x_all.c 15 KB

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  1. /* crypto/x509/x_all.c */
  2. /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
  3. * All rights reserved.
  4. *
  5. * This package is an SSL implementation written
  6. * by Eric Young (eay@cryptsoft.com).
  7. * The implementation was written so as to conform with Netscapes SSL.
  8. *
  9. * This library is free for commercial and non-commercial use as long as
  10. * the following conditions are aheared to. The following conditions
  11. * apply to all code found in this distribution, be it the RC4, RSA,
  12. * lhash, DES, etc., code; not just the SSL code. The SSL documentation
  13. * included with this distribution is covered by the same copyright terms
  14. * except that the holder is Tim Hudson (tjh@cryptsoft.com).
  15. *
  16. * Copyright remains Eric Young's, and as such any Copyright notices in
  17. * the code are not to be removed.
  18. * If this package is used in a product, Eric Young should be given attribution
  19. * as the author of the parts of the library used.
  20. * This can be in the form of a textual message at program startup or
  21. * in documentation (online or textual) provided with the package.
  22. *
  23. * Redistribution and use in source and binary forms, with or without
  24. * modification, are permitted provided that the following conditions
  25. * are met:
  26. * 1. Redistributions of source code must retain the copyright
  27. * notice, this list of conditions and the following disclaimer.
  28. * 2. Redistributions in binary form must reproduce the above copyright
  29. * notice, this list of conditions and the following disclaimer in the
  30. * documentation and/or other materials provided with the distribution.
  31. * 3. All advertising materials mentioning features or use of this software
  32. * must display the following acknowledgement:
  33. * "This product includes cryptographic software written by
  34. * Eric Young (eay@cryptsoft.com)"
  35. * The word 'cryptographic' can be left out if the rouines from the library
  36. * being used are not cryptographic related :-).
  37. * 4. If you include any Windows specific code (or a derivative thereof) from
  38. * the apps directory (application code) you must include an acknowledgement:
  39. * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
  40. *
  41. * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
  42. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  43. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  44. * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
  45. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  46. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  47. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  48. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  49. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  50. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  51. * SUCH DAMAGE.
  52. *
  53. * The licence and distribution terms for any publically available version or
  54. * derivative of this code cannot be changed. i.e. this code cannot simply be
  55. * copied and put under another distribution licence
  56. * [including the GNU Public Licence.]
  57. */
  58. #include <stdio.h>
  59. #undef SSLEAY_MACROS
  60. #include <openssl/stack.h>
  61. #include "cryptlib.h"
  62. #include <openssl/buffer.h>
  63. #include <openssl/asn1.h>
  64. #include <openssl/evp.h>
  65. #include <openssl/x509.h>
  66. #include <openssl/rsa.h>
  67. #include <openssl/dsa.h>
  68. int X509_verify(X509 *a, EVP_PKEY *r)
  69. {
  70. return(ASN1_item_verify(ASN1_ITEM_rptr(X509_CINF),a->sig_alg,
  71. a->signature,a->cert_info,r));
  72. }
  73. int X509_REQ_verify(X509_REQ *a, EVP_PKEY *r)
  74. {
  75. return( ASN1_item_verify(ASN1_ITEM_rptr(X509_REQ_INFO),
  76. a->sig_alg,a->signature,a->req_info,r));
  77. }
  78. int X509_CRL_verify(X509_CRL *a, EVP_PKEY *r)
  79. {
  80. return(ASN1_item_verify(ASN1_ITEM_rptr(X509_CRL_INFO),
  81. a->sig_alg, a->signature,a->crl,r));
  82. }
  83. int NETSCAPE_SPKI_verify(NETSCAPE_SPKI *a, EVP_PKEY *r)
  84. {
  85. return(ASN1_item_verify(ASN1_ITEM_rptr(NETSCAPE_SPKAC),
  86. a->sig_algor,a->signature,a->spkac,r));
  87. }
  88. int X509_sign(X509 *x, EVP_PKEY *pkey, const EVP_MD *md)
  89. {
  90. return(ASN1_item_sign(ASN1_ITEM_rptr(X509_CINF), x->cert_info->signature,
  91. x->sig_alg, x->signature, x->cert_info,pkey,md));
  92. }
  93. int X509_REQ_sign(X509_REQ *x, EVP_PKEY *pkey, const EVP_MD *md)
  94. {
  95. return(ASN1_item_sign(ASN1_ITEM_rptr(X509_REQ_INFO),x->sig_alg, NULL,
  96. x->signature, x->req_info,pkey,md));
  97. }
  98. int X509_CRL_sign(X509_CRL *x, EVP_PKEY *pkey, const EVP_MD *md)
  99. {
  100. return(ASN1_item_sign(ASN1_ITEM_rptr(X509_CRL_INFO),x->crl->sig_alg,
  101. x->sig_alg, x->signature, x->crl,pkey,md));
  102. }
  103. int NETSCAPE_SPKI_sign(NETSCAPE_SPKI *x, EVP_PKEY *pkey, const EVP_MD *md)
  104. {
  105. return(ASN1_item_sign(ASN1_ITEM_rptr(NETSCAPE_SPKAC), x->sig_algor,NULL,
  106. x->signature, x->spkac,pkey,md));
  107. }
  108. #ifndef OPENSSL_NO_FP_API
  109. X509 *d2i_X509_fp(FILE *fp, X509 **x509)
  110. {
  111. return ASN1_item_d2i_fp(ASN1_ITEM_rptr(X509), fp, x509);
  112. }
  113. int i2d_X509_fp(FILE *fp, X509 *x509)
  114. {
  115. return ASN1_item_i2d_fp(ASN1_ITEM_rptr(X509), fp, x509);
  116. }
  117. #endif
  118. X509 *d2i_X509_bio(BIO *bp, X509 **x509)
  119. {
  120. return ASN1_item_d2i_bio(ASN1_ITEM_rptr(X509), bp, x509);
  121. }
  122. int i2d_X509_bio(BIO *bp, X509 *x509)
  123. {
  124. return ASN1_item_i2d_bio(ASN1_ITEM_rptr(X509), bp, x509);
  125. }
  126. #ifndef OPENSSL_NO_FP_API
  127. X509_CRL *d2i_X509_CRL_fp(FILE *fp, X509_CRL **crl)
  128. {
  129. return ASN1_item_d2i_fp(ASN1_ITEM_rptr(X509_CRL), fp, crl);
  130. }
  131. int i2d_X509_CRL_fp(FILE *fp, X509_CRL *crl)
  132. {
  133. return ASN1_item_i2d_fp(ASN1_ITEM_rptr(X509_CRL), fp, crl);
  134. }
  135. #endif
  136. X509_CRL *d2i_X509_CRL_bio(BIO *bp, X509_CRL **crl)
  137. {
  138. return ASN1_item_d2i_bio(ASN1_ITEM_rptr(X509_CRL), bp, crl);
  139. }
  140. int i2d_X509_CRL_bio(BIO *bp, X509_CRL *crl)
  141. {
  142. return ASN1_item_i2d_bio(ASN1_ITEM_rptr(X509_CRL), bp, crl);
  143. }
  144. #ifndef OPENSSL_NO_FP_API
  145. PKCS7 *d2i_PKCS7_fp(FILE *fp, PKCS7 **p7)
  146. {
  147. return ASN1_item_d2i_fp(ASN1_ITEM_rptr(PKCS7), fp, p7);
  148. }
  149. int i2d_PKCS7_fp(FILE *fp, PKCS7 *p7)
  150. {
  151. return ASN1_item_i2d_fp(ASN1_ITEM_rptr(PKCS7), fp, p7);
  152. }
  153. #endif
  154. PKCS7 *d2i_PKCS7_bio(BIO *bp, PKCS7 **p7)
  155. {
  156. return ASN1_item_d2i_bio(ASN1_ITEM_rptr(PKCS7), bp, p7);
  157. }
  158. int i2d_PKCS7_bio(BIO *bp, PKCS7 *p7)
  159. {
  160. return ASN1_item_i2d_bio(ASN1_ITEM_rptr(PKCS7), bp, p7);
  161. }
  162. #ifndef OPENSSL_NO_FP_API
  163. X509_REQ *d2i_X509_REQ_fp(FILE *fp, X509_REQ **req)
  164. {
  165. return ASN1_item_d2i_fp(ASN1_ITEM_rptr(X509_REQ), fp, req);
  166. }
  167. int i2d_X509_REQ_fp(FILE *fp, X509_REQ *req)
  168. {
  169. return ASN1_item_i2d_fp(ASN1_ITEM_rptr(X509_REQ), fp, req);
  170. }
  171. #endif
  172. X509_REQ *d2i_X509_REQ_bio(BIO *bp, X509_REQ **req)
  173. {
  174. return ASN1_item_d2i_bio(ASN1_ITEM_rptr(X509_REQ), bp, req);
  175. }
  176. int i2d_X509_REQ_bio(BIO *bp, X509_REQ *req)
  177. {
  178. return ASN1_item_i2d_bio(ASN1_ITEM_rptr(X509_REQ), bp, req);
  179. }
  180. #ifndef OPENSSL_NO_RSA
  181. #ifndef OPENSSL_NO_FP_API
  182. RSA *d2i_RSAPrivateKey_fp(FILE *fp, RSA **rsa)
  183. {
  184. return ASN1_item_d2i_fp(ASN1_ITEM_rptr(RSAPrivateKey), fp, rsa);
  185. }
  186. int i2d_RSAPrivateKey_fp(FILE *fp, RSA *rsa)
  187. {
  188. return ASN1_item_i2d_fp(ASN1_ITEM_rptr(RSAPrivateKey), fp, rsa);
  189. }
  190. RSA *d2i_RSAPublicKey_fp(FILE *fp, RSA **rsa)
  191. {
  192. return ASN1_item_d2i_fp(ASN1_ITEM_rptr(RSAPublicKey), fp, rsa);
  193. }
  194. RSA *d2i_RSA_PUBKEY_fp(FILE *fp, RSA **rsa)
  195. {
  196. return((RSA *)ASN1_d2i_fp((char *(*)())
  197. RSA_new,(char *(*)())d2i_RSA_PUBKEY, (fp),
  198. (unsigned char **)(rsa)));
  199. }
  200. int i2d_RSAPublicKey_fp(FILE *fp, RSA *rsa)
  201. {
  202. return ASN1_item_i2d_fp(ASN1_ITEM_rptr(RSAPublicKey), fp, rsa);
  203. }
  204. int i2d_RSA_PUBKEY_fp(FILE *fp, RSA *rsa)
  205. {
  206. return(ASN1_i2d_fp(i2d_RSA_PUBKEY,fp,(unsigned char *)rsa));
  207. }
  208. #endif
  209. RSA *d2i_RSAPrivateKey_bio(BIO *bp, RSA **rsa)
  210. {
  211. return ASN1_item_d2i_bio(ASN1_ITEM_rptr(RSAPrivateKey), bp, rsa);
  212. }
  213. int i2d_RSAPrivateKey_bio(BIO *bp, RSA *rsa)
  214. {
  215. return ASN1_item_i2d_bio(ASN1_ITEM_rptr(RSAPrivateKey), bp, rsa);
  216. }
  217. RSA *d2i_RSAPublicKey_bio(BIO *bp, RSA **rsa)
  218. {
  219. return ASN1_item_d2i_bio(ASN1_ITEM_rptr(RSAPublicKey), bp, rsa);
  220. }
  221. RSA *d2i_RSA_PUBKEY_bio(BIO *bp, RSA **rsa)
  222. {
  223. return((RSA *)ASN1_d2i_bio((char *(*)())
  224. RSA_new,(char *(*)())d2i_RSA_PUBKEY, (bp),
  225. (unsigned char **)(rsa)));
  226. }
  227. int i2d_RSAPublicKey_bio(BIO *bp, RSA *rsa)
  228. {
  229. return ASN1_item_i2d_bio(ASN1_ITEM_rptr(RSAPublicKey), bp, rsa);
  230. }
  231. int i2d_RSA_PUBKEY_bio(BIO *bp, RSA *rsa)
  232. {
  233. return(ASN1_i2d_bio(i2d_RSA_PUBKEY,bp,(unsigned char *)rsa));
  234. }
  235. #endif
  236. #ifndef OPENSSL_NO_DSA
  237. #ifndef OPENSSL_NO_FP_API
  238. DSA *d2i_DSAPrivateKey_fp(FILE *fp, DSA **dsa)
  239. {
  240. return((DSA *)ASN1_d2i_fp((char *(*)())
  241. DSA_new,(char *(*)())d2i_DSAPrivateKey, (fp),
  242. (unsigned char **)(dsa)));
  243. }
  244. int i2d_DSAPrivateKey_fp(FILE *fp, DSA *dsa)
  245. {
  246. return(ASN1_i2d_fp(i2d_DSAPrivateKey,fp,(unsigned char *)dsa));
  247. }
  248. DSA *d2i_DSA_PUBKEY_fp(FILE *fp, DSA **dsa)
  249. {
  250. return((DSA *)ASN1_d2i_fp((char *(*)())
  251. DSA_new,(char *(*)())d2i_DSA_PUBKEY, (fp),
  252. (unsigned char **)(dsa)));
  253. }
  254. int i2d_DSA_PUBKEY_fp(FILE *fp, DSA *dsa)
  255. {
  256. return(ASN1_i2d_fp(i2d_DSA_PUBKEY,fp,(unsigned char *)dsa));
  257. }
  258. #endif
  259. DSA *d2i_DSAPrivateKey_bio(BIO *bp, DSA **dsa)
  260. {
  261. return((DSA *)ASN1_d2i_bio((char *(*)())
  262. DSA_new,(char *(*)())d2i_DSAPrivateKey, (bp),
  263. (unsigned char **)(dsa)));
  264. }
  265. int i2d_DSAPrivateKey_bio(BIO *bp, DSA *dsa)
  266. {
  267. return(ASN1_i2d_bio(i2d_DSAPrivateKey,bp,(unsigned char *)dsa));
  268. }
  269. DSA *d2i_DSA_PUBKEY_bio(BIO *bp, DSA **dsa)
  270. {
  271. return((DSA *)ASN1_d2i_bio((char *(*)())
  272. DSA_new,(char *(*)())d2i_DSA_PUBKEY, (bp),
  273. (unsigned char **)(dsa)));
  274. }
  275. int i2d_DSA_PUBKEY_bio(BIO *bp, DSA *dsa)
  276. {
  277. return(ASN1_i2d_bio(i2d_DSA_PUBKEY,bp,(unsigned char *)dsa));
  278. }
  279. #endif
  280. #ifndef OPENSSL_NO_EC
  281. #ifndef OPENSSL_NO_FP_API
  282. EC_KEY *d2i_EC_PUBKEY_fp(FILE *fp, EC_KEY **eckey)
  283. {
  284. return((EC_KEY *)ASN1_d2i_fp((char *(*)())
  285. EC_KEY_new,(char *(*)())d2i_EC_PUBKEY, (fp),
  286. (unsigned char **)(eckey)));
  287. }
  288. int i2d_EC_PUBKEY_fp(FILE *fp, EC_KEY *eckey)
  289. {
  290. return(ASN1_i2d_fp(i2d_EC_PUBKEY,fp,(unsigned char *)eckey));
  291. }
  292. EC_KEY *d2i_ECPrivateKey_fp(FILE *fp, EC_KEY **eckey)
  293. {
  294. return((EC_KEY *)ASN1_d2i_fp((char *(*)())
  295. EC_KEY_new,(char *(*)())d2i_ECPrivateKey, (fp),
  296. (unsigned char **)(eckey)));
  297. }
  298. int i2d_ECPrivateKey_fp(FILE *fp, EC_KEY *eckey)
  299. {
  300. return(ASN1_i2d_fp(i2d_ECPrivateKey,fp,(unsigned char *)eckey));
  301. }
  302. #endif
  303. EC_KEY *d2i_EC_PUBKEY_bio(BIO *bp, EC_KEY **eckey)
  304. {
  305. return((EC_KEY *)ASN1_d2i_bio((char *(*)())
  306. EC_KEY_new,(char *(*)())d2i_EC_PUBKEY, (bp),
  307. (unsigned char **)(eckey)));
  308. }
  309. int i2d_EC_PUBKEY_bio(BIO *bp, EC_KEY *ecdsa)
  310. {
  311. return(ASN1_i2d_bio(i2d_EC_PUBKEY,bp,(unsigned char *)ecdsa));
  312. }
  313. EC_KEY *d2i_ECPrivateKey_bio(BIO *bp, EC_KEY **eckey)
  314. {
  315. return((EC_KEY *)ASN1_d2i_bio((char *(*)())
  316. EC_KEY_new,(char *(*)())d2i_ECPrivateKey, (bp),
  317. (unsigned char **)(eckey)));
  318. }
  319. int i2d_ECPrivateKey_bio(BIO *bp, EC_KEY *eckey)
  320. {
  321. return(ASN1_i2d_bio(i2d_ECPrivateKey,bp,(unsigned char *)eckey));
  322. }
  323. #endif
  324. int X509_pubkey_digest(const X509 *data, const EVP_MD *type, unsigned char *md,
  325. unsigned int *len)
  326. {
  327. ASN1_BIT_STRING *key;
  328. key = X509_get0_pubkey_bitstr(data);
  329. if(!key) return 0;
  330. return EVP_Digest(key->data, key->length, md, len, type, NULL);
  331. }
  332. int X509_digest(const X509 *data, const EVP_MD *type, unsigned char *md,
  333. unsigned int *len)
  334. {
  335. return(ASN1_item_digest(ASN1_ITEM_rptr(X509),type,(char *)data,md,len));
  336. }
  337. int X509_CRL_digest(const X509_CRL *data, const EVP_MD *type, unsigned char *md,
  338. unsigned int *len)
  339. {
  340. return(ASN1_item_digest(ASN1_ITEM_rptr(X509_CRL),type,(char *)data,md,len));
  341. }
  342. int X509_REQ_digest(const X509_REQ *data, const EVP_MD *type, unsigned char *md,
  343. unsigned int *len)
  344. {
  345. return(ASN1_item_digest(ASN1_ITEM_rptr(X509_REQ),type,(char *)data,md,len));
  346. }
  347. int X509_NAME_digest(const X509_NAME *data, const EVP_MD *type, unsigned char *md,
  348. unsigned int *len)
  349. {
  350. return(ASN1_item_digest(ASN1_ITEM_rptr(X509_NAME),type,(char *)data,md,len));
  351. }
  352. int PKCS7_ISSUER_AND_SERIAL_digest(PKCS7_ISSUER_AND_SERIAL *data, const EVP_MD *type,
  353. unsigned char *md, unsigned int *len)
  354. {
  355. return(ASN1_item_digest(ASN1_ITEM_rptr(PKCS7_ISSUER_AND_SERIAL),type,
  356. (char *)data,md,len));
  357. }
  358. #ifndef OPENSSL_NO_FP_API
  359. X509_SIG *d2i_PKCS8_fp(FILE *fp, X509_SIG **p8)
  360. {
  361. return((X509_SIG *)ASN1_d2i_fp((char *(*)())X509_SIG_new,
  362. (char *(*)())d2i_X509_SIG, (fp),(unsigned char **)(p8)));
  363. }
  364. int i2d_PKCS8_fp(FILE *fp, X509_SIG *p8)
  365. {
  366. return(ASN1_i2d_fp(i2d_X509_SIG,fp,(unsigned char *)p8));
  367. }
  368. #endif
  369. X509_SIG *d2i_PKCS8_bio(BIO *bp, X509_SIG **p8)
  370. {
  371. return((X509_SIG *)ASN1_d2i_bio((char *(*)())X509_SIG_new,
  372. (char *(*)())d2i_X509_SIG, (bp),(unsigned char **)(p8)));
  373. }
  374. int i2d_PKCS8_bio(BIO *bp, X509_SIG *p8)
  375. {
  376. return(ASN1_i2d_bio(i2d_X509_SIG,bp,(unsigned char *)p8));
  377. }
  378. #ifndef OPENSSL_NO_FP_API
  379. PKCS8_PRIV_KEY_INFO *d2i_PKCS8_PRIV_KEY_INFO_fp(FILE *fp,
  380. PKCS8_PRIV_KEY_INFO **p8inf)
  381. {
  382. return((PKCS8_PRIV_KEY_INFO *)ASN1_d2i_fp(
  383. (char *(*)())PKCS8_PRIV_KEY_INFO_new,
  384. (char *(*)())d2i_PKCS8_PRIV_KEY_INFO, (fp),
  385. (unsigned char **)(p8inf)));
  386. }
  387. int i2d_PKCS8_PRIV_KEY_INFO_fp(FILE *fp, PKCS8_PRIV_KEY_INFO *p8inf)
  388. {
  389. return(ASN1_i2d_fp(i2d_PKCS8_PRIV_KEY_INFO,fp,(unsigned char *)p8inf));
  390. }
  391. int i2d_PKCS8PrivateKeyInfo_fp(FILE *fp, EVP_PKEY *key)
  392. {
  393. PKCS8_PRIV_KEY_INFO *p8inf;
  394. int ret;
  395. p8inf = EVP_PKEY2PKCS8(key);
  396. if(!p8inf) return 0;
  397. ret = i2d_PKCS8_PRIV_KEY_INFO_fp(fp, p8inf);
  398. PKCS8_PRIV_KEY_INFO_free(p8inf);
  399. return ret;
  400. }
  401. int i2d_PrivateKey_fp(FILE *fp, EVP_PKEY *pkey)
  402. {
  403. return(ASN1_i2d_fp(i2d_PrivateKey,fp,(unsigned char *)pkey));
  404. }
  405. EVP_PKEY *d2i_PrivateKey_fp(FILE *fp, EVP_PKEY **a)
  406. {
  407. return((EVP_PKEY *)ASN1_d2i_fp((char *(*)())EVP_PKEY_new,
  408. (char *(*)())d2i_AutoPrivateKey, (fp),(unsigned char **)(a)));
  409. }
  410. int i2d_PUBKEY_fp(FILE *fp, EVP_PKEY *pkey)
  411. {
  412. return(ASN1_i2d_fp(i2d_PUBKEY,fp,(unsigned char *)pkey));
  413. }
  414. EVP_PKEY *d2i_PUBKEY_fp(FILE *fp, EVP_PKEY **a)
  415. {
  416. return((EVP_PKEY *)ASN1_d2i_fp((char *(*)())EVP_PKEY_new,
  417. (char *(*)())d2i_PUBKEY, (fp),(unsigned char **)(a)));
  418. }
  419. #endif
  420. PKCS8_PRIV_KEY_INFO *d2i_PKCS8_PRIV_KEY_INFO_bio(BIO *bp,
  421. PKCS8_PRIV_KEY_INFO **p8inf)
  422. {
  423. return((PKCS8_PRIV_KEY_INFO *)ASN1_d2i_bio(
  424. (char *(*)())PKCS8_PRIV_KEY_INFO_new,
  425. (char *(*)())d2i_PKCS8_PRIV_KEY_INFO, (bp),
  426. (unsigned char **)(p8inf)));
  427. }
  428. int i2d_PKCS8_PRIV_KEY_INFO_bio(BIO *bp, PKCS8_PRIV_KEY_INFO *p8inf)
  429. {
  430. return(ASN1_i2d_bio(i2d_PKCS8_PRIV_KEY_INFO,bp,(unsigned char *)p8inf));
  431. }
  432. int i2d_PKCS8PrivateKeyInfo_bio(BIO *bp, EVP_PKEY *key)
  433. {
  434. PKCS8_PRIV_KEY_INFO *p8inf;
  435. int ret;
  436. p8inf = EVP_PKEY2PKCS8(key);
  437. if(!p8inf) return 0;
  438. ret = i2d_PKCS8_PRIV_KEY_INFO_bio(bp, p8inf);
  439. PKCS8_PRIV_KEY_INFO_free(p8inf);
  440. return ret;
  441. }
  442. int i2d_PrivateKey_bio(BIO *bp, EVP_PKEY *pkey)
  443. {
  444. return(ASN1_i2d_bio(i2d_PrivateKey,bp,(unsigned char *)pkey));
  445. }
  446. EVP_PKEY *d2i_PrivateKey_bio(BIO *bp, EVP_PKEY **a)
  447. {
  448. return((EVP_PKEY *)ASN1_d2i_bio((char *(*)())EVP_PKEY_new,
  449. (char *(*)())d2i_AutoPrivateKey, (bp),(unsigned char **)(a)));
  450. }
  451. int i2d_PUBKEY_bio(BIO *bp, EVP_PKEY *pkey)
  452. {
  453. return(ASN1_i2d_bio(i2d_PUBKEY,bp,(unsigned char *)pkey));
  454. }
  455. EVP_PKEY *d2i_PUBKEY_bio(BIO *bp, EVP_PKEY **a)
  456. {
  457. return((EVP_PKEY *)ASN1_d2i_bio((char *(*)())EVP_PKEY_new,
  458. (char *(*)())d2i_PUBKEY, (bp),(unsigned char **)(a)));
  459. }