12aeef50eSEric Biggers#!/usr/bin/env python3 22aeef50eSEric Biggers# SPDX-License-Identifier: GPL-2.0-or-later 32aeef50eSEric Biggers# 42aeef50eSEric Biggers# Script that generates known-good data used in the AEAD tests. 52aeef50eSEric Biggers# 62aeef50eSEric Biggers# Requires that python-cryptography be installed. 72aeef50eSEric Biggers# 82aeef50eSEric Biggers# Copyright 2026 Google LLC 92aeef50eSEric Biggers 102aeef50eSEric Biggersimport hashlib 112aeef50eSEric Biggersimport sys 122aeef50eSEric Biggersimport cryptography.hazmat.primitives.ciphers.aead 132aeef50eSEric Biggers 142aeef50eSEric Biggers 152aeef50eSEric Biggers# Deterministically generate 'length' random bytes. 162aeef50eSEric Biggersdef rand_bytes(length): 172aeef50eSEric Biggers seed = length 182aeef50eSEric Biggers out = [] 192aeef50eSEric Biggers for _ in range(length): 202aeef50eSEric Biggers seed = (seed * 25214903917 + 11) % 2**48 212aeef50eSEric Biggers out.append((seed >> 16) % 256) 222aeef50eSEric Biggers return bytes(out) 232aeef50eSEric Biggers 242aeef50eSEric Biggers 252aeef50eSEric Biggers# Deterministically generate many different AEAD inputs using exactly the same 262aeef50eSEric Biggers# method that the test uses; encrypt them using an independent implementation of 272aeef50eSEric Biggers# the algorithm; compute the checksum of all the resulting (ciphertext, authtag) 282aeef50eSEric Biggers# pairs concatenated to each other; and print the checksum as a C struct. 292aeef50eSEric Biggersdef gen_monte_carlo_checksum(alg): 302aeef50eSEric Biggers blake2s = hashlib.blake2s() 312aeef50eSEric Biggers for data_len in range(1025): 322aeef50eSEric Biggers ad_len = data_len % 293 332aeef50eSEric Biggers pt = rand_bytes(data_len) 342aeef50eSEric Biggers ad = rand_bytes(ad_len) 352aeef50eSEric Biggers if alg == "aes-ccm": 362aeef50eSEric Biggers key_len = [16, 24, 32][data_len % 3] 372aeef50eSEric Biggers key = rand_bytes(key_len) 382aeef50eSEric Biggers nonce = rand_bytes([7, 8, 9, 10, 11, 12, 13][data_len % 7]) 392aeef50eSEric Biggers tag_len = [4, 6, 8, 10, 12, 14, 16][data_len % 7] 402aeef50eSEric Biggers ccm = cryptography.hazmat.primitives.ciphers.aead.AESCCM( 412aeef50eSEric Biggers key, tag_length=tag_len 422aeef50eSEric Biggers ) 432aeef50eSEric Biggers ct_and_tag = ccm.encrypt(nonce, pt, ad) 44*b09bd2d9SEric Biggers elif alg == "aes-gcm": 45*b09bd2d9SEric Biggers key_len = [16, 24, 32][data_len % 3] 46*b09bd2d9SEric Biggers key = rand_bytes(key_len) 47*b09bd2d9SEric Biggers nonce = rand_bytes(12) 48*b09bd2d9SEric Biggers tag_len = [4, 8, 12, 13, 14, 15, 16][data_len % 7] 49*b09bd2d9SEric Biggers gcm = cryptography.hazmat.primitives.ciphers.aead.AESGCM(key) 50*b09bd2d9SEric Biggers # python-cryptography supports only 16-byte GCM tags. However, in 51*b09bd2d9SEric Biggers # GCM, shorter tags are simply truncated. Do that below. 52*b09bd2d9SEric Biggers ct_and_tag = gcm.encrypt(nonce, pt, ad)[: data_len + tag_len] 532aeef50eSEric Biggers 542aeef50eSEric Biggers blake2s.update(ct_and_tag) 552aeef50eSEric Biggers 562aeef50eSEric Biggers name = f"{alg.replace('-', '_')}_monte_carlo_checksum" 572aeef50eSEric Biggers value = blake2s.digest() 582aeef50eSEric Biggers print(f"static const u8 {name}[BLAKE2S_HASH_SIZE] = {{") 592aeef50eSEric Biggers for i in range(0, len(value), 11): 602aeef50eSEric Biggers line = "\t" + "".join(f"0x{b:02x}, " for b in value[i : i + 11]) 612aeef50eSEric Biggers print(f"{line.rstrip()}") 622aeef50eSEric Biggers print("};") 632aeef50eSEric Biggers 642aeef50eSEric Biggers 65*b09bd2d9SEric Biggersif len(sys.argv) != 2 or sys.argv[1] not in ("aes-ccm", "aes-gcm"): 66*b09bd2d9SEric Biggers sys.stderr.write("Usage: gen-aead-testvecs.py [aes-ccm|aes-gcm]\n") 672aeef50eSEric Biggers sys.exit(1) 682aeef50eSEric Biggers 692aeef50eSEric Biggersgen_monte_carlo_checksum(sys.argv[1]) 70