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1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 | # SPDX-License-Identifier: GPL-2.0+ # Copyright (c) 2022 Massimo Pegorer """ Test that mkimage generates auto-FIT with signatures and/or hashes as expected. The mkimage tool can create auto generated (i.e. without an ITS file provided as input) FIT in three different flavours: with crc32 checksums of 'images' subnodes; with signatures of 'images' subnodes; with sha1 hashes of 'images' subnodes and signatures of 'configurations' subnodes. This test verifies that auto-FIT are generated as expected, in all of the three flavours, including check of hashes and signatures (except for configurations ones). The test does not run the sandbox. It only checks the host tool mkimage. """ import os import pytest import utils import binascii from Cryptodome.Hash import SHA1 from Cryptodome.Hash import SHA256 from Cryptodome.PublicKey import RSA from Cryptodome.Signature import pkcs1_15 class SignedFitHelper(object): """Helper to manipulate a FIT with signed/hashed images/configs.""" def __init__(self, ubman, file_name): self.fit = file_name self.ubman = ubman self.images_nodes = set() self.confgs_nodes = set() def __fdt_list(self, path): return utils.run_and_log(self.ubman, f'fdtget -l {self.fit} {path}') def __fdt_get_string(self, node, prop): return utils.run_and_log(self.ubman, f'fdtget -ts {self.fit} {node} {prop}') def __fdt_get_binary(self, node, prop): numbers = utils.run_and_log(self.ubman, f'fdtget -tbi {self.fit} {node} {prop}') bignum = bytearray() for little_num in numbers.split(): bignum.append(int(little_num)) return bignum def build_nodes_sets(self): """Fill sets with FIT images and configurations subnodes.""" for node in self.__fdt_list('/images').split(): subnode = f'/images/{node}' self.images_nodes.add(subnode) for node in self.__fdt_list('/configurations').split(): subnode = f'/configurations/{node}' self.confgs_nodes.add(subnode) return len(self.images_nodes) + len(self.confgs_nodes) def check_fit_crc32_images(self): """Test that all images in the set are hashed as expected. Each image must have an hash with algo=crc32 and hash value must match the one calculated over image data. """ for node in self.images_nodes: algo = self.__fdt_get_string(f'{node}/hash', 'algo') assert algo == "crc32\n", "Missing expected crc32 image hash!" raw_crc32 = self.__fdt_get_binary(f'{node}/hash', 'value') raw_bin = self.__fdt_get_binary(node, 'data') assert raw_crc32 == (binascii.crc32(raw_bin) & 0xffffffff).to_bytes(4, 'big'), "Wrong crc32 hash!" def check_fit_signed_images(self, key_name, sign_algo, verifier): """Test that all images in the set are signed as expected. Each image must have a signature with: key-name-hint matching key_name argument; algo matching sign_algo argument; value matching the one calculated over image data using verifier argument. """ for node in self.images_nodes: hint = self.__fdt_get_string(f'{node}/signature', 'key-name-hint') assert hint == key_name + "\n", "Missing expected key name hint!" algo = self.__fdt_get_string(f'{node}/signature', 'algo') assert algo == sign_algo + "\n", "Missing expected signature algo!" raw_sig = self.__fdt_get_binary(f'{node}/signature', 'value') raw_bin = self.__fdt_get_binary(node, 'data') verifier.verify(SHA256.new(raw_bin), bytes(raw_sig)) def check_fit_signed_confgs(self, key_name, sign_algo): """Test that all configs are signed, and images hashed, as expected. Each image must have an hash with algo=sha1 and hash value must match the one calculated over image data. Each configuration must have a signature with key-name-hint matching key_name argument and algo matching sign_algo argument. TODO: configurations signature checking. """ for node in self.images_nodes: algo = self.__fdt_get_string(f'{node}/hash', 'algo') assert algo == "sha1\n", "Missing expected sha1 image hash!" raw_hash = self.__fdt_get_binary(f'{node}/hash', 'value') raw_bin = self.__fdt_get_binary(node, 'data') assert raw_hash == SHA1.new(raw_bin).digest(), "Wrong sha1 hash!" for node in self.confgs_nodes: hint = self.__fdt_get_string(f'{node}/signature', 'key-name-hint') assert hint == key_name + "\n", "Missing expected key name hint!" algo = self.__fdt_get_string(f'{node}/signature', 'algo') assert algo == sign_algo + "\n", "Missing expected signature algo!" @pytest.mark.buildconfigspec('fit_signature') @pytest.mark.requiredtool('fdtget') @pytest.mark.slow def test_fit_auto_signed(ubman): """Test that mkimage generates auto-FIT with signatures/hashes as expected. The mkimage tool can create auto generated (i.e. without an ITS file provided as input) FIT in three different flavours: with crc32 checksums of 'images' subnodes; with signatures of 'images' subnodes; with sha1 hashes of 'images' subnodes and signatures of 'configurations' subnodes. This test verifies that auto-FIT are generated as expected, in all of the three flavours, including check of hashes and signatures (except for configurations ones). The test does not run the sandbox. It only checks the host tool mkimage. """ mkimage = ubman.config.build_dir + '/tools/mkimage' tempdir = os.path.join(ubman.config.result_dir, 'auto_fit') os.makedirs(tempdir, exist_ok=True) kernel_file = f'{tempdir}/vmlinuz' dt1_file = f'{tempdir}/dt-1.dtb' dt2_file = f'{tempdir}/dt-2.dtb' key_name = 'sign-key' sign_algo = 'sha256,rsa4096' key_file = f'{tempdir}/{key_name}.key' fit_file = f'{tempdir}/test.fit' # Create a fake kernel image and two dtb files with random data with open(kernel_file, 'wb') as fd: fd.write(os.urandom(512)) with open(dt1_file, 'wb') as fd: fd.write(os.urandom(256)) with open(dt2_file, 'wb') as fd: fd.write(os.urandom(256)) # Create 4096 RSA key and write to file to be read by mkimage key = RSA.generate(bits=4096) verifier = pkcs1_15.new(key) with open(key_file, 'w') as fd: fd.write(str(key.export_key(format='PEM').decode('ascii'))) b_args = " -d" + kernel_file + " -b" + dt1_file + " -b" + dt2_file s_args = " -k" + tempdir + " -g" + key_name + " -o" + sign_algo # 1 - Create auto FIT with images crc32 checksum, and verify it utils.run_and_log(ubman, mkimage + ' -fauto' + b_args + " " + fit_file) fit = SignedFitHelper(ubman, fit_file) if fit.build_nodes_sets() == 0: raise ValueError('FIT-1 has no "/image" nor "/configuration" nodes') fit.check_fit_crc32_images() # 2 - Create auto FIT with signed images, and verify it utils.run_and_log(ubman, mkimage + ' -fauto' + b_args + s_args + " " + fit_file) fit = SignedFitHelper(ubman, fit_file) if fit.build_nodes_sets() == 0: raise ValueError('FIT-2 has no "/image" nor "/configuration" nodes') fit.check_fit_signed_images(key_name, sign_algo, verifier) # 3 - Create auto FIT with signed configs and hashed images, and verify it utils.run_and_log(ubman, mkimage + ' -fauto-conf' + b_args + s_args + " " + fit_file) fit = SignedFitHelper(ubman, fit_file) if fit.build_nodes_sets() == 0: raise ValueError('FIT-3 has no "/image" nor "/configuration" nodes') fit.check_fit_signed_confgs(key_name, sign_algo) |