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Based on 1 normalized pattern(s): this program is free software you can redistribute it and or modify it under the terms of the gnu general public license as published by the free software foundation version 2 only this program is distributed in the hope that it will be useful but without any warranty without even the implied warranty of merchantability or fitness for a particular purpose see the gnu general public license for more details you should have received a copy of the gnu general public license along with this program if not write to the free software foundation inc 675 mass ave cambridge ma 02139 usa extracted by the scancode license scanner the SPDX license identifier GPL-2.0-only has been chosen to replace the boilerplate/reference in 15 file(s). Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Richard Fontana <rfontana@redhat.com> Reviewed-by: Allison Randal <allison@lohutok.net> Reviewed-by: Alexios Zavras <alexios.zavras@intel.com> Cc: linux-spdx@vger.kernel.org Link: https://lkml.kernel.org/r/20190529141902.274594435@linutronix.de Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
175 lines
4.4 KiB
C
175 lines
4.4 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/**
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* AES CTR routines supporting VMX instructions on the Power 8
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*
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* Copyright (C) 2015 International Business Machines Inc.
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*
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* Author: Marcelo Henrique Cerri <mhcerri@br.ibm.com>
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*/
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#include <linux/types.h>
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#include <linux/err.h>
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#include <linux/crypto.h>
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#include <linux/delay.h>
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#include <asm/simd.h>
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#include <asm/switch_to.h>
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#include <crypto/aes.h>
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#include <crypto/internal/simd.h>
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#include <crypto/scatterwalk.h>
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#include <crypto/skcipher.h>
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#include "aesp8-ppc.h"
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struct p8_aes_ctr_ctx {
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struct crypto_sync_skcipher *fallback;
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struct aes_key enc_key;
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};
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static int p8_aes_ctr_init(struct crypto_tfm *tfm)
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{
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const char *alg = crypto_tfm_alg_name(tfm);
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struct crypto_sync_skcipher *fallback;
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struct p8_aes_ctr_ctx *ctx = crypto_tfm_ctx(tfm);
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fallback = crypto_alloc_sync_skcipher(alg, 0,
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CRYPTO_ALG_NEED_FALLBACK);
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if (IS_ERR(fallback)) {
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printk(KERN_ERR
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"Failed to allocate transformation for '%s': %ld\n",
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alg, PTR_ERR(fallback));
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return PTR_ERR(fallback);
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}
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crypto_sync_skcipher_set_flags(
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fallback,
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crypto_skcipher_get_flags((struct crypto_skcipher *)tfm));
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ctx->fallback = fallback;
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return 0;
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}
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static void p8_aes_ctr_exit(struct crypto_tfm *tfm)
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{
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struct p8_aes_ctr_ctx *ctx = crypto_tfm_ctx(tfm);
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if (ctx->fallback) {
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crypto_free_sync_skcipher(ctx->fallback);
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ctx->fallback = NULL;
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}
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}
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static int p8_aes_ctr_setkey(struct crypto_tfm *tfm, const u8 *key,
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unsigned int keylen)
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{
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int ret;
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struct p8_aes_ctr_ctx *ctx = crypto_tfm_ctx(tfm);
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preempt_disable();
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pagefault_disable();
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enable_kernel_vsx();
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ret = aes_p8_set_encrypt_key(key, keylen * 8, &ctx->enc_key);
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disable_kernel_vsx();
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pagefault_enable();
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preempt_enable();
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ret |= crypto_sync_skcipher_setkey(ctx->fallback, key, keylen);
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return ret ? -EINVAL : 0;
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}
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static void p8_aes_ctr_final(struct p8_aes_ctr_ctx *ctx,
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struct blkcipher_walk *walk)
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{
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u8 *ctrblk = walk->iv;
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u8 keystream[AES_BLOCK_SIZE];
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u8 *src = walk->src.virt.addr;
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u8 *dst = walk->dst.virt.addr;
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unsigned int nbytes = walk->nbytes;
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preempt_disable();
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pagefault_disable();
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enable_kernel_vsx();
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aes_p8_encrypt(ctrblk, keystream, &ctx->enc_key);
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disable_kernel_vsx();
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pagefault_enable();
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preempt_enable();
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crypto_xor_cpy(dst, keystream, src, nbytes);
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crypto_inc(ctrblk, AES_BLOCK_SIZE);
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}
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static int p8_aes_ctr_crypt(struct blkcipher_desc *desc,
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struct scatterlist *dst,
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struct scatterlist *src, unsigned int nbytes)
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{
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int ret;
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u64 inc;
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struct blkcipher_walk walk;
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struct p8_aes_ctr_ctx *ctx =
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crypto_tfm_ctx(crypto_blkcipher_tfm(desc->tfm));
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if (!crypto_simd_usable()) {
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SYNC_SKCIPHER_REQUEST_ON_STACK(req, ctx->fallback);
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skcipher_request_set_sync_tfm(req, ctx->fallback);
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skcipher_request_set_callback(req, desc->flags, NULL, NULL);
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skcipher_request_set_crypt(req, src, dst, nbytes, desc->info);
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ret = crypto_skcipher_encrypt(req);
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skcipher_request_zero(req);
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} else {
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blkcipher_walk_init(&walk, dst, src, nbytes);
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ret = blkcipher_walk_virt_block(desc, &walk, AES_BLOCK_SIZE);
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while ((nbytes = walk.nbytes) >= AES_BLOCK_SIZE) {
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preempt_disable();
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pagefault_disable();
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enable_kernel_vsx();
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aes_p8_ctr32_encrypt_blocks(walk.src.virt.addr,
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walk.dst.virt.addr,
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(nbytes &
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AES_BLOCK_MASK) /
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AES_BLOCK_SIZE,
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&ctx->enc_key,
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walk.iv);
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disable_kernel_vsx();
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pagefault_enable();
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preempt_enable();
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/* We need to update IV mostly for last bytes/round */
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inc = (nbytes & AES_BLOCK_MASK) / AES_BLOCK_SIZE;
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if (inc > 0)
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while (inc--)
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crypto_inc(walk.iv, AES_BLOCK_SIZE);
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nbytes &= AES_BLOCK_SIZE - 1;
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ret = blkcipher_walk_done(desc, &walk, nbytes);
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}
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if (walk.nbytes) {
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p8_aes_ctr_final(ctx, &walk);
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ret = blkcipher_walk_done(desc, &walk, 0);
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}
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}
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return ret;
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}
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struct crypto_alg p8_aes_ctr_alg = {
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.cra_name = "ctr(aes)",
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.cra_driver_name = "p8_aes_ctr",
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.cra_module = THIS_MODULE,
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.cra_priority = 2000,
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.cra_type = &crypto_blkcipher_type,
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.cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER | CRYPTO_ALG_NEED_FALLBACK,
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.cra_alignmask = 0,
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.cra_blocksize = 1,
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.cra_ctxsize = sizeof(struct p8_aes_ctr_ctx),
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.cra_init = p8_aes_ctr_init,
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.cra_exit = p8_aes_ctr_exit,
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.cra_blkcipher = {
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.ivsize = AES_BLOCK_SIZE,
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.min_keysize = AES_MIN_KEY_SIZE,
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.max_keysize = AES_MAX_KEY_SIZE,
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.setkey = p8_aes_ctr_setkey,
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.encrypt = p8_aes_ctr_crypt,
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.decrypt = p8_aes_ctr_crypt,
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},
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};
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