modes_test.c 2.8 KB

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  1. /* test CFB/OFB/CBC modes */
  2. #include <tomcrypt_test.h>
  3. int modes_test(void)
  4. {
  5. int ret = CRYPT_NOP;
  6. #ifdef LTC_CBC_MODE
  7. symmetric_CBC cbc;
  8. #endif
  9. #ifdef LTC_CFB_MODE
  10. symmetric_CFB cfb;
  11. #endif
  12. #ifdef LTC_OFB_MODE
  13. symmetric_OFB ofb;
  14. #endif
  15. #if defined(LTC_CBC_MODE) || defined(LTC_CFB_MODE) || defined(LTC_OFB_MODE)
  16. unsigned char pt[64], ct[64], tmp[64], key[16], iv[16], iv2[16];
  17. int cipher_idx;
  18. unsigned long l;
  19. /* make a random pt, key and iv */
  20. yarrow_read(pt, 64, &yarrow_prng);
  21. yarrow_read(key, 16, &yarrow_prng);
  22. yarrow_read(iv, 16, &yarrow_prng);
  23. /* get idx of AES handy */
  24. cipher_idx = find_cipher("aes");
  25. if (cipher_idx == -1) {
  26. fprintf(stderr, "test requires AES");
  27. return 1;
  28. }
  29. #endif
  30. #ifdef LTC_F8_MODE
  31. DO(ret = f8_test_mode());
  32. #endif
  33. #ifdef LTC_LRW_MODE
  34. DO(ret = lrw_test());
  35. #endif
  36. #ifdef LTC_CBC_MODE
  37. /* test CBC mode */
  38. /* encode the block */
  39. DO(ret = cbc_start(cipher_idx, iv, key, 16, 0, &cbc));
  40. l = sizeof(iv2);
  41. DO(ret = cbc_getiv(iv2, &l, &cbc));
  42. if (l != 16 || memcmp(iv2, iv, 16)) {
  43. fprintf(stderr, "cbc_getiv failed");
  44. return 1;
  45. }
  46. DO(ret = cbc_encrypt(pt, ct, 64, &cbc));
  47. /* decode the block */
  48. DO(ret = cbc_setiv(iv2, l, &cbc));
  49. zeromem(tmp, sizeof(tmp));
  50. DO(ret = cbc_decrypt(ct, tmp, 64, &cbc));
  51. if (memcmp(tmp, pt, 64) != 0) {
  52. fprintf(stderr, "CBC failed");
  53. return 1;
  54. }
  55. #endif
  56. #ifdef LTC_CFB_MODE
  57. /* test CFB mode */
  58. /* encode the block */
  59. DO(ret = cfb_start(cipher_idx, iv, key, 16, 0, &cfb));
  60. l = sizeof(iv2);
  61. DO(ret = cfb_getiv(iv2, &l, &cfb));
  62. /* note we don't memcmp iv2/iv since cfb_start processes the IV for the first block */
  63. if (l != 16) {
  64. fprintf(stderr, "cfb_getiv failed");
  65. return 1;
  66. }
  67. DO(ret = cfb_encrypt(pt, ct, 64, &cfb));
  68. /* decode the block */
  69. DO(ret = cfb_setiv(iv, l, &cfb));
  70. zeromem(tmp, sizeof(tmp));
  71. DO(ret = cfb_decrypt(ct, tmp, 64, &cfb));
  72. if (memcmp(tmp, pt, 64) != 0) {
  73. fprintf(stderr, "CFB failed");
  74. return 1;
  75. }
  76. #endif
  77. #ifdef LTC_OFB_MODE
  78. /* test OFB mode */
  79. /* encode the block */
  80. DO(ret = ofb_start(cipher_idx, iv, key, 16, 0, &ofb));
  81. l = sizeof(iv2);
  82. DO(ret = ofb_getiv(iv2, &l, &ofb));
  83. if (l != 16 || memcmp(iv2, iv, 16)) {
  84. fprintf(stderr, "ofb_getiv failed");
  85. return 1;
  86. }
  87. DO(ret = ofb_encrypt(pt, ct, 64, &ofb));
  88. /* decode the block */
  89. DO(ret = ofb_setiv(iv2, l, &ofb));
  90. zeromem(tmp, sizeof(tmp));
  91. DO(ret = ofb_decrypt(ct, tmp, 64, &ofb));
  92. if (memcmp(tmp, pt, 64) != 0) {
  93. fprintf(stderr, "OFB failed");
  94. return 1;
  95. }
  96. #endif
  97. #if defined(LTC_CTR_MODE) && defined(LTC_RIJNDAEL)
  98. DO(ret = ctr_test());
  99. #endif
  100. #ifdef LTC_XTS_MODE
  101. DO(ret = xts_test());
  102. #endif
  103. return 0;
  104. }
  105. /* $Source$ */
  106. /* $Revision$ */
  107. /* $Date$ */