evp_pbe.c 7.3 KB

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  1. /*
  2. * Copyright 1999-2016 The OpenSSL Project Authors. All Rights Reserved.
  3. *
  4. * Licensed under the OpenSSL license (the "License"). You may not use
  5. * this file except in compliance with the License. You can obtain a copy
  6. * in the file LICENSE in the source distribution or at
  7. * https://www.openssl.org/source/license.html
  8. */
  9. #include <stdio.h>
  10. #include "internal/cryptlib.h"
  11. #include <openssl/evp.h>
  12. #include <openssl/pkcs12.h>
  13. #include <openssl/x509.h>
  14. #include "evp_locl.h"
  15. /* Password based encryption (PBE) functions */
  16. /* Setup a cipher context from a PBE algorithm */
  17. struct evp_pbe_st {
  18. int pbe_type;
  19. int pbe_nid;
  20. int cipher_nid;
  21. int md_nid;
  22. EVP_PBE_KEYGEN *keygen;
  23. };
  24. static STACK_OF(EVP_PBE_CTL) *pbe_algs;
  25. static const EVP_PBE_CTL builtin_pbe[] = {
  26. {EVP_PBE_TYPE_OUTER, NID_pbeWithMD2AndDES_CBC,
  27. NID_des_cbc, NID_md2, PKCS5_PBE_keyivgen},
  28. {EVP_PBE_TYPE_OUTER, NID_pbeWithMD5AndDES_CBC,
  29. NID_des_cbc, NID_md5, PKCS5_PBE_keyivgen},
  30. {EVP_PBE_TYPE_OUTER, NID_pbeWithSHA1AndRC2_CBC,
  31. NID_rc2_64_cbc, NID_sha1, PKCS5_PBE_keyivgen},
  32. {EVP_PBE_TYPE_OUTER, NID_id_pbkdf2, -1, -1, PKCS5_v2_PBKDF2_keyivgen},
  33. {EVP_PBE_TYPE_OUTER, NID_pbe_WithSHA1And128BitRC4,
  34. NID_rc4, NID_sha1, PKCS12_PBE_keyivgen},
  35. {EVP_PBE_TYPE_OUTER, NID_pbe_WithSHA1And40BitRC4,
  36. NID_rc4_40, NID_sha1, PKCS12_PBE_keyivgen},
  37. {EVP_PBE_TYPE_OUTER, NID_pbe_WithSHA1And3_Key_TripleDES_CBC,
  38. NID_des_ede3_cbc, NID_sha1, PKCS12_PBE_keyivgen},
  39. {EVP_PBE_TYPE_OUTER, NID_pbe_WithSHA1And2_Key_TripleDES_CBC,
  40. NID_des_ede_cbc, NID_sha1, PKCS12_PBE_keyivgen},
  41. {EVP_PBE_TYPE_OUTER, NID_pbe_WithSHA1And128BitRC2_CBC,
  42. NID_rc2_cbc, NID_sha1, PKCS12_PBE_keyivgen},
  43. {EVP_PBE_TYPE_OUTER, NID_pbe_WithSHA1And40BitRC2_CBC,
  44. NID_rc2_40_cbc, NID_sha1, PKCS12_PBE_keyivgen},
  45. {EVP_PBE_TYPE_OUTER, NID_pbes2, -1, -1, PKCS5_v2_PBE_keyivgen},
  46. {EVP_PBE_TYPE_OUTER, NID_pbeWithMD2AndRC2_CBC,
  47. NID_rc2_64_cbc, NID_md2, PKCS5_PBE_keyivgen},
  48. {EVP_PBE_TYPE_OUTER, NID_pbeWithMD5AndRC2_CBC,
  49. NID_rc2_64_cbc, NID_md5, PKCS5_PBE_keyivgen},
  50. {EVP_PBE_TYPE_OUTER, NID_pbeWithSHA1AndDES_CBC,
  51. NID_des_cbc, NID_sha1, PKCS5_PBE_keyivgen},
  52. {EVP_PBE_TYPE_PRF, NID_hmacWithSHA1, -1, NID_sha1, 0},
  53. {EVP_PBE_TYPE_PRF, NID_hmacWithMD5, -1, NID_md5, 0},
  54. {EVP_PBE_TYPE_PRF, NID_hmacWithSHA224, -1, NID_sha224, 0},
  55. {EVP_PBE_TYPE_PRF, NID_hmacWithSHA256, -1, NID_sha256, 0},
  56. {EVP_PBE_TYPE_PRF, NID_hmacWithSHA384, -1, NID_sha384, 0},
  57. {EVP_PBE_TYPE_PRF, NID_hmacWithSHA512, -1, NID_sha512, 0},
  58. {EVP_PBE_TYPE_PRF, NID_id_HMACGostR3411_94, -1, NID_id_GostR3411_94, 0},
  59. {EVP_PBE_TYPE_PRF, NID_id_tc26_hmac_gost_3411_2012_256, -1,
  60. NID_id_GostR3411_2012_256, 0},
  61. {EVP_PBE_TYPE_PRF, NID_id_tc26_hmac_gost_3411_2012_512, -1,
  62. NID_id_GostR3411_2012_512, 0},
  63. {EVP_PBE_TYPE_KDF, NID_id_pbkdf2, -1, -1, PKCS5_v2_PBKDF2_keyivgen},
  64. #ifndef OPENSSL_NO_SCRYPT
  65. {EVP_PBE_TYPE_KDF, NID_id_scrypt, -1, -1, PKCS5_v2_scrypt_keyivgen}
  66. #endif
  67. };
  68. int EVP_PBE_CipherInit(ASN1_OBJECT *pbe_obj, const char *pass, int passlen,
  69. ASN1_TYPE *param, EVP_CIPHER_CTX *ctx, int en_de)
  70. {
  71. const EVP_CIPHER *cipher;
  72. const EVP_MD *md;
  73. int cipher_nid, md_nid;
  74. EVP_PBE_KEYGEN *keygen;
  75. if (!EVP_PBE_find(EVP_PBE_TYPE_OUTER, OBJ_obj2nid(pbe_obj),
  76. &cipher_nid, &md_nid, &keygen)) {
  77. char obj_tmp[80];
  78. EVPerr(EVP_F_EVP_PBE_CIPHERINIT, EVP_R_UNKNOWN_PBE_ALGORITHM);
  79. if (!pbe_obj)
  80. OPENSSL_strlcpy(obj_tmp, "NULL", sizeof obj_tmp);
  81. else
  82. i2t_ASN1_OBJECT(obj_tmp, sizeof obj_tmp, pbe_obj);
  83. ERR_add_error_data(2, "TYPE=", obj_tmp);
  84. return 0;
  85. }
  86. if (!pass)
  87. passlen = 0;
  88. else if (passlen == -1)
  89. passlen = strlen(pass);
  90. if (cipher_nid == -1)
  91. cipher = NULL;
  92. else {
  93. cipher = EVP_get_cipherbynid(cipher_nid);
  94. if (!cipher) {
  95. EVPerr(EVP_F_EVP_PBE_CIPHERINIT, EVP_R_UNKNOWN_CIPHER);
  96. return 0;
  97. }
  98. }
  99. if (md_nid == -1)
  100. md = NULL;
  101. else {
  102. md = EVP_get_digestbynid(md_nid);
  103. if (!md) {
  104. EVPerr(EVP_F_EVP_PBE_CIPHERINIT, EVP_R_UNKNOWN_DIGEST);
  105. return 0;
  106. }
  107. }
  108. if (!keygen(ctx, pass, passlen, param, cipher, md, en_de)) {
  109. EVPerr(EVP_F_EVP_PBE_CIPHERINIT, EVP_R_KEYGEN_FAILURE);
  110. return 0;
  111. }
  112. return 1;
  113. }
  114. DECLARE_OBJ_BSEARCH_CMP_FN(EVP_PBE_CTL, EVP_PBE_CTL, pbe2);
  115. static int pbe2_cmp(const EVP_PBE_CTL *pbe1, const EVP_PBE_CTL *pbe2)
  116. {
  117. int ret = pbe1->pbe_type - pbe2->pbe_type;
  118. if (ret)
  119. return ret;
  120. else
  121. return pbe1->pbe_nid - pbe2->pbe_nid;
  122. }
  123. IMPLEMENT_OBJ_BSEARCH_CMP_FN(EVP_PBE_CTL, EVP_PBE_CTL, pbe2);
  124. static int pbe_cmp(const EVP_PBE_CTL *const *a, const EVP_PBE_CTL *const *b)
  125. {
  126. int ret = (*a)->pbe_type - (*b)->pbe_type;
  127. if (ret)
  128. return ret;
  129. else
  130. return (*a)->pbe_nid - (*b)->pbe_nid;
  131. }
  132. /* Add a PBE algorithm */
  133. int EVP_PBE_alg_add_type(int pbe_type, int pbe_nid, int cipher_nid,
  134. int md_nid, EVP_PBE_KEYGEN *keygen)
  135. {
  136. EVP_PBE_CTL *pbe_tmp;
  137. if (pbe_algs == NULL) {
  138. pbe_algs = sk_EVP_PBE_CTL_new(pbe_cmp);
  139. if (pbe_algs == NULL)
  140. goto err;
  141. }
  142. if ((pbe_tmp = OPENSSL_malloc(sizeof(*pbe_tmp))) == NULL)
  143. goto err;
  144. pbe_tmp->pbe_type = pbe_type;
  145. pbe_tmp->pbe_nid = pbe_nid;
  146. pbe_tmp->cipher_nid = cipher_nid;
  147. pbe_tmp->md_nid = md_nid;
  148. pbe_tmp->keygen = keygen;
  149. if (!sk_EVP_PBE_CTL_push(pbe_algs, pbe_tmp)) {
  150. OPENSSL_free(pbe_tmp);
  151. goto err;
  152. }
  153. return 1;
  154. err:
  155. EVPerr(EVP_F_EVP_PBE_ALG_ADD_TYPE, ERR_R_MALLOC_FAILURE);
  156. return 0;
  157. }
  158. int EVP_PBE_alg_add(int nid, const EVP_CIPHER *cipher, const EVP_MD *md,
  159. EVP_PBE_KEYGEN *keygen)
  160. {
  161. int cipher_nid, md_nid;
  162. if (cipher)
  163. cipher_nid = EVP_CIPHER_nid(cipher);
  164. else
  165. cipher_nid = -1;
  166. if (md)
  167. md_nid = EVP_MD_type(md);
  168. else
  169. md_nid = -1;
  170. return EVP_PBE_alg_add_type(EVP_PBE_TYPE_OUTER, nid,
  171. cipher_nid, md_nid, keygen);
  172. }
  173. int EVP_PBE_find(int type, int pbe_nid,
  174. int *pcnid, int *pmnid, EVP_PBE_KEYGEN **pkeygen)
  175. {
  176. EVP_PBE_CTL *pbetmp = NULL, pbelu;
  177. int i;
  178. if (pbe_nid == NID_undef)
  179. return 0;
  180. pbelu.pbe_type = type;
  181. pbelu.pbe_nid = pbe_nid;
  182. if (pbe_algs) {
  183. i = sk_EVP_PBE_CTL_find(pbe_algs, &pbelu);
  184. if (i != -1)
  185. pbetmp = sk_EVP_PBE_CTL_value(pbe_algs, i);
  186. }
  187. if (pbetmp == NULL) {
  188. pbetmp = OBJ_bsearch_pbe2(&pbelu, builtin_pbe, OSSL_NELEM(builtin_pbe));
  189. }
  190. if (pbetmp == NULL)
  191. return 0;
  192. if (pcnid)
  193. *pcnid = pbetmp->cipher_nid;
  194. if (pmnid)
  195. *pmnid = pbetmp->md_nid;
  196. if (pkeygen)
  197. *pkeygen = pbetmp->keygen;
  198. return 1;
  199. }
  200. static void free_evp_pbe_ctl(EVP_PBE_CTL *pbe)
  201. {
  202. OPENSSL_free(pbe);
  203. }
  204. void EVP_PBE_cleanup(void)
  205. {
  206. sk_EVP_PBE_CTL_pop_free(pbe_algs, free_evp_pbe_ctl);
  207. pbe_algs = NULL;
  208. }
  209. int EVP_PBE_get(int *ptype, int *ppbe_nid, size_t num)
  210. {
  211. const EVP_PBE_CTL *tpbe;
  212. if (num >= OSSL_NELEM(builtin_pbe))
  213. return 0;
  214. tpbe = builtin_pbe + num;
  215. if (ptype)
  216. *ptype = tpbe->pbe_type;
  217. if (ppbe_nid)
  218. *ppbe_nid = tpbe->pbe_nid;
  219. return 1;
  220. }