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crypto: twofish-x86_64-3way - add lrw support
Patch adds LRW support for twofish-x86_64-3way by using lrw_crypt(). Patch has been tested with tcrypt and automated filesystem tests. Tcrypt benchmarks results (twofish-3way/twofish-asm speed ratios): Intel Celeron T1600 (fam:6, model:15, step:13): size lrw-enc lrw-dec 16B 0.99x 1.00x 64B 1.17x 1.17x 256B 1.26x 1.27x 1024B 1.30x 1.31x 8192B 1.31x 1.32x AMD Phenom II 1055T (fam:16, model:10): size lrw-enc lrw-dec 16B 1.06x 1.01x 64B 1.08x 1.14x 256B 1.19x 1.20x 1024B 1.21x 1.22x 8192B 1.23x 1.24x Signed-off-by: Jussi Kivilinna <jussi.kivilinna@mbnet.fi> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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commit
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3 changed files with 145 additions and 5 deletions
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@ -32,6 +32,11 @@
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#include <crypto/algapi.h>
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#include <crypto/twofish.h>
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#include <crypto/b128ops.h>
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#include <crypto/lrw.h>
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#if defined(CONFIG_CRYPTO_LRW) || defined(CONFIG_CRYPTO_LRW_MODULE)
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#define HAS_LRW
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#endif
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/* regular block cipher functions from twofish_x86_64 module */
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asmlinkage void twofish_enc_blk(struct twofish_ctx *ctx, u8 *dst,
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@ -432,6 +437,124 @@ static struct crypto_alg blk_ctr_alg = {
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},
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};
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#ifdef HAS_LRW
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static void encrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes)
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{
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const unsigned int bsize = TF_BLOCK_SIZE;
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struct twofish_ctx *ctx = priv;
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int i;
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if (nbytes == 3 * bsize) {
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twofish_enc_blk_3way(ctx, srcdst, srcdst);
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return;
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}
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for (i = 0; i < nbytes / bsize; i++, srcdst += bsize)
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twofish_enc_blk(ctx, srcdst, srcdst);
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}
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static void decrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes)
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{
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const unsigned int bsize = TF_BLOCK_SIZE;
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struct twofish_ctx *ctx = priv;
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int i;
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if (nbytes == 3 * bsize) {
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twofish_dec_blk_3way(ctx, srcdst, srcdst);
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return;
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}
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for (i = 0; i < nbytes / bsize; i++, srcdst += bsize)
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twofish_dec_blk(ctx, srcdst, srcdst);
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}
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struct twofish_lrw_ctx {
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struct lrw_table_ctx lrw_table;
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struct twofish_ctx twofish_ctx;
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};
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static int lrw_twofish_setkey(struct crypto_tfm *tfm, const u8 *key,
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unsigned int keylen)
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{
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struct twofish_lrw_ctx *ctx = crypto_tfm_ctx(tfm);
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int err;
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err = __twofish_setkey(&ctx->twofish_ctx, key, keylen - TF_BLOCK_SIZE,
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&tfm->crt_flags);
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if (err)
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return err;
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return lrw_init_table(&ctx->lrw_table, key + keylen - TF_BLOCK_SIZE);
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}
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static int lrw_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst,
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struct scatterlist *src, unsigned int nbytes)
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{
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struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm);
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be128 buf[3];
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struct lrw_crypt_req req = {
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.tbuf = buf,
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.tbuflen = sizeof(buf),
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.table_ctx = &ctx->lrw_table,
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.crypt_ctx = &ctx->twofish_ctx,
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.crypt_fn = encrypt_callback,
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};
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return lrw_crypt(desc, dst, src, nbytes, &req);
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}
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static int lrw_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst,
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struct scatterlist *src, unsigned int nbytes)
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{
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struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm);
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be128 buf[3];
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struct lrw_crypt_req req = {
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.tbuf = buf,
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.tbuflen = sizeof(buf),
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.table_ctx = &ctx->lrw_table,
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.crypt_ctx = &ctx->twofish_ctx,
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.crypt_fn = decrypt_callback,
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};
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return lrw_crypt(desc, dst, src, nbytes, &req);
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}
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static void lrw_exit_tfm(struct crypto_tfm *tfm)
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{
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struct twofish_lrw_ctx *ctx = crypto_tfm_ctx(tfm);
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lrw_free_table(&ctx->lrw_table);
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}
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static struct crypto_alg blk_lrw_alg = {
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.cra_name = "lrw(twofish)",
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.cra_driver_name = "lrw-twofish-3way",
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.cra_priority = 300,
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.cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER,
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.cra_blocksize = TF_BLOCK_SIZE,
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.cra_ctxsize = sizeof(struct twofish_lrw_ctx),
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.cra_alignmask = 0,
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.cra_type = &crypto_blkcipher_type,
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.cra_module = THIS_MODULE,
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.cra_list = LIST_HEAD_INIT(blk_lrw_alg.cra_list),
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.cra_exit = lrw_exit_tfm,
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.cra_u = {
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.blkcipher = {
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.min_keysize = TF_MIN_KEY_SIZE + TF_BLOCK_SIZE,
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.max_keysize = TF_MAX_KEY_SIZE + TF_BLOCK_SIZE,
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.ivsize = TF_BLOCK_SIZE,
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.setkey = lrw_twofish_setkey,
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.encrypt = lrw_encrypt,
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.decrypt = lrw_decrypt,
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},
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},
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};
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#endif
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int __init init(void)
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{
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int err;
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@ -445,9 +568,18 @@ int __init init(void)
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err = crypto_register_alg(&blk_ctr_alg);
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if (err)
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goto ctr_err;
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#ifdef HAS_LRW
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err = crypto_register_alg(&blk_lrw_alg);
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if (err)
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goto blk_lrw_err;
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#endif
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return 0;
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#ifdef HAS_LRW
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blk_lrw_err:
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crypto_unregister_alg(&blk_ctr_alg);
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#endif
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ctr_err:
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crypto_unregister_alg(&blk_cbc_alg);
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cbc_err:
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@ -458,6 +590,9 @@ ecb_err:
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void __exit fini(void)
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{
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#ifdef HAS_LRW
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crypto_unregister_alg(&blk_lrw_alg);
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#endif
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crypto_unregister_alg(&blk_ctr_alg);
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crypto_unregister_alg(&blk_cbc_alg);
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crypto_unregister_alg(&blk_ecb_alg);
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@ -580,12 +580,9 @@ static const u8 calc_sb_tbl[512] = {
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ctx->a[(j) + 1] = rol32(y, 9)
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/* Perform the key setup. */
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int twofish_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int key_len)
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int __twofish_setkey(struct twofish_ctx *ctx, const u8 *key,
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unsigned int key_len, u32 *flags)
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{
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struct twofish_ctx *ctx = crypto_tfm_ctx(tfm);
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u32 *flags = &tfm->crt_flags;
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int i, j, k;
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/* Temporaries for CALC_K. */
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@ -701,7 +698,13 @@ int twofish_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int key_len)
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return 0;
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}
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EXPORT_SYMBOL_GPL(__twofish_setkey);
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int twofish_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int key_len)
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{
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return __twofish_setkey(crypto_tfm_ctx(tfm), key, key_len,
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&tfm->crt_flags);
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}
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EXPORT_SYMBOL_GPL(twofish_setkey);
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MODULE_LICENSE("GPL");
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@ -17,6 +17,8 @@ struct twofish_ctx {
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u32 s[4][256], w[8], k[32];
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};
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int __twofish_setkey(struct twofish_ctx *ctx, const u8 *key,
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unsigned int key_len, u32 *flags);
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int twofish_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int key_len);
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#endif
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