xref: /openbmc/linux/arch/arm/crypto/aes-ce-glue.c (revision 1465fb13d3599e465b3b202f8ebbb5e1ca9b1970)
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>
15da40e7a4SHerbert Xu #include <crypto/internal/simd.h>
16da40e7a4SHerbert 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 
136da40e7a4SHerbert Xu static int ce_aes_setkey(struct crypto_skcipher *tfm, const u8 *in_key,
13786464859SArd Biesheuvel 			 unsigned int key_len)
13886464859SArd Biesheuvel {
139da40e7a4SHerbert 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 
146da40e7a4SHerbert 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 
155da40e7a4SHerbert Xu static int xts_set_key(struct crypto_skcipher *tfm, const u8 *in_key,
15686464859SArd Biesheuvel 		       unsigned int key_len)
15786464859SArd Biesheuvel {
158da40e7a4SHerbert Xu 	struct crypto_aes_xts_ctx *ctx = crypto_skcipher_ctx(tfm);
15986464859SArd Biesheuvel 	int ret;
16086464859SArd Biesheuvel 
161da40e7a4SHerbert 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 
172da40e7a4SHerbert Xu 	crypto_skcipher_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN);
17386464859SArd Biesheuvel 	return -EINVAL;
17486464859SArd Biesheuvel }
17586464859SArd Biesheuvel 
176da40e7a4SHerbert Xu static int ecb_encrypt(struct skcipher_request *req)
17786464859SArd Biesheuvel {
178da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
179da40e7a4SHerbert Xu 	struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm);
180da40e7a4SHerbert Xu 	struct skcipher_walk walk;
18186464859SArd Biesheuvel 	unsigned int blocks;
18286464859SArd Biesheuvel 	int err;
18386464859SArd Biesheuvel 
184da40e7a4SHerbert 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);
190da40e7a4SHerbert 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 
196da40e7a4SHerbert Xu static int ecb_decrypt(struct skcipher_request *req)
19786464859SArd Biesheuvel {
198da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
199da40e7a4SHerbert Xu 	struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm);
200da40e7a4SHerbert Xu 	struct skcipher_walk walk;
20186464859SArd Biesheuvel 	unsigned int blocks;
20286464859SArd Biesheuvel 	int err;
20386464859SArd Biesheuvel 
204da40e7a4SHerbert 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);
210da40e7a4SHerbert 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 
216da40e7a4SHerbert Xu static int cbc_encrypt(struct skcipher_request *req)
21786464859SArd Biesheuvel {
218da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
219da40e7a4SHerbert Xu 	struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm);
220da40e7a4SHerbert Xu 	struct skcipher_walk walk;
22186464859SArd Biesheuvel 	unsigned int blocks;
22286464859SArd Biesheuvel 	int err;
22386464859SArd Biesheuvel 
224da40e7a4SHerbert 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);
231da40e7a4SHerbert 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 
237da40e7a4SHerbert Xu static int cbc_decrypt(struct skcipher_request *req)
23886464859SArd Biesheuvel {
239da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
240da40e7a4SHerbert Xu 	struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm);
241da40e7a4SHerbert Xu 	struct skcipher_walk walk;
24286464859SArd Biesheuvel 	unsigned int blocks;
24386464859SArd Biesheuvel 	int err;
24486464859SArd Biesheuvel 
245da40e7a4SHerbert 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);
252da40e7a4SHerbert 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 
258da40e7a4SHerbert Xu static int ctr_encrypt(struct skcipher_request *req)
25986464859SArd Biesheuvel {
260da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
261da40e7a4SHerbert Xu 	struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm);
262da40e7a4SHerbert Xu 	struct skcipher_walk walk;
26386464859SArd Biesheuvel 	int err, blocks;
26486464859SArd Biesheuvel 
265da40e7a4SHerbert 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);
272da40e7a4SHerbert Xu 		err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE);
27386464859SArd Biesheuvel 	}
274da40e7a4SHerbert Xu 	if (walk.nbytes) {
27586464859SArd Biesheuvel 		u8 __aligned(8) tail[AES_BLOCK_SIZE];
276da40e7a4SHerbert Xu 		unsigned int nbytes = walk.nbytes;
277da40e7a4SHerbert Xu 		u8 *tdst = walk.dst.virt.addr;
278da40e7a4SHerbert Xu 		u8 *tsrc = walk.src.virt.addr;
27986464859SArd Biesheuvel 
28086464859SArd Biesheuvel 		/*
281*1465fb13SArd Biesheuvel 		 * Tell aes_ctr_encrypt() to process a tail block.
28286464859SArd Biesheuvel 		 */
283*1465fb13SArd Biesheuvel 		blocks = -1;
28486464859SArd Biesheuvel 
285*1465fb13SArd Biesheuvel 		ce_aes_ctr_encrypt(tail, NULL, (u8 *)ctx->key_enc,
28686464859SArd Biesheuvel 				   num_rounds(ctx), blocks, walk.iv);
287*1465fb13SArd Biesheuvel 		if (tdst != tsrc)
288*1465fb13SArd Biesheuvel 			memcpy(tdst, tsrc, nbytes);
289*1465fb13SArd Biesheuvel 		crypto_xor(tdst, tail, nbytes);
290da40e7a4SHerbert Xu 		err = skcipher_walk_done(&walk, 0);
29186464859SArd Biesheuvel 	}
29286464859SArd Biesheuvel 	kernel_neon_end();
29386464859SArd Biesheuvel 
29486464859SArd Biesheuvel 	return err;
29586464859SArd Biesheuvel }
29686464859SArd Biesheuvel 
297da40e7a4SHerbert Xu static int xts_encrypt(struct skcipher_request *req)
29886464859SArd Biesheuvel {
299da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
300da40e7a4SHerbert Xu 	struct crypto_aes_xts_ctx *ctx = crypto_skcipher_ctx(tfm);
30186464859SArd Biesheuvel 	int err, first, rounds = num_rounds(&ctx->key1);
302da40e7a4SHerbert Xu 	struct skcipher_walk walk;
30386464859SArd Biesheuvel 	unsigned int blocks;
30486464859SArd Biesheuvel 
305da40e7a4SHerbert Xu 	err = skcipher_walk_virt(&walk, req, true);
30686464859SArd Biesheuvel 
30786464859SArd Biesheuvel 	kernel_neon_begin();
30886464859SArd Biesheuvel 	for (first = 1; (blocks = (walk.nbytes / AES_BLOCK_SIZE)); first = 0) {
30986464859SArd Biesheuvel 		ce_aes_xts_encrypt(walk.dst.virt.addr, walk.src.virt.addr,
31086464859SArd Biesheuvel 				   (u8 *)ctx->key1.key_enc, rounds, blocks,
31186464859SArd Biesheuvel 				   walk.iv, (u8 *)ctx->key2.key_enc, first);
312da40e7a4SHerbert Xu 		err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE);
31386464859SArd Biesheuvel 	}
31486464859SArd Biesheuvel 	kernel_neon_end();
31586464859SArd Biesheuvel 
31686464859SArd Biesheuvel 	return err;
31786464859SArd Biesheuvel }
31886464859SArd Biesheuvel 
319da40e7a4SHerbert Xu static int xts_decrypt(struct skcipher_request *req)
32086464859SArd Biesheuvel {
321da40e7a4SHerbert Xu 	struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
322da40e7a4SHerbert Xu 	struct crypto_aes_xts_ctx *ctx = crypto_skcipher_ctx(tfm);
32386464859SArd Biesheuvel 	int err, first, rounds = num_rounds(&ctx->key1);
324da40e7a4SHerbert Xu 	struct skcipher_walk walk;
32586464859SArd Biesheuvel 	unsigned int blocks;
32686464859SArd Biesheuvel 
327da40e7a4SHerbert Xu 	err = skcipher_walk_virt(&walk, req, true);
32886464859SArd Biesheuvel 
32986464859SArd Biesheuvel 	kernel_neon_begin();
33086464859SArd Biesheuvel 	for (first = 1; (blocks = (walk.nbytes / AES_BLOCK_SIZE)); first = 0) {
33186464859SArd Biesheuvel 		ce_aes_xts_decrypt(walk.dst.virt.addr, walk.src.virt.addr,
33286464859SArd Biesheuvel 				   (u8 *)ctx->key1.key_dec, rounds, blocks,
33386464859SArd Biesheuvel 				   walk.iv, (u8 *)ctx->key2.key_enc, first);
334da40e7a4SHerbert Xu 		err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE);
33586464859SArd Biesheuvel 	}
33686464859SArd Biesheuvel 	kernel_neon_end();
33786464859SArd Biesheuvel 
33886464859SArd Biesheuvel 	return err;
33986464859SArd Biesheuvel }
34086464859SArd Biesheuvel 
341da40e7a4SHerbert Xu static struct skcipher_alg aes_algs[] = { {
342da40e7a4SHerbert Xu 	.base = {
343da40e7a4SHerbert Xu 		.cra_name		= "__ecb(aes)",
344da40e7a4SHerbert Xu 		.cra_driver_name	= "__ecb-aes-ce",
345da40e7a4SHerbert Xu 		.cra_priority		= 300,
346da40e7a4SHerbert Xu 		.cra_flags		= CRYPTO_ALG_INTERNAL,
34786464859SArd Biesheuvel 		.cra_blocksize		= AES_BLOCK_SIZE,
34886464859SArd Biesheuvel 		.cra_ctxsize		= sizeof(struct crypto_aes_ctx),
34986464859SArd Biesheuvel 		.cra_module		= THIS_MODULE,
350da40e7a4SHerbert 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 }, {
357da40e7a4SHerbert Xu 	.base = {
358da40e7a4SHerbert Xu 		.cra_name		= "__cbc(aes)",
359da40e7a4SHerbert Xu 		.cra_driver_name	= "__cbc-aes-ce",
360da40e7a4SHerbert Xu 		.cra_priority		= 300,
361da40e7a4SHerbert 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_module		= THIS_MODULE,
365da40e7a4SHerbert Xu 	},
36686464859SArd Biesheuvel 	.min_keysize	= AES_MIN_KEY_SIZE,
36786464859SArd Biesheuvel 	.max_keysize	= AES_MAX_KEY_SIZE,
36886464859SArd Biesheuvel 	.ivsize		= AES_BLOCK_SIZE,
36986464859SArd Biesheuvel 	.setkey		= ce_aes_setkey,
37086464859SArd Biesheuvel 	.encrypt	= cbc_encrypt,
37186464859SArd Biesheuvel 	.decrypt	= cbc_decrypt,
37286464859SArd Biesheuvel }, {
373da40e7a4SHerbert Xu 	.base = {
374da40e7a4SHerbert Xu 		.cra_name		= "__ctr(aes)",
375da40e7a4SHerbert Xu 		.cra_driver_name	= "__ctr-aes-ce",
376da40e7a4SHerbert Xu 		.cra_priority		= 300,
377da40e7a4SHerbert Xu 		.cra_flags		= CRYPTO_ALG_INTERNAL,
37886464859SArd Biesheuvel 		.cra_blocksize		= 1,
37986464859SArd Biesheuvel 		.cra_ctxsize		= sizeof(struct crypto_aes_ctx),
38086464859SArd Biesheuvel 		.cra_module		= THIS_MODULE,
381da40e7a4SHerbert Xu 	},
38286464859SArd Biesheuvel 	.min_keysize	= AES_MIN_KEY_SIZE,
38386464859SArd Biesheuvel 	.max_keysize	= AES_MAX_KEY_SIZE,
38486464859SArd Biesheuvel 	.ivsize		= AES_BLOCK_SIZE,
385da40e7a4SHerbert Xu 	.chunksize	= AES_BLOCK_SIZE,
38686464859SArd Biesheuvel 	.setkey		= ce_aes_setkey,
38786464859SArd Biesheuvel 	.encrypt	= ctr_encrypt,
38886464859SArd Biesheuvel 	.decrypt	= ctr_encrypt,
38986464859SArd Biesheuvel }, {
390da40e7a4SHerbert Xu 	.base = {
391da40e7a4SHerbert Xu 		.cra_name		= "__xts(aes)",
392da40e7a4SHerbert Xu 		.cra_driver_name	= "__xts-aes-ce",
393da40e7a4SHerbert Xu 		.cra_priority		= 300,
394da40e7a4SHerbert Xu 		.cra_flags		= CRYPTO_ALG_INTERNAL,
39586464859SArd Biesheuvel 		.cra_blocksize		= AES_BLOCK_SIZE,
39686464859SArd Biesheuvel 		.cra_ctxsize		= sizeof(struct crypto_aes_xts_ctx),
39786464859SArd Biesheuvel 		.cra_module		= THIS_MODULE,
398da40e7a4SHerbert Xu 	},
39986464859SArd Biesheuvel 	.min_keysize	= 2 * AES_MIN_KEY_SIZE,
40086464859SArd Biesheuvel 	.max_keysize	= 2 * AES_MAX_KEY_SIZE,
40186464859SArd Biesheuvel 	.ivsize		= AES_BLOCK_SIZE,
40286464859SArd Biesheuvel 	.setkey		= xts_set_key,
40386464859SArd Biesheuvel 	.encrypt	= xts_encrypt,
40486464859SArd Biesheuvel 	.decrypt	= xts_decrypt,
40586464859SArd Biesheuvel } };
40686464859SArd Biesheuvel 
407efad2b61SHerbert Xu static struct simd_skcipher_alg *aes_simd_algs[ARRAY_SIZE(aes_algs)];
408da40e7a4SHerbert Xu 
409da40e7a4SHerbert Xu static void aes_exit(void)
410da40e7a4SHerbert Xu {
411da40e7a4SHerbert Xu 	int i;
412da40e7a4SHerbert Xu 
413da40e7a4SHerbert Xu 	for (i = 0; i < ARRAY_SIZE(aes_simd_algs) && aes_simd_algs[i]; i++)
414da40e7a4SHerbert Xu 		simd_skcipher_free(aes_simd_algs[i]);
415da40e7a4SHerbert Xu 
416da40e7a4SHerbert Xu 	crypto_unregister_skciphers(aes_algs, ARRAY_SIZE(aes_algs));
417da40e7a4SHerbert Xu }
418da40e7a4SHerbert Xu 
41986464859SArd Biesheuvel static int __init aes_init(void)
42086464859SArd Biesheuvel {
421da40e7a4SHerbert Xu 	struct simd_skcipher_alg *simd;
422da40e7a4SHerbert Xu 	const char *basename;
423da40e7a4SHerbert Xu 	const char *algname;
424da40e7a4SHerbert Xu 	const char *drvname;
425da40e7a4SHerbert Xu 	int err;
426da40e7a4SHerbert Xu 	int i;
427da40e7a4SHerbert Xu 
42886464859SArd Biesheuvel 	if (!(elf_hwcap2 & HWCAP2_AES))
42986464859SArd Biesheuvel 		return -ENODEV;
430da40e7a4SHerbert Xu 
431da40e7a4SHerbert Xu 	err = crypto_register_skciphers(aes_algs, ARRAY_SIZE(aes_algs));
432da40e7a4SHerbert Xu 	if (err)
433da40e7a4SHerbert Xu 		return err;
434da40e7a4SHerbert Xu 
435da40e7a4SHerbert Xu 	for (i = 0; i < ARRAY_SIZE(aes_algs); i++) {
436da40e7a4SHerbert Xu 		algname = aes_algs[i].base.cra_name + 2;
437da40e7a4SHerbert Xu 		drvname = aes_algs[i].base.cra_driver_name + 2;
438da40e7a4SHerbert Xu 		basename = aes_algs[i].base.cra_driver_name;
439da40e7a4SHerbert Xu 		simd = simd_skcipher_create_compat(algname, drvname, basename);
440da40e7a4SHerbert Xu 		err = PTR_ERR(simd);
441da40e7a4SHerbert Xu 		if (IS_ERR(simd))
442da40e7a4SHerbert Xu 			goto unregister_simds;
443da40e7a4SHerbert Xu 
444da40e7a4SHerbert Xu 		aes_simd_algs[i] = simd;
44586464859SArd Biesheuvel 	}
44686464859SArd Biesheuvel 
447da40e7a4SHerbert Xu 	return 0;
448da40e7a4SHerbert Xu 
449da40e7a4SHerbert Xu unregister_simds:
450da40e7a4SHerbert Xu 	aes_exit();
451da40e7a4SHerbert Xu 	return err;
45286464859SArd Biesheuvel }
45386464859SArd Biesheuvel 
45486464859SArd Biesheuvel module_init(aes_init);
45586464859SArd Biesheuvel module_exit(aes_exit);
456