Mercurial > dropbear
annotate libtomcrypt/testprof/pkcs_1_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 |
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rev | line source |
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1 #include <tomcrypt_test.h> |
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2 |
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3 #ifdef LTC_PKCS_1 |
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4 |
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5 int pkcs_1_test(void) |
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6 { |
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7 unsigned char buf[3][128]; |
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8 int res1, res2, res3, prng_idx, hash_idx, err; |
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9 unsigned long x, y, l1, l2, l3, i1, i2, lparamlen, saltlen, modlen; |
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10 static const unsigned char lparam[] = { 1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16 }; |
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11 |
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12 /* get hash/prng */ |
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13 hash_idx = find_hash("sha1"); |
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14 prng_idx = find_prng("yarrow"); |
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15 |
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16 if (hash_idx == -1 || prng_idx == -1) { |
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17 fprintf(stderr, "pkcs_1 tests require sha1/yarrow"); |
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18 return 1; |
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19 } |
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20 |
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21 srand(time(NULL)); |
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22 /* do many tests */ |
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23 for (x = 0; x < 100; x++) { |
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24 zeromem(buf, sizeof(buf)); |
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25 |
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26 /* make a dummy message (of random length) */ |
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27 l3 = (rand() & 31) + 8; |
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28 for (y = 0; y < l3; y++) buf[0][y] = rand() & 255; |
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29 |
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30 /* pick a random lparam len [0..16] */ |
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31 lparamlen = abs(rand()) % 17; |
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32 |
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33 /* pick a random saltlen 0..16 */ |
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34 saltlen = abs(rand()) % 17; |
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35 |
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36 /* LTC_PKCS #1 v2.0 supports modlens not multiple of 8 */ |
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37 modlen = 800 + (abs(rand()) % 224); |
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38 |
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39 /* encode it */ |
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40 l1 = sizeof(buf[1]); |
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41 DO(pkcs_1_oaep_encode(buf[0], l3, lparam, lparamlen, modlen, &yarrow_prng, prng_idx, hash_idx, buf[1], &l1)); |
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42 |
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43 /* decode it */ |
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44 l2 = sizeof(buf[2]); |
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45 DO(pkcs_1_oaep_decode(buf[1], l1, lparam, lparamlen, modlen, hash_idx, buf[2], &l2, &res1)); |
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46 |
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47 if (res1 != 1 || l2 != l3 || memcmp(buf[2], buf[0], l3) != 0) { |
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48 fprintf(stderr, "Outsize == %lu, should have been %lu, res1 = %d, lparamlen = %lu, msg contents follow.\n", l2, l3, res1, lparamlen); |
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49 fprintf(stderr, "ORIGINAL:\n"); |
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50 for (x = 0; x < l3; x++) { |
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51 fprintf(stderr, "%02x ", buf[0][x]); |
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52 } |
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53 fprintf(stderr, "\nRESULT:\n"); |
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54 for (x = 0; x < l2; x++) { |
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55 fprintf(stderr, "%02x ", buf[2][x]); |
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56 } |
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57 fprintf(stderr, "\n\n"); |
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58 return 1; |
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59 } |
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60 |
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61 /* test PSS */ |
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62 l1 = sizeof(buf[1]); |
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63 DO(pkcs_1_pss_encode(buf[0], l3, saltlen, &yarrow_prng, prng_idx, hash_idx, modlen, buf[1], &l1)); |
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64 DO(pkcs_1_pss_decode(buf[0], l3, buf[1], l1, saltlen, hash_idx, modlen, &res1)); |
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65 |
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66 buf[0][i1 = abs(rand()) % l3] ^= 1; |
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67 DO(pkcs_1_pss_decode(buf[0], l3, buf[1], l1, saltlen, hash_idx, modlen, &res2)); |
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68 |
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69 buf[0][i1] ^= 1; |
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70 buf[1][i2 = abs(rand()) % (l1 - 1)] ^= 1; |
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71 pkcs_1_pss_decode(buf[0], l3, buf[1], l1, saltlen, hash_idx, modlen, &res3); |
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72 if (!(res1 == 1 && res2 == 0 && res3 == 0)) { |
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73 fprintf(stderr, "PSS failed: %d, %d, %d, %lu, %lu\n", res1, res2, res3, l3, saltlen); |
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74 return 1; |
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75 } |
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76 } |
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77 return 0; |
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78 } |
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79 |
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80 #else |
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81 |
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82 int pkcs_1_test(void) |
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83 { |
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84 fprintf(stderr, "NOP"); |
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85 return 0; |
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86 } |
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87 |
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88 #endif |
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89 |
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90 |
1435
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91 /* $Source$ */ |
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92 /* $Revision$ */ |
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93 /* $Date$ */ |