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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/lib/crypto/tests/blake2b_kunit.c
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// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* Copyright 2025 Google LLC
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*/
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#include <crypto/blake2b.h>
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#include "blake2b-testvecs.h"
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/*
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* The following are compatibility functions that present BLAKE2b as an unkeyed
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* hash function that produces hashes of fixed length BLAKE2B_HASH_SIZE, so that
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* hash-test-template.h can be reused to test it.
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*/
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static void blake2b_default(const u8 *data, size_t len,
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u8 out[BLAKE2B_HASH_SIZE])
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{
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blake2b(NULL, 0, data, len, out, BLAKE2B_HASH_SIZE);
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}
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static void blake2b_init_default(struct blake2b_ctx *ctx)
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{
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blake2b_init(ctx, BLAKE2B_HASH_SIZE);
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}
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/*
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* Generate the HASH_KUNIT_CASES using hash-test-template.h. These test BLAKE2b
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* with a key length of 0 and a hash length of BLAKE2B_HASH_SIZE.
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*/
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#define HASH blake2b_default
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#define HASH_CTX blake2b_ctx
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#define HASH_SIZE BLAKE2B_HASH_SIZE
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#define HASH_INIT blake2b_init_default
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#define HASH_UPDATE blake2b_update
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#define HASH_FINAL blake2b_final
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#include "hash-test-template.h"
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/*
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* BLAKE2b specific test case which tests all possible combinations of key
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* length and hash length.
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*/
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static void test_blake2b_all_key_and_hash_lens(struct kunit *test)
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{
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const size_t data_len = 100;
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u8 *data = &test_buf[0];
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u8 *key = data + data_len;
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u8 *hash = key + BLAKE2B_KEY_SIZE;
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struct blake2b_ctx main_ctx;
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u8 main_hash[BLAKE2B_HASH_SIZE];
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rand_bytes_seeded_from_len(data, data_len);
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blake2b_init(&main_ctx, BLAKE2B_HASH_SIZE);
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for (int key_len = 0; key_len <= BLAKE2B_KEY_SIZE; key_len++) {
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rand_bytes_seeded_from_len(key, key_len);
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for (int out_len = 1; out_len <= BLAKE2B_HASH_SIZE; out_len++) {
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blake2b(key, key_len, data, data_len, hash, out_len);
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blake2b_update(&main_ctx, hash, out_len);
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}
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}
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blake2b_final(&main_ctx, main_hash);
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KUNIT_ASSERT_MEMEQ(test, main_hash, blake2b_keyed_testvec_consolidated,
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BLAKE2B_HASH_SIZE);
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}
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/*
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* BLAKE2b specific test case which tests using a guarded buffer for all allowed
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* key lengths. Also tests both blake2b() and blake2b_init_key().
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*/
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static void test_blake2b_with_guarded_key_buf(struct kunit *test)
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{
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const size_t data_len = 100;
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rand_bytes(test_buf, data_len);
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for (int key_len = 0; key_len <= BLAKE2B_KEY_SIZE; key_len++) {
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u8 key[BLAKE2B_KEY_SIZE];
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u8 *guarded_key = &test_buf[TEST_BUF_LEN - key_len];
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u8 hash1[BLAKE2B_HASH_SIZE];
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u8 hash2[BLAKE2B_HASH_SIZE];
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struct blake2b_ctx ctx;
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rand_bytes(key, key_len);
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memcpy(guarded_key, key, key_len);
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blake2b(key, key_len, test_buf, data_len,
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hash1, BLAKE2B_HASH_SIZE);
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blake2b(guarded_key, key_len, test_buf, data_len,
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hash2, BLAKE2B_HASH_SIZE);
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KUNIT_ASSERT_MEMEQ(test, hash1, hash2, BLAKE2B_HASH_SIZE);
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blake2b_init_key(&ctx, BLAKE2B_HASH_SIZE, guarded_key, key_len);
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blake2b_update(&ctx, test_buf, data_len);
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blake2b_final(&ctx, hash2);
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KUNIT_ASSERT_MEMEQ(test, hash1, hash2, BLAKE2B_HASH_SIZE);
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}
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}
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/*
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* BLAKE2b specific test case which tests using a guarded output buffer for all
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* allowed output lengths.
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*/
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static void test_blake2b_with_guarded_out_buf(struct kunit *test)
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{
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const size_t data_len = 100;
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rand_bytes(test_buf, data_len);
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for (int out_len = 1; out_len <= BLAKE2B_HASH_SIZE; out_len++) {
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u8 hash[BLAKE2B_HASH_SIZE];
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u8 *guarded_hash = &test_buf[TEST_BUF_LEN - out_len];
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blake2b(NULL, 0, test_buf, data_len, hash, out_len);
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blake2b(NULL, 0, test_buf, data_len, guarded_hash, out_len);
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KUNIT_ASSERT_MEMEQ(test, hash, guarded_hash, out_len);
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}
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}
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static struct kunit_case blake2b_test_cases[] = {
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HASH_KUNIT_CASES,
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KUNIT_CASE(test_blake2b_all_key_and_hash_lens),
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KUNIT_CASE(test_blake2b_with_guarded_key_buf),
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KUNIT_CASE(test_blake2b_with_guarded_out_buf),
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KUNIT_CASE(benchmark_hash),
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{},
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};
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static struct kunit_suite blake2b_test_suite = {
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.name = "blake2b",
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.test_cases = blake2b_test_cases,
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.suite_init = hash_suite_init,
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.suite_exit = hash_suite_exit,
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};
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kunit_test_suite(blake2b_test_suite);
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MODULE_DESCRIPTION("KUnit tests and benchmark for BLAKE2b");
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MODULE_LICENSE("GPL");
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