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Gilles Peskine0156a152021-01-26 21:23:56 +01001"""Knowledge about cryptographic mechanisms implemented in Mbed TLS.
2
3This module is entirely based on the PSA API.
4"""
5
6# Copyright The Mbed TLS Contributors
7# SPDX-License-Identifier: Apache-2.0
8#
9# Licensed under the Apache License, Version 2.0 (the "License"); you may
10# not use this file except in compliance with the License.
11# You may obtain a copy of the License at
12#
13# http://www.apache.org/licenses/LICENSE-2.0
14#
15# Unless required by applicable law or agreed to in writing, software
16# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
17# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
18# See the License for the specific language governing permissions and
19# limitations under the License.
20
Gilles Peskineee7554e2021-04-29 20:38:01 +020021import enum
Gilles Peskine0156a152021-01-26 21:23:56 +010022import re
Gilles Peskinefa70ced2022-03-17 12:52:24 +010023from typing import Iterable, Optional, Tuple
Gilles Peskine0156a152021-01-26 21:23:56 +010024
Gilles Peskine6f6483f2021-01-27 12:43:24 +010025from mbedtls_dev.asymmetric_key_data import ASYMMETRIC_KEY_DATA
26
Gilles Peskineee7554e2021-04-29 20:38:01 +020027
Gilles Peskine8345d632021-04-29 20:38:47 +020028BLOCK_CIPHERS = frozenset(['AES', 'ARIA', 'CAMELLIA', 'DES'])
Gilles Peskineee7554e2021-04-29 20:38:01 +020029BLOCK_MAC_MODES = frozenset(['CBC_MAC', 'CMAC'])
30BLOCK_CIPHER_MODES = frozenset([
31 'CTR', 'CFB', 'OFB', 'XTS', 'CCM_STAR_NO_TAG',
32 'ECB_NO_PADDING', 'CBC_NO_PADDING', 'CBC_PKCS7',
33])
34BLOCK_AEAD_MODES = frozenset(['CCM', 'GCM'])
35
Gilles Peskine8345d632021-04-29 20:38:47 +020036class EllipticCurveCategory(enum.Enum):
37 """Categorization of elliptic curve families.
38
39 The category of a curve determines what algorithms are defined over it.
40 """
41
42 SHORT_WEIERSTRASS = 0
43 MONTGOMERY = 1
44 TWISTED_EDWARDS = 2
45
46 @staticmethod
47 def from_family(family: str) -> 'EllipticCurveCategory':
48 if family == 'PSA_ECC_FAMILY_MONTGOMERY':
49 return EllipticCurveCategory.MONTGOMERY
50 if family == 'PSA_ECC_FAMILY_TWISTED_EDWARDS':
51 return EllipticCurveCategory.TWISTED_EDWARDS
52 # Default to SW, which most curves belong to.
53 return EllipticCurveCategory.SHORT_WEIERSTRASS
54
Gilles Peskineee7554e2021-04-29 20:38:01 +020055
Gilles Peskine0156a152021-01-26 21:23:56 +010056class KeyType:
57 """Knowledge about a PSA key type."""
58
Gilles Peskineb9dbb7f2021-04-29 20:19:57 +020059 def __init__(self, name: str, params: Optional[Iterable[str]] = None) -> None:
Gilles Peskine0156a152021-01-26 21:23:56 +010060 """Analyze a key type.
61
62 The key type must be specified in PSA syntax. In its simplest form,
Gilles Peskinefa3c69a2021-02-16 14:29:22 +010063 `name` is a string 'PSA_KEY_TYPE_xxx' which is the name of a PSA key
Gilles Peskine0156a152021-01-26 21:23:56 +010064 type macro. For key types that take arguments, the arguments can
65 be passed either through the optional argument `params` or by
Gilles Peskine4d0b0892021-04-12 13:41:52 +020066 passing an expression of the form 'PSA_KEY_TYPE_xxx(param1, ...)'
Gilles Peskinefa3c69a2021-02-16 14:29:22 +010067 in `name` as a string.
Gilles Peskine0156a152021-01-26 21:23:56 +010068 """
Gilles Peskined75adfc2021-02-17 18:04:28 +010069
Gilles Peskine0156a152021-01-26 21:23:56 +010070 self.name = name.strip()
Gilles Peskinefa3c69a2021-02-16 14:29:22 +010071 """The key type macro name (``PSA_KEY_TYPE_xxx``).
72
73 For key types constructed from a macro with arguments, this is the
74 name of the macro, and the arguments are in `self.params`.
75 """
Gilles Peskine0156a152021-01-26 21:23:56 +010076 if params is None:
77 if '(' in self.name:
78 m = re.match(r'(\w+)\s*\((.*)\)\Z', self.name)
79 assert m is not None
80 self.name = m.group(1)
Gilles Peskine4d0b0892021-04-12 13:41:52 +020081 params = m.group(2).split(',')
Gilles Peskinefa3c69a2021-02-16 14:29:22 +010082 self.params = (None if params is None else
83 [param.strip() for param in params])
84 """The parameters of the key type, if there are any.
85
86 None if the key type is a macro without arguments.
87 """
Gilles Peskined75adfc2021-02-17 18:04:28 +010088 assert re.match(r'PSA_KEY_TYPE_\w+\Z', self.name)
89
Gilles Peskine0156a152021-01-26 21:23:56 +010090 self.expression = self.name
Gilles Peskinefa3c69a2021-02-16 14:29:22 +010091 """A C expression whose value is the key type encoding."""
Gilles Peskine0156a152021-01-26 21:23:56 +010092 if self.params is not None:
93 self.expression += '(' + ', '.join(self.params) + ')'
Gilles Peskined75adfc2021-02-17 18:04:28 +010094
Gilles Peskine8345d632021-04-29 20:38:47 +020095 m = re.match(r'PSA_KEY_TYPE_(\w+)', self.name)
96 assert m
97 self.head = re.sub(r'_(?:PUBLIC_KEY|KEY_PAIR)\Z', r'', m.group(1))
98 """The key type macro name, with common prefixes and suffixes stripped."""
99
Gilles Peskine0156a152021-01-26 21:23:56 +0100100 self.private_type = re.sub(r'_PUBLIC_KEY\Z', r'_KEY_PAIR', self.name)
Gilles Peskinefa3c69a2021-02-16 14:29:22 +0100101 """The key type macro name for the corresponding key pair type.
102
103 For everything other than a public key type, this is the same as
104 `self.name`.
105 """
Gilles Peskinedf639682021-01-26 21:25:34 +0100106
Gilles Peskinee6300952021-04-29 21:56:59 +0200107 def is_public(self) -> bool:
108 """Whether the key type is for public keys."""
109 return self.name.endswith('_PUBLIC_KEY')
110
Gilles Peskinedf639682021-01-26 21:25:34 +0100111 ECC_KEY_SIZES = {
112 'PSA_ECC_FAMILY_SECP_K1': (192, 224, 256),
Gilles Peskine0ac258e2021-01-27 13:11:59 +0100113 'PSA_ECC_FAMILY_SECP_R1': (225, 256, 384, 521),
Gilles Peskinedf639682021-01-26 21:25:34 +0100114 'PSA_ECC_FAMILY_SECP_R2': (160,),
115 'PSA_ECC_FAMILY_SECT_K1': (163, 233, 239, 283, 409, 571),
116 'PSA_ECC_FAMILY_SECT_R1': (163, 233, 283, 409, 571),
117 'PSA_ECC_FAMILY_SECT_R2': (163,),
118 'PSA_ECC_FAMILY_BRAINPOOL_P_R1': (160, 192, 224, 256, 320, 384, 512),
119 'PSA_ECC_FAMILY_MONTGOMERY': (255, 448),
Gilles Peskinea00abc62021-03-16 18:25:14 +0100120 'PSA_ECC_FAMILY_TWISTED_EDWARDS': (255, 448),
Gilles Peskinedf639682021-01-26 21:25:34 +0100121 }
122 KEY_TYPE_SIZES = {
123 'PSA_KEY_TYPE_AES': (128, 192, 256), # exhaustive
Gilles Peskinedf639682021-01-26 21:25:34 +0100124 'PSA_KEY_TYPE_ARIA': (128, 192, 256), # exhaustive
125 'PSA_KEY_TYPE_CAMELLIA': (128, 192, 256), # exhaustive
126 'PSA_KEY_TYPE_CHACHA20': (256,), # exhaustive
127 'PSA_KEY_TYPE_DERIVE': (120, 128), # sample
128 'PSA_KEY_TYPE_DES': (64, 128, 192), # exhaustive
129 'PSA_KEY_TYPE_HMAC': (128, 160, 224, 256, 384, 512), # standard size for each supported hash
Manuel Pégourié-Gonnardb12de9f2021-05-03 11:02:56 +0200130 'PSA_KEY_TYPE_PASSWORD': (48, 168, 336), # sample
131 'PSA_KEY_TYPE_PASSWORD_HASH': (128, 256), # sample
132 'PSA_KEY_TYPE_PEPPER': (128, 256), # sample
Gilles Peskinedf639682021-01-26 21:25:34 +0100133 'PSA_KEY_TYPE_RAW_DATA': (8, 40, 128), # sample
134 'PSA_KEY_TYPE_RSA_KEY_PAIR': (1024, 1536), # small sample
135 }
136 def sizes_to_test(self) -> Tuple[int, ...]:
137 """Return a tuple of key sizes to test.
138
139 For key types that only allow a single size, or only a small set of
140 sizes, these are all the possible sizes. For key types that allow a
141 wide range of sizes, these are a representative sample of sizes,
142 excluding large sizes for which a typical resource-constrained platform
143 may run out of memory.
144 """
145 if self.private_type == 'PSA_KEY_TYPE_ECC_KEY_PAIR':
146 assert self.params is not None
147 return self.ECC_KEY_SIZES[self.params[0]]
148 return self.KEY_TYPE_SIZES[self.private_type]
Gilles Peskine397b0282021-01-26 21:26:26 +0100149
150 # "48657265006973206b6579a064617461"
151 DATA_BLOCK = b'Here\000is key\240data'
152 def key_material(self, bits: int) -> bytes:
153 """Return a byte string containing suitable key material with the given bit length.
154
155 Use the PSA export representation. The resulting byte string is one that
156 can be obtained with the following code:
157 ```
158 psa_set_key_type(&attributes, `self.expression`);
159 psa_set_key_bits(&attributes, `bits`);
160 psa_set_key_usage_flags(&attributes, PSA_KEY_USAGE_EXPORT);
161 psa_generate_key(&attributes, &id);
162 psa_export_key(id, `material`, ...);
163 ```
164 """
Gilles Peskine6f6483f2021-01-27 12:43:24 +0100165 if self.expression in ASYMMETRIC_KEY_DATA:
166 if bits not in ASYMMETRIC_KEY_DATA[self.expression]:
167 raise ValueError('No key data for {}-bit {}'
168 .format(bits, self.expression))
169 return ASYMMETRIC_KEY_DATA[self.expression][bits]
Gilles Peskine397b0282021-01-26 21:26:26 +0100170 if bits % 8 != 0:
Gilles Peskine6f6483f2021-01-27 12:43:24 +0100171 raise ValueError('Non-integer number of bytes: {} bits for {}'
172 .format(bits, self.expression))
Gilles Peskine397b0282021-01-26 21:26:26 +0100173 length = bits // 8
174 if self.name == 'PSA_KEY_TYPE_DES':
175 # "644573206b457901644573206b457902644573206b457904"
176 des3 = b'dEs kEy\001dEs kEy\002dEs kEy\004'
177 return des3[:length]
Gilles Peskine397b0282021-01-26 21:26:26 +0100178 return b''.join([self.DATA_BLOCK] * (length // len(self.DATA_BLOCK)) +
179 [self.DATA_BLOCK[:length % len(self.DATA_BLOCK)]])
gabor-mezei-arm2784bfe2021-06-28 20:02:11 +0200180
Gilles Peskine8345d632021-04-29 20:38:47 +0200181 def can_do(self, alg: 'Algorithm') -> bool:
182 """Whether this key type can be used for operations with the given algorithm.
183
184 This function does not currently handle key derivation or PAKE.
185 """
186 #pylint: disable=too-many-return-statements
187 if alg.is_wildcard:
188 return False
189 if self.head == 'HMAC' and alg.head == 'HMAC':
190 return True
191 if self.head in BLOCK_CIPHERS and \
192 alg.head in frozenset.union(BLOCK_MAC_MODES,
193 BLOCK_CIPHER_MODES,
194 BLOCK_AEAD_MODES):
195 return True
196 if self.head == 'CHACHA20' and alg.head == 'CHACHA20_POLY1305':
197 return True
198 if self.head in {'ARC4', 'CHACHA20'} and \
199 alg.head == 'STREAM_CIPHER':
200 return True
201 if self.head == 'RSA' and alg.head.startswith('RSA_'):
202 return True
203 if self.head == 'ECC':
204 assert self.params is not None
205 eccc = EllipticCurveCategory.from_family(self.params[0])
206 if alg.head == 'ECDH' and \
207 eccc in {EllipticCurveCategory.SHORT_WEIERSTRASS,
208 EllipticCurveCategory.MONTGOMERY}:
209 return True
210 if alg.head == 'ECDSA' and \
211 eccc == EllipticCurveCategory.SHORT_WEIERSTRASS:
212 return True
213 if alg.head in {'PURE_EDDSA', 'EDDSA_PREHASH'} and \
214 eccc == EllipticCurveCategory.TWISTED_EDWARDS:
215 return True
216 return False
217
Gilles Peskineee7554e2021-04-29 20:38:01 +0200218
219class AlgorithmCategory(enum.Enum):
220 """PSA algorithm categories."""
221 # The numbers are aligned with the category bits in numerical values of
222 # algorithms.
223 HASH = 2
224 MAC = 3
225 CIPHER = 4
226 AEAD = 5
227 SIGN = 6
228 ASYMMETRIC_ENCRYPTION = 7
229 KEY_DERIVATION = 8
230 KEY_AGREEMENT = 9
231 PAKE = 10
232
233 def requires_key(self) -> bool:
Gilles Peskinee6300952021-04-29 21:56:59 +0200234 """Whether operations in this category are set up with a key."""
Gilles Peskineee7554e2021-04-29 20:38:01 +0200235 return self not in {self.HASH, self.KEY_DERIVATION}
236
Gilles Peskinee6300952021-04-29 21:56:59 +0200237 def is_asymmetric(self) -> bool:
238 """Whether operations in this category involve asymmetric keys."""
239 return self in {
240 self.SIGN,
241 self.ASYMMETRIC_ENCRYPTION,
242 self.KEY_AGREEMENT
243 }
244
Gilles Peskineee7554e2021-04-29 20:38:01 +0200245
246class AlgorithmNotRecognized(Exception):
247 def __init__(self, expr: str) -> None:
248 super().__init__('Algorithm not recognized: ' + expr)
249 self.expr = expr
250
251
252class Algorithm:
253 """Knowledge about a PSA algorithm."""
254
255 @staticmethod
256 def determine_base(expr: str) -> str:
257 """Return an expression for the "base" of the algorithm.
258
259 This strips off variants of algorithms such as MAC truncation.
260
261 This function does not attempt to detect invalid inputs.
262 """
263 m = re.match(r'PSA_ALG_(?:'
264 r'(?:TRUNCATED|AT_LEAST_THIS_LENGTH)_MAC|'
265 r'AEAD_WITH_(?:SHORTENED|AT_LEAST_THIS_LENGTH)_TAG'
266 r')\((.*),[^,]+\)\Z', expr)
267 if m:
268 expr = m.group(1)
269 return expr
270
271 @staticmethod
272 def determine_head(expr: str) -> str:
273 """Return the head of an algorithm expression.
274
275 The head is the first (outermost) constructor, without its PSA_ALG_
276 prefix, and with some normalization of similar algorithms.
277 """
278 m = re.match(r'PSA_ALG_(?:DETERMINISTIC_)?(\w+)', expr)
279 if not m:
280 raise AlgorithmNotRecognized(expr)
281 head = m.group(1)
282 if head == 'KEY_AGREEMENT':
283 m = re.match(r'PSA_ALG_KEY_AGREEMENT\s*\(\s*PSA_ALG_(\w+)', expr)
284 if not m:
285 raise AlgorithmNotRecognized(expr)
286 head = m.group(1)
287 head = re.sub(r'_ANY\Z', r'', head)
288 if re.match(r'ED[0-9]+PH\Z', head):
289 head = 'EDDSA_PREHASH'
290 return head
291
292 CATEGORY_FROM_HEAD = {
293 'SHA': AlgorithmCategory.HASH,
294 'SHAKE256_512': AlgorithmCategory.HASH,
295 'MD': AlgorithmCategory.HASH,
296 'RIPEMD': AlgorithmCategory.HASH,
297 'ANY_HASH': AlgorithmCategory.HASH,
298 'HMAC': AlgorithmCategory.MAC,
299 'STREAM_CIPHER': AlgorithmCategory.CIPHER,
300 'CHACHA20_POLY1305': AlgorithmCategory.AEAD,
301 'DSA': AlgorithmCategory.SIGN,
302 'ECDSA': AlgorithmCategory.SIGN,
303 'EDDSA': AlgorithmCategory.SIGN,
304 'PURE_EDDSA': AlgorithmCategory.SIGN,
305 'RSA_PSS': AlgorithmCategory.SIGN,
306 'RSA_PKCS1V15_SIGN': AlgorithmCategory.SIGN,
307 'RSA_PKCS1V15_CRYPT': AlgorithmCategory.ASYMMETRIC_ENCRYPTION,
308 'RSA_OAEP': AlgorithmCategory.ASYMMETRIC_ENCRYPTION,
309 'HKDF': AlgorithmCategory.KEY_DERIVATION,
310 'TLS12_PRF': AlgorithmCategory.KEY_DERIVATION,
311 'TLS12_PSK_TO_MS': AlgorithmCategory.KEY_DERIVATION,
312 'PBKDF': AlgorithmCategory.KEY_DERIVATION,
313 'ECDH': AlgorithmCategory.KEY_AGREEMENT,
314 'FFDH': AlgorithmCategory.KEY_AGREEMENT,
315 # KEY_AGREEMENT(...) is a key derivation with a key agreement component
316 'KEY_AGREEMENT': AlgorithmCategory.KEY_DERIVATION,
317 'JPAKE': AlgorithmCategory.PAKE,
318 }
319 for x in BLOCK_MAC_MODES:
320 CATEGORY_FROM_HEAD[x] = AlgorithmCategory.MAC
321 for x in BLOCK_CIPHER_MODES:
322 CATEGORY_FROM_HEAD[x] = AlgorithmCategory.CIPHER
323 for x in BLOCK_AEAD_MODES:
324 CATEGORY_FROM_HEAD[x] = AlgorithmCategory.AEAD
325
326 def determine_category(self, expr: str, head: str) -> AlgorithmCategory:
327 """Return the category of the given algorithm expression.
328
329 This function does not attempt to detect invalid inputs.
330 """
331 prefix = head
332 while prefix:
333 if prefix in self.CATEGORY_FROM_HEAD:
334 return self.CATEGORY_FROM_HEAD[prefix]
335 if re.match(r'.*[0-9]\Z', prefix):
336 prefix = re.sub(r'_*[0-9]+\Z', r'', prefix)
337 else:
338 prefix = re.sub(r'_*[^_]*\Z', r'', prefix)
339 raise AlgorithmNotRecognized(expr)
340
341 @staticmethod
342 def determine_wildcard(expr) -> bool:
343 """Whether the given algorithm expression is a wildcard.
344
345 This function does not attempt to detect invalid inputs.
346 """
347 if re.search(r'\bPSA_ALG_ANY_HASH\b', expr):
348 return True
349 if re.search(r'_AT_LEAST_', expr):
350 return True
351 return False
352
353 def __init__(self, expr: str) -> None:
354 """Analyze an algorithm value.
355
356 The algorithm must be expressed as a C expression containing only
357 calls to PSA algorithm constructor macros and numeric literals.
358
359 This class is only programmed to handle valid expressions. Invalid
360 expressions may result in exceptions or in nonsensical results.
361 """
362 self.expression = re.sub(r'\s+', r'', expr)
363 self.base_expression = self.determine_base(self.expression)
364 self.head = self.determine_head(self.base_expression)
365 self.category = self.determine_category(self.base_expression, self.head)
366 self.is_wildcard = self.determine_wildcard(self.expression)
Gilles Peskinea4013862021-04-29 20:54:40 +0200367
368 def is_key_agreement_with_derivation(self) -> bool:
369 """Whether this is a combined key agreement and key derivation algorithm."""
370 if self.category != AlgorithmCategory.KEY_AGREEMENT:
371 return False
372 m = re.match(r'PSA_ALG_KEY_AGREEMENT\(\w+,\s*(.*)\)\Z', self.expression)
373 if not m:
374 return False
375 kdf_alg = m.group(1)
376 # Assume kdf_alg is either a valid KDF or 0.
377 return not re.match(r'(?:0[Xx])?0+\s*\Z', kdf_alg)
378
379 def can_do(self, category: AlgorithmCategory) -> bool:
380 """Whether this algorithm fits the specified operation category."""
381 if category == self.category:
382 return True
383 if category == AlgorithmCategory.KEY_DERIVATION and \
384 self.is_key_agreement_with_derivation():
385 return True
386 return False