AES.cpp 16 KB

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  1. /*
  2. * Copyright (c) 2020, Ali Mohammad Pur <mpfard@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/StringBuilder.h>
  7. #include <LibCrypto/Cipher/AES.h>
  8. #include <LibCrypto/Cipher/AESTables.h>
  9. namespace Crypto {
  10. namespace Cipher {
  11. template<typename T>
  12. constexpr u32 get_key(T pt)
  13. {
  14. return ((u32)(pt)[0] << 24) ^ ((u32)(pt)[1] << 16) ^ ((u32)(pt)[2] << 8) ^ ((u32)(pt)[3]);
  15. }
  16. constexpr void swap_keys(u32* keys, size_t i, size_t j)
  17. {
  18. u32 temp = keys[i];
  19. keys[i] = keys[j];
  20. keys[j] = temp;
  21. }
  22. #ifndef KERNEL
  23. DeprecatedString AESCipherBlock::to_deprecated_string() const
  24. {
  25. StringBuilder builder;
  26. for (auto value : m_data)
  27. builder.appendff("{:02x}", value);
  28. return builder.to_deprecated_string();
  29. }
  30. DeprecatedString AESCipherKey::to_deprecated_string() const
  31. {
  32. StringBuilder builder;
  33. for (size_t i = 0; i < (rounds() + 1) * 4; ++i)
  34. builder.appendff("{:02x}", m_rd_keys[i]);
  35. return builder.to_deprecated_string();
  36. }
  37. #endif
  38. void AESCipherKey::expand_encrypt_key(ReadonlyBytes user_key, size_t bits)
  39. {
  40. u32* round_key;
  41. u32 temp;
  42. size_t i { 0 };
  43. VERIFY(!user_key.is_null());
  44. VERIFY(is_valid_key_size(bits));
  45. VERIFY(user_key.size() == bits / 8);
  46. round_key = round_keys();
  47. if (bits == 128) {
  48. m_rounds = 10;
  49. } else if (bits == 192) {
  50. m_rounds = 12;
  51. } else {
  52. m_rounds = 14;
  53. }
  54. round_key[0] = get_key(user_key.data());
  55. round_key[1] = get_key(user_key.data() + 4);
  56. round_key[2] = get_key(user_key.data() + 8);
  57. round_key[3] = get_key(user_key.data() + 12);
  58. if (bits == 128) {
  59. for (;;) {
  60. temp = round_key[3];
  61. // clang-format off
  62. round_key[4] = round_key[0] ^
  63. (AESTables::Encode2[(temp >> 16) & 0xff] & 0xff000000) ^
  64. (AESTables::Encode3[(temp >> 8) & 0xff] & 0x00ff0000) ^
  65. (AESTables::Encode0[(temp ) & 0xff] & 0x0000ff00) ^
  66. (AESTables::Encode1[(temp >> 24) ] & 0x000000ff) ^ AESTables::RCON[i];
  67. // clang-format on
  68. round_key[5] = round_key[1] ^ round_key[4];
  69. round_key[6] = round_key[2] ^ round_key[5];
  70. round_key[7] = round_key[3] ^ round_key[6];
  71. ++i;
  72. if (i == 10)
  73. break;
  74. round_key += 4;
  75. }
  76. return;
  77. }
  78. round_key[4] = get_key(user_key.data() + 16);
  79. round_key[5] = get_key(user_key.data() + 20);
  80. if (bits == 192) {
  81. for (;;) {
  82. temp = round_key[5];
  83. // clang-format off
  84. round_key[6] = round_key[0] ^
  85. (AESTables::Encode2[(temp >> 16) & 0xff] & 0xff000000) ^
  86. (AESTables::Encode3[(temp >> 8) & 0xff] & 0x00ff0000) ^
  87. (AESTables::Encode0[(temp ) & 0xff] & 0x0000ff00) ^
  88. (AESTables::Encode1[(temp >> 24) ] & 0x000000ff) ^ AESTables::RCON[i];
  89. // clang-format on
  90. round_key[7] = round_key[1] ^ round_key[6];
  91. round_key[8] = round_key[2] ^ round_key[7];
  92. round_key[9] = round_key[3] ^ round_key[8];
  93. ++i;
  94. if (i == 8)
  95. break;
  96. round_key[10] = round_key[4] ^ round_key[9];
  97. round_key[11] = round_key[5] ^ round_key[10];
  98. round_key += 6;
  99. }
  100. return;
  101. }
  102. round_key[6] = get_key(user_key.data() + 24);
  103. round_key[7] = get_key(user_key.data() + 28);
  104. if (true) { // bits == 256
  105. for (;;) {
  106. temp = round_key[7];
  107. // clang-format off
  108. round_key[8] = round_key[0] ^
  109. (AESTables::Encode2[(temp >> 16) & 0xff] & 0xff000000) ^
  110. (AESTables::Encode3[(temp >> 8) & 0xff] & 0x00ff0000) ^
  111. (AESTables::Encode0[(temp ) & 0xff] & 0x0000ff00) ^
  112. (AESTables::Encode1[(temp >> 24) ] & 0x000000ff) ^ AESTables::RCON[i];
  113. // clang-format on
  114. round_key[9] = round_key[1] ^ round_key[8];
  115. round_key[10] = round_key[2] ^ round_key[9];
  116. round_key[11] = round_key[3] ^ round_key[10];
  117. ++i;
  118. if (i == 7)
  119. break;
  120. temp = round_key[11];
  121. // clang-format off
  122. round_key[12] = round_key[4] ^
  123. (AESTables::Encode2[(temp >> 24) ] & 0xff000000) ^
  124. (AESTables::Encode3[(temp >> 16) & 0xff] & 0x00ff0000) ^
  125. (AESTables::Encode0[(temp >> 8) & 0xff] & 0x0000ff00) ^
  126. (AESTables::Encode1[(temp ) & 0xff] & 0x000000ff) ;
  127. // clang-format on
  128. round_key[13] = round_key[5] ^ round_key[12];
  129. round_key[14] = round_key[6] ^ round_key[13];
  130. round_key[15] = round_key[7] ^ round_key[14];
  131. round_key += 8;
  132. }
  133. return;
  134. }
  135. }
  136. void AESCipherKey::expand_decrypt_key(ReadonlyBytes user_key, size_t bits)
  137. {
  138. u32* round_key;
  139. expand_encrypt_key(user_key, bits);
  140. round_key = round_keys();
  141. // reorder round keys
  142. for (size_t i = 0, j = 4 * rounds(); i < j; i += 4, j -= 4) {
  143. swap_keys(round_key, i, j);
  144. swap_keys(round_key, i + 1, j + 1);
  145. swap_keys(round_key, i + 2, j + 2);
  146. swap_keys(round_key, i + 3, j + 3);
  147. }
  148. // apply inverse mix-column to middle rounds
  149. for (size_t i = 1; i < rounds(); ++i) {
  150. round_key += 4;
  151. // clang-format off
  152. round_key[0] =
  153. AESTables::Decode0[AESTables::Encode1[(round_key[0] >> 24) ] & 0xff] ^
  154. AESTables::Decode1[AESTables::Encode1[(round_key[0] >> 16) & 0xff] & 0xff] ^
  155. AESTables::Decode2[AESTables::Encode1[(round_key[0] >> 8) & 0xff] & 0xff] ^
  156. AESTables::Decode3[AESTables::Encode1[(round_key[0] ) & 0xff] & 0xff] ;
  157. round_key[1] =
  158. AESTables::Decode0[AESTables::Encode1[(round_key[1] >> 24) ] & 0xff] ^
  159. AESTables::Decode1[AESTables::Encode1[(round_key[1] >> 16) & 0xff] & 0xff] ^
  160. AESTables::Decode2[AESTables::Encode1[(round_key[1] >> 8) & 0xff] & 0xff] ^
  161. AESTables::Decode3[AESTables::Encode1[(round_key[1] ) & 0xff] & 0xff] ;
  162. round_key[2] =
  163. AESTables::Decode0[AESTables::Encode1[(round_key[2] >> 24) ] & 0xff] ^
  164. AESTables::Decode1[AESTables::Encode1[(round_key[2] >> 16) & 0xff] & 0xff] ^
  165. AESTables::Decode2[AESTables::Encode1[(round_key[2] >> 8) & 0xff] & 0xff] ^
  166. AESTables::Decode3[AESTables::Encode1[(round_key[2] ) & 0xff] & 0xff] ;
  167. round_key[3] =
  168. AESTables::Decode0[AESTables::Encode1[(round_key[3] >> 24) ] & 0xff] ^
  169. AESTables::Decode1[AESTables::Encode1[(round_key[3] >> 16) & 0xff] & 0xff] ^
  170. AESTables::Decode2[AESTables::Encode1[(round_key[3] >> 8) & 0xff] & 0xff] ^
  171. AESTables::Decode3[AESTables::Encode1[(round_key[3] ) & 0xff] & 0xff] ;
  172. // clang-format on
  173. }
  174. }
  175. void AESCipher::encrypt_block(AESCipherBlock const& in, AESCipherBlock& out)
  176. {
  177. u32 s0, s1, s2, s3, t0, t1, t2, t3;
  178. size_t r { 0 };
  179. auto const& dec_key = key();
  180. auto const* round_keys = dec_key.round_keys();
  181. s0 = get_key(in.bytes().offset_pointer(0)) ^ round_keys[0];
  182. s1 = get_key(in.bytes().offset_pointer(4)) ^ round_keys[1];
  183. s2 = get_key(in.bytes().offset_pointer(8)) ^ round_keys[2];
  184. s3 = get_key(in.bytes().offset_pointer(12)) ^ round_keys[3];
  185. r = dec_key.rounds() >> 1;
  186. // apply the first |r - 1| rounds
  187. for (;;) {
  188. // clang-format off
  189. t0 = AESTables::Encode0[(s0 >> 24) ] ^
  190. AESTables::Encode1[(s1 >> 16) & 0xff] ^
  191. AESTables::Encode2[(s2 >> 8) & 0xff] ^
  192. AESTables::Encode3[(s3 ) & 0xff] ^ round_keys[4];
  193. t1 = AESTables::Encode0[(s1 >> 24) ] ^
  194. AESTables::Encode1[(s2 >> 16) & 0xff] ^
  195. AESTables::Encode2[(s3 >> 8) & 0xff] ^
  196. AESTables::Encode3[(s0 ) & 0xff] ^ round_keys[5];
  197. t2 = AESTables::Encode0[(s2 >> 24) ] ^
  198. AESTables::Encode1[(s3 >> 16) & 0xff] ^
  199. AESTables::Encode2[(s0 >> 8) & 0xff] ^
  200. AESTables::Encode3[(s1 ) & 0xff] ^ round_keys[6];
  201. t3 = AESTables::Encode0[(s3 >> 24) ] ^
  202. AESTables::Encode1[(s0 >> 16) & 0xff] ^
  203. AESTables::Encode2[(s1 >> 8) & 0xff] ^
  204. AESTables::Encode3[(s2 ) & 0xff] ^ round_keys[7];
  205. // clang-format on
  206. round_keys += 8;
  207. --r;
  208. if (r == 0)
  209. break;
  210. // clang-format off
  211. s0 = AESTables::Encode0[(t0 >> 24) ] ^
  212. AESTables::Encode1[(t1 >> 16) & 0xff] ^
  213. AESTables::Encode2[(t2 >> 8) & 0xff] ^
  214. AESTables::Encode3[(t3 ) & 0xff] ^ round_keys[0];
  215. s1 = AESTables::Encode0[(t1 >> 24) ] ^
  216. AESTables::Encode1[(t2 >> 16) & 0xff] ^
  217. AESTables::Encode2[(t3 >> 8) & 0xff] ^
  218. AESTables::Encode3[(t0 ) & 0xff] ^ round_keys[1];
  219. s2 = AESTables::Encode0[(t2 >> 24) ] ^
  220. AESTables::Encode1[(t3 >> 16) & 0xff] ^
  221. AESTables::Encode2[(t0 >> 8) & 0xff] ^
  222. AESTables::Encode3[(t1 ) & 0xff] ^ round_keys[2];
  223. s3 = AESTables::Encode0[(t3 >> 24) ] ^
  224. AESTables::Encode1[(t0 >> 16) & 0xff] ^
  225. AESTables::Encode2[(t1 >> 8) & 0xff] ^
  226. AESTables::Encode3[(t2 ) & 0xff] ^ round_keys[3];
  227. // clang-format on
  228. }
  229. // apply the last round and put the encrypted data into out
  230. // clang-format off
  231. s0 = (AESTables::Encode2[(t0 >> 24) ] & 0xff000000) ^
  232. (AESTables::Encode3[(t1 >> 16) & 0xff] & 0x00ff0000) ^
  233. (AESTables::Encode0[(t2 >> 8) & 0xff] & 0x0000ff00) ^
  234. (AESTables::Encode1[(t3 ) & 0xff] & 0x000000ff) ^ round_keys[0];
  235. out.put(0, s0);
  236. s1 = (AESTables::Encode2[(t1 >> 24) ] & 0xff000000) ^
  237. (AESTables::Encode3[(t2 >> 16) & 0xff] & 0x00ff0000) ^
  238. (AESTables::Encode0[(t3 >> 8) & 0xff] & 0x0000ff00) ^
  239. (AESTables::Encode1[(t0 ) & 0xff] & 0x000000ff) ^ round_keys[1];
  240. out.put(4, s1);
  241. s2 = (AESTables::Encode2[(t2 >> 24) ] & 0xff000000) ^
  242. (AESTables::Encode3[(t3 >> 16) & 0xff] & 0x00ff0000) ^
  243. (AESTables::Encode0[(t0 >> 8) & 0xff] & 0x0000ff00) ^
  244. (AESTables::Encode1[(t1 ) & 0xff] & 0x000000ff) ^ round_keys[2];
  245. out.put(8, s2);
  246. s3 = (AESTables::Encode2[(t3 >> 24) ] & 0xff000000) ^
  247. (AESTables::Encode3[(t0 >> 16) & 0xff] & 0x00ff0000) ^
  248. (AESTables::Encode0[(t1 >> 8) & 0xff] & 0x0000ff00) ^
  249. (AESTables::Encode1[(t2 ) & 0xff] & 0x000000ff) ^ round_keys[3];
  250. out.put(12, s3);
  251. // clang-format on
  252. }
  253. void AESCipher::decrypt_block(AESCipherBlock const& in, AESCipherBlock& out)
  254. {
  255. u32 s0, s1, s2, s3, t0, t1, t2, t3;
  256. size_t r { 0 };
  257. auto const& dec_key = key();
  258. auto const* round_keys = dec_key.round_keys();
  259. s0 = get_key(in.bytes().offset_pointer(0)) ^ round_keys[0];
  260. s1 = get_key(in.bytes().offset_pointer(4)) ^ round_keys[1];
  261. s2 = get_key(in.bytes().offset_pointer(8)) ^ round_keys[2];
  262. s3 = get_key(in.bytes().offset_pointer(12)) ^ round_keys[3];
  263. r = dec_key.rounds() >> 1;
  264. // apply the first |r - 1| rounds
  265. for (;;) {
  266. // clang-format off
  267. t0 = AESTables::Decode0[(s0 >> 24) ] ^
  268. AESTables::Decode1[(s3 >> 16) & 0xff] ^
  269. AESTables::Decode2[(s2 >> 8) & 0xff] ^
  270. AESTables::Decode3[(s1 ) & 0xff] ^ round_keys[4];
  271. t1 = AESTables::Decode0[(s1 >> 24) ] ^
  272. AESTables::Decode1[(s0 >> 16) & 0xff] ^
  273. AESTables::Decode2[(s3 >> 8) & 0xff] ^
  274. AESTables::Decode3[(s2 ) & 0xff] ^ round_keys[5];
  275. t2 = AESTables::Decode0[(s2 >> 24) ] ^
  276. AESTables::Decode1[(s1 >> 16) & 0xff] ^
  277. AESTables::Decode2[(s0 >> 8) & 0xff] ^
  278. AESTables::Decode3[(s3 ) & 0xff] ^ round_keys[6];
  279. t3 = AESTables::Decode0[(s3 >> 24) ] ^
  280. AESTables::Decode1[(s2 >> 16) & 0xff] ^
  281. AESTables::Decode2[(s1 >> 8) & 0xff] ^
  282. AESTables::Decode3[(s0 ) & 0xff] ^ round_keys[7];
  283. // clang-format on
  284. round_keys += 8;
  285. --r;
  286. if (r == 0)
  287. break;
  288. // clang-format off
  289. s0 = AESTables::Decode0[(t0 >> 24) ] ^
  290. AESTables::Decode1[(t3 >> 16) & 0xff] ^
  291. AESTables::Decode2[(t2 >> 8) & 0xff] ^
  292. AESTables::Decode3[(t1 ) & 0xff] ^ round_keys[0];
  293. s1 = AESTables::Decode0[(t1 >> 24) ] ^
  294. AESTables::Decode1[(t0 >> 16) & 0xff] ^
  295. AESTables::Decode2[(t3 >> 8) & 0xff] ^
  296. AESTables::Decode3[(t2 ) & 0xff] ^ round_keys[1];
  297. s2 = AESTables::Decode0[(t2 >> 24) ] ^
  298. AESTables::Decode1[(t1 >> 16) & 0xff] ^
  299. AESTables::Decode2[(t0 >> 8) & 0xff] ^
  300. AESTables::Decode3[(t3 ) & 0xff] ^ round_keys[2];
  301. s3 = AESTables::Decode0[(t3 >> 24) ] ^
  302. AESTables::Decode1[(t2 >> 16) & 0xff] ^
  303. AESTables::Decode2[(t1 >> 8) & 0xff] ^
  304. AESTables::Decode3[(t0 ) & 0xff] ^ round_keys[3];
  305. // clang-format on
  306. }
  307. // apply the last round and put the decrypted data into out
  308. // clang-format off
  309. s0 = ((u32)AESTables::Decode4[(t0 >> 24) ] << 24) ^
  310. ((u32)AESTables::Decode4[(t3 >> 16) & 0xff] << 16) ^
  311. ((u32)AESTables::Decode4[(t2 >> 8) & 0xff] << 8) ^
  312. ((u32)AESTables::Decode4[(t1 ) & 0xff] ) ^ round_keys[0];
  313. out.put(0, s0);
  314. s1 = ((u32)AESTables::Decode4[(t1 >> 24) ] << 24) ^
  315. ((u32)AESTables::Decode4[(t0 >> 16) & 0xff] << 16) ^
  316. ((u32)AESTables::Decode4[(t3 >> 8) & 0xff] << 8) ^
  317. ((u32)AESTables::Decode4[(t2 ) & 0xff] ) ^ round_keys[1];
  318. out.put(4, s1);
  319. s2 = ((u32)AESTables::Decode4[(t2 >> 24) ] << 24) ^
  320. ((u32)AESTables::Decode4[(t1 >> 16) & 0xff] << 16) ^
  321. ((u32)AESTables::Decode4[(t0 >> 8) & 0xff] << 8) ^
  322. ((u32)AESTables::Decode4[(t3 ) & 0xff] ) ^ round_keys[2];
  323. out.put(8, s2);
  324. s3 = ((u32)AESTables::Decode4[(t3 >> 24) ] << 24) ^
  325. ((u32)AESTables::Decode4[(t2 >> 16) & 0xff] << 16) ^
  326. ((u32)AESTables::Decode4[(t1 >> 8) & 0xff] << 8) ^
  327. ((u32)AESTables::Decode4[(t0 ) & 0xff] ) ^ round_keys[3];
  328. out.put(12, s3);
  329. // clang-format on
  330. }
  331. void AESCipherBlock::overwrite(ReadonlyBytes bytes)
  332. {
  333. auto data = bytes.data();
  334. auto length = bytes.size();
  335. VERIFY(length <= this->data_size());
  336. this->bytes().overwrite(0, data, length);
  337. if (length < this->data_size()) {
  338. switch (padding_mode()) {
  339. case PaddingMode::Null:
  340. // fill with zeros
  341. __builtin_memset(m_data + length, 0, this->data_size() - length);
  342. break;
  343. case PaddingMode::CMS:
  344. // fill with the length of the padding bytes
  345. __builtin_memset(m_data + length, this->data_size() - length, this->data_size() - length);
  346. break;
  347. case PaddingMode::RFC5246:
  348. // fill with the length of the padding bytes minus one
  349. __builtin_memset(m_data + length, this->data_size() - length - 1, this->data_size() - length);
  350. break;
  351. default:
  352. // FIXME: We should handle the rest of the common padding modes
  353. VERIFY_NOT_REACHED();
  354. break;
  355. }
  356. }
  357. }
  358. }
  359. }