ssl_ciph.c 49 KB

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  1. /* ssl/ssl_ciph.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. /* ====================================================================
  59. * Copyright (c) 1998-2007 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. /* ====================================================================
  117. * Copyright 2005 Nokia. All rights reserved.
  118. *
  119. * The portions of the attached software ("Contribution") is developed by
  120. * Nokia Corporation and is licensed pursuant to the OpenSSL open source
  121. * license.
  122. *
  123. * The Contribution, originally written by Mika Kousa and Pasi Eronen of
  124. * Nokia Corporation, consists of the "PSK" (Pre-Shared Key) ciphersuites
  125. * support (see RFC 4279) to OpenSSL.
  126. *
  127. * No patent licenses or other rights except those expressly stated in
  128. * the OpenSSL open source license shall be deemed granted or received
  129. * expressly, by implication, estoppel, or otherwise.
  130. *
  131. * No assurances are provided by Nokia that the Contribution does not
  132. * infringe the patent or other intellectual property rights of any third
  133. * party or that the license provides you with all the necessary rights
  134. * to make use of the Contribution.
  135. *
  136. * THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND. IN
  137. * ADDITION TO THE DISCLAIMERS INCLUDED IN THE LICENSE, NOKIA
  138. * SPECIFICALLY DISCLAIMS ANY LIABILITY FOR CLAIMS BROUGHT BY YOU OR ANY
  139. * OTHER ENTITY BASED ON INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS OR
  140. * OTHERWISE.
  141. */
  142. #include <stdio.h>
  143. #include <openssl/objects.h>
  144. #ifndef OPENSSL_NO_COMP
  145. #include <openssl/comp.h>
  146. #endif
  147. #ifndef OPENSSL_NO_ENGINE
  148. #include <openssl/engine.h>
  149. #endif
  150. #include "ssl_locl.h"
  151. #define SSL_ENC_DES_IDX 0
  152. #define SSL_ENC_3DES_IDX 1
  153. #define SSL_ENC_RC4_IDX 2
  154. #define SSL_ENC_RC2_IDX 3
  155. #define SSL_ENC_IDEA_IDX 4
  156. #define SSL_ENC_NULL_IDX 5
  157. #define SSL_ENC_AES128_IDX 6
  158. #define SSL_ENC_AES256_IDX 7
  159. #define SSL_ENC_CAMELLIA128_IDX 8
  160. #define SSL_ENC_CAMELLIA256_IDX 9
  161. #define SSL_ENC_GOST89_IDX 10
  162. #define SSL_ENC_SEED_IDX 11
  163. #define SSL_ENC_NUM_IDX 12
  164. static const EVP_CIPHER *ssl_cipher_methods[SSL_ENC_NUM_IDX]={
  165. NULL,NULL,NULL,NULL,NULL,NULL,NULL,NULL,NULL,NULL,NULL,
  166. };
  167. #define SSL_COMP_NULL_IDX 0
  168. #define SSL_COMP_ZLIB_IDX 1
  169. #define SSL_COMP_NUM_IDX 2
  170. static STACK_OF(SSL_COMP) *ssl_comp_methods=NULL;
  171. #define SSL_MD_MD5_IDX 0
  172. #define SSL_MD_SHA1_IDX 1
  173. #define SSL_MD_GOST94_IDX 2
  174. #define SSL_MD_GOST89MAC_IDX 3
  175. #define SSL_MD_SHA256_IDX 4
  176. /*Constant SSL_MAX_DIGEST equal to size of digests array should be
  177. * defined in the
  178. * ssl_locl.h */
  179. #define SSL_MD_NUM_IDX SSL_MAX_DIGEST
  180. static const EVP_MD *ssl_digest_methods[SSL_MD_NUM_IDX]={
  181. NULL,NULL,NULL,NULL,NULL
  182. };
  183. /* PKEY_TYPE for GOST89MAC is known in advance, but, because
  184. * implementation is engine-provided, we'll fill it only if
  185. * corresponding EVP_PKEY_METHOD is found
  186. */
  187. static int ssl_mac_pkey_id[SSL_MD_NUM_IDX]={
  188. EVP_PKEY_HMAC,EVP_PKEY_HMAC,EVP_PKEY_HMAC,NID_undef,EVP_PKEY_HMAC
  189. };
  190. static int ssl_mac_secret_size[SSL_MD_NUM_IDX]={
  191. 0,0,0,0,0
  192. };
  193. static int ssl_handshake_digest_flag[SSL_MD_NUM_IDX]={
  194. SSL_HANDSHAKE_MAC_MD5,SSL_HANDSHAKE_MAC_SHA,
  195. SSL_HANDSHAKE_MAC_GOST94, 0, SSL_HANDSHAKE_MAC_SHA256
  196. };
  197. #define CIPHER_ADD 1
  198. #define CIPHER_KILL 2
  199. #define CIPHER_DEL 3
  200. #define CIPHER_ORD 4
  201. #define CIPHER_SPECIAL 5
  202. typedef struct cipher_order_st
  203. {
  204. const SSL_CIPHER *cipher;
  205. int active;
  206. int dead;
  207. struct cipher_order_st *next,*prev;
  208. } CIPHER_ORDER;
  209. static const SSL_CIPHER cipher_aliases[]={
  210. /* "ALL" doesn't include eNULL (must be specifically enabled) */
  211. {0,SSL_TXT_ALL,0, 0,0,~SSL_eNULL,0,0,0,0,0,0},
  212. /* "COMPLEMENTOFALL" */
  213. {0,SSL_TXT_CMPALL,0, 0,0,SSL_eNULL,0,0,0,0,0,0},
  214. /* "COMPLEMENTOFDEFAULT" (does *not* include ciphersuites not found in ALL!) */
  215. {0,SSL_TXT_CMPDEF,0, SSL_kEDH|SSL_kEECDH,SSL_aNULL,~SSL_eNULL,0,0,0,0,0,0},
  216. /* key exchange aliases
  217. * (some of those using only a single bit here combine
  218. * multiple key exchange algs according to the RFCs,
  219. * e.g. kEDH combines DHE_DSS and DHE_RSA) */
  220. {0,SSL_TXT_kRSA,0, SSL_kRSA, 0,0,0,0,0,0,0,0},
  221. {0,SSL_TXT_kDHr,0, SSL_kDHr, 0,0,0,0,0,0,0,0}, /* no such ciphersuites supported! */
  222. {0,SSL_TXT_kDHd,0, SSL_kDHd, 0,0,0,0,0,0,0,0}, /* no such ciphersuites supported! */
  223. {0,SSL_TXT_kDH,0, SSL_kDHr|SSL_kDHd,0,0,0,0,0,0,0,0}, /* no such ciphersuites supported! */
  224. {0,SSL_TXT_kEDH,0, SSL_kEDH, 0,0,0,0,0,0,0,0},
  225. {0,SSL_TXT_DH,0, SSL_kDHr|SSL_kDHd|SSL_kEDH,0,0,0,0,0,0,0,0},
  226. {0,SSL_TXT_kKRB5,0, SSL_kKRB5, 0,0,0,0,0,0,0,0},
  227. {0,SSL_TXT_kECDHr,0, SSL_kECDHr,0,0,0,0,0,0,0,0},
  228. {0,SSL_TXT_kECDHe,0, SSL_kECDHe,0,0,0,0,0,0,0,0},
  229. {0,SSL_TXT_kECDH,0, SSL_kECDHr|SSL_kECDHe,0,0,0,0,0,0,0,0},
  230. {0,SSL_TXT_kEECDH,0, SSL_kEECDH,0,0,0,0,0,0,0,0},
  231. {0,SSL_TXT_ECDH,0, SSL_kECDHr|SSL_kECDHe|SSL_kEECDH,0,0,0,0,0,0,0,0},
  232. {0,SSL_TXT_kPSK,0, SSL_kPSK, 0,0,0,0,0,0,0,0},
  233. {0,SSL_TXT_kSRP,0, SSL_kSRP, 0,0,0,0,0,0,0,0},
  234. {0,SSL_TXT_kGOST,0, SSL_kGOST,0,0,0,0,0,0,0,0},
  235. /* server authentication aliases */
  236. {0,SSL_TXT_aRSA,0, 0,SSL_aRSA, 0,0,0,0,0,0,0},
  237. {0,SSL_TXT_aDSS,0, 0,SSL_aDSS, 0,0,0,0,0,0,0},
  238. {0,SSL_TXT_DSS,0, 0,SSL_aDSS, 0,0,0,0,0,0,0},
  239. {0,SSL_TXT_aKRB5,0, 0,SSL_aKRB5, 0,0,0,0,0,0,0},
  240. {0,SSL_TXT_aNULL,0, 0,SSL_aNULL, 0,0,0,0,0,0,0},
  241. {0,SSL_TXT_aDH,0, 0,SSL_aDH, 0,0,0,0,0,0,0}, /* no such ciphersuites supported! */
  242. {0,SSL_TXT_aECDH,0, 0,SSL_aECDH, 0,0,0,0,0,0,0},
  243. {0,SSL_TXT_aECDSA,0, 0,SSL_aECDSA,0,0,0,0,0,0,0},
  244. {0,SSL_TXT_ECDSA,0, 0,SSL_aECDSA, 0,0,0,0,0,0,0},
  245. {0,SSL_TXT_aPSK,0, 0,SSL_aPSK, 0,0,0,0,0,0,0},
  246. {0,SSL_TXT_aGOST94,0,0,SSL_aGOST94,0,0,0,0,0,0,0},
  247. {0,SSL_TXT_aGOST01,0,0,SSL_aGOST01,0,0,0,0,0,0,0},
  248. {0,SSL_TXT_aGOST,0,0,SSL_aGOST94|SSL_aGOST01,0,0,0,0,0,0,0},
  249. /* aliases combining key exchange and server authentication */
  250. {0,SSL_TXT_EDH,0, SSL_kEDH,~SSL_aNULL,0,0,0,0,0,0,0},
  251. {0,SSL_TXT_EECDH,0, SSL_kEECDH,~SSL_aNULL,0,0,0,0,0,0,0},
  252. {0,SSL_TXT_NULL,0, 0,0,SSL_eNULL, 0,0,0,0,0,0},
  253. {0,SSL_TXT_KRB5,0, SSL_kKRB5,SSL_aKRB5,0,0,0,0,0,0,0},
  254. {0,SSL_TXT_RSA,0, SSL_kRSA,SSL_aRSA,0,0,0,0,0,0,0},
  255. {0,SSL_TXT_ADH,0, SSL_kEDH,SSL_aNULL,0,0,0,0,0,0,0},
  256. {0,SSL_TXT_AECDH,0, SSL_kEECDH,SSL_aNULL,0,0,0,0,0,0,0},
  257. {0,SSL_TXT_PSK,0, SSL_kPSK,SSL_aPSK,0,0,0,0,0,0,0},
  258. {0,SSL_TXT_SRP,0, SSL_kSRP,0,0,0,0,0,0,0,0},
  259. /* symmetric encryption aliases */
  260. {0,SSL_TXT_DES,0, 0,0,SSL_DES, 0,0,0,0,0,0},
  261. {0,SSL_TXT_3DES,0, 0,0,SSL_3DES, 0,0,0,0,0,0},
  262. {0,SSL_TXT_RC4,0, 0,0,SSL_RC4, 0,0,0,0,0,0},
  263. {0,SSL_TXT_RC2,0, 0,0,SSL_RC2, 0,0,0,0,0,0},
  264. {0,SSL_TXT_IDEA,0, 0,0,SSL_IDEA, 0,0,0,0,0,0},
  265. {0,SSL_TXT_SEED,0, 0,0,SSL_SEED, 0,0,0,0,0,0},
  266. {0,SSL_TXT_eNULL,0, 0,0,SSL_eNULL, 0,0,0,0,0,0},
  267. {0,SSL_TXT_AES128,0, 0,0,SSL_AES128,0,0,0,0,0,0},
  268. {0,SSL_TXT_AES256,0, 0,0,SSL_AES256,0,0,0,0,0,0},
  269. {0,SSL_TXT_AES,0, 0,0,SSL_AES128|SSL_AES256,0,0,0,0,0,0},
  270. {0,SSL_TXT_CAMELLIA128,0,0,0,SSL_CAMELLIA128,0,0,0,0,0,0},
  271. {0,SSL_TXT_CAMELLIA256,0,0,0,SSL_CAMELLIA256,0,0,0,0,0,0},
  272. {0,SSL_TXT_CAMELLIA ,0,0,0,SSL_CAMELLIA128|SSL_CAMELLIA256,0,0,0,0,0,0},
  273. /* MAC aliases */
  274. {0,SSL_TXT_MD5,0, 0,0,0,SSL_MD5, 0,0,0,0,0},
  275. {0,SSL_TXT_SHA1,0, 0,0,0,SSL_SHA1, 0,0,0,0,0},
  276. {0,SSL_TXT_SHA,0, 0,0,0,SSL_SHA1, 0,0,0,0,0},
  277. {0,SSL_TXT_GOST94,0, 0,0,0,SSL_GOST94, 0,0,0,0,0},
  278. {0,SSL_TXT_GOST89MAC,0, 0,0,0,SSL_GOST89MAC, 0,0,0,0,0},
  279. {0,SSL_TXT_SHA256,0, 0,0,0,SSL_SHA256, 0,0,0,0,0},
  280. /* protocol version aliases */
  281. {0,SSL_TXT_SSLV2,0, 0,0,0,0,SSL_SSLV2, 0,0,0,0},
  282. {0,SSL_TXT_SSLV3,0, 0,0,0,0,SSL_SSLV3, 0,0,0,0},
  283. {0,SSL_TXT_TLSV1,0, 0,0,0,0,SSL_TLSV1, 0,0,0,0},
  284. /* export flag */
  285. {0,SSL_TXT_EXP,0, 0,0,0,0,0,SSL_EXPORT,0,0,0},
  286. {0,SSL_TXT_EXPORT,0, 0,0,0,0,0,SSL_EXPORT,0,0,0},
  287. /* strength classes */
  288. {0,SSL_TXT_EXP40,0, 0,0,0,0,0,SSL_EXP40, 0,0,0},
  289. {0,SSL_TXT_EXP56,0, 0,0,0,0,0,SSL_EXP56, 0,0,0},
  290. {0,SSL_TXT_LOW,0, 0,0,0,0,0,SSL_LOW, 0,0,0},
  291. {0,SSL_TXT_MEDIUM,0, 0,0,0,0,0,SSL_MEDIUM,0,0,0},
  292. {0,SSL_TXT_HIGH,0, 0,0,0,0,0,SSL_HIGH, 0,0,0},
  293. /* FIPS 140-2 approved ciphersuite */
  294. {0,SSL_TXT_FIPS,0, 0,0,~SSL_eNULL,0,0,SSL_FIPS, 0,0,0},
  295. };
  296. /* Search for public key algorithm with given name and
  297. * return its pkey_id if it is available. Otherwise return 0
  298. */
  299. #ifdef OPENSSL_NO_ENGINE
  300. static int get_optional_pkey_id(const char *pkey_name)
  301. {
  302. const EVP_PKEY_ASN1_METHOD *ameth;
  303. int pkey_id=0;
  304. ameth = EVP_PKEY_asn1_find_str(NULL,pkey_name,-1);
  305. if (ameth)
  306. {
  307. EVP_PKEY_asn1_get0_info(&pkey_id, NULL,NULL,NULL,NULL,ameth);
  308. }
  309. return pkey_id;
  310. }
  311. #else
  312. static int get_optional_pkey_id(const char *pkey_name)
  313. {
  314. const EVP_PKEY_ASN1_METHOD *ameth;
  315. ENGINE *tmpeng = NULL;
  316. int pkey_id=0;
  317. ameth = EVP_PKEY_asn1_find_str(&tmpeng,pkey_name,-1);
  318. if (ameth)
  319. {
  320. EVP_PKEY_asn1_get0_info(&pkey_id, NULL,NULL,NULL,NULL,ameth);
  321. }
  322. if (tmpeng) ENGINE_finish(tmpeng);
  323. return pkey_id;
  324. }
  325. #endif
  326. void ssl_load_ciphers(void)
  327. {
  328. ssl_cipher_methods[SSL_ENC_DES_IDX]=
  329. EVP_get_cipherbyname(SN_des_cbc);
  330. ssl_cipher_methods[SSL_ENC_3DES_IDX]=
  331. EVP_get_cipherbyname(SN_des_ede3_cbc);
  332. ssl_cipher_methods[SSL_ENC_RC4_IDX]=
  333. EVP_get_cipherbyname(SN_rc4);
  334. ssl_cipher_methods[SSL_ENC_RC2_IDX]=
  335. EVP_get_cipherbyname(SN_rc2_cbc);
  336. #ifndef OPENSSL_NO_IDEA
  337. ssl_cipher_methods[SSL_ENC_IDEA_IDX]=
  338. EVP_get_cipherbyname(SN_idea_cbc);
  339. #else
  340. ssl_cipher_methods[SSL_ENC_IDEA_IDX]= NULL;
  341. #endif
  342. ssl_cipher_methods[SSL_ENC_AES128_IDX]=
  343. EVP_get_cipherbyname(SN_aes_128_cbc);
  344. ssl_cipher_methods[SSL_ENC_AES256_IDX]=
  345. EVP_get_cipherbyname(SN_aes_256_cbc);
  346. ssl_cipher_methods[SSL_ENC_CAMELLIA128_IDX]=
  347. EVP_get_cipherbyname(SN_camellia_128_cbc);
  348. ssl_cipher_methods[SSL_ENC_CAMELLIA256_IDX]=
  349. EVP_get_cipherbyname(SN_camellia_256_cbc);
  350. ssl_cipher_methods[SSL_ENC_GOST89_IDX]=
  351. EVP_get_cipherbyname(SN_gost89_cnt);
  352. ssl_cipher_methods[SSL_ENC_SEED_IDX]=
  353. EVP_get_cipherbyname(SN_seed_cbc);
  354. ssl_digest_methods[SSL_MD_MD5_IDX]=
  355. EVP_get_digestbyname(SN_md5);
  356. ssl_mac_secret_size[SSL_MD_MD5_IDX]=
  357. EVP_MD_size(ssl_digest_methods[SSL_MD_MD5_IDX]);
  358. OPENSSL_assert(ssl_mac_secret_size[SSL_MD_MD5_IDX] >= 0);
  359. ssl_digest_methods[SSL_MD_SHA1_IDX]=
  360. EVP_get_digestbyname(SN_sha1);
  361. ssl_mac_secret_size[SSL_MD_SHA1_IDX]=
  362. EVP_MD_size(ssl_digest_methods[SSL_MD_SHA1_IDX]);
  363. OPENSSL_assert(ssl_mac_secret_size[SSL_MD_SHA1_IDX] >= 0);
  364. ssl_digest_methods[SSL_MD_GOST94_IDX]=
  365. EVP_get_digestbyname(SN_id_GostR3411_94);
  366. if (ssl_digest_methods[SSL_MD_GOST94_IDX])
  367. {
  368. ssl_mac_secret_size[SSL_MD_GOST94_IDX]=
  369. EVP_MD_size(ssl_digest_methods[SSL_MD_GOST94_IDX]);
  370. OPENSSL_assert(ssl_mac_secret_size[SSL_MD_GOST94_IDX] >= 0);
  371. }
  372. ssl_digest_methods[SSL_MD_GOST89MAC_IDX]=
  373. EVP_get_digestbyname(SN_id_Gost28147_89_MAC);
  374. ssl_mac_pkey_id[SSL_MD_GOST89MAC_IDX] = get_optional_pkey_id("gost-mac");
  375. if (ssl_mac_pkey_id[SSL_MD_GOST89MAC_IDX]) {
  376. ssl_mac_secret_size[SSL_MD_GOST89MAC_IDX]=32;
  377. }
  378. ssl_digest_methods[SSL_MD_SHA256_IDX]=
  379. EVP_get_digestbyname(SN_sha256);
  380. ssl_mac_secret_size[SSL_MD_SHA256_IDX]=
  381. EVP_MD_size(ssl_digest_methods[SSL_MD_SHA256_IDX]);
  382. }
  383. #ifndef OPENSSL_NO_COMP
  384. static int sk_comp_cmp(const SSL_COMP * const *a,
  385. const SSL_COMP * const *b)
  386. {
  387. return((*a)->id-(*b)->id);
  388. }
  389. static void load_builtin_compressions(void)
  390. {
  391. int got_write_lock = 0;
  392. CRYPTO_r_lock(CRYPTO_LOCK_SSL);
  393. if (ssl_comp_methods == NULL)
  394. {
  395. CRYPTO_r_unlock(CRYPTO_LOCK_SSL);
  396. CRYPTO_w_lock(CRYPTO_LOCK_SSL);
  397. got_write_lock = 1;
  398. if (ssl_comp_methods == NULL)
  399. {
  400. SSL_COMP *comp = NULL;
  401. MemCheck_off();
  402. ssl_comp_methods=sk_SSL_COMP_new(sk_comp_cmp);
  403. if (ssl_comp_methods != NULL)
  404. {
  405. comp=(SSL_COMP *)OPENSSL_malloc(sizeof(SSL_COMP));
  406. if (comp != NULL)
  407. {
  408. comp->method=COMP_zlib();
  409. if (comp->method
  410. && comp->method->type == NID_undef)
  411. OPENSSL_free(comp);
  412. else
  413. {
  414. comp->id=SSL_COMP_ZLIB_IDX;
  415. comp->name=comp->method->name;
  416. sk_SSL_COMP_push(ssl_comp_methods,comp);
  417. }
  418. }
  419. }
  420. MemCheck_on();
  421. }
  422. }
  423. if (got_write_lock)
  424. CRYPTO_w_unlock(CRYPTO_LOCK_SSL);
  425. else
  426. CRYPTO_r_unlock(CRYPTO_LOCK_SSL);
  427. }
  428. #endif
  429. int ssl_cipher_get_evp(const SSL_SESSION *s, const EVP_CIPHER **enc,
  430. const EVP_MD **md, int *mac_pkey_type, int *mac_secret_size,SSL_COMP **comp)
  431. {
  432. int i;
  433. const SSL_CIPHER *c;
  434. c=s->cipher;
  435. if (c == NULL) return(0);
  436. if (comp != NULL)
  437. {
  438. SSL_COMP ctmp;
  439. #ifndef OPENSSL_NO_COMP
  440. load_builtin_compressions();
  441. #endif
  442. *comp=NULL;
  443. ctmp.id=s->compress_meth;
  444. if (ssl_comp_methods != NULL)
  445. {
  446. i=sk_SSL_COMP_find(ssl_comp_methods,&ctmp);
  447. if (i >= 0)
  448. *comp=sk_SSL_COMP_value(ssl_comp_methods,i);
  449. else
  450. *comp=NULL;
  451. }
  452. }
  453. if ((enc == NULL) || (md == NULL)) return(0);
  454. switch (c->algorithm_enc)
  455. {
  456. case SSL_DES:
  457. i=SSL_ENC_DES_IDX;
  458. break;
  459. case SSL_3DES:
  460. i=SSL_ENC_3DES_IDX;
  461. break;
  462. case SSL_RC4:
  463. i=SSL_ENC_RC4_IDX;
  464. break;
  465. case SSL_RC2:
  466. i=SSL_ENC_RC2_IDX;
  467. break;
  468. case SSL_IDEA:
  469. i=SSL_ENC_IDEA_IDX;
  470. break;
  471. case SSL_eNULL:
  472. i=SSL_ENC_NULL_IDX;
  473. break;
  474. case SSL_AES128:
  475. i=SSL_ENC_AES128_IDX;
  476. break;
  477. case SSL_AES256:
  478. i=SSL_ENC_AES256_IDX;
  479. break;
  480. case SSL_CAMELLIA128:
  481. i=SSL_ENC_CAMELLIA128_IDX;
  482. break;
  483. case SSL_CAMELLIA256:
  484. i=SSL_ENC_CAMELLIA256_IDX;
  485. break;
  486. case SSL_eGOST2814789CNT:
  487. i=SSL_ENC_GOST89_IDX;
  488. break;
  489. case SSL_SEED:
  490. i=SSL_ENC_SEED_IDX;
  491. break;
  492. default:
  493. i= -1;
  494. break;
  495. }
  496. if ((i < 0) || (i > SSL_ENC_NUM_IDX))
  497. *enc=NULL;
  498. else
  499. {
  500. if (i == SSL_ENC_NULL_IDX)
  501. *enc=EVP_enc_null();
  502. else
  503. *enc=ssl_cipher_methods[i];
  504. }
  505. switch (c->algorithm_mac)
  506. {
  507. case SSL_MD5:
  508. i=SSL_MD_MD5_IDX;
  509. break;
  510. case SSL_SHA1:
  511. i=SSL_MD_SHA1_IDX;
  512. break;
  513. case SSL_SHA256:
  514. i=SSL_MD_SHA256_IDX;
  515. break;
  516. case SSL_GOST94:
  517. i = SSL_MD_GOST94_IDX;
  518. break;
  519. case SSL_GOST89MAC:
  520. i = SSL_MD_GOST89MAC_IDX;
  521. break;
  522. default:
  523. i= -1;
  524. break;
  525. }
  526. if ((i < 0) || (i > SSL_MD_NUM_IDX))
  527. {
  528. *md=NULL;
  529. if (mac_pkey_type!=NULL) *mac_pkey_type = NID_undef;
  530. if (mac_secret_size!=NULL) *mac_secret_size = 0;
  531. }
  532. else
  533. {
  534. *md=ssl_digest_methods[i];
  535. if (mac_pkey_type!=NULL) *mac_pkey_type = ssl_mac_pkey_id[i];
  536. if (mac_secret_size!=NULL) *mac_secret_size = ssl_mac_secret_size[i];
  537. }
  538. if ((*enc != NULL) && (*md != NULL) && (!mac_pkey_type||*mac_pkey_type != NID_undef))
  539. return(1);
  540. else
  541. return(0);
  542. }
  543. int ssl_get_handshake_digest(int idx, long *mask, const EVP_MD **md)
  544. {
  545. if (idx <0||idx>=SSL_MD_NUM_IDX)
  546. {
  547. return 0;
  548. }
  549. *mask = ssl_handshake_digest_flag[idx];
  550. if (*mask)
  551. *md = ssl_digest_methods[idx];
  552. else
  553. *md = NULL;
  554. return 1;
  555. }
  556. #define ITEM_SEP(a) \
  557. (((a) == ':') || ((a) == ' ') || ((a) == ';') || ((a) == ','))
  558. static void ll_append_tail(CIPHER_ORDER **head, CIPHER_ORDER *curr,
  559. CIPHER_ORDER **tail)
  560. {
  561. if (curr == *tail) return;
  562. if (curr == *head)
  563. *head=curr->next;
  564. if (curr->prev != NULL)
  565. curr->prev->next=curr->next;
  566. if (curr->next != NULL)
  567. curr->next->prev=curr->prev;
  568. (*tail)->next=curr;
  569. curr->prev= *tail;
  570. curr->next=NULL;
  571. *tail=curr;
  572. }
  573. static void ll_append_head(CIPHER_ORDER **head, CIPHER_ORDER *curr,
  574. CIPHER_ORDER **tail)
  575. {
  576. if (curr == *head) return;
  577. if (curr == *tail)
  578. *tail=curr->prev;
  579. if (curr->next != NULL)
  580. curr->next->prev=curr->prev;
  581. if (curr->prev != NULL)
  582. curr->prev->next=curr->next;
  583. (*head)->prev=curr;
  584. curr->next= *head;
  585. curr->prev=NULL;
  586. *head=curr;
  587. }
  588. static void ssl_cipher_get_disabled(unsigned long *mkey, unsigned long *auth, unsigned long *enc, unsigned long *mac, unsigned long *ssl)
  589. {
  590. *mkey = 0;
  591. *auth = 0;
  592. *enc = 0;
  593. *mac = 0;
  594. *ssl = 0;
  595. #ifdef OPENSSL_NO_RSA
  596. *mkey |= SSL_kRSA;
  597. *auth |= SSL_aRSA;
  598. #endif
  599. #ifdef OPENSSL_NO_DSA
  600. *auth |= SSL_aDSS;
  601. #endif
  602. *mkey |= SSL_kDHr|SSL_kDHd; /* no such ciphersuites supported! */
  603. *auth |= SSL_aDH;
  604. #ifdef OPENSSL_NO_DH
  605. *mkey |= SSL_kDHr|SSL_kDHd|SSL_kEDH;
  606. *auth |= SSL_aDH;
  607. #endif
  608. #ifdef OPENSSL_NO_KRB5
  609. *mkey |= SSL_kKRB5;
  610. *auth |= SSL_aKRB5;
  611. #endif
  612. #ifdef OPENSSL_NO_ECDSA
  613. *auth |= SSL_aECDSA;
  614. #endif
  615. #ifdef OPENSSL_NO_ECDH
  616. *mkey |= SSL_kECDHe|SSL_kECDHr;
  617. *auth |= SSL_aECDH;
  618. #endif
  619. #ifdef OPENSSL_NO_PSK
  620. *mkey |= SSL_kPSK;
  621. *auth |= SSL_aPSK;
  622. #endif
  623. #ifdef OPENSSL_NO_SRP
  624. *mkey |= SSL_kSRP;
  625. #endif
  626. /* Check for presence of GOST 34.10 algorithms, and if they
  627. * do not present, disable appropriate auth and key exchange */
  628. if (!get_optional_pkey_id("gost94")) {
  629. *auth |= SSL_aGOST94;
  630. }
  631. if (!get_optional_pkey_id("gost2001")) {
  632. *auth |= SSL_aGOST01;
  633. }
  634. /* Disable GOST key exchange if no GOST signature algs are available * */
  635. if ((*auth & (SSL_aGOST94|SSL_aGOST01)) == (SSL_aGOST94|SSL_aGOST01)) {
  636. *mkey |= SSL_kGOST;
  637. }
  638. #ifdef SSL_FORBID_ENULL
  639. *enc |= SSL_eNULL;
  640. #endif
  641. *enc |= (ssl_cipher_methods[SSL_ENC_DES_IDX ] == NULL) ? SSL_DES :0;
  642. *enc |= (ssl_cipher_methods[SSL_ENC_3DES_IDX] == NULL) ? SSL_3DES:0;
  643. *enc |= (ssl_cipher_methods[SSL_ENC_RC4_IDX ] == NULL) ? SSL_RC4 :0;
  644. *enc |= (ssl_cipher_methods[SSL_ENC_RC2_IDX ] == NULL) ? SSL_RC2 :0;
  645. *enc |= (ssl_cipher_methods[SSL_ENC_IDEA_IDX] == NULL) ? SSL_IDEA:0;
  646. *enc |= (ssl_cipher_methods[SSL_ENC_AES128_IDX] == NULL) ? SSL_AES128:0;
  647. *enc |= (ssl_cipher_methods[SSL_ENC_AES256_IDX] == NULL) ? SSL_AES256:0;
  648. *enc |= (ssl_cipher_methods[SSL_ENC_CAMELLIA128_IDX] == NULL) ? SSL_CAMELLIA128:0;
  649. *enc |= (ssl_cipher_methods[SSL_ENC_CAMELLIA256_IDX] == NULL) ? SSL_CAMELLIA256:0;
  650. *enc |= (ssl_cipher_methods[SSL_ENC_GOST89_IDX] == NULL) ? SSL_eGOST2814789CNT:0;
  651. *enc |= (ssl_cipher_methods[SSL_ENC_SEED_IDX] == NULL) ? SSL_SEED:0;
  652. *mac |= (ssl_digest_methods[SSL_MD_MD5_IDX ] == NULL) ? SSL_MD5 :0;
  653. *mac |= (ssl_digest_methods[SSL_MD_SHA1_IDX] == NULL) ? SSL_SHA1:0;
  654. *mac |= (ssl_digest_methods[SSL_MD_GOST94_IDX] == NULL) ? SSL_GOST94:0;
  655. *mac |= (ssl_digest_methods[SSL_MD_GOST89MAC_IDX] == NULL || ssl_mac_pkey_id[SSL_MD_GOST89MAC_IDX]==NID_undef)? SSL_GOST89MAC:0;
  656. }
  657. static void ssl_cipher_collect_ciphers(const SSL_METHOD *ssl_method,
  658. int num_of_ciphers,
  659. unsigned long disabled_mkey, unsigned long disabled_auth,
  660. unsigned long disabled_enc, unsigned long disabled_mac,
  661. unsigned long disabled_ssl,
  662. CIPHER_ORDER *co_list,
  663. CIPHER_ORDER **head_p, CIPHER_ORDER **tail_p)
  664. {
  665. int i, co_list_num;
  666. const SSL_CIPHER *c;
  667. /*
  668. * We have num_of_ciphers descriptions compiled in, depending on the
  669. * method selected (SSLv2 and/or SSLv3, TLSv1 etc).
  670. * These will later be sorted in a linked list with at most num
  671. * entries.
  672. */
  673. /* Get the initial list of ciphers */
  674. co_list_num = 0; /* actual count of ciphers */
  675. for (i = 0; i < num_of_ciphers; i++)
  676. {
  677. c = ssl_method->get_cipher(i);
  678. /* drop those that use any of that is not available */
  679. if ((c != NULL) && c->valid &&
  680. !(c->algorithm_mkey & disabled_mkey) &&
  681. !(c->algorithm_auth & disabled_auth) &&
  682. !(c->algorithm_enc & disabled_enc) &&
  683. !(c->algorithm_mac & disabled_mac) &&
  684. !(c->algorithm_ssl & disabled_ssl))
  685. {
  686. co_list[co_list_num].cipher = c;
  687. co_list[co_list_num].next = NULL;
  688. co_list[co_list_num].prev = NULL;
  689. co_list[co_list_num].active = 0;
  690. co_list_num++;
  691. #ifdef KSSL_DEBUG
  692. printf("\t%d: %s %lx %lx %lx\n",i,c->name,c->id,c->algorithm_mkey,c->algorithm_auth);
  693. #endif /* KSSL_DEBUG */
  694. /*
  695. if (!sk_push(ca_list,(char *)c)) goto err;
  696. */
  697. }
  698. }
  699. /*
  700. * Prepare linked list from list entries
  701. */
  702. if (co_list_num > 0)
  703. {
  704. co_list[0].prev = NULL;
  705. if (co_list_num > 1)
  706. {
  707. co_list[0].next = &co_list[1];
  708. for (i = 1; i < co_list_num - 1; i++)
  709. {
  710. co_list[i].prev = &co_list[i - 1];
  711. co_list[i].next = &co_list[i + 1];
  712. }
  713. co_list[co_list_num - 1].prev = &co_list[co_list_num - 2];
  714. }
  715. co_list[co_list_num - 1].next = NULL;
  716. *head_p = &co_list[0];
  717. *tail_p = &co_list[co_list_num - 1];
  718. }
  719. }
  720. static void ssl_cipher_collect_aliases(const SSL_CIPHER **ca_list,
  721. int num_of_group_aliases,
  722. unsigned long disabled_mkey, unsigned long disabled_auth,
  723. unsigned long disabled_enc, unsigned long disabled_mac,
  724. unsigned long disabled_ssl,
  725. CIPHER_ORDER *head)
  726. {
  727. CIPHER_ORDER *ciph_curr;
  728. const SSL_CIPHER **ca_curr;
  729. int i;
  730. unsigned long mask_mkey = ~disabled_mkey;
  731. unsigned long mask_auth = ~disabled_auth;
  732. unsigned long mask_enc = ~disabled_enc;
  733. unsigned long mask_mac = ~disabled_mac;
  734. unsigned long mask_ssl = ~disabled_ssl;
  735. /*
  736. * First, add the real ciphers as already collected
  737. */
  738. ciph_curr = head;
  739. ca_curr = ca_list;
  740. while (ciph_curr != NULL)
  741. {
  742. *ca_curr = ciph_curr->cipher;
  743. ca_curr++;
  744. ciph_curr = ciph_curr->next;
  745. }
  746. /*
  747. * Now we add the available ones from the cipher_aliases[] table.
  748. * They represent either one or more algorithms, some of which
  749. * in any affected category must be supported (set in enabled_mask),
  750. * or represent a cipher strength value (will be added in any case because algorithms=0).
  751. */
  752. for (i = 0; i < num_of_group_aliases; i++)
  753. {
  754. unsigned long algorithm_mkey = cipher_aliases[i].algorithm_mkey;
  755. unsigned long algorithm_auth = cipher_aliases[i].algorithm_auth;
  756. unsigned long algorithm_enc = cipher_aliases[i].algorithm_enc;
  757. unsigned long algorithm_mac = cipher_aliases[i].algorithm_mac;
  758. unsigned long algorithm_ssl = cipher_aliases[i].algorithm_ssl;
  759. if (algorithm_mkey)
  760. if ((algorithm_mkey & mask_mkey) == 0)
  761. continue;
  762. if (algorithm_auth)
  763. if ((algorithm_auth & mask_auth) == 0)
  764. continue;
  765. if (algorithm_enc)
  766. if ((algorithm_enc & mask_enc) == 0)
  767. continue;
  768. if (algorithm_mac)
  769. if ((algorithm_mac & mask_mac) == 0)
  770. continue;
  771. if (algorithm_ssl)
  772. if ((algorithm_ssl & mask_ssl) == 0)
  773. continue;
  774. *ca_curr = (SSL_CIPHER *)(cipher_aliases + i);
  775. ca_curr++;
  776. }
  777. *ca_curr = NULL; /* end of list */
  778. }
  779. static void ssl_cipher_apply_rule(unsigned long cipher_id,
  780. unsigned long alg_mkey, unsigned long alg_auth,
  781. unsigned long alg_enc, unsigned long alg_mac,
  782. unsigned long alg_ssl,
  783. unsigned long algo_strength,
  784. int rule, int strength_bits,
  785. CIPHER_ORDER **head_p, CIPHER_ORDER **tail_p)
  786. {
  787. CIPHER_ORDER *head, *tail, *curr, *curr2, *last;
  788. const SSL_CIPHER *cp;
  789. int reverse = 0;
  790. #ifdef CIPHER_DEBUG
  791. printf("Applying rule %d with %08lx/%08lx/%08lx/%08lx/%08lx %08lx (%d)\n",
  792. rule, alg_mkey, alg_auth, alg_enc, alg_mac, alg_ssl, algo_strength, strength_bits);
  793. #endif
  794. if (rule == CIPHER_DEL)
  795. reverse = 1; /* needed to maintain sorting between currently deleted ciphers */
  796. head = *head_p;
  797. tail = *tail_p;
  798. if (reverse)
  799. {
  800. curr = tail;
  801. last = head;
  802. }
  803. else
  804. {
  805. curr = head;
  806. last = tail;
  807. }
  808. curr2 = curr;
  809. for (;;)
  810. {
  811. if ((curr == NULL) || (curr == last)) break;
  812. curr = curr2;
  813. curr2 = reverse ? curr->prev : curr->next;
  814. cp = curr->cipher;
  815. /*
  816. * Selection criteria is either the value of strength_bits
  817. * or the algorithms used.
  818. */
  819. if (strength_bits >= 0)
  820. {
  821. if (strength_bits != cp->strength_bits)
  822. continue;
  823. }
  824. else
  825. {
  826. #ifdef CIPHER_DEBUG
  827. printf("\nName: %s:\nAlgo = %08lx/%08lx/%08lx/%08lx/%08lx Algo_strength = %08lx\n", cp->name, cp->algorithm_mkey, cp->algorithm_auth, cp->algorithm_enc, cp->algorithm_mac, cp->algorithm_ssl, cp->algo_strength);
  828. #endif
  829. if (alg_mkey && !(alg_mkey & cp->algorithm_mkey))
  830. continue;
  831. if (alg_auth && !(alg_auth & cp->algorithm_auth))
  832. continue;
  833. if (alg_enc && !(alg_enc & cp->algorithm_enc))
  834. continue;
  835. if (alg_mac && !(alg_mac & cp->algorithm_mac))
  836. continue;
  837. if (alg_ssl && !(alg_ssl & cp->algorithm_ssl))
  838. continue;
  839. if ((algo_strength & SSL_EXP_MASK) && !(algo_strength & SSL_EXP_MASK & cp->algo_strength))
  840. continue;
  841. if ((algo_strength & SSL_STRONG_MASK) && !(algo_strength & SSL_STRONG_MASK & cp->algo_strength))
  842. continue;
  843. }
  844. #ifdef CIPHER_DEBUG
  845. printf("Action = %d\n", rule);
  846. #endif
  847. /* add the cipher if it has not been added yet. */
  848. if (rule == CIPHER_ADD)
  849. {
  850. /* reverse == 0 */
  851. if (!curr->active)
  852. {
  853. ll_append_tail(&head, curr, &tail);
  854. curr->active = 1;
  855. }
  856. }
  857. /* Move the added cipher to this location */
  858. else if (rule == CIPHER_ORD)
  859. {
  860. /* reverse == 0 */
  861. if (curr->active)
  862. {
  863. ll_append_tail(&head, curr, &tail);
  864. }
  865. }
  866. else if (rule == CIPHER_DEL)
  867. {
  868. /* reverse == 1 */
  869. if (curr->active)
  870. {
  871. /* most recently deleted ciphersuites get best positions
  872. * for any future CIPHER_ADD (note that the CIPHER_DEL loop
  873. * works in reverse to maintain the order) */
  874. ll_append_head(&head, curr, &tail);
  875. curr->active = 0;
  876. }
  877. }
  878. else if (rule == CIPHER_KILL)
  879. {
  880. /* reverse == 0 */
  881. if (head == curr)
  882. head = curr->next;
  883. else
  884. curr->prev->next = curr->next;
  885. if (tail == curr)
  886. tail = curr->prev;
  887. curr->active = 0;
  888. if (curr->next != NULL)
  889. curr->next->prev = curr->prev;
  890. if (curr->prev != NULL)
  891. curr->prev->next = curr->next;
  892. curr->next = NULL;
  893. curr->prev = NULL;
  894. }
  895. }
  896. *head_p = head;
  897. *tail_p = tail;
  898. }
  899. static int ssl_cipher_strength_sort(CIPHER_ORDER **head_p,
  900. CIPHER_ORDER **tail_p)
  901. {
  902. int max_strength_bits, i, *number_uses;
  903. CIPHER_ORDER *curr;
  904. /*
  905. * This routine sorts the ciphers with descending strength. The sorting
  906. * must keep the pre-sorted sequence, so we apply the normal sorting
  907. * routine as '+' movement to the end of the list.
  908. */
  909. max_strength_bits = 0;
  910. curr = *head_p;
  911. while (curr != NULL)
  912. {
  913. if (curr->active &&
  914. (curr->cipher->strength_bits > max_strength_bits))
  915. max_strength_bits = curr->cipher->strength_bits;
  916. curr = curr->next;
  917. }
  918. number_uses = OPENSSL_malloc((max_strength_bits + 1) * sizeof(int));
  919. if (!number_uses)
  920. {
  921. SSLerr(SSL_F_SSL_CIPHER_STRENGTH_SORT,ERR_R_MALLOC_FAILURE);
  922. return(0);
  923. }
  924. memset(number_uses, 0, (max_strength_bits + 1) * sizeof(int));
  925. /*
  926. * Now find the strength_bits values actually used
  927. */
  928. curr = *head_p;
  929. while (curr != NULL)
  930. {
  931. if (curr->active)
  932. number_uses[curr->cipher->strength_bits]++;
  933. curr = curr->next;
  934. }
  935. /*
  936. * Go through the list of used strength_bits values in descending
  937. * order.
  938. */
  939. for (i = max_strength_bits; i >= 0; i--)
  940. if (number_uses[i] > 0)
  941. ssl_cipher_apply_rule(0, 0, 0, 0, 0, 0, 0, CIPHER_ORD, i, head_p, tail_p);
  942. OPENSSL_free(number_uses);
  943. return(1);
  944. }
  945. static int ssl_cipher_process_rulestr(const char *rule_str,
  946. CIPHER_ORDER **head_p, CIPHER_ORDER **tail_p,
  947. const SSL_CIPHER **ca_list)
  948. {
  949. unsigned long alg_mkey, alg_auth, alg_enc, alg_mac, alg_ssl, algo_strength;
  950. const char *l, *buf;
  951. int j, multi, found, rule, retval, ok, buflen;
  952. unsigned long cipher_id = 0;
  953. char ch;
  954. retval = 1;
  955. l = rule_str;
  956. for (;;)
  957. {
  958. ch = *l;
  959. if (ch == '\0')
  960. break; /* done */
  961. if (ch == '-')
  962. { rule = CIPHER_DEL; l++; }
  963. else if (ch == '+')
  964. { rule = CIPHER_ORD; l++; }
  965. else if (ch == '!')
  966. { rule = CIPHER_KILL; l++; }
  967. else if (ch == '@')
  968. { rule = CIPHER_SPECIAL; l++; }
  969. else
  970. { rule = CIPHER_ADD; }
  971. if (ITEM_SEP(ch))
  972. {
  973. l++;
  974. continue;
  975. }
  976. alg_mkey = 0;
  977. alg_auth = 0;
  978. alg_enc = 0;
  979. alg_mac = 0;
  980. alg_ssl = 0;
  981. algo_strength = 0;
  982. for (;;)
  983. {
  984. ch = *l;
  985. buf = l;
  986. buflen = 0;
  987. #ifndef CHARSET_EBCDIC
  988. while ( ((ch >= 'A') && (ch <= 'Z')) ||
  989. ((ch >= '0') && (ch <= '9')) ||
  990. ((ch >= 'a') && (ch <= 'z')) ||
  991. (ch == '-'))
  992. #else
  993. while ( isalnum(ch) || (ch == '-'))
  994. #endif
  995. {
  996. ch = *(++l);
  997. buflen++;
  998. }
  999. if (buflen == 0)
  1000. {
  1001. /*
  1002. * We hit something we cannot deal with,
  1003. * it is no command or separator nor
  1004. * alphanumeric, so we call this an error.
  1005. */
  1006. SSLerr(SSL_F_SSL_CIPHER_PROCESS_RULESTR,
  1007. SSL_R_INVALID_COMMAND);
  1008. retval = found = 0;
  1009. l++;
  1010. break;
  1011. }
  1012. if (rule == CIPHER_SPECIAL)
  1013. {
  1014. found = 0; /* unused -- avoid compiler warning */
  1015. break; /* special treatment */
  1016. }
  1017. /* check for multi-part specification */
  1018. if (ch == '+')
  1019. {
  1020. multi=1;
  1021. l++;
  1022. }
  1023. else
  1024. multi=0;
  1025. /*
  1026. * Now search for the cipher alias in the ca_list. Be careful
  1027. * with the strncmp, because the "buflen" limitation
  1028. * will make the rule "ADH:SOME" and the cipher
  1029. * "ADH-MY-CIPHER" look like a match for buflen=3.
  1030. * So additionally check whether the cipher name found
  1031. * has the correct length. We can save a strlen() call:
  1032. * just checking for the '\0' at the right place is
  1033. * sufficient, we have to strncmp() anyway. (We cannot
  1034. * use strcmp(), because buf is not '\0' terminated.)
  1035. */
  1036. j = found = 0;
  1037. cipher_id = 0;
  1038. while (ca_list[j])
  1039. {
  1040. if (!strncmp(buf, ca_list[j]->name, buflen) &&
  1041. (ca_list[j]->name[buflen] == '\0'))
  1042. {
  1043. found = 1;
  1044. break;
  1045. }
  1046. else
  1047. j++;
  1048. }
  1049. if (!found)
  1050. break; /* ignore this entry */
  1051. if (ca_list[j]->algorithm_mkey)
  1052. {
  1053. if (alg_mkey)
  1054. {
  1055. alg_mkey &= ca_list[j]->algorithm_mkey;
  1056. if (!alg_mkey) { found = 0; break; }
  1057. }
  1058. else
  1059. alg_mkey = ca_list[j]->algorithm_mkey;
  1060. }
  1061. if (ca_list[j]->algorithm_auth)
  1062. {
  1063. if (alg_auth)
  1064. {
  1065. alg_auth &= ca_list[j]->algorithm_auth;
  1066. if (!alg_auth) { found = 0; break; }
  1067. }
  1068. else
  1069. alg_auth = ca_list[j]->algorithm_auth;
  1070. }
  1071. if (ca_list[j]->algorithm_enc)
  1072. {
  1073. if (alg_enc)
  1074. {
  1075. alg_enc &= ca_list[j]->algorithm_enc;
  1076. if (!alg_enc) { found = 0; break; }
  1077. }
  1078. else
  1079. alg_enc = ca_list[j]->algorithm_enc;
  1080. }
  1081. if (ca_list[j]->algorithm_mac)
  1082. {
  1083. if (alg_mac)
  1084. {
  1085. alg_mac &= ca_list[j]->algorithm_mac;
  1086. if (!alg_mac) { found = 0; break; }
  1087. }
  1088. else
  1089. alg_mac = ca_list[j]->algorithm_mac;
  1090. }
  1091. if (ca_list[j]->algo_strength & SSL_EXP_MASK)
  1092. {
  1093. if (algo_strength & SSL_EXP_MASK)
  1094. {
  1095. algo_strength &= (ca_list[j]->algo_strength & SSL_EXP_MASK) | ~SSL_EXP_MASK;
  1096. if (!(algo_strength & SSL_EXP_MASK)) { found = 0; break; }
  1097. }
  1098. else
  1099. algo_strength |= ca_list[j]->algo_strength & SSL_EXP_MASK;
  1100. }
  1101. if (ca_list[j]->algo_strength & SSL_STRONG_MASK)
  1102. {
  1103. if (algo_strength & SSL_STRONG_MASK)
  1104. {
  1105. algo_strength &= (ca_list[j]->algo_strength & SSL_STRONG_MASK) | ~SSL_STRONG_MASK;
  1106. if (!(algo_strength & SSL_STRONG_MASK)) { found = 0; break; }
  1107. }
  1108. else
  1109. algo_strength |= ca_list[j]->algo_strength & SSL_STRONG_MASK;
  1110. }
  1111. if (ca_list[j]->valid)
  1112. {
  1113. /* explicit ciphersuite found; its protocol version
  1114. * does not become part of the search pattern!*/
  1115. cipher_id = ca_list[j]->id;
  1116. }
  1117. else
  1118. {
  1119. /* not an explicit ciphersuite; only in this case, the
  1120. * protocol version is considered part of the search pattern */
  1121. if (ca_list[j]->algorithm_ssl)
  1122. {
  1123. if (alg_ssl)
  1124. {
  1125. alg_ssl &= ca_list[j]->algorithm_ssl;
  1126. if (!alg_ssl) { found = 0; break; }
  1127. }
  1128. else
  1129. alg_ssl = ca_list[j]->algorithm_ssl;
  1130. }
  1131. }
  1132. if (!multi) break;
  1133. }
  1134. /*
  1135. * Ok, we have the rule, now apply it
  1136. */
  1137. if (rule == CIPHER_SPECIAL)
  1138. { /* special command */
  1139. ok = 0;
  1140. if ((buflen == 8) &&
  1141. !strncmp(buf, "STRENGTH", 8))
  1142. ok = ssl_cipher_strength_sort(head_p, tail_p);
  1143. else
  1144. SSLerr(SSL_F_SSL_CIPHER_PROCESS_RULESTR,
  1145. SSL_R_INVALID_COMMAND);
  1146. if (ok == 0)
  1147. retval = 0;
  1148. /*
  1149. * We do not support any "multi" options
  1150. * together with "@", so throw away the
  1151. * rest of the command, if any left, until
  1152. * end or ':' is found.
  1153. */
  1154. while ((*l != '\0') && !ITEM_SEP(*l))
  1155. l++;
  1156. }
  1157. else if (found)
  1158. {
  1159. ssl_cipher_apply_rule(cipher_id,
  1160. alg_mkey, alg_auth, alg_enc, alg_mac, alg_ssl, algo_strength,
  1161. rule, -1, head_p, tail_p);
  1162. }
  1163. else
  1164. {
  1165. while ((*l != '\0') && !ITEM_SEP(*l))
  1166. l++;
  1167. }
  1168. if (*l == '\0') break; /* done */
  1169. }
  1170. return(retval);
  1171. }
  1172. STACK_OF(SSL_CIPHER) *ssl_create_cipher_list(const SSL_METHOD *ssl_method,
  1173. STACK_OF(SSL_CIPHER) **cipher_list,
  1174. STACK_OF(SSL_CIPHER) **cipher_list_by_id,
  1175. const char *rule_str)
  1176. {
  1177. int ok, num_of_ciphers, num_of_alias_max, num_of_group_aliases;
  1178. unsigned long disabled_mkey, disabled_auth, disabled_enc, disabled_mac, disabled_ssl;
  1179. STACK_OF(SSL_CIPHER) *cipherstack, *tmp_cipher_list;
  1180. const char *rule_p;
  1181. CIPHER_ORDER *co_list = NULL, *head = NULL, *tail = NULL, *curr;
  1182. const SSL_CIPHER **ca_list = NULL;
  1183. /*
  1184. * Return with error if nothing to do.
  1185. */
  1186. if (rule_str == NULL || cipher_list == NULL || cipher_list_by_id == NULL)
  1187. return NULL;
  1188. /*
  1189. * To reduce the work to do we only want to process the compiled
  1190. * in algorithms, so we first get the mask of disabled ciphers.
  1191. */
  1192. ssl_cipher_get_disabled(&disabled_mkey, &disabled_auth, &disabled_enc, &disabled_mac, &disabled_ssl);
  1193. /*
  1194. * Now we have to collect the available ciphers from the compiled
  1195. * in ciphers. We cannot get more than the number compiled in, so
  1196. * it is used for allocation.
  1197. */
  1198. num_of_ciphers = ssl_method->num_ciphers();
  1199. #ifdef KSSL_DEBUG
  1200. printf("ssl_create_cipher_list() for %d ciphers\n", num_of_ciphers);
  1201. #endif /* KSSL_DEBUG */
  1202. co_list = (CIPHER_ORDER *)OPENSSL_malloc(sizeof(CIPHER_ORDER) * num_of_ciphers);
  1203. if (co_list == NULL)
  1204. {
  1205. SSLerr(SSL_F_SSL_CREATE_CIPHER_LIST,ERR_R_MALLOC_FAILURE);
  1206. return(NULL); /* Failure */
  1207. }
  1208. ssl_cipher_collect_ciphers(ssl_method, num_of_ciphers,
  1209. disabled_mkey, disabled_auth, disabled_enc, disabled_mac, disabled_ssl,
  1210. co_list, &head, &tail);
  1211. /* Now arrange all ciphers by preference: */
  1212. /* Everything else being equal, prefer ephemeral ECDH over other key exchange mechanisms */
  1213. ssl_cipher_apply_rule(0, SSL_kEECDH, 0, 0, 0, 0, 0, CIPHER_ADD, -1, &head, &tail);
  1214. ssl_cipher_apply_rule(0, SSL_kEECDH, 0, 0, 0, 0, 0, CIPHER_DEL, -1, &head, &tail);
  1215. /* AES is our preferred symmetric cipher */
  1216. ssl_cipher_apply_rule(0, 0, 0, SSL_AES, 0, 0, 0, CIPHER_ADD, -1, &head, &tail);
  1217. /* Temporarily enable everything else for sorting */
  1218. ssl_cipher_apply_rule(0, 0, 0, 0, 0, 0, 0, CIPHER_ADD, -1, &head, &tail);
  1219. /* Low priority for MD5 */
  1220. ssl_cipher_apply_rule(0, 0, 0, 0, SSL_MD5, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1221. /* Move anonymous ciphers to the end. Usually, these will remain disabled.
  1222. * (For applications that allow them, they aren't too bad, but we prefer
  1223. * authenticated ciphers.) */
  1224. ssl_cipher_apply_rule(0, 0, SSL_aNULL, 0, 0, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1225. /* Move ciphers without forward secrecy to the end */
  1226. ssl_cipher_apply_rule(0, 0, SSL_aECDH, 0, 0, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1227. /* ssl_cipher_apply_rule(0, 0, SSL_aDH, 0, 0, 0, 0, CIPHER_ORD, -1, &head, &tail); */
  1228. ssl_cipher_apply_rule(0, SSL_kRSA, 0, 0, 0, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1229. ssl_cipher_apply_rule(0, SSL_kPSK, 0,0, 0, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1230. ssl_cipher_apply_rule(0, SSL_kKRB5, 0,0, 0, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1231. /* RC4 is sort-of broken -- move the the end */
  1232. ssl_cipher_apply_rule(0, 0, 0, SSL_RC4, 0, 0, 0, CIPHER_ORD, -1, &head, &tail);
  1233. /* Now sort by symmetric encryption strength. The above ordering remains
  1234. * in force within each class */
  1235. if (!ssl_cipher_strength_sort(&head, &tail))
  1236. {
  1237. OPENSSL_free(co_list);
  1238. return NULL;
  1239. }
  1240. /* Now disable everything (maintaining the ordering!) */
  1241. ssl_cipher_apply_rule(0, 0, 0, 0, 0, 0, 0, CIPHER_DEL, -1, &head, &tail);
  1242. /*
  1243. * We also need cipher aliases for selecting based on the rule_str.
  1244. * There might be two types of entries in the rule_str: 1) names
  1245. * of ciphers themselves 2) aliases for groups of ciphers.
  1246. * For 1) we need the available ciphers and for 2) the cipher
  1247. * groups of cipher_aliases added together in one list (otherwise
  1248. * we would be happy with just the cipher_aliases table).
  1249. */
  1250. num_of_group_aliases = sizeof(cipher_aliases) / sizeof(SSL_CIPHER);
  1251. num_of_alias_max = num_of_ciphers + num_of_group_aliases + 1;
  1252. ca_list = OPENSSL_malloc(sizeof(SSL_CIPHER *) * num_of_alias_max);
  1253. if (ca_list == NULL)
  1254. {
  1255. OPENSSL_free(co_list);
  1256. SSLerr(SSL_F_SSL_CREATE_CIPHER_LIST,ERR_R_MALLOC_FAILURE);
  1257. return(NULL); /* Failure */
  1258. }
  1259. ssl_cipher_collect_aliases(ca_list, num_of_group_aliases,
  1260. disabled_mkey, disabled_auth, disabled_enc,
  1261. disabled_mac, disabled_ssl, head);
  1262. /*
  1263. * If the rule_string begins with DEFAULT, apply the default rule
  1264. * before using the (possibly available) additional rules.
  1265. */
  1266. ok = 1;
  1267. rule_p = rule_str;
  1268. if (strncmp(rule_str,"DEFAULT",7) == 0)
  1269. {
  1270. ok = ssl_cipher_process_rulestr(SSL_DEFAULT_CIPHER_LIST,
  1271. &head, &tail, ca_list);
  1272. rule_p += 7;
  1273. if (*rule_p == ':')
  1274. rule_p++;
  1275. }
  1276. if (ok && (strlen(rule_p) > 0))
  1277. ok = ssl_cipher_process_rulestr(rule_p, &head, &tail, ca_list);
  1278. OPENSSL_free((void *)ca_list); /* Not needed anymore */
  1279. if (!ok)
  1280. { /* Rule processing failure */
  1281. OPENSSL_free(co_list);
  1282. return(NULL);
  1283. }
  1284. /*
  1285. * Allocate new "cipherstack" for the result, return with error
  1286. * if we cannot get one.
  1287. */
  1288. if ((cipherstack = sk_SSL_CIPHER_new_null()) == NULL)
  1289. {
  1290. OPENSSL_free(co_list);
  1291. return(NULL);
  1292. }
  1293. /*
  1294. * The cipher selection for the list is done. The ciphers are added
  1295. * to the resulting precedence to the STACK_OF(SSL_CIPHER).
  1296. */
  1297. for (curr = head; curr != NULL; curr = curr->next)
  1298. {
  1299. if (curr->active)
  1300. {
  1301. sk_SSL_CIPHER_push(cipherstack, curr->cipher);
  1302. #ifdef CIPHER_DEBUG
  1303. printf("<%s>\n",curr->cipher->name);
  1304. #endif
  1305. }
  1306. }
  1307. OPENSSL_free(co_list); /* Not needed any longer */
  1308. tmp_cipher_list = sk_SSL_CIPHER_dup(cipherstack);
  1309. if (tmp_cipher_list == NULL)
  1310. {
  1311. sk_SSL_CIPHER_free(cipherstack);
  1312. return NULL;
  1313. }
  1314. if (*cipher_list != NULL)
  1315. sk_SSL_CIPHER_free(*cipher_list);
  1316. *cipher_list = cipherstack;
  1317. if (*cipher_list_by_id != NULL)
  1318. sk_SSL_CIPHER_free(*cipher_list_by_id);
  1319. *cipher_list_by_id = tmp_cipher_list;
  1320. (void)sk_SSL_CIPHER_set_cmp_func(*cipher_list_by_id,ssl_cipher_ptr_id_cmp);
  1321. sk_SSL_CIPHER_sort(*cipher_list_by_id);
  1322. return(cipherstack);
  1323. }
  1324. char *SSL_CIPHER_description(const SSL_CIPHER *cipher, char *buf, int len)
  1325. {
  1326. int is_export,pkl,kl;
  1327. const char *ver,*exp_str;
  1328. const char *kx,*au,*enc,*mac;
  1329. unsigned long alg_mkey,alg_auth,alg_enc,alg_mac,alg_ssl,alg2;
  1330. #ifdef KSSL_DEBUG
  1331. static const char *format="%-23s %s Kx=%-8s Au=%-4s Enc=%-9s Mac=%-4s%s AL=%lx/%lx/%lx/%lx/%lx\n";
  1332. #else
  1333. static const char *format="%-23s %s Kx=%-8s Au=%-4s Enc=%-9s Mac=%-4s%s\n";
  1334. #endif /* KSSL_DEBUG */
  1335. alg_mkey = cipher->algorithm_mkey;
  1336. alg_auth = cipher->algorithm_auth;
  1337. alg_enc = cipher->algorithm_enc;
  1338. alg_mac = cipher->algorithm_mac;
  1339. alg_ssl = cipher->algorithm_ssl;
  1340. alg2=cipher->algorithm2;
  1341. is_export=SSL_C_IS_EXPORT(cipher);
  1342. pkl=SSL_C_EXPORT_PKEYLENGTH(cipher);
  1343. kl=SSL_C_EXPORT_KEYLENGTH(cipher);
  1344. exp_str=is_export?" export":"";
  1345. if (alg_ssl & SSL_SSLV2)
  1346. ver="SSLv2";
  1347. else if (alg_ssl & SSL_SSLV3)
  1348. ver="SSLv3";
  1349. else
  1350. ver="unknown";
  1351. switch (alg_mkey)
  1352. {
  1353. case SSL_kRSA:
  1354. kx=is_export?(pkl == 512 ? "RSA(512)" : "RSA(1024)"):"RSA";
  1355. break;
  1356. case SSL_kDHr:
  1357. kx="DH/RSA";
  1358. break;
  1359. case SSL_kDHd:
  1360. kx="DH/DSS";
  1361. break;
  1362. case SSL_kKRB5:
  1363. kx="KRB5";
  1364. break;
  1365. case SSL_kEDH:
  1366. kx=is_export?(pkl == 512 ? "DH(512)" : "DH(1024)"):"DH";
  1367. break;
  1368. case SSL_kECDHr:
  1369. kx="ECDH/RSA";
  1370. break;
  1371. case SSL_kECDHe:
  1372. kx="ECDH/ECDSA";
  1373. break;
  1374. case SSL_kEECDH:
  1375. kx="ECDH";
  1376. break;
  1377. case SSL_kPSK:
  1378. kx="PSK";
  1379. break;
  1380. case SSL_kSRP:
  1381. kx="SRP";
  1382. break;
  1383. default:
  1384. kx="unknown";
  1385. }
  1386. switch (alg_auth)
  1387. {
  1388. case SSL_aRSA:
  1389. au="RSA";
  1390. break;
  1391. case SSL_aDSS:
  1392. au="DSS";
  1393. break;
  1394. case SSL_aDH:
  1395. au="DH";
  1396. break;
  1397. case SSL_aKRB5:
  1398. au="KRB5";
  1399. break;
  1400. case SSL_aECDH:
  1401. au="ECDH";
  1402. break;
  1403. case SSL_aNULL:
  1404. au="None";
  1405. break;
  1406. case SSL_aECDSA:
  1407. au="ECDSA";
  1408. break;
  1409. case SSL_aPSK:
  1410. au="PSK";
  1411. break;
  1412. default:
  1413. au="unknown";
  1414. break;
  1415. }
  1416. switch (alg_enc)
  1417. {
  1418. case SSL_DES:
  1419. enc=(is_export && kl == 5)?"DES(40)":"DES(56)";
  1420. break;
  1421. case SSL_3DES:
  1422. enc="3DES(168)";
  1423. break;
  1424. case SSL_RC4:
  1425. enc=is_export?(kl == 5 ? "RC4(40)" : "RC4(56)")
  1426. :((alg2&SSL2_CF_8_BYTE_ENC)?"RC4(64)":"RC4(128)");
  1427. break;
  1428. case SSL_RC2:
  1429. enc=is_export?(kl == 5 ? "RC2(40)" : "RC2(56)"):"RC2(128)";
  1430. break;
  1431. case SSL_IDEA:
  1432. enc="IDEA(128)";
  1433. break;
  1434. case SSL_eNULL:
  1435. enc="None";
  1436. break;
  1437. case SSL_AES128:
  1438. enc="AES(128)";
  1439. break;
  1440. case SSL_AES256:
  1441. enc="AES(256)";
  1442. break;
  1443. case SSL_CAMELLIA128:
  1444. enc="Camellia(128)";
  1445. break;
  1446. case SSL_CAMELLIA256:
  1447. enc="Camellia(256)";
  1448. break;
  1449. case SSL_SEED:
  1450. enc="SEED(128)";
  1451. break;
  1452. default:
  1453. enc="unknown";
  1454. break;
  1455. }
  1456. switch (alg_mac)
  1457. {
  1458. case SSL_MD5:
  1459. mac="MD5";
  1460. break;
  1461. case SSL_SHA1:
  1462. mac="SHA1";
  1463. break;
  1464. case SSL_SHA256:
  1465. mac="SHA256";
  1466. break;
  1467. default:
  1468. mac="unknown";
  1469. break;
  1470. }
  1471. if (buf == NULL)
  1472. {
  1473. len=128;
  1474. buf=OPENSSL_malloc(len);
  1475. if (buf == NULL) return("OPENSSL_malloc Error");
  1476. }
  1477. else if (len < 128)
  1478. return("Buffer too small");
  1479. #ifdef KSSL_DEBUG
  1480. BIO_snprintf(buf,len,format,cipher->name,ver,kx,au,enc,mac,exp_str,alg_mkey,alg_auth,alg_enc,alg_mac,alg_ssl);
  1481. #else
  1482. BIO_snprintf(buf,len,format,cipher->name,ver,kx,au,enc,mac,exp_str);
  1483. #endif /* KSSL_DEBUG */
  1484. return(buf);
  1485. }
  1486. char *SSL_CIPHER_get_version(const SSL_CIPHER *c)
  1487. {
  1488. int i;
  1489. if (c == NULL) return("(NONE)");
  1490. i=(int)(c->id>>24L);
  1491. if (i == 3)
  1492. return("TLSv1/SSLv3");
  1493. else if (i == 2)
  1494. return("SSLv2");
  1495. else
  1496. return("unknown");
  1497. }
  1498. /* return the actual cipher being used */
  1499. const char *SSL_CIPHER_get_name(const SSL_CIPHER *c)
  1500. {
  1501. if (c != NULL)
  1502. return(c->name);
  1503. return("(NONE)");
  1504. }
  1505. /* number of bits for symmetric cipher */
  1506. int SSL_CIPHER_get_bits(const SSL_CIPHER *c, int *alg_bits)
  1507. {
  1508. int ret=0;
  1509. if (c != NULL)
  1510. {
  1511. if (alg_bits != NULL) *alg_bits = c->alg_bits;
  1512. ret = c->strength_bits;
  1513. }
  1514. return(ret);
  1515. }
  1516. unsigned long SSL_CIPHER_get_id(const SSL_CIPHER *c)
  1517. {
  1518. return c->id;
  1519. }
  1520. SSL_COMP *ssl3_comp_find(STACK_OF(SSL_COMP) *sk, int n)
  1521. {
  1522. SSL_COMP *ctmp;
  1523. int i,nn;
  1524. if ((n == 0) || (sk == NULL)) return(NULL);
  1525. nn=sk_SSL_COMP_num(sk);
  1526. for (i=0; i<nn; i++)
  1527. {
  1528. ctmp=sk_SSL_COMP_value(sk,i);
  1529. if (ctmp->id == n)
  1530. return(ctmp);
  1531. }
  1532. return(NULL);
  1533. }
  1534. #ifdef OPENSSL_NO_COMP
  1535. void *SSL_COMP_get_compression_methods(void)
  1536. {
  1537. return NULL;
  1538. }
  1539. int SSL_COMP_add_compression_method(int id, void *cm)
  1540. {
  1541. return 1;
  1542. }
  1543. const char *SSL_COMP_get_name(const void *comp)
  1544. {
  1545. return NULL;
  1546. }
  1547. #else
  1548. STACK_OF(SSL_COMP) *SSL_COMP_get_compression_methods(void)
  1549. {
  1550. load_builtin_compressions();
  1551. return(ssl_comp_methods);
  1552. }
  1553. int SSL_COMP_add_compression_method(int id, COMP_METHOD *cm)
  1554. {
  1555. SSL_COMP *comp;
  1556. if (cm == NULL || cm->type == NID_undef)
  1557. return 1;
  1558. /* According to draft-ietf-tls-compression-04.txt, the
  1559. compression number ranges should be the following:
  1560. 0 to 63: methods defined by the IETF
  1561. 64 to 192: external party methods assigned by IANA
  1562. 193 to 255: reserved for private use */
  1563. if (id < 193 || id > 255)
  1564. {
  1565. SSLerr(SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD,SSL_R_COMPRESSION_ID_NOT_WITHIN_PRIVATE_RANGE);
  1566. return 0;
  1567. }
  1568. MemCheck_off();
  1569. comp=(SSL_COMP *)OPENSSL_malloc(sizeof(SSL_COMP));
  1570. comp->id=id;
  1571. comp->method=cm;
  1572. load_builtin_compressions();
  1573. if (ssl_comp_methods
  1574. && sk_SSL_COMP_find(ssl_comp_methods,comp) >= 0)
  1575. {
  1576. OPENSSL_free(comp);
  1577. MemCheck_on();
  1578. SSLerr(SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD,SSL_R_DUPLICATE_COMPRESSION_ID);
  1579. return(1);
  1580. }
  1581. else if ((ssl_comp_methods == NULL)
  1582. || !sk_SSL_COMP_push(ssl_comp_methods,comp))
  1583. {
  1584. OPENSSL_free(comp);
  1585. MemCheck_on();
  1586. SSLerr(SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD,ERR_R_MALLOC_FAILURE);
  1587. return(1);
  1588. }
  1589. else
  1590. {
  1591. MemCheck_on();
  1592. return(0);
  1593. }
  1594. }
  1595. const char *SSL_COMP_get_name(const COMP_METHOD *comp)
  1596. {
  1597. if (comp)
  1598. return comp->name;
  1599. return NULL;
  1600. }
  1601. #endif