// SPDX-License-Identifier: (GPL-2.0-only OR BSD-3-Clause)
/* Copyright (C) 2016-2022 Jason A. Donenfeld <Jason@zx2c4.com>. All Rights Reserved.
*
* Test cases for siphash.c
*
* SipHash: a fast short-input PRF
* https://131002.net/siphash/
*
* This implementation is specifically for SipHash2-4 for a secure PRF
* and HalfSipHash1-3/SipHash1-3 for an insecure PRF only suitable for
* hashtables.
*/
#define pr_fmt(fmt) KBUILD_MODNAME
": " fmt
#include <kunit/test.h>
#include <linux/siphash.h>
#include <linux/kernel.h>
#include <linux/string.h>
#include <linux/errno.h>
#include <linux/module.h>
/* Test vectors taken from reference source available at:
* https://github.com/veorq/SipHash
*/
static const siphash_key_t test_key_siphash =
{{
0 x0706050403020100ULL,
0 x0f0e0d0c0b0a0908ULL }};
static const u64 test_vectors_siphash[
64 ] = {
0 x726fdb47dd0e0e31ULL,
0 x74f839c593dc67fdULL,
0 x0d6c8009d9a94f5aULL,
0 x85676696d7fb7e2dULL,
0 xcf2794e0277187b7ULL,
0 x18765564cd99a68dULL,
0 xcbc9466e58fee3ceULL,
0 xab0200f58b01d137ULL,
0 x93f5f5799a932462ULL,
0 x9e0082df0ba9e4b0ULL,
0 x7a5dbbc594ddb9f3ULL,
0 xf4b32f46226bada7ULL,
0 x751e8fbc860ee5fbULL,
0 x14ea5627c0843d90ULL,
0 xf723ca908e7af2eeULL,
0 xa129ca6149be45e5ULL,
0 x3f2acc7f57c29bdbULL,
0 x699ae9f52cbe4794ULL,
0 x4bc1b3f0968dd39cULL,
0 xbb6dc91da77961bdULL,
0 xbed65cf21aa2ee98ULL,
0 xd0f2cbb02e3b67c7ULL,
0 x93536795e3a33e88ULL,
0 xa80c038ccd5ccec8ULL,
0 xb8ad50c6f649af94ULL,
0 xbce192de8a85b8eaULL,
0 x17d835b85bbb15f3ULL,
0 x2f2e6163076bcfadULL,
0 xde4daaaca71dc9a5ULL,
0 xa6a2506687956571ULL,
0 xad87a3535c49ef28ULL,
0 x32d892fad841c342ULL,
0 x7127512f72f27cceULL,
0 xa7f32346f95978e3ULL,
0 x12e0b01abb051238ULL,
0 x15e034d40fa197aeULL,
0 x314dffbe0815a3b4ULL,
0 x027990f029623981ULL,
0 xcadcd4e59ef40c4dULL,
0 x9abfd8766a33735cULL,
0 x0e3ea96b5304a7d0ULL,
0 xad0c42d6fc585992ULL,
0 x187306c89bc215a9ULL,
0 xd4a60abcf3792b95ULL,
0 xf935451de4f21df2ULL,
0 xa9538f0419755787ULL,
0 xdb9acddff56ca510ULL,
0 xd06c98cd5c0975ebULL,
0 xe612a3cb9ecba951ULL,
0 xc766e62cfcadaf96ULL,
0 xee64435a9752fe72ULL,
0 xa192d576b245165aULL,
0 x0a8787bf8ecb74b2ULL,
0 x81b3e73d20b49b6fULL,
0 x7fa8220ba3b2eceaULL,
0 x245731c13ca42499ULL,
0 xb78dbfaf3a8d83bdULL,
0 xea1ad565322a1a0bULL,
0 x60e61c23a3795013ULL,
0 x6606d7e446282b93ULL,
0 x6ca4ecb15c5f91e1ULL,
0 x9f626da15c9625f3ULL,
0 xe51b38608ef25f57ULL,
0 x958a324ceb064572ULL
};
#if BITS_PER_LONG ==
64
static const hsiphash_key_t test_key_hsiphash =
{{
0 x0706050403020100ULL,
0 x0f0e0d0c0b0a0908ULL }};
static const u32 test_vectors_hsiphash[
64 ] = {
0 x050fc4dcU,
0 x7d57ca93U,
0 x4dc7d44dU,
0 xe7ddf7fbU,
0 x88d38328U,
0 x49533b67U,
0 xc59f22a7U,
0 x9bb11140U,
0 x8d299a8eU,
0 x6c063de4U,
0 x92ff097fU,
0 xf94dc352U,
0 x57b4d9a2U,
0 x1229ffa7U,
0 xc0f95d34U,
0 x2a519956U,
0 x7d908b66U,
0 x63dbd80cU,
0 xb473e63eU,
0 x8d297d1cU,
0 xa6cce040U,
0 x2b45f844U,
0 xa320872eU,
0 xdae6c123U,
0 x67349c8cU,
0 x705b0979U,
0 xca9913a5U,
0 x4ade3b35U,
0 xef6cd00dU,
0 x4ab1e1f4U,
0 x43c5e663U,
0 x8c21d1bcU,
0 x16a7b60dU,
0 x7a8ff9bfU,
0 x1f2a753eU,
0 xbf186b91U,
0 xada26206U,
0 xa3c33057U,
0 xae3a36a1U,
0 x7b108392U,
0 x99e41531U,
0 x3f1ad944U,
0 xc8138825U,
0 xc28949a6U,
0 xfaf8876bU,
0 x9f042196U,
0 x68b1d623U,
0 x8b5114fdU,
0 xdf074c46U,
0 x12cc86b3U,
0 x0a52098fU,
0 x9d292f9aU,
0 xa2f41f12U,
0 x43a71ed0U,
0 x73f0bce6U,
0 x70a7e980U,
0 x243c6d75U,
0 xfdb71513U,
0 xa67d8a08U,
0 xb7e8f148U,
0 xf7a644eeU,
0 x0f1837f2U,
0 x4b6694e0U,
0 xb7bbb3a8U
};
#else
static const hsiphash_key_t test_key_hsiphash =
{{
0 x03020100U,
0 x07060504U }};
static const u32 test_vectors_hsiphash[
64 ] = {
0 x5814c896U,
0 xe7e864caU,
0 xbc4b0e30U,
0 x01539939U,
0 x7e059ea6U,
0 x88e3d89bU,
0 xa0080b65U,
0 x9d38d9d6U,
0 x577999b1U,
0 xc839caedU,
0 xe4fa32cfU,
0 x959246eeU,
0 x6b28096cU,
0 x66dd9cd6U,
0 x16658a7cU,
0 xd0257b04U,
0 x8b31d501U,
0 x2b1cd04bU,
0 x06712339U,
0 x522aca67U,
0 x911bb605U,
0 x90a65f0eU,
0 xf826ef7bU,
0 x62512debU,
0 x57150ad7U,
0 x5d473507U,
0 x1ec47442U,
0 xab64afd3U,
0 x0a4100d0U,
0 x6d2ce652U,
0 x2331b6a3U,
0 x08d8791aU,
0 xbc6dda8dU,
0 xe0f6c934U,
0 xb0652033U,
0 x9b9851ccU,
0 x7c46fb7fU,
0 x732ba8cbU,
0 xf142997aU,
0 xfcc9aa1bU,
0 x05327eb2U,
0 xe110131cU,
0 xf9e5e7c0U,
0 xa7d708a6U,
0 x11795ab1U,
0 x65671619U,
0 x9f5fff91U,
0 xd89c5267U,
0 x007783ebU,
0 x95766243U,
0 xab639262U,
0 x9c7e1390U,
0 xc368dda6U,
0 x38ddc455U,
0 xfa13d379U,
0 x979ea4e8U,
0 x53ecd77eU,
0 x2ee80657U,
0 x33dbb66aU,
0 xae3f0577U,
0 x88b4c4ccU,
0 x3e7f480bU,
0 x74c1ebf8U,
0 x87178304U
};
#endif
#define chk(hash, vector, fmt...) \
KUNIT_EXPECT_EQ_MSG(test, hash, vector, fmt)
static void siphash_test(
struct kunit *test)
{
u8 in[
64 ] __aligned(SIPHASH_ALIGNMENT);
u8 in_unaligned[
65 ] __aligned(SIPHASH_ALIGNMENT);
u8 i;
for (i =
0 ; i <
64 ; ++i) {
in[i] = i;
in_unaligned[i +
1 ] = i;
chk(siphash(in, i, &test_key_siphash),
test_vectors_siphash[i],
"siphash self-test aligned %u: FAIL" , i +
1 );
chk(siphash(in_unaligned +
1 , i, &test_key_siphash),
test_vectors_siphash[i],
"siphash self-test unaligned %u: FAIL" , i +
1 );
chk(hsiphash(in, i, &test_key_hsiphash),
test_vectors_hsiphash[i],
"hsiphash self-test aligned %u: FAIL" , i +
1 );
chk(hsiphash(in_unaligned +
1 , i, &test_key_hsiphash),
test_vectors_hsiphash[i],
"hsiphash self-test unaligned %u: FAIL" , i +
1 );
}
chk(siphash_1u64(
0 x0706050403020100ULL, &test_key_siphash),
test_vectors_siphash[
8 ],
"siphash self-test 1u64: FAIL" );
chk(siphash_2u64(
0 x0706050403020100ULL,
0 x0f0e0d0c0b0a0908ULL,
&test_key_siphash),
test_vectors_siphash[
16 ],
"siphash self-test 2u64: FAIL" );
chk(siphash_3u64(
0 x0706050403020100ULL,
0 x0f0e0d0c0b0a0908ULL,
0 x1716151413121110ULL, &test_key_siphash),
test_vectors_siphash[
24 ],
"siphash self-test 3u64: FAIL" );
chk(siphash_4u64(
0 x0706050403020100ULL,
0 x0f0e0d0c0b0a0908ULL,
0 x1716151413121110ULL,
0 x1f1e1d1c1b1a1918ULL,
&test_key_siphash),
test_vectors_siphash[
32 ],
"siphash self-test 4u64: FAIL" );
chk(siphash_1u32(
0 x03020100U, &test_key_siphash),
test_vectors_siphash[
4 ],
"siphash self-test 1u32: FAIL" );
chk(siphash_2u32(
0 x03020100U,
0 x07060504U, &test_key_siphash),
test_vectors_siphash[
8 ],
"siphash self-test 2u32: FAIL" );
chk(siphash_3u32(
0 x03020100U,
0 x07060504U,
0 x0b0a0908U, &test_key_siphash),
test_vectors_siphash[
12 ],
"siphash self-test 3u32: FAIL" );
chk(siphash_4u32(
0 x03020100U,
0 x07060504U,
0 x0b0a0908U,
0 x0f0e0d0cU, &test_key_siphash),
test_vectors_siphash[
16 ],
"siphash self-test 4u32: FAIL" );
chk(hsiphash_1u32(
0 x03020100U, &test_key_hsiphash),
test_vectors_hsiphash[
4 ],
"hsiphash self-test 1u32: FAIL" );
chk(hsiphash_2u32(
0 x03020100U,
0 x07060504U, &test_key_hsiphash),
test_vectors_hsiphash[
8 ],
"hsiphash self-test 2u32: FAIL" );
chk(hsiphash_3u32(
0 x03020100U,
0 x07060504U,
0 x0b0a0908U, &test_key_hsiphash),
test_vectors_hsiphash[
12 ],
"hsiphash self-test 3u32: FAIL" );
chk(hsiphash_4u32(
0 x03020100U,
0 x07060504U,
0 x0b0a0908U,
0 x0f0e0d0cU, &test_key_hsiphash),
test_vectors_hsiphash[
16 ],
"hsiphash self-test 4u32: FAIL" );
}
static struct kunit_case siphash_test_cases[] = {
KUNIT_CASE(siphash_test),
{}
};
static struct kunit_suite siphash_test_suite = {
.name =
"siphash" ,
.test_cases = siphash_test_cases,
};
kunit_test_suite(siphash_test_suite);
MODULE_AUTHOR(
"Jason A. Donenfeld <Jason@zx2c4.com>" );
MODULE_DESCRIPTION(
"Test cases for siphash.c" );
MODULE_LICENSE(
"Dual BSD/GPL" );
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