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Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +01001/*
2 * AES-NI support functions
3 *
Bence Szépkúti1e148272020-08-07 13:07:28 +02004 * Copyright The Mbed TLS Contributors
Manuel Pégourié-Gonnard37ff1402015-09-04 14:21:07 +02005 * 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.
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010018 */
19
20/*
Gilles Peskined4f31c82023-03-10 22:21:47 +010021 * [AES-WP] https://www.intel.com/content/www/us/en/developer/articles/tool/intel-advanced-encryption-standard-aes-instructions-set.html
22 * [CLMUL-WP] https://www.intel.com/content/www/us/en/develop/download/intel-carry-less-multiplication-instruction-and-its-usage-for-computing-the-gcm-mode.html
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010023 */
24
Gilles Peskinedb09ef62020-06-03 01:43:33 +020025#include "common.h"
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010026
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +020027#if defined(MBEDTLS_AESNI_C)
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010028
Chris Jones187782f2021-03-09 17:28:35 +000029#include "aesni.h"
Rich Evans00ab4702015-02-06 13:43:58 +000030
31#include <string.h>
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010032
Gilles Peskined6719172023-03-10 22:37:11 +010033#if defined(MBEDTLS_HAVE_AESNI_INTRINSICS) || defined(MBEDTLS_HAVE_X86_64)
34
35#if defined(MBEDTLS_HAVE_AESNI_INTRINSICS)
Tom Cosgrove02edb752023-03-13 15:32:52 +000036#if !defined(_WIN32)
Gilles Peskined6719172023-03-10 22:37:11 +010037#include <cpuid.h>
Tom Cosgrove02edb752023-03-13 15:32:52 +000038#endif
Gilles Peskined6719172023-03-10 22:37:11 +010039#include <immintrin.h>
40#endif
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010041
42/*
Manuel Pégourié-Gonnard8eaf20b2013-12-18 19:14:53 +010043 * AES-NI support detection routine
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010044 */
Gilles Peskine449bd832023-01-11 14:50:10 +010045int mbedtls_aesni_has_support(unsigned int what)
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010046{
Manuel Pégourié-Gonnard8eaf20b2013-12-18 19:14:53 +010047 static int done = 0;
48 static unsigned int c = 0;
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010049
Gilles Peskine449bd832023-01-11 14:50:10 +010050 if (!done) {
Gilles Peskined6719172023-03-10 22:37:11 +010051#if defined(MBEDTLS_HAVE_AESNI_INTRINSICS)
52 static unsigned info[4] = { 0, 0, 0, 0 };
53#if defined(_MSC_VER)
54 __cpuid(info, 1);
55#else
56 __cpuid(1, info[0], info[1], info[2], info[3]);
57#endif
58 c = info[2];
59#else
Gilles Peskine449bd832023-01-11 14:50:10 +010060 asm ("movl $1, %%eax \n\t"
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +020061 "cpuid \n\t"
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010062 : "=c" (c)
63 :
Gilles Peskine449bd832023-01-11 14:50:10 +010064 : "eax", "ebx", "edx");
Gilles Peskined6719172023-03-10 22:37:11 +010065#endif
Manuel Pégourié-Gonnard8eaf20b2013-12-18 19:14:53 +010066 done = 1;
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010067 }
68
Gilles Peskine449bd832023-01-11 14:50:10 +010069 return (c & what) != 0;
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +010070}
71
Gilles Peskined6719172023-03-10 22:37:11 +010072#if defined(MBEDTLS_HAVE_AESNI_INTRINSICS)
73
74/*
75 * AES-NI AES-ECB block en(de)cryption
76 */
77int mbedtls_aesni_crypt_ecb(mbedtls_aes_context *ctx,
78 int mode,
79 const unsigned char input[16],
80 unsigned char output[16])
81{
82 const __m128i *rk = (const __m128i *) (ctx->buf + ctx->rk_offset);
83 unsigned nr = ctx->nr; // Number of remaining rounds
Tom Cosgrove02edb752023-03-13 15:32:52 +000084
Gilles Peskined6719172023-03-10 22:37:11 +010085 // Load round key 0
86 __m128i xmm0;
87 memcpy(&xmm0, input, 16);
Tom Cosgrove02edb752023-03-13 15:32:52 +000088 xmm0 = _mm_xor_si128(xmm0, rk[0]); // xmm0 ^= *rk;
Gilles Peskined6719172023-03-10 22:37:11 +010089 ++rk;
90 --nr;
91
92 if (mode == 0) {
93 while (nr != 0) {
94 xmm0 = _mm_aesdec_si128(xmm0, *rk);
95 ++rk;
96 --nr;
97 }
98 xmm0 = _mm_aesdeclast_si128(xmm0, *rk);
99 } else {
100 while (nr != 0) {
101 xmm0 = _mm_aesenc_si128(xmm0, *rk);
102 ++rk;
103 --nr;
104 }
105 xmm0 = _mm_aesenclast_si128(xmm0, *rk);
106 }
107
108 memcpy(output, &xmm0, 16);
109 return 0;
110}
111
112/*
113 * GCM multiplication: c = a times b in GF(2^128)
114 * Based on [CLMUL-WP] algorithms 1 (with equation 27) and 5.
115 */
116
117static void gcm_clmul(const __m128i aa, const __m128i bb,
118 __m128i *cc, __m128i *dd)
119{
120 /*
121 * Caryless multiplication dd:cc = aa * bb
122 * using [CLMUL-WP] algorithm 1 (p. 12).
123 */
124 *cc = _mm_clmulepi64_si128(aa, bb, 0x00); // a0*b0 = c1:c0
125 *dd = _mm_clmulepi64_si128(aa, bb, 0x11); // a1*b1 = d1:d0
126 __m128i ee = _mm_clmulepi64_si128(aa, bb, 0x10); // a0*b1 = e1:e0
127 __m128i ff = _mm_clmulepi64_si128(aa, bb, 0x01); // a1*b0 = f1:f0
Tom Cosgrove02edb752023-03-13 15:32:52 +0000128 ff = _mm_xor_si128(ff, ee); // e1+f1:e0+f0
Gilles Peskined6719172023-03-10 22:37:11 +0100129 ee = ff; // e1+f1:e0+f0
130 ff = _mm_srli_si128(ff, 8); // 0:e1+f1
131 ee = _mm_slli_si128(ee, 8); // e0+f0:0
Tom Cosgrove02edb752023-03-13 15:32:52 +0000132 *dd = _mm_xor_si128(*dd, ff); // d1:d0+e1+f1
133 *cc = _mm_xor_si128(*cc, ee); // c1+e0+f1:c0
Gilles Peskined6719172023-03-10 22:37:11 +0100134}
135
136static void gcm_shift(__m128i *cc, __m128i *dd)
137{
138 /*
139 * Now shift the result one bit to the left,
140 * taking advantage of [CLMUL-WP] eq 27 (p. 18)
141 */
142 // // *cc = r1:r0
143 // // *dd = r3:r2
144 __m128i xmm1 = _mm_slli_epi64(*cc, 1); // r1<<1:r0<<1
145 __m128i xmm2 = _mm_slli_epi64(*dd, 1); // r3<<1:r2<<1
146 __m128i xmm3 = _mm_srli_epi64(*cc, 63); // r1>>63:r0>>63
147 __m128i xmm4 = _mm_srli_epi64(*dd, 63); // r3>>63:r2>>63
148 __m128i xmm5 = _mm_srli_si128(xmm3, 8); // 0:r1>>63
149 xmm3 = _mm_slli_si128(xmm3, 8); // r0>>63:0
150 xmm4 = _mm_slli_si128(xmm4, 8); // 0:r1>>63
151
Tom Cosgrove02edb752023-03-13 15:32:52 +0000152 *cc = _mm_or_si128(xmm1, xmm3); // r1<<1|r0>>63:r0<<1
153 *dd = _mm_or_si128(_mm_or_si128(xmm2, xmm4), xmm5); // r3<<1|r2>>62:r2<<1|r1>>63
Gilles Peskined6719172023-03-10 22:37:11 +0100154}
155
156static __m128i gcm_reduce1(__m128i xx)
157{
158 // // xx = x1:x0
159 /* [CLMUL-WP] Algorithm 5 Step 2 */
160 __m128i aa = _mm_slli_epi64(xx, 63); // x1<<63:x0<<63 = stuff:a
161 __m128i bb = _mm_slli_epi64(xx, 62); // x1<<62:x0<<62 = stuff:b
162 __m128i cc = _mm_slli_epi64(xx, 57); // x1<<57:x0<<57 = stuff:c
Tom Cosgrove02edb752023-03-13 15:32:52 +0000163 __m128i dd = _mm_slli_si128(_mm_xor_si128(_mm_xor_si128(aa, bb), cc), 8); // a+b+c:0
164 return _mm_xor_si128(dd, xx); // x1+a+b+c:x0 = d:x0
Gilles Peskined6719172023-03-10 22:37:11 +0100165}
166
167static __m128i gcm_reduce2(__m128i dx)
168{
169 /* [CLMUL-WP] Algorithm 5 Steps 3 and 4 */
170 __m128i ee = _mm_srli_epi64(dx, 1); // e1:x0>>1 = e1:e0'
171 __m128i ff = _mm_srli_epi64(dx, 2); // f1:x0>>2 = f1:f0'
172 __m128i gg = _mm_srli_epi64(dx, 7); // g1:x0>>7 = g1:g0'
173
174 // e0'+f0'+g0' is almost e0+f0+g0, except for some missing
175 // bits carried from d. Now get those bits back in.
176 __m128i eh = _mm_slli_epi64(dx, 63); // d<<63:stuff
177 __m128i fh = _mm_slli_epi64(dx, 62); // d<<62:stuff
178 __m128i gh = _mm_slli_epi64(dx, 57); // d<<57:stuff
Tom Cosgrove02edb752023-03-13 15:32:52 +0000179 __m128i hh = _mm_srli_si128(_mm_xor_si128(_mm_xor_si128(eh, fh), gh), 8); // 0:missing bits of d
Gilles Peskined6719172023-03-10 22:37:11 +0100180
Tom Cosgrove02edb752023-03-13 15:32:52 +0000181 return _mm_xor_si128(_mm_xor_si128(_mm_xor_si128(_mm_xor_si128(ee, ff), gg), hh), dx);
Gilles Peskined6719172023-03-10 22:37:11 +0100182}
183
184void mbedtls_aesni_gcm_mult(unsigned char c[16],
185 const unsigned char a[16],
186 const unsigned char b[16])
187{
188 __m128i aa, bb, cc, dd;
189
190 /* The inputs are in big-endian order, so byte-reverse them */
191 for (size_t i = 0; i < 16; i++) {
192 ((uint8_t *) &aa)[i] = a[15 - i];
193 ((uint8_t *) &bb)[i] = b[15 - i];
194 }
195
196 gcm_clmul(aa, bb, &cc, &dd);
197 gcm_shift(&cc, &dd);
198 /*
199 * Now reduce modulo the GCM polynomial x^128 + x^7 + x^2 + x + 1
200 * using [CLMUL-WP] algorithm 5 (p. 18).
201 * Currently dd:cc holds x3:x2:x1:x0 (already shifted).
202 */
203 __m128i dx = gcm_reduce1(cc);
204 __m128i xh = gcm_reduce2(dx);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000205 cc = _mm_xor_si128(xh, dd); // x3+h1:x2+h0
Gilles Peskined6719172023-03-10 22:37:11 +0100206
207 /* Now byte-reverse the outputs */
208 for (size_t i = 0; i < 16; i++) {
209 c[i] = ((uint8_t *) &cc)[15 - i];
210 }
211
212 return;
213}
214
215/*
216 * Compute decryption round keys from encryption round keys
217 */
218void mbedtls_aesni_inverse_key(unsigned char *invkey,
219 const unsigned char *fwdkey, int nr)
220{
221 __m128i *ik = (__m128i *) invkey;
222 const __m128i *fk = (const __m128i *) fwdkey + nr;
223
224 *ik = *fk;
225 for (--fk, ++ik; fk > (const __m128i *) fwdkey; --fk, ++ik) {
226 *ik = _mm_aesimc_si128(*fk);
227 }
228 *ik = *fk;
229}
230
231/*
232 * Key expansion, 128-bit case
233 */
234static __m128i aesni_set_rk_128(__m128i xmm0, __m128i xmm1)
235{
236 /*
237 * Finish generating the next round key.
238 *
239 * On entry xmm0 is r3:r2:r1:r0 and xmm1 is X:stuff:stuff:stuff
240 * with X = rot( sub( r3 ) ) ^ RCON.
241 *
242 * On exit, xmm1 is r7:r6:r5:r4
243 * with r4 = X + r0, r5 = r4 + r1, r6 = r5 + r2, r7 = r6 + r3
244 * and this is returned, to be written to the round key buffer.
245 */
246 xmm1 = _mm_shuffle_epi32(xmm1, 0xff); // X:X:X:X
Tom Cosgrove02edb752023-03-13 15:32:52 +0000247 xmm1 = _mm_xor_si128(xmm1, xmm0); // X+r3:X+r2:X+r1:r4
Gilles Peskined6719172023-03-10 22:37:11 +0100248 xmm0 = _mm_slli_si128(xmm0, 4); // r2:r1:r0:0
Tom Cosgrove02edb752023-03-13 15:32:52 +0000249 xmm1 = _mm_xor_si128(xmm1, xmm0); // X+r3+r2:X+r2+r1:r5:r4
Gilles Peskined6719172023-03-10 22:37:11 +0100250 xmm0 = _mm_slli_si128(xmm0, 4); // r1:r0:0:0
Tom Cosgrove02edb752023-03-13 15:32:52 +0000251 xmm1 = _mm_xor_si128(xmm1, xmm0); // X+r3+r2+r1:r6:r5:r4
Gilles Peskined6719172023-03-10 22:37:11 +0100252 xmm0 = _mm_slli_si128(xmm0, 4); // r0:0:0:0
Tom Cosgrove02edb752023-03-13 15:32:52 +0000253 xmm1 = _mm_xor_si128(xmm1, xmm0); // r7:r6:r5:r4
Gilles Peskined6719172023-03-10 22:37:11 +0100254 return xmm1;
255}
256
257static void aesni_setkey_enc_128(unsigned char *rk_bytes,
258 const unsigned char *key)
259{
260 __m128i *rk = (__m128i *) rk_bytes;
261
262 memcpy(&rk[0], key, 16);
263 rk[1] = aesni_set_rk_128(rk[0], _mm_aeskeygenassist_si128(rk[0], 0x01));
264 rk[2] = aesni_set_rk_128(rk[1], _mm_aeskeygenassist_si128(rk[1], 0x02));
265 rk[3] = aesni_set_rk_128(rk[2], _mm_aeskeygenassist_si128(rk[2], 0x04));
266 rk[4] = aesni_set_rk_128(rk[3], _mm_aeskeygenassist_si128(rk[3], 0x08));
267 rk[5] = aesni_set_rk_128(rk[4], _mm_aeskeygenassist_si128(rk[4], 0x10));
268 rk[6] = aesni_set_rk_128(rk[5], _mm_aeskeygenassist_si128(rk[5], 0x20));
269 rk[7] = aesni_set_rk_128(rk[6], _mm_aeskeygenassist_si128(rk[6], 0x40));
270 rk[8] = aesni_set_rk_128(rk[7], _mm_aeskeygenassist_si128(rk[7], 0x80));
271 rk[9] = aesni_set_rk_128(rk[8], _mm_aeskeygenassist_si128(rk[8], 0x1B));
272 rk[10] = aesni_set_rk_128(rk[9], _mm_aeskeygenassist_si128(rk[9], 0x36));
273}
274
275/*
276 * Key expansion, 192-bit case
277 */
278static void aesni_set_rk_192(__m128i *xmm0, __m128i *xmm1, __m128i xmm2,
279 unsigned char *rk)
280{
281 /*
282 * Finish generating the next 6 quarter-keys.
283 *
284 * On entry xmm0 is r3:r2:r1:r0, xmm1 is stuff:stuff:r5:r4
285 * and xmm2 is stuff:stuff:X:stuff with X = rot( sub( r3 ) ) ^ RCON.
286 *
287 * On exit, xmm0 is r9:r8:r7:r6 and xmm1 is stuff:stuff:r11:r10
288 * and those are written to the round key buffer.
289 */
290 xmm2 = _mm_shuffle_epi32(xmm2, 0x55); // X:X:X:X
291 xmm2 = _mm_xor_si128(xmm2, *xmm0); // X+r3:X+r2:X+r1:X+r0
292 *xmm0 = _mm_slli_si128(*xmm0, 4); // r2:r1:r0:0
293 xmm2 = _mm_xor_si128(xmm2, *xmm0); // X+r3+r2:X+r2+r1:X+r1+r0:X+r0
294 *xmm0 = _mm_slli_si128(*xmm0, 4); // r1:r0:0:0
295 xmm2 = _mm_xor_si128(xmm2, *xmm0); // X+r3+r2+r1:X+r2+r1+r0:X+r1+r0:X+r0
296 *xmm0 = _mm_slli_si128(*xmm0, 4); // r0:0:0:0
297 xmm2 = _mm_xor_si128(xmm2, *xmm0); // X+r3+r2+r1+r0:X+r2+r1+r0:X+r1+r0:X+r0
298 *xmm0 = xmm2; // = r9:r8:r7:r6
299
300 xmm2 = _mm_shuffle_epi32(xmm2, 0xff); // r9:r9:r9:r9
301 xmm2 = _mm_xor_si128(xmm2, *xmm1); // stuff:stuff:r9+r5:r9+r4
302 *xmm1 = _mm_slli_si128(*xmm1, 4); // stuff:stuff:r4:0
303 xmm2 = _mm_xor_si128(xmm2, *xmm1); // stuff:stuff:r9+r5+r4:r9+r4
304 *xmm1 = xmm2; // = stuff:stuff:r11:r10
305
306 /* Store xmm0 and the low half of xmm1 into rk, which is conceptually
307 * an array of 24-byte elements. Since 24 is not a multiple of 16,
308 * rk is not necessarily aligned so just `*rk = *xmm0` doesn't work. */
309 memcpy(rk, xmm0, 16);
310 _mm_storeu_si64(rk + 16, *xmm1);
311}
312
313static void aesni_setkey_enc_192(unsigned char *rk,
314 const unsigned char *key)
315{
316 /* First round: use original key */
317 memcpy(rk, key, 24);
318 /* aes.c guarantees that rk is aligned on a 16-byte boundary. */
319 __m128i xmm0 = ((__m128i *) rk)[0];
320 __m128i xmm1 = _mm_loadl_epi64(((__m128i *) rk) + 1);
321
322 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x01), rk + 24 * 1);
323 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x02), rk + 24 * 2);
324 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x04), rk + 24 * 3);
325 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x08), rk + 24 * 4);
326 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x10), rk + 24 * 5);
327 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x20), rk + 24 * 6);
328 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x40), rk + 24 * 7);
329 aesni_set_rk_192(&xmm0, &xmm1, _mm_aeskeygenassist_si128(xmm1, 0x80), rk + 24 * 8);
330}
331
332/*
333 * Key expansion, 256-bit case
334 */
335static void aesni_set_rk_256(__m128i xmm0, __m128i xmm1, __m128i xmm2,
336 __m128i *rk0, __m128i *rk1)
337{
338 /*
339 * Finish generating the next two round keys.
340 *
341 * On entry xmm0 is r3:r2:r1:r0, xmm1 is r7:r6:r5:r4 and
342 * xmm2 is X:stuff:stuff:stuff with X = rot( sub( r7 )) ^ RCON
343 *
344 * On exit, *rk0 is r11:r10:r9:r8 and *rk1 is r15:r14:r13:r12
345 */
346 xmm2 = _mm_shuffle_epi32(xmm2, 0xff);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000347 xmm2 = _mm_xor_si128(xmm2, xmm0);
Gilles Peskined6719172023-03-10 22:37:11 +0100348 xmm0 = _mm_slli_si128(xmm0, 4);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000349 xmm2 = _mm_xor_si128(xmm2, xmm0);
Gilles Peskined6719172023-03-10 22:37:11 +0100350 xmm0 = _mm_slli_si128(xmm0, 4);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000351 xmm2 = _mm_xor_si128(xmm2, xmm0);
Gilles Peskined6719172023-03-10 22:37:11 +0100352 xmm0 = _mm_slli_si128(xmm0, 4);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000353 xmm0 = _mm_xor_si128(xmm0, xmm2);
Gilles Peskined6719172023-03-10 22:37:11 +0100354 *rk0 = xmm0;
355
356 /* Set xmm2 to stuff:Y:stuff:stuff with Y = subword( r11 )
357 * and proceed to generate next round key from there */
358 xmm2 = _mm_aeskeygenassist_si128(xmm0, 0x00);
359 xmm2 = _mm_shuffle_epi32(xmm2, 0xaa);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000360 xmm2 = _mm_xor_si128(xmm2, xmm1);
Gilles Peskined6719172023-03-10 22:37:11 +0100361 xmm1 = _mm_slli_si128(xmm1, 4);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000362 xmm2 = _mm_xor_si128(xmm2, xmm1);
Gilles Peskined6719172023-03-10 22:37:11 +0100363 xmm1 = _mm_slli_si128(xmm1, 4);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000364 xmm2 = _mm_xor_si128(xmm2, xmm1);
Gilles Peskined6719172023-03-10 22:37:11 +0100365 xmm1 = _mm_slli_si128(xmm1, 4);
Tom Cosgrove02edb752023-03-13 15:32:52 +0000366 xmm1 = _mm_xor_si128(xmm1, xmm2);
Gilles Peskined6719172023-03-10 22:37:11 +0100367 *rk1 = xmm1;
368}
369
370static void aesni_setkey_enc_256(unsigned char *rk_bytes,
371 const unsigned char *key)
372{
373 __m128i *rk = (__m128i *) rk_bytes;
374
375 memcpy(&rk[0], key, 16);
376 memcpy(&rk[1], key + 16, 16);
377
378 /*
379 * Main "loop" - Generating one more key than necessary,
380 * see definition of mbedtls_aes_context.buf
381 */
382 aesni_set_rk_256(rk[0], rk[1], _mm_aeskeygenassist_si128(rk[1], 0x01), &rk[2], &rk[3]);
383 aesni_set_rk_256(rk[2], rk[3], _mm_aeskeygenassist_si128(rk[3], 0x02), &rk[4], &rk[5]);
384 aesni_set_rk_256(rk[4], rk[5], _mm_aeskeygenassist_si128(rk[5], 0x04), &rk[6], &rk[7]);
385 aesni_set_rk_256(rk[6], rk[7], _mm_aeskeygenassist_si128(rk[7], 0x08), &rk[8], &rk[9]);
386 aesni_set_rk_256(rk[8], rk[9], _mm_aeskeygenassist_si128(rk[9], 0x10), &rk[10], &rk[11]);
387 aesni_set_rk_256(rk[10], rk[11], _mm_aeskeygenassist_si128(rk[11], 0x20), &rk[12], &rk[13]);
388 aesni_set_rk_256(rk[12], rk[13], _mm_aeskeygenassist_si128(rk[13], 0x40), &rk[14], &rk[15]);
389}
390
391#else /* MBEDTLS_HAVE_AESNI_INTRINSICS */
392
Gilles Peskined0f9b0b2023-03-10 22:25:13 +0100393#if defined(__has_feature)
394#if __has_feature(memory_sanitizer)
395#warning \
396 "MBEDTLS_AESNI_C is known to cause spurious error reports with some memory sanitizers as they do not understand the assembly code."
397#endif
398#endif
399
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100400/*
Manuel Pégourié-Gonnardb1fd3972014-04-26 17:17:31 +0200401 * Binutils needs to be at least 2.19 to support AES-NI instructions.
402 * Unfortunately, a lot of users have a lower version now (2014-04).
403 * Emit bytecode directly in order to support "old" version of gas.
404 *
405 * Opcodes from the Intel architecture reference manual, vol. 3.
406 * We always use registers, so we don't need prefixes for memory operands.
407 * Operand macros are in gas order (src, dst) as opposed to Intel order
408 * (dst, src) in order to blend better into the surrounding assembly code.
409 */
Gilles Peskine4e201442023-03-15 19:36:03 +0100410#define AESDEC(regs) ".byte 0x66,0x0F,0x38,0xDE," regs "\n\t"
411#define AESDECLAST(regs) ".byte 0x66,0x0F,0x38,0xDF," regs "\n\t"
412#define AESENC(regs) ".byte 0x66,0x0F,0x38,0xDC," regs "\n\t"
413#define AESENCLAST(regs) ".byte 0x66,0x0F,0x38,0xDD," regs "\n\t"
414#define AESIMC(regs) ".byte 0x66,0x0F,0x38,0xDB," regs "\n\t"
415#define AESKEYGENA(regs, imm) ".byte 0x66,0x0F,0x3A,0xDF," regs "," imm "\n\t"
416#define PCLMULQDQ(regs, imm) ".byte 0x66,0x0F,0x3A,0x44," regs "," imm "\n\t"
Manuel Pégourié-Gonnardb1fd3972014-04-26 17:17:31 +0200417
418#define xmm0_xmm0 "0xC0"
419#define xmm0_xmm1 "0xC8"
420#define xmm0_xmm2 "0xD0"
421#define xmm0_xmm3 "0xD8"
422#define xmm0_xmm4 "0xE0"
423#define xmm1_xmm0 "0xC1"
424#define xmm1_xmm2 "0xD1"
425
426/*
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100427 * AES-NI AES-ECB block en(de)cryption
428 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100429int mbedtls_aesni_crypt_ecb(mbedtls_aes_context *ctx,
430 int mode,
431 const unsigned char input[16],
432 unsigned char output[16])
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100433{
Gilles Peskine449bd832023-01-11 14:50:10 +0100434 asm ("movdqu (%3), %%xmm0 \n\t" // load input
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200435 "movdqu (%1), %%xmm1 \n\t" // load round key 0
436 "pxor %%xmm1, %%xmm0 \n\t" // round 0
James Cowgill6c8edca2015-12-17 01:40:26 +0000437 "add $16, %1 \n\t" // point to next round key
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200438 "subl $1, %0 \n\t" // normal rounds = nr - 1
439 "test %2, %2 \n\t" // mode?
440 "jz 2f \n\t" // 0 = decrypt
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100441
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200442 "1: \n\t" // encryption loop
443 "movdqu (%1), %%xmm1 \n\t" // load round key
Gilles Peskine4e201442023-03-15 19:36:03 +0100444 AESENC(xmm1_xmm0) // do round
445 "add $16, %1 \n\t" // point to next round key
446 "subl $1, %0 \n\t" // loop
447 "jnz 1b \n\t"
448 "movdqu (%1), %%xmm1 \n\t" // load round key
449 AESENCLAST(xmm1_xmm0) // last round
450 "jmp 3f \n\t"
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100451
Gilles Peskine4e201442023-03-15 19:36:03 +0100452 "2: \n\t" // decryption loop
453 "movdqu (%1), %%xmm1 \n\t"
454 AESDEC(xmm1_xmm0) // do round
455 "add $16, %1 \n\t"
456 "subl $1, %0 \n\t"
457 "jnz 2b \n\t"
458 "movdqu (%1), %%xmm1 \n\t" // load round key
459 AESDECLAST(xmm1_xmm0) // last round
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100460
Gilles Peskine4e201442023-03-15 19:36:03 +0100461 "3: \n\t"
462 "movdqu %%xmm0, (%4) \n\t" // export output
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100463 :
Werner Lewisdd76ef32022-05-30 12:00:21 +0100464 : "r" (ctx->nr), "r" (ctx->buf + ctx->rk_offset), "r" (mode), "r" (input), "r" (output)
Gilles Peskine449bd832023-01-11 14:50:10 +0100465 : "memory", "cc", "xmm0", "xmm1");
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100466
467
Gilles Peskine449bd832023-01-11 14:50:10 +0100468 return 0;
Manuel Pégourié-Gonnard5b685652013-12-18 11:45:21 +0100469}
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100470
471/*
472 * GCM multiplication: c = a times b in GF(2^128)
473 * Based on [CLMUL-WP] algorithms 1 (with equation 27) and 5.
474 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100475void mbedtls_aesni_gcm_mult(unsigned char c[16],
476 const unsigned char a[16],
477 const unsigned char b[16])
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100478{
479 unsigned char aa[16], bb[16], cc[16];
480 size_t i;
481
482 /* The inputs are in big-endian order, so byte-reverse them */
Gilles Peskine449bd832023-01-11 14:50:10 +0100483 for (i = 0; i < 16; i++) {
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100484 aa[i] = a[15 - i];
485 bb[i] = b[15 - i];
486 }
487
Gilles Peskine449bd832023-01-11 14:50:10 +0100488 asm ("movdqu (%0), %%xmm0 \n\t" // a1:a0
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200489 "movdqu (%1), %%xmm1 \n\t" // b1:b0
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100490
491 /*
492 * Caryless multiplication xmm2:xmm1 = xmm0 * xmm1
Gilles Peskined4f31c82023-03-10 22:21:47 +0100493 * using [CLMUL-WP] algorithm 1 (p. 12).
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100494 */
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200495 "movdqa %%xmm1, %%xmm2 \n\t" // copy of b1:b0
496 "movdqa %%xmm1, %%xmm3 \n\t" // same
497 "movdqa %%xmm1, %%xmm4 \n\t" // same
Gilles Peskine4e201442023-03-15 19:36:03 +0100498 PCLMULQDQ(xmm0_xmm1, "0x00") // a0*b0 = c1:c0
499 PCLMULQDQ(xmm0_xmm2, "0x11") // a1*b1 = d1:d0
500 PCLMULQDQ(xmm0_xmm3, "0x10") // a0*b1 = e1:e0
501 PCLMULQDQ(xmm0_xmm4, "0x01") // a1*b0 = f1:f0
502 "pxor %%xmm3, %%xmm4 \n\t" // e1+f1:e0+f0
503 "movdqa %%xmm4, %%xmm3 \n\t" // same
504 "psrldq $8, %%xmm4 \n\t" // 0:e1+f1
505 "pslldq $8, %%xmm3 \n\t" // e0+f0:0
506 "pxor %%xmm4, %%xmm2 \n\t" // d1:d0+e1+f1
507 "pxor %%xmm3, %%xmm1 \n\t" // c1+e0+f1:c0
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100508
509 /*
510 * Now shift the result one bit to the left,
Gilles Peskined4f31c82023-03-10 22:21:47 +0100511 * taking advantage of [CLMUL-WP] eq 27 (p. 18)
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100512 */
Gilles Peskine4e201442023-03-15 19:36:03 +0100513 "movdqa %%xmm1, %%xmm3 \n\t" // r1:r0
514 "movdqa %%xmm2, %%xmm4 \n\t" // r3:r2
515 "psllq $1, %%xmm1 \n\t" // r1<<1:r0<<1
516 "psllq $1, %%xmm2 \n\t" // r3<<1:r2<<1
517 "psrlq $63, %%xmm3 \n\t" // r1>>63:r0>>63
518 "psrlq $63, %%xmm4 \n\t" // r3>>63:r2>>63
519 "movdqa %%xmm3, %%xmm5 \n\t" // r1>>63:r0>>63
520 "pslldq $8, %%xmm3 \n\t" // r0>>63:0
521 "pslldq $8, %%xmm4 \n\t" // r2>>63:0
522 "psrldq $8, %%xmm5 \n\t" // 0:r1>>63
523 "por %%xmm3, %%xmm1 \n\t" // r1<<1|r0>>63:r0<<1
524 "por %%xmm4, %%xmm2 \n\t" // r3<<1|r2>>62:r2<<1
525 "por %%xmm5, %%xmm2 \n\t" // r3<<1|r2>>62:r2<<1|r1>>63
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100526
527 /*
528 * Now reduce modulo the GCM polynomial x^128 + x^7 + x^2 + x + 1
Gilles Peskined4f31c82023-03-10 22:21:47 +0100529 * using [CLMUL-WP] algorithm 5 (p. 18).
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100530 * Currently xmm2:xmm1 holds x3:x2:x1:x0 (already shifted).
531 */
532 /* Step 2 (1) */
Gilles Peskine4e201442023-03-15 19:36:03 +0100533 "movdqa %%xmm1, %%xmm3 \n\t" // x1:x0
534 "movdqa %%xmm1, %%xmm4 \n\t" // same
535 "movdqa %%xmm1, %%xmm5 \n\t" // same
536 "psllq $63, %%xmm3 \n\t" // x1<<63:x0<<63 = stuff:a
537 "psllq $62, %%xmm4 \n\t" // x1<<62:x0<<62 = stuff:b
538 "psllq $57, %%xmm5 \n\t" // x1<<57:x0<<57 = stuff:c
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100539
540 /* Step 2 (2) */
Gilles Peskine4e201442023-03-15 19:36:03 +0100541 "pxor %%xmm4, %%xmm3 \n\t" // stuff:a+b
542 "pxor %%xmm5, %%xmm3 \n\t" // stuff:a+b+c
543 "pslldq $8, %%xmm3 \n\t" // a+b+c:0
544 "pxor %%xmm3, %%xmm1 \n\t" // x1+a+b+c:x0 = d:x0
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100545
546 /* Steps 3 and 4 */
Gilles Peskine4e201442023-03-15 19:36:03 +0100547 "movdqa %%xmm1,%%xmm0 \n\t" // d:x0
548 "movdqa %%xmm1,%%xmm4 \n\t" // same
549 "movdqa %%xmm1,%%xmm5 \n\t" // same
550 "psrlq $1, %%xmm0 \n\t" // e1:x0>>1 = e1:e0'
551 "psrlq $2, %%xmm4 \n\t" // f1:x0>>2 = f1:f0'
552 "psrlq $7, %%xmm5 \n\t" // g1:x0>>7 = g1:g0'
553 "pxor %%xmm4, %%xmm0 \n\t" // e1+f1:e0'+f0'
554 "pxor %%xmm5, %%xmm0 \n\t" // e1+f1+g1:e0'+f0'+g0'
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200555 // e0'+f0'+g0' is almost e0+f0+g0, ex\tcept for some missing
556 // bits carried from d. Now get those\t bits back in.
Gilles Peskine4e201442023-03-15 19:36:03 +0100557 "movdqa %%xmm1,%%xmm3 \n\t" // d:x0
558 "movdqa %%xmm1,%%xmm4 \n\t" // same
559 "movdqa %%xmm1,%%xmm5 \n\t" // same
560 "psllq $63, %%xmm3 \n\t" // d<<63:stuff
561 "psllq $62, %%xmm4 \n\t" // d<<62:stuff
562 "psllq $57, %%xmm5 \n\t" // d<<57:stuff
563 "pxor %%xmm4, %%xmm3 \n\t" // d<<63+d<<62:stuff
564 "pxor %%xmm5, %%xmm3 \n\t" // missing bits of d:stuff
565 "psrldq $8, %%xmm3 \n\t" // 0:missing bits of d
566 "pxor %%xmm3, %%xmm0 \n\t" // e1+f1+g1:e0+f0+g0
567 "pxor %%xmm1, %%xmm0 \n\t" // h1:h0
568 "pxor %%xmm2, %%xmm0 \n\t" // x3+h1:x2+h0
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100569
Gilles Peskine4e201442023-03-15 19:36:03 +0100570 "movdqu %%xmm0, (%2) \n\t" // done
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100571 :
572 : "r" (aa), "r" (bb), "r" (cc)
Gilles Peskine449bd832023-01-11 14:50:10 +0100573 : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5");
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100574
575 /* Now byte-reverse the outputs */
Gilles Peskine449bd832023-01-11 14:50:10 +0100576 for (i = 0; i < 16; i++) {
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100577 c[i] = cc[15 - i];
Gilles Peskine449bd832023-01-11 14:50:10 +0100578 }
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100579
Paul Bakkere7f51332013-12-30 15:32:02 +0100580 return;
Manuel Pégourié-Gonnardd333f672013-12-26 11:44:46 +0100581}
582
Manuel Pégourié-Gonnard01e31bb2013-12-28 15:58:30 +0100583/*
584 * Compute decryption round keys from encryption round keys
585 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100586void mbedtls_aesni_inverse_key(unsigned char *invkey,
587 const unsigned char *fwdkey, int nr)
Manuel Pégourié-Gonnard01e31bb2013-12-28 15:58:30 +0100588{
589 unsigned char *ik = invkey;
590 const unsigned char *fk = fwdkey + 16 * nr;
591
Gilles Peskine449bd832023-01-11 14:50:10 +0100592 memcpy(ik, fk, 16);
Manuel Pégourié-Gonnard01e31bb2013-12-28 15:58:30 +0100593
Gilles Peskine449bd832023-01-11 14:50:10 +0100594 for (fk -= 16, ik += 16; fk > fwdkey; fk -= 16, ik += 16) {
595 asm ("movdqu (%0), %%xmm0 \n\t"
Gilles Peskine4e201442023-03-15 19:36:03 +0100596 AESIMC(xmm0_xmm0)
597 "movdqu %%xmm0, (%1) \n\t"
Manuel Pégourié-Gonnard01e31bb2013-12-28 15:58:30 +0100598 :
599 : "r" (fk), "r" (ik)
Gilles Peskine449bd832023-01-11 14:50:10 +0100600 : "memory", "xmm0");
601 }
Manuel Pégourié-Gonnard01e31bb2013-12-28 15:58:30 +0100602
Gilles Peskine449bd832023-01-11 14:50:10 +0100603 memcpy(ik, fk, 16);
Manuel Pégourié-Gonnard01e31bb2013-12-28 15:58:30 +0100604}
605
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100606/*
607 * Key expansion, 128-bit case
608 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100609static void aesni_setkey_enc_128(unsigned char *rk,
610 const unsigned char *key)
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100611{
Gilles Peskine449bd832023-01-11 14:50:10 +0100612 asm ("movdqu (%1), %%xmm0 \n\t" // copy the original key
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200613 "movdqu %%xmm0, (%0) \n\t" // as round key 0
614 "jmp 2f \n\t" // skip auxiliary routine
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100615
616 /*
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100617 * Finish generating the next round key.
618 *
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100619 * On entry xmm0 is r3:r2:r1:r0 and xmm1 is X:stuff:stuff:stuff
620 * with X = rot( sub( r3 ) ) ^ RCON.
621 *
622 * On exit, xmm0 is r7:r6:r5:r4
623 * with r4 = X + r0, r5 = r4 + r1, r6 = r5 + r2, r7 = r6 + r3
624 * and those are written to the round key buffer.
625 */
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200626 "1: \n\t"
627 "pshufd $0xff, %%xmm1, %%xmm1 \n\t" // X:X:X:X
628 "pxor %%xmm0, %%xmm1 \n\t" // X+r3:X+r2:X+r1:r4
629 "pslldq $4, %%xmm0 \n\t" // r2:r1:r0:0
630 "pxor %%xmm0, %%xmm1 \n\t" // X+r3+r2:X+r2+r1:r5:r4
631 "pslldq $4, %%xmm0 \n\t" // etc
632 "pxor %%xmm0, %%xmm1 \n\t"
633 "pslldq $4, %%xmm0 \n\t"
634 "pxor %%xmm1, %%xmm0 \n\t" // update xmm0 for next time!
635 "add $16, %0 \n\t" // point to next round key
636 "movdqu %%xmm0, (%0) \n\t" // write it
637 "ret \n\t"
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100638
639 /* Main "loop" */
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200640 "2: \n\t"
Gilles Peskine4e201442023-03-15 19:36:03 +0100641 AESKEYGENA(xmm0_xmm1, "0x01") "call 1b \n\t"
642 AESKEYGENA(xmm0_xmm1, "0x02") "call 1b \n\t"
643 AESKEYGENA(xmm0_xmm1, "0x04") "call 1b \n\t"
644 AESKEYGENA(xmm0_xmm1, "0x08") "call 1b \n\t"
645 AESKEYGENA(xmm0_xmm1, "0x10") "call 1b \n\t"
646 AESKEYGENA(xmm0_xmm1, "0x20") "call 1b \n\t"
647 AESKEYGENA(xmm0_xmm1, "0x40") "call 1b \n\t"
648 AESKEYGENA(xmm0_xmm1, "0x80") "call 1b \n\t"
649 AESKEYGENA(xmm0_xmm1, "0x1B") "call 1b \n\t"
650 AESKEYGENA(xmm0_xmm1, "0x36") "call 1b \n\t"
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100651 :
652 : "r" (rk), "r" (key)
Gilles Peskine449bd832023-01-11 14:50:10 +0100653 : "memory", "cc", "0");
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100654}
655
656/*
Manuel Pégourié-Gonnard23c2f6f2013-12-29 16:05:22 +0100657 * Key expansion, 192-bit case
658 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100659static void aesni_setkey_enc_192(unsigned char *rk,
660 const unsigned char *key)
Manuel Pégourié-Gonnard23c2f6f2013-12-29 16:05:22 +0100661{
Gilles Peskine449bd832023-01-11 14:50:10 +0100662 asm ("movdqu (%1), %%xmm0 \n\t" // copy original round key
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200663 "movdqu %%xmm0, (%0) \n\t"
664 "add $16, %0 \n\t"
665 "movq 16(%1), %%xmm1 \n\t"
666 "movq %%xmm1, (%0) \n\t"
667 "add $8, %0 \n\t"
668 "jmp 2f \n\t" // skip auxiliary routine
Manuel Pégourié-Gonnard23c2f6f2013-12-29 16:05:22 +0100669
670 /*
671 * Finish generating the next 6 quarter-keys.
672 *
673 * On entry xmm0 is r3:r2:r1:r0, xmm1 is stuff:stuff:r5:r4
674 * and xmm2 is stuff:stuff:X:stuff with X = rot( sub( r3 ) ) ^ RCON.
675 *
676 * On exit, xmm0 is r9:r8:r7:r6 and xmm1 is stuff:stuff:r11:r10
677 * and those are written to the round key buffer.
678 */
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200679 "1: \n\t"
680 "pshufd $0x55, %%xmm2, %%xmm2 \n\t" // X:X:X:X
681 "pxor %%xmm0, %%xmm2 \n\t" // X+r3:X+r2:X+r1:r4
682 "pslldq $4, %%xmm0 \n\t" // etc
683 "pxor %%xmm0, %%xmm2 \n\t"
684 "pslldq $4, %%xmm0 \n\t"
685 "pxor %%xmm0, %%xmm2 \n\t"
686 "pslldq $4, %%xmm0 \n\t"
687 "pxor %%xmm2, %%xmm0 \n\t" // update xmm0 = r9:r8:r7:r6
688 "movdqu %%xmm0, (%0) \n\t"
689 "add $16, %0 \n\t"
690 "pshufd $0xff, %%xmm0, %%xmm2 \n\t" // r9:r9:r9:r9
691 "pxor %%xmm1, %%xmm2 \n\t" // stuff:stuff:r9+r5:r10
692 "pslldq $4, %%xmm1 \n\t" // r2:r1:r0:0
693 "pxor %%xmm2, %%xmm1 \n\t" // xmm1 = stuff:stuff:r11:r10
694 "movq %%xmm1, (%0) \n\t"
695 "add $8, %0 \n\t"
696 "ret \n\t"
Manuel Pégourié-Gonnard23c2f6f2013-12-29 16:05:22 +0100697
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200698 "2: \n\t"
Gilles Peskine4e201442023-03-15 19:36:03 +0100699 AESKEYGENA(xmm1_xmm2, "0x01") "call 1b \n\t"
700 AESKEYGENA(xmm1_xmm2, "0x02") "call 1b \n\t"
701 AESKEYGENA(xmm1_xmm2, "0x04") "call 1b \n\t"
702 AESKEYGENA(xmm1_xmm2, "0x08") "call 1b \n\t"
703 AESKEYGENA(xmm1_xmm2, "0x10") "call 1b \n\t"
704 AESKEYGENA(xmm1_xmm2, "0x20") "call 1b \n\t"
705 AESKEYGENA(xmm1_xmm2, "0x40") "call 1b \n\t"
706 AESKEYGENA(xmm1_xmm2, "0x80") "call 1b \n\t"
Manuel Pégourié-Gonnard23c2f6f2013-12-29 16:05:22 +0100707
708 :
709 : "r" (rk), "r" (key)
Gilles Peskine449bd832023-01-11 14:50:10 +0100710 : "memory", "cc", "0");
Manuel Pégourié-Gonnard23c2f6f2013-12-29 16:05:22 +0100711}
712
713/*
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100714 * Key expansion, 256-bit case
715 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100716static void aesni_setkey_enc_256(unsigned char *rk,
717 const unsigned char *key)
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100718{
Gilles Peskine449bd832023-01-11 14:50:10 +0100719 asm ("movdqu (%1), %%xmm0 \n\t"
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200720 "movdqu %%xmm0, (%0) \n\t"
721 "add $16, %0 \n\t"
722 "movdqu 16(%1), %%xmm1 \n\t"
723 "movdqu %%xmm1, (%0) \n\t"
724 "jmp 2f \n\t" // skip auxiliary routine
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100725
726 /*
727 * Finish generating the next two round keys.
728 *
729 * On entry xmm0 is r3:r2:r1:r0, xmm1 is r7:r6:r5:r4 and
730 * xmm2 is X:stuff:stuff:stuff with X = rot( sub( r7 )) ^ RCON
731 *
732 * On exit, xmm0 is r11:r10:r9:r8 and xmm1 is r15:r14:r13:r12
733 * and those have been written to the output buffer.
734 */
Manuel Pégourié-Gonnard0534fd42014-06-23 12:35:42 +0200735 "1: \n\t"
736 "pshufd $0xff, %%xmm2, %%xmm2 \n\t"
737 "pxor %%xmm0, %%xmm2 \n\t"
738 "pslldq $4, %%xmm0 \n\t"
739 "pxor %%xmm0, %%xmm2 \n\t"
740 "pslldq $4, %%xmm0 \n\t"
741 "pxor %%xmm0, %%xmm2 \n\t"
742 "pslldq $4, %%xmm0 \n\t"
743 "pxor %%xmm2, %%xmm0 \n\t"
744 "add $16, %0 \n\t"
745 "movdqu %%xmm0, (%0) \n\t"
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100746
747 /* Set xmm2 to stuff:Y:stuff:stuff with Y = subword( r11 )
748 * and proceed to generate next round key from there */
Gilles Peskine4e201442023-03-15 19:36:03 +0100749 AESKEYGENA(xmm0_xmm2, "0x00")
750 "pshufd $0xaa, %%xmm2, %%xmm2 \n\t"
751 "pxor %%xmm1, %%xmm2 \n\t"
752 "pslldq $4, %%xmm1 \n\t"
753 "pxor %%xmm1, %%xmm2 \n\t"
754 "pslldq $4, %%xmm1 \n\t"
755 "pxor %%xmm1, %%xmm2 \n\t"
756 "pslldq $4, %%xmm1 \n\t"
757 "pxor %%xmm2, %%xmm1 \n\t"
758 "add $16, %0 \n\t"
759 "movdqu %%xmm1, (%0) \n\t"
760 "ret \n\t"
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100761
762 /*
763 * Main "loop" - Generating one more key than necessary,
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +0200764 * see definition of mbedtls_aes_context.buf
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100765 */
Gilles Peskine4e201442023-03-15 19:36:03 +0100766 "2: \n\t"
767 AESKEYGENA(xmm1_xmm2, "0x01") "call 1b \n\t"
768 AESKEYGENA(xmm1_xmm2, "0x02") "call 1b \n\t"
769 AESKEYGENA(xmm1_xmm2, "0x04") "call 1b \n\t"
770 AESKEYGENA(xmm1_xmm2, "0x08") "call 1b \n\t"
771 AESKEYGENA(xmm1_xmm2, "0x10") "call 1b \n\t"
772 AESKEYGENA(xmm1_xmm2, "0x20") "call 1b \n\t"
773 AESKEYGENA(xmm1_xmm2, "0x40") "call 1b \n\t"
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100774 :
775 : "r" (rk), "r" (key)
Gilles Peskine449bd832023-01-11 14:50:10 +0100776 : "memory", "cc", "0");
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100777}
778
Gilles Peskined6719172023-03-10 22:37:11 +0100779#endif /* MBEDTLS_HAVE_AESNI_INTRINSICS */
780
Manuel Pégourié-Gonnard4a5b9952013-12-29 13:50:32 +0100781/*
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100782 * Key expansion, wrapper
783 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100784int mbedtls_aesni_setkey_enc(unsigned char *rk,
785 const unsigned char *key,
786 size_t bits)
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100787{
Gilles Peskine449bd832023-01-11 14:50:10 +0100788 switch (bits) {
789 case 128: aesni_setkey_enc_128(rk, key); break;
790 case 192: aesni_setkey_enc_192(rk, key); break;
791 case 256: aesni_setkey_enc_256(rk, key); break;
792 default: return MBEDTLS_ERR_AES_INVALID_KEY_LENGTH;
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100793 }
794
Gilles Peskine449bd832023-01-11 14:50:10 +0100795 return 0;
Manuel Pégourié-Gonnard47a35362013-12-28 20:45:04 +0100796}
797
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +0200798#endif /* MBEDTLS_HAVE_X86_64 */
Manuel Pégourié-Gonnard92ac76f2013-12-16 17:12:53 +0100799
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +0200800#endif /* MBEDTLS_AESNI_C */