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Dave Rodgmanfbc23222022-11-24 18:07:37 +00001/**
2 * \file alignment.h
3 *
4 * \brief Utility code for dealing with unaligned memory accesses
5 */
6/*
7 * Copyright The Mbed TLS Contributors
8 * SPDX-License-Identifier: Apache-2.0
9 *
10 * Licensed under the Apache License, Version 2.0 (the "License"); you may
11 * not use this file except in compliance with the License.
12 * You may obtain a copy of the License at
13 *
14 * http://www.apache.org/licenses/LICENSE-2.0
15 *
16 * Unless required by applicable law or agreed to in writing, software
17 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
18 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
19 * See the License for the specific language governing permissions and
20 * limitations under the License.
21 */
22
23#ifndef MBEDTLS_LIBRARY_ALIGNMENT_H
24#define MBEDTLS_LIBRARY_ALIGNMENT_H
25
26#include <stdint.h>
Dave Rodgman96d61d12022-11-24 19:33:22 +000027#include <string.h>
Dave Rodgmanfbc23222022-11-24 18:07:37 +000028
Dave Rodgmana616afe2022-11-25 17:11:45 +000029#include "mbedtls/build_info.h"
Dave Rodgman8f6583d2022-11-25 09:16:41 +000030
Dave Rodgman96d61d12022-11-24 19:33:22 +000031/**
Dave Rodgmana360e192022-11-28 14:44:05 +000032 * Read the unsigned 16 bits integer from the given address, which need not
33 * be aligned.
34 *
35 * \param p pointer to 2 bytes of data
36 * \return Data at the given address
37 */
38inline uint16_t mbedtls_get_unaligned_uint16( const void *p )
39{
40 uint16_t r;
41 memcpy( &r, p, sizeof( r ) );
42 return r;
43}
44
45/**
46 * Write the unsigned 16 bits integer to the given address, which need not
47 * be aligned.
48 *
49 * \param p pointer to 2 bytes of data
50 * \param x data to write
51 */
52inline void mbedtls_put_unaligned_uint16( void *p, uint16_t x )
53{
54 memcpy( p, &x, sizeof( x ) );
55}
56
57/**
Dave Rodgman96d61d12022-11-24 19:33:22 +000058 * Read the unsigned 32 bits integer from the given address, which need not
59 * be aligned.
Dave Rodgmanfbc23222022-11-24 18:07:37 +000060 *
Dave Rodgman96d61d12022-11-24 19:33:22 +000061 * \param p pointer to 4 bytes of data
Dave Rodgman875d2382022-11-24 20:43:15 +000062 * \return Data at the given address
Dave Rodgmanfbc23222022-11-24 18:07:37 +000063 */
Dave Rodgman7a910a82022-11-24 21:17:40 +000064inline uint32_t mbedtls_get_unaligned_uint32( const void *p )
Dave Rodgman96d61d12022-11-24 19:33:22 +000065{
66 uint32_t r;
Dave Rodgman7a910a82022-11-24 21:17:40 +000067 memcpy( &r, p, sizeof( r ) );
Dave Rodgman96d61d12022-11-24 19:33:22 +000068 return r;
69}
Dave Rodgmanfbc23222022-11-24 18:07:37 +000070
Dave Rodgman96d61d12022-11-24 19:33:22 +000071/**
72 * Write the unsigned 32 bits integer to the given address, which need not
73 * be aligned.
74 *
75 * \param p pointer to 4 bytes of data
76 * \param x data to write
77 */
Dave Rodgman66433442022-11-24 20:07:39 +000078inline void mbedtls_put_unaligned_uint32( void *p, uint32_t x )
Dave Rodgman96d61d12022-11-24 19:33:22 +000079{
Dave Rodgman7a910a82022-11-24 21:17:40 +000080 memcpy( p, &x, sizeof( x ) );
Dave Rodgman96d61d12022-11-24 19:33:22 +000081}
Dave Rodgmanfbc23222022-11-24 18:07:37 +000082
Dave Rodgmana360e192022-11-28 14:44:05 +000083/**
84 * Read the unsigned 64 bits integer from the given address, which need not
85 * be aligned.
86 *
87 * \param p pointer to 8 bytes of data
88 * \return Data at the given address
89 */
90inline uint64_t mbedtls_get_unaligned_uint64( const void *p )
91{
92 uint64_t r;
93 memcpy( &r, p, sizeof( r ) );
94 return r;
95}
96
97/**
98 * Write the unsigned 64 bits integer to the given address, which need not
99 * be aligned.
100 *
101 * \param p pointer to 8 bytes of data
102 * \param x data to write
103 */
104inline void mbedtls_put_unaligned_uint64( void *p, uint64_t x )
105{
106 memcpy( p, &x, sizeof( x ) );
107}
108
Dave Rodgmanfbc23222022-11-24 18:07:37 +0000109/** Byte Reading Macros
110 *
111 * Given a multi-byte integer \p x, MBEDTLS_BYTE_n retrieves the n-th
112 * byte from x, where byte 0 is the least significant byte.
113 */
114#define MBEDTLS_BYTE_0( x ) ( (uint8_t) ( ( x ) & 0xff ) )
115#define MBEDTLS_BYTE_1( x ) ( (uint8_t) ( ( ( x ) >> 8 ) & 0xff ) )
116#define MBEDTLS_BYTE_2( x ) ( (uint8_t) ( ( ( x ) >> 16 ) & 0xff ) )
117#define MBEDTLS_BYTE_3( x ) ( (uint8_t) ( ( ( x ) >> 24 ) & 0xff ) )
118#define MBEDTLS_BYTE_4( x ) ( (uint8_t) ( ( ( x ) >> 32 ) & 0xff ) )
119#define MBEDTLS_BYTE_5( x ) ( (uint8_t) ( ( ( x ) >> 40 ) & 0xff ) )
120#define MBEDTLS_BYTE_6( x ) ( (uint8_t) ( ( ( x ) >> 48 ) & 0xff ) )
121#define MBEDTLS_BYTE_7( x ) ( (uint8_t) ( ( ( x ) >> 56 ) & 0xff ) )
122
Dave Rodgman6298b242022-11-28 14:51:49 +0000123static inline uint16_t mbedtls_bswap16( uint16_t x ) {
124 return
125 ( x & 0x00ff ) << 8 |
126 ( x & 0xff00 ) >> 8;
127}
128#define MBEDTLS_BSWAP16 mbedtls_bswap16
129
130static inline uint32_t mbedtls_bswap32( uint32_t x ) {
131 return
132 ( x & 0x000000ff ) << 24 |
133 ( x & 0x0000ff00 ) << 8 |
134 ( x & 0x00ff0000 ) >> 8 |
135 ( x & 0xff000000 ) >> 24;
136}
137#define MBEDTLS_BSWAP32 mbedtls_bswap32
138
139static inline uint64_t mbedtls_bswap64( uint64_t x ) {
140 return
141 ( x & 0x00000000000000ff ) << 56 |
142 ( x & 0x000000000000ff00 ) << 40 |
143 ( x & 0x0000000000ff0000 ) << 24 |
144 ( x & 0x00000000ff000000 ) << 8 |
145 ( x & 0x000000ff00000000 ) >> 8 |
146 ( x & 0x0000ff0000000000 ) >> 24 |
147 ( x & 0x00ff000000000000 ) >> 40 |
148 ( x & 0xff00000000000000 ) >> 56;
149}
150#define MBEDTLS_BSWAP64 mbedtls_bswap64
151
Dave Rodgmane5c42592022-11-28 14:47:46 +0000152#if !defined(__BYTE_ORDER__)
153static const uint16_t mbedtls_byte_order_detector = { 0x100 };
154#define MBEDTLS_IS_BIG_ENDIAN (*((unsigned char *) (&mbedtls_byte_order_detector)) == 0x01)
155#else
156#define MBEDTLS_IS_BIG_ENDIAN ((__BYTE_ORDER__) == (__ORDER_BIG_ENDIAN__))
157#endif /* !defined(__BYTE_ORDER__) */
158
Dave Rodgmanfbc23222022-11-24 18:07:37 +0000159/**
160 * Get the unsigned 32 bits integer corresponding to four bytes in
161 * big-endian order (MSB first).
162 *
163 * \param data Base address of the memory to get the four bytes from.
164 * \param offset Offset from \p data of the first and most significant
165 * byte of the four bytes to build the 32 bits unsigned
166 * integer from.
167 */
168#ifndef MBEDTLS_GET_UINT32_BE
169#define MBEDTLS_GET_UINT32_BE( data , offset ) \
170 ( \
171 ( (uint32_t) ( data )[( offset ) ] << 24 ) \
172 | ( (uint32_t) ( data )[( offset ) + 1] << 16 ) \
173 | ( (uint32_t) ( data )[( offset ) + 2] << 8 ) \
174 | ( (uint32_t) ( data )[( offset ) + 3] ) \
175 )
176#endif
177
178/**
179 * Put in memory a 32 bits unsigned integer in big-endian order.
180 *
181 * \param n 32 bits unsigned integer to put in memory.
182 * \param data Base address of the memory where to put the 32
183 * bits unsigned integer in.
184 * \param offset Offset from \p data where to put the most significant
185 * byte of the 32 bits unsigned integer \p n.
186 */
187#ifndef MBEDTLS_PUT_UINT32_BE
188#define MBEDTLS_PUT_UINT32_BE( n, data, offset ) \
189{ \
190 ( data )[( offset ) ] = MBEDTLS_BYTE_3( n ); \
191 ( data )[( offset ) + 1] = MBEDTLS_BYTE_2( n ); \
192 ( data )[( offset ) + 2] = MBEDTLS_BYTE_1( n ); \
193 ( data )[( offset ) + 3] = MBEDTLS_BYTE_0( n ); \
194}
195#endif
196
197/**
198 * Get the unsigned 32 bits integer corresponding to four bytes in
199 * little-endian order (LSB first).
200 *
201 * \param data Base address of the memory to get the four bytes from.
202 * \param offset Offset from \p data of the first and least significant
203 * byte of the four bytes to build the 32 bits unsigned
204 * integer from.
205 */
206#ifndef MBEDTLS_GET_UINT32_LE
207#define MBEDTLS_GET_UINT32_LE( data, offset ) \
208 ( \
209 ( (uint32_t) ( data )[( offset ) ] ) \
210 | ( (uint32_t) ( data )[( offset ) + 1] << 8 ) \
211 | ( (uint32_t) ( data )[( offset ) + 2] << 16 ) \
212 | ( (uint32_t) ( data )[( offset ) + 3] << 24 ) \
213 )
214#endif
215
216/**
217 * Put in memory a 32 bits unsigned integer in little-endian order.
218 *
219 * \param n 32 bits unsigned integer to put in memory.
220 * \param data Base address of the memory where to put the 32
221 * bits unsigned integer in.
222 * \param offset Offset from \p data where to put the least significant
223 * byte of the 32 bits unsigned integer \p n.
224 */
225#ifndef MBEDTLS_PUT_UINT32_LE
226#define MBEDTLS_PUT_UINT32_LE( n, data, offset ) \
227{ \
228 ( data )[( offset ) ] = MBEDTLS_BYTE_0( n ); \
229 ( data )[( offset ) + 1] = MBEDTLS_BYTE_1( n ); \
230 ( data )[( offset ) + 2] = MBEDTLS_BYTE_2( n ); \
231 ( data )[( offset ) + 3] = MBEDTLS_BYTE_3( n ); \
232}
233#endif
234
235/**
236 * Get the unsigned 16 bits integer corresponding to two bytes in
237 * little-endian order (LSB first).
238 *
239 * \param data Base address of the memory to get the two bytes from.
240 * \param offset Offset from \p data of the first and least significant
241 * byte of the two bytes to build the 16 bits unsigned
242 * integer from.
243 */
244#ifndef MBEDTLS_GET_UINT16_LE
245#define MBEDTLS_GET_UINT16_LE( data, offset ) \
246 ( \
247 ( (uint16_t) ( data )[( offset ) ] ) \
248 | ( (uint16_t) ( data )[( offset ) + 1] << 8 ) \
249 )
250#endif
251
252/**
253 * Put in memory a 16 bits unsigned integer in little-endian order.
254 *
255 * \param n 16 bits unsigned integer to put in memory.
256 * \param data Base address of the memory where to put the 16
257 * bits unsigned integer in.
258 * \param offset Offset from \p data where to put the least significant
259 * byte of the 16 bits unsigned integer \p n.
260 */
261#ifndef MBEDTLS_PUT_UINT16_LE
262#define MBEDTLS_PUT_UINT16_LE( n, data, offset ) \
263{ \
264 ( data )[( offset ) ] = MBEDTLS_BYTE_0( n ); \
265 ( data )[( offset ) + 1] = MBEDTLS_BYTE_1( n ); \
266}
267#endif
268
269/**
270 * Get the unsigned 16 bits integer corresponding to two bytes in
271 * big-endian order (MSB first).
272 *
273 * \param data Base address of the memory to get the two bytes from.
274 * \param offset Offset from \p data of the first and most significant
275 * byte of the two bytes to build the 16 bits unsigned
276 * integer from.
277 */
278#ifndef MBEDTLS_GET_UINT16_BE
279#define MBEDTLS_GET_UINT16_BE( data, offset ) \
280 ( \
281 ( (uint16_t) ( data )[( offset ) ] << 8 ) \
282 | ( (uint16_t) ( data )[( offset ) + 1] ) \
283 )
284#endif
285
286/**
287 * Put in memory a 16 bits unsigned integer in big-endian order.
288 *
289 * \param n 16 bits unsigned integer to put in memory.
290 * \param data Base address of the memory where to put the 16
291 * bits unsigned integer in.
292 * \param offset Offset from \p data where to put the most significant
293 * byte of the 16 bits unsigned integer \p n.
294 */
295#ifndef MBEDTLS_PUT_UINT16_BE
296#define MBEDTLS_PUT_UINT16_BE( n, data, offset ) \
297{ \
298 ( data )[( offset ) ] = MBEDTLS_BYTE_1( n ); \
299 ( data )[( offset ) + 1] = MBEDTLS_BYTE_0( n ); \
300}
301#endif
302
303/**
304 * Get the unsigned 24 bits integer corresponding to three bytes in
305 * big-endian order (MSB first).
306 *
307 * \param data Base address of the memory to get the three bytes from.
308 * \param offset Offset from \p data of the first and most significant
309 * byte of the three bytes to build the 24 bits unsigned
310 * integer from.
311 */
312#ifndef MBEDTLS_GET_UINT24_BE
313#define MBEDTLS_GET_UINT24_BE( data , offset ) \
314 ( \
315 ( (uint32_t) ( data )[( offset ) ] << 16 ) \
316 | ( (uint32_t) ( data )[( offset ) + 1] << 8 ) \
317 | ( (uint32_t) ( data )[( offset ) + 2] ) \
318 )
319#endif
320
321/**
322 * Put in memory a 24 bits unsigned integer in big-endian order.
323 *
324 * \param n 24 bits unsigned integer to put in memory.
325 * \param data Base address of the memory where to put the 24
326 * bits unsigned integer in.
327 * \param offset Offset from \p data where to put the most significant
328 * byte of the 24 bits unsigned integer \p n.
329 */
330#ifndef MBEDTLS_PUT_UINT24_BE
331#define MBEDTLS_PUT_UINT24_BE( n, data, offset ) \
332{ \
333 ( data )[( offset ) ] = MBEDTLS_BYTE_2( n ); \
334 ( data )[( offset ) + 1] = MBEDTLS_BYTE_1( n ); \
335 ( data )[( offset ) + 2] = MBEDTLS_BYTE_0( n ); \
336}
337#endif
338
339/**
340 * Get the unsigned 24 bits integer corresponding to three bytes in
341 * little-endian order (LSB first).
342 *
343 * \param data Base address of the memory to get the three bytes from.
344 * \param offset Offset from \p data of the first and least significant
345 * byte of the three bytes to build the 24 bits unsigned
346 * integer from.
347 */
348#ifndef MBEDTLS_GET_UINT24_LE
349#define MBEDTLS_GET_UINT24_LE( data, offset ) \
350 ( \
351 ( (uint32_t) ( data )[( offset ) ] ) \
352 | ( (uint32_t) ( data )[( offset ) + 1] << 8 ) \
353 | ( (uint32_t) ( data )[( offset ) + 2] << 16 ) \
354 )
355#endif
356
357/**
358 * Put in memory a 24 bits unsigned integer in little-endian order.
359 *
360 * \param n 24 bits unsigned integer to put in memory.
361 * \param data Base address of the memory where to put the 24
362 * bits unsigned integer in.
363 * \param offset Offset from \p data where to put the least significant
364 * byte of the 24 bits unsigned integer \p n.
365 */
366#ifndef MBEDTLS_PUT_UINT24_LE
367#define MBEDTLS_PUT_UINT24_LE( n, data, offset ) \
368{ \
369 ( data )[( offset ) ] = MBEDTLS_BYTE_0( n ); \
370 ( data )[( offset ) + 1] = MBEDTLS_BYTE_1( n ); \
371 ( data )[( offset ) + 2] = MBEDTLS_BYTE_2( n ); \
372}
373#endif
374
375/**
376 * Get the unsigned 64 bits integer corresponding to eight bytes in
377 * big-endian order (MSB first).
378 *
379 * \param data Base address of the memory to get the eight bytes from.
380 * \param offset Offset from \p data of the first and most significant
381 * byte of the eight bytes to build the 64 bits unsigned
382 * integer from.
383 */
384#ifndef MBEDTLS_GET_UINT64_BE
385#define MBEDTLS_GET_UINT64_BE( data, offset ) \
386 ( \
387 ( (uint64_t) ( data )[( offset ) ] << 56 ) \
388 | ( (uint64_t) ( data )[( offset ) + 1] << 48 ) \
389 | ( (uint64_t) ( data )[( offset ) + 2] << 40 ) \
390 | ( (uint64_t) ( data )[( offset ) + 3] << 32 ) \
391 | ( (uint64_t) ( data )[( offset ) + 4] << 24 ) \
392 | ( (uint64_t) ( data )[( offset ) + 5] << 16 ) \
393 | ( (uint64_t) ( data )[( offset ) + 6] << 8 ) \
394 | ( (uint64_t) ( data )[( offset ) + 7] ) \
395 )
396#endif
397
398/**
399 * Put in memory a 64 bits unsigned integer in big-endian order.
400 *
401 * \param n 64 bits unsigned integer to put in memory.
402 * \param data Base address of the memory where to put the 64
403 * bits unsigned integer in.
404 * \param offset Offset from \p data where to put the most significant
405 * byte of the 64 bits unsigned integer \p n.
406 */
407#ifndef MBEDTLS_PUT_UINT64_BE
408#define MBEDTLS_PUT_UINT64_BE( n, data, offset ) \
409{ \
410 ( data )[( offset ) ] = MBEDTLS_BYTE_7( n ); \
411 ( data )[( offset ) + 1] = MBEDTLS_BYTE_6( n ); \
412 ( data )[( offset ) + 2] = MBEDTLS_BYTE_5( n ); \
413 ( data )[( offset ) + 3] = MBEDTLS_BYTE_4( n ); \
414 ( data )[( offset ) + 4] = MBEDTLS_BYTE_3( n ); \
415 ( data )[( offset ) + 5] = MBEDTLS_BYTE_2( n ); \
416 ( data )[( offset ) + 6] = MBEDTLS_BYTE_1( n ); \
417 ( data )[( offset ) + 7] = MBEDTLS_BYTE_0( n ); \
418}
419#endif
420
421/**
422 * Get the unsigned 64 bits integer corresponding to eight bytes in
423 * little-endian order (LSB first).
424 *
425 * \param data Base address of the memory to get the eight bytes from.
426 * \param offset Offset from \p data of the first and least significant
427 * byte of the eight bytes to build the 64 bits unsigned
428 * integer from.
429 */
430#ifndef MBEDTLS_GET_UINT64_LE
431#define MBEDTLS_GET_UINT64_LE( data, offset ) \
432 ( \
433 ( (uint64_t) ( data )[( offset ) + 7] << 56 ) \
434 | ( (uint64_t) ( data )[( offset ) + 6] << 48 ) \
435 | ( (uint64_t) ( data )[( offset ) + 5] << 40 ) \
436 | ( (uint64_t) ( data )[( offset ) + 4] << 32 ) \
437 | ( (uint64_t) ( data )[( offset ) + 3] << 24 ) \
438 | ( (uint64_t) ( data )[( offset ) + 2] << 16 ) \
439 | ( (uint64_t) ( data )[( offset ) + 1] << 8 ) \
440 | ( (uint64_t) ( data )[( offset ) ] ) \
441 )
442#endif
443
444/**
445 * Put in memory a 64 bits unsigned integer in little-endian order.
446 *
447 * \param n 64 bits unsigned integer to put in memory.
448 * \param data Base address of the memory where to put the 64
449 * bits unsigned integer in.
450 * \param offset Offset from \p data where to put the least significant
451 * byte of the 64 bits unsigned integer \p n.
452 */
453#ifndef MBEDTLS_PUT_UINT64_LE
454#define MBEDTLS_PUT_UINT64_LE( n, data, offset ) \
455{ \
456 ( data )[( offset ) ] = MBEDTLS_BYTE_0( n ); \
457 ( data )[( offset ) + 1] = MBEDTLS_BYTE_1( n ); \
458 ( data )[( offset ) + 2] = MBEDTLS_BYTE_2( n ); \
459 ( data )[( offset ) + 3] = MBEDTLS_BYTE_3( n ); \
460 ( data )[( offset ) + 4] = MBEDTLS_BYTE_4( n ); \
461 ( data )[( offset ) + 5] = MBEDTLS_BYTE_5( n ); \
462 ( data )[( offset ) + 6] = MBEDTLS_BYTE_6( n ); \
463 ( data )[( offset ) + 7] = MBEDTLS_BYTE_7( n ); \
464}
465#endif
466
467#endif /* MBEDTLS_LIBRARY_ALIGNMENT_H */