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Same as sha256 and sha512: Use the state format that the generic partial block handling code produces, as requested by Herbert, even though this is applicable only to legacy drivers. Reviewed-by: Ard Biesheuvel <ardb@kernel.org> Link: https://lore.kernel.org/r/20250712232329.818226-7-ebiggers@kernel.org Signed-off-by: Eric Biggers <ebiggers@kernel.org>
201 lines
5.5 KiB
C
201 lines
5.5 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* Crypto API support for SHA-1 and HMAC-SHA1
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*
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* Copyright (c) Alan Smithee.
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* Copyright (c) Andrew McDonald <andrew@mcdonald.org.uk>
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* Copyright (c) Jean-Francois Dive <jef@linuxbe.org>
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* Copyright 2025 Google LLC
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*/
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#include <crypto/internal/hash.h>
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#include <crypto/sha1.h>
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#include <linux/kernel.h>
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#include <linux/module.h>
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/*
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* Export and import functions. crypto_shash wants a particular format that
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* matches that used by some legacy drivers. It currently is the same as the
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* library SHA context, except the value in bytecount must be block-aligned and
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* the remainder must be stored in an extra u8 appended to the struct.
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*/
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#define SHA1_SHASH_STATE_SIZE (sizeof(struct sha1_ctx) + 1)
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static_assert(sizeof(struct sha1_ctx) == sizeof(struct sha1_state));
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static_assert(offsetof(struct sha1_ctx, state) == offsetof(struct sha1_state, state));
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static_assert(offsetof(struct sha1_ctx, bytecount) == offsetof(struct sha1_state, count));
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static_assert(offsetof(struct sha1_ctx, buf) == offsetof(struct sha1_state, buffer));
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static int __crypto_sha1_export(const struct sha1_ctx *ctx0, void *out)
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{
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struct sha1_ctx ctx = *ctx0;
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unsigned int partial;
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u8 *p = out;
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partial = ctx.bytecount % SHA1_BLOCK_SIZE;
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ctx.bytecount -= partial;
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memcpy(p, &ctx, sizeof(ctx));
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p += sizeof(ctx);
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*p = partial;
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return 0;
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}
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static int __crypto_sha1_import(struct sha1_ctx *ctx, const void *in)
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{
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const u8 *p = in;
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memcpy(ctx, p, sizeof(*ctx));
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p += sizeof(*ctx);
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ctx->bytecount += *p;
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return 0;
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}
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const u8 sha1_zero_message_hash[SHA1_DIGEST_SIZE] = {
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0xda, 0x39, 0xa3, 0xee, 0x5e, 0x6b, 0x4b, 0x0d,
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0x32, 0x55, 0xbf, 0xef, 0x95, 0x60, 0x18, 0x90,
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0xaf, 0xd8, 0x07, 0x09
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};
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EXPORT_SYMBOL_GPL(sha1_zero_message_hash);
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#define SHA1_CTX(desc) ((struct sha1_ctx *)shash_desc_ctx(desc))
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static int crypto_sha1_init(struct shash_desc *desc)
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{
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sha1_init(SHA1_CTX(desc));
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return 0;
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}
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static int crypto_sha1_update(struct shash_desc *desc,
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const u8 *data, unsigned int len)
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{
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sha1_update(SHA1_CTX(desc), data, len);
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return 0;
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}
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static int crypto_sha1_final(struct shash_desc *desc, u8 *out)
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{
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sha1_final(SHA1_CTX(desc), out);
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return 0;
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}
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static int crypto_sha1_digest(struct shash_desc *desc,
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const u8 *data, unsigned int len, u8 *out)
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{
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sha1(data, len, out);
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return 0;
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}
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static int crypto_sha1_export(struct shash_desc *desc, void *out)
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{
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return __crypto_sha1_export(SHA1_CTX(desc), out);
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}
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static int crypto_sha1_import(struct shash_desc *desc, const void *in)
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{
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return __crypto_sha1_import(SHA1_CTX(desc), in);
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}
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#define HMAC_SHA1_KEY(tfm) ((struct hmac_sha1_key *)crypto_shash_ctx(tfm))
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#define HMAC_SHA1_CTX(desc) ((struct hmac_sha1_ctx *)shash_desc_ctx(desc))
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static int crypto_hmac_sha1_setkey(struct crypto_shash *tfm,
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const u8 *raw_key, unsigned int keylen)
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{
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hmac_sha1_preparekey(HMAC_SHA1_KEY(tfm), raw_key, keylen);
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return 0;
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}
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static int crypto_hmac_sha1_init(struct shash_desc *desc)
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{
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hmac_sha1_init(HMAC_SHA1_CTX(desc), HMAC_SHA1_KEY(desc->tfm));
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return 0;
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}
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static int crypto_hmac_sha1_update(struct shash_desc *desc,
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const u8 *data, unsigned int len)
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{
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hmac_sha1_update(HMAC_SHA1_CTX(desc), data, len);
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return 0;
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}
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static int crypto_hmac_sha1_final(struct shash_desc *desc, u8 *out)
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{
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hmac_sha1_final(HMAC_SHA1_CTX(desc), out);
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return 0;
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}
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static int crypto_hmac_sha1_digest(struct shash_desc *desc,
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const u8 *data, unsigned int len, u8 *out)
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{
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hmac_sha1(HMAC_SHA1_KEY(desc->tfm), data, len, out);
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return 0;
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}
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static int crypto_hmac_sha1_export(struct shash_desc *desc, void *out)
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{
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return __crypto_sha1_export(&HMAC_SHA1_CTX(desc)->sha_ctx, out);
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}
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static int crypto_hmac_sha1_import(struct shash_desc *desc, const void *in)
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{
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struct hmac_sha1_ctx *ctx = HMAC_SHA1_CTX(desc);
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ctx->ostate = HMAC_SHA1_KEY(desc->tfm)->ostate;
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return __crypto_sha1_import(&ctx->sha_ctx, in);
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}
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static struct shash_alg algs[] = {
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{
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.base.cra_name = "sha1",
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.base.cra_driver_name = "sha1-lib",
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.base.cra_priority = 300,
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.base.cra_blocksize = SHA1_BLOCK_SIZE,
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.base.cra_module = THIS_MODULE,
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.digestsize = SHA1_DIGEST_SIZE,
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.init = crypto_sha1_init,
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.update = crypto_sha1_update,
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.final = crypto_sha1_final,
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.digest = crypto_sha1_digest,
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.export = crypto_sha1_export,
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.import = crypto_sha1_import,
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.descsize = sizeof(struct sha1_ctx),
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.statesize = SHA1_SHASH_STATE_SIZE,
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},
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{
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.base.cra_name = "hmac(sha1)",
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.base.cra_driver_name = "hmac-sha1-lib",
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.base.cra_priority = 300,
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.base.cra_blocksize = SHA1_BLOCK_SIZE,
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.base.cra_ctxsize = sizeof(struct hmac_sha1_key),
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.base.cra_module = THIS_MODULE,
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.digestsize = SHA1_DIGEST_SIZE,
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.setkey = crypto_hmac_sha1_setkey,
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.init = crypto_hmac_sha1_init,
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.update = crypto_hmac_sha1_update,
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.final = crypto_hmac_sha1_final,
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.digest = crypto_hmac_sha1_digest,
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.export = crypto_hmac_sha1_export,
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.import = crypto_hmac_sha1_import,
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.descsize = sizeof(struct hmac_sha1_ctx),
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.statesize = SHA1_SHASH_STATE_SIZE,
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},
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};
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static int __init crypto_sha1_mod_init(void)
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{
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return crypto_register_shashes(algs, ARRAY_SIZE(algs));
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}
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module_init(crypto_sha1_mod_init);
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static void __exit crypto_sha1_mod_exit(void)
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{
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crypto_unregister_shashes(algs, ARRAY_SIZE(algs));
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}
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module_exit(crypto_sha1_mod_exit);
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MODULE_LICENSE("GPL");
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MODULE_DESCRIPTION("Crypto API support for SHA-1 and HMAC-SHA1");
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MODULE_ALIAS_CRYPTO("sha1");
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MODULE_ALIAS_CRYPTO("sha1-lib");
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MODULE_ALIAS_CRYPTO("hmac(sha1)");
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MODULE_ALIAS_CRYPTO("hmac-sha1-lib");
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