blob: b4ebdadc0ac5690a5b4f81c1db9846be5e0dd767 [file] [log] [blame]
Jerry Yu49231312023-01-10 16:57:21 +08001/*
Jerry Yuc8bcdc82023-02-21 14:49:02 +08002 * Arm64 crypto extension support functions
Jerry Yu49231312023-01-10 16:57:21 +08003 *
4 * Copyright The Mbed TLS Contributors
5 * SPDX-License-Identifier: Apache-2.0
6 *
7 * Licensed under the Apache License, Version 2.0 (the "License"); you may
8 * not use this file except in compliance with the License.
9 * You may obtain a copy of the License at
10 *
11 * http://www.apache.org/licenses/LICENSE-2.0
12 *
13 * Unless required by applicable law or agreed to in writing, software
14 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
15 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
16 * See the License for the specific language governing permissions and
17 * limitations under the License.
18 */
19
20#include <string.h>
21#include "common.h"
22
23#if defined(MBEDTLS_AESCE_C)
24
25#include "aesce.h"
26
27#if defined(MBEDTLS_HAVE_ARM64)
28
29#if defined(__clang__)
30# if __clang_major__ < 4
Jerry Yub2783f62023-02-13 18:03:25 +080031# error "A more recent Clang is required for MBEDTLS_AESCE_C"
Jerry Yu49231312023-01-10 16:57:21 +080032# endif
33#elif defined(__GNUC__)
34# if __GNUC__ < 6
Jerry Yub2783f62023-02-13 18:03:25 +080035# error "A more recent GCC is required for MBEDTLS_AESCE_C"
Jerry Yu49231312023-01-10 16:57:21 +080036# endif
37#else
Jerry Yub2783f62023-02-13 18:03:25 +080038# error "Only GCC and Clang supported for MBEDTLS_AESCE_C"
Jerry Yu49231312023-01-10 16:57:21 +080039#endif
40
41#if !defined(__ARM_FEATURE_CRYPTO)
42# error "`crypto` feature moddifier MUST be enabled for MBEDTLS_AESCE_C."
43# error "Typical option for GCC and Clang is `-march=armv8-a+crypto`."
44#endif /* !__ARM_FEATURE_CRYPTO */
45
46#include <arm_neon.h>
47
Jerry Yub95c7762023-01-10 16:59:51 +080048#if defined(__linux__)
49#include <asm/hwcap.h>
50#include <sys/auxv.h>
51#endif
52
53/*
54 * AES instruction support detection routine
55 */
56int mbedtls_aesce_has_support(void)
57{
58#if defined(__linux__)
59 unsigned long auxval = getauxval(AT_HWCAP);
60 return (auxval & (HWCAP_ASIMD | HWCAP_AES)) ==
61 (HWCAP_ASIMD | HWCAP_AES);
62#else
63 /* Suppose aes instructions are supported. */
64 return 1;
65#endif
66}
67
Jerry Yu2bb3d812023-01-10 17:38:26 +080068static uint8x16_t aesce_encrypt_block(uint8x16_t block,
69 unsigned char *keys,
70 int rounds)
71{
72 for (int i = 0; i < rounds - 1; i++) {
Jerry Yuc8bcdc82023-02-21 14:49:02 +080073 /* AES AddRoundKey, SubBytes, ShiftRows (in this order).
74 * AddRoundKey adds the round key for the previous round. */
Jerry Yu2bb3d812023-01-10 17:38:26 +080075 block = vaeseq_u8(block, vld1q_u8(keys + i * 16));
76 /* AES mix columns */
77 block = vaesmcq_u8(block);
78 }
79
Jerry Yuc8bcdc82023-02-21 14:49:02 +080080 /* AES AddRoundKey for the previous round.
81 * SubBytes, ShiftRows for the final round. */
Jerry Yu2bb3d812023-01-10 17:38:26 +080082 block = vaeseq_u8(block, vld1q_u8(keys + (rounds -1) * 16));
83
Jerry Yuc8bcdc82023-02-21 14:49:02 +080084 /* Final round: no MixColumns */
Jerry Yu2bb3d812023-01-10 17:38:26 +080085 block = veorq_u8(block, vld1q_u8(keys + rounds * 16));
86
87 return block;
88}
89
90static uint8x16_t aesce_decrypt_block(uint8x16_t block,
91 unsigned char *keys,
92 int rounds)
93{
94
95 for (int i = 0; i < rounds - 1; i++) {
Jerry Yuc8bcdc82023-02-21 14:49:02 +080096 /* AES AddRoundKey, SubBytes, ShiftRows */
Jerry Yu2bb3d812023-01-10 17:38:26 +080097 block = vaesdq_u8(block, vld1q_u8(keys + i * 16));
Jerry Yuc8bcdc82023-02-21 14:49:02 +080098 /* AES inverse MixColumns for the next round.
99 *
100 * This means that we switch the order of the inverse AddRoundKey and
101 * inverse MixColumns operations. We have to do this as AddRoundKey is
102 * done in an atomic instruction together with the inverses of SubBytes
103 * and ShiftRows.
104 *
105 * It works because MixColumns is a linear operation over GF(2^8) and
106 * AddRoundKey is an exclusive or, which is equivalent to addition over
107 * GF(2^8). (The inverse of MixColumns needs to be applied to the
108 * affected round keys separately which has been done when the
109 * decryption round keys were calculated.) */
Jerry Yu2bb3d812023-01-10 17:38:26 +0800110 block = vaesimcq_u8(block);
111 }
112
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800113 /* The inverses of AES AddRoundKey, SubBytes, ShiftRows finishing up the
114 * last full round. */
Jerry Yu2bb3d812023-01-10 17:38:26 +0800115 block = vaesdq_u8(block, vld1q_u8(keys + (rounds - 1) * 16));
116
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800117 /* Inverse AddRoundKey for inverting the initial round key addition. */
Jerry Yu2bb3d812023-01-10 17:38:26 +0800118 block = veorq_u8(block, vld1q_u8(keys + rounds * 16));
119
120 return block;
121}
122
123/*
124 * AES-ECB block en(de)cryption
125 */
126int mbedtls_aesce_crypt_ecb(mbedtls_aes_context *ctx,
127 int mode,
128 const unsigned char input[16],
129 unsigned char output[16])
130{
131 uint8x16_t block = vld1q_u8(&input[0]);
132 unsigned char *keys = (unsigned char *) (ctx->buf + ctx->rk_offset);
133
134 if (mode == MBEDTLS_AES_ENCRYPT) {
135 block = aesce_encrypt_block(block, keys, ctx->nr);
136 } else {
137 block = aesce_decrypt_block(block, keys, ctx->nr);
138 }
139 vst1q_u8(&output[0], block);
140
141 return 0;
142}
143
Jerry Yu3f2fb712023-01-10 17:05:42 +0800144
Jerry Yue096da12023-01-10 17:07:01 +0800145/*
146 * Compute decryption round keys from encryption round keys
147 */
148void mbedtls_aesce_inverse_key(unsigned char *invkey,
149 const unsigned char *fwdkey,
150 int nr)
151{
152 int i, j;
153 j = nr;
154 vst1q_u8(invkey, vld1q_u8(fwdkey + j * 16));
155 for (i = 1, j--; j > 0; i++, j--) {
156 vst1q_u8(invkey + i * 16,
157 vaesimcq_u8(vld1q_u8(fwdkey + j * 16)));
158 }
159 vst1q_u8(invkey + i * 16, vld1q_u8(fwdkey + j * 16));
160
161}
162
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800163static inline uint32_t aes_rot_word(uint32_t word)
Jerry Yu3f2fb712023-01-10 17:05:42 +0800164{
165 return (word << (32 - 8)) | (word >> 8);
166}
167
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800168static inline uint32_t aes_sub_word(uint32_t in)
Jerry Yu3f2fb712023-01-10 17:05:42 +0800169{
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800170 uint8x16_t v = vreinterpretq_u8_u32(vdupq_n_u32(in));
Jerry Yu3f2fb712023-01-10 17:05:42 +0800171 uint8x16_t zero = vdupq_n_u8(0);
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800172
173 /* vaeseq_u8 does both SubBytes and ShiftRows. Taking the first row yields
174 * the correct result as ShiftRows doesn't change the first row. */
175 v = vaeseq_u8(zero, v);
176 return vgetq_lane_u32(vreinterpretq_u32_u8(v), 0);
Jerry Yu3f2fb712023-01-10 17:05:42 +0800177}
178
179/*
Jerry Yubaae4012023-02-21 15:26:13 +0800180 * Key expansion function
Jerry Yu3f2fb712023-01-10 17:05:42 +0800181 */
Jerry Yubaae4012023-02-21 15:26:13 +0800182static void aesce_setkey_enc(unsigned char *rk,
183 const unsigned char *key,
184 const size_t key_bit_length)
Jerry Yu3f2fb712023-01-10 17:05:42 +0800185{
186 uint32_t *rki;
187 uint32_t *rko;
188 uint32_t *rk_u32 = (uint32_t *) rk;
Jerry Yubaae4012023-02-21 15:26:13 +0800189 const uint32_t key_len_in_words = key_bit_length / 32;
190 const uint32_t key_len_in_bytes = key_bit_length / 8;
191 static uint8_t const rcon[] = { 0x01, 0x02, 0x04, 0x08, 0x10,
192 0x20, 0x40, 0x80, 0x1b, 0x36 };
193 const uint32_t rounds =
194 key_bit_length == 128 ? sizeof(rcon) : key_bit_length == 192 ? 8 : 7;
Jerry Yuc8bcdc82023-02-21 14:49:02 +0800195
Jerry Yubaae4012023-02-21 15:26:13 +0800196 memcpy(rk, key, key_len_in_bytes);
Jerry Yu3f2fb712023-01-10 17:05:42 +0800197
Jerry Yubaae4012023-02-21 15:26:13 +0800198 for (size_t i = 0; i < rounds; i++) {
199 rki = rk_u32 + i * key_len_in_words;
200 rko = rki + key_len_in_words;
201 rko[0] = aes_rot_word(aes_sub_word(rki[key_len_in_words - 1]));
202 rko[0] ^= rcon[i] ^ rki[0];
Jerry Yu3f2fb712023-01-10 17:05:42 +0800203 rko[1] = rko[0] ^ rki[1];
204 rko[2] = rko[1] ^ rki[2];
205 rko[3] = rko[2] ^ rki[3];
Jerry Yubaae4012023-02-21 15:26:13 +0800206 switch (key_bit_length) {
207 case 192:
208 if (i < 7) {
209 rko[4] = rko[3] ^ rki[4];
210 rko[5] = rko[4] ^ rki[5];
211 }
212 break;
213 case 256:
214 if (i < 6) {
215 rko[4] = aes_sub_word(rko[3]) ^ rki[4];
216 rko[5] = rko[4] ^ rki[5];
217 rko[6] = rko[5] ^ rki[6];
218 rko[7] = rko[6] ^ rki[7];
219 }
220 break;
Jerry Yu3f2fb712023-01-10 17:05:42 +0800221 }
222 }
223}
224
225/*
226 * Key expansion, wrapper
227 */
228int mbedtls_aesce_setkey_enc(unsigned char *rk,
229 const unsigned char *key,
230 size_t bits)
231{
232 switch (bits) {
Jerry Yubaae4012023-02-21 15:26:13 +0800233 case 128:
234 case 192:
235 case 256:
236 aesce_setkey_enc(rk, key, bits); break;
Jerry Yu3f2fb712023-01-10 17:05:42 +0800237 default: return MBEDTLS_ERR_AES_INVALID_KEY_LENGTH;
238 }
239
240 return 0;
241}
242
Jerry Yu49231312023-01-10 16:57:21 +0800243#endif /* MBEDTLS_HAVE_ARM64 */
244
245#endif /* MBEDTLS_AESCE_C */