// SPDX-License-Identifier: GPL-2.0-or-later /* * KUnit test suite for AES-CCM * * Copyright 2026 Google LLC */ #include #include #include "test-utils.h" /* AES-CCM test vectors from external sources */ static const struct aes_ccm_testvec { const char *name; const char *key; size_t key_len; const char *nonce; size_t nonce_len; const char *ad; size_t ad_len; const char *ptext; const char *ctext; size_t data_len; const char *tag; size_t tag_len; } aes_ccm_testvecs[] = { { .name = "RFC 3610 Packet Vector #1", .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", .key_len = 16, .nonce = "\x00\x00\x00\x03\x02\x01\x00\xa0" "\xa1\xa2\xa3\xa4\xa5", .nonce_len = 13, .ad = "\x00\x01\x02\x03\x04\x05\x06\x07", .ad_len = 8, .ptext = "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" "\x10\x11\x12\x13\x14\x15\x16\x17" "\x18\x19\x1a\x1b\x1c\x1d\x1e", .ctext = "\x58\x8c\x97\x9a\x61\xc6\x63\xd2" "\xf0\x66\xd0\xc2\xc0\xf9\x89\x80" "\x6d\x5f\x6b\x61\xda\xc3\x84", .data_len = 23, .tag = "\x17\xe8\xd1\x2c\xfd\xf9\x26\xe0", .tag_len = 8, }, { .name = "RFC 3610 Packet Vector #5", .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", .key_len = 16, .nonce = "\x00\x00\x00\x07\x06\x05\x04\xa0" "\xa1\xa2\xa3\xa4\xa5", .nonce_len = 13, .ad = "\x00\x01\x02\x03\x04\x05\x06\x07" "\x08\x09\x0a\x0b", .ad_len = 12, .ptext = "\x0c\x0d\x0e\x0f\x10\x11\x12\x13" "\x14\x15\x16\x17\x18\x19\x1a\x1b" "\x1c\x1d\x1e\x1f", .ctext = "\xdc\xf1\xfb\x7b\x5d\x9e\x23\xfb" "\x9d\x4e\x13\x12\x53\x65\x8a\xd8" "\x6e\xbd\xca\x3e", .data_len = 20, .tag = "\x51\xe8\x3f\x07\x7d\x9c\x2d\x93", .tag_len = 8, }, { .name = "RFC 3610 Packet Vector #9", .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", .key_len = 16, .nonce = "\x00\x00\x00\x0b\x0a\x09\x08\xa0" "\xa1\xa2\xa3\xa4\xa5", .nonce_len = 13, .ad = "\x00\x01\x02\x03\x04\x05\x06\x07", .ad_len = 8, .ptext = "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" "\x10\x11\x12\x13\x14\x15\x16\x17" "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" "\x20", .ctext = "\x82\x53\x1a\x60\xcc\x24\x94\x5a" "\x4b\x82\x79\x18\x1a\xb5\xc8\x4d" "\xf2\x1c\xe7\xf9\xb7\x3f\x42\xe1" "\x97", .data_len = 25, .tag = "\xea\x9c\x07\xe5\x6b\x5e\xb1\x7e" "\x5f\x4e", .tag_len = 10, }, { .name = "NIST SP 800-38C Example 1", .key = "\x40\x41\x42\x43\x44\x45\x46\x47" "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f", .key_len = 16, .nonce = "\x10\x11\x12\x13\x14\x15\x16", .nonce_len = 7, .ad = "\x00\x01\x02\x03\x04\x05\x06\x07", .ad_len = 8, .ptext = "\x20\x21\x22\x23", .ctext = "\x71\x62\x01\x5b", .data_len = 4, .tag = "\x4d\xac\x25\x5d", .tag_len = 4, }, { .name = "NIST SP 800-38C Example 2", .key = "\x40\x41\x42\x43\x44\x45\x46\x47" "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f", .key_len = 16, .nonce = "\x10\x11\x12\x13\x14\x15\x16\x17", .nonce_len = 8, .ad = "\x00\x01\x02\x03\x04\x05\x06\x07" "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", .ad_len = 16, .ptext = "\x20\x21\x22\x23\x24\x25\x26\x27" "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f", .ctext = "\xd2\xa1\xf0\xe0\x51\xea\x5f\x62" "\x08\x1a\x77\x92\x07\x3d\x59\x3d", .data_len = 16, .tag = "\x1f\xc6\x4f\xbf\xac\xcd", .tag_len = 6, }, { .name = "NIST SP 800-38C Example 3", .key = "\x40\x41\x42\x43\x44\x45\x46\x47" "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f", .key_len = 16, .nonce = "\x10\x11\x12\x13\x14\x15\x16\x17" "\x18\x19\x1a\x1b", .nonce_len = 12, .ad = "\x00\x01\x02\x03\x04\x05\x06\x07" "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" "\x10\x11\x12\x13", .ad_len = 20, .ptext = "\x20\x21\x22\x23\x24\x25\x26\x27" "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" "\x30\x31\x32\x33\x34\x35\x36\x37", .ctext = "\xe3\xb2\x01\xa9\xf5\xb7\x1a\x7a" "\x9b\x1c\xea\xec\xcd\x97\xe7\x0b" "\x61\x76\xaa\xd9\xa4\x42\x8a\xa5", .data_len = 24, .tag = "\x48\x43\x92\xfb\xc1\xb0\x99\x51", .tag_len = 8, }, }; static void test_aes_ccm_one_test_vector(struct kunit *test, const struct aes_ccm_testvec *tv) { u8 *ctext = alloc_buf(test, tv->data_len); u8 *decrypted = alloc_buf(test, tv->data_len); u8 *tag = alloc_buf(test, tv->tag_len); struct aes_ccm_key key; int err; err = aes_ccm_preparekey(&key, tv->key, tv->key_len, tv->tag_len); KUNIT_ASSERT_EQ_MSG(test, 0, err, "Failed to prepare key for %s", tv->name); err = aes_ccm_encrypt(ctext, tv->ptext, tv->data_len, tag, tv->ad, tv->ad_len, tv->nonce, tv->nonce_len, &key); KUNIT_ASSERT_EQ_MSG(test, 0, err, "Encryption failed for %s", tv->name); KUNIT_ASSERT_MEMEQ_MSG(test, tv->ctext, ctext, tv->data_len, "Wrong ciphertext for %s", tv->name); KUNIT_ASSERT_MEMEQ_MSG(test, tag, tv->tag, tv->tag_len, "Wrong tag for %s", tv->name); err = aes_ccm_decrypt(decrypted, ctext, tv->data_len, tag, tv->ad, tv->ad_len, tv->nonce, tv->nonce_len, &key); KUNIT_ASSERT_EQ_MSG(test, 0, err, "Decryption failed for %s", tv->name); KUNIT_ASSERT_MEMEQ_MSG(test, tv->ptext, decrypted, tv->data_len, "Wrong plaintext for %s", tv->name); } static void test_aes_ccm_test_vectors(struct kunit *test) { for (size_t i = 0; i < ARRAY_SIZE(aes_ccm_testvecs); i++) test_aes_ccm_one_test_vector(test, &aes_ccm_testvecs[i]); } /* * Test NIST SP 800-38C Example 4, which uses a deterministically-generated * 65536-byte associated data string. */ static void test_aes_ccm_nist_sp800_38c_example4(struct kunit *test) { struct aes_ccm_testvec tv = { .name = "NIST SP 800-38C Example 4", .key_len = 16, .nonce_len = 13, .ad_len = 65536, .ctext = "\x69\x91\x5d\xad\x1e\x84\xc6\x37" "\x6a\x68\xc2\x96\x7e\x4d\xab\x61" "\x5a\xe0\xfd\x1f\xae\xc4\x4c\xc4" "\x84\x82\x85\x29\x46\x3c\xcf\x72", .data_len = 32, .tag = "\xb4\xac\x6b\xec\x93\xe8\x59\x8e" "\x7f\x0d\xad\xbc\xea\x5b", .tag_len = 14, }; u8 *key, *nonce, *ad, *ptext; key = alloc_buf(test, tv.key_len); for (size_t i = 0; i < tv.key_len; i++) key[i] = 0x40 + i; nonce = alloc_guarded_buf(test, tv.nonce_len); for (size_t i = 0; i < tv.nonce_len; i++) nonce[i] = 0x10 + i; ad = alloc_guarded_buf(test, tv.ad_len); for (size_t i = 0; i < tv.ad_len; i++) ad[i] = (u8)i; ptext = alloc_guarded_buf(test, tv.data_len); for (size_t i = 0; i < tv.data_len; i++) ptext[i] = 0x20 + i; tv.key = key; tv.nonce = nonce; tv.ad = ad; tv.ptext = ptext; test_aes_ccm_one_test_vector(test, &tv); } static const size_t aes_ccm_valid_key_lens[] = { 16, 24, 32 }; #define AEAD_MAX_KEY_LEN 32 #define AEAD_VALID_KEY_LENS aes_ccm_valid_key_lens static const size_t aes_ccm_valid_nonce_lens[] = { 7, 8, 9, 10, 11, 12, 13 }; #define AEAD_MAX_NONCE_LEN 13 #define AEAD_VALID_NONCE_LENS aes_ccm_valid_nonce_lens static const size_t aes_ccm_valid_tag_lens[] = { 4, 6, 8, 10, 12, 14, 16 }; #define AEAD_MAX_TAG_LEN 16 #define AEAD_VALID_TAG_LENS aes_ccm_valid_tag_lens #define AEAD_KEY aes_ccm_key #define AEAD_CTX aes_ccm_ctx #define AEAD_PREPAREKEY aes_ccm_preparekey #define AEAD_ENCRYPT aes_ccm_encrypt #define AEAD_DECRYPT aes_ccm_decrypt #define AEAD_INIT aes_ccm_init #define AEAD_AUTH_UPDATE aes_ccm_auth_update #define AEAD_ENCRYPT_UPDATE aes_ccm_encrypt_update #define AEAD_DECRYPT_UPDATE aes_ccm_decrypt_update #define AEAD_ENCRYPT_FINAL aes_ccm_encrypt_final #define AEAD_DECRYPT_FINAL aes_ccm_decrypt_final /* This value was generated by gen-aead-testvecs.py. */ static const u8 aes_ccm_monte_carlo_checksum[BLAKE2S_HASH_SIZE] = { 0x70, 0x1c, 0xde, 0xa4, 0xe2, 0x03, 0x50, 0xb2, 0xf5, 0x9e, 0x61, 0x66, 0xe4, 0xe5, 0x13, 0x1a, 0x00, 0x95, 0x34, 0x03, 0xb7, 0x61, 0x2c, 0xdb, 0xc3, 0x15, 0x36, 0x84, 0x93, 0x7f, 0xb4, 0x5b, }; #define AEAD_MONTE_CARLO_CHECKSUM aes_ccm_monte_carlo_checksum #include "aead-test-template.h" /* * Test that for each AES-CCM nonce length, the message length is validated * against the correct corresponding maximum message length. */ static void test_aes_ccm_data_len_too_large(struct kunit *test) { static const struct { size_t nonce_len; u64 max_data_len; } lens[] = { /* clang-format off */ { 7, 0xffffffffffffffff }, /* U64_MAX */ { 8, 0xffffffffffffff }, { 9, 0xffffffffffff }, { 10, 0xffffffffff }, { 11, 0xffffffff }, { 12, 0xffffff }, { 13, 0xffff }, /* clang-format on */ }; u8 nonce[13] = {}; u8 raw_key[AES_KEYSIZE_256] = {}; int err; struct aes_ccm_key *key = alloc_buf(test, sizeof(*key)); struct aes_ccm_ctx ctx; err = aes_ccm_preparekey(key, raw_key, sizeof(raw_key), 16); KUNIT_ASSERT_EQ(test, 0, err); for (size_t i = 0; i < ARRAY_SIZE(lens); i++) { size_t nonce_len = lens[i].nonce_len; u64 max_data_len = lens[i].max_data_len; /* data_len <= max_data_len should be accepted. */ err = aes_ccm_init(&ctx, 0, 0, nonce, nonce_len, key); KUNIT_ASSERT_EQ_MSG( test, 0, err, "data_len=0 wasn't accepted with nonce_len=%zu", nonce_len); err = aes_ccm_init(&ctx, max_data_len, 0, nonce, nonce_len, key); KUNIT_ASSERT_EQ_MSG( test, 0, err, "data_len=%llu wasn't accepted with nonce_len=%zu", max_data_len, nonce_len); /* data_len > max_data_len should be rejected. */ if (max_data_len == U64_MAX) continue; err = aes_ccm_init(&ctx, max_data_len + 1, 0, nonce, nonce_len, key); KUNIT_ASSERT_EQ_MSG( test, -EOVERFLOW, err, "data_len=%llu wasn't rejected with -EOVERFLOW with nonce_len=%zu (aes_ccm_init)", max_data_len + 1, nonce_len); if (max_data_len + 1 <= SIZE_MAX) { err = aes_ccm_encrypt(NULL, NULL, max_data_len + 1, NULL, NULL, 0, nonce, nonce_len, key); KUNIT_ASSERT_EQ_MSG( test, -EOVERFLOW, err, "data_len=%llu wasn't rejected with -EOVERFLOW with nonce_len=%zu (aes_ccm_encrypt)", max_data_len + 1, nonce_len); err = aes_ccm_decrypt(NULL, NULL, max_data_len + 1, NULL, NULL, 0, nonce, nonce_len, key); KUNIT_ASSERT_EQ_MSG( test, -EOVERFLOW, err, "data_len=%llu wasn't rejected with -EOVERFLOW with nonce_len=%zu (aes_ccm_decrypt)", max_data_len + 1, nonce_len); } err = aes_ccm_init(&ctx, U64_MAX, 0, nonce, nonce_len, key); KUNIT_ASSERT_EQ_MSG( test, -EOVERFLOW, err, "data_len=U64_MAX wasn't rejected with -EOVERFLOW with nonce_len=%zu (aes_ccm_init)", nonce_len); } } static struct kunit_case aes_ccm_test_cases[] = { KUNIT_CASE(test_aes_ccm_test_vectors), KUNIT_CASE(test_aes_ccm_nist_sp800_38c_example4), KUNIT_CASE(test_aes_ccm_data_len_too_large), AEAD_KUNIT_CASES, {}, }; static struct kunit_suite aes_ccm_test_suite = { .name = "aes_ccm", .test_cases = aes_ccm_test_cases, }; kunit_test_suite(aes_ccm_test_suite); MODULE_DESCRIPTION("KUnit tests and benchmark for AES-CCM"); MODULE_LICENSE("GPL");