crypto: Add aesenc_SB_SR_AK
Start adding infrastructure for accelerating guest AES. Begin with a SubBytes + ShiftRows + AddRoundKey primitive. Acked-by: Daniel P. Berrangé <berrange@redhat.com> Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
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@ -3224,6 +3224,7 @@ M: Daniel P. Berrange <berrange@redhat.com>
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S: Maintained
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F: crypto/
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F: include/crypto/
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F: host/include/*/host/crypto/
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F: qapi/crypto.json
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F: tests/unit/test-crypto-*
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F: tests/bench/benchmark-crypto-*
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46
crypto/aes.c
46
crypto/aes.c
@ -29,6 +29,7 @@
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*/
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#include "qemu/osdep.h"
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#include "crypto/aes.h"
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#include "crypto/aes-round.h"
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typedef uint32_t u32;
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typedef uint8_t u8;
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@ -1215,6 +1216,51 @@ static const u32 rcon[] = {
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0x1B000000, 0x36000000, /* for 128-bit blocks, Rijndael never uses more than 10 rcon values */
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};
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/*
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* Perform SubBytes + ShiftRows + AddRoundKey.
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*/
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static inline void
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aesenc_SB_SR_AK_swap(AESState *ret, const AESState *st,
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const AESState *rk, bool swap)
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{
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const int swap_b = swap ? 15 : 0;
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AESState t;
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t.b[swap_b ^ 0x0] = AES_sbox[st->b[swap_b ^ AES_SH(0x0)]];
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t.b[swap_b ^ 0x1] = AES_sbox[st->b[swap_b ^ AES_SH(0x1)]];
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t.b[swap_b ^ 0x2] = AES_sbox[st->b[swap_b ^ AES_SH(0x2)]];
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t.b[swap_b ^ 0x3] = AES_sbox[st->b[swap_b ^ AES_SH(0x3)]];
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t.b[swap_b ^ 0x4] = AES_sbox[st->b[swap_b ^ AES_SH(0x4)]];
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t.b[swap_b ^ 0x5] = AES_sbox[st->b[swap_b ^ AES_SH(0x5)]];
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t.b[swap_b ^ 0x6] = AES_sbox[st->b[swap_b ^ AES_SH(0x6)]];
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t.b[swap_b ^ 0x7] = AES_sbox[st->b[swap_b ^ AES_SH(0x7)]];
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t.b[swap_b ^ 0x8] = AES_sbox[st->b[swap_b ^ AES_SH(0x8)]];
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t.b[swap_b ^ 0x9] = AES_sbox[st->b[swap_b ^ AES_SH(0x9)]];
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t.b[swap_b ^ 0xa] = AES_sbox[st->b[swap_b ^ AES_SH(0xA)]];
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t.b[swap_b ^ 0xb] = AES_sbox[st->b[swap_b ^ AES_SH(0xB)]];
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t.b[swap_b ^ 0xc] = AES_sbox[st->b[swap_b ^ AES_SH(0xC)]];
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t.b[swap_b ^ 0xd] = AES_sbox[st->b[swap_b ^ AES_SH(0xD)]];
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t.b[swap_b ^ 0xe] = AES_sbox[st->b[swap_b ^ AES_SH(0xE)]];
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t.b[swap_b ^ 0xf] = AES_sbox[st->b[swap_b ^ AES_SH(0xF)]];
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/*
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* Perform the AddRoundKey with generic vectors.
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* This may be expanded to either host integer or host vector code.
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* The key and output endianness match, so no bswap required.
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*/
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ret->v = t.v ^ rk->v;
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}
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void aesenc_SB_SR_AK_gen(AESState *r, const AESState *s, const AESState *k)
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{
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aesenc_SB_SR_AK_swap(r, s, k, false);
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}
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void aesenc_SB_SR_AK_genrev(AESState *r, const AESState *s, const AESState *k)
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{
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aesenc_SB_SR_AK_swap(r, s, k, true);
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}
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/**
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* Expand the cipher key into the encryption key schedule.
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*/
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16
host/include/generic/host/crypto/aes-round.h
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16
host/include/generic/host/crypto/aes-round.h
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@ -0,0 +1,16 @@
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/*
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* No host specific aes acceleration.
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* SPDX-License-Identifier: GPL-2.0-or-later
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*/
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#ifndef GENERIC_HOST_CRYPTO_AES_ROUND_H
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#define GENERIC_HOST_CRYPTO_AES_ROUND_H
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#define HAVE_AES_ACCEL false
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#define ATTR_AES_ACCEL
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void aesenc_SB_SR_AK_accel(AESState *, const AESState *,
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const AESState *, bool)
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QEMU_ERROR("unsupported accel");
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#endif /* GENERIC_HOST_CRYPTO_AES_ROUND_H */
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include/crypto/aes-round.h
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44
include/crypto/aes-round.h
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@ -0,0 +1,44 @@
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/*
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* AES round fragments, generic version
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* SPDX-License-Identifier: GPL-2.0-or-later
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*
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* Copyright (C) 2023 Linaro, Ltd.
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*/
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#ifndef CRYPTO_AES_ROUND_H
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#define CRYPTO_AES_ROUND_H
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/* Hosts with acceleration will usually need a 16-byte vector type. */
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typedef uint8_t AESStateVec __attribute__((vector_size(16)));
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typedef union {
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uint8_t b[16];
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uint32_t w[4];
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uint64_t d[2];
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AESStateVec v;
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} AESState;
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#include "host/crypto/aes-round.h"
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/*
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* Perform SubBytes + ShiftRows + AddRoundKey.
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*/
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void aesenc_SB_SR_AK_gen(AESState *ret, const AESState *st,
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const AESState *rk);
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void aesenc_SB_SR_AK_genrev(AESState *ret, const AESState *st,
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const AESState *rk);
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static inline void aesenc_SB_SR_AK(AESState *r, const AESState *st,
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const AESState *rk, bool be)
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{
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if (HAVE_AES_ACCEL) {
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aesenc_SB_SR_AK_accel(r, st, rk, be);
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} else if (HOST_BIG_ENDIAN == be) {
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aesenc_SB_SR_AK_gen(r, st, rk);
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} else {
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aesenc_SB_SR_AK_genrev(r, st, rk);
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}
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}
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#endif /* CRYPTO_AES_ROUND_H */
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