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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/lib/crypto/riscv/aes.h
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/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Copyright (C) 2023 VRULL GmbH
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* Copyright (C) 2023 SiFive, Inc.
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* Copyright 2024 Google LLC
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*/
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#include <asm/simd.h>
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#include <asm/vector.h>
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static __ro_after_init DEFINE_STATIC_KEY_FALSE(have_zvkned);
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void aes_encrypt_zvkned(const u32 rndkeys[], int key_len,
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u8 out[AES_BLOCK_SIZE], const u8 in[AES_BLOCK_SIZE]);
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void aes_decrypt_zvkned(const u32 rndkeys[], int key_len,
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u8 out[AES_BLOCK_SIZE], const u8 in[AES_BLOCK_SIZE]);
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static void aes_preparekey_arch(union aes_enckey_arch *k,
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union aes_invkey_arch *inv_k,
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const u8 *in_key, int key_len, int nrounds)
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{
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aes_expandkey_generic(k->rndkeys, inv_k ? inv_k->inv_rndkeys : NULL,
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in_key, key_len);
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}
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static void aes_encrypt_arch(const struct aes_enckey *key,
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u8 out[AES_BLOCK_SIZE],
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const u8 in[AES_BLOCK_SIZE])
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{
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if (static_branch_likely(&have_zvkned) && likely(may_use_simd())) {
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kernel_vector_begin();
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aes_encrypt_zvkned(key->k.rndkeys, key->len, out, in);
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kernel_vector_end();
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} else {
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aes_encrypt_generic(key->k.rndkeys, key->nrounds, out, in);
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}
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}
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static void aes_decrypt_arch(const struct aes_key *key,
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u8 out[AES_BLOCK_SIZE],
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const u8 in[AES_BLOCK_SIZE])
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{
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/*
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* Note that the Zvkned code uses the standard round keys, while the
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* fallback uses the inverse round keys. Thus both must be present.
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*/
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if (static_branch_likely(&have_zvkned) && likely(may_use_simd())) {
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kernel_vector_begin();
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aes_decrypt_zvkned(key->k.rndkeys, key->len, out, in);
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kernel_vector_end();
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} else {
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aes_decrypt_generic(key->inv_k.inv_rndkeys, key->nrounds,
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out, in);
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}
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}
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#define aes_mod_init_arch aes_mod_init_arch
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static void aes_mod_init_arch(void)
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{
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if (riscv_isa_extension_available(NULL, ZVKNED) &&
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riscv_vector_vlen() >= 128)
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static_branch_enable(&have_zvkned);
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}
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