chcr_algo.h 14 KB

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  1. /*
  2. * This file is part of the Chelsio T6 Crypto driver for Linux.
  3. *
  4. * Copyright (c) 2003-2016 Chelsio Communications, Inc. All rights reserved.
  5. *
  6. * This software is available to you under a choice of one of two
  7. * licenses. You may choose to be licensed under the terms of the GNU
  8. * General Public License (GPL) Version 2, available from the file
  9. * COPYING in the main directory of this source tree, or the
  10. * OpenIB.org BSD license below:
  11. *
  12. * Redistribution and use in source and binary forms, with or
  13. * without modification, are permitted provided that the following
  14. * conditions are met:
  15. *
  16. * - Redistributions of source code must retain the above
  17. * copyright notice, this list of conditions and the following
  18. * disclaimer.
  19. *
  20. * - Redistributions in binary form must reproduce the above
  21. * copyright notice, this list of conditions and the following
  22. * disclaimer in the documentation and/or other materials
  23. * provided with the distribution.
  24. *
  25. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  26. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  27. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  28. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  29. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  30. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  31. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  32. * SOFTWARE.
  33. *
  34. */
  35. #ifndef __CHCR_ALGO_H__
  36. #define __CHCR_ALGO_H__
  37. /* Crypto key context */
  38. #define KEY_CONTEXT_CTX_LEN_S 24
  39. #define KEY_CONTEXT_CTX_LEN_M 0xff
  40. #define KEY_CONTEXT_CTX_LEN_V(x) ((x) << KEY_CONTEXT_CTX_LEN_S)
  41. #define KEY_CONTEXT_CTX_LEN_G(x) \
  42. (((x) >> KEY_CONTEXT_CTX_LEN_S) & KEY_CONTEXT_CTX_LEN_M)
  43. #define KEY_CONTEXT_DUAL_CK_S 12
  44. #define KEY_CONTEXT_DUAL_CK_M 0x1
  45. #define KEY_CONTEXT_DUAL_CK_V(x) ((x) << KEY_CONTEXT_DUAL_CK_S)
  46. #define KEY_CONTEXT_DUAL_CK_G(x) \
  47. (((x) >> KEY_CONTEXT_DUAL_CK_S) & KEY_CONTEXT_DUAL_CK_M)
  48. #define KEY_CONTEXT_DUAL_CK_F KEY_CONTEXT_DUAL_CK_V(1U)
  49. #define KEY_CONTEXT_SALT_PRESENT_S 10
  50. #define KEY_CONTEXT_SALT_PRESENT_M 0x1
  51. #define KEY_CONTEXT_SALT_PRESENT_V(x) ((x) << KEY_CONTEXT_SALT_PRESENT_S)
  52. #define KEY_CONTEXT_SALT_PRESENT_G(x) \
  53. (((x) >> KEY_CONTEXT_SALT_PRESENT_S) & \
  54. KEY_CONTEXT_SALT_PRESENT_M)
  55. #define KEY_CONTEXT_SALT_PRESENT_F KEY_CONTEXT_SALT_PRESENT_V(1U)
  56. #define KEY_CONTEXT_VALID_S 0
  57. #define KEY_CONTEXT_VALID_M 0x1
  58. #define KEY_CONTEXT_VALID_V(x) ((x) << KEY_CONTEXT_VALID_S)
  59. #define KEY_CONTEXT_VALID_G(x) \
  60. (((x) >> KEY_CONTEXT_VALID_S) & \
  61. KEY_CONTEXT_VALID_M)
  62. #define KEY_CONTEXT_VALID_F KEY_CONTEXT_VALID_V(1U)
  63. #define KEY_CONTEXT_CK_SIZE_S 6
  64. #define KEY_CONTEXT_CK_SIZE_M 0xf
  65. #define KEY_CONTEXT_CK_SIZE_V(x) ((x) << KEY_CONTEXT_CK_SIZE_S)
  66. #define KEY_CONTEXT_CK_SIZE_G(x) \
  67. (((x) >> KEY_CONTEXT_CK_SIZE_S) & KEY_CONTEXT_CK_SIZE_M)
  68. #define KEY_CONTEXT_MK_SIZE_S 2
  69. #define KEY_CONTEXT_MK_SIZE_M 0xf
  70. #define KEY_CONTEXT_MK_SIZE_V(x) ((x) << KEY_CONTEXT_MK_SIZE_S)
  71. #define KEY_CONTEXT_MK_SIZE_G(x) \
  72. (((x) >> KEY_CONTEXT_MK_SIZE_S) & KEY_CONTEXT_MK_SIZE_M)
  73. #define KEY_CONTEXT_OPAD_PRESENT_S 11
  74. #define KEY_CONTEXT_OPAD_PRESENT_M 0x1
  75. #define KEY_CONTEXT_OPAD_PRESENT_V(x) ((x) << KEY_CONTEXT_OPAD_PRESENT_S)
  76. #define KEY_CONTEXT_OPAD_PRESENT_G(x) \
  77. (((x) >> KEY_CONTEXT_OPAD_PRESENT_S) & \
  78. KEY_CONTEXT_OPAD_PRESENT_M)
  79. #define KEY_CONTEXT_OPAD_PRESENT_F KEY_CONTEXT_OPAD_PRESENT_V(1U)
  80. #define CHCR_HASH_MAX_DIGEST_SIZE 64
  81. #define CHCR_MAX_SHA_DIGEST_SIZE 64
  82. #define IPSEC_TRUNCATED_ICV_SIZE 12
  83. #define TLS_TRUNCATED_HMAC_SIZE 10
  84. #define CBCMAC_DIGEST_SIZE 16
  85. #define MAX_HASH_NAME 20
  86. #define SHA1_INIT_STATE_5X4B 5
  87. #define SHA256_INIT_STATE_8X4B 8
  88. #define SHA512_INIT_STATE_8X8B 8
  89. #define SHA1_INIT_STATE SHA1_INIT_STATE_5X4B
  90. #define SHA224_INIT_STATE SHA256_INIT_STATE_8X4B
  91. #define SHA256_INIT_STATE SHA256_INIT_STATE_8X4B
  92. #define SHA384_INIT_STATE SHA512_INIT_STATE_8X8B
  93. #define SHA512_INIT_STATE SHA512_INIT_STATE_8X8B
  94. #define DUMMY_BYTES 16
  95. #define IPAD_DATA 0x36363636
  96. #define OPAD_DATA 0x5c5c5c5c
  97. #define TRANSHDR_SIZE(kctx_len)\
  98. (sizeof(struct chcr_wr) +\
  99. kctx_len)
  100. #define CIPHER_TRANSHDR_SIZE(kctx_len, sge_pairs) \
  101. (TRANSHDR_SIZE((kctx_len)) + (sge_pairs) +\
  102. sizeof(struct cpl_rx_phys_dsgl))
  103. #define HASH_TRANSHDR_SIZE(kctx_len)\
  104. (TRANSHDR_SIZE(kctx_len) + DUMMY_BYTES)
  105. #define FILL_SEC_CPL_OP_IVINSR(id, len, ofst) \
  106. htonl( \
  107. CPL_TX_SEC_PDU_OPCODE_V(CPL_TX_SEC_PDU) | \
  108. CPL_TX_SEC_PDU_RXCHID_V((id)) | \
  109. CPL_TX_SEC_PDU_ACKFOLLOWS_V(0) | \
  110. CPL_TX_SEC_PDU_ULPTXLPBK_V(1) | \
  111. CPL_TX_SEC_PDU_CPLLEN_V((len)) | \
  112. CPL_TX_SEC_PDU_PLACEHOLDER_V(0) | \
  113. CPL_TX_SEC_PDU_IVINSRTOFST_V((ofst)))
  114. #define FILL_SEC_CPL_CIPHERSTOP_HI(a_start, a_stop, c_start, c_stop_hi) \
  115. htonl( \
  116. CPL_TX_SEC_PDU_AADSTART_V((a_start)) | \
  117. CPL_TX_SEC_PDU_AADSTOP_V((a_stop)) | \
  118. CPL_TX_SEC_PDU_CIPHERSTART_V((c_start)) | \
  119. CPL_TX_SEC_PDU_CIPHERSTOP_HI_V((c_stop_hi)))
  120. #define FILL_SEC_CPL_AUTHINSERT(c_stop_lo, a_start, a_stop, a_inst) \
  121. htonl( \
  122. CPL_TX_SEC_PDU_CIPHERSTOP_LO_V((c_stop_lo)) | \
  123. CPL_TX_SEC_PDU_AUTHSTART_V((a_start)) | \
  124. CPL_TX_SEC_PDU_AUTHSTOP_V((a_stop)) | \
  125. CPL_TX_SEC_PDU_AUTHINSERT_V((a_inst)))
  126. #define FILL_SEC_CPL_SCMD0_SEQNO(ctrl, seq, cmode, amode, opad, size) \
  127. htonl( \
  128. SCMD_SEQ_NO_CTRL_V(0) | \
  129. SCMD_STATUS_PRESENT_V(0) | \
  130. SCMD_PROTO_VERSION_V(CHCR_SCMD_PROTO_VERSION_GENERIC) | \
  131. SCMD_ENC_DEC_CTRL_V((ctrl)) | \
  132. SCMD_CIPH_AUTH_SEQ_CTRL_V((seq)) | \
  133. SCMD_CIPH_MODE_V((cmode)) | \
  134. SCMD_AUTH_MODE_V((amode)) | \
  135. SCMD_HMAC_CTRL_V((opad)) | \
  136. SCMD_IV_SIZE_V((size)) | \
  137. SCMD_NUM_IVS_V(0))
  138. #define FILL_SEC_CPL_IVGEN_HDRLEN(last, more, ctx_in, mac, ivdrop, len) htonl( \
  139. SCMD_ENB_DBGID_V(0) | \
  140. SCMD_IV_GEN_CTRL_V(0) | \
  141. SCMD_LAST_FRAG_V((last)) | \
  142. SCMD_MORE_FRAGS_V((more)) | \
  143. SCMD_TLS_COMPPDU_V(0) | \
  144. SCMD_KEY_CTX_INLINE_V((ctx_in)) | \
  145. SCMD_TLS_FRAG_ENABLE_V(0) | \
  146. SCMD_MAC_ONLY_V((mac)) | \
  147. SCMD_AADIVDROP_V((ivdrop)) | \
  148. SCMD_HDR_LEN_V((len)))
  149. #define FILL_KEY_CTX_HDR(ck_size, mk_size, d_ck, opad, ctx_len) \
  150. htonl(KEY_CONTEXT_VALID_V(1) | \
  151. KEY_CONTEXT_CK_SIZE_V((ck_size)) | \
  152. KEY_CONTEXT_MK_SIZE_V(mk_size) | \
  153. KEY_CONTEXT_DUAL_CK_V((d_ck)) | \
  154. KEY_CONTEXT_OPAD_PRESENT_V((opad)) | \
  155. KEY_CONTEXT_SALT_PRESENT_V(1) | \
  156. KEY_CONTEXT_CTX_LEN_V((ctx_len)))
  157. #define FILL_WR_OP_CCTX_SIZE(len, ctx_len) \
  158. htonl( \
  159. FW_CRYPTO_LOOKASIDE_WR_OPCODE_V( \
  160. FW_CRYPTO_LOOKASIDE_WR) | \
  161. FW_CRYPTO_LOOKASIDE_WR_COMPL_V(0) | \
  162. FW_CRYPTO_LOOKASIDE_WR_IMM_LEN_V((len)) | \
  163. FW_CRYPTO_LOOKASIDE_WR_CCTX_LOC_V(1) | \
  164. FW_CRYPTO_LOOKASIDE_WR_CCTX_SIZE_V((ctx_len)))
  165. #define FILL_WR_RX_Q_ID(cid, qid, wr_iv, lcb, fid) \
  166. htonl( \
  167. FW_CRYPTO_LOOKASIDE_WR_RX_CHID_V((cid)) | \
  168. FW_CRYPTO_LOOKASIDE_WR_RX_Q_ID_V((qid)) | \
  169. FW_CRYPTO_LOOKASIDE_WR_LCB_V((lcb)) | \
  170. FW_CRYPTO_LOOKASIDE_WR_IV_V((wr_iv)) | \
  171. FW_CRYPTO_LOOKASIDE_WR_FQIDX_V(fid))
  172. #define FILL_ULPTX_CMD_DEST(cid, qid) \
  173. htonl(ULPTX_CMD_V(ULP_TX_PKT) | \
  174. ULP_TXPKT_DEST_V(0) | \
  175. ULP_TXPKT_DATAMODIFY_V(0) | \
  176. ULP_TXPKT_CHANNELID_V((cid)) | \
  177. ULP_TXPKT_RO_V(1) | \
  178. ULP_TXPKT_FID_V(qid))
  179. #define KEYCTX_ALIGN_PAD(bs) ({unsigned int _bs = (bs);\
  180. _bs == SHA1_DIGEST_SIZE ? 12 : 0; })
  181. #define FILL_PLD_SIZE_HASH_SIZE(payload_sgl_len, sgl_lengths, total_frags) \
  182. htonl(FW_CRYPTO_LOOKASIDE_WR_PLD_SIZE_V(payload_sgl_len ? \
  183. sgl_lengths[total_frags] : 0) |\
  184. FW_CRYPTO_LOOKASIDE_WR_HASH_SIZE_V(0))
  185. #define FILL_LEN_PKD(calc_tx_flits_ofld, skb) \
  186. htonl(FW_CRYPTO_LOOKASIDE_WR_LEN16_V(DIV_ROUND_UP((\
  187. calc_tx_flits_ofld(skb) * 8), 16)))
  188. #define FILL_CMD_MORE(immdatalen) htonl(ULPTX_CMD_V(ULP_TX_SC_IMM) |\
  189. ULP_TX_SC_MORE_V((immdatalen) ? 0 : 1))
  190. #define MAX_NK 8
  191. #define CRYPTO_MAX_IMM_TX_PKT_LEN 256
  192. #define MAX_WR_SIZE 512
  193. #define ROUND_16(bytes) ((bytes) & 0xFFFFFFF0)
  194. #define MAX_DSGL_ENT 32
  195. #define MAX_DIGEST_SKB_SGE (MAX_SKB_FRAGS - 2)
  196. #define MIN_CIPHER_SG 1 /* IV */
  197. #define MIN_AUTH_SG 2 /*IV + AAD*/
  198. #define MIN_GCM_SG 2 /* IV + AAD*/
  199. #define MIN_DIGEST_SG 1 /*Partial Buffer*/
  200. #define MIN_CCM_SG 3 /*IV+AAD+B0*/
  201. #define SPACE_LEFT(len) \
  202. ((MAX_WR_SIZE - WR_MIN_LEN - (len)))
  203. unsigned int sgl_ent_len[] = {0, 0, 16, 24, 40,
  204. 48, 64, 72, 88,
  205. 96, 112, 120, 136,
  206. 144, 160, 168, 184,
  207. 192};
  208. unsigned int dsgl_ent_len[] = {0, 32, 32, 48, 48, 64, 64, 80, 80,
  209. 112, 112, 128, 128, 144, 144, 160, 160,
  210. 192, 192, 208, 208, 224, 224, 240, 240,
  211. 272, 272, 288, 288, 304, 304, 320, 320};
  212. struct algo_param {
  213. unsigned int auth_mode;
  214. unsigned int mk_size;
  215. unsigned int result_size;
  216. };
  217. struct hash_wr_param {
  218. unsigned int opad_needed;
  219. unsigned int more;
  220. unsigned int last;
  221. struct algo_param alg_prm;
  222. unsigned int sg_len;
  223. unsigned int bfr_len;
  224. u64 scmd1;
  225. };
  226. struct cipher_wr_param {
  227. struct ablkcipher_request *req;
  228. struct scatterlist *srcsg;
  229. char *iv;
  230. int bytes;
  231. short int snent;
  232. unsigned short qid;
  233. };
  234. enum {
  235. AES_KEYLENGTH_128BIT = 128,
  236. AES_KEYLENGTH_192BIT = 192,
  237. AES_KEYLENGTH_256BIT = 256
  238. };
  239. enum {
  240. KEYLENGTH_3BYTES = 3,
  241. KEYLENGTH_4BYTES = 4,
  242. KEYLENGTH_6BYTES = 6,
  243. KEYLENGTH_8BYTES = 8
  244. };
  245. enum {
  246. NUMBER_OF_ROUNDS_10 = 10,
  247. NUMBER_OF_ROUNDS_12 = 12,
  248. NUMBER_OF_ROUNDS_14 = 14,
  249. };
  250. /*
  251. * CCM defines values of 4, 6, 8, 10, 12, 14, and 16 octets,
  252. * where they indicate the size of the integrity check value (ICV)
  253. */
  254. enum {
  255. ICV_4 = 4,
  256. ICV_6 = 6,
  257. ICV_8 = 8,
  258. ICV_10 = 10,
  259. ICV_12 = 12,
  260. ICV_13 = 13,
  261. ICV_14 = 14,
  262. ICV_15 = 15,
  263. ICV_16 = 16
  264. };
  265. struct hash_op_params {
  266. unsigned char mk_size;
  267. unsigned char pad_align;
  268. unsigned char auth_mode;
  269. char hash_name[MAX_HASH_NAME];
  270. unsigned short block_size;
  271. unsigned short word_size;
  272. unsigned short ipad_size;
  273. };
  274. struct phys_sge_pairs {
  275. __be16 len[8];
  276. __be64 addr[8];
  277. };
  278. struct phys_sge_parm {
  279. unsigned int nents;
  280. unsigned int obsize;
  281. unsigned short qid;
  282. };
  283. struct crypto_result {
  284. struct completion completion;
  285. int err;
  286. };
  287. static const u32 sha1_init[SHA1_DIGEST_SIZE / 4] = {
  288. SHA1_H0, SHA1_H1, SHA1_H2, SHA1_H3, SHA1_H4,
  289. };
  290. static const u32 sha224_init[SHA256_DIGEST_SIZE / 4] = {
  291. SHA224_H0, SHA224_H1, SHA224_H2, SHA224_H3,
  292. SHA224_H4, SHA224_H5, SHA224_H6, SHA224_H7,
  293. };
  294. static const u32 sha256_init[SHA256_DIGEST_SIZE / 4] = {
  295. SHA256_H0, SHA256_H1, SHA256_H2, SHA256_H3,
  296. SHA256_H4, SHA256_H5, SHA256_H6, SHA256_H7,
  297. };
  298. static const u64 sha384_init[SHA512_DIGEST_SIZE / 8] = {
  299. SHA384_H0, SHA384_H1, SHA384_H2, SHA384_H3,
  300. SHA384_H4, SHA384_H5, SHA384_H6, SHA384_H7,
  301. };
  302. static const u64 sha512_init[SHA512_DIGEST_SIZE / 8] = {
  303. SHA512_H0, SHA512_H1, SHA512_H2, SHA512_H3,
  304. SHA512_H4, SHA512_H5, SHA512_H6, SHA512_H7,
  305. };
  306. static inline void copy_hash_init_values(char *key, int digestsize)
  307. {
  308. u8 i;
  309. __be32 *dkey = (__be32 *)key;
  310. u64 *ldkey = (u64 *)key;
  311. __be64 *sha384 = (__be64 *)sha384_init;
  312. __be64 *sha512 = (__be64 *)sha512_init;
  313. switch (digestsize) {
  314. case SHA1_DIGEST_SIZE:
  315. for (i = 0; i < SHA1_INIT_STATE; i++)
  316. dkey[i] = cpu_to_be32(sha1_init[i]);
  317. break;
  318. case SHA224_DIGEST_SIZE:
  319. for (i = 0; i < SHA224_INIT_STATE; i++)
  320. dkey[i] = cpu_to_be32(sha224_init[i]);
  321. break;
  322. case SHA256_DIGEST_SIZE:
  323. for (i = 0; i < SHA256_INIT_STATE; i++)
  324. dkey[i] = cpu_to_be32(sha256_init[i]);
  325. break;
  326. case SHA384_DIGEST_SIZE:
  327. for (i = 0; i < SHA384_INIT_STATE; i++)
  328. ldkey[i] = be64_to_cpu(sha384[i]);
  329. break;
  330. case SHA512_DIGEST_SIZE:
  331. for (i = 0; i < SHA512_INIT_STATE; i++)
  332. ldkey[i] = be64_to_cpu(sha512[i]);
  333. break;
  334. }
  335. }
  336. static const u8 sgl_lengths[20] = {
  337. 0, 1, 2, 3, 4, 4, 5, 6, 7, 7, 8, 9, 10, 10, 11, 12, 13, 13, 14, 15
  338. };
  339. /* Number of len fields(8) * size of one addr field */
  340. #define PHYSDSGL_MAX_LEN_SIZE 16
  341. static inline u16 get_space_for_phys_dsgl(unsigned int sgl_entr)
  342. {
  343. /* len field size + addr field size */
  344. return ((sgl_entr >> 3) + ((sgl_entr % 8) ?
  345. 1 : 0)) * PHYSDSGL_MAX_LEN_SIZE +
  346. (sgl_entr << 3) + ((sgl_entr % 2 ? 1 : 0) << 3);
  347. }
  348. /* The AES s-transform matrix (s-box). */
  349. static const u8 aes_sbox[256] = {
  350. 99, 124, 119, 123, 242, 107, 111, 197, 48, 1, 103, 43, 254, 215,
  351. 171, 118, 202, 130, 201, 125, 250, 89, 71, 240, 173, 212, 162, 175,
  352. 156, 164, 114, 192, 183, 253, 147, 38, 54, 63, 247, 204, 52, 165,
  353. 229, 241, 113, 216, 49, 21, 4, 199, 35, 195, 24, 150, 5, 154, 7,
  354. 18, 128, 226, 235, 39, 178, 117, 9, 131, 44, 26, 27, 110, 90,
  355. 160, 82, 59, 214, 179, 41, 227, 47, 132, 83, 209, 0, 237, 32,
  356. 252, 177, 91, 106, 203, 190, 57, 74, 76, 88, 207, 208, 239, 170,
  357. 251, 67, 77, 51, 133, 69, 249, 2, 127, 80, 60, 159, 168, 81,
  358. 163, 64, 143, 146, 157, 56, 245, 188, 182, 218, 33, 16, 255, 243,
  359. 210, 205, 12, 19, 236, 95, 151, 68, 23, 196, 167, 126, 61, 100,
  360. 93, 25, 115, 96, 129, 79, 220, 34, 42, 144, 136, 70, 238, 184,
  361. 20, 222, 94, 11, 219, 224, 50, 58, 10, 73, 6, 36, 92, 194,
  362. 211, 172, 98, 145, 149, 228, 121, 231, 200, 55, 109, 141, 213, 78,
  363. 169, 108, 86, 244, 234, 101, 122, 174, 8, 186, 120, 37, 46, 28, 166,
  364. 180, 198, 232, 221, 116, 31, 75, 189, 139, 138, 112, 62, 181, 102,
  365. 72, 3, 246, 14, 97, 53, 87, 185, 134, 193, 29, 158, 225, 248,
  366. 152, 17, 105, 217, 142, 148, 155, 30, 135, 233, 206, 85, 40, 223,
  367. 140, 161, 137, 13, 191, 230, 66, 104, 65, 153, 45, 15, 176, 84,
  368. 187, 22
  369. };
  370. static inline u32 aes_ks_subword(const u32 w)
  371. {
  372. u8 bytes[4];
  373. *(u32 *)(&bytes[0]) = w;
  374. bytes[0] = aes_sbox[bytes[0]];
  375. bytes[1] = aes_sbox[bytes[1]];
  376. bytes[2] = aes_sbox[bytes[2]];
  377. bytes[3] = aes_sbox[bytes[3]];
  378. return *(u32 *)(&bytes[0]);
  379. }
  380. static u32 round_constant[11] = {
  381. 0x01000000, 0x02000000, 0x04000000, 0x08000000,
  382. 0x10000000, 0x20000000, 0x40000000, 0x80000000,
  383. 0x1B000000, 0x36000000, 0x6C000000
  384. };
  385. #endif /* __CHCR_ALGO_H__ */