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gabor-mezei-armdb9a38c2021-09-27 11:28:54 +02001/**
2 * Constant-time functions
3 *
4 * Copyright The Mbed TLS Contributors
5 * SPDX-License-Identifier: Apache-2.0
6 *
7 * Licensed under the Apache License, Version 2.0 (the "License"); you may
8 * not use this file except in compliance with the License.
9 * You may obtain a copy of the License at
10 *
11 * http://www.apache.org/licenses/LICENSE-2.0
12 *
13 * Unless required by applicable law or agreed to in writing, software
14 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
15 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
16 * See the License for the specific language governing permissions and
17 * limitations under the License.
18 */
19
20#include "common.h"
21
gabor-mezei-arm3f90fd52021-09-27 12:55:33 +020022#if defined(MBEDTLS_BIGNUM_C)
23#include "mbedtls/bignum.h"
24#endif
25
gabor-mezei-arm1349ffd2021-09-27 14:28:31 +020026#if defined(MBEDTLS_SSL_TLS_C)
27#include "ssl_misc.h"
28#endif
29
gabor-mezei-armdb9a38c2021-09-27 11:28:54 +020030#include <stddef.h>
31
gabor-mezei-armdb9a38c2021-09-27 11:28:54 +020032
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020033/** Constant-time buffer comparison without branches.
34 *
35 * This is equivalent to the standard memncmp function, but is likely to be
36 * compiled to code using bitwise operation rather than a branch.
37 *
38 * This function can be used to write constant-time code by replacing branches
39 * with bit operations using masks.
40 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020041 * \param a Pointer to the first buffer.
42 * \param b Pointer to the second buffer.
43 * \param n The number of bytes to compare in the buffer.
44 *
45 * \return Zero if the content of the two buffer is the same,
46 * otherwise non-zero.
47 */
gabor-mezei-arm46025642021-07-19 15:19:19 +020048int mbedtls_cf_memcmp( const void *a,
49 const void *b,
50 size_t n );
gabor-mezei-arm340948e2021-09-27 11:40:03 +020051
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020052/** Turn a value into a mask:
53 * - if \p value == 0, return the all-bits 0 mask, aka 0
54 * - otherwise, return the all-bits 1 mask, aka (size_t) -1
55 *
56 * This function can be used to write constant-time code by replacing branches
57 * with bit operations using masks.
58 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020059 * \param value The value to analyze.
60 *
61 * \return Zero if \p value is zero, otherwise all-bits-one.
62 */
gabor-mezei-arm340948e2021-09-27 11:40:03 +020063unsigned mbedtls_cf_uint_mask( unsigned value );
gabor-mezei-arm3733bf82021-09-27 11:49:42 +020064
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020065/** Turn a value into a mask:
66 * - if \p value == 0, return the all-bits 0 mask, aka 0
67 * - otherwise, return the all-bits 1 mask, aka (size_t) -1
68 *
69 * This function can be used to write constant-time code by replacing branches
70 * with bit operations using masks.
71 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020072 * \param value The value to analyze.
73 *
74 * \return Zero if \p value is zero, otherwise all-bits-one.
75 */
gabor-mezei-arm396438c2021-08-10 20:56:21 +020076size_t mbedtls_cf_size_mask( size_t value );
gabor-mezei-armc76227d2021-09-27 11:53:54 +020077
gabor-mezei-arm9cb55692021-08-11 15:07:02 +020078#if defined(MBEDTLS_BIGNUM_C)
79
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020080/** Turn a value into a mask:
81 * - if \p value == 0, return the all-bits 0 mask, aka 0
82 * - otherwise, return the all-bits 1 mask, aka (size_t) -1
83 *
84 * This function can be used to write constant-time code by replacing branches
85 * with bit operations using masks.
86 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020087 * \param value The value to analyze.
88 *
89 * \return Zero if \p value is zero, otherwise all-bits-one.
90 */
gabor-mezei-arm9cb55692021-08-11 15:07:02 +020091mbedtls_mpi_uint mbedtls_cf_mpi_uint_mask( mbedtls_mpi_uint value );
92
93#endif /* MBEDTLS_BIGNUM_C */
94
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +020095/** Constant-flow mask generation for "greater or equal" comparison:
96 * - if \p x >= \p y, return all-bits 1, that is (size_t) -1
97 * - otherwise, return all bits 0, that is 0
98 *
99 * This function can be used to write constant-time code by replacing branches
100 * with bit operations using masks.
101 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200102 * \param x The first value to analyze.
103 * \param y The second value to analyze.
104 *
105 * \return All-bits-one if \p x is greater or equal than \p y,
106 * otherwise zero.
107 */
gabor-mezei-arm2dcd7682021-09-27 16:29:52 +0200108size_t mbedtls_cf_size_mask_ge( size_t x,
109 size_t y );
gabor-mezei-arm8d1d5fd2021-09-27 12:15:19 +0200110
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200111/** Constant-flow boolean "equal" comparison:
112 * return x == y
113 *
114 * This is equivalent to \p x == \p y, but is likely to be compiled
115 * to code using bitwise operation rather than a branch.
116 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200117 * \param x The first value to analyze.
118 * \param y The second value to analyze.
119 *
120 * \return 1 if \p x equals to \p y, otherwise 0.
121 */
gabor-mezei-armb11a56e2021-08-11 17:28:49 +0200122unsigned mbedtls_cf_size_bool_eq( size_t x,
123 size_t y );
gabor-mezei-arm5a854422021-09-27 12:25:07 +0200124
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200125/** Constant-flow "greater than" comparison:
126 * return x > y
127 *
128 * This is equivalent to \p x > \p y, but is likely to be compiled
129 * to code using bitwise operation rather than a branch.
130 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200131 * \param x The first value to analyze.
132 * \param y The second value to analyze.
133 *
134 * \return 1 if \p x greater than \p y, otherwise 0.
135 */
gabor-mezei-arm87ac5be2021-08-10 20:36:09 +0200136unsigned mbedtls_cf_size_gt( size_t x,
137 size_t y );
gabor-mezei-arm3f90fd52021-09-27 12:55:33 +0200138
139#if defined(MBEDTLS_BIGNUM_C)
140
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200141/** Decide if an integer is less than the other, without branches.
142 *
143 * This is equivalent to \p x < \p y, but is likely to be compiled
144 * to code using bitwise operation rather than a branch.
145 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200146 * \param x The first value to analyze.
147 * \param y The second value to analyze.
148 *
149 * \return 1 if \p x is less than \p y, otherwise 0.
150 */
gabor-mezei-arm3f90fd52021-09-27 12:55:33 +0200151unsigned mbedtls_cf_mpi_uint_lt( const mbedtls_mpi_uint x,
152 const mbedtls_mpi_uint y );
153
154#endif /* MBEDTLS_BIGNUM_C */
gabor-mezei-armb2dbf2c2021-09-27 12:59:30 +0200155
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200156/** Choose between two integer values without branches.
157 *
158 * This is equivalent to `condition ? if1 : if0`, but is likely to be compiled
159 * to code using bitwise operation rather than a branch.
160 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200161 * \param condition Condition to test.
162 * \param if1 Value to use if \p condition is nonzero.
163 * \param if0 Value to use if \p condition is zero.
164 *
165 * \return \c if1 if \p condition is nonzero, otherwise \c if0.
166 */
gabor-mezei-arm87ac5be2021-08-10 20:36:09 +0200167unsigned mbedtls_cf_uint_if( unsigned condition,
gabor-mezei-arm2dcd7682021-09-27 16:29:52 +0200168 unsigned if1,
169 unsigned if0 );
gabor-mezei-armb2dbf2c2021-09-27 12:59:30 +0200170
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200171/** Choose between two integer values without branches.
172 *
173 * This is equivalent to `condition ? if1 : if0`, but is likely to be compiled
174 * to code using bitwise operation rather than a branch.
175 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200176 * \param condition Condition to test.
177 * \param if1 Value to use if \p condition is nonzero.
178 * \param if0 Value to use if \p condition is zero.
179 *
180 * \return \c if1 if \p condition is nonzero, otherwise \c if0.
181 */
gabor-mezei-arm87ac5be2021-08-10 20:36:09 +0200182size_t mbedtls_cf_size_if( unsigned condition,
gabor-mezei-arm2dcd7682021-09-27 16:29:52 +0200183 size_t if1,
184 size_t if0 );
gabor-mezei-arm65cefdb2021-09-27 15:47:00 +0200185
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200186/** Select between two sign values witout branches.
187 *
188 * This is functionally equivalent to `condition ? if1 : if0` but uses only bit
189 * operations in order to avoid branches.
190 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200191 *
192 * \param condition Condition to test.
193 * \param if1 The first sign; must be either +1 or -1.
194 * \param if0 The second sign; must be either +1 or -1.
195 *
196 * \return \c if1 if \p condition is nonzero, otherwise \c if0. */
gabor-mezei-arm87ac5be2021-08-10 20:36:09 +0200197int mbedtls_cf_cond_select_sign( unsigned char condition,
198 int if1,
199 int if0 );
gabor-mezei-armbe8d98b2021-09-27 13:17:15 +0200200
201#if defined(MBEDTLS_BIGNUM_C)
202
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200203/** Conditionally assign a value without branches.
204 *
205 * This is equivalent to `if ( condition ) dest = src`, but is likely
206 * to be compiled to code using bitwise operation rather than a branch.
207 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200208 * \param n \p dest and \p src must be arrays of limbs of size n.
209 * \param dest The MPI to conditionally assign to. This must point
210 * to an initialized MPI.
211 * \param src The MPI to be assigned from. This must point to an
212 * initialized MPI.
213 * \param condition Condition to test, must be 0 or 1.
214 */
gabor-mezei-armbe8d98b2021-09-27 13:17:15 +0200215void mbedtls_cf_mpi_uint_cond_assign( size_t n,
216 mbedtls_mpi_uint *dest,
217 const mbedtls_mpi_uint *src,
gabor-mezei-arm87ac5be2021-08-10 20:36:09 +0200218 unsigned char condition );
gabor-mezei-armbe8d98b2021-09-27 13:17:15 +0200219
220#endif /* MBEDTLS_BIGNUM_C */
gabor-mezei-arm394aeaa2021-09-27 13:31:06 +0200221
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200222
223/** Shift some data towards the left inside a buffer.
224 *
225 * `mbedtls_cf_mem_move_to_left(start, total, offset)` is functionally
226 * equivalent to
227 * ```
228 * memmove(start, start + offset, total - offset);
229 * memset(start + offset, 0, total - offset);
230 * ```
231 * but it strives to use a memory access pattern (and thus total timing)
232 * that does not depend on \p offset. This timing independence comes at
233 * the expense of performance.
234 *
235 * \param start Pointer to the start of the buffer.
236 * \param total Total size of the buffer.
237 * \param offset Offset from which to copy \p total - \p offset bytes.
238 */
gabor-mezei-arm394aeaa2021-09-27 13:31:06 +0200239void mbedtls_cf_mem_move_to_left( void *start,
240 size_t total,
241 size_t offset );
gabor-mezei-armdee0fd32021-09-27 13:34:25 +0200242
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200243/** Conditional memcpy without branches.
244 *
245 * This is equivalent to `if ( c1 == c2 ) memcpy(dst, src, len)`, but is likely
246 * to be compiled to code using bitwise operation rather than a branch.
247 *
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200248 * \param dest The pointer to conditionally copy to.
249 * \param src The pointer to copy from.
250 * \param len The number of bytes to copy.
251 * \param c1 The first value to analyze in the condition.
252 * \param c2 The second value to analyze in the condition.
253 */
gabor-mezei-arm87ac5be2021-08-10 20:36:09 +0200254void mbedtls_cf_memcpy_if_eq( unsigned char *dest,
gabor-mezei-armdee0fd32021-09-27 13:34:25 +0200255 const unsigned char *src,
256 size_t len,
257 size_t c1, size_t c2 );
gabor-mezei-arm0e7f71e2021-09-27 13:57:45 +0200258
259/** Copy data from a secret position with constant flow.
260 *
261 * This function copies \p len bytes from \p src_base + \p offset_secret to \p
262 * dst, with a code flow and memory access pattern that does not depend on \p
263 * offset_secret, but only on \p offset_min, \p offset_max and \p len.
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200264 * Functionally equivalent to memcpy(dst, src + offset_secret, len).
gabor-mezei-arm0e7f71e2021-09-27 13:57:45 +0200265 *
266 * \param dst The destination buffer. This must point to a writable
267 * buffer of at least \p len bytes.
268 * \param src_base The base of the source buffer. This must point to a
269 * readable buffer of at least \p offset_max + \p len
270 * bytes.
271 * \param offset_secret The offset in the source buffer from which to copy.
272 * This must be no less than \p offset_min and no greater
273 * than \p offset_max.
274 * \param offset_min The minimal value of \p offset_secret.
275 * \param offset_max The maximal value of \p offset_secret.
276 * \param len The number of bytes to copy.
277 */
278void mbedtls_cf_memcpy_offset( unsigned char *dst,
279 const unsigned char *src_base,
280 size_t offset_secret,
gabor-mezei-arm2dcd7682021-09-27 16:29:52 +0200281 size_t offset_min,
282 size_t offset_max,
gabor-mezei-arm0e7f71e2021-09-27 13:57:45 +0200283 size_t len );
gabor-mezei-arm1349ffd2021-09-27 14:28:31 +0200284
285#if defined(MBEDTLS_SSL_SOME_SUITES_USE_TLS_CBC)
286
287/** Compute the HMAC of variable-length data with constant flow.
288 *
289 * This function computes the HMAC of the concatenation of \p add_data and \p
290 * data, and does with a code flow and memory access pattern that does not
291 * depend on \p data_len_secret, but only on \p min_data_len and \p
292 * max_data_len. In particular, this function always reads exactly \p
293 * max_data_len bytes from \p data.
294 *
295 * \param ctx The HMAC context. It must have keys configured
296 * with mbedtls_md_hmac_starts() and use one of the
297 * following hashes: SHA-384, SHA-256, SHA-1 or MD-5.
298 * It is reset using mbedtls_md_hmac_reset() after
299 * the computation is complete to prepare for the
300 * next computation.
301 * \param add_data The additional data prepended to \p data. This
302 * must point to a readable buffer of \p add_data_len
303 * bytes.
304 * \param add_data_len The length of \p add_data in bytes.
305 * \param data The data appended to \p add_data. This must point
306 * to a readable buffer of \p max_data_len bytes.
307 * \param data_len_secret The length of the data to process in \p data.
308 * This must be no less than \p min_data_len and no
309 * greater than \p max_data_len.
310 * \param min_data_len The minimal length of \p data in bytes.
311 * \param max_data_len The maximal length of \p data in bytes.
312 * \param output The HMAC will be written here. This must point to
313 * a writable buffer of sufficient size to hold the
314 * HMAC value.
315 *
316 * \retval 0 on success.
317 * \retval MBEDTLS_ERR_PLATFORM_HW_ACCEL_FAILED
318 * The hardware accelerator failed.
319 */
gabor-mezei-arm2dcd7682021-09-27 16:29:52 +0200320int mbedtls_cf_hmac( mbedtls_md_context_t *ctx,
321 const unsigned char *add_data,
322 size_t add_data_len,
323 const unsigned char *data,
324 size_t data_len_secret,
325 size_t min_data_len,
326 size_t max_data_len,
327 unsigned char *output );
gabor-mezei-arm1349ffd2021-09-27 14:28:31 +0200328
329#endif /* MBEDTLS_SSL_SOME_SUITES_USE_TLS_CBC */
gabor-mezei-armfdb71182021-09-27 16:11:12 +0200330
331#if defined(MBEDTLS_PKCS1_V15) && defined(MBEDTLS_RSA_C) && !defined(MBEDTLS_RSA_ALT)
332
gabor-mezei-arm90d96cc2021-08-11 16:40:35 +0200333/** This function performs the unpadding part of a PKCS#1 v1.5 decryption
334 * operation (RSAES-PKCS1-v1_5-DECRYPT).
335 *
336 * \note The output buffer length \c output_max_len should be
337 * as large as the size \p ctx->len of \p ctx->N, for example,
338 * 128 Bytes if RSA-1024 is used, to be able to hold an
339 * arbitrary decrypted message. If it is not large enough to
340 * hold the decryption of the particular ciphertext provided,
341 * the function returns #MBEDTLS_ERR_RSA_OUTPUT_TOO_LARGE.
342 *
343 * \param ilen The length of the ciphertext.
344 * \param olen The address at which to store the length of
345 * the plaintext. This must not be \c NULL.
346 * \param output The buffer used to hold the plaintext. This must
347 * be a writable buffer of length \p output_max_len Bytes.
348 * \param output_max_len The length in Bytes of the output buffer \p output.
349 * \param buf The input buffer for the unpadding operation.
350 *
351 * \return \c 0 on success.
352 * \return An \c MBEDTLS_ERR_RSA_XXX error code on failure.
353 */
gabor-mezei-armfdb71182021-09-27 16:11:12 +0200354int mbedtls_cf_rsaes_pkcs1_v15_unpadding( size_t ilen,
355 size_t *olen,
356 unsigned char *output,
357 size_t output_max_len,
358 unsigned char *buf );
359
360#endif /* MBEDTLS_PKCS1_V15 && MBEDTLS_RSA_C && ! MBEDTLS_RSA_ALT */