base64_test.c 7.0 KB

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  1. /* LibTomCrypt, modular cryptographic library -- Tom St Denis */
  2. /* SPDX-License-Identifier: Unlicense */
  3. #include <tomcrypt_test.h>
  4. #if defined(LTC_BASE64) || defined(LTC_BASE64_URL)
  5. enum { insane = 0, strict = 1, relaxed = 2, invalid = 666 };
  6. int base64_test(void)
  7. {
  8. unsigned char in[64], tmp[64];
  9. char out[256];
  10. unsigned long x, l1, l2, slen1;
  11. const unsigned char special_case[] = {
  12. 0xbe, 0xe8, 0x92, 0x3c, 0xa2, 0x25, 0xf0, 0xf8,
  13. 0x91, 0xe4, 0xef, 0xab, 0x0b, 0x8c, 0xfd, 0xff,
  14. 0x14, 0xd0, 0x29, 0x9d, 0x00 };
  15. #if defined(LTC_BASE64)
  16. /*
  17. TEST CASES SOURCE:
  18. Network Working Group S. Josefsson
  19. Request for Comments: 4648 SJD
  20. Obsoletes: 3548 October 2006
  21. Category: Standards Track
  22. */
  23. const struct {
  24. const char* s;
  25. const char* b64;
  26. } cases[] = {
  27. {"", "" },
  28. {"f", "Zg==" },
  29. {"fo", "Zm8=" },
  30. {"foo", "Zm9v" },
  31. {"foob", "Zm9vYg==" },
  32. {"fooba", "Zm9vYmE=" },
  33. {"foobar", "Zm9vYmFy"},
  34. {(char*)special_case,"vuiSPKIl8PiR5O+rC4z9/xTQKZ0="}
  35. };
  36. #endif
  37. #ifdef LTC_BASE64_URL
  38. const struct {
  39. const char* s;
  40. int flag;
  41. } url_cases[] = {
  42. {"vuiSPKIl8PiR5O-rC4z9_xTQKZ0", strict}, /* 0 */
  43. {"vuiSPKIl8PiR5O-rC4z9_xTQKZ0=", strict},
  44. {"vuiS*PKIl8P*iR5O-rC4*z9_xTQKZ0", insane},
  45. {"vuiS*PKIl8P*iR5O-rC4*z9_xTQKZ0=", insane},
  46. {"vuiS*PKIl8P*iR5O-rC4*z9_xTQKZ0==", insane},
  47. {"vuiS*PKIl8P*iR5O-rC4*z9_xTQKZ0===", insane}, /* 5 */
  48. {"vuiS*PKIl8P*iR5O-rC4*z9_xTQKZ0====", insane},
  49. {"vuiS*=PKIl8P*iR5O-rC4*z9_xTQKZ0=", insane},
  50. {"vuiS*==PKIl8P*iR5O-rC4*z9_xTQKZ0=", insane},
  51. {"vuiS*==\xffPKIl8P*iR5O-rC4*z9_xTQKZ0=", insane},
  52. {"vuiS PKIl8P\niR5O-rC4\tz9_xTQKZ0", relaxed}, /* 10 */
  53. {"vuiS PKIl8P\niR5O-rC4\tz9_xTQKZ0=", relaxed},
  54. {"vuiS PKIl8P\niR5O-rC4\tz9_xTQKZ0==", relaxed},
  55. {"vuiS PKIl8P\niR5O-rC4\tz9_xTQKZ0===", relaxed},
  56. {"vuiS PKIl8P\niR5O-rC4\tz9_xTQKZ0====", relaxed},
  57. {"vuiS\rPKIl8P\niR5O-rC4\tz9_xTQKZ0=", relaxed}, /* 15 */
  58. {"vuiS\rPKIl8P\niR5O-rC4\tz9_xTQKZ0= = =\x00", relaxed},
  59. {"\nvuiS\rPKIl8P\niR5O-rC4\tz9_xTQKZ0=\n", relaxed},
  60. {"vuiSPKIl8PiR5O-rC4z9_xTQK", invalid},
  61. };
  62. for (x = 0; x < sizeof(url_cases)/sizeof(url_cases[0]); ++x) {
  63. slen1 = XSTRLEN(url_cases[x].s);
  64. l1 = sizeof(tmp);
  65. if(url_cases[x].flag == strict) {
  66. DO(base64url_strict_decode(url_cases[x].s, slen1, tmp, &l1));
  67. DO(do_compare_testvector(tmp, l1, special_case, sizeof(special_case) - 1, "base64url_strict_decode", x));
  68. DO(base64url_sane_decode(url_cases[x].s, slen1, tmp, &l1));
  69. DO(do_compare_testvector(tmp, l1, special_case, sizeof(special_case) - 1, "base64url_sane_decode/strict", x));
  70. DO(base64url_decode(url_cases[x].s, slen1, tmp, &l1));
  71. DO(do_compare_testvector(tmp, l1, special_case, sizeof(special_case) - 1, "base64url_decode/strict", x));
  72. }
  73. else if(url_cases[x].flag == relaxed) {
  74. DO(base64url_strict_decode(url_cases[x].s, slen1, tmp, &l1) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_FAIL_TESTVECTOR);
  75. DO(base64url_sane_decode(url_cases[x].s, slen1, tmp, &l1));
  76. DO(do_compare_testvector(tmp, l1, special_case, sizeof(special_case) - 1, "base64url_sane_decode/relaxed", x));
  77. DO(base64url_decode(url_cases[x].s, slen1, tmp, &l1));
  78. DO(do_compare_testvector(tmp, l1, special_case, sizeof(special_case) - 1, "base64url_decode/relaxed", x));
  79. }
  80. else if(url_cases[x].flag == insane) {
  81. DO(base64url_strict_decode(url_cases[x].s, slen1, tmp, &l1) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_FAIL_TESTVECTOR);
  82. DO(base64url_sane_decode(url_cases[x].s, slen1, tmp, &l1) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_FAIL_TESTVECTOR);
  83. DO(base64url_decode(url_cases[x].s, slen1, tmp, &l1));
  84. DO(do_compare_testvector(tmp, l1, special_case, sizeof(special_case) - 1, "base64url_decode/insane", x));
  85. }
  86. else { /* invalid */
  87. DO(base64url_strict_decode(url_cases[x].s, slen1, tmp, &l1) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_FAIL_TESTVECTOR);
  88. DO(base64url_sane_decode(url_cases[x].s, slen1, tmp, &l1) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_FAIL_TESTVECTOR);
  89. DO(base64url_decode(url_cases[x].s, slen1, tmp, &l1) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_FAIL_TESTVECTOR);
  90. }
  91. l2 = sizeof(out);
  92. if(x == 0) {
  93. DO(base64url_encode(tmp, l1, out, &l2));
  94. DO(do_compare_testvector(out, l2, url_cases[x].s, XSTRLEN(url_cases[x].s), "base64url_encode", x));
  95. }
  96. if(x == 1) {
  97. DO(base64url_strict_encode(tmp, l1, out, &l2));
  98. DO(do_compare_testvector(out, l2, url_cases[x].s, XSTRLEN(url_cases[x].s), "base64url_strict_encode", x));
  99. }
  100. }
  101. #endif
  102. #if defined(LTC_BASE64)
  103. for (x = 0; x < sizeof(cases)/sizeof(cases[0]); ++x) {
  104. memset(out, 0, sizeof(out));
  105. memset(tmp, 0, sizeof(tmp));
  106. slen1 = XSTRLEN(cases[x].s);
  107. l1 = sizeof(out);
  108. DO(base64_encode((unsigned char*)cases[x].s, slen1, out, &l1));
  109. DO(do_compare_testvector(out, l1, cases[x].b64, XSTRLEN(cases[x].b64), "base64_encode", x));
  110. l2 = sizeof(tmp);
  111. DO(base64_strict_decode(out, l1, tmp, &l2));
  112. DO(do_compare_testvector(tmp, l2, cases[x].s, slen1, "base64_strict_decode", x));
  113. DO(base64_sane_decode(out, l1, tmp, &l2));
  114. DO(do_compare_testvector(tmp, l2, cases[x].s, slen1, "base64_sane_decode", x));
  115. DO(base64_decode(out, l1, tmp, &l2));
  116. DO(do_compare_testvector(tmp, l2, cases[x].s, slen1, "base64_decode", x));
  117. }
  118. for (x = 0; x < 64; x++) {
  119. yarrow_read(in, x, &yarrow_prng);
  120. l1 = sizeof(out);
  121. DO(base64_encode(in, x, out, &l1));
  122. l2 = sizeof(tmp);
  123. DO(base64_decode(out, l1, tmp, &l2));
  124. DO(do_compare_testvector(tmp, x, in, x, "random base64", x));
  125. }
  126. x--;
  127. memmove(&out[11], &out[10], l1 - 10);
  128. l1++;
  129. l2 = sizeof(tmp);
  130. out[10] = 0;
  131. DO(base64_decode(out, l1, tmp, &l2));
  132. DO(compare_testvector(tmp, l2, in, l2, "insane base64 decoding (NUL)", -1));
  133. DO(base64_sane_decode(out, l1, tmp, &l2) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_INVALID_PACKET);
  134. DO(base64_strict_decode(out, l1, tmp, &l2) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_INVALID_PACKET);
  135. out[10] = 9; /* tab */
  136. DO(base64_decode(out, l1, tmp, &l2));
  137. DO(compare_testvector(tmp, l2, in, l2, "insane base64 decoding (TAB)", -1));
  138. DO(base64_sane_decode(out, l1, tmp, &l2));
  139. DO(compare_testvector(tmp, l2, in, l2, "relaxed base64 decoding (TAB)", -1));
  140. DO(base64_strict_decode(out, l1, tmp, &l2) == CRYPT_INVALID_PACKET ? CRYPT_OK : CRYPT_INVALID_PACKET);
  141. #endif
  142. return 0;
  143. }
  144. #endif