186464859SArd Biesheuvel /* 286464859SArd Biesheuvel * aes-ce-glue.c - wrapper code for ARMv8 AES 386464859SArd Biesheuvel * 486464859SArd Biesheuvel * Copyright (C) 2015 Linaro Ltd <ard.biesheuvel@linaro.org> 586464859SArd Biesheuvel * 686464859SArd Biesheuvel * This program is free software; you can redistribute it and/or modify 786464859SArd Biesheuvel * it under the terms of the GNU General Public License version 2 as 886464859SArd Biesheuvel * published by the Free Software Foundation. 986464859SArd Biesheuvel */ 1086464859SArd Biesheuvel 1186464859SArd Biesheuvel #include <asm/hwcap.h> 1286464859SArd Biesheuvel #include <asm/neon.h> 1386464859SArd Biesheuvel #include <asm/hwcap.h> 1486464859SArd Biesheuvel #include <crypto/aes.h> 15*da40e7a4SHerbert Xu #include <crypto/internal/simd.h> 16*da40e7a4SHerbert Xu #include <crypto/internal/skcipher.h> 1786464859SArd Biesheuvel #include <linux/module.h> 1849abc0d2SStephan Mueller #include <crypto/xts.h> 1986464859SArd Biesheuvel 2086464859SArd Biesheuvel MODULE_DESCRIPTION("AES-ECB/CBC/CTR/XTS using ARMv8 Crypto Extensions"); 2186464859SArd Biesheuvel MODULE_AUTHOR("Ard Biesheuvel <ard.biesheuvel@linaro.org>"); 2286464859SArd Biesheuvel MODULE_LICENSE("GPL v2"); 2386464859SArd Biesheuvel 2486464859SArd Biesheuvel /* defined in aes-ce-core.S */ 2586464859SArd Biesheuvel asmlinkage u32 ce_aes_sub(u32 input); 2686464859SArd Biesheuvel asmlinkage void ce_aes_invert(void *dst, void *src); 2786464859SArd Biesheuvel 2886464859SArd Biesheuvel asmlinkage void ce_aes_ecb_encrypt(u8 out[], u8 const in[], u8 const rk[], 2986464859SArd Biesheuvel int rounds, int blocks); 3086464859SArd Biesheuvel asmlinkage void ce_aes_ecb_decrypt(u8 out[], u8 const in[], u8 const rk[], 3186464859SArd Biesheuvel int rounds, int blocks); 3286464859SArd Biesheuvel 3386464859SArd Biesheuvel asmlinkage void ce_aes_cbc_encrypt(u8 out[], u8 const in[], u8 const rk[], 3486464859SArd Biesheuvel int rounds, int blocks, u8 iv[]); 3586464859SArd Biesheuvel asmlinkage void ce_aes_cbc_decrypt(u8 out[], u8 const in[], u8 const rk[], 3686464859SArd Biesheuvel int rounds, int blocks, u8 iv[]); 3786464859SArd Biesheuvel 3886464859SArd Biesheuvel asmlinkage void ce_aes_ctr_encrypt(u8 out[], u8 const in[], u8 const rk[], 3986464859SArd Biesheuvel int rounds, int blocks, u8 ctr[]); 4086464859SArd Biesheuvel 4186464859SArd Biesheuvel asmlinkage void ce_aes_xts_encrypt(u8 out[], u8 const in[], u8 const rk1[], 4286464859SArd Biesheuvel int rounds, int blocks, u8 iv[], 4386464859SArd Biesheuvel u8 const rk2[], int first); 4486464859SArd Biesheuvel asmlinkage void ce_aes_xts_decrypt(u8 out[], u8 const in[], u8 const rk1[], 4586464859SArd Biesheuvel int rounds, int blocks, u8 iv[], 4686464859SArd Biesheuvel u8 const rk2[], int first); 4786464859SArd Biesheuvel 4886464859SArd Biesheuvel struct aes_block { 4986464859SArd Biesheuvel u8 b[AES_BLOCK_SIZE]; 5086464859SArd Biesheuvel }; 5186464859SArd Biesheuvel 5286464859SArd Biesheuvel static int num_rounds(struct crypto_aes_ctx *ctx) 5386464859SArd Biesheuvel { 5486464859SArd Biesheuvel /* 5586464859SArd Biesheuvel * # of rounds specified by AES: 5686464859SArd Biesheuvel * 128 bit key 10 rounds 5786464859SArd Biesheuvel * 192 bit key 12 rounds 5886464859SArd Biesheuvel * 256 bit key 14 rounds 5986464859SArd Biesheuvel * => n byte key => 6 + (n/4) rounds 6086464859SArd Biesheuvel */ 6186464859SArd Biesheuvel return 6 + ctx->key_length / 4; 6286464859SArd Biesheuvel } 6386464859SArd Biesheuvel 6486464859SArd Biesheuvel static int ce_aes_expandkey(struct crypto_aes_ctx *ctx, const u8 *in_key, 6586464859SArd Biesheuvel unsigned int key_len) 6686464859SArd Biesheuvel { 6786464859SArd Biesheuvel /* 6886464859SArd Biesheuvel * The AES key schedule round constants 6986464859SArd Biesheuvel */ 7086464859SArd Biesheuvel static u8 const rcon[] = { 7186464859SArd Biesheuvel 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0x1b, 0x36, 7286464859SArd Biesheuvel }; 7386464859SArd Biesheuvel 7486464859SArd Biesheuvel u32 kwords = key_len / sizeof(u32); 7586464859SArd Biesheuvel struct aes_block *key_enc, *key_dec; 7686464859SArd Biesheuvel int i, j; 7786464859SArd Biesheuvel 7886464859SArd Biesheuvel if (key_len != AES_KEYSIZE_128 && 7986464859SArd Biesheuvel key_len != AES_KEYSIZE_192 && 8086464859SArd Biesheuvel key_len != AES_KEYSIZE_256) 8186464859SArd Biesheuvel return -EINVAL; 8286464859SArd Biesheuvel 8386464859SArd Biesheuvel memcpy(ctx->key_enc, in_key, key_len); 8486464859SArd Biesheuvel ctx->key_length = key_len; 8586464859SArd Biesheuvel 8686464859SArd Biesheuvel kernel_neon_begin(); 8786464859SArd Biesheuvel for (i = 0; i < sizeof(rcon); i++) { 8886464859SArd Biesheuvel u32 *rki = ctx->key_enc + (i * kwords); 8986464859SArd Biesheuvel u32 *rko = rki + kwords; 9086464859SArd Biesheuvel 9158010fa6SArd Biesheuvel #ifndef CONFIG_CPU_BIG_ENDIAN 9286464859SArd Biesheuvel rko[0] = ror32(ce_aes_sub(rki[kwords - 1]), 8); 9386464859SArd Biesheuvel rko[0] = rko[0] ^ rki[0] ^ rcon[i]; 9458010fa6SArd Biesheuvel #else 9558010fa6SArd Biesheuvel rko[0] = rol32(ce_aes_sub(rki[kwords - 1]), 8); 9658010fa6SArd Biesheuvel rko[0] = rko[0] ^ rki[0] ^ (rcon[i] << 24); 9758010fa6SArd Biesheuvel #endif 9886464859SArd Biesheuvel rko[1] = rko[0] ^ rki[1]; 9986464859SArd Biesheuvel rko[2] = rko[1] ^ rki[2]; 10086464859SArd Biesheuvel rko[3] = rko[2] ^ rki[3]; 10186464859SArd Biesheuvel 10286464859SArd Biesheuvel if (key_len == AES_KEYSIZE_192) { 10386464859SArd Biesheuvel if (i >= 7) 10486464859SArd Biesheuvel break; 10586464859SArd Biesheuvel rko[4] = rko[3] ^ rki[4]; 10686464859SArd Biesheuvel rko[5] = rko[4] ^ rki[5]; 10786464859SArd Biesheuvel } else if (key_len == AES_KEYSIZE_256) { 10886464859SArd Biesheuvel if (i >= 6) 10986464859SArd Biesheuvel break; 11086464859SArd Biesheuvel rko[4] = ce_aes_sub(rko[3]) ^ rki[4]; 11186464859SArd Biesheuvel rko[5] = rko[4] ^ rki[5]; 11286464859SArd Biesheuvel rko[6] = rko[5] ^ rki[6]; 11386464859SArd Biesheuvel rko[7] = rko[6] ^ rki[7]; 11486464859SArd Biesheuvel } 11586464859SArd Biesheuvel } 11686464859SArd Biesheuvel 11786464859SArd Biesheuvel /* 11886464859SArd Biesheuvel * Generate the decryption keys for the Equivalent Inverse Cipher. 11986464859SArd Biesheuvel * This involves reversing the order of the round keys, and applying 12086464859SArd Biesheuvel * the Inverse Mix Columns transformation on all but the first and 12186464859SArd Biesheuvel * the last one. 12286464859SArd Biesheuvel */ 12386464859SArd Biesheuvel key_enc = (struct aes_block *)ctx->key_enc; 12486464859SArd Biesheuvel key_dec = (struct aes_block *)ctx->key_dec; 12586464859SArd Biesheuvel j = num_rounds(ctx); 12686464859SArd Biesheuvel 12786464859SArd Biesheuvel key_dec[0] = key_enc[j]; 12886464859SArd Biesheuvel for (i = 1, j--; j > 0; i++, j--) 12986464859SArd Biesheuvel ce_aes_invert(key_dec + i, key_enc + j); 13086464859SArd Biesheuvel key_dec[i] = key_enc[0]; 13186464859SArd Biesheuvel 13286464859SArd Biesheuvel kernel_neon_end(); 13386464859SArd Biesheuvel return 0; 13486464859SArd Biesheuvel } 13586464859SArd Biesheuvel 136*da40e7a4SHerbert Xu static int ce_aes_setkey(struct crypto_skcipher *tfm, const u8 *in_key, 13786464859SArd Biesheuvel unsigned int key_len) 13886464859SArd Biesheuvel { 139*da40e7a4SHerbert Xu struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); 14086464859SArd Biesheuvel int ret; 14186464859SArd Biesheuvel 14286464859SArd Biesheuvel ret = ce_aes_expandkey(ctx, in_key, key_len); 14386464859SArd Biesheuvel if (!ret) 14486464859SArd Biesheuvel return 0; 14586464859SArd Biesheuvel 146*da40e7a4SHerbert Xu crypto_skcipher_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN); 14786464859SArd Biesheuvel return -EINVAL; 14886464859SArd Biesheuvel } 14986464859SArd Biesheuvel 15086464859SArd Biesheuvel struct crypto_aes_xts_ctx { 15186464859SArd Biesheuvel struct crypto_aes_ctx key1; 15286464859SArd Biesheuvel struct crypto_aes_ctx __aligned(8) key2; 15386464859SArd Biesheuvel }; 15486464859SArd Biesheuvel 155*da40e7a4SHerbert Xu static int xts_set_key(struct crypto_skcipher *tfm, const u8 *in_key, 15686464859SArd Biesheuvel unsigned int key_len) 15786464859SArd Biesheuvel { 158*da40e7a4SHerbert Xu struct crypto_aes_xts_ctx *ctx = crypto_skcipher_ctx(tfm); 15986464859SArd Biesheuvel int ret; 16086464859SArd Biesheuvel 161*da40e7a4SHerbert Xu ret = xts_verify_key(tfm, in_key, key_len); 16228856a9eSStephan Mueller if (ret) 16328856a9eSStephan Mueller return ret; 16428856a9eSStephan Mueller 16586464859SArd Biesheuvel ret = ce_aes_expandkey(&ctx->key1, in_key, key_len / 2); 16686464859SArd Biesheuvel if (!ret) 16786464859SArd Biesheuvel ret = ce_aes_expandkey(&ctx->key2, &in_key[key_len / 2], 16886464859SArd Biesheuvel key_len / 2); 16986464859SArd Biesheuvel if (!ret) 17086464859SArd Biesheuvel return 0; 17186464859SArd Biesheuvel 172*da40e7a4SHerbert Xu crypto_skcipher_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN); 17386464859SArd Biesheuvel return -EINVAL; 17486464859SArd Biesheuvel } 17586464859SArd Biesheuvel 176*da40e7a4SHerbert Xu static int ecb_encrypt(struct skcipher_request *req) 17786464859SArd Biesheuvel { 178*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 179*da40e7a4SHerbert Xu struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); 180*da40e7a4SHerbert Xu struct skcipher_walk walk; 18186464859SArd Biesheuvel unsigned int blocks; 18286464859SArd Biesheuvel int err; 18386464859SArd Biesheuvel 184*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 18586464859SArd Biesheuvel 18686464859SArd Biesheuvel kernel_neon_begin(); 18786464859SArd Biesheuvel while ((blocks = (walk.nbytes / AES_BLOCK_SIZE))) { 18886464859SArd Biesheuvel ce_aes_ecb_encrypt(walk.dst.virt.addr, walk.src.virt.addr, 18986464859SArd Biesheuvel (u8 *)ctx->key_enc, num_rounds(ctx), blocks); 190*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 19186464859SArd Biesheuvel } 19286464859SArd Biesheuvel kernel_neon_end(); 19386464859SArd Biesheuvel return err; 19486464859SArd Biesheuvel } 19586464859SArd Biesheuvel 196*da40e7a4SHerbert Xu static int ecb_decrypt(struct skcipher_request *req) 19786464859SArd Biesheuvel { 198*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 199*da40e7a4SHerbert Xu struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); 200*da40e7a4SHerbert Xu struct skcipher_walk walk; 20186464859SArd Biesheuvel unsigned int blocks; 20286464859SArd Biesheuvel int err; 20386464859SArd Biesheuvel 204*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 20586464859SArd Biesheuvel 20686464859SArd Biesheuvel kernel_neon_begin(); 20786464859SArd Biesheuvel while ((blocks = (walk.nbytes / AES_BLOCK_SIZE))) { 20886464859SArd Biesheuvel ce_aes_ecb_decrypt(walk.dst.virt.addr, walk.src.virt.addr, 20986464859SArd Biesheuvel (u8 *)ctx->key_dec, num_rounds(ctx), blocks); 210*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 21186464859SArd Biesheuvel } 21286464859SArd Biesheuvel kernel_neon_end(); 21386464859SArd Biesheuvel return err; 21486464859SArd Biesheuvel } 21586464859SArd Biesheuvel 216*da40e7a4SHerbert Xu static int cbc_encrypt(struct skcipher_request *req) 21786464859SArd Biesheuvel { 218*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 219*da40e7a4SHerbert Xu struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); 220*da40e7a4SHerbert Xu struct skcipher_walk walk; 22186464859SArd Biesheuvel unsigned int blocks; 22286464859SArd Biesheuvel int err; 22386464859SArd Biesheuvel 224*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 22586464859SArd Biesheuvel 22686464859SArd Biesheuvel kernel_neon_begin(); 22786464859SArd Biesheuvel while ((blocks = (walk.nbytes / AES_BLOCK_SIZE))) { 22886464859SArd Biesheuvel ce_aes_cbc_encrypt(walk.dst.virt.addr, walk.src.virt.addr, 22986464859SArd Biesheuvel (u8 *)ctx->key_enc, num_rounds(ctx), blocks, 23086464859SArd Biesheuvel walk.iv); 231*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 23286464859SArd Biesheuvel } 23386464859SArd Biesheuvel kernel_neon_end(); 23486464859SArd Biesheuvel return err; 23586464859SArd Biesheuvel } 23686464859SArd Biesheuvel 237*da40e7a4SHerbert Xu static int cbc_decrypt(struct skcipher_request *req) 23886464859SArd Biesheuvel { 239*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 240*da40e7a4SHerbert Xu struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); 241*da40e7a4SHerbert Xu struct skcipher_walk walk; 24286464859SArd Biesheuvel unsigned int blocks; 24386464859SArd Biesheuvel int err; 24486464859SArd Biesheuvel 245*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 24686464859SArd Biesheuvel 24786464859SArd Biesheuvel kernel_neon_begin(); 24886464859SArd Biesheuvel while ((blocks = (walk.nbytes / AES_BLOCK_SIZE))) { 24986464859SArd Biesheuvel ce_aes_cbc_decrypt(walk.dst.virt.addr, walk.src.virt.addr, 25086464859SArd Biesheuvel (u8 *)ctx->key_dec, num_rounds(ctx), blocks, 25186464859SArd Biesheuvel walk.iv); 252*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 25386464859SArd Biesheuvel } 25486464859SArd Biesheuvel kernel_neon_end(); 25586464859SArd Biesheuvel return err; 25686464859SArd Biesheuvel } 25786464859SArd Biesheuvel 258*da40e7a4SHerbert Xu static int ctr_encrypt(struct skcipher_request *req) 25986464859SArd Biesheuvel { 260*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 261*da40e7a4SHerbert Xu struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); 262*da40e7a4SHerbert Xu struct skcipher_walk walk; 26386464859SArd Biesheuvel int err, blocks; 26486464859SArd Biesheuvel 265*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 26686464859SArd Biesheuvel 26786464859SArd Biesheuvel kernel_neon_begin(); 26886464859SArd Biesheuvel while ((blocks = (walk.nbytes / AES_BLOCK_SIZE))) { 26986464859SArd Biesheuvel ce_aes_ctr_encrypt(walk.dst.virt.addr, walk.src.virt.addr, 27086464859SArd Biesheuvel (u8 *)ctx->key_enc, num_rounds(ctx), blocks, 27186464859SArd Biesheuvel walk.iv); 272*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 27386464859SArd Biesheuvel } 274*da40e7a4SHerbert Xu if (walk.nbytes) { 27586464859SArd Biesheuvel u8 __aligned(8) tail[AES_BLOCK_SIZE]; 276*da40e7a4SHerbert Xu unsigned int nbytes = walk.nbytes; 277*da40e7a4SHerbert Xu u8 *tdst = walk.dst.virt.addr; 278*da40e7a4SHerbert Xu u8 *tsrc = walk.src.virt.addr; 27986464859SArd Biesheuvel 28086464859SArd Biesheuvel /* 28186464859SArd Biesheuvel * Minimum alignment is 8 bytes, so if nbytes is <= 8, we need 28286464859SArd Biesheuvel * to tell aes_ctr_encrypt() to only read half a block. 28386464859SArd Biesheuvel */ 28486464859SArd Biesheuvel blocks = (nbytes <= 8) ? -1 : 1; 28586464859SArd Biesheuvel 28686464859SArd Biesheuvel ce_aes_ctr_encrypt(tail, tsrc, (u8 *)ctx->key_enc, 28786464859SArd Biesheuvel num_rounds(ctx), blocks, walk.iv); 28886464859SArd Biesheuvel memcpy(tdst, tail, nbytes); 289*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, 0); 29086464859SArd Biesheuvel } 29186464859SArd Biesheuvel kernel_neon_end(); 29286464859SArd Biesheuvel 29386464859SArd Biesheuvel return err; 29486464859SArd Biesheuvel } 29586464859SArd Biesheuvel 296*da40e7a4SHerbert Xu static int xts_encrypt(struct skcipher_request *req) 29786464859SArd Biesheuvel { 298*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 299*da40e7a4SHerbert Xu struct crypto_aes_xts_ctx *ctx = crypto_skcipher_ctx(tfm); 30086464859SArd Biesheuvel int err, first, rounds = num_rounds(&ctx->key1); 301*da40e7a4SHerbert Xu struct skcipher_walk walk; 30286464859SArd Biesheuvel unsigned int blocks; 30386464859SArd Biesheuvel 304*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 30586464859SArd Biesheuvel 30686464859SArd Biesheuvel kernel_neon_begin(); 30786464859SArd Biesheuvel for (first = 1; (blocks = (walk.nbytes / AES_BLOCK_SIZE)); first = 0) { 30886464859SArd Biesheuvel ce_aes_xts_encrypt(walk.dst.virt.addr, walk.src.virt.addr, 30986464859SArd Biesheuvel (u8 *)ctx->key1.key_enc, rounds, blocks, 31086464859SArd Biesheuvel walk.iv, (u8 *)ctx->key2.key_enc, first); 311*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 31286464859SArd Biesheuvel } 31386464859SArd Biesheuvel kernel_neon_end(); 31486464859SArd Biesheuvel 31586464859SArd Biesheuvel return err; 31686464859SArd Biesheuvel } 31786464859SArd Biesheuvel 318*da40e7a4SHerbert Xu static int xts_decrypt(struct skcipher_request *req) 31986464859SArd Biesheuvel { 320*da40e7a4SHerbert Xu struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); 321*da40e7a4SHerbert Xu struct crypto_aes_xts_ctx *ctx = crypto_skcipher_ctx(tfm); 32286464859SArd Biesheuvel int err, first, rounds = num_rounds(&ctx->key1); 323*da40e7a4SHerbert Xu struct skcipher_walk walk; 32486464859SArd Biesheuvel unsigned int blocks; 32586464859SArd Biesheuvel 326*da40e7a4SHerbert Xu err = skcipher_walk_virt(&walk, req, true); 32786464859SArd Biesheuvel 32886464859SArd Biesheuvel kernel_neon_begin(); 32986464859SArd Biesheuvel for (first = 1; (blocks = (walk.nbytes / AES_BLOCK_SIZE)); first = 0) { 33086464859SArd Biesheuvel ce_aes_xts_decrypt(walk.dst.virt.addr, walk.src.virt.addr, 33186464859SArd Biesheuvel (u8 *)ctx->key1.key_dec, rounds, blocks, 33286464859SArd Biesheuvel walk.iv, (u8 *)ctx->key2.key_enc, first); 333*da40e7a4SHerbert Xu err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); 33486464859SArd Biesheuvel } 33586464859SArd Biesheuvel kernel_neon_end(); 33686464859SArd Biesheuvel 33786464859SArd Biesheuvel return err; 33886464859SArd Biesheuvel } 33986464859SArd Biesheuvel 340*da40e7a4SHerbert Xu static struct skcipher_alg aes_algs[] = { { 341*da40e7a4SHerbert Xu .base = { 342*da40e7a4SHerbert Xu .cra_name = "__ecb(aes)", 343*da40e7a4SHerbert Xu .cra_driver_name = "__ecb-aes-ce", 344*da40e7a4SHerbert Xu .cra_priority = 300, 345*da40e7a4SHerbert Xu .cra_flags = CRYPTO_ALG_INTERNAL, 34686464859SArd Biesheuvel .cra_blocksize = AES_BLOCK_SIZE, 34786464859SArd Biesheuvel .cra_ctxsize = sizeof(struct crypto_aes_ctx), 34886464859SArd Biesheuvel .cra_alignmask = 7, 34986464859SArd Biesheuvel .cra_module = THIS_MODULE, 350*da40e7a4SHerbert Xu }, 35186464859SArd Biesheuvel .min_keysize = AES_MIN_KEY_SIZE, 35286464859SArd Biesheuvel .max_keysize = AES_MAX_KEY_SIZE, 35386464859SArd Biesheuvel .setkey = ce_aes_setkey, 35486464859SArd Biesheuvel .encrypt = ecb_encrypt, 35586464859SArd Biesheuvel .decrypt = ecb_decrypt, 35686464859SArd Biesheuvel }, { 357*da40e7a4SHerbert Xu .base = { 358*da40e7a4SHerbert Xu .cra_name = "__cbc(aes)", 359*da40e7a4SHerbert Xu .cra_driver_name = "__cbc-aes-ce", 360*da40e7a4SHerbert Xu .cra_priority = 300, 361*da40e7a4SHerbert Xu .cra_flags = CRYPTO_ALG_INTERNAL, 36286464859SArd Biesheuvel .cra_blocksize = AES_BLOCK_SIZE, 36386464859SArd Biesheuvel .cra_ctxsize = sizeof(struct crypto_aes_ctx), 36486464859SArd Biesheuvel .cra_alignmask = 7, 36586464859SArd Biesheuvel .cra_module = THIS_MODULE, 366*da40e7a4SHerbert Xu }, 36786464859SArd Biesheuvel .min_keysize = AES_MIN_KEY_SIZE, 36886464859SArd Biesheuvel .max_keysize = AES_MAX_KEY_SIZE, 36986464859SArd Biesheuvel .ivsize = AES_BLOCK_SIZE, 37086464859SArd Biesheuvel .setkey = ce_aes_setkey, 37186464859SArd Biesheuvel .encrypt = cbc_encrypt, 37286464859SArd Biesheuvel .decrypt = cbc_decrypt, 37386464859SArd Biesheuvel }, { 374*da40e7a4SHerbert Xu .base = { 375*da40e7a4SHerbert Xu .cra_name = "__ctr(aes)", 376*da40e7a4SHerbert Xu .cra_driver_name = "__ctr-aes-ce", 377*da40e7a4SHerbert Xu .cra_priority = 300, 378*da40e7a4SHerbert Xu .cra_flags = CRYPTO_ALG_INTERNAL, 37986464859SArd Biesheuvel .cra_blocksize = 1, 38086464859SArd Biesheuvel .cra_ctxsize = sizeof(struct crypto_aes_ctx), 38186464859SArd Biesheuvel .cra_alignmask = 7, 38286464859SArd Biesheuvel .cra_module = THIS_MODULE, 383*da40e7a4SHerbert Xu }, 38486464859SArd Biesheuvel .min_keysize = AES_MIN_KEY_SIZE, 38586464859SArd Biesheuvel .max_keysize = AES_MAX_KEY_SIZE, 38686464859SArd Biesheuvel .ivsize = AES_BLOCK_SIZE, 387*da40e7a4SHerbert Xu .chunksize = AES_BLOCK_SIZE, 38886464859SArd Biesheuvel .setkey = ce_aes_setkey, 38986464859SArd Biesheuvel .encrypt = ctr_encrypt, 39086464859SArd Biesheuvel .decrypt = ctr_encrypt, 39186464859SArd Biesheuvel }, { 392*da40e7a4SHerbert Xu .base = { 393*da40e7a4SHerbert Xu .cra_name = "__xts(aes)", 394*da40e7a4SHerbert Xu .cra_driver_name = "__xts-aes-ce", 395*da40e7a4SHerbert Xu .cra_priority = 300, 396*da40e7a4SHerbert Xu .cra_flags = CRYPTO_ALG_INTERNAL, 39786464859SArd Biesheuvel .cra_blocksize = AES_BLOCK_SIZE, 39886464859SArd Biesheuvel .cra_ctxsize = sizeof(struct crypto_aes_xts_ctx), 39986464859SArd Biesheuvel .cra_alignmask = 7, 40086464859SArd Biesheuvel .cra_module = THIS_MODULE, 401*da40e7a4SHerbert Xu }, 40286464859SArd Biesheuvel .min_keysize = 2 * AES_MIN_KEY_SIZE, 40386464859SArd Biesheuvel .max_keysize = 2 * AES_MAX_KEY_SIZE, 40486464859SArd Biesheuvel .ivsize = AES_BLOCK_SIZE, 40586464859SArd Biesheuvel .setkey = xts_set_key, 40686464859SArd Biesheuvel .encrypt = xts_encrypt, 40786464859SArd Biesheuvel .decrypt = xts_decrypt, 40886464859SArd Biesheuvel } }; 40986464859SArd Biesheuvel 410*da40e7a4SHerbert Xu struct simd_skcipher_alg *aes_simd_algs[ARRAY_SIZE(aes_algs)]; 411*da40e7a4SHerbert Xu 412*da40e7a4SHerbert Xu static void aes_exit(void) 413*da40e7a4SHerbert Xu { 414*da40e7a4SHerbert Xu int i; 415*da40e7a4SHerbert Xu 416*da40e7a4SHerbert Xu for (i = 0; i < ARRAY_SIZE(aes_simd_algs) && aes_simd_algs[i]; i++) 417*da40e7a4SHerbert Xu simd_skcipher_free(aes_simd_algs[i]); 418*da40e7a4SHerbert Xu 419*da40e7a4SHerbert Xu crypto_unregister_skciphers(aes_algs, ARRAY_SIZE(aes_algs)); 420*da40e7a4SHerbert Xu } 421*da40e7a4SHerbert Xu 42286464859SArd Biesheuvel static int __init aes_init(void) 42386464859SArd Biesheuvel { 424*da40e7a4SHerbert Xu struct simd_skcipher_alg *simd; 425*da40e7a4SHerbert Xu const char *basename; 426*da40e7a4SHerbert Xu const char *algname; 427*da40e7a4SHerbert Xu const char *drvname; 428*da40e7a4SHerbert Xu int err; 429*da40e7a4SHerbert Xu int i; 430*da40e7a4SHerbert Xu 43186464859SArd Biesheuvel if (!(elf_hwcap2 & HWCAP2_AES)) 43286464859SArd Biesheuvel return -ENODEV; 433*da40e7a4SHerbert Xu 434*da40e7a4SHerbert Xu err = crypto_register_skciphers(aes_algs, ARRAY_SIZE(aes_algs)); 435*da40e7a4SHerbert Xu if (err) 436*da40e7a4SHerbert Xu return err; 437*da40e7a4SHerbert Xu 438*da40e7a4SHerbert Xu for (i = 0; i < ARRAY_SIZE(aes_algs); i++) { 439*da40e7a4SHerbert Xu algname = aes_algs[i].base.cra_name + 2; 440*da40e7a4SHerbert Xu drvname = aes_algs[i].base.cra_driver_name + 2; 441*da40e7a4SHerbert Xu basename = aes_algs[i].base.cra_driver_name; 442*da40e7a4SHerbert Xu simd = simd_skcipher_create_compat(algname, drvname, basename); 443*da40e7a4SHerbert Xu err = PTR_ERR(simd); 444*da40e7a4SHerbert Xu if (IS_ERR(simd)) 445*da40e7a4SHerbert Xu goto unregister_simds; 446*da40e7a4SHerbert Xu 447*da40e7a4SHerbert Xu aes_simd_algs[i] = simd; 44886464859SArd Biesheuvel } 44986464859SArd Biesheuvel 450*da40e7a4SHerbert Xu return 0; 451*da40e7a4SHerbert Xu 452*da40e7a4SHerbert Xu unregister_simds: 453*da40e7a4SHerbert Xu aes_exit(); 454*da40e7a4SHerbert Xu return err; 45586464859SArd Biesheuvel } 45686464859SArd Biesheuvel 45786464859SArd Biesheuvel module_init(aes_init); 45886464859SArd Biesheuvel module_exit(aes_exit); 459