1 /**
2  *  Constant-time functions
3  *
4  *  Copyright The Mbed TLS Contributors
5  *  SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
6  */
7 
8 #ifndef MBEDTLS_CONSTANT_TIME_IMPL_H
9 #define MBEDTLS_CONSTANT_TIME_IMPL_H
10 
11 #include <stddef.h>
12 
13 #include "common.h"
14 
15 #if defined(MBEDTLS_BIGNUM_C)
16 #include "mbedtls/bignum.h"
17 #endif
18 
19 /*
20  * To improve readability of constant_time_internal.h, the static inline
21  * definitions are here, and constant_time_internal.h has only the declarations.
22  *
23  * This results in duplicate declarations of the form:
24  *     static inline void f();         // from constant_time_internal.h
25  *     static inline void f() { ... }  // from constant_time_impl.h
26  * when constant_time_internal.h is included.
27  *
28  * This appears to behave as if the declaration-without-definition was not present
29  * (except for warnings if gcc -Wredundant-decls or similar is used).
30  *
31  * Disable -Wredundant-decls so that gcc does not warn about this. This is re-enabled
32  * at the bottom of this file.
33  */
34 #ifdef __GNUC__
35     #pragma GCC diagnostic push
36     #pragma GCC diagnostic ignored "-Wredundant-decls"
37 #endif
38 
39 /* Disable asm under Memsan because it confuses Memsan and generates false errors.
40  *
41  * We also disable under Valgrind by default, because it's more useful
42  * for Valgrind to test the plain C implementation. MBEDTLS_TEST_CONSTANT_FLOW_ASM //no-check-names
43  * may be set to permit building asm under Valgrind.
44  */
45 #if defined(MBEDTLS_TEST_CONSTANT_FLOW_MEMSAN) || \
46     (defined(MBEDTLS_TEST_CONSTANT_FLOW_VALGRIND) && !defined(MBEDTLS_TEST_CONSTANT_FLOW_ASM)) //no-check-names
47 #define MBEDTLS_CT_NO_ASM
48 #elif defined(__has_feature)
49 #if __has_feature(memory_sanitizer)
50 #define MBEDTLS_CT_NO_ASM
51 #endif
52 #endif
53 
54 /* armcc5 --gnu defines __GNUC__ but doesn't support GNU's extended asm */
55 #if defined(MBEDTLS_HAVE_ASM) && defined(__GNUC__) && (!defined(__ARMCC_VERSION) || \
56     __ARMCC_VERSION >= 6000000) && !defined(MBEDTLS_CT_NO_ASM)
57 #define MBEDTLS_CT_ASM
58 #if (defined(__arm__) || defined(__thumb__) || defined(__thumb2__))
59 #define MBEDTLS_CT_ARM_ASM
60 #elif defined(__aarch64__)
61 #define MBEDTLS_CT_AARCH64_ASM
62 #elif defined(__amd64__) || defined(__x86_64__)
63 #define MBEDTLS_CT_X86_64_ASM
64 #elif defined(__i386__)
65 #define MBEDTLS_CT_X86_ASM
66 #endif
67 #endif
68 
69 #define MBEDTLS_CT_SIZE (sizeof(mbedtls_ct_uint_t) * 8)
70 
71 
72 /* ============================================================================
73  * Core const-time primitives
74  */
75 
76 /* Ensure that the compiler cannot know the value of x (i.e., cannot optimise
77  * based on its value) after this function is called.
78  *
79  * If we are not using assembly, this will be fairly inefficient, so its use
80  * should be minimised.
81  */
82 
83 #if !defined(MBEDTLS_CT_ASM)
84 extern volatile mbedtls_ct_uint_t mbedtls_ct_zero;
85 #endif
86 
87 /**
88  * \brief   Ensure that a value cannot be known at compile time.
89  *
90  * \param x        The value to hide from the compiler.
91  * \return         The same value that was passed in, such that the compiler
92  *                 cannot prove its value (even for calls of the form
93  *                 x = mbedtls_ct_compiler_opaque(1), x will be unknown).
94  *
95  * \note           This is mainly used in constructing mbedtls_ct_condition_t
96  *                 values and performing operations over them, to ensure that
97  *                 there is no way for the compiler to ever know anything about
98  *                 the value of an mbedtls_ct_condition_t.
99  */
mbedtls_ct_compiler_opaque(mbedtls_ct_uint_t x)100 static inline mbedtls_ct_uint_t mbedtls_ct_compiler_opaque(mbedtls_ct_uint_t x)
101 {
102 #if defined(MBEDTLS_CT_ASM)
103     asm volatile ("" : [x] "+r" (x) :);
104     return x;
105 #else
106     return x ^ mbedtls_ct_zero;
107 #endif
108 }
109 
110 /*
111  * Selecting unified syntax is needed for gcc, and harmless on clang.
112  *
113  * This is needed because on Thumb 1, condition flags are always set, so
114  * e.g. "negs" is supported but "neg" is not (on Thumb 2, both exist).
115  *
116  * Under Thumb 1 unified syntax, only the "negs" form is accepted, and
117  * under divided syntax, only the "neg" form is accepted. clang only
118  * supports unified syntax.
119  *
120  * On Thumb 2 and Arm, both compilers are happy with the "s" suffix,
121  * although we don't actually care about setting the flags.
122  *
123  * For gcc, restore divided syntax afterwards - otherwise old versions of gcc
124  * seem to apply unified syntax globally, which breaks other asm code.
125  */
126 #if !defined(__clang__)
127 #define RESTORE_ASM_SYNTAX  ".syntax divided                      \n\t"
128 #else
129 #define RESTORE_ASM_SYNTAX
130 #endif
131 
132 /* Convert a number into a condition in constant time. */
mbedtls_ct_bool(mbedtls_ct_uint_t x)133 static inline mbedtls_ct_condition_t mbedtls_ct_bool(mbedtls_ct_uint_t x)
134 {
135     /*
136      * Define mask-generation code that, as far as possible, will not use branches or conditional instructions.
137      *
138      * For some platforms / type sizes, we define assembly to assure this.
139      *
140      * Otherwise, we define a plain C fallback which (in May 2023) does not get optimised into
141      * conditional instructions or branches by trunk clang, gcc, or MSVC v19.
142      */
143 #if defined(MBEDTLS_CT_AARCH64_ASM) && (defined(MBEDTLS_CT_SIZE_32) || defined(MBEDTLS_CT_SIZE_64))
144     mbedtls_ct_uint_t s;
145     asm volatile ("neg %x[s], %x[x]                               \n\t"
146                   "orr %x[x], %x[s], %x[x]                        \n\t"
147                   "asr %x[x], %x[x], 63                           \n\t"
148                   :
149                   [s] "=&r" (s),
150                   [x] "+&r" (x)
151                   :
152                   :
153                   );
154     return (mbedtls_ct_condition_t) x;
155 #elif defined(MBEDTLS_CT_ARM_ASM) && defined(MBEDTLS_CT_SIZE_32)
156     uint32_t s;
157     asm volatile (".syntax unified                                \n\t"
158                   "negs %[s], %[x]                                \n\t"
159                   "orrs %[x], %[x], %[s]                          \n\t"
160                   "asrs %[x], %[x], #31                           \n\t"
161                   RESTORE_ASM_SYNTAX
162                   :
163                   [s] "=&l" (s),
164                   [x] "+&l" (x)
165                   :
166                   :
167                   "cc" /* clobbers flag bits */
168                   );
169     return (mbedtls_ct_condition_t) x;
170 #elif defined(MBEDTLS_CT_X86_64_ASM) && (defined(MBEDTLS_CT_SIZE_32) || defined(MBEDTLS_CT_SIZE_64))
171     uint64_t s;
172     asm volatile ("mov  %[x], %[s]                                \n\t"
173                   "neg  %[s]                                      \n\t"
174                   "or   %[x], %[s]                                \n\t"
175                   "sar  $63, %[s]                                 \n\t"
176                   :
177                   [s] "=&a" (s)
178                   :
179                   [x] "D" (x)
180                   :
181                   );
182     return (mbedtls_ct_condition_t) s;
183 #elif defined(MBEDTLS_CT_X86_ASM) && defined(MBEDTLS_CT_SIZE_32)
184     uint32_t s;
185     asm volatile ("mov %[x], %[s]                                 \n\t"
186                   "neg %[s]                                       \n\t"
187                   "or %[s], %[x]                                  \n\t"
188                   "sar $31, %[x]                                  \n\t"
189                   :
190                   [s] "=&c" (s),
191                   [x] "+&a" (x)
192                   :
193                   :
194                   );
195     return (mbedtls_ct_condition_t) x;
196 #else
197     const mbedtls_ct_uint_t xo = mbedtls_ct_compiler_opaque(x);
198 #if defined(_MSC_VER)
199     /* MSVC has a warning about unary minus on unsigned, but this is
200      * well-defined and precisely what we want to do here */
201 #pragma warning( push )
202 #pragma warning( disable : 4146 )
203 #endif
204     // y is negative (i.e., top bit set) iff x is non-zero
205     mbedtls_ct_int_t y = (-xo) | -(xo >> 1);
206 
207     // extract only the sign bit of y so that y == 1 (if x is non-zero) or 0 (if x is zero)
208     y = (((mbedtls_ct_uint_t) y) >> (MBEDTLS_CT_SIZE - 1));
209 
210     // -y has all bits set (if x is non-zero), or all bits clear (if x is zero)
211     return (mbedtls_ct_condition_t) (-y);
212 #if defined(_MSC_VER)
213 #pragma warning( pop )
214 #endif
215 #endif
216 }
217 
mbedtls_ct_if(mbedtls_ct_condition_t condition,mbedtls_ct_uint_t if1,mbedtls_ct_uint_t if0)218 static inline mbedtls_ct_uint_t mbedtls_ct_if(mbedtls_ct_condition_t condition,
219                                               mbedtls_ct_uint_t if1,
220                                               mbedtls_ct_uint_t if0)
221 {
222 #if defined(MBEDTLS_CT_AARCH64_ASM) && (defined(MBEDTLS_CT_SIZE_32) || defined(MBEDTLS_CT_SIZE_64))
223     asm volatile ("and %x[if1], %x[if1], %x[condition]            \n\t"
224                   "mvn %x[condition], %x[condition]               \n\t"
225                   "and %x[condition], %x[condition], %x[if0]      \n\t"
226                   "orr %x[condition], %x[if1], %x[condition]"
227                   :
228                   [condition] "+&r" (condition),
229                   [if1] "+&r" (if1)
230                   :
231                   [if0] "r" (if0)
232                   :
233                   );
234     return (mbedtls_ct_uint_t) condition;
235 #elif defined(MBEDTLS_CT_ARM_ASM) && defined(MBEDTLS_CT_SIZE_32)
236     asm volatile (".syntax unified                                \n\t"
237                   "ands %[if1], %[if1], %[condition]              \n\t"
238                   "mvns %[condition], %[condition]                \n\t"
239                   "ands %[condition], %[condition], %[if0]        \n\t"
240                   "orrs %[condition], %[if1], %[condition]        \n\t"
241                   RESTORE_ASM_SYNTAX
242                   :
243                   [condition] "+&l" (condition),
244                   [if1] "+&l" (if1)
245                   :
246                   [if0] "l" (if0)
247                   :
248                   "cc"
249                   );
250     return (mbedtls_ct_uint_t) condition;
251 #elif defined(MBEDTLS_CT_X86_64_ASM) && (defined(MBEDTLS_CT_SIZE_32) || defined(MBEDTLS_CT_SIZE_64))
252     asm volatile ("and  %[condition], %[if1]                      \n\t"
253                   "not  %[condition]                              \n\t"
254                   "and  %[condition], %[if0]                      \n\t"
255                   "or   %[if1], %[if0]                            \n\t"
256                   :
257                   [condition] "+&D" (condition),
258                   [if1] "+&S" (if1),
259                   [if0] "+&a" (if0)
260                   :
261                   :
262                   );
263     return if0;
264 #elif defined(MBEDTLS_CT_X86_ASM) && defined(MBEDTLS_CT_SIZE_32)
265     asm volatile ("and %[condition], %[if1]                       \n\t"
266                   "not %[condition]                               \n\t"
267                   "and %[if0], %[condition]                       \n\t"
268                   "or %[condition], %[if1]                        \n\t"
269                   :
270                   [condition] "+&c" (condition),
271                   [if1] "+&a" (if1)
272                   :
273                   [if0] "b" (if0)
274                   :
275                   );
276     return if1;
277 #else
278     mbedtls_ct_condition_t not_cond =
279         (mbedtls_ct_condition_t) (~mbedtls_ct_compiler_opaque(condition));
280     return (mbedtls_ct_uint_t) ((condition & if1) | (not_cond & if0));
281 #endif
282 }
283 
mbedtls_ct_uint_lt(mbedtls_ct_uint_t x,mbedtls_ct_uint_t y)284 static inline mbedtls_ct_condition_t mbedtls_ct_uint_lt(mbedtls_ct_uint_t x, mbedtls_ct_uint_t y)
285 {
286 #if defined(MBEDTLS_CT_AARCH64_ASM) && (defined(MBEDTLS_CT_SIZE_32) || defined(MBEDTLS_CT_SIZE_64))
287     uint64_t s1;
288     asm volatile ("eor     %x[s1], %x[y], %x[x]                   \n\t"
289                   "sub     %x[x], %x[x], %x[y]                    \n\t"
290                   "bic     %x[x], %x[x], %x[s1]                   \n\t"
291                   "and     %x[s1], %x[s1], %x[y]                  \n\t"
292                   "orr     %x[s1], %x[x], %x[s1]                  \n\t"
293                   "asr     %x[x], %x[s1], 63"
294                   :
295                   [s1] "=&r" (s1),
296                   [x] "+&r" (x)
297                   :
298                   [y] "r" (y)
299                   :
300                   );
301     return (mbedtls_ct_condition_t) x;
302 #elif defined(MBEDTLS_CT_ARM_ASM) && defined(MBEDTLS_CT_SIZE_32)
303     uint32_t s1;
304     asm volatile (
305         ".syntax unified                                          \n\t"
306 #if defined(__thumb__) && !defined(__thumb2__)
307         "movs     %[s1], %[x]                                     \n\t"
308         "eors     %[s1], %[s1], %[y]                              \n\t"
309 #else
310         "eors     %[s1], %[x], %[y]                               \n\t"
311 #endif
312         "subs    %[x], %[x], %[y]                                 \n\t"
313         "bics    %[x], %[x], %[s1]                                \n\t"
314         "ands    %[y], %[s1], %[y]                                \n\t"
315         "orrs    %[x], %[x], %[y]                                 \n\t"
316         "asrs    %[x], %[x], #31                                  \n\t"
317         RESTORE_ASM_SYNTAX
318         :
319         [s1] "=&l" (s1),
320         [x] "+&l" (x),
321         [y] "+&l" (y)
322         :
323         :
324         "cc"
325         );
326     return (mbedtls_ct_condition_t) x;
327 #elif defined(MBEDTLS_CT_X86_64_ASM) && (defined(MBEDTLS_CT_SIZE_32) || defined(MBEDTLS_CT_SIZE_64))
328     uint64_t s;
329     asm volatile ("mov %[x], %[s]                                 \n\t"
330                   "xor %[y], %[s]                                 \n\t"
331                   "sub %[y], %[x]                                 \n\t"
332                   "and %[s], %[y]                                 \n\t"
333                   "not %[s]                                       \n\t"
334                   "and %[s], %[x]                                 \n\t"
335                   "or %[y], %[x]                                  \n\t"
336                   "sar $63, %[x]                                  \n\t"
337                   :
338                   [s] "=&a" (s),
339                   [x] "+&D" (x),
340                   [y] "+&S" (y)
341                   :
342                   :
343                   );
344     return (mbedtls_ct_condition_t) x;
345 #elif defined(MBEDTLS_CT_X86_ASM) && defined(MBEDTLS_CT_SIZE_32)
346     uint32_t s;
347     asm volatile ("mov %[x], %[s]                                 \n\t"
348                   "xor %[y], %[s]                                 \n\t"
349                   "sub %[y], %[x]                                 \n\t"
350                   "and %[s], %[y]                                 \n\t"
351                   "not %[s]                                       \n\t"
352                   "and %[s], %[x]                                 \n\t"
353                   "or  %[y], %[x]                                 \n\t"
354                   "sar $31, %[x]                                  \n\t"
355                   :
356                   [s] "=&b" (s),
357                   [x] "+&a" (x),
358                   [y] "+&c" (y)
359                   :
360                   :
361                   );
362     return (mbedtls_ct_condition_t) x;
363 #else
364     /* Ensure that the compiler cannot optimise the following operations over x and y,
365      * even if it knows the value of x and y.
366      */
367     const mbedtls_ct_uint_t xo = mbedtls_ct_compiler_opaque(x);
368     const mbedtls_ct_uint_t yo = mbedtls_ct_compiler_opaque(y);
369     /*
370      * Check if the most significant bits (MSB) of the operands are different.
371      * cond is true iff the MSBs differ.
372      */
373     mbedtls_ct_condition_t cond = mbedtls_ct_bool((xo ^ yo) >> (MBEDTLS_CT_SIZE - 1));
374 
375     /*
376      * If the MSB are the same then the difference x-y will be negative (and
377      * have its MSB set to 1 during conversion to unsigned) if and only if x<y.
378      *
379      * If the MSB are different, then the operand with the MSB of 1 is the
380      * bigger. (That is if y has MSB of 1, then x<y is true and it is false if
381      * the MSB of y is 0.)
382      */
383 
384     // Select either y, or x - y
385     mbedtls_ct_uint_t ret = mbedtls_ct_if(cond, yo, (mbedtls_ct_uint_t) (xo - yo));
386 
387     // Extract only the MSB of ret
388     ret = ret >> (MBEDTLS_CT_SIZE - 1);
389 
390     // Convert to a condition (i.e., all bits set iff non-zero)
391     return mbedtls_ct_bool(ret);
392 #endif
393 }
394 
mbedtls_ct_uint_ne(mbedtls_ct_uint_t x,mbedtls_ct_uint_t y)395 static inline mbedtls_ct_condition_t mbedtls_ct_uint_ne(mbedtls_ct_uint_t x, mbedtls_ct_uint_t y)
396 {
397     /* diff = 0 if x == y, non-zero otherwise */
398     const mbedtls_ct_uint_t diff = mbedtls_ct_compiler_opaque(x) ^ mbedtls_ct_compiler_opaque(y);
399 
400     /* all ones if x != y, 0 otherwise */
401     return mbedtls_ct_bool(diff);
402 }
403 
mbedtls_ct_uchar_in_range_if(unsigned char low,unsigned char high,unsigned char c,unsigned char t)404 static inline unsigned char mbedtls_ct_uchar_in_range_if(unsigned char low,
405                                                          unsigned char high,
406                                                          unsigned char c,
407                                                          unsigned char t)
408 {
409     const unsigned char co = (unsigned char) mbedtls_ct_compiler_opaque(c);
410     const unsigned char to = (unsigned char) mbedtls_ct_compiler_opaque(t);
411 
412     /* low_mask is: 0 if low <= c, 0x...ff if low > c */
413     unsigned low_mask = ((unsigned) co - low) >> 8;
414     /* high_mask is: 0 if c <= high, 0x...ff if c > high */
415     unsigned high_mask = ((unsigned) high - co) >> 8;
416 
417     return (unsigned char) (~(low_mask | high_mask)) & to;
418 }
419 
420 /* ============================================================================
421  * Everything below here is trivial wrapper functions
422  */
423 
mbedtls_ct_size_if(mbedtls_ct_condition_t condition,size_t if1,size_t if0)424 static inline size_t mbedtls_ct_size_if(mbedtls_ct_condition_t condition,
425                                         size_t if1,
426                                         size_t if0)
427 {
428     return (size_t) mbedtls_ct_if(condition, (mbedtls_ct_uint_t) if1, (mbedtls_ct_uint_t) if0);
429 }
430 
mbedtls_ct_uint_if(mbedtls_ct_condition_t condition,unsigned if1,unsigned if0)431 static inline unsigned mbedtls_ct_uint_if(mbedtls_ct_condition_t condition,
432                                           unsigned if1,
433                                           unsigned if0)
434 {
435     return (unsigned) mbedtls_ct_if(condition, (mbedtls_ct_uint_t) if1, (mbedtls_ct_uint_t) if0);
436 }
437 
mbedtls_ct_bool_if(mbedtls_ct_condition_t condition,mbedtls_ct_condition_t if1,mbedtls_ct_condition_t if0)438 static inline mbedtls_ct_condition_t mbedtls_ct_bool_if(mbedtls_ct_condition_t condition,
439                                                         mbedtls_ct_condition_t if1,
440                                                         mbedtls_ct_condition_t if0)
441 {
442     return (mbedtls_ct_condition_t) mbedtls_ct_if(condition, (mbedtls_ct_uint_t) if1,
443                                                   (mbedtls_ct_uint_t) if0);
444 }
445 
446 #if defined(MBEDTLS_BIGNUM_C)
447 
mbedtls_ct_mpi_uint_if(mbedtls_ct_condition_t condition,mbedtls_mpi_uint if1,mbedtls_mpi_uint if0)448 static inline mbedtls_mpi_uint mbedtls_ct_mpi_uint_if(mbedtls_ct_condition_t condition,
449                                                       mbedtls_mpi_uint if1,
450                                                       mbedtls_mpi_uint if0)
451 {
452     return (mbedtls_mpi_uint) mbedtls_ct_if(condition,
453                                             (mbedtls_ct_uint_t) if1,
454                                             (mbedtls_ct_uint_t) if0);
455 }
456 
457 #endif
458 
mbedtls_ct_size_if_else_0(mbedtls_ct_condition_t condition,size_t if1)459 static inline size_t mbedtls_ct_size_if_else_0(mbedtls_ct_condition_t condition, size_t if1)
460 {
461     return (size_t) (condition & if1);
462 }
463 
mbedtls_ct_uint_if_else_0(mbedtls_ct_condition_t condition,unsigned if1)464 static inline unsigned mbedtls_ct_uint_if_else_0(mbedtls_ct_condition_t condition, unsigned if1)
465 {
466     return (unsigned) (condition & if1);
467 }
468 
mbedtls_ct_bool_if_else_0(mbedtls_ct_condition_t condition,mbedtls_ct_condition_t if1)469 static inline mbedtls_ct_condition_t mbedtls_ct_bool_if_else_0(mbedtls_ct_condition_t condition,
470                                                                mbedtls_ct_condition_t if1)
471 {
472     return (mbedtls_ct_condition_t) (condition & if1);
473 }
474 
475 #if defined(MBEDTLS_BIGNUM_C)
476 
mbedtls_ct_mpi_uint_if_else_0(mbedtls_ct_condition_t condition,mbedtls_mpi_uint if1)477 static inline mbedtls_mpi_uint mbedtls_ct_mpi_uint_if_else_0(mbedtls_ct_condition_t condition,
478                                                              mbedtls_mpi_uint if1)
479 {
480     return (mbedtls_mpi_uint) (condition & if1);
481 }
482 
483 #endif /* MBEDTLS_BIGNUM_C */
484 
mbedtls_ct_error_if(mbedtls_ct_condition_t condition,int if1,int if0)485 static inline int mbedtls_ct_error_if(mbedtls_ct_condition_t condition, int if1, int if0)
486 {
487     /* Coverting int -> uint -> int here is safe, because we require if1 and if0 to be
488      * in the range -32767..0, and we require 32-bit int and uint types.
489      *
490      * This means that (0 <= -if0 < INT_MAX), so negating if0 is safe, and similarly for
491      * converting back to int.
492      */
493     return -((int) mbedtls_ct_if(condition, (mbedtls_ct_uint_t) (-if1),
494                                  (mbedtls_ct_uint_t) (-if0)));
495 }
496 
mbedtls_ct_error_if_else_0(mbedtls_ct_condition_t condition,int if1)497 static inline int mbedtls_ct_error_if_else_0(mbedtls_ct_condition_t condition, int if1)
498 {
499     return -((int) (condition & (-if1)));
500 }
501 
mbedtls_ct_uint_eq(mbedtls_ct_uint_t x,mbedtls_ct_uint_t y)502 static inline mbedtls_ct_condition_t mbedtls_ct_uint_eq(mbedtls_ct_uint_t x,
503                                                         mbedtls_ct_uint_t y)
504 {
505     return ~mbedtls_ct_uint_ne(x, y);
506 }
507 
mbedtls_ct_uint_gt(mbedtls_ct_uint_t x,mbedtls_ct_uint_t y)508 static inline mbedtls_ct_condition_t mbedtls_ct_uint_gt(mbedtls_ct_uint_t x,
509                                                         mbedtls_ct_uint_t y)
510 {
511     return mbedtls_ct_uint_lt(y, x);
512 }
513 
mbedtls_ct_uint_ge(mbedtls_ct_uint_t x,mbedtls_ct_uint_t y)514 static inline mbedtls_ct_condition_t mbedtls_ct_uint_ge(mbedtls_ct_uint_t x,
515                                                         mbedtls_ct_uint_t y)
516 {
517     return ~mbedtls_ct_uint_lt(x, y);
518 }
519 
mbedtls_ct_uint_le(mbedtls_ct_uint_t x,mbedtls_ct_uint_t y)520 static inline mbedtls_ct_condition_t mbedtls_ct_uint_le(mbedtls_ct_uint_t x,
521                                                         mbedtls_ct_uint_t y)
522 {
523     return ~mbedtls_ct_uint_gt(x, y);
524 }
525 
mbedtls_ct_bool_ne(mbedtls_ct_condition_t x,mbedtls_ct_condition_t y)526 static inline mbedtls_ct_condition_t mbedtls_ct_bool_ne(mbedtls_ct_condition_t x,
527                                                         mbedtls_ct_condition_t y)
528 {
529     return (mbedtls_ct_condition_t) (x ^ y);
530 }
531 
mbedtls_ct_bool_and(mbedtls_ct_condition_t x,mbedtls_ct_condition_t y)532 static inline mbedtls_ct_condition_t mbedtls_ct_bool_and(mbedtls_ct_condition_t x,
533                                                          mbedtls_ct_condition_t y)
534 {
535     return (mbedtls_ct_condition_t) (x & y);
536 }
537 
mbedtls_ct_bool_or(mbedtls_ct_condition_t x,mbedtls_ct_condition_t y)538 static inline mbedtls_ct_condition_t mbedtls_ct_bool_or(mbedtls_ct_condition_t x,
539                                                         mbedtls_ct_condition_t y)
540 {
541     return (mbedtls_ct_condition_t) (x | y);
542 }
543 
mbedtls_ct_bool_not(mbedtls_ct_condition_t x)544 static inline mbedtls_ct_condition_t mbedtls_ct_bool_not(mbedtls_ct_condition_t x)
545 {
546     return (mbedtls_ct_condition_t) (~x);
547 }
548 
549 #ifdef __GNUC__
550 /* Restore warnings for -Wredundant-decls on gcc */
551     #pragma GCC diagnostic pop
552 #endif
553 
554 #endif /* MBEDTLS_CONSTANT_TIME_IMPL_H */
555