1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright(c) 2018 Cavium, Inc 3 */ 4 5 #ifndef _CPT_MCODE_DEFINES_H_ 6 #define _CPT_MCODE_DEFINES_H_ 7 8 #include <rte_byteorder.h> 9 #include <rte_crypto_asym.h> 10 #include <rte_memory.h> 11 12 /* 13 * This file defines macros and structures according to microcode spec 14 * 15 */ 16 /* SE opcodes */ 17 #define CPT_MAJOR_OP_FC 0x33 18 #define CPT_MAJOR_OP_HASH 0x34 19 #define CPT_MAJOR_OP_HMAC 0x35 20 #define CPT_MAJOR_OP_ZUC_SNOW3G 0x37 21 #define CPT_MAJOR_OP_KASUMI 0x38 22 #define CPT_MAJOR_OP_MISC 0x01 23 #define CPT_HMAC_FIRST_BIT_POS 0x4 24 #define CPT_FC_MINOR_OP_ENCRYPT 0x0 25 #define CPT_FC_MINOR_OP_DECRYPT 0x1 26 27 /* AE opcodes */ 28 #define CPT_MAJOR_OP_MODEX 0x03 29 #define CPT_MAJOR_OP_ECDSA 0x04 30 #define CPT_MAJOR_OP_ECC 0x05 31 #define CPT_MINOR_OP_MODEX 0x01 32 #define CPT_MINOR_OP_PKCS_ENC 0x02 33 #define CPT_MINOR_OP_PKCS_ENC_CRT 0x03 34 #define CPT_MINOR_OP_PKCS_DEC 0x04 35 #define CPT_MINOR_OP_PKCS_DEC_CRT 0x05 36 #define CPT_MINOR_OP_MODEX_CRT 0x06 37 #define CPT_MINOR_OP_ECDSA_SIGN 0x01 38 #define CPT_MINOR_OP_ECDSA_VERIFY 0x02 39 #define CPT_MINOR_OP_ECC_UMP 0x03 40 41 #define CPT_BLOCK_TYPE1 0 42 #define CPT_BLOCK_TYPE2 1 43 44 #define CPT_MAX_SG_IN_OUT_CNT 32 45 #define CPT_MAX_SG_CNT (CPT_MAX_SG_IN_OUT_CNT/2) 46 47 #define COMPLETION_CODE_SIZE 8 48 #define COMPLETION_CODE_INIT 0 49 50 #define SG_LIST_HDR_SIZE (8u) 51 #define SG_ENTRY_SIZE sizeof(sg_comp_t) 52 53 #define CPT_DMA_MODE (1 << 7) 54 55 #define CPT_FROM_CTX 0 56 #define CPT_FROM_DPTR 1 57 58 #define FC_GEN 0x1 59 #define ZUC_SNOW3G 0x2 60 #define KASUMI 0x3 61 #define HASH_HMAC 0x4 62 63 #define ZS_EA 0x1 64 #define ZS_IA 0x2 65 #define K_F8 0x4 66 #define K_F9 0x8 67 68 #define CPT_OP_CIPHER_ENCRYPT 0x1 69 #define CPT_OP_CIPHER_DECRYPT 0x2 70 #define CPT_OP_CIPHER_MASK 0x3 71 72 #define CPT_OP_AUTH_VERIFY 0x4 73 #define CPT_OP_AUTH_GENERATE 0x8 74 #define CPT_OP_AUTH_MASK 0xC 75 76 #define CPT_OP_ENCODE (CPT_OP_CIPHER_ENCRYPT | CPT_OP_AUTH_GENERATE) 77 #define CPT_OP_DECODE (CPT_OP_CIPHER_DECRYPT | CPT_OP_AUTH_VERIFY) 78 79 /* #define CPT_ALWAYS_USE_SG_MODE */ 80 #define CPT_ALWAYS_USE_SEPARATE_BUF 81 82 /* 83 * Parameters for Flexi Crypto 84 * requests 85 */ 86 #define VALID_AAD_BUF 0x01 87 #define VALID_MAC_BUF 0x02 88 #define VALID_IV_BUF 0x04 89 #define SINGLE_BUF_INPLACE 0x08 90 #define SINGLE_BUF_HEADTAILROOM 0x10 91 92 #define ENCR_IV_OFFSET(__d_offs) ((__d_offs >> 32) & 0xffff) 93 #define ENCR_OFFSET(__d_offs) ((__d_offs >> 16) & 0xffff) 94 #define AUTH_OFFSET(__d_offs) (__d_offs & 0xffff) 95 #define ENCR_DLEN(__d_lens) (__d_lens >> 32) 96 #define AUTH_DLEN(__d_lens) (__d_lens & 0xffffffff) 97 98 /* FC offset_control at start of DPTR in bytes */ 99 #define OFF_CTRL_LEN 8 /**< bytes */ 100 101 typedef enum { 102 MD5_TYPE = 1, 103 SHA1_TYPE = 2, 104 SHA2_SHA224 = 3, 105 SHA2_SHA256 = 4, 106 SHA2_SHA384 = 5, 107 SHA2_SHA512 = 6, 108 GMAC_TYPE = 7, 109 POLY1305 = 8, 110 SHA3_SHA224 = 10, 111 SHA3_SHA256 = 11, 112 SHA3_SHA384 = 12, 113 SHA3_SHA512 = 13, 114 SHA3_SHAKE256 = 14, 115 SHA3_SHAKE512 = 15, 116 117 /* These are only for software use */ 118 ZUC_EIA3 = 0x90, 119 SNOW3G_UIA2 = 0x91, 120 KASUMI_F9_CBC = 0x92, 121 KASUMI_F9_ECB = 0x93, 122 } mc_hash_type_t; 123 124 typedef enum { 125 /* To support passthrough */ 126 PASSTHROUGH = 0x0, 127 /* 128 * These are defined by MC for Flexi crypto 129 * for field of 4 bits 130 */ 131 DES3_CBC = 0x1, 132 DES3_ECB = 0x2, 133 AES_CBC = 0x3, 134 AES_ECB = 0x4, 135 AES_CFB = 0x5, 136 AES_CTR = 0x6, 137 AES_GCM = 0x7, 138 AES_XTS = 0x8, 139 CHACHA20 = 0x9, 140 141 /* These are only for software use */ 142 ZUC_EEA3 = 0x90, 143 SNOW3G_UEA2 = 0x91, 144 KASUMI_F8_CBC = 0x92, 145 KASUMI_F8_ECB = 0x93, 146 } mc_cipher_type_t; 147 148 typedef enum { 149 AES_128_BIT = 0x1, 150 AES_192_BIT = 0x2, 151 AES_256_BIT = 0x3 152 } mc_aes_type_t; 153 154 typedef enum { 155 /* Microcode errors */ 156 NO_ERR = 0x00, 157 ERR_OPCODE_UNSUPPORTED = 0x01, 158 159 /* SCATTER GATHER */ 160 ERR_SCATTER_GATHER_WRITE_LENGTH = 0x02, 161 ERR_SCATTER_GATHER_LIST = 0x03, 162 ERR_SCATTER_GATHER_NOT_SUPPORTED = 0x04, 163 164 /* SE GC */ 165 ERR_GC_LENGTH_INVALID = 0x41, 166 ERR_GC_RANDOM_LEN_INVALID = 0x42, 167 ERR_GC_DATA_LEN_INVALID = 0x43, 168 ERR_GC_DRBG_TYPE_INVALID = 0x44, 169 ERR_GC_CTX_LEN_INVALID = 0x45, 170 ERR_GC_CIPHER_UNSUPPORTED = 0x46, 171 ERR_GC_AUTH_UNSUPPORTED = 0x47, 172 ERR_GC_OFFSET_INVALID = 0x48, 173 ERR_GC_HASH_MODE_UNSUPPORTED = 0x49, 174 ERR_GC_DRBG_ENTROPY_LEN_INVALID = 0x4a, 175 ERR_GC_DRBG_ADDNL_LEN_INVALID = 0x4b, 176 ERR_GC_ICV_MISCOMPARE = 0x4c, 177 ERR_GC_DATA_UNALIGNED = 0x4d, 178 179 /* API Layer */ 180 ERR_BAD_ALT_CCODE = 0xfd, 181 ERR_REQ_PENDING = 0xfe, 182 ERR_REQ_TIMEOUT = 0xff, 183 184 ERR_BAD_INPUT_LENGTH = (0x40000000 | 384), /* 0x40000180 */ 185 ERR_BAD_KEY_LENGTH, 186 ERR_BAD_KEY_HANDLE, 187 ERR_BAD_CONTEXT_HANDLE, 188 ERR_BAD_SCALAR_LENGTH, 189 ERR_BAD_DIGEST_LENGTH, 190 ERR_BAD_INPUT_ARG, 191 ERR_BAD_RECORD_PADDING, 192 ERR_NB_REQUEST_PENDING, 193 ERR_EIO, 194 ERR_ENODEV, 195 } mc_error_code_t; 196 197 /** 198 * Enumeration cpt_comp_e 199 * 200 * CPT Completion Enumeration 201 * Enumerates the values of CPT_RES_S[COMPCODE]. 202 */ 203 typedef enum { 204 CPT_8X_COMP_E_NOTDONE = (0x00), 205 CPT_8X_COMP_E_GOOD = (0x01), 206 CPT_8X_COMP_E_FAULT = (0x02), 207 CPT_8X_COMP_E_SWERR = (0x03), 208 CPT_8X_COMP_E_HWERR = (0x04), 209 CPT_8X_COMP_E_LAST_ENTRY = (0xFF) 210 } cpt_comp_e_t; 211 212 /** 213 * Enumeration cpt_ec_id 214 * 215 * Enumerates supported elliptic curves 216 */ 217 typedef enum { 218 CPT_EC_ID_P192 = 0, 219 CPT_EC_ID_P224 = 1, 220 CPT_EC_ID_P256 = 2, 221 CPT_EC_ID_P384 = 3, 222 CPT_EC_ID_P521 = 4, 223 CPT_EC_ID_PMAX = 5 224 } cpt_ec_id_t; 225 226 typedef struct sglist_comp { 227 union { 228 uint64_t len; 229 struct { 230 uint16_t len[4]; 231 } s; 232 } u; 233 uint64_t ptr[4]; 234 } sg_comp_t; 235 236 struct cpt_sess_misc { 237 /** CPT opcode */ 238 uint16_t cpt_op:4; 239 /** ZUC, SNOW3G & KASUMI flags */ 240 uint16_t zsk_flag:4; 241 /** Flag for AES GCM */ 242 uint16_t aes_gcm:1; 243 /** Flag for AES CTR */ 244 uint16_t aes_ctr:1; 245 /** Flag for CHACHA POLY */ 246 uint16_t chacha_poly:1; 247 /** Flag for NULL cipher/auth */ 248 uint16_t is_null:1; 249 /** Flag for GMAC */ 250 uint16_t is_gmac:1; 251 /** Unused field */ 252 uint16_t rsvd1:3; 253 /** AAD length */ 254 uint16_t aad_length; 255 /** MAC len in bytes */ 256 uint8_t mac_len; 257 /** IV length in bytes */ 258 uint8_t iv_length; 259 /** Auth IV length in bytes */ 260 uint8_t auth_iv_length; 261 /** Unused field */ 262 uint8_t rsvd2; 263 /** IV offset in bytes */ 264 uint16_t iv_offset; 265 /** Auth IV offset in bytes */ 266 uint16_t auth_iv_offset; 267 /** Salt */ 268 uint32_t salt; 269 /** CPT inst word 7 */ 270 uint64_t cpt_inst_w7; 271 /** Context DMA address */ 272 phys_addr_t ctx_dma_addr; 273 }; 274 275 typedef struct { 276 uint64_t iv_source : 1; 277 uint64_t aes_key : 2; 278 uint64_t rsvd_60 : 1; 279 uint64_t enc_cipher : 4; 280 uint64_t auth_input_type : 1; 281 uint64_t rsvd_52_54 : 3; 282 uint64_t hash_type : 4; 283 uint64_t mac_len : 8; 284 uint64_t rsvd_39_0 : 40; 285 uint8_t encr_key[32]; 286 uint8_t encr_iv[16]; 287 } mc_enc_context_t; 288 289 typedef struct { 290 uint8_t ipad[64]; 291 uint8_t opad[64]; 292 } mc_fc_hmac_context_t; 293 294 typedef struct { 295 mc_enc_context_t enc; 296 mc_fc_hmac_context_t hmac; 297 } mc_fc_context_t; 298 299 typedef struct { 300 uint8_t encr_auth_iv[16]; 301 uint8_t ci_key[16]; 302 uint8_t zuc_const[32]; 303 } mc_zuc_snow3g_ctx_t; 304 305 typedef struct { 306 uint8_t reg_A[8]; 307 uint8_t ci_key[16]; 308 } mc_kasumi_ctx_t; 309 310 struct cpt_ctx { 311 /* Below fields are accessed by sw */ 312 uint64_t enc_cipher :8; 313 uint64_t hash_type :8; 314 uint64_t mac_len :8; 315 uint64_t auth_key_len :8; 316 uint64_t fc_type :4; 317 uint64_t hmac :1; 318 uint64_t zsk_flags :3; 319 uint64_t k_ecb :1; 320 uint64_t auth_enc :1; 321 uint64_t dec_auth :1; 322 uint64_t snow3g :2; 323 uint64_t rsvd :19; 324 /* Below fields are accessed by hardware */ 325 union { 326 mc_fc_context_t fctx; 327 mc_zuc_snow3g_ctx_t zs_ctx; 328 mc_kasumi_ctx_t k_ctx; 329 } mc_ctx; 330 uint8_t auth_key[1024]; 331 }; 332 333 /* Prime and order fields of built-in elliptic curves */ 334 struct cpt_ec_group { 335 struct { 336 /* P521 maximum length */ 337 uint8_t data[66]; 338 unsigned int length; 339 } prime; 340 341 struct { 342 /* P521 maximum length */ 343 uint8_t data[66]; 344 unsigned int length; 345 } order; 346 }; 347 348 struct cpt_asym_ec_ctx { 349 /* Prime length defined by microcode for EC operations */ 350 uint8_t curveid; 351 }; 352 353 struct cpt_asym_sess_misc { 354 enum rte_crypto_asym_xform_type xfrm_type; 355 union { 356 struct rte_crypto_rsa_xform rsa_ctx; 357 struct rte_crypto_modex_xform mod_ctx; 358 struct cpt_asym_ec_ctx ec_ctx; 359 }; 360 uint64_t cpt_inst_w7; 361 }; 362 363 /* Buffer pointer */ 364 typedef struct buf_ptr { 365 void *vaddr; 366 phys_addr_t dma_addr; 367 uint32_t size; 368 uint32_t resv; 369 } buf_ptr_t; 370 371 /* IOV Pointer */ 372 typedef struct{ 373 int buf_cnt; 374 buf_ptr_t bufs[0]; 375 } iov_ptr_t; 376 377 typedef struct fc_params { 378 /* 0th cache line */ 379 union { 380 buf_ptr_t bufs[1]; 381 struct { 382 iov_ptr_t *src_iov; 383 iov_ptr_t *dst_iov; 384 }; 385 }; 386 void *iv_buf; 387 void *auth_iv_buf; 388 buf_ptr_t meta_buf; 389 buf_ptr_t ctx_buf; 390 uint64_t rsvd2; 391 392 /* 1st cache line */ 393 buf_ptr_t aad_buf; 394 buf_ptr_t mac_buf; 395 396 } fc_params_t; 397 398 /* 399 * Parameters for asymmetric operations 400 */ 401 struct asym_op_params { 402 struct cpt_request_info *req; 403 phys_addr_t meta_buf; 404 }; 405 406 /* 407 * Parameters for digest 408 * generate requests 409 * Only src_iov, op, ctx_buf, mac_buf, prep_req 410 * meta_buf, auth_data_len are used for digest gen. 411 */ 412 typedef struct fc_params digest_params_t; 413 414 /* Cipher Algorithms */ 415 typedef mc_cipher_type_t cipher_type_t; 416 417 /* Auth Algorithms */ 418 typedef mc_hash_type_t auth_type_t; 419 420 /* Helper macros */ 421 422 #define SRC_IOV_SIZE \ 423 (sizeof(iov_ptr_t) + (sizeof(buf_ptr_t) * CPT_MAX_SG_CNT)) 424 #define DST_IOV_SIZE \ 425 (sizeof(iov_ptr_t) + (sizeof(buf_ptr_t) * CPT_MAX_SG_CNT)) 426 427 #define SESS_PRIV(__sess) \ 428 (void *)((uint8_t *)__sess + sizeof(struct cpt_sess_misc)) 429 430 #define GET_SESS_FC_TYPE(__sess) \ 431 (((struct cpt_ctx *)(SESS_PRIV(__sess)))->fc_type) 432 433 /* 434 * Get the session size 435 * 436 * @return 437 * - session size 438 */ 439 static __rte_always_inline unsigned int 440 cpt_get_session_size(void) 441 { 442 unsigned int ctx_len = sizeof(struct cpt_ctx); 443 return (sizeof(struct cpt_sess_misc) + RTE_ALIGN_CEIL(ctx_len, 8)); 444 } 445 #endif /* _CPT_MCODE_DEFINES_H_ */ 446