annotate demos/multi.c @ 196:704bb050935f libtomcrypt

makefile fixup for Dropbear
author Matt Johnston <matt@ucc.asn.au>
date Mon, 09 May 2005 12:00:08 +0000
parents 1c15b283127b
children 39d5d58461d6
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1 /* test the multi helpers... */
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2 #include <tomcrypt.h>
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3
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4 int main(void)
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5 {
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6 unsigned char key[16], buf[2][MAXBLOCKSIZE];
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7 unsigned long len, len2;
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8
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9
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10 /* register algos */
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11 register_hash(&sha256_desc);
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12 register_cipher(&aes_desc);
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13
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14 /* HASH testing */
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15 len = sizeof(buf[0]);
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16 hash_memory(find_hash("sha256"), "hello", 5, buf[0], &len);
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17 len2 = sizeof(buf[0]);
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18 hash_memory_multi(find_hash("sha256"), buf[1], &len2, "hello", 5, NULL);
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19 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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20 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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21 return EXIT_FAILURE;
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22 }
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23 len2 = sizeof(buf[0]);
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24 hash_memory_multi(find_hash("sha256"), buf[1], &len2, "he", 2, "llo", 3, NULL);
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25 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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26 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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27 return EXIT_FAILURE;
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28 }
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29 len2 = sizeof(buf[0]);
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30 hash_memory_multi(find_hash("sha256"), buf[1], &len2, "h", 1, "e", 1, "l", 1, "l", 1, "o", 1, NULL);
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31 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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32 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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33 return EXIT_FAILURE;
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34 }
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35
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36 /* HMAC */
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37 len = sizeof(buf[0]);
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38 hmac_memory(find_hash("sha256"), key, 16, "hello", 5, buf[0], &len);
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39 len2 = sizeof(buf[0]);
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40 hmac_memory_multi(find_hash("sha256"), key, 16, buf[1], &len2, "hello", 5, NULL);
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41 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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42 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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43 return EXIT_FAILURE;
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44 }
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45 len2 = sizeof(buf[0]);
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46 hmac_memory_multi(find_hash("sha256"), key, 16, buf[1], &len2, "he", 2, "llo", 3, NULL);
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47 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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48 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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49 return EXIT_FAILURE;
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50 }
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51 len2 = sizeof(buf[0]);
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52 hmac_memory_multi(find_hash("sha256"), key, 16, buf[1], &len2, "h", 1, "e", 1, "l", 1, "l", 1, "o", 1, NULL);
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53 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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54 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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55 return EXIT_FAILURE;
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56 }
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57
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58 /* OMAC */
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59 len = sizeof(buf[0]);
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60 omac_memory(find_cipher("aes"), key, 16, "hello", 5, buf[0], &len);
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61 len2 = sizeof(buf[0]);
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62 omac_memory_multi(find_cipher("aes"), key, 16, buf[1], &len2, "hello", 5, NULL);
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63 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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64 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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65 return EXIT_FAILURE;
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66 }
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67 len2 = sizeof(buf[0]);
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68 omac_memory_multi(find_cipher("aes"), key, 16, buf[1], &len2, "he", 2, "llo", 3, NULL);
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69 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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70 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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71 return EXIT_FAILURE;
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72 }
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73 len2 = sizeof(buf[0]);
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74 omac_memory_multi(find_cipher("aes"), key, 16, buf[1], &len2, "h", 1, "e", 1, "l", 1, "l", 1, "o", 1, NULL);
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75 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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76 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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77 return EXIT_FAILURE;
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78 }
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79
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80 /* PMAC */
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81 len = sizeof(buf[0]);
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82 pmac_memory(find_cipher("aes"), key, 16, "hello", 5, buf[0], &len);
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83 len2 = sizeof(buf[0]);
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84 pmac_memory_multi(find_cipher("aes"), key, 16, buf[1], &len2, "hello", 5, NULL);
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85 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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86 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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87 return EXIT_FAILURE;
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88 }
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89 len2 = sizeof(buf[0]);
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90 pmac_memory_multi(find_cipher("aes"), key, 16, buf[1], &len2, "he", 2, "llo", 3, NULL);
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91 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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92 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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93 return EXIT_FAILURE;
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94 }
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95 len2 = sizeof(buf[0]);
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96 pmac_memory_multi(find_cipher("aes"), key, 16, buf[1], &len2, "h", 1, "e", 1, "l", 1, "l", 1, "o", 1, NULL);
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97 if (len != len2 || memcmp(buf[0], buf[1], len)) {
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98 printf("Failed: %d %lu %lu\n", __LINE__, len, len2);
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99 return EXIT_FAILURE;
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100 }
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101
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102
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103 printf("All passed\n");
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104 return EXIT_SUCCESS;
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105 }
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106