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// SPDX-License-Identifier: GPL-2.0-or-later
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/*
* Glue Code for AVX assembler versions of Serpent Cipher
*
* Copyright ( C ) 2012 Johannes Goetzfried
* < Johannes . Goetzfried @ informatik . stud . uni - erlangen . de >
*
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* Copyright © 2011 - 2013 Jussi Kivilinna < jussi . kivilinna @ iki . fi >
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*/
# include <linux/module.h>
# include <linux/types.h>
# include <linux/crypto.h>
# include <linux/err.h>
# include <crypto/algapi.h>
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# include <crypto/internal/simd.h>
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# include <crypto/serpent.h>
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# include <asm/crypto/glue_helper.h>
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# include <asm/crypto/serpent-avx.h>
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/* 8-way parallel cipher functions */
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asmlinkage void serpent_ecb_enc_8way_avx ( const void * ctx , u8 * dst ,
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const u8 * src ) ;
EXPORT_SYMBOL_GPL ( serpent_ecb_enc_8way_avx ) ;
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asmlinkage void serpent_ecb_dec_8way_avx ( const void * ctx , u8 * dst ,
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const u8 * src ) ;
EXPORT_SYMBOL_GPL ( serpent_ecb_dec_8way_avx ) ;
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asmlinkage void serpent_cbc_dec_8way_avx ( const void * ctx , u8 * dst ,
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const u8 * src ) ;
EXPORT_SYMBOL_GPL ( serpent_cbc_dec_8way_avx ) ;
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static int serpent_setkey_skcipher ( struct crypto_skcipher * tfm ,
const u8 * key , unsigned int keylen )
{
return __serpent_setkey ( crypto_skcipher_ctx ( tfm ) , key , keylen ) ;
}
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static const struct common_glue_ctx serpent_enc = {
. num_funcs = 2 ,
. fpu_blocks_limit = SERPENT_PARALLEL_BLOCKS ,
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. funcs = { {
. num_blocks = SERPENT_PARALLEL_BLOCKS ,
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. fn_u = { . ecb = serpent_ecb_enc_8way_avx }
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} , {
. num_blocks = 1 ,
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. fn_u = { . ecb = __serpent_encrypt }
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} }
} ;
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static const struct common_glue_ctx serpent_dec = {
. num_funcs = 2 ,
. fpu_blocks_limit = SERPENT_PARALLEL_BLOCKS ,
. funcs = { {
. num_blocks = SERPENT_PARALLEL_BLOCKS ,
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. fn_u = { . ecb = serpent_ecb_dec_8way_avx }
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} , {
. num_blocks = 1 ,
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. fn_u = { . ecb = __serpent_decrypt }
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} }
} ;
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static const struct common_glue_ctx serpent_dec_cbc = {
. num_funcs = 2 ,
. fpu_blocks_limit = SERPENT_PARALLEL_BLOCKS ,
. funcs = { {
. num_blocks = SERPENT_PARALLEL_BLOCKS ,
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. fn_u = { . cbc = serpent_cbc_dec_8way_avx }
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} , {
. num_blocks = 1 ,
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. fn_u = { . cbc = __serpent_decrypt }
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} }
} ;
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static int ecb_encrypt ( struct skcipher_request * req )
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{
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return glue_ecb_req_128bit ( & serpent_enc , req ) ;
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}
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static int ecb_decrypt ( struct skcipher_request * req )
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{
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return glue_ecb_req_128bit ( & serpent_dec , req ) ;
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}
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static int cbc_encrypt ( struct skcipher_request * req )
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{
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return glue_cbc_encrypt_req_128bit ( __serpent_encrypt , req ) ;
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}
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static int cbc_decrypt ( struct skcipher_request * req )
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{
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return glue_cbc_decrypt_req_128bit ( & serpent_dec_cbc , req ) ;
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}
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static struct skcipher_alg serpent_algs [ ] = {
{
. base . cra_name = " __ecb(serpent) " ,
. base . cra_driver_name = " __ecb-serpent-avx " ,
. base . cra_priority = 500 ,
. base . cra_flags = CRYPTO_ALG_INTERNAL ,
. base . cra_blocksize = SERPENT_BLOCK_SIZE ,
. base . cra_ctxsize = sizeof ( struct serpent_ctx ) ,
. base . cra_module = THIS_MODULE ,
. min_keysize = SERPENT_MIN_KEY_SIZE ,
. max_keysize = SERPENT_MAX_KEY_SIZE ,
. setkey = serpent_setkey_skcipher ,
. encrypt = ecb_encrypt ,
. decrypt = ecb_decrypt ,
} , {
. base . cra_name = " __cbc(serpent) " ,
. base . cra_driver_name = " __cbc-serpent-avx " ,
. base . cra_priority = 500 ,
. base . cra_flags = CRYPTO_ALG_INTERNAL ,
. base . cra_blocksize = SERPENT_BLOCK_SIZE ,
. base . cra_ctxsize = sizeof ( struct serpent_ctx ) ,
. base . cra_module = THIS_MODULE ,
. min_keysize = SERPENT_MIN_KEY_SIZE ,
. max_keysize = SERPENT_MAX_KEY_SIZE ,
. ivsize = SERPENT_BLOCK_SIZE ,
. setkey = serpent_setkey_skcipher ,
. encrypt = cbc_encrypt ,
. decrypt = cbc_decrypt ,
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} ,
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} ;
static struct simd_skcipher_alg * serpent_simd_algs [ ARRAY_SIZE ( serpent_algs ) ] ;
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static int __init serpent_init ( void )
{
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const char * feature_name ;
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if ( ! cpu_has_xfeatures ( XFEATURE_MASK_SSE | XFEATURE_MASK_YMM ,
& feature_name ) ) {
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pr_info ( " CPU feature '%s' is not supported. \n " , feature_name ) ;
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return - ENODEV ;
}
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return simd_register_skciphers_compat ( serpent_algs ,
ARRAY_SIZE ( serpent_algs ) ,
serpent_simd_algs ) ;
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}
static void __exit serpent_exit ( void )
{
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simd_unregister_skciphers ( serpent_algs , ARRAY_SIZE ( serpent_algs ) ,
serpent_simd_algs ) ;
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}
module_init ( serpent_init ) ;
module_exit ( serpent_exit ) ;
MODULE_DESCRIPTION ( " Serpent Cipher Algorithm, AVX optimized " ) ;
MODULE_LICENSE ( " GPL " ) ;
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MODULE_ALIAS_CRYPTO ( " serpent " ) ;