x30, 0x30, 0x34, 0x39, 0x5a, 0x30,
3794 0x21, 0x02, 0x10, 0x77, 0xe6, 0x5a, 0x43, 0x59, 0x93, 0x5d, 0x5f, 0x7a, 0x75,
3795 0x80, 0x1a, 0xcd, 0xad, 0xc2, 0x22, 0x17, 0x0d, 0x30, 0x30, 0x30, 0x38, 0x33,
3796 0x31, 0x30, 0x30, 0x30, 0x30, 0x35, 0x36, 0x5a, 0xa0, 0x1a, 0x30, 0x18, 0x30,
3797 0x09, 0x06, 0x03, 0x55, 0x1d, 0x13, 0x04, 0x02, 0x30, 0x00, 0x30, 0x0b, 0x06,
3798 0x03, 0x55, 0x1d, 0x0f, 0x04, 0x04, 0x03, 0x02, 0x05, 0xa0, 0x30, 0x0d, 0x06,
3799 0x09, 0x2a, 0x86, 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x01, 0x02, 0x05, 0x00, 0x03,
3800 0x81, 0x81, 0x00, 0x18, 0x2c, 0xe8, 0xfc, 0x16, 0x6d, 0x91, 0x4a, 0x3d, 0x88,
3801 0x54, 0x48, 0x5d, 0xb8, 0x11, 0xbf, 0x64, 0xbb, 0xf9, 0xda, 0x59, 0x19, 0xdd,
3802 0x0e, 0x65, 0xab, 0xc0, 0x0c, 0xfa, 0x67, 0x7e, 0x21, 0x1e, 0x83, 0x0e, 0xcf,
3803 0x9b, 0x89, 0x8a, 0xcf, 0x0c, 0x4b, 0xc1, 0x39, 0x9d, 0xe7, 0x6a, 0xac, 0x46,
3804 0x74, 0x6a, 0x91, 0x62, 0x22, 0x0d, 0xc4, 0x08, 0xbd, 0xf5, 0x0a, 0x90, 0x7f,
3805 0x06, 0x21, 0x3d, 0x7e, 0xa7, 0xaa, 0x5e, 0xcd, 0x22, 0x15, 0xe6, 0x0c, 0x75,
3806 0x8e, 0x6e, 0xad, 0xf1, 0x84, 0xe4, 0x22, 0xb4, 0x30, 0x6f, 0xfb, 0x64, 0x8f,
3807 0xd7, 0x80, 0x43, 0xf5, 0x19, 0x18, 0x66, 0x1d, 0x72, 0xa3, 0xe3, 0x94, 0x82,
3808 0x28, 0x52, 0xa0, 0x06, 0x4e, 0xb1, 0xc8, 0x92, 0x0c, 0x97, 0xbe, 0x15, 0x07,
3809 0xab, 0x7a, 0xc9, 0xea, 0x08, 0x67, 0x43, 0x4d, 0x51, 0x63, 0x3b, 0x9c, 0x9c,
3811 static const BYTE verisignCRLWithLotsOfEntries[] = {
3812 0x30,0x82,0x1d,0xbd,0x30,0x82,0x1d,0x26,0x30,0x0d,0x06,0x09,0x2a,0x86,0x48,
3813 0x86,0xf7,0x0d,0x01,0x01,0x04,0x05,0x00,0x30,0x61,0x31,0x11,0x30,0x0f,0x06,
3814 0x03,0x55,0x04,0x07,0x13,0x08,0x49,0x6e,0x74,0x65,0x72,0x6e,0x65,0x74,0x31,
3815 0x17,0x30,0x15,0x06,0x03,0x55,0x04,0x0a,0x13,0x0e,0x56,0x65,0x72,0x69,0x53,
3816 0x69,0x67,0x6e,0x2c,0x20,0x49,0x6e,0x63,0x2e,0x31,0x33,0x30,0x31,0x06,0x03,
3817 0x55,0x04,0x0b,0x13,0x2a,0x56,0x65,0x72,0x69,0x53,0x69,0x67,0x6e,0x20,0x43,
3818 0x6f,0x6d,0x6d,0x65,0x72,0x63,0x69,0x61,0x6c,0x20,0x53,0x6f,0x66,0x74,0x77,
3819 0x61,0x72,0x65,0x20,0x50,0x75,0x62,0x6c,0x69,0x73,0x68,0x65,0x72,0x73,0x20,
3820 0x43,0x41,0x17,0x0d,0x30,0x34,0x30,0x33,0x33,0x31,0x30,0x30,0x30,0x30,0x30,
3821 0x30,0x5a,0x17,0x0d,0x30,0x34,0x30,0x35,0x33,0x31,0x32,0x33,0x35,0x39,0x35,
3822 0x39,0x5a,0x30,0x82,0x1c,0x92,0x30,0x21,0x02,0x10,0x01,0x22,0xb8,0xb2,0xf3,
3823 0x76,0x42,0xcc,0x48,0x71,0xb6,0x11,0xbf,0xd1,0xcf,0xda,0x17,0x0d,0x30,0x32,
3824 0x30,0x34,0x31,0x35,0x31,0x35,0x34,0x30,0x32,0x34,0x5a,0x30,0x21,0x02,0x10,
3825 0x01,0x83,0x93,0xfb,0x96,0xde,0x1d,0x89,0x4e,0xc3,0x47,0x9c,0xe1,0x60,0x13,
3826 0x63,0x17,0x0d,0x30,0x32,0x30,0x35,0x30,0x39,0x31,0x33,0x35,0x37,0x35,0x38,
3827 0x5a,0x30,0x21,0x02,0x10,0x01,0xdc,0xdb,0x63,0xd4,0xc9,0x9f,0x31,0xb8,0x16,
3828 0xf9,0x2c,0xf5,0xb1,0x08,0x8e,0x17,0x0d,0x30,0x32,0x30,0x34,0x31,0x38,0x31,
3829 0x37,0x34,0x36,0x31,0x34,0x5a,0x30,0x21,0x02,0x10,0x02,0x1a,0xa6,0xaf,0x94,
3830 0x71,0xf0,0x07,0x6e,0xf1,0x17,0xe4,0xd4,0x17,0x82,0xdb,0x17,0x0d,0x30,0x32,
3831 0x30,0x37,0x31,0x39,0x32,0x31,0x32,0x38,0x33,0x31,0x5a,0x30,0x21,0x02,0x10,
3832 0x02,0x4c,0xe8,0x9d,0xfd,0x5f,0x77,0x4d,0x4b,0xf5,0x79,0x8b,0xb1,0x08,0x67,
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4270 0x35,0x33,0x32,0x30,0x5a,0x30,0x21,0x02,0x10,0x74,0x98,0x7f,0x68,0xad,0x17,
4271 0x92,0x93,0xf2,0x65,0x94,0x0c,0x33,0xe6,0xbd,0x49,0x17,0x0d,0x30,0x32,0x30,
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4294 0x79,0x89,0x61,0x12,0x67,0x64,0x14,0xfd,0x08,0xcc,0xb3,0x05,0x55,0xc0,0x67,
4295 0x17,0x0d,0x30,0x32,0x30,0x34,0x30,0x32,0x31,0x33,0x31,0x38,0x35,0x33,0x5a,
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4301 0x91,0x33,0x66,0x6c,0xf0,0xd4,0xe3,0x9d,0xf6,0x88,0x29,0x9b,0xf7,0xd0,0xea,
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4306 0x3f,0x53,0x2e,0xaa,0xa5,0xed,0xde,0xc0,0xb4,0x06,0x17,0x0d,0x30,0x32,0x30,
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4308 0xcb,0x6b,0x99,0x91,0xd0,0x76,0xe1,0x3c,0x0e,0x67,0x15,0xc4,0xd4,0x4d,0x7b,
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4312 0x21,0x80,0xea,0xaa,0x05,0x61,0x14,0x1d,0x67,0xb1,0xdf,0xa6,0xf9,0x42,0x08,
4313 0x0d,0x59,0x62,0x9c,0x11,0x5f,0x0e,0x92,0xc5,0xc6,0xae,0x74,0x64,0xc7,0x84,
4314 0x3e,0x64,0x43,0xd2,0xec,0xbb,0xe1,0x9b,0x52,0x74,0x57,0xcf,0x96,0xef,0x68,
4315 0x02,0x7a,0x7b,0x36,0xb7,0xc6,0x9a,0x5f,0xca,0x9c,0x37,0x47,0xc8,0x3a,0x5c,
4316 0x34,0x35,0x3b,0x4b,0xca,0x20,0x77,0x44,0x68,0x07,0x02,0x34,0x46,0xaa,0x0f,
4317 0xd0,0x4d,0xd9,0x47,0xf4,0xb3,0x2d,0xb1,0x44,0xa5,0x69,0xa9,0x85,0x13,0x43,
4318 0xcd,0xcc,0x1d,0x9a,0xe6,0x2d,0xfd,0x9f,0xdc,0x2f,0x83,0xbb,0x8c,0xe2,0x8c,
4319 0x61,0xc0,0x99,0x16,0x71,0x05,0xb6,0x25,0x14,0x64,0x4f,0x30 };
4321 static void test_decodeCRLToBeSigned(DWORD dwEncoding)
4323 static const BYTE *corruptCRLs[] = { v1CRL, v2CRL };
4328 for (i = 0; i < sizeof(corruptCRLs) / sizeof(corruptCRLs[0]); i++)
4330 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4331 corruptCRLs[i], corruptCRLs[i][1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
4333 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
4334 GetLastError() == OSS_DATA_ERROR /* Win9x */),
4335 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
4338 /* at a minimum, a CRL must contain an issuer: */
4339 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4340 v1CRLWithIssuer, v1CRLWithIssuer[1] + 2, CRYPT_DECODE_ALLOC_FLAG, NULL,
4342 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4345 CRL_INFO *info = (CRL_INFO *)buf;
4347 ok(size >= sizeof(CRL_INFO), "Wrong size %d\n", size);
4348 ok(info->cCRLEntry == 0, "Expected 0 CRL entries, got %d\n",
4350 ok(info->Issuer.cbData == sizeof(encodedCommonName),
4351 "Wrong issuer size %d\n", info->Issuer.cbData);
4352 ok(!memcmp(info->Issuer.pbData, encodedCommonName, info->Issuer.cbData),
4353 "Unexpected issuer\n");
4356 /* check decoding with an empty CRL entry */
4357 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4358 v1CRLWithIssuerAndEmptyEntry, v1CRLWithIssuerAndEmptyEntry[1] + 2,
4359 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4360 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
4361 GetLastError() == OSS_DATA_ERROR /* Win9x */),
4362 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %08x\n",
4364 /* with a real CRL entry */
4365 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4366 v1CRLWithIssuerAndEntry, v1CRLWithIssuerAndEntry[1] + 2,
4367 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4368 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4371 CRL_INFO *info = (CRL_INFO *)buf;
4374 ok(size >= sizeof(CRL_INFO), "Wrong size %d\n", size);
4375 ok(info->cCRLEntry == 1, "Expected 1 CRL entries, got %d\n",
4377 ok(info->rgCRLEntry != NULL, "Expected a valid CRL entry array\n");
4378 entry = info->rgCRLEntry;
4379 ok(entry->SerialNumber.cbData == 1,
4380 "Expected serial number size 1, got %d\n",
4381 entry->SerialNumber.cbData);
4382 ok(*entry->SerialNumber.pbData == *serialNum,
4383 "Expected serial number %d, got %d\n", *serialNum,
4384 *entry->SerialNumber.pbData);
4385 ok(info->Issuer.cbData == sizeof(encodedCommonName),
4386 "Wrong issuer size %d\n", info->Issuer.cbData);
4387 ok(!memcmp(info->Issuer.pbData, encodedCommonName, info->Issuer.cbData),
4388 "Unexpected issuer\n");
4391 /* a real CRL from verisign that has extensions */
4392 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4393 verisignCRL, sizeof(verisignCRL), CRYPT_DECODE_ALLOC_FLAG,
4395 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4398 CRL_INFO *info = (CRL_INFO *)buf;
4401 ok(size >= sizeof(CRL_INFO), "Wrong size %d\n", size);
4402 ok(info->cCRLEntry == 3, "Expected 3 CRL entries, got %d\n",
4404 ok(info->rgCRLEntry != NULL, "Expected a valid CRL entry array\n");
4405 entry = info->rgCRLEntry;
4406 ok(info->cExtension == 2, "Expected 2 extensions, got %d\n",
4410 /* another real CRL from verisign that has lots of entries */
4411 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4412 verisignCRLWithLotsOfEntries, sizeof(verisignCRLWithLotsOfEntries),
4413 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4414 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4417 CRL_INFO *info = (CRL_INFO *)buf;
4419 ok(size >= sizeof(CRL_INFO), "Got size %d\n", size);
4420 ok(info->cCRLEntry == 209, "Expected 209 CRL entries, got %d\n",
4422 ok(info->cExtension == 0, "Expected 0 extensions, got %d\n",
4426 /* and finally, with an extension */
4427 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4428 v1CRLWithExt, sizeof(v1CRLWithExt), CRYPT_DECODE_ALLOC_FLAG,
4430 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4433 CRL_INFO *info = (CRL_INFO *)buf;
4436 ok(size >= sizeof(CRL_INFO), "Wrong size %d\n", size);
4437 ok(info->cCRLEntry == 1, "Expected 1 CRL entries, got %d\n",
4439 ok(info->rgCRLEntry != NULL, "Expected a valid CRL entry array\n");
4440 entry = info->rgCRLEntry;
4441 ok(entry->SerialNumber.cbData == 1,
4442 "Expected serial number size 1, got %d\n",
4443 entry->SerialNumber.cbData);
4444 ok(*entry->SerialNumber.pbData == *serialNum,
4445 "Expected serial number %d, got %d\n", *serialNum,
4446 *entry->SerialNumber.pbData);
4447 ok(info->Issuer.cbData == sizeof(encodedCommonName),
4448 "Wrong issuer size %d\n", info->Issuer.cbData);
4449 ok(!memcmp(info->Issuer.pbData, encodedCommonName, info->Issuer.cbData),
4450 "Unexpected issuer\n");
4451 ok(info->cExtension == 1, "Expected 1 extensions, got %d\n",
4455 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4456 v2CRLWithExt, sizeof(v2CRLWithExt), CRYPT_DECODE_ALLOC_FLAG,
4458 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4461 CRL_INFO *info = (CRL_INFO *)buf;
4463 ok(info->cExtension == 1, "Expected 1 extensions, got %d\n",
4467 /* And again, with an issuing dist point */
4468 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_CRL_TO_BE_SIGNED,
4469 v2CRLWithIssuingDistPoint, sizeof(v2CRLWithIssuingDistPoint),
4470 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4471 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4474 CRL_INFO *info = (CRL_INFO *)buf;
4476 ok(info->cExtension == 1, "Expected 1 extensions, got %d\n",
4482 static const LPCSTR keyUsages[] = { szOID_PKIX_KP_CODE_SIGNING,
4483 szOID_PKIX_KP_CLIENT_AUTH, szOID_RSA_RSA };
4484 static const BYTE encodedUsage[] = {
4485 0x30, 0x1f, 0x06, 0x08, 0x2b, 0x06, 0x01, 0x05, 0x05, 0x07, 0x03, 0x03,
4486 0x06, 0x08, 0x2b, 0x06, 0x01, 0x05, 0x05, 0x07, 0x03, 0x02, 0x06, 0x09,
4487 0x2a, 0x86, 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x01, 0x01 };
4489 static void test_encodeEnhancedKeyUsage(DWORD dwEncoding)
4494 CERT_ENHKEY_USAGE usage;
4496 /* Test with empty usage */
4497 usage.cUsageIdentifier = 0;
4498 ret = pCryptEncodeObjectEx(dwEncoding, X509_ENHANCED_KEY_USAGE, &usage,
4499 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4500 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4503 ok(size == sizeof(emptySequence), "Wrong size %d\n", size);
4504 ok(!memcmp(buf, emptySequence, size), "Got unexpected value\n");
4507 /* Test with a few usages */
4508 usage.cUsageIdentifier = sizeof(keyUsages) / sizeof(keyUsages[0]);
4509 usage.rgpszUsageIdentifier = (LPSTR *)keyUsages;
4510 ret = pCryptEncodeObjectEx(dwEncoding, X509_ENHANCED_KEY_USAGE, &usage,
4511 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4512 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4515 ok(size == sizeof(encodedUsage), "Wrong size %d\n", size);
4516 ok(!memcmp(buf, encodedUsage, size), "Got unexpected value\n");
4521 static void test_decodeEnhancedKeyUsage(DWORD dwEncoding)
4527 ret = pCryptDecodeObjectEx(dwEncoding, X509_ENHANCED_KEY_USAGE,
4528 emptySequence, sizeof(emptySequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
4530 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4533 CERT_ENHKEY_USAGE *usage = (CERT_ENHKEY_USAGE *)buf;
4535 ok(size >= sizeof(CERT_ENHKEY_USAGE),
4536 "Wrong size %d\n", size);
4537 ok(usage->cUsageIdentifier == 0, "Expected 0 CRL entries, got %d\n",
4538 usage->cUsageIdentifier);
4541 ret = pCryptDecodeObjectEx(dwEncoding, X509_ENHANCED_KEY_USAGE,
4542 encodedUsage, sizeof(encodedUsage), CRYPT_DECODE_ALLOC_FLAG, NULL,
4544 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4547 CERT_ENHKEY_USAGE *usage = (CERT_ENHKEY_USAGE *)buf;
4550 ok(size >= sizeof(CERT_ENHKEY_USAGE),
4551 "Wrong size %d\n", size);
4552 ok(usage->cUsageIdentifier == sizeof(keyUsages) / sizeof(keyUsages[0]),
4553 "Wrong CRL entries count %d\n", usage->cUsageIdentifier);
4554 for (i = 0; i < usage->cUsageIdentifier; i++)
4555 ok(!strcmp(usage->rgpszUsageIdentifier[i], keyUsages[i]),
4556 "Expected OID %s, got %s\n", keyUsages[i],
4557 usage->rgpszUsageIdentifier[i]);
4562 static BYTE keyId[] = { 1,2,3,4 };
4563 static const BYTE authorityKeyIdWithId[] = {
4564 0x30,0x06,0x80,0x04,0x01,0x02,0x03,0x04 };
4565 static const BYTE authorityKeyIdWithIssuer[] = { 0x30,0x19,0xa1,0x17,0x30,0x15,
4566 0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,
4567 0x20,0x4c,0x61,0x6e,0x67,0x00 };
4568 static const BYTE authorityKeyIdWithSerial[] = { 0x30,0x03,0x82,0x01,0x01 };
4570 static void test_encodeAuthorityKeyId(DWORD dwEncoding)
4572 CERT_AUTHORITY_KEY_ID_INFO info = { { 0 } };
4577 /* Test with empty id */
4578 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID, &info,
4579 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4580 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4583 ok(size == sizeof(emptySequence), "Unexpected size %d\n", size);
4584 ok(!memcmp(buf, emptySequence, size), "Unexpected value\n");
4587 /* With just a key id */
4588 info.KeyId.cbData = sizeof(keyId);
4589 info.KeyId.pbData = keyId;
4590 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID, &info,
4591 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4592 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4595 ok(size == sizeof(authorityKeyIdWithId), "Unexpected size %d\n", size);
4596 ok(!memcmp(buf, authorityKeyIdWithId, size), "Unexpected value\n");
4599 /* With just an issuer */
4600 info.KeyId.cbData = 0;
4601 info.CertIssuer.cbData = sizeof(encodedCommonName);
4602 info.CertIssuer.pbData = (BYTE *)encodedCommonName;
4603 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID, &info,
4604 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4605 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4608 ok(size == sizeof(authorityKeyIdWithIssuer), "Unexpected size %d\n",
4610 ok(!memcmp(buf, authorityKeyIdWithIssuer, size), "Unexpected value\n");
4613 /* With just a serial number */
4614 info.CertIssuer.cbData = 0;
4615 info.CertSerialNumber.cbData = sizeof(serialNum);
4616 info.CertSerialNumber.pbData = (BYTE *)serialNum;
4617 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID, &info,
4618 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4619 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4622 ok(size == sizeof(authorityKeyIdWithSerial), "Unexpected size %d\n",
4624 ok(!memcmp(buf, authorityKeyIdWithSerial, size), "Unexpected value\n");
4629 static void test_decodeAuthorityKeyId(DWORD dwEncoding)
4635 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID,
4636 emptySequence, sizeof(emptySequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
4638 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4641 CERT_AUTHORITY_KEY_ID_INFO *info = (CERT_AUTHORITY_KEY_ID_INFO *)buf;
4643 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID_INFO), "Unexpected size %d\n",
4645 ok(info->KeyId.cbData == 0, "Expected no key id\n");
4646 ok(info->CertIssuer.cbData == 0, "Expected no issuer name\n");
4647 ok(info->CertSerialNumber.cbData == 0, "Expected no serial number\n");
4650 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID,
4651 authorityKeyIdWithId, sizeof(authorityKeyIdWithId),
4652 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4653 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4656 CERT_AUTHORITY_KEY_ID_INFO *info = (CERT_AUTHORITY_KEY_ID_INFO *)buf;
4658 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID_INFO), "Unexpected size %d\n",
4660 ok(info->KeyId.cbData == sizeof(keyId), "Unexpected key id len\n");
4661 ok(!memcmp(info->KeyId.pbData, keyId, sizeof(keyId)),
4662 "Unexpected key id\n");
4663 ok(info->CertIssuer.cbData == 0, "Expected no issuer name\n");
4664 ok(info->CertSerialNumber.cbData == 0, "Expected no serial number\n");
4667 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID,
4668 authorityKeyIdWithIssuer, sizeof(authorityKeyIdWithIssuer),
4669 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4670 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4673 CERT_AUTHORITY_KEY_ID_INFO *info = (CERT_AUTHORITY_KEY_ID_INFO *)buf;
4675 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID_INFO), "Unexpected size %d\n",
4677 ok(info->KeyId.cbData == 0, "Expected no key id\n");
4678 ok(info->CertIssuer.cbData == sizeof(encodedCommonName),
4679 "Unexpected issuer len\n");
4680 ok(!memcmp(info->CertIssuer.pbData, encodedCommonName,
4681 sizeof(encodedCommonName)), "Unexpected issuer\n");
4682 ok(info->CertSerialNumber.cbData == 0, "Expected no serial number\n");
4685 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID,
4686 authorityKeyIdWithSerial, sizeof(authorityKeyIdWithSerial),
4687 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4688 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4691 CERT_AUTHORITY_KEY_ID_INFO *info = (CERT_AUTHORITY_KEY_ID_INFO *)buf;
4693 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID_INFO), "Unexpected size %d\n",
4695 ok(info->KeyId.cbData == 0, "Expected no key id\n");
4696 ok(info->CertIssuer.cbData == 0, "Expected no issuer name\n");
4697 ok(info->CertSerialNumber.cbData == sizeof(serialNum),
4698 "Unexpected serial number len\n");
4699 ok(!memcmp(info->CertSerialNumber.pbData, serialNum, sizeof(serialNum)),
4700 "Unexpected serial number\n");
4705 static const BYTE authorityKeyIdWithIssuerUrl[] = { 0x30,0x15,0xa1,0x13,0x86,
4706 0x11,0x68,0x74,0x74,0x70,0x3a,0x2f,0x2f,0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,
4709 static void test_encodeAuthorityKeyId2(DWORD dwEncoding)
4711 CERT_AUTHORITY_KEY_ID2_INFO info = { { 0 } };
4712 CERT_ALT_NAME_ENTRY entry = { 0 };
4717 /* Test with empty id */
4718 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2, &info,
4719 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4720 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4723 ok(size == sizeof(emptySequence), "Unexpected size %d\n", size);
4724 ok(!memcmp(buf, emptySequence, size), "Unexpected value\n");
4727 /* With just a key id */
4728 info.KeyId.cbData = sizeof(keyId);
4729 info.KeyId.pbData = keyId;
4730 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2, &info,
4731 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4732 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4735 ok(size == sizeof(authorityKeyIdWithId), "Unexpected size %d\n",
4737 ok(!memcmp(buf, authorityKeyIdWithId, size), "Unexpected value\n");
4740 /* With a bogus issuer name */
4741 info.KeyId.cbData = 0;
4742 info.AuthorityCertIssuer.cAltEntry = 1;
4743 info.AuthorityCertIssuer.rgAltEntry = &entry;
4744 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2, &info,
4745 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4746 ok(!ret && GetLastError() == E_INVALIDARG,
4747 "Expected E_INVALIDARG, got %08x\n", GetLastError());
4748 /* With an issuer name */
4749 entry.dwAltNameChoice = CERT_ALT_NAME_URL;
4750 U(entry).pwszURL = (LPWSTR)url;
4751 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2, &info,
4752 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4753 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4756 ok(size == sizeof(authorityKeyIdWithIssuerUrl), "Unexpected size %d\n",
4758 ok(!memcmp(buf, authorityKeyIdWithIssuerUrl, size),
4759 "Unexpected value\n");
4762 /* With just a serial number */
4763 info.AuthorityCertIssuer.cAltEntry = 0;
4764 info.AuthorityCertSerialNumber.cbData = sizeof(serialNum);
4765 info.AuthorityCertSerialNumber.pbData = (BYTE *)serialNum;
4766 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2, &info,
4767 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4768 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4771 ok(size == sizeof(authorityKeyIdWithSerial), "Unexpected size %d\n",
4773 ok(!memcmp(buf, authorityKeyIdWithSerial, size), "Unexpected value\n");
4778 static void test_decodeAuthorityKeyId2(DWORD dwEncoding)
4784 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2,
4785 emptySequence, sizeof(emptySequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
4787 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4790 CERT_AUTHORITY_KEY_ID2_INFO *info = (CERT_AUTHORITY_KEY_ID2_INFO *)buf;
4792 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID2_INFO), "Unexpected size %d\n",
4794 ok(info->KeyId.cbData == 0, "Expected no key id\n");
4795 ok(info->AuthorityCertIssuer.cAltEntry == 0,
4796 "Expected no issuer name entries\n");
4797 ok(info->AuthorityCertSerialNumber.cbData == 0,
4798 "Expected no serial number\n");
4801 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2,
4802 authorityKeyIdWithId, sizeof(authorityKeyIdWithId),
4803 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4804 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4807 CERT_AUTHORITY_KEY_ID2_INFO *info = (CERT_AUTHORITY_KEY_ID2_INFO *)buf;
4809 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID2_INFO), "Unexpected size %d\n",
4811 ok(info->KeyId.cbData == sizeof(keyId), "Unexpected key id len\n");
4812 ok(!memcmp(info->KeyId.pbData, keyId, sizeof(keyId)),
4813 "Unexpected key id\n");
4814 ok(info->AuthorityCertIssuer.cAltEntry == 0,
4815 "Expected no issuer name entries\n");
4816 ok(info->AuthorityCertSerialNumber.cbData == 0,
4817 "Expected no serial number\n");
4820 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2,
4821 authorityKeyIdWithIssuerUrl, sizeof(authorityKeyIdWithIssuerUrl),
4822 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4823 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4826 CERT_AUTHORITY_KEY_ID2_INFO *info = (CERT_AUTHORITY_KEY_ID2_INFO *)buf;
4828 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID2_INFO), "Unexpected size %d\n",
4830 ok(info->KeyId.cbData == 0, "Expected no key id\n");
4831 ok(info->AuthorityCertIssuer.cAltEntry == 1,
4832 "Expected 1 issuer entry, got %d\n",
4833 info->AuthorityCertIssuer.cAltEntry);
4834 ok(info->AuthorityCertIssuer.rgAltEntry[0].dwAltNameChoice ==
4835 CERT_ALT_NAME_URL, "Expected CERT_ALT_NAME_URL, got %d\n",
4836 info->AuthorityCertIssuer.rgAltEntry[0].dwAltNameChoice);
4837 ok(!lstrcmpW(U(info->AuthorityCertIssuer.rgAltEntry[0]).pwszURL,
4838 url), "Unexpected URL\n");
4839 ok(info->AuthorityCertSerialNumber.cbData == 0,
4840 "Expected no serial number\n");
4843 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_KEY_ID2,
4844 authorityKeyIdWithSerial, sizeof(authorityKeyIdWithSerial),
4845 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4846 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
4849 CERT_AUTHORITY_KEY_ID2_INFO *info = (CERT_AUTHORITY_KEY_ID2_INFO *)buf;
4851 ok(size >= sizeof(CERT_AUTHORITY_KEY_ID2_INFO), "Unexpected size %d\n",
4853 ok(info->KeyId.cbData == 0, "Expected no key id\n");
4854 ok(info->AuthorityCertIssuer.cAltEntry == 0,
4855 "Expected no issuer name entries\n");
4856 ok(info->AuthorityCertSerialNumber.cbData == sizeof(serialNum),
4857 "Unexpected serial number len\n");
4858 ok(!memcmp(info->AuthorityCertSerialNumber.pbData, serialNum,
4859 sizeof(serialNum)), "Unexpected serial number\n");
4864 static const BYTE authorityInfoAccessWithUrl[] = {
4865 0x30,0x19,0x30,0x17,0x06,0x02,0x2a,0x03,0x86,0x11,0x68,0x74,0x74,0x70,0x3a,
4866 0x2f,0x2f,0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,0x67 };
4867 static const BYTE authorityInfoAccessWithUrlAndIPAddr[] = {
4868 0x30,0x29,0x30,0x17,0x06,0x02,0x2a,0x03,0x86,0x11,0x68,0x74,0x74,0x70,0x3a,
4869 0x2f,0x2f,0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,0x67,0x30,0x0e,0x06,
4870 0x02,0x2d,0x06,0x87,0x08,0x30,0x06,0x87,0x04,0x7f,0x00,0x00,0x01 };
4872 static void test_encodeAuthorityInfoAccess(DWORD dwEncoding)
4874 static char oid1[] = "1.2.3";
4875 static char oid2[] = "1.5.6";
4879 CERT_ACCESS_DESCRIPTION accessDescription[2];
4880 CERT_AUTHORITY_INFO_ACCESS aia;
4882 memset(accessDescription, 0, sizeof(accessDescription));
4884 aia.rgAccDescr = NULL;
4885 /* Having no access descriptions is allowed */
4886 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS, &aia,
4887 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4888 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4891 ok(size == sizeof(emptySequence), "unexpected size %d\n", size);
4892 ok(!memcmp(buf, emptySequence, size), "unexpected value\n");
4896 /* It can't have an empty access method */
4898 aia.rgAccDescr = accessDescription;
4899 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS, &aia,
4900 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4901 ok(!ret && (GetLastError() == E_INVALIDARG ||
4902 GetLastError() == OSS_LIMITED /* Win9x */),
4903 "expected E_INVALIDARG or OSS_LIMITED, got %08x\n", GetLastError());
4904 /* It can't have an empty location */
4905 accessDescription[0].pszAccessMethod = oid1;
4906 SetLastError(0xdeadbeef);
4907 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS, &aia,
4908 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4909 ok(!ret && GetLastError() == E_INVALIDARG,
4910 "expected E_INVALIDARG, got %08x\n", GetLastError());
4911 accessDescription[0].AccessLocation.dwAltNameChoice = CERT_ALT_NAME_URL;
4912 U(accessDescription[0].AccessLocation).pwszURL = (LPWSTR)url;
4913 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS, &aia,
4914 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4915 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4918 ok(size == sizeof(authorityInfoAccessWithUrl), "unexpected size %d\n",
4920 ok(!memcmp(buf, authorityInfoAccessWithUrl, size),
4921 "unexpected value\n");
4925 accessDescription[1].pszAccessMethod = oid2;
4926 accessDescription[1].AccessLocation.dwAltNameChoice =
4927 CERT_ALT_NAME_IP_ADDRESS;
4928 U(accessDescription[1].AccessLocation).IPAddress.cbData =
4929 sizeof(encodedIPAddr);
4930 U(accessDescription[1].AccessLocation).IPAddress.pbData =
4931 (LPBYTE)encodedIPAddr;
4933 ret = pCryptEncodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS, &aia,
4934 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
4935 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
4938 ok(size == sizeof(authorityInfoAccessWithUrlAndIPAddr),
4939 "unexpected size %d\n", size);
4940 ok(!memcmp(buf, authorityInfoAccessWithUrlAndIPAddr, size),
4941 "unexpected value\n");
4947 static void compareAuthorityInfoAccess(LPCSTR header,
4948 const CERT_AUTHORITY_INFO_ACCESS *expected,
4949 const CERT_AUTHORITY_INFO_ACCESS *got)
4953 ok(expected->cAccDescr == got->cAccDescr,
4954 "%s: expected %d access descriptions, got %d\n", header,
4955 expected->cAccDescr, got->cAccDescr);
4956 for (i = 0; i < expected->cAccDescr; i++)
4958 ok(!strcmp(expected->rgAccDescr[i].pszAccessMethod,
4959 got->rgAccDescr[i].pszAccessMethod), "%s[%d]: expected %s, got %s\n",
4960 header, i, expected->rgAccDescr[i].pszAccessMethod,
4961 got->rgAccDescr[i].pszAccessMethod);
4962 compareAltNameEntry(&expected->rgAccDescr[i].AccessLocation,
4963 &got->rgAccDescr[i].AccessLocation);
4967 static void test_decodeAuthorityInfoAccess(DWORD dwEncoding)
4969 static char oid1[] = "1.2.3";
4970 static char oid2[] = "1.5.6";
4975 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS,
4976 emptySequence, sizeof(emptySequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
4978 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
4981 CERT_AUTHORITY_INFO_ACCESS aia = { 0, NULL };
4983 compareAuthorityInfoAccess("empty AIA", &aia,
4984 (CERT_AUTHORITY_INFO_ACCESS *)buf);
4988 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS,
4989 authorityInfoAccessWithUrl, sizeof(authorityInfoAccessWithUrl),
4990 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
4991 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
4994 CERT_ACCESS_DESCRIPTION accessDescription;
4995 CERT_AUTHORITY_INFO_ACCESS aia;
4997 accessDescription.pszAccessMethod = oid1;
4998 accessDescription.AccessLocation.dwAltNameChoice = CERT_ALT_NAME_URL;
4999 U(accessDescription.AccessLocation).pwszURL = (LPWSTR)url;
5001 aia.rgAccDescr = &accessDescription;
5002 compareAuthorityInfoAccess("AIA with URL", &aia,
5003 (CERT_AUTHORITY_INFO_ACCESS *)buf);
5007 ret = pCryptDecodeObjectEx(dwEncoding, X509_AUTHORITY_INFO_ACCESS,
5008 authorityInfoAccessWithUrlAndIPAddr,
5009 sizeof(authorityInfoAccessWithUrlAndIPAddr), CRYPT_DECODE_ALLOC_FLAG,
5011 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5014 CERT_ACCESS_DESCRIPTION accessDescription[2];
5015 CERT_AUTHORITY_INFO_ACCESS aia;
5017 accessDescription[0].pszAccessMethod = oid1;
5018 accessDescription[0].AccessLocation.dwAltNameChoice = CERT_ALT_NAME_URL;
5019 U(accessDescription[0].AccessLocation).pwszURL = (LPWSTR)url;
5020 accessDescription[1].pszAccessMethod = oid2;
5021 accessDescription[1].AccessLocation.dwAltNameChoice =
5022 CERT_ALT_NAME_IP_ADDRESS;
5023 U(accessDescription[1].AccessLocation).IPAddress.cbData =
5024 sizeof(encodedIPAddr);
5025 U(accessDescription[1].AccessLocation).IPAddress.pbData =
5026 (LPBYTE)encodedIPAddr;
5028 aia.rgAccDescr = accessDescription;
5029 compareAuthorityInfoAccess("AIA with URL and IP addr", &aia,
5030 (CERT_AUTHORITY_INFO_ACCESS *)buf);
5036 static const BYTE emptyCTL[] = {
5037 0x30,0x17,0x30,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
5038 0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5039 static const BYTE emptyCTLWithVersion1[] = {
5040 0x30,0x1a,0x02,0x01,0x01,0x30,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,
5041 0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5042 static const BYTE ctlWithUsageIdentifier[] = {
5043 0x30,0x1b,0x30,0x04,0x06,0x02,0x2a,0x03,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,
5044 0x31,0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5045 static const BYTE ctlWithListIdentifier[] = {
5046 0x30,0x1a,0x30,0x00,0x04,0x01,0x01,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,
5047 0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5048 static const BYTE ctlWithSequenceNumber[] = {
5049 0x30,0x1a,0x30,0x00,0x02,0x01,0x01,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,
5050 0x30,0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5051 static const BYTE ctlWithThisUpdate[] = {
5052 0x30,0x15,0x30,0x00,0x17,0x0d,0x30,0x35,0x30,0x36,0x30,0x36,0x31,0x36,0x31,
5053 0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5054 static const BYTE ctlWithThisAndNextUpdate[] = {
5055 0x30,0x24,0x30,0x00,0x17,0x0d,0x30,0x35,0x30,0x36,0x30,0x36,0x31,0x36,0x31,
5056 0x30,0x30,0x30,0x5a,0x17,0x0d,0x30,0x35,0x30,0x36,0x30,0x36,0x31,0x36,0x31,
5057 0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00 };
5058 static const BYTE ctlWithAlgId[] = {
5059 0x30,0x1b,0x30,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
5060 0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x06,0x06,0x02,0x2d,0x06,0x05,0x00 };
5061 static const BYTE ctlWithBogusEntry[] = {
5062 0x30,0x29,0x30,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
5063 0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00,0x30,0x10,0x30,0x0e,0x04,
5064 0x01,0x01,0x31,0x09,0x30,0x07,0x06,0x02,0x2a,0x03,0x31,0x01,0x01 };
5065 static const BYTE ctlWithOneEntry[] = {
5066 0x30,0x2a,0x30,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
5067 0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00,0x30,0x11,0x30,0x0f,0x04,
5068 0x01,0x01,0x31,0x0a,0x30,0x08,0x06,0x02,0x2a,0x03,0x31,0x02,0x30,0x00 };
5069 static const BYTE ctlWithTwoEntries[] = {
5070 0x30,0x41,0x30,0x00,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
5071 0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x02,0x06,0x00,0x30,0x28,0x30,0x0f,0x04,
5072 0x01,0x01,0x31,0x0a,0x30,0x08,0x06,0x02,0x2a,0x03,0x31,0x02,0x30,0x00,0x30,
5073 0x15,0x04,0x01,0x01,0x31,0x10,0x30,0x0e,0x06,0x02,0x2d,0x06,0x31,0x08,0x30,
5074 0x06,0x87,0x04,0x7f,0x00,0x00,0x01 };
5076 static void test_encodeCTL(DWORD dwEncoding)
5078 static char oid1[] = "1.2.3";
5079 static char oid2[] = "1.5.6";
5085 SYSTEMTIME thisUpdate = { 2005, 6, 1, 6, 16, 10, 0, 0 };
5086 CTL_ENTRY ctlEntry[2];
5087 CRYPT_ATTRIBUTE attr1, attr2;
5088 CRYPT_ATTR_BLOB value1, value2;
5090 memset(&info, 0, sizeof(info));
5091 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5092 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5093 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5096 ok(size == sizeof(emptyCTL), "unexpected size %d\n", size);
5097 ok(!memcmp(buf, emptyCTL, size), "unexpected value\n");
5102 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5103 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5104 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5107 ok(size == sizeof(emptyCTLWithVersion1), "unexpected size %d\n", size);
5108 ok(!memcmp(buf, emptyCTLWithVersion1, size), "unexpected value\n");
5113 info.SubjectUsage.cUsageIdentifier = 1;
5114 info.SubjectUsage.rgpszUsageIdentifier = &pOid1;
5115 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5116 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5117 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5120 ok(size == sizeof(ctlWithUsageIdentifier), "unexpected size %d\n",
5122 ok(!memcmp(buf, ctlWithUsageIdentifier, size), "unexpected value\n");
5126 info.SubjectUsage.cUsageIdentifier = 0;
5127 info.ListIdentifier.cbData = sizeof(serialNum);
5128 info.ListIdentifier.pbData = (LPBYTE)serialNum;
5129 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5130 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5131 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5134 ok(size == sizeof(ctlWithListIdentifier), "unexpected size %d\n", size);
5135 ok(!memcmp(buf, ctlWithListIdentifier, size), "unexpected value\n");
5139 info.ListIdentifier.cbData = 0;
5140 info.SequenceNumber.cbData = sizeof(serialNum);
5141 info.SequenceNumber.pbData = (LPBYTE)serialNum;
5142 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5143 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5144 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5147 ok(size == sizeof(ctlWithSequenceNumber), "unexpected size %d\n",
5149 ok(!memcmp(buf, ctlWithSequenceNumber, size), "unexpected value\n");
5153 info.SequenceNumber.cbData = 0;
5154 SystemTimeToFileTime(&thisUpdate, &info.ThisUpdate);
5155 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5156 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5157 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5160 ok(size == sizeof(ctlWithThisUpdate), "unexpected size %d\n", size);
5161 ok(!memcmp(buf, ctlWithThisUpdate, size), "unexpected value\n");
5165 SystemTimeToFileTime(&thisUpdate, &info.NextUpdate);
5166 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5167 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5168 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5171 ok(size == sizeof(ctlWithThisAndNextUpdate), "unexpected size %d\n",
5173 ok(!memcmp(buf, ctlWithThisAndNextUpdate, size), "unexpected value\n");
5177 info.ThisUpdate.dwLowDateTime = info.ThisUpdate.dwHighDateTime = 0;
5178 info.NextUpdate.dwLowDateTime = info.NextUpdate.dwHighDateTime = 0;
5179 info.SubjectAlgorithm.pszObjId = oid2;
5180 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5181 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5182 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5185 ok(size == sizeof(ctlWithAlgId), "unexpected size %d\n", size);
5186 ok(!memcmp(buf, ctlWithAlgId, size), "unexpected value\n");
5190 /* The value is supposed to be asn.1 encoded, so this'll fail to decode
5191 * (see tests below) but it'll encode fine.
5193 info.SubjectAlgorithm.pszObjId = NULL;
5194 value1.cbData = sizeof(serialNum);
5195 value1.pbData = (LPBYTE)serialNum;
5196 attr1.pszObjId = oid1;
5198 attr1.rgValue = &value1;
5199 ctlEntry[0].SubjectIdentifier.cbData = sizeof(serialNum);
5200 ctlEntry[0].SubjectIdentifier.pbData = (LPBYTE)serialNum;
5201 ctlEntry[0].cAttribute = 1;
5202 ctlEntry[0].rgAttribute = &attr1;
5204 info.rgCTLEntry = ctlEntry;
5205 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5206 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5207 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5210 ok(size == sizeof(ctlWithBogusEntry), "unexpected size %d\n", size);
5211 ok(!memcmp(buf, ctlWithBogusEntry, size), "unexpected value\n");
5215 value1.cbData = sizeof(emptySequence);
5216 value1.pbData = (LPBYTE)emptySequence;
5217 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5218 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5219 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5222 ok(size == sizeof(ctlWithOneEntry), "unexpected size %d\n", size);
5223 ok(!memcmp(buf, ctlWithOneEntry, size), "unexpected value\n");
5227 value2.cbData = sizeof(encodedIPAddr);
5228 value2.pbData = (LPBYTE)encodedIPAddr;
5229 attr2.pszObjId = oid2;
5231 attr2.rgValue = &value2;
5232 ctlEntry[1].SubjectIdentifier.cbData = sizeof(serialNum);
5233 ctlEntry[1].SubjectIdentifier.pbData = (LPBYTE)serialNum;
5234 ctlEntry[1].cAttribute = 1;
5235 ctlEntry[1].rgAttribute = &attr2;
5237 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CTL, &info,
5238 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5239 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
5242 ok(size == sizeof(ctlWithTwoEntries), "unexpected size %d\n", size);
5243 ok(!memcmp(buf, ctlWithTwoEntries, size), "unexpected value\n");
5249 static void compareCTLInfo(LPCSTR header, const CTL_INFO *expected,
5250 const CTL_INFO *got)
5254 ok(expected->dwVersion == got->dwVersion,
5255 "%s: expected version %d, got %d\n", header, expected->dwVersion,
5257 ok(expected->SubjectUsage.cUsageIdentifier ==
5258 got->SubjectUsage.cUsageIdentifier,
5259 "%s: expected %d usage identifiers, got %d\n", header,
5260 expected->SubjectUsage.cUsageIdentifier,
5261 got->SubjectUsage.cUsageIdentifier);
5262 for (i = 0; i < expected->SubjectUsage.cUsageIdentifier; i++)
5263 ok(!strcmp(expected->SubjectUsage.rgpszUsageIdentifier[i],
5264 got->SubjectUsage.rgpszUsageIdentifier[i]),
5265 "%s[%d]: expected %s, got %s\n", header, i,
5266 expected->SubjectUsage.rgpszUsageIdentifier[i],
5267 got->SubjectUsage.rgpszUsageIdentifier[i]);
5268 ok(expected->ListIdentifier.cbData == got->ListIdentifier.cbData,
5269 "%s: expected list identifier of %d bytes, got %d\n", header,
5270 expected->ListIdentifier.cbData, got->ListIdentifier.cbData);
5271 if (expected->ListIdentifier.cbData)
5272 ok(!memcmp(expected->ListIdentifier.pbData, got->ListIdentifier.pbData,
5273 expected->ListIdentifier.cbData),
5274 "%s: unexpected list identifier value\n", header);
5275 ok(expected->SequenceNumber.cbData == got->SequenceNumber.cbData,
5276 "%s: expected sequence number of %d bytes, got %d\n", header,
5277 expected->SequenceNumber.cbData, got->SequenceNumber.cbData);
5278 if (expected->SequenceNumber.cbData)
5279 ok(!memcmp(expected->SequenceNumber.pbData, got->SequenceNumber.pbData,
5280 expected->SequenceNumber.cbData),
5281 "%s: unexpected sequence number value\n", header);
5282 ok(!memcmp(&expected->ThisUpdate, &got->ThisUpdate, sizeof(FILETIME)),
5283 "%s: expected this update = (%d, %d), got (%d, %d)\n", header,
5284 expected->ThisUpdate.dwLowDateTime, expected->ThisUpdate.dwHighDateTime,
5285 got->ThisUpdate.dwLowDateTime, got->ThisUpdate.dwHighDateTime);
5286 ok(!memcmp(&expected->NextUpdate, &got->NextUpdate, sizeof(FILETIME)),
5287 "%s: expected next update = (%d, %d), got (%d, %d)\n", header,
5288 expected->NextUpdate.dwLowDateTime, expected->NextUpdate.dwHighDateTime,
5289 got->NextUpdate.dwLowDateTime, got->NextUpdate.dwHighDateTime);
5290 if (expected->SubjectAlgorithm.pszObjId &&
5291 *expected->SubjectAlgorithm.pszObjId && !got->SubjectAlgorithm.pszObjId)
5292 ok(0, "%s: expected subject algorithm %s, got NULL\n", header,
5293 expected->SubjectAlgorithm.pszObjId);
5294 if (expected->SubjectAlgorithm.pszObjId && got->SubjectAlgorithm.pszObjId)
5295 ok(!strcmp(expected->SubjectAlgorithm.pszObjId,
5296 got->SubjectAlgorithm.pszObjId),
5297 "%s: expected subject algorithm %s, got %s\n", header,
5298 expected->SubjectAlgorithm.pszObjId, got->SubjectAlgorithm.pszObjId);
5299 ok(expected->SubjectAlgorithm.Parameters.cbData ==
5300 got->SubjectAlgorithm.Parameters.cbData,
5301 "%s: expected subject algorithm parameters of %d bytes, got %d\n", header,
5302 expected->SubjectAlgorithm.Parameters.cbData,
5303 got->SubjectAlgorithm.Parameters.cbData);
5304 if (expected->SubjectAlgorithm.Parameters.cbData)
5305 ok(!memcmp(expected->SubjectAlgorithm.Parameters.pbData,
5306 got->SubjectAlgorithm.Parameters.pbData,
5307 expected->SubjectAlgorithm.Parameters.cbData),
5308 "%s: unexpected subject algorithm parameter value\n", header);
5309 ok(expected->cCTLEntry == got->cCTLEntry,
5310 "%s: expected %d CTL entries, got %d\n", header, expected->cCTLEntry,
5312 for (i = 0; i < expected->cCTLEntry; i++)
5314 ok(expected->rgCTLEntry[i].SubjectIdentifier.cbData ==
5315 got->rgCTLEntry[i].SubjectIdentifier.cbData,
5316 "%s[%d]: expected subject identifier of %d bytes, got %d\n",
5317 header, i, expected->rgCTLEntry[i].SubjectIdentifier.cbData,
5318 got->rgCTLEntry[i].SubjectIdentifier.cbData);
5319 if (expected->rgCTLEntry[i].SubjectIdentifier.cbData)
5320 ok(!memcmp(expected->rgCTLEntry[i].SubjectIdentifier.pbData,
5321 got->rgCTLEntry[i].SubjectIdentifier.pbData,
5322 expected->rgCTLEntry[i].SubjectIdentifier.cbData),
5323 "%s[%d]: unexpected subject identifier value\n",
5325 for (j = 0; j < expected->rgCTLEntry[i].cAttribute; j++)
5327 ok(!strcmp(expected->rgCTLEntry[i].rgAttribute[j].pszObjId,
5328 got->rgCTLEntry[i].rgAttribute[j].pszObjId),
5329 "%s[%d][%d]: expected attribute OID %s, got %s\n", header, i, j,
5330 expected->rgCTLEntry[i].rgAttribute[j].pszObjId,
5331 got->rgCTLEntry[i].rgAttribute[j].pszObjId);
5332 for (k = 0; k < expected->rgCTLEntry[i].rgAttribute[j].cValue; k++)
5334 ok(expected->rgCTLEntry[i].rgAttribute[j].rgValue[k].cbData ==
5335 got->rgCTLEntry[i].rgAttribute[j].rgValue[k].cbData,
5336 "%s[%d][%d][%d]: expected value of %d bytes, got %d\n",
5338 expected->rgCTLEntry[i].rgAttribute[j].rgValue[k].cbData,
5339 got->rgCTLEntry[i].rgAttribute[j].rgValue[k].cbData);
5340 if (expected->rgCTLEntry[i].rgAttribute[j].rgValue[k].cbData)
5342 expected->rgCTLEntry[i].rgAttribute[j].rgValue[k].pbData,
5343 got->rgCTLEntry[i].rgAttribute[j].rgValue[k].pbData,
5344 expected->rgCTLEntry[i].rgAttribute[j].rgValue[k].cbData),
5345 "%s[%d][%d][%d]: unexpected value\n",
5350 ok(expected->cExtension == got->cExtension,
5351 "%s: expected %d extensions, got %d\n", header, expected->cExtension,
5353 for (i = 0; i < expected->cExtension; i++)
5355 ok(!strcmp(expected->rgExtension[i].pszObjId,
5356 got->rgExtension[i].pszObjId), "%s[%d]: expected %s, got %s\n",
5357 header, i, expected->rgExtension[i].pszObjId,
5358 got->rgExtension[i].pszObjId);
5359 ok(expected->rgExtension[i].fCritical == got->rgExtension[i].fCritical,
5360 "%s[%d]: expected fCritical = %d, got %d\n", header, i,
5361 expected->rgExtension[i].fCritical, got->rgExtension[i].fCritical);
5362 ok(expected->rgExtension[i].Value.cbData ==
5363 got->rgExtension[i].Value.cbData,
5364 "%s[%d]: expected extension value to have %d bytes, got %d\n",
5365 header, i, expected->rgExtension[i].Value.cbData,
5366 got->rgExtension[i].Value.cbData);
5367 if (expected->rgExtension[i].Value.cbData)
5368 ok(!memcmp(expected->rgExtension[i].Value.pbData,
5369 got->rgExtension[i].Value.pbData,
5370 expected->rgExtension[i].Value.cbData),
5371 "%s[%d]: unexpected extension value\n", header, i);
5375 static const BYTE signedCTL[] = {
5376 0x30,0x81,0xc7,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x01,0x07,0x02,0xa0,
5377 0x81,0xb9,0x30,0x81,0xb6,0x02,0x01,0x01,0x31,0x0e,0x30,0x0c,0x06,0x08,0x2a,
5378 0x86,0x48,0x86,0xf7,0x0d,0x02,0x05,0x05,0x00,0x30,0x28,0x06,0x09,0x2a,0x86,
5379 0x48,0x86,0xf7,0x0d,0x01,0x07,0x01,0xa0,0x1b,0x04,0x19,0x30,0x17,0x30,0x00,
5380 0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,0x30,0x30,0x30,0x30,
5381 0x30,0x5a,0x30,0x02,0x06,0x00,0x31,0x77,0x30,0x75,0x02,0x01,0x01,0x30,0x1a,
5382 0x30,0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,
5383 0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00,0x02,0x01,0x01,0x30,0x0c,0x06,0x08,
5384 0x2a,0x86,0x48,0x86,0xf7,0x0d,0x02,0x05,0x05,0x00,0x30,0x04,0x06,0x00,0x05,
5385 0x00,0x04,0x40,0xca,0xd8,0x32,0xd1,0xbd,0x97,0x61,0x54,0xd6,0x80,0xcf,0x0d,
5386 0xbd,0xa2,0x42,0xc7,0xca,0x37,0x91,0x7d,0x9d,0xac,0x8c,0xdf,0x05,0x8a,0x39,
5387 0xc6,0x07,0xc1,0x37,0xe6,0xb9,0xd1,0x0d,0x26,0xec,0xa5,0xb0,0x8a,0x51,0x26,
5388 0x2b,0x4f,0x73,0x44,0x86,0x83,0x5e,0x2b,0x6e,0xcc,0xf8,0x1b,0x85,0x53,0xe9,
5389 0x7a,0x80,0x8f,0x6b,0x42,0x19,0x93 };
5390 static const BYTE signedCTLWithCTLInnerContent[] = {
5391 0x30,0x82,0x01,0x0f,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x01,0x07,0x02,
5392 0xa0,0x82,0x01,0x00,0x30,0x81,0xfd,0x02,0x01,0x01,0x31,0x0e,0x30,0x0c,0x06,
5393 0x08,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x02,0x05,0x05,0x00,0x30,0x30,0x06,0x09,
5394 0x2b,0x06,0x01,0x04,0x01,0x82,0x37,0x0a,0x01,0xa0,0x23,0x30,0x21,0x30,0x00,
5395 0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,0x30,0x30,0x30,0x30,
5396 0x30,0x5a,0x30,0x0c,0x06,0x08,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x02,0x05,0x05,
5397 0x00,0x31,0x81,0xb5,0x30,0x81,0xb2,0x02,0x01,0x01,0x30,0x1a,0x30,0x15,0x31,
5398 0x13,0x30,0x11,0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,
5399 0x4c,0x61,0x6e,0x67,0x00,0x02,0x01,0x01,0x30,0x0c,0x06,0x08,0x2a,0x86,0x48,
5400 0x86,0xf7,0x0d,0x02,0x05,0x05,0x00,0xa0,0x3b,0x30,0x18,0x06,0x09,0x2a,0x86,
5401 0x48,0x86,0xf7,0x0d,0x01,0x09,0x03,0x31,0x0b,0x06,0x09,0x2b,0x06,0x01,0x04,
5402 0x01,0x82,0x37,0x0a,0x01,0x30,0x1f,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,
5403 0x01,0x09,0x04,0x31,0x12,0x04,0x10,0x54,0x71,0xbc,0xe1,0x56,0x31,0xa2,0xf9,
5404 0x65,0x70,0x34,0xf8,0xe2,0xe9,0xb4,0xf4,0x30,0x04,0x06,0x00,0x05,0x00,0x04,
5405 0x40,0x2f,0x1b,0x9f,0x5a,0x4a,0x15,0x73,0xfa,0xb1,0x93,0x3d,0x09,0x52,0xdf,
5406 0x6b,0x98,0x4b,0x13,0x5e,0xe7,0xbf,0x65,0xf4,0x9c,0xc2,0xb1,0x77,0x09,0xb1,
5407 0x66,0x4d,0x72,0x0d,0xb1,0x1a,0x50,0x20,0xe0,0x57,0xa2,0x39,0xc7,0xcd,0x7f,
5408 0x8e,0xe7,0x5f,0x76,0x2b,0xd1,0x6a,0x82,0xb3,0x30,0x25,0x61,0xf6,0x25,0x23,
5409 0x57,0x6c,0x0b,0x47,0xb8 };
5411 static void test_decodeCTL(DWORD dwEncoding)
5413 static char oid1[] = "1.2.3";
5414 static char oid2[] = "1.5.6";
5415 static BYTE nullData[] = { 5,0 };
5421 SYSTEMTIME thisUpdate = { 2005, 6, 1, 6, 16, 10, 0, 0 };
5422 CTL_ENTRY ctlEntry[2];
5423 CRYPT_ATTRIBUTE attr1, attr2;
5424 CRYPT_ATTR_BLOB value1, value2;
5426 memset(&info, 0, sizeof(info));
5427 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, emptyCTL, sizeof(emptyCTL),
5428 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5429 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5432 compareCTLInfo("empty CTL", &info, (CTL_INFO *)buf);
5437 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, emptyCTLWithVersion1,
5438 sizeof(emptyCTLWithVersion1), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf,
5440 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5443 compareCTLInfo("v1 CTL", &info, (CTL_INFO *)buf);
5448 info.SubjectUsage.cUsageIdentifier = 1;
5449 info.SubjectUsage.rgpszUsageIdentifier = &pOid1;
5450 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithUsageIdentifier,
5451 sizeof(ctlWithUsageIdentifier), CRYPT_DECODE_ALLOC_FLAG, NULL,
5453 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5456 compareCTLInfo("CTL with usage identifier", &info, (CTL_INFO *)buf);
5460 info.SubjectUsage.cUsageIdentifier = 0;
5461 info.ListIdentifier.cbData = sizeof(serialNum);
5462 info.ListIdentifier.pbData = (LPBYTE)serialNum;
5463 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithListIdentifier,
5464 sizeof(ctlWithListIdentifier), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5465 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5468 compareCTLInfo("CTL with list identifier", &info, (CTL_INFO *)buf);
5472 info.ListIdentifier.cbData = 0;
5473 info.SequenceNumber.cbData = sizeof(serialNum);
5474 info.SequenceNumber.pbData = (LPBYTE)serialNum;
5475 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithSequenceNumber,
5476 sizeof(ctlWithSequenceNumber), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5477 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5480 compareCTLInfo("CTL with sequence number", &info, (CTL_INFO *)buf);
5484 info.SequenceNumber.cbData = 0;
5485 SystemTimeToFileTime(&thisUpdate, &info.ThisUpdate);
5486 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithThisUpdate,
5487 sizeof(ctlWithThisUpdate), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5488 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5491 compareCTLInfo("CTL with this update", &info, (CTL_INFO *)buf);
5495 SystemTimeToFileTime(&thisUpdate, &info.NextUpdate);
5496 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithThisAndNextUpdate,
5497 sizeof(ctlWithThisAndNextUpdate), CRYPT_DECODE_ALLOC_FLAG, NULL,
5499 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5502 compareCTLInfo("CTL with this and next update", &info, (CTL_INFO *)buf);
5506 info.ThisUpdate.dwLowDateTime = info.ThisUpdate.dwHighDateTime = 0;
5507 info.NextUpdate.dwLowDateTime = info.NextUpdate.dwHighDateTime = 0;
5508 info.SubjectAlgorithm.pszObjId = oid2;
5509 info.SubjectAlgorithm.Parameters.cbData = sizeof(nullData);
5510 info.SubjectAlgorithm.Parameters.pbData = nullData;
5511 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithAlgId,
5512 sizeof(ctlWithAlgId), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5513 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5516 compareCTLInfo("CTL with algorithm identifier", &info, (CTL_INFO *)buf);
5520 SetLastError(0xdeadbeef);
5521 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithBogusEntry,
5522 sizeof(ctlWithBogusEntry), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5523 ok(!ret && (GetLastError() == CRYPT_E_ASN1_EOD || CRYPT_E_ASN1_CORRUPT),
5524 "expected CRYPT_E_ASN1_EOD or CRYPT_E_ASN1_CORRUPT, got %08x\n",
5526 info.SubjectAlgorithm.Parameters.cbData = 0;
5527 info.ThisUpdate.dwLowDateTime = info.ThisUpdate.dwHighDateTime = 0;
5528 info.NextUpdate.dwLowDateTime = info.NextUpdate.dwHighDateTime = 0;
5529 info.SubjectAlgorithm.pszObjId = oid2;
5530 info.SubjectAlgorithm.pszObjId = NULL;
5531 value1.cbData = sizeof(emptySequence);
5532 value1.pbData = (LPBYTE)emptySequence;
5533 attr1.pszObjId = oid1;
5535 attr1.rgValue = &value1;
5536 ctlEntry[0].SubjectIdentifier.cbData = sizeof(serialNum);
5537 ctlEntry[0].SubjectIdentifier.pbData = (LPBYTE)serialNum;
5538 ctlEntry[0].cAttribute = 1;
5539 ctlEntry[0].rgAttribute = &attr1;
5541 info.rgCTLEntry = ctlEntry;
5542 SetLastError(0xdeadbeef);
5543 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithOneEntry,
5544 sizeof(ctlWithOneEntry), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5545 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5548 compareCTLInfo("CTL with one entry", &info, (CTL_INFO *)buf);
5552 value2.cbData = sizeof(encodedIPAddr);
5553 value2.pbData = (LPBYTE)encodedIPAddr;
5554 attr2.pszObjId = oid2;
5556 attr2.rgValue = &value2;
5557 ctlEntry[1].SubjectIdentifier.cbData = sizeof(serialNum);
5558 ctlEntry[1].SubjectIdentifier.pbData = (LPBYTE)serialNum;
5559 ctlEntry[1].cAttribute = 1;
5560 ctlEntry[1].rgAttribute = &attr2;
5562 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, ctlWithTwoEntries,
5563 sizeof(ctlWithTwoEntries), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5564 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
5567 compareCTLInfo("CTL with two entries", &info, (CTL_INFO *)buf);
5571 /* A signed CTL isn't decodable, even if the inner content is a CTL */
5572 SetLastError(0xdeadbeef);
5573 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL, signedCTL,
5574 sizeof(signedCTL), CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5575 ok(!ret && (GetLastError() == CRYPT_E_ASN1_BADTAG ||
5576 GetLastError() == OSS_DATA_ERROR /* Win9x */),
5577 "expected CRYPT_E_ASN1_BADTAG or OSS_DATA_ERROR, got %08x\n",
5579 SetLastError(0xdeadbeef);
5580 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CTL,
5581 signedCTLWithCTLInnerContent, sizeof(signedCTLWithCTLInnerContent),
5582 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5583 ok(!ret && (GetLastError() == CRYPT_E_ASN1_BADTAG ||
5584 GetLastError() == OSS_DATA_ERROR /* Win9x */),
5585 "expected CRYPT_E_ASN1_BADTAG or OSS_DATA_ERROR, got %08x\n",
5589 static const BYTE emptyPKCSContentInfo[] = { 0x30,0x04,0x06,0x02,0x2a,0x03 };
5590 static const BYTE emptyPKCSContentInfoExtraBytes[] = { 0x30,0x04,0x06,0x02,0x2a,
5592 static const BYTE bogusPKCSContentInfo[] = { 0x30,0x07,0x06,0x02,0x2a,0x03,
5594 static const BYTE intPKCSContentInfo[] = { 0x30,0x09,0x06,0x02,0x2a,0x03,0xa0,
5595 0x03,0x02,0x01,0x01 };
5596 static BYTE bogusDER[] = { 1 };
5598 static void test_encodePKCSContentInfo(DWORD dwEncoding)
5603 CRYPT_CONTENT_INFO info = { 0 };
5604 char oid1[] = "1.2.3";
5608 /* Crashes on win9x */
5609 SetLastError(0xdeadbeef);
5610 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CONTENT_INFO, NULL,
5611 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5612 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
5613 "Expected STATUS_ACCESS_VIOLATION, got %x\n", GetLastError());
5615 SetLastError(0xdeadbeef);
5616 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CONTENT_INFO, &info,
5617 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5618 ok(!ret && (GetLastError() == E_INVALIDARG ||
5619 GetLastError() == OSS_LIMITED /* Win9x */),
5620 "Expected E_INVALIDARG or OSS_LIMITED, got %x\n", GetLastError());
5621 info.pszObjId = oid1;
5622 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CONTENT_INFO, &info,
5623 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5624 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
5627 ok(size == sizeof(emptyPKCSContentInfo), "Unexpected size %d\n", size);
5628 ok(!memcmp(buf, emptyPKCSContentInfo, size), "Unexpected value\n");
5631 info.Content.pbData = bogusDER;
5632 info.Content.cbData = sizeof(bogusDER);
5633 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CONTENT_INFO, &info,
5634 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5635 ok(ret, "CryptEncodeObjectEx failed; %x\n", GetLastError());
5638 ok(size == sizeof(bogusPKCSContentInfo), "Unexpected size %d\n", size);
5639 ok(!memcmp(buf, bogusPKCSContentInfo, size), "Unexpected value\n");
5642 info.Content.pbData = (BYTE *)ints[0].encoded;
5643 info.Content.cbData = ints[0].encoded[1] + 2;
5644 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_CONTENT_INFO, &info,
5645 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5648 ok(size == sizeof(intPKCSContentInfo), "Unexpected size %d\n", size);
5649 ok(!memcmp(buf, intPKCSContentInfo, size), "Unexpected value\n");
5654 static const BYTE indefiniteSignedPKCSContent[] = {
5655 0x30,0x80,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x01,0x07,0x02,0xa0,0x80,
5656 0x30,0x80,0x02,0x01,0x01,0x31,0x0e,0x30,0x0c,0x06,0x08,0x2a,0x86,0x48,0x86,
5657 0xf7,0x0d,0x02,0x05,0x05,0x00,0x30,0x80,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,
5658 0x0d,0x01,0x07,0x01,0xa0,0x80,0x24,0x80,0x04,0x04,0x01,0x02,0x03,0x04,0x04,
5659 0x04,0x01,0x02,0x03,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0xa0,0x81,0xd2,0x30,
5660 0x81,0xcf,0x02,0x01,0x01,0x30,0x02,0x06,0x00,0x30,0x15,0x31,0x13,0x30,0x11,
5661 0x06,0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,
5662 0x67,0x00,0x30,0x22,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,0x31,0x30,
5663 0x30,0x30,0x30,0x30,0x30,0x5a,0x18,0x0f,0x31,0x36,0x30,0x31,0x30,0x31,0x30,
5664 0x31,0x30,0x30,0x30,0x30,0x30,0x30,0x5a,0x30,0x15,0x31,0x13,0x30,0x11,0x06,
5665 0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,
5666 0x00,0x30,0x5c,0x30,0x0d,0x06,0x09,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x01,0x01,
5667 0x01,0x05,0x00,0x03,0x4b,0x00,0x30,0x48,0x02,0x41,0x00,0xe2,0x54,0x3a,0xa7,
5668 0x83,0xb1,0x27,0x14,0x3e,0x59,0xbb,0xb4,0x53,0xe6,0x1f,0xe7,0x5d,0xf1,0x21,
5669 0x68,0xad,0x85,0x53,0xdb,0x6b,0x1e,0xeb,0x65,0x97,0x03,0x86,0x60,0xde,0xf3,
5670 0x6c,0x38,0x75,0xe0,0x4c,0x61,0xbb,0xbc,0x62,0x17,0xa9,0xcd,0x79,0x3f,0x21,
5671 0x4e,0x96,0xcb,0x0e,0xdc,0x61,0x94,0x30,0x18,0x10,0x6b,0xd0,0x1c,0x10,0x79,
5672 0x02,0x03,0x01,0x00,0x01,0xa3,0x16,0x30,0x14,0x30,0x12,0x06,0x03,0x55,0x1d,
5673 0x13,0x01,0x01,0xff,0x04,0x08,0x30,0x06,0x01,0x01,0xff,0x02,0x01,0x01,0x31,
5674 0x77,0x30,0x75,0x02,0x01,0x01,0x30,0x1a,0x30,0x15,0x31,0x13,0x30,0x11,0x06,
5675 0x03,0x55,0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,
5676 0x00,0x02,0x01,0x01,0x30,0x0c,0x06,0x08,0x2a,0x86,0x48,0x86,0xf7,0x0d,0x02,
5677 0x05,0x05,0x00,0x30,0x04,0x06,0x00,0x05,0x00,0x04,0x40,0x57,0xba,0xe0,0xad,
5678 0xfe,0x36,0x8d,0xb3,0x88,0xa2,0x8d,0x84,0x82,0x52,0x09,0x09,0xd9,0xf0,0xb8,
5679 0x04,0xfa,0xb5,0x51,0x0b,0x2b,0x2e,0xd5,0x72,0x3e,0x3d,0x13,0x8a,0x51,0xc3,
5680 0x71,0x65,0x9a,0x52,0xf2,0x8f,0xb2,0x5b,0x39,0x28,0xb3,0x29,0x36,0xa5,0x8d,
5681 0xe3,0x55,0x71,0x91,0xf9,0x2a,0xd1,0xb8,0xaa,0x52,0xb8,0x22,0x3a,0xeb,0x61,
5682 0x00,0x00,0x00,0x00,0x00,0x00 };
5684 static void test_decodePKCSContentInfo(DWORD dwEncoding)
5689 CRYPT_CONTENT_INFO *info;
5691 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CONTENT_INFO,
5692 emptyPKCSContentInfo, sizeof(emptyPKCSContentInfo),
5693 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5694 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5697 info = (CRYPT_CONTENT_INFO *)buf;
5699 ok(!strcmp(info->pszObjId, "1.2.3"), "Expected 1.2.3, got %s\n",
5701 ok(info->Content.cbData == 0, "Expected no data, got %d\n",
5702 info->Content.cbData);
5705 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CONTENT_INFO,
5706 emptyPKCSContentInfoExtraBytes, sizeof(emptyPKCSContentInfoExtraBytes),
5707 0, NULL, NULL, &size);
5708 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5709 SetLastError(0xdeadbeef);
5710 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CONTENT_INFO,
5711 bogusPKCSContentInfo, sizeof(bogusPKCSContentInfo),
5712 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5713 /* Native fails with CRYPT_E_ASN1_EOD, accept also CRYPT_E_ASN1_CORRUPT as
5714 * I doubt an app depends on that.
5716 ok((!ret && (GetLastError() == CRYPT_E_ASN1_EOD ||
5717 GetLastError() == CRYPT_E_ASN1_CORRUPT)) || broken(ret),
5718 "Expected CRYPT_E_ASN1_EOD or CRYPT_E_ASN1_CORRUPT, got %x\n",
5720 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CONTENT_INFO,
5721 intPKCSContentInfo, sizeof(intPKCSContentInfo),
5722 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5723 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5726 info = (CRYPT_CONTENT_INFO *)buf;
5728 ok(!strcmp(info->pszObjId, "1.2.3"), "Expected 1.2.3, got %s\n",
5730 ok(info->Content.cbData == ints[0].encoded[1] + 2,
5731 "Unexpected size %d\n", info->Content.cbData);
5732 ok(!memcmp(info->Content.pbData, ints[0].encoded,
5733 info->Content.cbData), "Unexpected value\n");
5736 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_CONTENT_INFO,
5737 indefiniteSignedPKCSContent, sizeof(indefiniteSignedPKCSContent),
5738 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5739 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5742 info = (CRYPT_CONTENT_INFO *)buf;
5744 ok(!strcmp(info->pszObjId, szOID_RSA_signedData),
5745 "Expected %s, got %s\n", szOID_RSA_signedData, info->pszObjId);
5746 ok(info->Content.cbData == 392, "Expected 392, got %d\n",
5747 info->Content.cbData);
5752 static const BYTE emptyPKCSAttr[] = { 0x30,0x06,0x06,0x02,0x2a,0x03,0x31,
5754 static const BYTE bogusPKCSAttr[] = { 0x30,0x07,0x06,0x02,0x2a,0x03,0x31,0x01,
5756 static const BYTE intPKCSAttr[] = { 0x30,0x09,0x06,0x02,0x2a,0x03,0x31,0x03,
5759 static void test_encodePKCSAttribute(DWORD dwEncoding)
5761 CRYPT_ATTRIBUTE attr = { 0 };
5765 CRYPT_ATTR_BLOB blob;
5766 char oid[] = "1.2.3";
5770 /* Crashes on win9x */
5771 SetLastError(0xdeadbeef);
5772 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTE, NULL,
5773 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5774 ok(!ret && GetLastError() == STATUS_ACCESS_VIOLATION,
5775 "Expected STATUS_ACCESS_VIOLATION, got %x\n", GetLastError());
5777 SetLastError(0xdeadbeef);
5778 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTE, &attr,
5779 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5780 ok(!ret && (GetLastError() == E_INVALIDARG ||
5781 GetLastError() == OSS_LIMITED /* Win9x */),
5782 "Expected E_INVALIDARG or OSS_LIMITED, got %x\n", GetLastError());
5783 attr.pszObjId = oid;
5784 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTE, &attr,
5785 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5786 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
5789 ok(size == sizeof(emptyPKCSAttr), "Unexpected size %d\n", size);
5790 ok(!memcmp(buf, emptyPKCSAttr, size), "Unexpected value\n");
5793 blob.cbData = sizeof(bogusDER);
5794 blob.pbData = bogusDER;
5796 attr.rgValue = &blob;
5797 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTE, &attr,
5798 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5799 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
5802 ok(size == sizeof(bogusPKCSAttr), "Unexpected size %d\n", size);
5803 ok(!memcmp(buf, bogusPKCSAttr, size), "Unexpected value\n");
5806 blob.pbData = (BYTE *)ints[0].encoded;
5807 blob.cbData = ints[0].encoded[1] + 2;
5808 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTE, &attr,
5809 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5812 ok(size == sizeof(intPKCSAttr), "Unexpected size %d\n", size);
5813 ok(!memcmp(buf, intPKCSAttr, size), "Unexpected value\n");
5818 static void test_decodePKCSAttribute(DWORD dwEncoding)
5823 CRYPT_ATTRIBUTE *attr;
5825 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_ATTRIBUTE,
5826 emptyPKCSAttr, sizeof(emptyPKCSAttr),
5827 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5828 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5831 attr = (CRYPT_ATTRIBUTE *)buf;
5833 ok(!strcmp(attr->pszObjId, "1.2.3"), "Expected 1.2.3, got %s\n",
5835 ok(attr->cValue == 0, "Expected no value, got %d\n", attr->cValue);
5838 SetLastError(0xdeadbeef);
5839 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_ATTRIBUTE,
5840 bogusPKCSAttr, sizeof(bogusPKCSAttr),
5841 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5842 /* Native fails with CRYPT_E_ASN1_EOD, accept also CRYPT_E_ASN1_CORRUPT as
5843 * I doubt an app depends on that.
5845 ok(!ret && (GetLastError() == CRYPT_E_ASN1_EOD ||
5846 GetLastError() == CRYPT_E_ASN1_CORRUPT || OSS_MORE_INPUT /* Win9x */),
5847 "Expected CRYPT_E_ASN1_EOD, CRYPT_E_ASN1_CORRUPT, or OSS_MORE_INPUT, got %x\n",
5849 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_ATTRIBUTE,
5850 intPKCSAttr, sizeof(intPKCSAttr),
5851 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5852 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5855 attr = (CRYPT_ATTRIBUTE *)buf;
5857 ok(!strcmp(attr->pszObjId, "1.2.3"), "Expected 1.2.3, got %s\n",
5859 ok(attr->cValue == 1, "Expected 1 value, got %d\n", attr->cValue);
5860 ok(attr->rgValue[0].cbData == ints[0].encoded[1] + 2,
5861 "Unexpected size %d\n", attr->rgValue[0].cbData);
5862 ok(!memcmp(attr->rgValue[0].pbData, ints[0].encoded,
5863 attr->rgValue[0].cbData), "Unexpected value\n");
5868 static const BYTE emptyPKCSAttributes[] = { 0x31,0x00 };
5869 static const BYTE singlePKCSAttributes[] = { 0x31,0x08,0x30,0x06,0x06,0x02,
5870 0x2a,0x03,0x31,0x00 };
5871 static const BYTE doublePKCSAttributes[] = { 0x31,0x13,0x30,0x06,0x06,0x02,
5872 0x2a,0x03,0x31,0x00,0x30,0x09,0x06,0x02,0x2d,0x06,0x31,0x03,0x02,0x01,0x01 };
5874 static void test_encodePKCSAttributes(DWORD dwEncoding)
5876 CRYPT_ATTRIBUTES attributes = { 0 };
5877 CRYPT_ATTRIBUTE attr[2] = { { 0 } };
5878 CRYPT_ATTR_BLOB blob;
5882 char oid1[] = "1.2.3", oid2[] = "1.5.6";
5884 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTES, &attributes,
5885 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5886 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
5889 ok(size == sizeof(emptyPKCSAttributes), "Unexpected size %d\n", size);
5890 ok(!memcmp(buf, emptyPKCSAttributes, size), "Unexpected value\n");
5893 attributes.cAttr = 1;
5894 attributes.rgAttr = attr;
5895 SetLastError(0xdeadbeef);
5896 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTES, &attributes,
5897 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5898 ok(!ret && (GetLastError() == E_INVALIDARG ||
5899 GetLastError() == OSS_LIMITED /* Win9x */),
5900 "Expected E_INVALIDARG or OSS_LIMITED, got %08x\n", GetLastError());
5901 attr[0].pszObjId = oid1;
5902 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTES, &attributes,
5903 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5906 ok(size == sizeof(singlePKCSAttributes), "Unexpected size %d\n", size);
5907 ok(!memcmp(buf, singlePKCSAttributes, size), "Unexpected value\n");
5910 attr[1].pszObjId = oid2;
5912 attr[1].rgValue = &blob;
5913 blob.pbData = (BYTE *)ints[0].encoded;
5914 blob.cbData = ints[0].encoded[1] + 2;
5915 attributes.cAttr = 2;
5916 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_ATTRIBUTES, &attributes,
5917 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
5918 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
5921 ok(size == sizeof(doublePKCSAttributes), "Unexpected size %d\n", size);
5922 ok(!memcmp(buf, doublePKCSAttributes, size), "Unexpected value\n");
5927 static void test_decodePKCSAttributes(DWORD dwEncoding)
5932 CRYPT_ATTRIBUTES *attributes;
5934 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_ATTRIBUTES,
5935 emptyPKCSAttributes, sizeof(emptyPKCSAttributes),
5936 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5937 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5940 attributes = (CRYPT_ATTRIBUTES *)buf;
5941 ok(attributes->cAttr == 0, "Expected no attributes, got %d\n",
5945 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_ATTRIBUTES,
5946 singlePKCSAttributes, sizeof(singlePKCSAttributes),
5947 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5948 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5951 attributes = (CRYPT_ATTRIBUTES *)buf;
5952 ok(attributes->cAttr == 1, "Expected 1 attribute, got %d\n",
5954 ok(!strcmp(attributes->rgAttr[0].pszObjId, "1.2.3"),
5955 "Expected 1.2.3, got %s\n", attributes->rgAttr[0].pszObjId);
5956 ok(attributes->rgAttr[0].cValue == 0,
5957 "Expected no attributes, got %d\n", attributes->rgAttr[0].cValue);
5960 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_ATTRIBUTES,
5961 doublePKCSAttributes, sizeof(doublePKCSAttributes),
5962 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
5963 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
5966 attributes = (CRYPT_ATTRIBUTES *)buf;
5967 ok(attributes->cAttr == 2, "Expected 2 attributes, got %d\n",
5969 ok(!strcmp(attributes->rgAttr[0].pszObjId, "1.2.3"),
5970 "Expected 1.2.3, got %s\n", attributes->rgAttr[0].pszObjId);
5971 ok(attributes->rgAttr[0].cValue == 0,
5972 "Expected no attributes, got %d\n", attributes->rgAttr[0].cValue);
5973 ok(!strcmp(attributes->rgAttr[1].pszObjId, "1.5.6"),
5974 "Expected 1.5.6, got %s\n", attributes->rgAttr[1].pszObjId);
5975 ok(attributes->rgAttr[1].cValue == 1,
5976 "Expected 1 attribute, got %d\n", attributes->rgAttr[1].cValue);
5977 ok(attributes->rgAttr[1].rgValue[0].cbData == ints[0].encoded[1] + 2,
5978 "Unexpected size %d\n", attributes->rgAttr[1].rgValue[0].cbData);
5979 ok(!memcmp(attributes->rgAttr[1].rgValue[0].pbData, ints[0].encoded,
5980 attributes->rgAttr[1].rgValue[0].cbData), "Unexpected value\n");
5985 static const BYTE singleCapability[] = {
5986 0x30,0x06,0x30,0x04,0x06,0x02,0x2d,0x06 };
5987 static const BYTE twoCapabilities[] = {
5988 0x30,0x0c,0x30,0x04,0x06,0x02,0x2d,0x06,0x30,0x04,0x06,0x02,0x2a,0x03 };
5989 static const BYTE singleCapabilitywithNULL[] = {
5990 0x30,0x08,0x30,0x06,0x06,0x02,0x2d,0x06,0x05,0x00 };
5992 static void test_encodePKCSSMimeCapabilities(DWORD dwEncoding)
5994 static char oid1[] = "1.5.6", oid2[] = "1.2.3";
5998 CRYPT_SMIME_CAPABILITY capability[2];
5999 CRYPT_SMIME_CAPABILITIES capabilities;
6001 /* An empty capabilities is allowed */
6002 capabilities.cCapability = 0;
6003 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6004 &capabilities, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6005 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6008 ok(size == sizeof(emptySequence), "unexpected size %d\n", size);
6009 ok(!memcmp(buf, emptySequence, size), "unexpected value\n");
6012 /* A non-empty capabilities with an empty capability (lacking an OID) is
6015 capability[0].pszObjId = NULL;
6016 capability[0].Parameters.cbData = 0;
6017 capabilities.cCapability = 1;
6018 capabilities.rgCapability = capability;
6019 SetLastError(0xdeadbeef);
6020 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6021 &capabilities, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6022 ok(!ret && (GetLastError() == E_INVALIDARG ||
6023 GetLastError() == OSS_LIMITED /* Win9x */),
6024 "Expected E_INVALIDARG or OSS_LIMITED, got %08x\n", GetLastError());
6025 capability[0].pszObjId = oid1;
6026 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6027 &capabilities, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6028 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6031 ok(size == sizeof(singleCapability), "unexpected size %d\n", size);
6032 ok(!memcmp(buf, singleCapability, size), "unexpected value\n");
6035 capability[1].pszObjId = oid2;
6036 capability[1].Parameters.cbData = 0;
6037 capabilities.cCapability = 2;
6038 ret = pCryptEncodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6039 &capabilities, CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6040 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6043 ok(size == sizeof(twoCapabilities), "unexpected size %d\n", size);
6044 ok(!memcmp(buf, twoCapabilities, size), "unexpected value\n");
6049 static void compareSMimeCapabilities(LPCSTR header,
6050 const CRYPT_SMIME_CAPABILITIES *expected, const CRYPT_SMIME_CAPABILITIES *got)
6054 ok(got->cCapability == expected->cCapability,
6055 "%s: expected %d capabilities, got %d\n", header, expected->cCapability,
6057 for (i = 0; i < expected->cCapability; i++)
6059 ok(!strcmp(expected->rgCapability[i].pszObjId,
6060 got->rgCapability[i].pszObjId), "%s[%d]: expected %s, got %s\n",
6061 header, i, expected->rgCapability[i].pszObjId,
6062 got->rgCapability[i].pszObjId);
6063 ok(expected->rgCapability[i].Parameters.cbData ==
6064 got->rgCapability[i].Parameters.cbData,
6065 "%s[%d]: expected %d bytes, got %d\n", header, i,
6066 expected->rgCapability[i].Parameters.cbData,
6067 got->rgCapability[i].Parameters.cbData);
6068 if (expected->rgCapability[i].Parameters.cbData)
6069 ok(!memcmp(expected->rgCapability[i].Parameters.pbData,
6070 got->rgCapability[i].Parameters.pbData,
6071 expected->rgCapability[i].Parameters.cbData),
6072 "%s[%d]: unexpected value\n", header, i);
6076 static void test_decodePKCSSMimeCapabilities(DWORD dwEncoding)
6078 static char oid1[] = "1.5.6", oid2[] = "1.2.3";
6081 CRYPT_SMIME_CAPABILITY capability[2];
6082 CRYPT_SMIME_CAPABILITIES capabilities, *ptr;
6084 SetLastError(0xdeadbeef);
6085 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6086 emptySequence, sizeof(emptySequence),
6087 CRYPT_DECODE_ALLOC_FLAG, NULL, &ptr, &size);
6088 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
6091 capabilities.cCapability = 0;
6092 compareSMimeCapabilities("empty capabilities", &capabilities, ptr);
6095 SetLastError(0xdeadbeef);
6096 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6097 singleCapability, sizeof(singleCapability), CRYPT_DECODE_ALLOC_FLAG, NULL,
6099 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
6102 capability[0].pszObjId = oid1;
6103 capability[0].Parameters.cbData = 0;
6104 capabilities.cCapability = 1;
6105 capabilities.rgCapability = capability;
6106 compareSMimeCapabilities("single capability", &capabilities, ptr);
6109 SetLastError(0xdeadbeef);
6110 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6111 singleCapabilitywithNULL, sizeof(singleCapabilitywithNULL),
6112 CRYPT_DECODE_ALLOC_FLAG, NULL, &ptr, &size);
6113 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
6116 BYTE NULLparam[] = {0x05, 0x00};
6117 capability[0].pszObjId = oid1;
6118 capability[0].Parameters.cbData = 2;
6119 capability[0].Parameters.pbData = NULLparam;
6120 capabilities.cCapability = 1;
6121 capabilities.rgCapability = capability;
6122 compareSMimeCapabilities("single capability with NULL", &capabilities,
6126 SetLastError(0xdeadbeef);
6127 ret = pCryptDecodeObjectEx(dwEncoding, PKCS_SMIME_CAPABILITIES,
6128 twoCapabilities, sizeof(twoCapabilities), CRYPT_DECODE_ALLOC_FLAG, NULL,
6130 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
6133 capability[0].Parameters.cbData = 0;
6134 capability[1].pszObjId = oid2;
6135 capability[1].Parameters.cbData = 0;
6136 capabilities.cCapability = 2;
6137 compareSMimeCapabilities("two capabilities", &capabilities, ptr);
6142 static BYTE encodedCommonNameNoNull[] = { 0x30,0x14,0x31,0x12,0x30,0x10,
6143 0x06,0x03,0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,
6145 static const BYTE minimalPKCSSigner[] = {
6146 0x30,0x2b,0x02,0x01,0x00,0x30,0x18,0x30,0x14,0x31,0x12,0x30,0x10,0x06,0x03,
6147 0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x02,
6148 0x00,0x30,0x04,0x06,0x00,0x05,0x00,0x30,0x04,0x06,0x00,0x05,0x00,0x04,0x00 };
6149 static const BYTE PKCSSignerWithSerial[] = {
6150 0x30,0x2c,0x02,0x01,0x00,0x30,0x19,0x30,0x14,0x31,0x12,0x30,0x10,0x06,0x03,
6151 0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x02,
6152 0x01,0x01,0x30,0x04,0x06,0x00,0x05,0x00,0x30,0x04,0x06,0x00,0x05,0x00,0x04,
6154 static const BYTE PKCSSignerWithHashAlgo[] = {
6155 0x30,0x2e,0x02,0x01,0x00,0x30,0x19,0x30,0x14,0x31,0x12,0x30,0x10,0x06,0x03,
6156 0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x02,
6157 0x01,0x01,0x30,0x06,0x06,0x02,0x2a,0x03,0x05,0x00,0x30,0x04,0x06,0x00,0x05,
6159 static const BYTE PKCSSignerWithHashAndEncryptionAlgo[] = {
6160 0x30,0x30,0x02,0x01,0x00,0x30,0x19,0x30,0x14,0x31,0x12,0x30,0x10,0x06,0x03,
6161 0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x02,
6162 0x01,0x01,0x30,0x06,0x06,0x02,0x2a,0x03,0x05,0x00,0x30,0x06,0x06,0x02,0x2d,
6163 0x06,0x05,0x00,0x04,0x00 };
6164 static const BYTE PKCSSignerWithHash[] = {
6165 0x30,0x40,0x02,0x01,0x00,0x30,0x19,0x30,0x14,0x31,0x12,0x30,0x10,0x06,0x03,
6166 0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x02,
6167 0x01,0x01,0x30,0x06,0x06,0x02,0x2a,0x03,0x05,0x00,0x30,0x06,0x06,0x02,0x2d,
6168 0x06,0x05,0x00,0x04,0x10,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,
6169 0x0a,0x0b,0x0c,0x0d,0x0e,0x0f };
6170 static const BYTE PKCSSignerWithAuthAttr[] = {
6171 0x30,0x62,0x02,0x01,0x00,0x30,0x19,0x30,0x14,0x31,0x12,0x30,0x10,0x06,0x03,
6172 0x55,0x04,0x03,0x13,0x09,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x02,
6173 0x01,0x01,0x30,0x06,0x06,0x02,0x2a,0x03,0x05,0x00,0xa0,0x20,0x30,0x1e,0x06,
6174 0x03,0x55,0x04,0x03,0x31,0x17,0x30,0x15,0x31,0x13,0x30,0x11,0x06,0x03,0x55,
6175 0x04,0x03,0x13,0x0a,0x4a,0x75,0x61,0x6e,0x20,0x4c,0x61,0x6e,0x67,0x00,0x30,
6176 0x06,0x06,0x02,0x2d,0x06,0x05,0x00,0x04,0x10,0x00,0x01,0x02,0x03,0x04,0x05,
6177 0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,0x0f };
6179 static void test_encodePKCSSignerInfo(DWORD dwEncoding)
6181 static char oid1[] = "1.2.3", oid2[] = "1.5.6";
6185 CMSG_SIGNER_INFO info = { 0 };
6186 char oid_common_name[] = szOID_COMMON_NAME;
6187 CRYPT_ATTR_BLOB commonName = { sizeof(encodedCommonName),
6188 (LPBYTE)encodedCommonName };
6189 CRYPT_ATTRIBUTE attr = { oid_common_name, 1, &commonName };
6191 SetLastError(0xdeadbeef);
6192 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6193 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6194 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
6196 skip("no PKCS7_SIGNER_INFO encode support\n");
6199 ok(!ret && (GetLastError() == E_INVALIDARG ||
6200 GetLastError() == OSS_LIMITED /* Win9x */),
6201 "Expected E_INVALIDARG or OSS_LIMITED, got %08x\n", GetLastError());
6202 /* To be encoded, a signer must have an issuer at least, and the encoding
6203 * must include PKCS_7_ASN_ENCODING. (That isn't enough to be decoded,
6204 * see decoding tests.)
6206 info.Issuer.cbData = sizeof(encodedCommonNameNoNull);
6207 info.Issuer.pbData = encodedCommonNameNoNull;
6208 SetLastError(0xdeadbeef);
6209 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6210 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6211 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6212 ok(!ret && GetLastError() == E_INVALIDARG,
6213 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6216 ok(ret || broken(GetLastError() == OSS_LIMITED /* Win9x */),
6217 "CryptEncodeObjectEx failed: %x\n", GetLastError());
6220 ok(size == sizeof(minimalPKCSSigner), "Unexpected size %d\n", size);
6221 if (size == sizeof(minimalPKCSSigner))
6222 ok(!memcmp(buf, minimalPKCSSigner, size), "Unexpected value\n");
6224 ok(0, "Unexpected value\n");
6228 info.SerialNumber.cbData = sizeof(serialNum);
6229 info.SerialNumber.pbData = (BYTE *)serialNum;
6230 SetLastError(0xdeadbeef);
6231 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6232 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6233 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6234 ok(!ret && GetLastError() == E_INVALIDARG,
6235 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6238 ok(ret || broken(GetLastError() == OSS_LIMITED /* Win9x */),
6239 "CryptEncodeObjectEx failed: %x\n", GetLastError());
6242 ok(size == sizeof(PKCSSignerWithSerial), "Unexpected size %d\n",
6244 if (size == sizeof(PKCSSignerWithSerial))
6245 ok(!memcmp(buf, PKCSSignerWithSerial, size),
6246 "Unexpected value\n");
6248 ok(0, "Unexpected value\n");
6252 info.HashAlgorithm.pszObjId = oid1;
6253 SetLastError(0xdeadbeef);
6254 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6255 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6256 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6257 ok(!ret && GetLastError() == E_INVALIDARG,
6258 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6261 ok(ret || broken(GetLastError() == OSS_LIMITED /* Win9x */),
6262 "CryptEncodeObjectEx failed: %x\n", GetLastError());
6265 ok(size == sizeof(PKCSSignerWithHashAlgo), "Unexpected size %d\n",
6267 if (size == sizeof(PKCSSignerWithHashAlgo))
6268 ok(!memcmp(buf, PKCSSignerWithHashAlgo, size),
6269 "Unexpected value\n");
6271 ok(0, "Unexpected value\n");
6275 info.HashEncryptionAlgorithm.pszObjId = oid2;
6276 SetLastError(0xdeadbeef);
6277 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6278 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6279 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6280 ok(!ret && GetLastError() == E_INVALIDARG,
6281 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6284 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6287 ok(size == sizeof(PKCSSignerWithHashAndEncryptionAlgo),
6288 "Unexpected size %d\n", size);
6289 if (size == sizeof(PKCSSignerWithHashAndEncryptionAlgo))
6290 ok(!memcmp(buf, PKCSSignerWithHashAndEncryptionAlgo, size),
6291 "Unexpected value\n");
6293 ok(0, "Unexpected value\n");
6297 info.EncryptedHash.cbData = sizeof(hash);
6298 info.EncryptedHash.pbData = (BYTE *)hash;
6299 SetLastError(0xdeadbeef);
6300 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6301 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6302 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6303 ok(!ret && GetLastError() == E_INVALIDARG,
6304 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6307 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6310 ok(size == sizeof(PKCSSignerWithHash), "Unexpected size %d\n",
6312 if (size == sizeof(PKCSSignerWithHash))
6313 ok(!memcmp(buf, PKCSSignerWithHash, size),
6314 "Unexpected value\n");
6316 ok(0, "Unexpected value\n");
6320 info.AuthAttrs.cAttr = 1;
6321 info.AuthAttrs.rgAttr = &attr;
6322 SetLastError(0xdeadbeef);
6323 ret = pCryptEncodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO, &info,
6324 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6325 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6326 ok(!ret && GetLastError() == E_INVALIDARG,
6327 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6330 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6333 ok(size == sizeof(PKCSSignerWithAuthAttr), "Unexpected size %d\n",
6335 if (size == sizeof(PKCSSignerWithAuthAttr))
6336 ok(!memcmp(buf, PKCSSignerWithAuthAttr, size),
6337 "Unexpected value\n");
6339 ok(0, "Unexpected value\n");
6345 static void test_decodePKCSSignerInfo(DWORD dwEncoding)
6350 CMSG_SIGNER_INFO *info;
6352 /* A PKCS signer can't be decoded without a serial number. */
6353 SetLastError(0xdeadbeef);
6354 ret = pCryptDecodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO,
6355 minimalPKCSSigner, sizeof(minimalPKCSSigner),
6356 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6357 ok(!ret && (GetLastError() == CRYPT_E_ASN1_CORRUPT ||
6358 GetLastError() == OSS_DATA_ERROR /* Win9x */),
6359 "Expected CRYPT_E_ASN1_CORRUPT or OSS_DATA_ERROR, got %x\n",
6361 ret = pCryptDecodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO,
6362 PKCSSignerWithSerial, sizeof(PKCSSignerWithSerial),
6363 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6364 ok(ret || broken(GetLastError() == OSS_DATA_ERROR),
6365 "CryptDecodeObjectEx failed: %x\n", GetLastError());
6368 info = (CMSG_SIGNER_INFO *)buf;
6369 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6371 ok(info->Issuer.cbData == sizeof(encodedCommonNameNoNull),
6372 "Unexpected size %d\n", info->Issuer.cbData);
6373 ok(!memcmp(info->Issuer.pbData, encodedCommonNameNoNull,
6374 info->Issuer.cbData), "Unexpected value\n");
6375 ok(info->SerialNumber.cbData == sizeof(serialNum),
6376 "Unexpected size %d\n", info->SerialNumber.cbData);
6377 ok(!memcmp(info->SerialNumber.pbData, serialNum, sizeof(serialNum)),
6378 "Unexpected value\n");
6381 ret = pCryptDecodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO,
6382 PKCSSignerWithHashAlgo, sizeof(PKCSSignerWithHashAlgo),
6383 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6386 info = (CMSG_SIGNER_INFO *)buf;
6387 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6389 ok(info->Issuer.cbData == sizeof(encodedCommonNameNoNull),
6390 "Unexpected size %d\n", info->Issuer.cbData);
6391 ok(!memcmp(info->Issuer.pbData, encodedCommonNameNoNull,
6392 info->Issuer.cbData), "Unexpected value\n");
6393 ok(info->SerialNumber.cbData == sizeof(serialNum),
6394 "Unexpected size %d\n", info->SerialNumber.cbData);
6395 ok(!memcmp(info->SerialNumber.pbData, serialNum, sizeof(serialNum)),
6396 "Unexpected value\n");
6397 ok(!strcmp(info->HashAlgorithm.pszObjId, "1.2.3"),
6398 "Expected 1.2.3, got %s\n", info->HashAlgorithm.pszObjId);
6401 ret = pCryptDecodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO,
6402 PKCSSignerWithHashAndEncryptionAlgo,
6403 sizeof(PKCSSignerWithHashAndEncryptionAlgo), CRYPT_DECODE_ALLOC_FLAG,
6407 info = (CMSG_SIGNER_INFO *)buf;
6408 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6410 ok(info->Issuer.cbData == sizeof(encodedCommonNameNoNull),
6411 "Unexpected size %d\n", info->Issuer.cbData);
6412 ok(!memcmp(info->Issuer.pbData, encodedCommonNameNoNull,
6413 info->Issuer.cbData), "Unexpected value\n");
6414 ok(info->SerialNumber.cbData == sizeof(serialNum),
6415 "Unexpected size %d\n", info->SerialNumber.cbData);
6416 ok(!memcmp(info->SerialNumber.pbData, serialNum, sizeof(serialNum)),
6417 "Unexpected value\n");
6418 ok(!strcmp(info->HashAlgorithm.pszObjId, "1.2.3"),
6419 "Expected 1.2.3, got %s\n", info->HashAlgorithm.pszObjId);
6420 ok(!strcmp(info->HashEncryptionAlgorithm.pszObjId, "1.5.6"),
6421 "Expected 1.5.6, got %s\n", info->HashEncryptionAlgorithm.pszObjId);
6424 ret = pCryptDecodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO,
6425 PKCSSignerWithHash, sizeof(PKCSSignerWithHash),
6426 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6429 info = (CMSG_SIGNER_INFO *)buf;
6430 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6432 ok(info->Issuer.cbData == sizeof(encodedCommonNameNoNull),
6433 "Unexpected size %d\n", info->Issuer.cbData);
6434 ok(!memcmp(info->Issuer.pbData, encodedCommonNameNoNull,
6435 info->Issuer.cbData), "Unexpected value\n");
6436 ok(info->SerialNumber.cbData == sizeof(serialNum),
6437 "Unexpected size %d\n", info->SerialNumber.cbData);
6438 ok(!memcmp(info->SerialNumber.pbData, serialNum, sizeof(serialNum)),
6439 "Unexpected value\n");
6440 ok(!strcmp(info->HashAlgorithm.pszObjId, "1.2.3"),
6441 "Expected 1.2.3, got %s\n", info->HashAlgorithm.pszObjId);
6442 ok(!strcmp(info->HashEncryptionAlgorithm.pszObjId, "1.5.6"),
6443 "Expected 1.5.6, got %s\n", info->HashEncryptionAlgorithm.pszObjId);
6444 ok(info->EncryptedHash.cbData == sizeof(hash), "Unexpected size %d\n",
6445 info->EncryptedHash.cbData);
6446 ok(!memcmp(info->EncryptedHash.pbData, hash, sizeof(hash)),
6447 "Unexpected value\n");
6450 ret = pCryptDecodeObjectEx(dwEncoding, PKCS7_SIGNER_INFO,
6451 PKCSSignerWithAuthAttr, sizeof(PKCSSignerWithAuthAttr),
6452 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6455 info = (CMSG_SIGNER_INFO *)buf;
6456 ok(info->AuthAttrs.cAttr == 1, "Expected 1 attribute, got %d\n",
6457 info->AuthAttrs.cAttr);
6458 ok(!strcmp(info->AuthAttrs.rgAttr[0].pszObjId, szOID_COMMON_NAME),
6459 "Expected %s, got %s\n", szOID_COMMON_NAME,
6460 info->AuthAttrs.rgAttr[0].pszObjId);
6461 ok(info->AuthAttrs.rgAttr[0].cValue == 1, "Expected 1 value, got %d\n",
6462 info->AuthAttrs.rgAttr[0].cValue);
6463 ok(info->AuthAttrs.rgAttr[0].rgValue[0].cbData ==
6464 sizeof(encodedCommonName), "Unexpected size %d\n",
6465 info->AuthAttrs.rgAttr[0].rgValue[0].cbData);
6466 ok(!memcmp(info->AuthAttrs.rgAttr[0].rgValue[0].pbData,
6467 encodedCommonName, sizeof(encodedCommonName)), "Unexpected value\n");
6472 static const BYTE CMSSignerWithKeyId[] = {
6473 0x30,0x14,0x02,0x01,0x00,0x80,0x01,0x01,0x30,0x04,0x06,0x00,0x05,0x00,0x30,
6474 0x04,0x06,0x00,0x05,0x00,0x04,0x00 };
6476 static void test_encodeCMSSignerInfo(DWORD dwEncoding)
6481 CMSG_CMS_SIGNER_INFO info = { 0 };
6482 static char oid1[] = "1.2.3", oid2[] = "1.5.6";
6484 SetLastError(0xdeadbeef);
6485 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6486 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6487 ok(!ret, "Expected failure, got %d\n", ret);
6488 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
6490 skip("no CMS_SIGNER_INFO encode support\n");
6493 ok(GetLastError() == E_INVALIDARG,
6494 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6495 info.SignerId.dwIdChoice = CERT_ID_ISSUER_SERIAL_NUMBER;
6496 SetLastError(0xdeadbeef);
6497 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6498 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6499 ok(!ret, "Expected failure, got %d\n", ret);
6500 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
6502 skip("no CMS_SIGNER_INFO encode support\n");
6505 ok(GetLastError() == E_INVALIDARG,
6506 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6507 /* To be encoded, a signer must have a valid cert ID, where a valid ID may
6508 * be a key id or a issuer serial number with at least the issuer set, and
6509 * the encoding must include PKCS_7_ASN_ENCODING.
6510 * (That isn't enough to be decoded, see decoding tests.)
6512 U(info.SignerId).IssuerSerialNumber.Issuer.cbData =
6513 sizeof(encodedCommonNameNoNull);
6514 U(info.SignerId).IssuerSerialNumber.Issuer.pbData = encodedCommonNameNoNull;
6515 SetLastError(0xdeadbeef);
6516 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6517 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6518 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6519 ok(!ret && GetLastError() == E_INVALIDARG,
6520 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6523 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6526 ok(size == sizeof(minimalPKCSSigner), "Unexpected size %d\n", size);
6527 ok(!memcmp(buf, minimalPKCSSigner, size), "Unexpected value\n");
6531 U(info.SignerId).IssuerSerialNumber.SerialNumber.cbData = sizeof(serialNum);
6532 U(info.SignerId).IssuerSerialNumber.SerialNumber.pbData = (BYTE *)serialNum;
6533 SetLastError(0xdeadbeef);
6534 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6535 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6536 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6537 ok(!ret && GetLastError() == E_INVALIDARG,
6538 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6541 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6544 ok(size == sizeof(PKCSSignerWithSerial), "Unexpected size %d\n",
6546 ok(!memcmp(buf, PKCSSignerWithSerial, size), "Unexpected value\n");
6550 info.SignerId.dwIdChoice = CERT_ID_KEY_IDENTIFIER;
6551 U(info.SignerId).KeyId.cbData = sizeof(serialNum);
6552 U(info.SignerId).KeyId.pbData = (BYTE *)serialNum;
6553 SetLastError(0xdeadbeef);
6554 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6555 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6556 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6557 ok(!ret && GetLastError() == E_INVALIDARG,
6558 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6561 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6564 ok(size == sizeof(CMSSignerWithKeyId), "Unexpected size %d\n",
6566 ok(!memcmp(buf, CMSSignerWithKeyId, size), "Unexpected value\n");
6570 /* While a CERT_ID can have a hash type, that's not allowed in CMS, where
6571 * only the IssuerAndSerialNumber and SubjectKeyIdentifier types are allowed
6572 * (see RFC 3852, section 5.3.)
6574 info.SignerId.dwIdChoice = CERT_ID_SHA1_HASH;
6575 U(info.SignerId).HashId.cbData = sizeof(hash);
6576 U(info.SignerId).HashId.pbData = (BYTE *)hash;
6577 SetLastError(0xdeadbeef);
6578 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6579 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6580 ok(!ret && GetLastError() == E_INVALIDARG,
6581 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6582 /* Now with a hash algo */
6583 info.SignerId.dwIdChoice = CERT_ID_ISSUER_SERIAL_NUMBER;
6584 U(info.SignerId).IssuerSerialNumber.Issuer.cbData =
6585 sizeof(encodedCommonNameNoNull);
6586 U(info.SignerId).IssuerSerialNumber.Issuer.pbData = encodedCommonNameNoNull;
6587 info.HashAlgorithm.pszObjId = oid1;
6588 SetLastError(0xdeadbeef);
6589 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6590 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6591 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6592 ok(!ret && GetLastError() == E_INVALIDARG,
6593 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6596 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6599 ok(size == sizeof(PKCSSignerWithHashAlgo), "Unexpected size %d\n",
6601 ok(!memcmp(buf, PKCSSignerWithHashAlgo, size),
6602 "Unexpected value\n");
6606 info.HashEncryptionAlgorithm.pszObjId = oid2;
6607 SetLastError(0xdeadbeef);
6608 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6609 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6610 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6611 ok(!ret && GetLastError() == E_INVALIDARG,
6612 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6615 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6618 ok(size == sizeof(PKCSSignerWithHashAndEncryptionAlgo),
6619 "Unexpected size %d\n", size);
6620 ok(!memcmp(buf, PKCSSignerWithHashAndEncryptionAlgo, size),
6621 "Unexpected value\n");
6625 info.EncryptedHash.cbData = sizeof(hash);
6626 info.EncryptedHash.pbData = (BYTE *)hash;
6627 SetLastError(0xdeadbeef);
6628 ret = pCryptEncodeObjectEx(dwEncoding, CMS_SIGNER_INFO, &info,
6629 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6630 if (!(dwEncoding & PKCS_7_ASN_ENCODING))
6631 ok(!ret && GetLastError() == E_INVALIDARG,
6632 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6635 ok(ret, "CryptEncodeObjectEx failed: %x\n", GetLastError());
6638 ok(size == sizeof(PKCSSignerWithHash), "Unexpected size %d\n",
6640 ok(!memcmp(buf, PKCSSignerWithHash, size), "Unexpected value\n");
6646 static void test_decodeCMSSignerInfo(DWORD dwEncoding)
6651 CMSG_CMS_SIGNER_INFO *info;
6652 static char oid1[] = "1.2.3", oid2[] = "1.5.6";
6654 /* A CMS signer can't be decoded without a serial number. */
6655 SetLastError(0xdeadbeef);
6656 ret = pCryptDecodeObjectEx(dwEncoding, CMS_SIGNER_INFO,
6657 minimalPKCSSigner, sizeof(minimalPKCSSigner),
6658 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6659 ok(!ret, "expected failure\n");
6660 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
6662 skip("no CMS_SIGNER_INFO decode support\n");
6665 ok(GetLastError() == CRYPT_E_ASN1_CORRUPT,
6666 "Expected CRYPT_E_ASN1_CORRUPT, got %x\n", GetLastError());
6667 ret = pCryptDecodeObjectEx(dwEncoding, CMS_SIGNER_INFO,
6668 PKCSSignerWithSerial, sizeof(PKCSSignerWithSerial),
6669 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6670 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
6673 info = (CMSG_CMS_SIGNER_INFO *)buf;
6674 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6676 ok(info->SignerId.dwIdChoice == CERT_ID_ISSUER_SERIAL_NUMBER,
6677 "Expected CERT_ID_ISSUER_SERIAL_NUMBER, got %d\n",
6678 info->SignerId.dwIdChoice);
6679 ok(U(info->SignerId).IssuerSerialNumber.Issuer.cbData ==
6680 sizeof(encodedCommonNameNoNull), "Unexpected size %d\n",
6681 U(info->SignerId).IssuerSerialNumber.Issuer.cbData);
6682 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.Issuer.pbData,
6683 encodedCommonNameNoNull,
6684 U(info->SignerId).IssuerSerialNumber.Issuer.cbData),
6685 "Unexpected value\n");
6686 ok(U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData ==
6687 sizeof(serialNum), "Unexpected size %d\n",
6688 U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData);
6689 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.SerialNumber.pbData,
6690 serialNum, sizeof(serialNum)), "Unexpected value\n");
6693 ret = pCryptDecodeObjectEx(dwEncoding, CMS_SIGNER_INFO,
6694 PKCSSignerWithHashAlgo, sizeof(PKCSSignerWithHashAlgo),
6695 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6696 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
6699 info = (CMSG_CMS_SIGNER_INFO *)buf;
6700 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6702 ok(info->SignerId.dwIdChoice == CERT_ID_ISSUER_SERIAL_NUMBER,
6703 "Expected CERT_ID_ISSUER_SERIAL_NUMBER, got %d\n",
6704 info->SignerId.dwIdChoice);
6705 ok(U(info->SignerId).IssuerSerialNumber.Issuer.cbData ==
6706 sizeof(encodedCommonNameNoNull), "Unexpected size %d\n",
6707 U(info->SignerId).IssuerSerialNumber.Issuer.cbData);
6708 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.Issuer.pbData,
6709 encodedCommonNameNoNull,
6710 U(info->SignerId).IssuerSerialNumber.Issuer.cbData),
6711 "Unexpected value\n");
6712 ok(U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData ==
6713 sizeof(serialNum), "Unexpected size %d\n",
6714 U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData);
6715 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.SerialNumber.pbData,
6716 serialNum, sizeof(serialNum)), "Unexpected value\n");
6717 ok(!strcmp(info->HashAlgorithm.pszObjId, oid1),
6718 "Expected %s, got %s\n", oid1, info->HashAlgorithm.pszObjId);
6721 ret = pCryptDecodeObjectEx(dwEncoding, CMS_SIGNER_INFO,
6722 PKCSSignerWithHashAndEncryptionAlgo,
6723 sizeof(PKCSSignerWithHashAndEncryptionAlgo), CRYPT_DECODE_ALLOC_FLAG,
6725 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
6728 info = (CMSG_CMS_SIGNER_INFO *)buf;
6729 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6731 ok(info->SignerId.dwIdChoice == CERT_ID_ISSUER_SERIAL_NUMBER,
6732 "Expected CERT_ID_ISSUER_SERIAL_NUMBER, got %d\n",
6733 info->SignerId.dwIdChoice);
6734 ok(U(info->SignerId).IssuerSerialNumber.Issuer.cbData ==
6735 sizeof(encodedCommonNameNoNull), "Unexpected size %d\n",
6736 U(info->SignerId).IssuerSerialNumber.Issuer.cbData);
6737 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.Issuer.pbData,
6738 encodedCommonNameNoNull,
6739 U(info->SignerId).IssuerSerialNumber.Issuer.cbData),
6740 "Unexpected value\n");
6741 ok(U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData ==
6742 sizeof(serialNum), "Unexpected size %d\n",
6743 U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData);
6744 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.SerialNumber.pbData,
6745 serialNum, sizeof(serialNum)), "Unexpected value\n");
6746 ok(!strcmp(info->HashAlgorithm.pszObjId, oid1),
6747 "Expected %s, got %s\n", oid1, info->HashAlgorithm.pszObjId);
6748 ok(!strcmp(info->HashEncryptionAlgorithm.pszObjId, oid2),
6749 "Expected %s, got %s\n", oid2, info->HashEncryptionAlgorithm.pszObjId);
6752 ret = pCryptDecodeObjectEx(dwEncoding, CMS_SIGNER_INFO,
6753 PKCSSignerWithHash, sizeof(PKCSSignerWithHash),
6754 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6755 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
6758 info = (CMSG_CMS_SIGNER_INFO *)buf;
6759 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6761 ok(info->SignerId.dwIdChoice == CERT_ID_ISSUER_SERIAL_NUMBER,
6762 "Expected CERT_ID_ISSUER_SERIAL_NUMBER, got %d\n",
6763 info->SignerId.dwIdChoice);
6764 ok(U(info->SignerId).IssuerSerialNumber.Issuer.cbData ==
6765 sizeof(encodedCommonNameNoNull), "Unexpected size %d\n",
6766 U(info->SignerId).IssuerSerialNumber.Issuer.cbData);
6767 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.Issuer.pbData,
6768 encodedCommonNameNoNull,
6769 U(info->SignerId).IssuerSerialNumber.Issuer.cbData),
6770 "Unexpected value\n");
6771 ok(U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData ==
6772 sizeof(serialNum), "Unexpected size %d\n",
6773 U(info->SignerId).IssuerSerialNumber.SerialNumber.cbData);
6774 ok(!memcmp(U(info->SignerId).IssuerSerialNumber.SerialNumber.pbData,
6775 serialNum, sizeof(serialNum)), "Unexpected value\n");
6776 ok(!strcmp(info->HashAlgorithm.pszObjId, oid1),
6777 "Expected %s, got %s\n", oid1, info->HashAlgorithm.pszObjId);
6778 ok(!strcmp(info->HashEncryptionAlgorithm.pszObjId, oid2),
6779 "Expected %s, got %s\n", oid2, info->HashEncryptionAlgorithm.pszObjId);
6780 ok(info->EncryptedHash.cbData == sizeof(hash), "Unexpected size %d\n",
6781 info->EncryptedHash.cbData);
6782 ok(!memcmp(info->EncryptedHash.pbData, hash, sizeof(hash)),
6783 "Unexpected value\n");
6786 ret = pCryptDecodeObjectEx(dwEncoding, CMS_SIGNER_INFO,
6787 CMSSignerWithKeyId, sizeof(CMSSignerWithKeyId),
6788 CRYPT_DECODE_ALLOC_FLAG, NULL, &buf, &size);
6789 ok(ret, "CryptDecodeObjectEx failed: %x\n", GetLastError());
6792 info = (CMSG_CMS_SIGNER_INFO *)buf;
6793 ok(info->dwVersion == 0, "Expected version 0, got %d\n",
6795 ok(info->SignerId.dwIdChoice == CERT_ID_KEY_IDENTIFIER,
6796 "Expected CERT_ID_KEY_IDENTIFIER, got %d\n",
6797 info->SignerId.dwIdChoice);
6798 ok(U(info->SignerId).KeyId.cbData == sizeof(serialNum),
6799 "Unexpected size %d\n", U(info->SignerId).KeyId.cbData);
6800 ok(!memcmp(U(info->SignerId).KeyId.pbData, serialNum, sizeof(serialNum)),
6801 "Unexpected value\n");
6806 static BYTE emptyDNSPermittedConstraints[] = {
6807 0x30,0x06,0xa0,0x04,0x30,0x02,0x82,0x00 };
6808 static BYTE emptyDNSExcludedConstraints[] = {
6809 0x30,0x06,0xa1,0x04,0x30,0x02,0x82,0x00 };
6810 static BYTE DNSExcludedConstraints[] = {
6811 0x30,0x17,0xa1,0x15,0x30,0x13,0x82,0x11,0x68,0x74,0x74,0x70,0x3a,0x2f,0x2f,
6812 0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,0x67 };
6813 static BYTE permittedAndExcludedConstraints[] = {
6814 0x30,0x25,0xa0,0x0c,0x30,0x0a,0x87,0x08,0x30,0x06,0x87,0x04,0x7f,0x00,0x00,
6815 0x01,0xa1,0x15,0x30,0x13,0x82,0x11,0x68,0x74,0x74,0x70,0x3a,0x2f,0x2f,0x77,
6816 0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,0x67 };
6817 static BYTE permittedAndExcludedWithMinConstraints[] = {
6818 0x30,0x28,0xa0,0x0f,0x30,0x0d,0x87,0x08,0x30,0x06,0x87,0x04,0x7f,0x00,0x00,
6819 0x01,0x80,0x01,0x05,0xa1,0x15,0x30,0x13,0x82,0x11,0x68,0x74,0x74,0x70,0x3a,
6820 0x2f,0x2f,0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,0x67 };
6821 static BYTE permittedAndExcludedWithMinMaxConstraints[] = {
6822 0x30,0x2b,0xa0,0x12,0x30,0x10,0x87,0x08,0x30,0x06,0x87,0x04,0x7f,0x00,0x00,
6823 0x01,0x80,0x01,0x05,0x81,0x01,0x03,0xa1,0x15,0x30,0x13,0x82,0x11,0x68,0x74,
6824 0x74,0x70,0x3a,0x2f,0x2f,0x77,0x69,0x6e,0x65,0x68,0x71,0x2e,0x6f,0x72,0x67 };
6826 static void test_encodeNameConstraints(DWORD dwEncoding)
6829 CERT_NAME_CONSTRAINTS_INFO constraints = { 0 };
6830 CERT_GENERAL_SUBTREE permitted = { { 0 } };
6831 CERT_GENERAL_SUBTREE excluded = { { 0 } };
6835 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6836 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6837 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
6839 skip("no X509_NAME_CONSTRAINTS encode support\n");
6842 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6845 ok(size == sizeof(emptySequence), "Unexpected size\n");
6846 ok(!memcmp(buf, emptySequence, size), "Unexpected value\n");
6849 constraints.cPermittedSubtree = 1;
6850 constraints.rgPermittedSubtree = &permitted;
6851 SetLastError(0xdeadbeef);
6852 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6853 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6854 ok(!ret && GetLastError() == E_INVALIDARG,
6855 "Expected E_INVALIDARG, got %08x\n", GetLastError());
6856 permitted.Base.dwAltNameChoice = CERT_ALT_NAME_DNS_NAME;
6857 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6858 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6859 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6862 ok(size == sizeof(emptyDNSPermittedConstraints), "Unexpected size\n");
6863 ok(!memcmp(buf, emptyDNSPermittedConstraints, size),
6864 "Unexpected value\n");
6867 constraints.cPermittedSubtree = 0;
6868 constraints.cExcludedSubtree = 1;
6869 constraints.rgExcludedSubtree = &excluded;
6870 excluded.Base.dwAltNameChoice = CERT_ALT_NAME_DNS_NAME;
6871 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6872 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6873 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6876 ok(size == sizeof(emptyDNSExcludedConstraints), "Unexpected size\n");
6877 ok(!memcmp(buf, emptyDNSExcludedConstraints, size),
6878 "Unexpected value\n");
6881 U(excluded.Base).pwszURL = (LPWSTR)url;
6882 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6883 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6884 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6887 ok(size == sizeof(DNSExcludedConstraints), "Unexpected size\n");
6888 ok(!memcmp(buf, DNSExcludedConstraints, size),
6889 "Unexpected value\n");
6892 permitted.Base.dwAltNameChoice = CERT_ALT_NAME_IP_ADDRESS;
6893 U(permitted.Base).IPAddress.cbData = sizeof(encodedIPAddr);
6894 U(permitted.Base).IPAddress.pbData = (LPBYTE)encodedIPAddr;
6895 constraints.cPermittedSubtree = 1;
6896 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6897 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6898 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6901 ok(size == sizeof(permittedAndExcludedConstraints),
6902 "Unexpected size\n");
6903 ok(!memcmp(buf, permittedAndExcludedConstraints, size),
6904 "Unexpected value\n");
6907 permitted.dwMinimum = 5;
6908 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6909 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6910 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6913 ok(size == sizeof(permittedAndExcludedWithMinConstraints),
6914 "Unexpected size\n");
6915 ok(!memcmp(buf, permittedAndExcludedWithMinConstraints, size),
6916 "Unexpected value\n");
6919 permitted.fMaximum = TRUE;
6920 permitted.dwMaximum = 3;
6921 SetLastError(0xdeadbeef);
6922 ret = pCryptEncodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS, &constraints,
6923 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
6924 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
6927 ok(size == sizeof(permittedAndExcludedWithMinMaxConstraints),
6928 "Unexpected size\n");
6929 ok(!memcmp(buf, permittedAndExcludedWithMinMaxConstraints, size),
6930 "Unexpected value\n");
6935 struct EncodedNameConstraints
6937 CRYPT_DATA_BLOB encoded;
6938 CERT_NAME_CONSTRAINTS_INFO constraints;
6941 static CERT_GENERAL_SUBTREE emptyDNSSubtree = {
6942 { CERT_ALT_NAME_DNS_NAME, { 0 } }, 0 };
6943 static CERT_GENERAL_SUBTREE DNSSubtree = {
6944 { CERT_ALT_NAME_DNS_NAME, { 0 } }, 0 };
6945 static CERT_GENERAL_SUBTREE IPAddressSubtree = {
6946 { CERT_ALT_NAME_IP_ADDRESS, { 0 } }, 0 };
6947 static CERT_GENERAL_SUBTREE IPAddressWithMinSubtree = {
6948 { CERT_ALT_NAME_IP_ADDRESS, { 0 } }, 5, 0 };
6949 static CERT_GENERAL_SUBTREE IPAddressWithMinMaxSubtree = {
6950 { CERT_ALT_NAME_IP_ADDRESS, { 0 } }, 5, TRUE, 3 };
6952 struct EncodedNameConstraints encodedNameConstraints[] = {
6953 { { sizeof(emptySequence), (LPBYTE)emptySequence }, { 0 } },
6954 { { sizeof(emptyDNSPermittedConstraints), emptyDNSPermittedConstraints },
6955 { 1, &emptyDNSSubtree, 0, NULL } },
6956 { { sizeof(emptyDNSExcludedConstraints), emptyDNSExcludedConstraints },
6957 { 0, NULL, 1, &emptyDNSSubtree } },
6958 { { sizeof(DNSExcludedConstraints), DNSExcludedConstraints },
6959 { 0, NULL, 1, &DNSSubtree } },
6960 { { sizeof(permittedAndExcludedConstraints), permittedAndExcludedConstraints },
6961 { 1, &IPAddressSubtree, 1, &DNSSubtree } },
6962 { { sizeof(permittedAndExcludedWithMinConstraints),
6963 permittedAndExcludedWithMinConstraints },
6964 { 1, &IPAddressWithMinSubtree, 1, &DNSSubtree } },
6965 { { sizeof(permittedAndExcludedWithMinMaxConstraints),
6966 permittedAndExcludedWithMinMaxConstraints },
6967 { 1, &IPAddressWithMinMaxSubtree, 1, &DNSSubtree } },
6970 static void test_decodeNameConstraints(DWORD dwEncoding)
6974 CERT_NAME_CONSTRAINTS_INFO *constraints;
6976 U(DNSSubtree.Base).pwszURL = (LPWSTR)url;
6977 U(IPAddressSubtree.Base).IPAddress.cbData = sizeof(encodedIPAddr);
6978 U(IPAddressSubtree.Base).IPAddress.pbData = (LPBYTE)encodedIPAddr;
6979 U(IPAddressWithMinSubtree.Base).IPAddress.cbData = sizeof(encodedIPAddr);
6980 U(IPAddressWithMinSubtree.Base).IPAddress.pbData = (LPBYTE)encodedIPAddr;
6981 U(IPAddressWithMinMaxSubtree.Base).IPAddress.cbData = sizeof(encodedIPAddr);
6982 U(IPAddressWithMinMaxSubtree.Base).IPAddress.pbData = (LPBYTE)encodedIPAddr;
6984 i < sizeof(encodedNameConstraints) / sizeof(encodedNameConstraints[0]);
6989 ret = pCryptDecodeObjectEx(dwEncoding, X509_NAME_CONSTRAINTS,
6990 encodedNameConstraints[i].encoded.pbData,
6991 encodedNameConstraints[i].encoded.cbData,
6992 CRYPT_DECODE_ALLOC_FLAG, NULL, &constraints, &size);
6993 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
6995 skip("no X509_NAME_CONSTRAINTS decode support\n");
6998 ok(ret, "%d: CryptDecodeObjectEx failed: %08x\n", i, GetLastError());
7003 if (constraints->cPermittedSubtree !=
7004 encodedNameConstraints[i].constraints.cPermittedSubtree)
7005 fprintf(stderr, "%d: expected %d permitted, got %d\n", i,
7006 encodedNameConstraints[i].constraints.cPermittedSubtree,
7007 constraints->cPermittedSubtree);
7008 if (constraints->cPermittedSubtree ==
7009 encodedNameConstraints[i].constraints.cPermittedSubtree)
7011 for (j = 0; j < constraints->cPermittedSubtree; j++)
7013 compareAltNameEntry(&constraints->rgPermittedSubtree[j].Base,
7014 &encodedNameConstraints[i].constraints.rgPermittedSubtree[j].Base);
7017 if (constraints->cExcludedSubtree !=
7018 encodedNameConstraints[i].constraints.cExcludedSubtree)
7019 fprintf(stderr, "%d: expected %d excluded, got %d\n", i,
7020 encodedNameConstraints[i].constraints.cExcludedSubtree,
7021 constraints->cExcludedSubtree);
7022 if (constraints->cExcludedSubtree ==
7023 encodedNameConstraints[i].constraints.cExcludedSubtree)
7025 for (j = 0; j < constraints->cExcludedSubtree; j++)
7027 compareAltNameEntry(&constraints->rgExcludedSubtree[j].Base,
7028 &encodedNameConstraints[i].constraints.rgExcludedSubtree[j].Base);
7031 LocalFree(constraints);
7036 static WCHAR noticeText[] = { 'T','h','i','s',' ','i','s',' ','a',' ',
7037 'n','o','t','i','c','e',0 };
7038 static const BYTE noticeWithDisplayText[] = {
7039 0x30,0x22,0x1e,0x20,0x00,0x54,0x00,0x68,0x00,0x69,0x00,0x73,0x00,0x20,0x00,
7040 0x69,0x00,0x73,0x00,0x20,0x00,0x61,0x00,0x20,0x00,0x6e,0x00,0x6f,0x00,0x74,
7041 0x00,0x69,0x00,0x63,0x00,0x65
7043 static char org[] = "Wine";
7044 static int noticeNumbers[] = { 2,3 };
7045 static BYTE noticeWithReference[] = {
7046 0x30,0x32,0x30,0x0e,0x16,0x04,0x57,0x69,0x6e,0x65,0x30,0x06,0x02,0x01,0x02,
7047 0x02,0x01,0x03,0x1e,0x20,0x00,0x54,0x00,0x68,0x00,0x69,0x00,0x73,0x00,0x20,
7048 0x00,0x69,0x00,0x73,0x00,0x20,0x00,0x61,0x00,0x20,0x00,0x6e,0x00,0x6f,0x00,
7049 0x74,0x00,0x69,0x00,0x63,0x00,0x65
7052 static void test_encodePolicyQualifierUserNotice(DWORD dwEncoding)
7057 CERT_POLICY_QUALIFIER_USER_NOTICE notice;
7058 CERT_POLICY_QUALIFIER_NOTICE_REFERENCE reference;
7060 memset(¬ice, 0, sizeof(notice));
7061 ret = pCryptEncodeObjectEx(dwEncoding,
7062 X509_PKIX_POLICY_QUALIFIER_USERNOTICE, ¬ice, CRYPT_ENCODE_ALLOC_FLAG,
7064 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
7066 skip("no X509_PKIX_POLICY_QUALIFIER_USERNOTICE encode support\n");
7069 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
7072 ok(sizeof(emptySequence) == size, "unexpected size %d\n", size);
7073 ok(!memcmp(buf, emptySequence, size), "unexpected value\n");
7076 notice.pszDisplayText = noticeText;
7077 ret = pCryptEncodeObjectEx(dwEncoding,
7078 X509_PKIX_POLICY_QUALIFIER_USERNOTICE, ¬ice, CRYPT_ENCODE_ALLOC_FLAG,
7080 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
7083 ok(sizeof(noticeWithDisplayText) == size, "unexpected size %d\n", size);
7084 ok(!memcmp(buf, noticeWithDisplayText, size), "unexpected value\n");
7087 reference.pszOrganization = org;
7088 reference.cNoticeNumbers = 2;
7089 reference.rgNoticeNumbers = noticeNumbers;
7090 notice.pNoticeReference = &reference;
7091 ret = pCryptEncodeObjectEx(dwEncoding,
7092 X509_PKIX_POLICY_QUALIFIER_USERNOTICE, ¬ice, CRYPT_ENCODE_ALLOC_FLAG,
7094 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
7097 ok(sizeof(noticeWithReference) == size, "unexpected size %d\n", size);
7098 ok(!memcmp(buf, noticeWithReference, size), "unexpected value\n");
7103 static void test_decodePolicyQualifierUserNotice(DWORD dwEncoding)
7106 CERT_POLICY_QUALIFIER_USER_NOTICE *notice;
7109 ret = pCryptDecodeObjectEx(dwEncoding,
7110 X509_PKIX_POLICY_QUALIFIER_USERNOTICE,
7111 emptySequence, sizeof(emptySequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
7113 if (!ret && GetLastError() == ERROR_FILE_NOT_FOUND)
7115 skip("no X509_PKIX_POLICY_QUALIFIER_USERNOTICE decode support\n");
7118 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
7121 ok(notice->pszDisplayText == NULL, "unexpected display text\n");
7122 ok(notice->pNoticeReference == NULL, "unexpected notice reference\n");
7125 ret = pCryptDecodeObjectEx(dwEncoding,
7126 X509_PKIX_POLICY_QUALIFIER_USERNOTICE,
7127 noticeWithDisplayText, sizeof(noticeWithDisplayText),
7128 CRYPT_DECODE_ALLOC_FLAG, NULL, ¬ice, &size);
7129 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
7132 ok(!lstrcmpW(notice->pszDisplayText, noticeText),
7133 "unexpected display text\n");
7134 ok(notice->pNoticeReference == NULL, "unexpected notice reference\n");
7137 ret = pCryptDecodeObjectEx(dwEncoding,
7138 X509_PKIX_POLICY_QUALIFIER_USERNOTICE,
7139 noticeWithReference, sizeof(noticeWithReference),
7140 CRYPT_DECODE_ALLOC_FLAG, NULL, ¬ice, &size);
7141 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
7144 ok(!lstrcmpW(notice->pszDisplayText, noticeText),
7145 "unexpected display text\n");
7146 ok(notice->pNoticeReference != NULL, "expected a notice reference\n");
7147 if (notice->pNoticeReference)
7149 ok(!strcmp(notice->pNoticeReference->pszOrganization, org),
7150 "unexpected organization %s\n",
7151 notice->pNoticeReference->pszOrganization);
7152 ok(notice->pNoticeReference->cNoticeNumbers == 2,
7153 "expected 2 notice numbers, got %d\n",
7154 notice->pNoticeReference->cNoticeNumbers);
7155 ok(notice->pNoticeReference->rgNoticeNumbers[0] == noticeNumbers[0],
7156 "unexpected notice number %d\n",
7157 notice->pNoticeReference->rgNoticeNumbers[0]);
7158 ok(notice->pNoticeReference->rgNoticeNumbers[1] == noticeNumbers[1],
7159 "unexpected notice number %d\n",
7160 notice->pNoticeReference->rgNoticeNumbers[1]);
7166 static char oid_any_policy[] = "2.5.29.32.0";
7167 static const BYTE policiesWithAnyPolicy[] = {
7168 0x30,0x08,0x30,0x06,0x06,0x04,0x55,0x1d,0x20,0x00
7170 static char oid1[] = "1.2.3";
7171 static char oid_user_notice[] = "1.3.6.1.5.5.7.2.2";
7172 static const BYTE twoPolicies[] = {
7173 0x30,0x50,0x30,0x06,0x06,0x04,0x55,0x1d,0x20,0x00,0x30,0x46,0x06,0x02,0x2a,
7174 0x03,0x30,0x40,0x30,0x3e,0x06,0x08,0x2b,0x06,0x01,0x05,0x05,0x07,0x02,0x02,
7175 0x30,0x32,0x30,0x0e,0x16,0x04,0x57,0x69,0x6e,0x65,0x30,0x06,0x02,0x01,0x02,
7176 0x02,0x01,0x03,0x1e,0x20,0x00,0x54,0x00,0x68,0x00,0x69,0x00,0x73,0x00,0x20,
7177 0x00,0x69,0x00,0x73,0x00,0x20,0x00,0x61,0x00,0x20,0x00,0x6e,0x00,0x6f,0x00,
7178 0x74,0x00,0x69,0x00,0x63,0x00,0x65
7181 static void test_encodeCertPolicies(DWORD dwEncoding)
7184 CERT_POLICIES_INFO info;
7185 CERT_POLICY_INFO policy[2];
7186 CERT_POLICY_QUALIFIER_INFO qualifier;
7190 memset(&info, 0, sizeof(info));
7191 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_POLICIES, &info,
7192 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
7193 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
7196 ok(sizeof(emptySequence) == size, "unexpected size %d\n", size);
7197 ok(!memcmp(buf, emptySequence, size), "unexpected value\n");
7200 memset(policy, 0, sizeof(policy));
7201 info.cPolicyInfo = 1;
7202 info.rgPolicyInfo = policy;
7203 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_POLICIES, &info,
7204 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
7205 ok(!ret && (GetLastError() == E_INVALIDARG ||
7206 GetLastError() == OSS_LIMITED /* Win9x/NT4 */),
7207 "expected E_INVALIDARG or OSS_LIMITED, got %08x\n", GetLastError());
7208 policy[0].pszPolicyIdentifier = oid_any_policy;
7209 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_POLICIES, &info,
7210 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
7211 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
7214 ok(sizeof(policiesWithAnyPolicy) == size, "unexpected size %d\n", size);
7215 ok(!memcmp(buf, policiesWithAnyPolicy, size), "unexpected value\n");
7218 policy[1].pszPolicyIdentifier = oid1;
7219 memset(&qualifier, 0, sizeof(qualifier));
7220 qualifier.pszPolicyQualifierId = oid_user_notice;
7221 qualifier.Qualifier.cbData = sizeof(noticeWithReference);
7222 qualifier.Qualifier.pbData = noticeWithReference;
7223 policy[1].cPolicyQualifier = 1;
7224 policy[1].rgPolicyQualifier = &qualifier;
7225 info.cPolicyInfo = 2;
7226 ret = pCryptEncodeObjectEx(dwEncoding, X509_CERT_POLICIES, &info,
7227 CRYPT_ENCODE_ALLOC_FLAG, NULL, &buf, &size);
7228 ok(ret, "CryptEncodeObjectEx failed: %08x\n", GetLastError());
7231 ok(sizeof(twoPolicies) == size, "unexpected size %d\n", size);
7232 ok(!memcmp(buf, twoPolicies, size), "unexpected value\n");
7237 static void test_decodeCertPolicies(DWORD dwEncoding)
7240 CERT_POLICIES_INFO *info;
7243 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_POLICIES,
7244 emptySequence, sizeof(emptySequence), CRYPT_DECODE_ALLOC_FLAG, NULL,
7246 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
7249 ok(info->cPolicyInfo == 0, "unexpected policy info %d\n",
7253 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_POLICIES,
7254 policiesWithAnyPolicy, sizeof(policiesWithAnyPolicy),
7255 CRYPT_DECODE_ALLOC_FLAG, NULL, &info, &size);
7256 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
7259 ok(info->cPolicyInfo == 1, "unexpected policy info %d\n",
7261 ok(!strcmp(info->rgPolicyInfo[0].pszPolicyIdentifier, oid_any_policy),
7262 "unexpected policy id %s\n",
7263 info->rgPolicyInfo[0].pszPolicyIdentifier);
7264 ok(info->rgPolicyInfo[0].cPolicyQualifier == 0,
7265 "unexpected policy qualifier count %d\n",
7266 info->rgPolicyInfo[0].cPolicyQualifier);
7269 ret = pCryptDecodeObjectEx(dwEncoding, X509_CERT_POLICIES,
7270 twoPolicies, sizeof(twoPolicies),
7271 CRYPT_DECODE_ALLOC_FLAG, NULL, &info, &size);
7272 ok(ret, "CryptDecodeObjectEx failed: %08x\n", GetLastError());
7275 ok(info->cPolicyInfo == 2, "unexpected policy info %d\n",
7277 ok(!strcmp(info->rgPolicyInfo[0].pszPolicyIdentifier, oid_any_policy),
7278 "unexpected policy id %s\n",
7279 info->rgPolicyInfo[0].pszPolicyIdentifier);
7280 ok(info->rgPolicyInfo[0].cPolicyQualifier == 0,
7281 "unexpected policy qualifier count %d\n",
7282 info->rgPolicyInfo[0].cPolicyQualifier);
7283 ok(!strcmp(info->rgPolicyInfo[1].pszPolicyIdentifier, oid1),
7284 "unexpected policy id %s\n",
7285 info->rgPolicyInfo[1].pszPolicyIdentifier);
7286 ok(info->rgPolicyInfo[1].cPolicyQualifier == 1,
7287 "unexpected policy qualifier count %d\n",
7288 info->rgPolicyInfo[1].cPolicyQualifier);
7290 info->rgPolicyInfo[1].rgPolicyQualifier[0].pszPolicyQualifierId,
7291 oid_user_notice), "unexpected policy qualifier id %s\n",
7292 info->rgPolicyInfo[1].rgPolicyQualifier[0].pszPolicyQualifierId);
7293 ok(info->rgPolicyInfo[1].rgPolicyQualifier[0].Qualifier.cbData ==
7294 sizeof(noticeWithReference), "unexpected qualifier size %d\n",
7295 info->rgPolicyInfo[1].rgPolicyQualifier[0].Qualifier.cbData);
7297 info->rgPolicyInfo[1].rgPolicyQualifier[0].Qualifier.pbData,
7298 noticeWithReference, sizeof(noticeWithReference)),
7299 "unexpected qualifier value\n");
7304 /* Free *pInfo with HeapFree */
7305 static void testExportPublicKey(HCRYPTPROV csp, PCERT_PUBLIC_KEY_INFO *pInfo)
7312 ret = CryptExportPublicKeyInfoEx(0, 0, 0, NULL, 0, NULL, NULL, NULL);
7314 ret = CryptExportPublicKeyInfoEx(0, 0, 0, NULL, 0, NULL, NULL, &size);
7315 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
7316 "Expected ERROR_INVALID_PARAMETER, got %08x\n", GetLastError());
7317 ret = CryptExportPublicKeyInfoEx(0, AT_SIGNATURE, 0, NULL, 0, NULL, NULL,
7319 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
7320 "Expected ERROR_INVALID_PARAMETER, got %08x\n", GetLastError());
7321 ret = CryptExportPublicKeyInfoEx(0, 0, X509_ASN_ENCODING, NULL, 0, NULL,
7323 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
7324 "Expected ERROR_INVALID_PARAMETER, got %08x\n", GetLastError());
7325 ret = CryptExportPublicKeyInfoEx(0, AT_SIGNATURE, X509_ASN_ENCODING, NULL,
7326 0, NULL, NULL, &size);
7327 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
7328 "Expected ERROR_INVALID_PARAMETER, got %08x\n", GetLastError());
7329 /* Test with no key */
7330 ret = CryptExportPublicKeyInfoEx(csp, AT_SIGNATURE, X509_ASN_ENCODING, NULL,
7331 0, NULL, NULL, &size);
7332 ok(!ret && GetLastError() == NTE_NO_KEY, "Expected NTE_NO_KEY, got %08x\n",
7334 ret = CryptGenKey(csp, AT_SIGNATURE, 0, &key);
7335 ok(ret, "CryptGenKey failed: %08x\n", GetLastError());
7338 ret = CryptExportPublicKeyInfoEx(csp, AT_SIGNATURE, X509_ASN_ENCODING,
7339 NULL, 0, NULL, NULL, &size);
7340 ok(ret, "CryptExportPublicKeyInfoEx failed: %08x\n", GetLastError());
7341 *pInfo = HeapAlloc(GetProcessHeap(), 0, size);
7344 ret = CryptExportPublicKeyInfoEx(csp, AT_SIGNATURE,
7345 X509_ASN_ENCODING, NULL, 0, NULL, *pInfo, &size);
7346 ok(ret, "CryptExportPublicKeyInfoEx failed: %08x\n",
7350 /* By default (we passed NULL as the OID) the OID is
7353 ok(!strcmp((*pInfo)->Algorithm.pszObjId, szOID_RSA_RSA),
7354 "Expected %s, got %s\n", szOID_RSA_RSA,
7355 (*pInfo)->Algorithm.pszObjId);
7359 CryptDestroyKey(key);
7362 static const BYTE expiredCert[] = { 0x30, 0x82, 0x01, 0x33, 0x30, 0x81, 0xe2,
7363 0xa0, 0x03, 0x02, 0x01, 0x02, 0x02, 0x10, 0xc4, 0xd7, 0x7f, 0x0e, 0x6f, 0xa6,
7364 0x8c, 0xaa, 0x47, 0x47, 0x40, 0xe7, 0xb7, 0x0b, 0x4a, 0x7f, 0x30, 0x09, 0x06,
7365 0x05, 0x2b, 0x0e, 0x03, 0x02, 0x1d, 0x05, 0x00, 0x30, 0x1f, 0x31, 0x1d, 0x30,
7366 0x1b, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13, 0x14, 0x61, 0x72, 0x69, 0x63, 0x40,
7367 0x63, 0x6f, 0x64, 0x65, 0x77, 0x65, 0x61, 0x76, 0x65, 0x72, 0x73, 0x2e, 0x63,
7368 0x6f, 0x6d, 0x30, 0x1e, 0x17, 0x0d, 0x36, 0x39, 0x30, 0x31, 0x30, 0x31, 0x30,
7369 0x30, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x17, 0x0d, 0x37, 0x30, 0x30, 0x31, 0x30,
7370 0x31, 0x30, 0x36, 0x30, 0x30, 0x30, 0x30, 0x5a, 0x30, 0x1f, 0x31, 0x1d, 0x30,
7371 0x1b, 0x06, 0x03, 0x55, 0x04, 0x03, 0x13, 0x14, 0x61, 0x72, 0x69, 0x63, 0x40,
7372 0x63, 0x6f, 0x64, 0x65, 0x77, 0x65, 0x61, 0x76, 0x65, 0x72, 0x73, 0x2e, 0x63,
7373 0x6f, 0x6d, 0x30, 0x5c, 0x30, 0x0d, 0x06, 0x09, 0x2a, 0x86, 0x48, 0x86, 0xf7,
7374 0x0d, 0x01, 0x01, 0x01, 0x05, 0x00, 0x03, 0x4b, 0x00, 0x30, 0x48, 0x02, 0x41,
7375 0x00, 0xa1, 0xaf, 0x4a, 0xea, 0xa7, 0x83, 0x57, 0xc0, 0x37, 0x33, 0x7e, 0x29,
7376 0x5e, 0x0d, 0xfc, 0x44, 0x74, 0x3a, 0x1d, 0xc3, 0x1b, 0x1d, 0x96, 0xed, 0x4e,
7377 0xf4, 0x1b, 0x98, 0xec, 0x69, 0x1b, 0x04, 0xea, 0x25, 0xcf, 0xb3, 0x2a, 0xf5,
7378 0xd9, 0x22, 0xd9, 0x8d, 0x08, 0x39, 0x81, 0xc6, 0xe0, 0x4f, 0x12, 0x37, 0x2a,
7379 0x3f, 0x80, 0xa6, 0x6c, 0x67, 0x43, 0x3a, 0xdd, 0x95, 0x0c, 0xbb, 0x2f, 0x6b,
7380 0x02, 0x03, 0x01, 0x00, 0x01, 0x30, 0x09, 0x06, 0x05, 0x2b, 0x0e, 0x03, 0x02,
7381 0x1d, 0x05, 0x00, 0x03, 0x41, 0x00, 0x8f, 0xa2, 0x5b, 0xd6, 0xdf, 0x34, 0xd0,
7382 0xa2, 0xa7, 0x47, 0xf1, 0x13, 0x79, 0xd3, 0xf3, 0x39, 0xbd, 0x4e, 0x2b, 0xa3,
7383 0xf4, 0x63, 0x37, 0xac, 0x5a, 0x0c, 0x5e, 0x4d, 0x0d, 0x54, 0x87, 0x4f, 0x31,
7384 0xfb, 0xa0, 0xce, 0x8f, 0x9a, 0x2f, 0x4d, 0x48, 0xc6, 0x84, 0x8d, 0xf5, 0x70,
7385 0x74, 0x17, 0xa5, 0xf3, 0x66, 0x47, 0x06, 0xd6, 0x64, 0x45, 0xbc, 0x52, 0xef,
7386 0x49, 0xe5, 0xf9, 0x65, 0xf3 };
7388 static void testImportPublicKey(HCRYPTPROV csp, PCERT_PUBLIC_KEY_INFO info)
7392 PCCERT_CONTEXT context;
7397 ret = CryptImportPublicKeyInfoEx(0, 0, NULL, 0, 0, NULL, NULL);
7398 ret = CryptImportPublicKeyInfoEx(0, 0, NULL, 0, 0, NULL, &key);
7399 ret = CryptImportPublicKeyInfoEx(0, 0, info, 0, 0, NULL, NULL);
7400 ret = CryptImportPublicKeyInfoEx(csp, X509_ASN_ENCODING, info, 0, 0, NULL,
7403 ret = CryptImportPublicKeyInfoEx(0, 0, info, 0, 0, NULL, &key);
7404 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
7405 "Expected ERROR_FILE_NOT_FOUND, got %08x\n", GetLastError());
7406 ret = CryptImportPublicKeyInfoEx(csp, 0, info, 0, 0, NULL, &key);
7407 ok(!ret && GetLastError() == ERROR_FILE_NOT_FOUND,
7408 "Expected ERROR_FILE_NOT_FOUND, got %08x\n", GetLastError());
7409 ret = CryptImportPublicKeyInfoEx(0, X509_ASN_ENCODING, info, 0, 0, NULL,
7411 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
7412 "Expected ERROR_INVALID_PARAMETER, got %08x\n", GetLastError());
7414 /* Export key with standard algorithm (CALG_RSA_KEYX) */
7415 ret = CryptImportPublicKeyInfoEx(csp, X509_ASN_ENCODING, info, 0, 0, NULL,
7417 ok(ret, "CryptImportPublicKeyInfoEx failed: %08x\n", GetLastError());
7419 dwSize = sizeof(ai);
7420 CryptGetKeyParam(key, KP_ALGID, (LPVOID)&ai, &dwSize, 0);
7421 ok(ret, "CryptGetKeyParam failed: %08x\n", GetLastError());
7424 ok(dwSize == sizeof(ai), "CryptGetKeyParam returned size %d\n",dwSize);
7425 ok(ai == CALG_RSA_KEYX, "Default ALG_ID is %04x (expected CALG_RSA_KEYX)\n", ai);
7428 CryptDestroyKey(key);
7430 /* Repeat with forced algorithm */
7431 ret = CryptImportPublicKeyInfoEx(csp, X509_ASN_ENCODING, info, CALG_RSA_SIGN, 0, NULL,
7433 ok(ret, "CryptImportPublicKeyInfoEx failed: %08x\n", GetLastError());
7435 dwSize = sizeof(ai);
7436 CryptGetKeyParam(key, KP_ALGID, (LPVOID)&ai, &dwSize, 0);
7437 ok(ret, "CryptGetKeyParam failed: %08x\n", GetLastError());
7440 ok(dwSize == sizeof(ai), "CryptGetKeyParam returned size %d\n",dwSize);
7441 ok(ai == CALG_RSA_SIGN, "ALG_ID is %04x (expected CALG_RSA_SIGN)\n", ai);
7444 CryptDestroyKey(key);
7446 /* Test importing a public key from a certificate context */
7447 context = CertCreateCertificateContext(X509_ASN_ENCODING, expiredCert,
7448 sizeof(expiredCert));
7449 ok(context != NULL, "CertCreateCertificateContext failed: %08x\n",
7453 ok(!strcmp(szOID_RSA_RSA,
7454 context->pCertInfo->SubjectPublicKeyInfo.Algorithm.pszObjId),
7455 "Expected %s, got %s\n", szOID_RSA_RSA,
7456 context->pCertInfo->SubjectPublicKeyInfo.Algorithm.pszObjId);
7457 ret = CryptImportPublicKeyInfoEx(csp, X509_ASN_ENCODING,
7458 &context->pCertInfo->SubjectPublicKeyInfo, 0, 0, NULL, &key);
7459 ok(ret, "CryptImportPublicKeyInfoEx failed: %08x\n", GetLastError());
7460 CryptDestroyKey(key);
7461 CertFreeCertificateContext(context);
7465 static const char cspName[] = "WineCryptTemp";
7467 static void testPortPublicKeyInfo(void)
7471 PCERT_PUBLIC_KEY_INFO info = NULL;
7473 /* Just in case a previous run failed, delete this thing */
7474 CryptAcquireContextA(&csp, cspName, MS_DEF_PROV, PROV_RSA_FULL,
7475 CRYPT_DELETEKEYSET);
7476 ret = CryptAcquireContextA(&csp, cspName, MS_DEF_PROV, PROV_RSA_FULL,
7479 testExportPublicKey(csp, &info);
7480 testImportPublicKey(csp, info);
7482 HeapFree(GetProcessHeap(), 0, info);
7483 CryptReleaseContext(csp, 0);
7484 ret = CryptAcquireContextA(&csp, cspName, MS_DEF_PROV, PROV_RSA_FULL,
7485 CRYPT_DELETEKEYSET);
7490 static const DWORD encodings[] = { X509_ASN_ENCODING, PKCS_7_ASN_ENCODING,
7491 X509_ASN_ENCODING | PKCS_7_ASN_ENCODING };
7495 hCrypt32 = GetModuleHandleA("crypt32.dll");
7496 pCryptDecodeObjectEx = (void*)GetProcAddress(hCrypt32, "CryptDecodeObjectEx");
7497 pCryptEncodeObjectEx = (void*)GetProcAddress(hCrypt32, "CryptEncodeObjectEx");
7498 if (!pCryptDecodeObjectEx || !pCryptEncodeObjectEx)
7500 win_skip("CryptDecodeObjectEx() is not available\n");
7504 for (i = 0; i < sizeof(encodings) / sizeof(encodings[0]); i++)
7506 test_encodeInt(encodings[i]);
7507 test_decodeInt(encodings[i]);
7508 test_encodeEnumerated(encodings[i]);
7509 test_decodeEnumerated(encodings[i]);
7510 test_encodeFiletime(encodings[i]);
7511 test_decodeFiletime(encodings[i]);
7512 test_encodeName(encodings[i]);
7513 test_decodeName(encodings[i]);
7514 test_encodeUnicodeName(encodings[i]);
7515 test_decodeUnicodeName(encodings[i]);
7516 test_encodeNameValue(encodings[i]);
7517 test_decodeNameValue(encodings[i]);
7518 test_encodeUnicodeNameValue(encodings[i]);
7519 test_decodeUnicodeNameValue(encodings[i]);
7520 test_encodeAltName(encodings[i]);
7521 test_decodeAltName(encodings[i]);
7522 test_encodeOctets(encodings[i]);
7523 test_decodeOctets(encodings[i]);
7524 test_encodeBits(encodings[i]);
7525 test_decodeBits(encodings[i]);
7526 test_encodeBasicConstraints(encodings[i]);
7527 test_decodeBasicConstraints(encodings[i]);
7528 test_encodeRsaPublicKey(encodings[i]);
7529 test_decodeRsaPublicKey(encodings[i]);
7530 test_encodeSequenceOfAny(encodings[i]);
7531 test_decodeSequenceOfAny(encodings[i]);
7532 test_encodeExtensions(encodings[i]);
7533 test_decodeExtensions(encodings[i]);
7534 test_encodePublicKeyInfo(encodings[i]);
7535 test_decodePublicKeyInfo(encodings[i]);
7536 test_encodeCertToBeSigned(encodings[i]);
7537 test_decodeCertToBeSigned(encodings[i]);
7538 test_encodeCert(encodings[i]);
7539 test_decodeCert(encodings[i]);
7540 test_encodeCRLDistPoints(encodings[i]);
7541 test_decodeCRLDistPoints(encodings[i]);
7542 test_encodeCRLIssuingDistPoint(encodings[i]);
7543 test_decodeCRLIssuingDistPoint(encodings[i]);
7544 test_encodeCRLToBeSigned(encodings[i]);
7545 test_decodeCRLToBeSigned(encodings[i]);
7546 test_encodeEnhancedKeyUsage(encodings[i]);
7547 test_decodeEnhancedKeyUsage(encodings[i]);
7548 test_encodeAuthorityKeyId(encodings[i]);
7549 test_decodeAuthorityKeyId(encodings[i]);
7550 test_encodeAuthorityKeyId2(encodings[i]);
7551 test_decodeAuthorityKeyId2(encodings[i]);
7552 test_encodeAuthorityInfoAccess(encodings[i]);
7553 test_decodeAuthorityInfoAccess(encodings[i]);
7554 test_encodeCTL(encodings[i]);
7555 test_decodeCTL(encodings[i]);
7556 test_encodePKCSContentInfo(encodings[i]);
7557 test_decodePKCSContentInfo(encodings[i]);
7558 test_encodePKCSAttribute(encodings[i]);
7559 test_decodePKCSAttribute(encodings[i]);
7560 test_encodePKCSAttributes(encodings[i]);
7561 test_decodePKCSAttributes(encodings[i]);
7562 test_encodePKCSSMimeCapabilities(encodings[i]);
7563 test_decodePKCSSMimeCapabilities(encodings[i]);
7564 test_encodePKCSSignerInfo(encodings[i]);
7565 test_decodePKCSSignerInfo(encodings[i]);
7566 test_encodeCMSSignerInfo(encodings[i]);
7567 test_decodeCMSSignerInfo(encodings[i]);
7568 test_encodeNameConstraints(encodings[i]);
7569 test_decodeNameConstraints(encodings[i]);
7570 test_encodePolicyQualifierUserNotice(encodings[i]);
7571 test_decodePolicyQualifierUserNotice(encodings[i]);
7572 test_encodeCertPolicies(encodings[i]);
7573 test_decodeCertPolicies(encodings[i]);
7575 testPortPublicKeyInfo();