ssl_locl.h 28 KB

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  1. /* ssl/ssl_locl.h */
  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. /* ====================================================================
  59. * Copyright (c) 1998-2001 The OpenSSL Project. All rights reserved.
  60. *
  61. * Redistribution and use in source and binary forms, with or without
  62. * modification, are permitted provided that the following conditions
  63. * are met:
  64. *
  65. * 1. Redistributions of source code must retain the above copyright
  66. * notice, this list of conditions and the following disclaimer.
  67. *
  68. * 2. Redistributions in binary form must reproduce the above copyright
  69. * notice, this list of conditions and the following disclaimer in
  70. * the documentation and/or other materials provided with the
  71. * distribution.
  72. *
  73. * 3. All advertising materials mentioning features or use of this
  74. * software must display the following acknowledgment:
  75. * "This product includes software developed by the OpenSSL Project
  76. * for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
  77. *
  78. * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
  79. * endorse or promote products derived from this software without
  80. * prior written permission. For written permission, please contact
  81. * openssl-core@openssl.org.
  82. *
  83. * 5. Products derived from this software may not be called "OpenSSL"
  84. * nor may "OpenSSL" appear in their names without prior written
  85. * permission of the OpenSSL Project.
  86. *
  87. * 6. Redistributions of any form whatsoever must retain the following
  88. * acknowledgment:
  89. * "This product includes software developed by the OpenSSL Project
  90. * for use in the OpenSSL Toolkit (http://www.openssl.org/)"
  91. *
  92. * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
  93. * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  94. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
  95. * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
  96. * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  97. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
  98. * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  99. * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  100. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
  101. * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  102. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
  103. * OF THE POSSIBILITY OF SUCH DAMAGE.
  104. * ====================================================================
  105. *
  106. * This product includes cryptographic software written by Eric Young
  107. * (eay@cryptsoft.com). This product includes software written by Tim
  108. * Hudson (tjh@cryptsoft.com).
  109. *
  110. */
  111. /* ====================================================================
  112. * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
  113. * ECC cipher suite support in OpenSSL originally developed by
  114. * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project.
  115. */
  116. #ifndef HEADER_SSL_LOCL_H
  117. #define HEADER_SSL_LOCL_H
  118. #include <stdlib.h>
  119. #include <time.h>
  120. #include <string.h>
  121. #include <errno.h>
  122. #include "e_os.h"
  123. #include <openssl/buffer.h>
  124. #include <openssl/comp.h>
  125. #include <openssl/bio.h>
  126. #include <openssl/stack.h>
  127. #ifndef OPENSSL_NO_RSA
  128. #include <openssl/rsa.h>
  129. #endif
  130. #ifndef OPENSSL_NO_DSA
  131. #include <openssl/dsa.h>
  132. #endif
  133. #include <openssl/err.h>
  134. #include <openssl/ssl.h>
  135. #include <openssl/symhacks.h>
  136. #ifdef OPENSSL_BUILD_SHLIBSSL
  137. # undef OPENSSL_EXTERN
  138. # define OPENSSL_EXTERN OPENSSL_EXPORT
  139. #endif
  140. #define PKCS1_CHECK
  141. #define c2l(c,l) (l = ((unsigned long)(*((c)++))) , \
  142. l|=(((unsigned long)(*((c)++)))<< 8), \
  143. l|=(((unsigned long)(*((c)++)))<<16), \
  144. l|=(((unsigned long)(*((c)++)))<<24))
  145. /* NOTE - c is not incremented as per c2l */
  146. #define c2ln(c,l1,l2,n) { \
  147. c+=n; \
  148. l1=l2=0; \
  149. switch (n) { \
  150. case 8: l2 =((unsigned long)(*(--(c))))<<24; \
  151. case 7: l2|=((unsigned long)(*(--(c))))<<16; \
  152. case 6: l2|=((unsigned long)(*(--(c))))<< 8; \
  153. case 5: l2|=((unsigned long)(*(--(c)))); \
  154. case 4: l1 =((unsigned long)(*(--(c))))<<24; \
  155. case 3: l1|=((unsigned long)(*(--(c))))<<16; \
  156. case 2: l1|=((unsigned long)(*(--(c))))<< 8; \
  157. case 1: l1|=((unsigned long)(*(--(c)))); \
  158. } \
  159. }
  160. #define l2c(l,c) (*((c)++)=(unsigned char)(((l) )&0xff), \
  161. *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
  162. *((c)++)=(unsigned char)(((l)>>16)&0xff), \
  163. *((c)++)=(unsigned char)(((l)>>24)&0xff))
  164. #define n2l(c,l) (l =((unsigned long)(*((c)++)))<<24, \
  165. l|=((unsigned long)(*((c)++)))<<16, \
  166. l|=((unsigned long)(*((c)++)))<< 8, \
  167. l|=((unsigned long)(*((c)++))))
  168. #define l2n(l,c) (*((c)++)=(unsigned char)(((l)>>24)&0xff), \
  169. *((c)++)=(unsigned char)(((l)>>16)&0xff), \
  170. *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
  171. *((c)++)=(unsigned char)(((l) )&0xff))
  172. #define l2n6(l,c) (*((c)++)=(unsigned char)(((l)>>40)&0xff), \
  173. *((c)++)=(unsigned char)(((l)>>32)&0xff), \
  174. *((c)++)=(unsigned char)(((l)>>24)&0xff), \
  175. *((c)++)=(unsigned char)(((l)>>16)&0xff), \
  176. *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
  177. *((c)++)=(unsigned char)(((l) )&0xff))
  178. #define n2l6(c,l) (l =((BN_ULLONG)(*((c)++)))<<40, \
  179. l|=((BN_ULLONG)(*((c)++)))<<32, \
  180. l|=((BN_ULLONG)(*((c)++)))<<24, \
  181. l|=((BN_ULLONG)(*((c)++)))<<16, \
  182. l|=((BN_ULLONG)(*((c)++)))<< 8, \
  183. l|=((BN_ULLONG)(*((c)++))))
  184. /* NOTE - c is not incremented as per l2c */
  185. #define l2cn(l1,l2,c,n) { \
  186. c+=n; \
  187. switch (n) { \
  188. case 8: *(--(c))=(unsigned char)(((l2)>>24)&0xff); \
  189. case 7: *(--(c))=(unsigned char)(((l2)>>16)&0xff); \
  190. case 6: *(--(c))=(unsigned char)(((l2)>> 8)&0xff); \
  191. case 5: *(--(c))=(unsigned char)(((l2) )&0xff); \
  192. case 4: *(--(c))=(unsigned char)(((l1)>>24)&0xff); \
  193. case 3: *(--(c))=(unsigned char)(((l1)>>16)&0xff); \
  194. case 2: *(--(c))=(unsigned char)(((l1)>> 8)&0xff); \
  195. case 1: *(--(c))=(unsigned char)(((l1) )&0xff); \
  196. } \
  197. }
  198. #define n2s(c,s) ((s=(((unsigned int)(c[0]))<< 8)| \
  199. (((unsigned int)(c[1])) )),c+=2)
  200. #define s2n(s,c) ((c[0]=(unsigned char)(((s)>> 8)&0xff), \
  201. c[1]=(unsigned char)(((s) )&0xff)),c+=2)
  202. #define n2l3(c,l) ((l =(((unsigned long)(c[0]))<<16)| \
  203. (((unsigned long)(c[1]))<< 8)| \
  204. (((unsigned long)(c[2])) )),c+=3)
  205. #define l2n3(l,c) ((c[0]=(unsigned char)(((l)>>16)&0xff), \
  206. c[1]=(unsigned char)(((l)>> 8)&0xff), \
  207. c[2]=(unsigned char)(((l) )&0xff)),c+=3)
  208. /* LOCAL STUFF */
  209. #define SSL_DECRYPT 0
  210. #define SSL_ENCRYPT 1
  211. #define TWO_BYTE_BIT 0x80
  212. #define SEC_ESC_BIT 0x40
  213. #define TWO_BYTE_MASK 0x7fff
  214. #define THREE_BYTE_MASK 0x3fff
  215. #define INC32(a) ((a)=((a)+1)&0xffffffffL)
  216. #define DEC32(a) ((a)=((a)-1)&0xffffffffL)
  217. #define MAX_MAC_SIZE 20 /* up from 16 for SSLv3 */
  218. /*
  219. * Define the Bitmasks for SSL_CIPHER.algorithms.
  220. * This bits are used packed as dense as possible. If new methods/ciphers
  221. * etc will be added, the bits a likely to change, so this information
  222. * is for internal library use only, even though SSL_CIPHER.algorithms
  223. * can be publicly accessed.
  224. * Use the according functions for cipher management instead.
  225. *
  226. * The bit mask handling in the selection and sorting scheme in
  227. * ssl_create_cipher_list() has only limited capabilities, reflecting
  228. * that the different entities within are mutually exclusive:
  229. * ONLY ONE BIT PER MASK CAN BE SET AT A TIME.
  230. */
  231. #define SSL_MKEY_MASK 0x000000FFL
  232. #define SSL_kRSA 0x00000001L /* RSA key exchange */
  233. #define SSL_kDHr 0x00000002L /* DH cert RSA CA cert */
  234. #define SSL_kDHd 0x00000004L /* DH cert DSA CA cert */
  235. #define SSL_kFZA 0x00000008L
  236. #define SSL_kEDH 0x00000010L /* tmp DH key no DH cert */
  237. #define SSL_kKRB5 0x00000020L /* Kerberos5 key exchange */
  238. #define SSL_kECDH 0x00000040L /* ECDH w/ long-term keys */
  239. #define SSL_kECDHE 0x00000080L /* ephemeral ECDH */
  240. #define SSL_EDH (SSL_kEDH|(SSL_AUTH_MASK^SSL_aNULL))
  241. #define SSL_AUTH_MASK 0x00007F00L
  242. #define SSL_aRSA 0x00000100L /* Authenticate with RSA */
  243. #define SSL_aDSS 0x00000200L /* Authenticate with DSS */
  244. #define SSL_DSS SSL_aDSS
  245. #define SSL_aFZA 0x00000400L
  246. #define SSL_aNULL 0x00000800L /* no Authenticate, ADH */
  247. #define SSL_aDH 0x00001000L /* no Authenticate, ADH */
  248. #define SSL_aKRB5 0x00002000L /* Authenticate with KRB5 */
  249. #define SSL_aECDSA 0x00004000L /* Authenticate with ECDSA */
  250. #define SSL_NULL (SSL_eNULL)
  251. #define SSL_ADH (SSL_kEDH|SSL_aNULL)
  252. #define SSL_RSA (SSL_kRSA|SSL_aRSA)
  253. #define SSL_DH (SSL_kDHr|SSL_kDHd|SSL_kEDH)
  254. #define SSL_ECDH (SSL_kECDH|SSL_kECDHE)
  255. #define SSL_FZA (SSL_aFZA|SSL_kFZA|SSL_eFZA)
  256. #define SSL_KRB5 (SSL_kKRB5|SSL_aKRB5)
  257. #define SSL_ENC_MASK 0x043F8000L
  258. #define SSL_DES 0x00008000L
  259. #define SSL_3DES 0x00010000L
  260. #define SSL_RC4 0x00020000L
  261. #define SSL_RC2 0x00040000L
  262. #define SSL_IDEA 0x00080000L
  263. #define SSL_eFZA 0x00100000L
  264. #define SSL_eNULL 0x00200000L
  265. #define SSL_AES 0x04000000L
  266. #define SSL_MAC_MASK 0x00c00000L
  267. #define SSL_MD5 0x00400000L
  268. #define SSL_SHA1 0x00800000L
  269. #define SSL_SHA (SSL_SHA1)
  270. #define SSL_SSL_MASK 0x03000000L
  271. #define SSL_SSLV2 0x01000000L
  272. #define SSL_SSLV3 0x02000000L
  273. #define SSL_TLSV1 SSL_SSLV3 /* for now */
  274. /* we have used 07ffffff - 5 bits left to go. */
  275. /*
  276. * Export and cipher strength information. For each cipher we have to decide
  277. * whether it is exportable or not. This information is likely to change
  278. * over time, since the export control rules are no static technical issue.
  279. *
  280. * Independent of the export flag the cipher strength is sorted into classes.
  281. * SSL_EXP40 was denoting the 40bit US export limit of past times, which now
  282. * is at 56bit (SSL_EXP56). If the exportable cipher class is going to change
  283. * again (eg. to 64bit) the use of "SSL_EXP*" becomes blurred even more,
  284. * since SSL_EXP64 could be similar to SSL_LOW.
  285. * For this reason SSL_MICRO and SSL_MINI macros are included to widen the
  286. * namespace of SSL_LOW-SSL_HIGH to lower values. As development of speed
  287. * and ciphers goes, another extension to SSL_SUPER and/or SSL_ULTRA would
  288. * be possible.
  289. */
  290. #define SSL_EXP_MASK 0x00000003L
  291. #define SSL_NOT_EXP 0x00000001L
  292. #define SSL_EXPORT 0x00000002L
  293. #define SSL_STRONG_MASK 0x000000fcL
  294. #define SSL_STRONG_NONE 0x00000004L
  295. #define SSL_EXP40 0x00000008L
  296. #define SSL_MICRO (SSL_EXP40)
  297. #define SSL_EXP56 0x00000010L
  298. #define SSL_MINI (SSL_EXP56)
  299. #define SSL_LOW 0x00000020L
  300. #define SSL_MEDIUM 0x00000040L
  301. #define SSL_HIGH 0x00000080L
  302. /* we have used 000000ff - 24 bits left to go */
  303. /*
  304. * Macros to check the export status and cipher strength for export ciphers.
  305. * Even though the macros for EXPORT and EXPORT40/56 have similar names,
  306. * their meaning is different:
  307. * *_EXPORT macros check the 'exportable' status.
  308. * *_EXPORT40/56 macros are used to check whether a certain cipher strength
  309. * is given.
  310. * Since the SSL_IS_EXPORT* and SSL_EXPORT* macros depend on the correct
  311. * algorithm structure element to be passed (algorithms, algo_strength) and no
  312. * typechecking can be done as they are all of type unsigned long, their
  313. * direct usage is discouraged.
  314. * Use the SSL_C_* macros instead.
  315. */
  316. #define SSL_IS_EXPORT(a) ((a)&SSL_EXPORT)
  317. #define SSL_IS_EXPORT56(a) ((a)&SSL_EXP56)
  318. #define SSL_IS_EXPORT40(a) ((a)&SSL_EXP40)
  319. #define SSL_C_IS_EXPORT(c) SSL_IS_EXPORT((c)->algo_strength)
  320. #define SSL_C_IS_EXPORT56(c) SSL_IS_EXPORT56((c)->algo_strength)
  321. #define SSL_C_IS_EXPORT40(c) SSL_IS_EXPORT40((c)->algo_strength)
  322. #define SSL_EXPORT_KEYLENGTH(a,s) (SSL_IS_EXPORT40(s) ? 5 : \
  323. ((a)&SSL_ENC_MASK) == SSL_DES ? 8 : 7)
  324. #define SSL_EXPORT_PKEYLENGTH(a) (SSL_IS_EXPORT40(a) ? 512 : 1024)
  325. #define SSL_C_EXPORT_KEYLENGTH(c) SSL_EXPORT_KEYLENGTH((c)->algorithms, \
  326. (c)->algo_strength)
  327. #define SSL_C_EXPORT_PKEYLENGTH(c) SSL_EXPORT_PKEYLENGTH((c)->algo_strength)
  328. #define SSL_ALL 0xffffffffL
  329. #define SSL_ALL_CIPHERS (SSL_MKEY_MASK|SSL_AUTH_MASK|SSL_ENC_MASK|\
  330. SSL_MAC_MASK)
  331. #define SSL_ALL_STRENGTHS (SSL_EXP_MASK|SSL_STRONG_MASK)
  332. /* Mostly for SSLv3 */
  333. #define SSL_PKEY_RSA_ENC 0
  334. #define SSL_PKEY_RSA_SIGN 1
  335. #define SSL_PKEY_DSA_SIGN 2
  336. #define SSL_PKEY_DH_RSA 3
  337. #define SSL_PKEY_DH_DSA 4
  338. #define SSL_PKEY_ECC 5
  339. #define SSL_PKEY_NUM 6
  340. /* SSL_kRSA <- RSA_ENC | (RSA_TMP & RSA_SIGN) |
  341. * <- (EXPORT & (RSA_ENC | RSA_TMP) & RSA_SIGN)
  342. * SSL_kDH <- DH_ENC & (RSA_ENC | RSA_SIGN | DSA_SIGN)
  343. * SSL_kEDH <- RSA_ENC | RSA_SIGN | DSA_SIGN
  344. * SSL_aRSA <- RSA_ENC | RSA_SIGN
  345. * SSL_aDSS <- DSA_SIGN
  346. */
  347. /*
  348. #define CERT_INVALID 0
  349. #define CERT_PUBLIC_KEY 1
  350. #define CERT_PRIVATE_KEY 2
  351. */
  352. #ifndef OPENSSL_NO_EC
  353. /* From ECC-TLS draft, used in encoding the curve type in
  354. * ECParameters
  355. */
  356. #define EXPLICIT_PRIME_CURVE_TYPE 1
  357. #define EXPLICIT_CHAR2_CURVE_TYPE 2
  358. #define NAMED_CURVE_TYPE 3
  359. #endif /* OPENSSL_NO_EC */
  360. typedef struct cert_pkey_st
  361. {
  362. X509 *x509;
  363. EVP_PKEY *privatekey;
  364. } CERT_PKEY;
  365. typedef struct cert_st
  366. {
  367. /* Current active set */
  368. CERT_PKEY *key; /* ALWAYS points to an element of the pkeys array
  369. * Probably it would make more sense to store
  370. * an index, not a pointer. */
  371. /* The following masks are for the key and auth
  372. * algorithms that are supported by the certs below */
  373. int valid;
  374. unsigned long mask;
  375. unsigned long export_mask;
  376. #ifndef OPENSSL_NO_RSA
  377. RSA *rsa_tmp;
  378. RSA *(*rsa_tmp_cb)(SSL *ssl,int is_export,int keysize);
  379. #endif
  380. #ifndef OPENSSL_NO_DH
  381. DH *dh_tmp;
  382. DH *(*dh_tmp_cb)(SSL *ssl,int is_export,int keysize);
  383. #endif
  384. #ifndef OPENSSL_NO_ECDH
  385. EC_KEY *ecdh_tmp;
  386. /* Callback for generating ephemeral ECDH keys */
  387. EC_KEY *(*ecdh_tmp_cb)(SSL *ssl,int is_export,int keysize);
  388. #endif
  389. CERT_PKEY pkeys[SSL_PKEY_NUM];
  390. int references; /* >1 only if SSL_copy_session_id is used */
  391. } CERT;
  392. typedef struct sess_cert_st
  393. {
  394. STACK_OF(X509) *cert_chain; /* as received from peer (not for SSL2) */
  395. /* The 'peer_...' members are used only by clients. */
  396. int peer_cert_type;
  397. CERT_PKEY *peer_key; /* points to an element of peer_pkeys (never NULL!) */
  398. CERT_PKEY peer_pkeys[SSL_PKEY_NUM];
  399. /* Obviously we don't have the private keys of these,
  400. * so maybe we shouldn't even use the CERT_PKEY type here. */
  401. #ifndef OPENSSL_NO_RSA
  402. RSA *peer_rsa_tmp; /* not used for SSL 2 */
  403. #endif
  404. #ifndef OPENSSL_NO_DH
  405. DH *peer_dh_tmp; /* not used for SSL 2 */
  406. #endif
  407. #ifndef OPENSSL_NO_ECDH
  408. EC_KEY *peer_ecdh_tmp;
  409. #endif
  410. int references; /* actually always 1 at the moment */
  411. } SESS_CERT;
  412. /*#define MAC_DEBUG */
  413. /*#define ERR_DEBUG */
  414. /*#define ABORT_DEBUG */
  415. /*#define PKT_DEBUG 1 */
  416. /*#define DES_DEBUG */
  417. /*#define DES_OFB_DEBUG */
  418. /*#define SSL_DEBUG */
  419. /*#define RSA_DEBUG */
  420. /*#define IDEA_DEBUG */
  421. #define FP_ICC (int (*)(const void *,const void *))
  422. #define ssl_put_cipher_by_char(ssl,ciph,ptr) \
  423. ((ssl)->method->put_cipher_by_char((ciph),(ptr)))
  424. #define ssl_get_cipher_by_char(ssl,ptr) \
  425. ((ssl)->method->get_cipher_by_char(ptr))
  426. /* This is for the SSLv3/TLSv1.0 differences in crypto/hash stuff
  427. * It is a bit of a mess of functions, but hell, think of it as
  428. * an opaque structure :-) */
  429. typedef struct ssl3_enc_method
  430. {
  431. int (*enc)(SSL *, int);
  432. int (*mac)(SSL *, unsigned char *, int);
  433. int (*setup_key_block)(SSL *);
  434. int (*generate_master_secret)(SSL *, unsigned char *, unsigned char *, int);
  435. int (*change_cipher_state)(SSL *, int);
  436. int (*final_finish_mac)(SSL *, EVP_MD_CTX *, EVP_MD_CTX *, const char *, int, unsigned char *);
  437. int finish_mac_length;
  438. int (*cert_verify_mac)(SSL *, EVP_MD_CTX *, unsigned char *);
  439. const char *client_finished_label;
  440. int client_finished_label_len;
  441. const char *server_finished_label;
  442. int server_finished_label_len;
  443. int (*alert_value)(int);
  444. } SSL3_ENC_METHOD;
  445. /* Used for holding the relevant compression methods loaded into SSL_CTX */
  446. typedef struct ssl3_comp_st
  447. {
  448. int comp_id; /* The identifier byte for this compression type */
  449. char *name; /* Text name used for the compression type */
  450. COMP_METHOD *method; /* The method :-) */
  451. } SSL3_COMP;
  452. extern SSL3_ENC_METHOD ssl3_undef_enc_method;
  453. OPENSSL_EXTERN SSL_CIPHER ssl2_ciphers[];
  454. OPENSSL_EXTERN SSL_CIPHER ssl3_ciphers[];
  455. SSL_METHOD *ssl_bad_method(int ver);
  456. SSL_METHOD *sslv2_base_method(void);
  457. SSL_METHOD *sslv23_base_method(void);
  458. SSL_METHOD *sslv3_base_method(void);
  459. void ssl_clear_cipher_ctx(SSL *s);
  460. int ssl_clear_bad_session(SSL *s);
  461. CERT *ssl_cert_new(void);
  462. CERT *ssl_cert_dup(CERT *cert);
  463. int ssl_cert_inst(CERT **o);
  464. void ssl_cert_free(CERT *c);
  465. SESS_CERT *ssl_sess_cert_new(void);
  466. void ssl_sess_cert_free(SESS_CERT *sc);
  467. int ssl_set_peer_cert_type(SESS_CERT *c, int type);
  468. int ssl_get_new_session(SSL *s, int session);
  469. int ssl_get_prev_session(SSL *s, unsigned char *session,int len);
  470. int ssl_cipher_id_cmp(const SSL_CIPHER *a,const SSL_CIPHER *b);
  471. int ssl_cipher_ptr_id_cmp(const SSL_CIPHER * const *ap,
  472. const SSL_CIPHER * const *bp);
  473. STACK_OF(SSL_CIPHER) *ssl_bytes_to_cipher_list(SSL *s,unsigned char *p,int num,
  474. STACK_OF(SSL_CIPHER) **skp);
  475. int ssl_cipher_list_to_bytes(SSL *s,STACK_OF(SSL_CIPHER) *sk,unsigned char *p,
  476. int (*put_cb)(const SSL_CIPHER *, unsigned char *));
  477. STACK_OF(SSL_CIPHER) *ssl_create_cipher_list(const SSL_METHOD *meth,
  478. STACK_OF(SSL_CIPHER) **pref,
  479. STACK_OF(SSL_CIPHER) **sorted,
  480. const char *rule_str);
  481. void ssl_update_cache(SSL *s, int mode);
  482. int ssl_cipher_get_evp(const SSL_SESSION *s,const EVP_CIPHER **enc,
  483. const EVP_MD **md,SSL_COMP **comp);
  484. int ssl_verify_cert_chain(SSL *s,STACK_OF(X509) *sk);
  485. int ssl_undefined_function(SSL *s);
  486. int ssl_undefined_void_function(void);
  487. int ssl_undefined_const_function(const SSL *s);
  488. X509 *ssl_get_server_send_cert(SSL *);
  489. EVP_PKEY *ssl_get_sign_pkey(SSL *,SSL_CIPHER *);
  490. int ssl_cert_type(X509 *x,EVP_PKEY *pkey);
  491. void ssl_set_cert_masks(CERT *c, SSL_CIPHER *cipher);
  492. STACK_OF(SSL_CIPHER) *ssl_get_ciphers_by_id(SSL *s);
  493. int ssl_verify_alarm_type(long type);
  494. int ssl2_enc_init(SSL *s, int client);
  495. int ssl2_generate_key_material(SSL *s);
  496. void ssl2_enc(SSL *s,int send_data);
  497. void ssl2_mac(SSL *s,unsigned char *mac,int send_data);
  498. SSL_CIPHER *ssl2_get_cipher_by_char(const unsigned char *p);
  499. int ssl2_put_cipher_by_char(const SSL_CIPHER *c,unsigned char *p);
  500. int ssl2_part_read(SSL *s, unsigned long f, int i);
  501. int ssl2_do_write(SSL *s);
  502. int ssl2_set_certificate(SSL *s, int type, int len, const unsigned char *data);
  503. void ssl2_return_error(SSL *s,int reason);
  504. void ssl2_write_error(SSL *s);
  505. int ssl2_num_ciphers(void);
  506. SSL_CIPHER *ssl2_get_cipher(unsigned int u);
  507. int ssl2_new(SSL *s);
  508. void ssl2_free(SSL *s);
  509. int ssl2_accept(SSL *s);
  510. int ssl2_connect(SSL *s);
  511. int ssl2_read(SSL *s, void *buf, int len);
  512. int ssl2_peek(SSL *s, void *buf, int len);
  513. int ssl2_write(SSL *s, const void *buf, int len);
  514. int ssl2_shutdown(SSL *s);
  515. void ssl2_clear(SSL *s);
  516. long ssl2_ctrl(SSL *s,int cmd, long larg, void *parg);
  517. long ssl2_ctx_ctrl(SSL_CTX *s,int cmd, long larg, void *parg);
  518. long ssl2_callback_ctrl(SSL *s,int cmd, void (*fp)(void));
  519. long ssl2_ctx_callback_ctrl(SSL_CTX *s,int cmd, void (*fp)(void));
  520. int ssl2_pending(const SSL *s);
  521. SSL_CIPHER *ssl3_get_cipher_by_char(const unsigned char *p);
  522. int ssl3_put_cipher_by_char(const SSL_CIPHER *c,unsigned char *p);
  523. void ssl3_init_finished_mac(SSL *s);
  524. int ssl3_send_server_certificate(SSL *s);
  525. int ssl3_get_finished(SSL *s,int state_a,int state_b);
  526. int ssl3_setup_key_block(SSL *s);
  527. int ssl3_send_change_cipher_spec(SSL *s,int state_a,int state_b);
  528. int ssl3_change_cipher_state(SSL *s,int which);
  529. void ssl3_cleanup_key_block(SSL *s);
  530. int ssl3_do_write(SSL *s,int type);
  531. void ssl3_send_alert(SSL *s,int level, int desc);
  532. int ssl3_generate_master_secret(SSL *s, unsigned char *out,
  533. unsigned char *p, int len);
  534. int ssl3_get_req_cert_type(SSL *s,unsigned char *p);
  535. long ssl3_get_message(SSL *s, int st1, int stn, int mt, long max, int *ok);
  536. int ssl3_send_finished(SSL *s, int a, int b, const char *sender,int slen);
  537. int ssl3_num_ciphers(void);
  538. SSL_CIPHER *ssl3_get_cipher(unsigned int u);
  539. int ssl3_renegotiate(SSL *ssl);
  540. int ssl3_renegotiate_check(SSL *ssl);
  541. int ssl3_dispatch_alert(SSL *s);
  542. int ssl3_read_bytes(SSL *s, int type, unsigned char *buf, int len, int peek);
  543. int ssl3_write_bytes(SSL *s, int type, const void *buf, int len);
  544. int ssl3_final_finish_mac(SSL *s, EVP_MD_CTX *ctx1, EVP_MD_CTX *ctx2,
  545. const char *sender, int slen,unsigned char *p);
  546. int ssl3_cert_verify_mac(SSL *s, EVP_MD_CTX *in, unsigned char *p);
  547. void ssl3_finish_mac(SSL *s, const unsigned char *buf, int len);
  548. int ssl3_enc(SSL *s, int send_data);
  549. int ssl3_mac(SSL *ssl, unsigned char *md, int send_data);
  550. unsigned long ssl3_output_cert_chain(SSL *s, X509 *x);
  551. SSL_CIPHER *ssl3_choose_cipher(SSL *ssl,STACK_OF(SSL_CIPHER) *clnt,
  552. STACK_OF(SSL_CIPHER) *srvr);
  553. int ssl3_setup_buffers(SSL *s);
  554. int ssl3_new(SSL *s);
  555. void ssl3_free(SSL *s);
  556. int ssl3_accept(SSL *s);
  557. int ssl3_connect(SSL *s);
  558. int ssl3_read(SSL *s, void *buf, int len);
  559. int ssl3_peek(SSL *s, void *buf, int len);
  560. int ssl3_write(SSL *s, const void *buf, int len);
  561. int ssl3_shutdown(SSL *s);
  562. void ssl3_clear(SSL *s);
  563. long ssl3_ctrl(SSL *s,int cmd, long larg, void *parg);
  564. long ssl3_ctx_ctrl(SSL_CTX *s,int cmd, long larg, void *parg);
  565. long ssl3_callback_ctrl(SSL *s,int cmd, void (*fp)(void));
  566. long ssl3_ctx_callback_ctrl(SSL_CTX *s,int cmd, void (*fp)(void));
  567. int ssl3_pending(const SSL *s);
  568. void ssl3_record_sequence_update(unsigned char *seq);
  569. int ssl3_do_change_cipher_spec(SSL *ssl);
  570. int dtls1_do_write(SSL *s,int type);
  571. int ssl3_read_n(SSL *s, int n, int max, int extend);
  572. int dtls1_read_bytes(SSL *s, int type, unsigned char *buf, int len, int peek);
  573. int ssl3_do_compress(SSL *ssl);
  574. int ssl3_do_uncompress(SSL *ssl);
  575. int ssl3_write_pending(SSL *s, int type, const unsigned char *buf,
  576. unsigned int len);
  577. unsigned char *dtls1_set_message_header(SSL *s,
  578. unsigned char *p, unsigned char mt, unsigned long len,
  579. unsigned long frag_off, unsigned long frag_len);
  580. int dtls1_write_app_data_bytes(SSL *s, int type, const void *buf, int len);
  581. int dtls1_write_bytes(SSL *s, int type, const void *buf, int len);
  582. int dtls1_send_change_cipher_spec(SSL *s, int a, int b);
  583. int dtls1_send_finished(SSL *s, int a, int b, const char *sender, int slen);
  584. unsigned long dtls1_output_cert_chain(SSL *s, X509 *x);
  585. int dtls1_read_failed(SSL *s, int code);
  586. int dtls1_buffer_message(SSL *s, int ccs);
  587. int dtls1_retransmit_message(SSL *s, unsigned short seq,
  588. unsigned long frag_off, int *found);
  589. void dtls1_clear_record_buffer(SSL *s);
  590. void dtls1_get_message_header(unsigned char *data, struct hm_header_st *msg_hdr);
  591. void dtls1_get_ccs_header(unsigned char *data, struct ccs_header_st *ccs_hdr);
  592. void dtls1_reset_seq_numbers(SSL *s, int rw);
  593. /* some client-only functions */
  594. int ssl3_client_hello(SSL *s);
  595. int ssl3_get_server_hello(SSL *s);
  596. int ssl3_get_certificate_request(SSL *s);
  597. int ssl3_get_server_done(SSL *s);
  598. int ssl3_send_client_verify(SSL *s);
  599. int ssl3_send_client_certificate(SSL *s);
  600. int ssl3_send_client_key_exchange(SSL *s);
  601. int ssl3_get_key_exchange(SSL *s);
  602. int ssl3_get_server_certificate(SSL *s);
  603. int ssl3_check_cert_and_algorithm(SSL *s);
  604. int dtls1_client_hello(SSL *s);
  605. int dtls1_send_client_certificate(SSL *s);
  606. int dtls1_send_client_key_exchange(SSL *s);
  607. int dtls1_send_client_verify(SSL *s);
  608. /* some server-only functions */
  609. int ssl3_get_client_hello(SSL *s);
  610. int ssl3_send_server_hello(SSL *s);
  611. int ssl3_send_hello_request(SSL *s);
  612. int ssl3_send_server_key_exchange(SSL *s);
  613. int ssl3_send_certificate_request(SSL *s);
  614. int ssl3_send_server_done(SSL *s);
  615. int ssl3_check_client_hello(SSL *s);
  616. int ssl3_get_client_certificate(SSL *s);
  617. int ssl3_get_client_key_exchange(SSL *s);
  618. int ssl3_get_cert_verify(SSL *s);
  619. int dtls1_send_hello_request(SSL *s);
  620. int dtls1_send_server_hello(SSL *s);
  621. int dtls1_send_server_certificate(SSL *s);
  622. int dtls1_send_server_key_exchange(SSL *s);
  623. int dtls1_send_certificate_request(SSL *s);
  624. int dtls1_send_server_done(SSL *s);
  625. int ssl23_accept(SSL *s);
  626. int ssl23_connect(SSL *s);
  627. int ssl23_read_bytes(SSL *s, int n);
  628. int ssl23_write_bytes(SSL *s);
  629. int tls1_new(SSL *s);
  630. void tls1_free(SSL *s);
  631. void tls1_clear(SSL *s);
  632. long tls1_ctrl(SSL *s,int cmd, long larg, void *parg);
  633. long tls1_callback_ctrl(SSL *s,int cmd, void (*fp)(void));
  634. SSL_METHOD *tlsv1_base_method(void );
  635. int dtls1_new(SSL *s);
  636. int dtls1_accept(SSL *s);
  637. int dtls1_connect(SSL *s);
  638. void dtls1_free(SSL *s);
  639. void dtls1_clear(SSL *s);
  640. long dtls1_ctrl(SSL *s,int cmd, long larg, void *parg);
  641. SSL_METHOD *dtlsv1_base_method(void );
  642. long dtls1_get_message(SSL *s, int st1, int stn, int mt, long max, int *ok);
  643. int dtls1_get_record(SSL *s);
  644. int do_dtls1_write(SSL *s, int type, const unsigned char *buf,
  645. unsigned int len, int create_empty_fragement);
  646. int dtls1_dispatch_alert(SSL *s);
  647. int dtls1_enc(SSL *s, int snd);
  648. int ssl_init_wbio_buffer(SSL *s, int push);
  649. void ssl_free_wbio_buffer(SSL *s);
  650. int tls1_change_cipher_state(SSL *s, int which);
  651. int tls1_setup_key_block(SSL *s);
  652. int tls1_enc(SSL *s, int snd);
  653. int tls1_final_finish_mac(SSL *s, EVP_MD_CTX *in1_ctx, EVP_MD_CTX *in2_ctx,
  654. const char *str, int slen, unsigned char *p);
  655. int tls1_cert_verify_mac(SSL *s, EVP_MD_CTX *in, unsigned char *p);
  656. int tls1_mac(SSL *ssl, unsigned char *md, int snd);
  657. int tls1_generate_master_secret(SSL *s, unsigned char *out,
  658. unsigned char *p, int len);
  659. int tls1_alert_code(int code);
  660. int ssl3_alert_code(int code);
  661. int ssl_ok(SSL *s);
  662. int check_srvr_ecc_cert_and_alg(X509 *x, SSL_CIPHER *cs);
  663. SSL_COMP *ssl3_comp_find(STACK_OF(SSL_COMP) *sk, int n);
  664. #endif