1 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
2  * All rights reserved.
3  *
4  * This package is an SSL implementation written
5  * by Eric Young (eay@cryptsoft.com).
6  * The implementation was written so as to conform with Netscapes SSL.
7  *
8  * This library is free for commercial and non-commercial use as long as
9  * the following conditions are aheared to.  The following conditions
10  * apply to all code found in this distribution, be it the RC4, RSA,
11  * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
12  * included with this distribution is covered by the same copyright terms
13  * except that the holder is Tim Hudson (tjh@cryptsoft.com).
14  *
15  * Copyright remains Eric Young's, and as such any Copyright notices in
16  * the code are not to be removed.
17  * If this package is used in a product, Eric Young should be given attribution
18  * as the author of the parts of the library used.
19  * This can be in the form of a textual message at program startup or
20  * in documentation (online or textual) provided with the package.
21  *
22  * Redistribution and use in source and binary forms, with or without
23  * modification, are permitted provided that the following conditions
24  * are met:
25  * 1. Redistributions of source code must retain the copyright
26  *    notice, this list of conditions and the following disclaimer.
27  * 2. Redistributions in binary form must reproduce the above copyright
28  *    notice, this list of conditions and the following disclaimer in the
29  *    documentation and/or other materials provided with the distribution.
30  * 3. All advertising materials mentioning features or use of this software
31  *    must display the following acknowledgement:
32  *    "This product includes cryptographic software written by
33  *     Eric Young (eay@cryptsoft.com)"
34  *    The word 'cryptographic' can be left out if the rouines from the library
35  *    being used are not cryptographic related :-).
36  * 4. If you include any Windows specific code (or a derivative thereof) from
37  *    the apps directory (application code) you must include an acknowledgement:
38  *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
39  *
40  * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
41  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
42  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
43  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
44  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
45  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
46  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
48  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
49  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
50  * SUCH DAMAGE.
51  *
52  * The licence and distribution terms for any publically available version or
53  * derivative of this code cannot be changed.  i.e. this code cannot simply be
54  * copied and put under another distribution licence
55  * [including the GNU Public Licence.] */
56 
57 #include <openssl/rsa.h>
58 
59 #include <stdlib.h>
60 #include <string.h>
61 
62 #include <openssl/bn.h>
63 #include <openssl/crypto.h>
64 #include <openssl/err.h>
65 #include <openssl/obj.h>
66 
67 
68 #define SetKey                                              \
69   key->n = BN_bin2bn(n, sizeof(n) - 1, key->n);             \
70   key->e = BN_bin2bn(e, sizeof(e) - 1, key->e);             \
71   key->d = BN_bin2bn(d, sizeof(d) - 1, key->d);             \
72   key->p = BN_bin2bn(p, sizeof(p) - 1, key->p);             \
73   key->q = BN_bin2bn(q, sizeof(q) - 1, key->q);             \
74   key->dmp1 = BN_bin2bn(dmp1, sizeof(dmp1) - 1, key->dmp1); \
75   key->dmq1 = BN_bin2bn(dmq1, sizeof(dmq1) - 1, key->dmq1); \
76   key->iqmp = BN_bin2bn(iqmp, sizeof(iqmp) - 1, key->iqmp); \
77   memcpy(c, ctext_ex, sizeof(ctext_ex) - 1);                \
78   return (sizeof(ctext_ex) - 1);
79 
key1(RSA * key,unsigned char * c)80 static int key1(RSA *key, unsigned char *c) {
81   static unsigned char n[] =
82       "\x00\xAA\x36\xAB\xCE\x88\xAC\xFD\xFF\x55\x52\x3C\x7F\xC4\x52\x3F"
83       "\x90\xEF\xA0\x0D\xF3\x77\x4A\x25\x9F\x2E\x62\xB4\xC5\xD9\x9C\xB5"
84       "\xAD\xB3\x00\xA0\x28\x5E\x53\x01\x93\x0E\x0C\x70\xFB\x68\x76\x93"
85       "\x9C\xE6\x16\xCE\x62\x4A\x11\xE0\x08\x6D\x34\x1E\xBC\xAC\xA0\xA1"
86       "\xF5";
87 
88   static unsigned char e[] = "\x11";
89 
90   static unsigned char d[] =
91       "\x0A\x03\x37\x48\x62\x64\x87\x69\x5F\x5F\x30\xBC\x38\xB9\x8B\x44"
92       "\xC2\xCD\x2D\xFF\x43\x40\x98\xCD\x20\xD8\xA1\x38\xD0\x90\xBF\x64"
93       "\x79\x7C\x3F\xA7\xA2\xCD\xCB\x3C\xD1\xE0\xBD\xBA\x26\x54\xB4\xF9"
94       "\xDF\x8E\x8A\xE5\x9D\x73\x3D\x9F\x33\xB3\x01\x62\x4A\xFD\x1D\x51";
95 
96   static unsigned char p[] =
97       "\x00\xD8\x40\xB4\x16\x66\xB4\x2E\x92\xEA\x0D\xA3\xB4\x32\x04\xB5"
98       "\xCF\xCE\x33\x52\x52\x4D\x04\x16\xA5\xA4\x41\xE7\x00\xAF\x46\x12"
99       "\x0D";
100 
101   static unsigned char q[] =
102       "\x00\xC9\x7F\xB1\xF0\x27\xF4\x53\xF6\x34\x12\x33\xEA\xAA\xD1\xD9"
103       "\x35\x3F\x6C\x42\xD0\x88\x66\xB1\xD0\x5A\x0F\x20\x35\x02\x8B\x9D"
104       "\x89";
105 
106   static unsigned char dmp1[] =
107       "\x59\x0B\x95\x72\xA2\xC2\xA9\xC4\x06\x05\x9D\xC2\xAB\x2F\x1D\xAF"
108       "\xEB\x7E\x8B\x4F\x10\xA7\x54\x9E\x8E\xED\xF5\xB4\xFC\xE0\x9E\x05";
109 
110   static unsigned char dmq1[] =
111       "\x00\x8E\x3C\x05\x21\xFE\x15\xE0\xEA\x06\xA3\x6F\xF0\xF1\x0C\x99"
112       "\x52\xC3\x5B\x7A\x75\x14\xFD\x32\x38\xB8\x0A\xAD\x52\x98\x62\x8D"
113       "\x51";
114 
115   static unsigned char iqmp[] =
116       "\x36\x3F\xF7\x18\x9D\xA8\xE9\x0B\x1D\x34\x1F\x71\xD0\x9B\x76\xA8"
117       "\xA9\x43\xE1\x1D\x10\xB2\x4D\x24\x9F\x2D\xEA\xFE\xF8\x0C\x18\x26";
118 
119   static unsigned char ctext_ex[] =
120       "\x1b\x8f\x05\xf9\xca\x1a\x79\x52\x6e\x53\xf3\xcc\x51\x4f\xdb\x89"
121       "\x2b\xfb\x91\x93\x23\x1e\x78\xb9\x92\xe6\x8d\x50\xa4\x80\xcb\x52"
122       "\x33\x89\x5c\x74\x95\x8d\x5d\x02\xab\x8c\x0f\xd0\x40\xeb\x58\x44"
123       "\xb0\x05\xc3\x9e\xd8\x27\x4a\x9d\xbf\xa8\x06\x71\x40\x94\x39\xd2";
124 
125   SetKey;
126 }
127 
key2(RSA * key,unsigned char * c)128 static int key2(RSA *key, unsigned char *c) {
129   static unsigned char n[] =
130       "\x00\xA3\x07\x9A\x90\xDF\x0D\xFD\x72\xAC\x09\x0C\xCC\x2A\x78\xB8"
131       "\x74\x13\x13\x3E\x40\x75\x9C\x98\xFA\xF8\x20\x4F\x35\x8A\x0B\x26"
132       "\x3C\x67\x70\xE7\x83\xA9\x3B\x69\x71\xB7\x37\x79\xD2\x71\x7B\xE8"
133       "\x34\x77\xCF";
134 
135   static unsigned char e[] = "\x3";
136 
137   static unsigned char d[] =
138       "\x6C\xAF\xBC\x60\x94\xB3\xFE\x4C\x72\xB0\xB3\x32\xC6\xFB\x25\xA2"
139       "\xB7\x62\x29\x80\x4E\x68\x65\xFC\xA4\x5A\x74\xDF\x0F\x8F\xB8\x41"
140       "\x3B\x52\xC0\xD0\xE5\x3D\x9B\x59\x0F\xF1\x9B\xE7\x9F\x49\xDD\x21"
141       "\xE5\xEB";
142 
143   static unsigned char p[] =
144       "\x00\xCF\x20\x35\x02\x8B\x9D\x86\x98\x40\xB4\x16\x66\xB4\x2E\x92"
145       "\xEA\x0D\xA3\xB4\x32\x04\xB5\xCF\xCE\x91";
146 
147   static unsigned char q[] =
148       "\x00\xC9\x7F\xB1\xF0\x27\xF4\x53\xF6\x34\x12\x33\xEA\xAA\xD1\xD9"
149       "\x35\x3F\x6C\x42\xD0\x88\x66\xB1\xD0\x5F";
150 
151   static unsigned char dmp1[] =
152       "\x00\x8A\x15\x78\xAC\x5D\x13\xAF\x10\x2B\x22\xB9\x99\xCD\x74\x61"
153       "\xF1\x5E\x6D\x22\xCC\x03\x23\xDF\xDF\x0B";
154 
155   static unsigned char dmq1[] =
156       "\x00\x86\x55\x21\x4A\xC5\x4D\x8D\x4E\xCD\x61\x77\xF1\xC7\x36\x90"
157       "\xCE\x2A\x48\x2C\x8B\x05\x99\xCB\xE0\x3F";
158 
159   static unsigned char iqmp[] =
160       "\x00\x83\xEF\xEF\xB8\xA9\xA4\x0D\x1D\xB6\xED\x98\xAD\x84\xED\x13"
161       "\x35\xDC\xC1\x08\xF3\x22\xD0\x57\xCF\x8D";
162 
163   static unsigned char ctext_ex[] =
164       "\x14\xbd\xdd\x28\xc9\x83\x35\x19\x23\x80\xe8\xe5\x49\xb1\x58\x2a"
165       "\x8b\x40\xb4\x48\x6d\x03\xa6\xa5\x31\x1f\x1f\xd5\xf0\xa1\x80\xe4"
166       "\x17\x53\x03\x29\xa9\x34\x90\x74\xb1\x52\x13\x54\x29\x08\x24\x52"
167       "\x62\x51";
168 
169   SetKey;
170 }
171 
key3(RSA * key,unsigned char * c)172 static int key3(RSA *key, unsigned char *c) {
173   static unsigned char n[] =
174       "\x00\xBB\xF8\x2F\x09\x06\x82\xCE\x9C\x23\x38\xAC\x2B\x9D\xA8\x71"
175       "\xF7\x36\x8D\x07\xEE\xD4\x10\x43\xA4\x40\xD6\xB6\xF0\x74\x54\xF5"
176       "\x1F\xB8\xDF\xBA\xAF\x03\x5C\x02\xAB\x61\xEA\x48\xCE\xEB\x6F\xCD"
177       "\x48\x76\xED\x52\x0D\x60\xE1\xEC\x46\x19\x71\x9D\x8A\x5B\x8B\x80"
178       "\x7F\xAF\xB8\xE0\xA3\xDF\xC7\x37\x72\x3E\xE6\xB4\xB7\xD9\x3A\x25"
179       "\x84\xEE\x6A\x64\x9D\x06\x09\x53\x74\x88\x34\xB2\x45\x45\x98\x39"
180       "\x4E\xE0\xAA\xB1\x2D\x7B\x61\xA5\x1F\x52\x7A\x9A\x41\xF6\xC1\x68"
181       "\x7F\xE2\x53\x72\x98\xCA\x2A\x8F\x59\x46\xF8\xE5\xFD\x09\x1D\xBD"
182       "\xCB";
183 
184   static unsigned char e[] = "\x11";
185 
186   static unsigned char d[] =
187       "\x00\xA5\xDA\xFC\x53\x41\xFA\xF2\x89\xC4\xB9\x88\xDB\x30\xC1\xCD"
188       "\xF8\x3F\x31\x25\x1E\x06\x68\xB4\x27\x84\x81\x38\x01\x57\x96\x41"
189       "\xB2\x94\x10\xB3\xC7\x99\x8D\x6B\xC4\x65\x74\x5E\x5C\x39\x26\x69"
190       "\xD6\x87\x0D\xA2\xC0\x82\xA9\x39\xE3\x7F\xDC\xB8\x2E\xC9\x3E\xDA"
191       "\xC9\x7F\xF3\xAD\x59\x50\xAC\xCF\xBC\x11\x1C\x76\xF1\xA9\x52\x94"
192       "\x44\xE5\x6A\xAF\x68\xC5\x6C\x09\x2C\xD3\x8D\xC3\xBE\xF5\xD2\x0A"
193       "\x93\x99\x26\xED\x4F\x74\xA1\x3E\xDD\xFB\xE1\xA1\xCE\xCC\x48\x94"
194       "\xAF\x94\x28\xC2\xB7\xB8\x88\x3F\xE4\x46\x3A\x4B\xC8\x5B\x1C\xB3"
195       "\xC1";
196 
197   static unsigned char p[] =
198       "\x00\xEE\xCF\xAE\x81\xB1\xB9\xB3\xC9\x08\x81\x0B\x10\xA1\xB5\x60"
199       "\x01\x99\xEB\x9F\x44\xAE\xF4\xFD\xA4\x93\xB8\x1A\x9E\x3D\x84\xF6"
200       "\x32\x12\x4E\xF0\x23\x6E\x5D\x1E\x3B\x7E\x28\xFA\xE7\xAA\x04\x0A"
201       "\x2D\x5B\x25\x21\x76\x45\x9D\x1F\x39\x75\x41\xBA\x2A\x58\xFB\x65"
202       "\x99";
203 
204   static unsigned char q[] =
205       "\x00\xC9\x7F\xB1\xF0\x27\xF4\x53\xF6\x34\x12\x33\xEA\xAA\xD1\xD9"
206       "\x35\x3F\x6C\x42\xD0\x88\x66\xB1\xD0\x5A\x0F\x20\x35\x02\x8B\x9D"
207       "\x86\x98\x40\xB4\x16\x66\xB4\x2E\x92\xEA\x0D\xA3\xB4\x32\x04\xB5"
208       "\xCF\xCE\x33\x52\x52\x4D\x04\x16\xA5\xA4\x41\xE7\x00\xAF\x46\x15"
209       "\x03";
210 
211   static unsigned char dmp1[] =
212       "\x54\x49\x4C\xA6\x3E\xBA\x03\x37\xE4\xE2\x40\x23\xFC\xD6\x9A\x5A"
213       "\xEB\x07\xDD\xDC\x01\x83\xA4\xD0\xAC\x9B\x54\xB0\x51\xF2\xB1\x3E"
214       "\xD9\x49\x09\x75\xEA\xB7\x74\x14\xFF\x59\xC1\xF7\x69\x2E\x9A\x2E"
215       "\x20\x2B\x38\xFC\x91\x0A\x47\x41\x74\xAD\xC9\x3C\x1F\x67\xC9\x81";
216 
217   static unsigned char dmq1[] =
218       "\x47\x1E\x02\x90\xFF\x0A\xF0\x75\x03\x51\xB7\xF8\x78\x86\x4C\xA9"
219       "\x61\xAD\xBD\x3A\x8A\x7E\x99\x1C\x5C\x05\x56\xA9\x4C\x31\x46\xA7"
220       "\xF9\x80\x3F\x8F\x6F\x8A\xE3\x42\xE9\x31\xFD\x8A\xE4\x7A\x22\x0D"
221       "\x1B\x99\xA4\x95\x84\x98\x07\xFE\x39\xF9\x24\x5A\x98\x36\xDA\x3D";
222 
223   static unsigned char iqmp[] =
224       "\x00\xB0\x6C\x4F\xDA\xBB\x63\x01\x19\x8D\x26\x5B\xDB\xAE\x94\x23"
225       "\xB3\x80\xF2\x71\xF7\x34\x53\x88\x50\x93\x07\x7F\xCD\x39\xE2\x11"
226       "\x9F\xC9\x86\x32\x15\x4F\x58\x83\xB1\x67\xA9\x67\xBF\x40\x2B\x4E"
227       "\x9E\x2E\x0F\x96\x56\xE6\x98\xEA\x36\x66\xED\xFB\x25\x79\x80\x39"
228       "\xF7";
229 
230   static unsigned char ctext_ex[] =
231       "\xb8\x24\x6b\x56\xa6\xed\x58\x81\xae\xb5\x85\xd9\xa2\x5b\x2a\xd7"
232       "\x90\xc4\x17\xe0\x80\x68\x1b\xf1\xac\x2b\xc3\xde\xb6\x9d\x8b\xce"
233       "\xf0\xc4\x36\x6f\xec\x40\x0a\xf0\x52\xa7\x2e\x9b\x0e\xff\xb5\xb3"
234       "\xf2\xf1\x92\xdb\xea\xca\x03\xc1\x27\x40\x05\x71\x13\xbf\x1f\x06"
235       "\x69\xac\x22\xe9\xf3\xa7\x85\x2e\x3c\x15\xd9\x13\xca\xb0\xb8\x86"
236       "\x3a\x95\xc9\x92\x94\xce\x86\x74\x21\x49\x54\x61\x03\x46\xf4\xd4"
237       "\x74\xb2\x6f\x7c\x48\xb4\x2e\xe6\x8e\x1f\x57\x2a\x1f\xc4\x02\x6a"
238       "\xc4\x56\xb4\xf5\x9f\x7b\x62\x1e\xa1\xb9\xd8\x8f\x64\x20\x2f\xb1";
239 
240   SetKey;
241 }
242 
test_bad_key(void)243 static int test_bad_key(void) {
244   RSA *key = RSA_new();
245   BIGNUM e;
246 
247   BN_init(&e);
248   BN_set_word(&e, RSA_F4);
249 
250   if (!RSA_generate_key_ex(key, 512, &e, NULL)) {
251     fprintf(stderr, "RSA_generate_key_ex failed.\n");
252     ERR_print_errors_fp(stderr);
253     return 0;
254   }
255 
256   if (!BN_add(key->p, key->p, BN_value_one())) {
257     fprintf(stderr, "BN error.\n");
258     ERR_print_errors_fp(stderr);
259     return 0;
260   }
261 
262   if (RSA_check_key(key)) {
263     fprintf(stderr, "RSA_check_key passed with invalid key!\n");
264     return 0;
265   }
266 
267   ERR_clear_error();
268   BN_free(&e);
269   RSA_free(key);
270   return 1;
271 }
272 
test_only_d_given(void)273 static int test_only_d_given(void) {
274   RSA *key = RSA_new();
275   uint8_t buf[64];
276   unsigned buf_len = sizeof(buf);
277   const uint8_t kDummyHash[16] = {0};
278   int ret = 0;
279 
280   if (!BN_hex2bn(&key->n,
281                  "00e77bbf3889d4ef36a9a25d4d69f3f632eb4362214c74517da6d6aeaa9bd"
282                  "09ac42b26621cd88f3a6eb013772fc3bf9f83914b6467231c630202c35b3e"
283                  "5808c659") ||
284       !BN_hex2bn(&key->e, "010001") ||
285       !BN_hex2bn(&key->d,
286                  "0365db9eb6d73b53b015c40cd8db4de7dd7035c68b5ac1bf786d7a4ee2cea"
287                  "316eaeca21a73ac365e58713195f2ae9849348525ca855386b6d028e437a9"
288                  "495a01") ||
289       RSA_size(key) > sizeof(buf)) {
290     goto err;
291   }
292 
293   if (!RSA_check_key(key)) {
294     fprintf(stderr, "RSA_check_key failed with only d given.\n");
295     ERR_print_errors_fp(stderr);
296     goto err;
297   }
298 
299   if (!RSA_sign(NID_sha256, kDummyHash, sizeof(kDummyHash), buf, &buf_len,
300                 key)) {
301     fprintf(stderr, "RSA_sign failed with only d given.\n");
302     ERR_print_errors_fp(stderr);
303     goto err;
304   }
305 
306   if (!RSA_verify(NID_sha256, kDummyHash, sizeof(kDummyHash), buf, buf_len,
307                   key)) {
308     fprintf(stderr, "RSA_verify failed with only d given.\n");
309     ERR_print_errors_fp(stderr);
310     goto err;
311   }
312 
313   ret = 1;
314 
315 err:
316   RSA_free(key);
317   return ret;
318 }
319 
test_recover_crt_params(void)320 static int test_recover_crt_params(void) {
321   RSA *key1, *key2;
322   BIGNUM *e = BN_new();
323   uint8_t buf[128];
324   unsigned buf_len = sizeof(buf);
325   const uint8_t kDummyHash[16] = {0};
326   unsigned i;
327 
328   BN_set_word(e, RSA_F4);
329 
330   ERR_clear_error();
331 
332   for (i = 0; i < 1; i++) {
333     key1 = RSA_new();
334     if (!RSA_generate_key_ex(key1, 512, e, NULL)) {
335       fprintf(stderr, "RSA_generate_key_ex failed.\n");
336       ERR_print_errors_fp(stderr);
337       return 0;
338     }
339 
340     if (!RSA_check_key(key1)) {
341       fprintf(stderr, "RSA_check_key failed with original key.\n");
342       ERR_print_errors_fp(stderr);
343       return 0;
344     }
345 
346     key2 = RSA_new();
347     key2->n = BN_dup(key1->n);
348     key2->e = BN_dup(key1->e);
349     key2->d = BN_dup(key1->d);
350     RSA_free(key1);
351 
352     if (!RSA_recover_crt_params(key2)) {
353       fprintf(stderr, "RSA_recover_crt_params failed.\n");
354       ERR_print_errors_fp(stderr);
355       return 0;
356     }
357 
358     if (RSA_size(key2) > buf_len) {
359       return 0;
360     }
361 
362     if (!RSA_check_key(key2)) {
363       fprintf(stderr, "RSA_check_key failed with recovered key.\n");
364       ERR_print_errors_fp(stderr);
365       return 0;
366     }
367 
368     if (!RSA_sign(NID_sha256, kDummyHash, sizeof(kDummyHash), buf, &buf_len,
369                   key2)) {
370       fprintf(stderr, "RSA_sign failed with recovered key.\n");
371       ERR_print_errors_fp(stderr);
372       return 0;
373     }
374 
375     if (!RSA_verify(NID_sha256, kDummyHash, sizeof(kDummyHash), buf, buf_len,
376                     key2)) {
377       fprintf(stderr, "RSA_verify failed with recovered key.\n");
378       ERR_print_errors_fp(stderr);
379       return 0;
380     }
381 
382     RSA_free(key2);
383   }
384 
385   BN_free(e);
386   return 1;
387 }
388 
main(int argc,char * argv[])389 int main(int argc, char *argv[]) {
390   int err = 0;
391   int v;
392   RSA *key;
393   unsigned char ptext[256];
394   unsigned char ctext[256];
395   static unsigned char ptext_ex[] = "\x54\x85\x9b\x34\x2c\x49\xea\x2a";
396   unsigned char ctext_ex[256];
397   int plen;
398   int clen = 0;
399   int num;
400   int n;
401 
402   CRYPTO_library_init();
403 
404   plen = sizeof(ptext_ex) - 1;
405 
406   for (v = 0; v < 3; v++) {
407     key = RSA_new();
408     switch (v) {
409       case 0:
410         clen = key1(key, ctext_ex);
411         break;
412       case 1:
413         clen = key2(key, ctext_ex);
414         break;
415       case 2:
416         clen = key3(key, ctext_ex);
417         break;
418       default:
419         abort();
420     }
421 
422     if (!RSA_check_key(key)) {
423       printf("%d: RSA_check_key failed\n", v);
424       err = 1;
425       goto oaep;
426     }
427 
428     num = RSA_public_encrypt(plen, ptext_ex, ctext, key, RSA_PKCS1_PADDING);
429     if (num != clen) {
430       printf("PKCS#1 v1.5 encryption failed!\n");
431       err = 1;
432       goto oaep;
433     }
434 
435     num = RSA_private_decrypt(num, ctext, ptext, key, RSA_PKCS1_PADDING);
436     if (num != plen || memcmp(ptext, ptext_ex, num) != 0) {
437       printf("PKCS#1 v1.5 decryption failed!\n");
438       err = 1;
439     } else {
440       printf("PKCS #1 v1.5 encryption/decryption ok\n");
441     }
442 
443   oaep:
444     ERR_clear_error();
445     num =
446         RSA_public_encrypt(plen, ptext_ex, ctext, key, RSA_PKCS1_OAEP_PADDING);
447     if (num == -1) {
448       printf("No OAEP support\n");
449       goto next;
450     }
451     if (num != clen) {
452       printf("OAEP encryption failed!\n");
453       err = 1;
454       goto next;
455     }
456 
457     num = RSA_private_decrypt(num, ctext, ptext, key, RSA_PKCS1_OAEP_PADDING);
458     if (num != plen || memcmp(ptext, ptext_ex, num) != 0) {
459       printf("OAEP decryption (encrypted data) failed!\n");
460       err = 1;
461     } else if (memcmp(ctext, ctext_ex, num) == 0) {
462       printf("OAEP test vector %d passed!\n", v);
463     }
464 
465     /* Different ciphertexts (rsa_oaep.c without -DPKCS_TESTVECT).
466        Try decrypting ctext_ex */
467 
468     num =
469         RSA_private_decrypt(clen, ctext_ex, ptext, key, RSA_PKCS1_OAEP_PADDING);
470 
471     if (num != plen || memcmp(ptext, ptext_ex, num) != 0) {
472       printf("OAEP decryption (test vector data) failed!\n");
473       err = 1;
474     } else {
475       printf("OAEP encryption/decryption ok\n");
476     }
477 
478     /* Try decrypting corrupted ciphertexts */
479     for (n = 0; n < clen; ++n) {
480       int b;
481       unsigned char saved = ctext[n];
482       for (b = 0; b < 256; ++b) {
483         if (b == saved) {
484           continue;
485         }
486         ctext[n] = b;
487         num =
488             RSA_private_decrypt(num, ctext, ptext, key, RSA_PKCS1_OAEP_PADDING);
489         if (num > 0) {
490           printf("Corrupt data decrypted!\n");
491           err = 1;
492         }
493       }
494     }
495 
496   next:
497     RSA_free(key);
498   }
499 
500   if (err != 0 ||
501       !test_only_d_given() ||
502       !test_recover_crt_params() ||
503       !test_bad_key()) {
504     err = 1;
505   }
506 
507   if (err == 0) {
508     printf("PASS\n");
509   }
510   return err;
511 }
512