xref: /openbmc/linux/crypto/ghash-generic.c (revision 674f368a)
1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
22cdc6899SHuang Ying /*
38dfa20fcSEric Biggers  * GHASH: hash function for GCM (Galois/Counter Mode).
42cdc6899SHuang Ying  *
52cdc6899SHuang Ying  * Copyright (c) 2007 Nokia Siemens Networks - Mikko Herranen <mh1@iki.fi>
62cdc6899SHuang Ying  * Copyright (c) 2009 Intel Corp.
72cdc6899SHuang Ying  *   Author: Huang Ying <ying.huang@intel.com>
88dfa20fcSEric Biggers  */
98dfa20fcSEric Biggers 
108dfa20fcSEric Biggers /*
118dfa20fcSEric Biggers  * GHASH is a keyed hash function used in GCM authentication tag generation.
122cdc6899SHuang Ying  *
138dfa20fcSEric Biggers  * The original GCM paper [1] presents GHASH as a function GHASH(H, A, C) which
148dfa20fcSEric Biggers  * takes a 16-byte hash key H, additional authenticated data A, and a ciphertext
158dfa20fcSEric Biggers  * C.  It formats A and C into a single byte string X, interprets X as a
168dfa20fcSEric Biggers  * polynomial over GF(2^128), and evaluates this polynomial at the point H.
178dfa20fcSEric Biggers  *
188dfa20fcSEric Biggers  * However, the NIST standard for GCM [2] presents GHASH as GHASH(H, X) where X
198dfa20fcSEric Biggers  * is the already-formatted byte string containing both A and C.
208dfa20fcSEric Biggers  *
218dfa20fcSEric Biggers  * "ghash" in the Linux crypto API uses the 'X' (pre-formatted) convention,
228dfa20fcSEric Biggers  * since the API supports only a single data stream per hash.  Thus, the
238dfa20fcSEric Biggers  * formatting of 'A' and 'C' is done in the "gcm" template, not in "ghash".
248dfa20fcSEric Biggers  *
258dfa20fcSEric Biggers  * The reason "ghash" is separate from "gcm" is to allow "gcm" to use an
268dfa20fcSEric Biggers  * accelerated "ghash" when a standalone accelerated "gcm(aes)" is unavailable.
278dfa20fcSEric Biggers  * It is generally inappropriate to use "ghash" for other purposes, since it is
288dfa20fcSEric Biggers  * an "ε-almost-XOR-universal hash function", not a cryptographic hash function.
298dfa20fcSEric Biggers  * It can only be used securely in crypto modes specially designed to use it.
308dfa20fcSEric Biggers  *
318dfa20fcSEric Biggers  * [1] The Galois/Counter Mode of Operation (GCM)
328dfa20fcSEric Biggers  *     (http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.694.695&rep=rep1&type=pdf)
338dfa20fcSEric Biggers  * [2] Recommendation for Block Cipher Modes of Operation: Galois/Counter Mode (GCM) and GMAC
348dfa20fcSEric Biggers  *     (https://csrc.nist.gov/publications/detail/sp/800-38d/final)
352cdc6899SHuang Ying  */
362cdc6899SHuang Ying 
372cdc6899SHuang Ying #include <crypto/algapi.h>
382cdc6899SHuang Ying #include <crypto/gf128mul.h>
39a397ba82SMarcelo Cerri #include <crypto/ghash.h>
402cdc6899SHuang Ying #include <crypto/internal/hash.h>
412cdc6899SHuang Ying #include <linux/crypto.h>
422cdc6899SHuang Ying #include <linux/init.h>
432cdc6899SHuang Ying #include <linux/kernel.h>
442cdc6899SHuang Ying #include <linux/module.h>
452cdc6899SHuang Ying 
ghash_init(struct shash_desc * desc)462cdc6899SHuang Ying static int ghash_init(struct shash_desc *desc)
472cdc6899SHuang Ying {
482cdc6899SHuang Ying 	struct ghash_desc_ctx *dctx = shash_desc_ctx(desc);
492cdc6899SHuang Ying 
502cdc6899SHuang Ying 	memset(dctx, 0, sizeof(*dctx));
512cdc6899SHuang Ying 
522cdc6899SHuang Ying 	return 0;
532cdc6899SHuang Ying }
542cdc6899SHuang Ying 
ghash_setkey(struct crypto_shash * tfm,const u8 * key,unsigned int keylen)552cdc6899SHuang Ying static int ghash_setkey(struct crypto_shash *tfm,
562cdc6899SHuang Ying 			const u8 *key, unsigned int keylen)
572cdc6899SHuang Ying {
582cdc6899SHuang Ying 	struct ghash_ctx *ctx = crypto_shash_ctx(tfm);
595c6bc4dfSEric Biggers 	be128 k;
602cdc6899SHuang Ying 
61674f368aSEric Biggers 	if (keylen != GHASH_BLOCK_SIZE)
622cdc6899SHuang Ying 		return -EINVAL;
632cdc6899SHuang Ying 
642cdc6899SHuang Ying 	if (ctx->gf128)
652cdc6899SHuang Ying 		gf128mul_free_4k(ctx->gf128);
665c6bc4dfSEric Biggers 
675c6bc4dfSEric Biggers 	BUILD_BUG_ON(sizeof(k) != GHASH_BLOCK_SIZE);
685c6bc4dfSEric Biggers 	memcpy(&k, key, GHASH_BLOCK_SIZE); /* avoid violating alignment rules */
695c6bc4dfSEric Biggers 	ctx->gf128 = gf128mul_init_4k_lle(&k);
705c6bc4dfSEric Biggers 	memzero_explicit(&k, GHASH_BLOCK_SIZE);
715c6bc4dfSEric Biggers 
722cdc6899SHuang Ying 	if (!ctx->gf128)
732cdc6899SHuang Ying 		return -ENOMEM;
742cdc6899SHuang Ying 
752cdc6899SHuang Ying 	return 0;
762cdc6899SHuang Ying }
772cdc6899SHuang Ying 
ghash_update(struct shash_desc * desc,const u8 * src,unsigned int srclen)782cdc6899SHuang Ying static int ghash_update(struct shash_desc *desc,
792cdc6899SHuang Ying 			 const u8 *src, unsigned int srclen)
802cdc6899SHuang Ying {
812cdc6899SHuang Ying 	struct ghash_desc_ctx *dctx = shash_desc_ctx(desc);
822cdc6899SHuang Ying 	struct ghash_ctx *ctx = crypto_shash_ctx(desc->tfm);
832cdc6899SHuang Ying 	u8 *dst = dctx->buffer;
842cdc6899SHuang Ying 
852cdc6899SHuang Ying 	if (dctx->bytes) {
862cdc6899SHuang Ying 		int n = min(srclen, dctx->bytes);
872cdc6899SHuang Ying 		u8 *pos = dst + (GHASH_BLOCK_SIZE - dctx->bytes);
882cdc6899SHuang Ying 
892cdc6899SHuang Ying 		dctx->bytes -= n;
902cdc6899SHuang Ying 		srclen -= n;
912cdc6899SHuang Ying 
922cdc6899SHuang Ying 		while (n--)
932cdc6899SHuang Ying 			*pos++ ^= *src++;
942cdc6899SHuang Ying 
952cdc6899SHuang Ying 		if (!dctx->bytes)
962cdc6899SHuang Ying 			gf128mul_4k_lle((be128 *)dst, ctx->gf128);
972cdc6899SHuang Ying 	}
982cdc6899SHuang Ying 
992cdc6899SHuang Ying 	while (srclen >= GHASH_BLOCK_SIZE) {
1002cdc6899SHuang Ying 		crypto_xor(dst, src, GHASH_BLOCK_SIZE);
1012cdc6899SHuang Ying 		gf128mul_4k_lle((be128 *)dst, ctx->gf128);
1022cdc6899SHuang Ying 		src += GHASH_BLOCK_SIZE;
1032cdc6899SHuang Ying 		srclen -= GHASH_BLOCK_SIZE;
1042cdc6899SHuang Ying 	}
1052cdc6899SHuang Ying 
1062cdc6899SHuang Ying 	if (srclen) {
1072cdc6899SHuang Ying 		dctx->bytes = GHASH_BLOCK_SIZE - srclen;
1082cdc6899SHuang Ying 		while (srclen--)
1092cdc6899SHuang Ying 			*dst++ ^= *src++;
1102cdc6899SHuang Ying 	}
1112cdc6899SHuang Ying 
1122cdc6899SHuang Ying 	return 0;
1132cdc6899SHuang Ying }
1142cdc6899SHuang Ying 
ghash_flush(struct ghash_ctx * ctx,struct ghash_desc_ctx * dctx)1152cdc6899SHuang Ying static void ghash_flush(struct ghash_ctx *ctx, struct ghash_desc_ctx *dctx)
1162cdc6899SHuang Ying {
1172cdc6899SHuang Ying 	u8 *dst = dctx->buffer;
1182cdc6899SHuang Ying 
1192cdc6899SHuang Ying 	if (dctx->bytes) {
1202cdc6899SHuang Ying 		u8 *tmp = dst + (GHASH_BLOCK_SIZE - dctx->bytes);
1212cdc6899SHuang Ying 
1222cdc6899SHuang Ying 		while (dctx->bytes--)
1232cdc6899SHuang Ying 			*tmp++ ^= 0;
1242cdc6899SHuang Ying 
1252cdc6899SHuang Ying 		gf128mul_4k_lle((be128 *)dst, ctx->gf128);
1262cdc6899SHuang Ying 	}
1272cdc6899SHuang Ying 
1282cdc6899SHuang Ying 	dctx->bytes = 0;
1292cdc6899SHuang Ying }
1302cdc6899SHuang Ying 
ghash_final(struct shash_desc * desc,u8 * dst)1312cdc6899SHuang Ying static int ghash_final(struct shash_desc *desc, u8 *dst)
1322cdc6899SHuang Ying {
1332cdc6899SHuang Ying 	struct ghash_desc_ctx *dctx = shash_desc_ctx(desc);
1342cdc6899SHuang Ying 	struct ghash_ctx *ctx = crypto_shash_ctx(desc->tfm);
1352cdc6899SHuang Ying 	u8 *buf = dctx->buffer;
1362cdc6899SHuang Ying 
1372cdc6899SHuang Ying 	ghash_flush(ctx, dctx);
1382cdc6899SHuang Ying 	memcpy(dst, buf, GHASH_BLOCK_SIZE);
1392cdc6899SHuang Ying 
1402cdc6899SHuang Ying 	return 0;
1412cdc6899SHuang Ying }
1422cdc6899SHuang Ying 
ghash_exit_tfm(struct crypto_tfm * tfm)1432cdc6899SHuang Ying static void ghash_exit_tfm(struct crypto_tfm *tfm)
1442cdc6899SHuang Ying {
1452cdc6899SHuang Ying 	struct ghash_ctx *ctx = crypto_tfm_ctx(tfm);
1462cdc6899SHuang Ying 	if (ctx->gf128)
1472cdc6899SHuang Ying 		gf128mul_free_4k(ctx->gf128);
1482cdc6899SHuang Ying }
1492cdc6899SHuang Ying 
1502cdc6899SHuang Ying static struct shash_alg ghash_alg = {
1512cdc6899SHuang Ying 	.digestsize	= GHASH_DIGEST_SIZE,
1522cdc6899SHuang Ying 	.init		= ghash_init,
1532cdc6899SHuang Ying 	.update		= ghash_update,
1542cdc6899SHuang Ying 	.final		= ghash_final,
1552cdc6899SHuang Ying 	.setkey		= ghash_setkey,
1562cdc6899SHuang Ying 	.descsize	= sizeof(struct ghash_desc_ctx),
1572cdc6899SHuang Ying 	.base		= {
1582cdc6899SHuang Ying 		.cra_name		= "ghash",
1592cdc6899SHuang Ying 		.cra_driver_name	= "ghash-generic",
1602cdc6899SHuang Ying 		.cra_priority		= 100,
1612cdc6899SHuang Ying 		.cra_blocksize		= GHASH_BLOCK_SIZE,
1622cdc6899SHuang Ying 		.cra_ctxsize		= sizeof(struct ghash_ctx),
1632cdc6899SHuang Ying 		.cra_module		= THIS_MODULE,
1642cdc6899SHuang Ying 		.cra_exit		= ghash_exit_tfm,
1652cdc6899SHuang Ying 	},
1662cdc6899SHuang Ying };
1672cdc6899SHuang Ying 
ghash_mod_init(void)1682cdc6899SHuang Ying static int __init ghash_mod_init(void)
1692cdc6899SHuang Ying {
1702cdc6899SHuang Ying 	return crypto_register_shash(&ghash_alg);
1712cdc6899SHuang Ying }
1722cdc6899SHuang Ying 
ghash_mod_exit(void)1732cdc6899SHuang Ying static void __exit ghash_mod_exit(void)
1742cdc6899SHuang Ying {
1752cdc6899SHuang Ying 	crypto_unregister_shash(&ghash_alg);
1762cdc6899SHuang Ying }
1772cdc6899SHuang Ying 
178c4741b23SEric Biggers subsys_initcall(ghash_mod_init);
1792cdc6899SHuang Ying module_exit(ghash_mod_exit);
1802cdc6899SHuang Ying 
1812cdc6899SHuang Ying MODULE_LICENSE("GPL");
1828dfa20fcSEric Biggers MODULE_DESCRIPTION("GHASH hash function");
1835d26a105SKees Cook MODULE_ALIAS_CRYPTO("ghash");
1843e14dcf7SMathias Krause MODULE_ALIAS_CRYPTO("ghash-generic");
185