Mercurial > dropbear
annotate libtomcrypt/testprof/modes_test.c @ 1659:d32bcb5c557d
Add Ed25519 support (#91)
* Add support for Ed25519 as a public key type
Ed25519 is a elliptic curve signature scheme that offers
better security than ECDSA and DSA and good performance. It may be
used for both user and host keys.
OpenSSH key import and fuzzer are not supported yet.
Initially inspired by Peter Szabo.
* Add curve25519 and ed25519 fuzzers
* Add import and export of Ed25519 keys
author | Vladislav Grishenko <themiron@users.noreply.github.com> |
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date | Wed, 11 Mar 2020 21:09:45 +0500 |
parents | f849a5ca2efc |
children |
rev | line source |
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1 /* test CFB/OFB/CBC modes */ |
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2 #include <tomcrypt_test.h> |
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3 |
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4 int modes_test(void) |
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5 { |
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6 unsigned char pt[64], ct[64], tmp[64], key[16], iv[16], iv2[16]; |
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7 int cipher_idx; |
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8 #ifdef LTC_CBC_MODE |
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9 symmetric_CBC cbc; |
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10 #endif |
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11 #ifdef LTC_CFB_MODE |
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12 symmetric_CFB cfb; |
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13 #endif |
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14 #ifdef LTC_OFB_MODE |
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15 symmetric_OFB ofb; |
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16 #endif |
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17 unsigned long l; |
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18 |
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19 /* make a random pt, key and iv */ |
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20 yarrow_read(pt, 64, &yarrow_prng); |
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21 yarrow_read(key, 16, &yarrow_prng); |
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22 yarrow_read(iv, 16, &yarrow_prng); |
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23 |
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24 /* get idx of AES handy */ |
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25 cipher_idx = find_cipher("aes"); |
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26 if (cipher_idx == -1) { |
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27 fprintf(stderr, "test requires AES"); |
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28 return 1; |
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29 } |
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30 |
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31 #ifdef LTC_F8_MODE |
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32 DO(f8_test_mode()); |
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33 #endif |
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34 |
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35 #ifdef LTC_LRW_MODE |
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36 DO(lrw_test()); |
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37 #endif |
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38 |
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39 #ifdef LTC_CBC_MODE |
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40 /* test CBC mode */ |
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41 /* encode the block */ |
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42 DO(cbc_start(cipher_idx, iv, key, 16, 0, &cbc)); |
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43 l = sizeof(iv2); |
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44 DO(cbc_getiv(iv2, &l, &cbc)); |
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45 if (l != 16 || memcmp(iv2, iv, 16)) { |
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46 fprintf(stderr, "cbc_getiv failed"); |
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47 return 1; |
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48 } |
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49 DO(cbc_encrypt(pt, ct, 64, &cbc)); |
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50 |
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51 /* decode the block */ |
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52 DO(cbc_setiv(iv2, l, &cbc)); |
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53 zeromem(tmp, sizeof(tmp)); |
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54 DO(cbc_decrypt(ct, tmp, 64, &cbc)); |
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55 if (memcmp(tmp, pt, 64) != 0) { |
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56 fprintf(stderr, "CBC failed"); |
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57 return 1; |
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58 } |
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59 #endif |
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60 |
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61 #ifdef LTC_CFB_MODE |
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62 /* test CFB mode */ |
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63 /* encode the block */ |
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64 DO(cfb_start(cipher_idx, iv, key, 16, 0, &cfb)); |
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65 l = sizeof(iv2); |
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66 DO(cfb_getiv(iv2, &l, &cfb)); |
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67 /* note we don't memcmp iv2/iv since cfb_start processes the IV for the first block */ |
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68 if (l != 16) { |
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69 fprintf(stderr, "cfb_getiv failed"); |
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70 return 1; |
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71 } |
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72 DO(cfb_encrypt(pt, ct, 64, &cfb)); |
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73 |
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74 /* decode the block */ |
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75 DO(cfb_setiv(iv, l, &cfb)); |
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76 zeromem(tmp, sizeof(tmp)); |
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77 DO(cfb_decrypt(ct, tmp, 64, &cfb)); |
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78 if (memcmp(tmp, pt, 64) != 0) { |
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79 fprintf(stderr, "CFB failed"); |
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80 return 1; |
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81 } |
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82 #endif |
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83 |
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84 #ifdef LTC_OFB_MODE |
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85 /* test OFB mode */ |
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86 /* encode the block */ |
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87 DO(ofb_start(cipher_idx, iv, key, 16, 0, &ofb)); |
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88 l = sizeof(iv2); |
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89 DO(ofb_getiv(iv2, &l, &ofb)); |
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90 if (l != 16 || memcmp(iv2, iv, 16)) { |
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91 fprintf(stderr, "ofb_getiv failed"); |
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92 return 1; |
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93 } |
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94 DO(ofb_encrypt(pt, ct, 64, &ofb)); |
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95 |
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96 /* decode the block */ |
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97 DO(ofb_setiv(iv2, l, &ofb)); |
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98 zeromem(tmp, sizeof(tmp)); |
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99 DO(ofb_decrypt(ct, tmp, 64, &ofb)); |
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100 if (memcmp(tmp, pt, 64) != 0) { |
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101 fprintf(stderr, "OFB failed"); |
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102 return 1; |
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103 } |
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104 #endif |
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105 |
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106 #ifdef LTC_CTR_MODE |
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107 DO(ctr_test()); |
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108 #endif |
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109 |
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110 #ifdef LTC_XTS_MODE |
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111 DO(xts_test()); |
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112 #endif |
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113 |
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114 return 0; |
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115 } |
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116 |
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117 /* $Source$ */ |
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118 /* $Revision$ */ |
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119 /* $Date$ */ |