1*62c56f98SSadaf Ebrahimi /**
2*62c56f98SSadaf Ebrahimi * \file alignment.h
3*62c56f98SSadaf Ebrahimi *
4*62c56f98SSadaf Ebrahimi * \brief Utility code for dealing with unaligned memory accesses
5*62c56f98SSadaf Ebrahimi */
6*62c56f98SSadaf Ebrahimi /*
7*62c56f98SSadaf Ebrahimi * Copyright The Mbed TLS Contributors
8*62c56f98SSadaf Ebrahimi * SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
9*62c56f98SSadaf Ebrahimi */
10*62c56f98SSadaf Ebrahimi
11*62c56f98SSadaf Ebrahimi #ifndef MBEDTLS_LIBRARY_ALIGNMENT_H
12*62c56f98SSadaf Ebrahimi #define MBEDTLS_LIBRARY_ALIGNMENT_H
13*62c56f98SSadaf Ebrahimi
14*62c56f98SSadaf Ebrahimi #include <stdint.h>
15*62c56f98SSadaf Ebrahimi #include <string.h>
16*62c56f98SSadaf Ebrahimi #include <stdlib.h>
17*62c56f98SSadaf Ebrahimi
18*62c56f98SSadaf Ebrahimi /*
19*62c56f98SSadaf Ebrahimi * Define MBEDTLS_EFFICIENT_UNALIGNED_ACCESS for architectures where unaligned memory
20*62c56f98SSadaf Ebrahimi * accesses are known to be efficient.
21*62c56f98SSadaf Ebrahimi *
22*62c56f98SSadaf Ebrahimi * All functions defined here will behave correctly regardless, but might be less
23*62c56f98SSadaf Ebrahimi * efficient when this is not defined.
24*62c56f98SSadaf Ebrahimi */
25*62c56f98SSadaf Ebrahimi #if defined(__ARM_FEATURE_UNALIGNED) \
26*62c56f98SSadaf Ebrahimi || defined(__i386__) || defined(__amd64__) || defined(__x86_64__)
27*62c56f98SSadaf Ebrahimi /*
28*62c56f98SSadaf Ebrahimi * __ARM_FEATURE_UNALIGNED is defined where appropriate by armcc, gcc 7, clang 9
29*62c56f98SSadaf Ebrahimi * (and later versions) for Arm v7 and later; all x86 platforms should have
30*62c56f98SSadaf Ebrahimi * efficient unaligned access.
31*62c56f98SSadaf Ebrahimi */
32*62c56f98SSadaf Ebrahimi #define MBEDTLS_EFFICIENT_UNALIGNED_ACCESS
33*62c56f98SSadaf Ebrahimi #endif
34*62c56f98SSadaf Ebrahimi
35*62c56f98SSadaf Ebrahimi /**
36*62c56f98SSadaf Ebrahimi * Read the unsigned 16 bits integer from the given address, which need not
37*62c56f98SSadaf Ebrahimi * be aligned.
38*62c56f98SSadaf Ebrahimi *
39*62c56f98SSadaf Ebrahimi * \param p pointer to 2 bytes of data
40*62c56f98SSadaf Ebrahimi * \return Data at the given address
41*62c56f98SSadaf Ebrahimi */
mbedtls_get_unaligned_uint16(const void * p)42*62c56f98SSadaf Ebrahimi inline uint16_t mbedtls_get_unaligned_uint16(const void *p)
43*62c56f98SSadaf Ebrahimi {
44*62c56f98SSadaf Ebrahimi uint16_t r;
45*62c56f98SSadaf Ebrahimi memcpy(&r, p, sizeof(r));
46*62c56f98SSadaf Ebrahimi return r;
47*62c56f98SSadaf Ebrahimi }
48*62c56f98SSadaf Ebrahimi
49*62c56f98SSadaf Ebrahimi /**
50*62c56f98SSadaf Ebrahimi * Write the unsigned 16 bits integer to the given address, which need not
51*62c56f98SSadaf Ebrahimi * be aligned.
52*62c56f98SSadaf Ebrahimi *
53*62c56f98SSadaf Ebrahimi * \param p pointer to 2 bytes of data
54*62c56f98SSadaf Ebrahimi * \param x data to write
55*62c56f98SSadaf Ebrahimi */
mbedtls_put_unaligned_uint16(void * p,uint16_t x)56*62c56f98SSadaf Ebrahimi inline void mbedtls_put_unaligned_uint16(void *p, uint16_t x)
57*62c56f98SSadaf Ebrahimi {
58*62c56f98SSadaf Ebrahimi memcpy(p, &x, sizeof(x));
59*62c56f98SSadaf Ebrahimi }
60*62c56f98SSadaf Ebrahimi
61*62c56f98SSadaf Ebrahimi /**
62*62c56f98SSadaf Ebrahimi * Read the unsigned 32 bits integer from the given address, which need not
63*62c56f98SSadaf Ebrahimi * be aligned.
64*62c56f98SSadaf Ebrahimi *
65*62c56f98SSadaf Ebrahimi * \param p pointer to 4 bytes of data
66*62c56f98SSadaf Ebrahimi * \return Data at the given address
67*62c56f98SSadaf Ebrahimi */
mbedtls_get_unaligned_uint32(const void * p)68*62c56f98SSadaf Ebrahimi inline uint32_t mbedtls_get_unaligned_uint32(const void *p)
69*62c56f98SSadaf Ebrahimi {
70*62c56f98SSadaf Ebrahimi uint32_t r;
71*62c56f98SSadaf Ebrahimi memcpy(&r, p, sizeof(r));
72*62c56f98SSadaf Ebrahimi return r;
73*62c56f98SSadaf Ebrahimi }
74*62c56f98SSadaf Ebrahimi
75*62c56f98SSadaf Ebrahimi /**
76*62c56f98SSadaf Ebrahimi * Write the unsigned 32 bits integer to the given address, which need not
77*62c56f98SSadaf Ebrahimi * be aligned.
78*62c56f98SSadaf Ebrahimi *
79*62c56f98SSadaf Ebrahimi * \param p pointer to 4 bytes of data
80*62c56f98SSadaf Ebrahimi * \param x data to write
81*62c56f98SSadaf Ebrahimi */
mbedtls_put_unaligned_uint32(void * p,uint32_t x)82*62c56f98SSadaf Ebrahimi inline void mbedtls_put_unaligned_uint32(void *p, uint32_t x)
83*62c56f98SSadaf Ebrahimi {
84*62c56f98SSadaf Ebrahimi memcpy(p, &x, sizeof(x));
85*62c56f98SSadaf Ebrahimi }
86*62c56f98SSadaf Ebrahimi
87*62c56f98SSadaf Ebrahimi /**
88*62c56f98SSadaf Ebrahimi * Read the unsigned 64 bits integer from the given address, which need not
89*62c56f98SSadaf Ebrahimi * be aligned.
90*62c56f98SSadaf Ebrahimi *
91*62c56f98SSadaf Ebrahimi * \param p pointer to 8 bytes of data
92*62c56f98SSadaf Ebrahimi * \return Data at the given address
93*62c56f98SSadaf Ebrahimi */
mbedtls_get_unaligned_uint64(const void * p)94*62c56f98SSadaf Ebrahimi inline uint64_t mbedtls_get_unaligned_uint64(const void *p)
95*62c56f98SSadaf Ebrahimi {
96*62c56f98SSadaf Ebrahimi uint64_t r;
97*62c56f98SSadaf Ebrahimi memcpy(&r, p, sizeof(r));
98*62c56f98SSadaf Ebrahimi return r;
99*62c56f98SSadaf Ebrahimi }
100*62c56f98SSadaf Ebrahimi
101*62c56f98SSadaf Ebrahimi /**
102*62c56f98SSadaf Ebrahimi * Write the unsigned 64 bits integer to the given address, which need not
103*62c56f98SSadaf Ebrahimi * be aligned.
104*62c56f98SSadaf Ebrahimi *
105*62c56f98SSadaf Ebrahimi * \param p pointer to 8 bytes of data
106*62c56f98SSadaf Ebrahimi * \param x data to write
107*62c56f98SSadaf Ebrahimi */
mbedtls_put_unaligned_uint64(void * p,uint64_t x)108*62c56f98SSadaf Ebrahimi inline void mbedtls_put_unaligned_uint64(void *p, uint64_t x)
109*62c56f98SSadaf Ebrahimi {
110*62c56f98SSadaf Ebrahimi memcpy(p, &x, sizeof(x));
111*62c56f98SSadaf Ebrahimi }
112*62c56f98SSadaf Ebrahimi
113*62c56f98SSadaf Ebrahimi /** Byte Reading Macros
114*62c56f98SSadaf Ebrahimi *
115*62c56f98SSadaf Ebrahimi * Given a multi-byte integer \p x, MBEDTLS_BYTE_n retrieves the n-th
116*62c56f98SSadaf Ebrahimi * byte from x, where byte 0 is the least significant byte.
117*62c56f98SSadaf Ebrahimi */
118*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_0(x) ((uint8_t) ((x) & 0xff))
119*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_1(x) ((uint8_t) (((x) >> 8) & 0xff))
120*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_2(x) ((uint8_t) (((x) >> 16) & 0xff))
121*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_3(x) ((uint8_t) (((x) >> 24) & 0xff))
122*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_4(x) ((uint8_t) (((x) >> 32) & 0xff))
123*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_5(x) ((uint8_t) (((x) >> 40) & 0xff))
124*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_6(x) ((uint8_t) (((x) >> 48) & 0xff))
125*62c56f98SSadaf Ebrahimi #define MBEDTLS_BYTE_7(x) ((uint8_t) (((x) >> 56) & 0xff))
126*62c56f98SSadaf Ebrahimi
127*62c56f98SSadaf Ebrahimi /*
128*62c56f98SSadaf Ebrahimi * Detect GCC built-in byteswap routines
129*62c56f98SSadaf Ebrahimi */
130*62c56f98SSadaf Ebrahimi #if defined(__GNUC__) && defined(__GNUC_PREREQ)
131*62c56f98SSadaf Ebrahimi #if __GNUC_PREREQ(4, 8)
132*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP16 __builtin_bswap16
133*62c56f98SSadaf Ebrahimi #endif /* __GNUC_PREREQ(4,8) */
134*62c56f98SSadaf Ebrahimi #if __GNUC_PREREQ(4, 3)
135*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP32 __builtin_bswap32
136*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP64 __builtin_bswap64
137*62c56f98SSadaf Ebrahimi #endif /* __GNUC_PREREQ(4,3) */
138*62c56f98SSadaf Ebrahimi #endif /* defined(__GNUC__) && defined(__GNUC_PREREQ) */
139*62c56f98SSadaf Ebrahimi
140*62c56f98SSadaf Ebrahimi /*
141*62c56f98SSadaf Ebrahimi * Detect Clang built-in byteswap routines
142*62c56f98SSadaf Ebrahimi */
143*62c56f98SSadaf Ebrahimi #if defined(__clang__) && defined(__has_builtin)
144*62c56f98SSadaf Ebrahimi #if __has_builtin(__builtin_bswap16) && !defined(MBEDTLS_BSWAP16)
145*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP16 __builtin_bswap16
146*62c56f98SSadaf Ebrahimi #endif /* __has_builtin(__builtin_bswap16) */
147*62c56f98SSadaf Ebrahimi #if __has_builtin(__builtin_bswap32) && !defined(MBEDTLS_BSWAP32)
148*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP32 __builtin_bswap32
149*62c56f98SSadaf Ebrahimi #endif /* __has_builtin(__builtin_bswap32) */
150*62c56f98SSadaf Ebrahimi #if __has_builtin(__builtin_bswap64) && !defined(MBEDTLS_BSWAP64)
151*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP64 __builtin_bswap64
152*62c56f98SSadaf Ebrahimi #endif /* __has_builtin(__builtin_bswap64) */
153*62c56f98SSadaf Ebrahimi #endif /* defined(__clang__) && defined(__has_builtin) */
154*62c56f98SSadaf Ebrahimi
155*62c56f98SSadaf Ebrahimi /*
156*62c56f98SSadaf Ebrahimi * Detect MSVC built-in byteswap routines
157*62c56f98SSadaf Ebrahimi */
158*62c56f98SSadaf Ebrahimi #if defined(_MSC_VER)
159*62c56f98SSadaf Ebrahimi #if !defined(MBEDTLS_BSWAP16)
160*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP16 _byteswap_ushort
161*62c56f98SSadaf Ebrahimi #endif
162*62c56f98SSadaf Ebrahimi #if !defined(MBEDTLS_BSWAP32)
163*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP32 _byteswap_ulong
164*62c56f98SSadaf Ebrahimi #endif
165*62c56f98SSadaf Ebrahimi #if !defined(MBEDTLS_BSWAP64)
166*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP64 _byteswap_uint64
167*62c56f98SSadaf Ebrahimi #endif
168*62c56f98SSadaf Ebrahimi #endif /* defined(_MSC_VER) */
169*62c56f98SSadaf Ebrahimi
170*62c56f98SSadaf Ebrahimi /* Detect armcc built-in byteswap routine */
171*62c56f98SSadaf Ebrahimi #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION >= 410000) && !defined(MBEDTLS_BSWAP32)
172*62c56f98SSadaf Ebrahimi #if defined(__ARM_ACLE) /* ARM Compiler 6 - earlier versions don't need a header */
173*62c56f98SSadaf Ebrahimi #include <arm_acle.h>
174*62c56f98SSadaf Ebrahimi #endif
175*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP32 __rev
176*62c56f98SSadaf Ebrahimi #endif
177*62c56f98SSadaf Ebrahimi
178*62c56f98SSadaf Ebrahimi /*
179*62c56f98SSadaf Ebrahimi * Where compiler built-ins are not present, fall back to C code that the
180*62c56f98SSadaf Ebrahimi * compiler may be able to detect and transform into the relevant bswap or
181*62c56f98SSadaf Ebrahimi * similar instruction.
182*62c56f98SSadaf Ebrahimi */
183*62c56f98SSadaf Ebrahimi #if !defined(MBEDTLS_BSWAP16)
mbedtls_bswap16(uint16_t x)184*62c56f98SSadaf Ebrahimi static inline uint16_t mbedtls_bswap16(uint16_t x)
185*62c56f98SSadaf Ebrahimi {
186*62c56f98SSadaf Ebrahimi return
187*62c56f98SSadaf Ebrahimi (x & 0x00ff) << 8 |
188*62c56f98SSadaf Ebrahimi (x & 0xff00) >> 8;
189*62c56f98SSadaf Ebrahimi }
190*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP16 mbedtls_bswap16
191*62c56f98SSadaf Ebrahimi #endif /* !defined(MBEDTLS_BSWAP16) */
192*62c56f98SSadaf Ebrahimi
193*62c56f98SSadaf Ebrahimi #if !defined(MBEDTLS_BSWAP32)
mbedtls_bswap32(uint32_t x)194*62c56f98SSadaf Ebrahimi static inline uint32_t mbedtls_bswap32(uint32_t x)
195*62c56f98SSadaf Ebrahimi {
196*62c56f98SSadaf Ebrahimi return
197*62c56f98SSadaf Ebrahimi (x & 0x000000ff) << 24 |
198*62c56f98SSadaf Ebrahimi (x & 0x0000ff00) << 8 |
199*62c56f98SSadaf Ebrahimi (x & 0x00ff0000) >> 8 |
200*62c56f98SSadaf Ebrahimi (x & 0xff000000) >> 24;
201*62c56f98SSadaf Ebrahimi }
202*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP32 mbedtls_bswap32
203*62c56f98SSadaf Ebrahimi #endif /* !defined(MBEDTLS_BSWAP32) */
204*62c56f98SSadaf Ebrahimi
205*62c56f98SSadaf Ebrahimi #if !defined(MBEDTLS_BSWAP64)
mbedtls_bswap64(uint64_t x)206*62c56f98SSadaf Ebrahimi static inline uint64_t mbedtls_bswap64(uint64_t x)
207*62c56f98SSadaf Ebrahimi {
208*62c56f98SSadaf Ebrahimi return
209*62c56f98SSadaf Ebrahimi (x & 0x00000000000000ffULL) << 56 |
210*62c56f98SSadaf Ebrahimi (x & 0x000000000000ff00ULL) << 40 |
211*62c56f98SSadaf Ebrahimi (x & 0x0000000000ff0000ULL) << 24 |
212*62c56f98SSadaf Ebrahimi (x & 0x00000000ff000000ULL) << 8 |
213*62c56f98SSadaf Ebrahimi (x & 0x000000ff00000000ULL) >> 8 |
214*62c56f98SSadaf Ebrahimi (x & 0x0000ff0000000000ULL) >> 24 |
215*62c56f98SSadaf Ebrahimi (x & 0x00ff000000000000ULL) >> 40 |
216*62c56f98SSadaf Ebrahimi (x & 0xff00000000000000ULL) >> 56;
217*62c56f98SSadaf Ebrahimi }
218*62c56f98SSadaf Ebrahimi #define MBEDTLS_BSWAP64 mbedtls_bswap64
219*62c56f98SSadaf Ebrahimi #endif /* !defined(MBEDTLS_BSWAP64) */
220*62c56f98SSadaf Ebrahimi
221*62c56f98SSadaf Ebrahimi #if !defined(__BYTE_ORDER__)
222*62c56f98SSadaf Ebrahimi static const uint16_t mbedtls_byte_order_detector = { 0x100 };
223*62c56f98SSadaf Ebrahimi #define MBEDTLS_IS_BIG_ENDIAN (*((unsigned char *) (&mbedtls_byte_order_detector)) == 0x01)
224*62c56f98SSadaf Ebrahimi #else
225*62c56f98SSadaf Ebrahimi #define MBEDTLS_IS_BIG_ENDIAN ((__BYTE_ORDER__) == (__ORDER_BIG_ENDIAN__))
226*62c56f98SSadaf Ebrahimi #endif /* !defined(__BYTE_ORDER__) */
227*62c56f98SSadaf Ebrahimi
228*62c56f98SSadaf Ebrahimi /**
229*62c56f98SSadaf Ebrahimi * Get the unsigned 32 bits integer corresponding to four bytes in
230*62c56f98SSadaf Ebrahimi * big-endian order (MSB first).
231*62c56f98SSadaf Ebrahimi *
232*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the four bytes from.
233*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and most significant
234*62c56f98SSadaf Ebrahimi * byte of the four bytes to build the 32 bits unsigned
235*62c56f98SSadaf Ebrahimi * integer from.
236*62c56f98SSadaf Ebrahimi */
237*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT32_BE(data, offset) \
238*62c56f98SSadaf Ebrahimi ((MBEDTLS_IS_BIG_ENDIAN) \
239*62c56f98SSadaf Ebrahimi ? mbedtls_get_unaligned_uint32((data) + (offset)) \
240*62c56f98SSadaf Ebrahimi : MBEDTLS_BSWAP32(mbedtls_get_unaligned_uint32((data) + (offset))) \
241*62c56f98SSadaf Ebrahimi )
242*62c56f98SSadaf Ebrahimi
243*62c56f98SSadaf Ebrahimi /**
244*62c56f98SSadaf Ebrahimi * Put in memory a 32 bits unsigned integer in big-endian order.
245*62c56f98SSadaf Ebrahimi *
246*62c56f98SSadaf Ebrahimi * \param n 32 bits unsigned integer to put in memory.
247*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 32
248*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
249*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the most significant
250*62c56f98SSadaf Ebrahimi * byte of the 32 bits unsigned integer \p n.
251*62c56f98SSadaf Ebrahimi */
252*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT32_BE(n, data, offset) \
253*62c56f98SSadaf Ebrahimi { \
254*62c56f98SSadaf Ebrahimi if (MBEDTLS_IS_BIG_ENDIAN) \
255*62c56f98SSadaf Ebrahimi { \
256*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint32((data) + (offset), (uint32_t) (n)); \
257*62c56f98SSadaf Ebrahimi } \
258*62c56f98SSadaf Ebrahimi else \
259*62c56f98SSadaf Ebrahimi { \
260*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint32((data) + (offset), MBEDTLS_BSWAP32((uint32_t) (n))); \
261*62c56f98SSadaf Ebrahimi } \
262*62c56f98SSadaf Ebrahimi }
263*62c56f98SSadaf Ebrahimi
264*62c56f98SSadaf Ebrahimi /**
265*62c56f98SSadaf Ebrahimi * Get the unsigned 32 bits integer corresponding to four bytes in
266*62c56f98SSadaf Ebrahimi * little-endian order (LSB first).
267*62c56f98SSadaf Ebrahimi *
268*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the four bytes from.
269*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and least significant
270*62c56f98SSadaf Ebrahimi * byte of the four bytes to build the 32 bits unsigned
271*62c56f98SSadaf Ebrahimi * integer from.
272*62c56f98SSadaf Ebrahimi */
273*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT32_LE(data, offset) \
274*62c56f98SSadaf Ebrahimi ((MBEDTLS_IS_BIG_ENDIAN) \
275*62c56f98SSadaf Ebrahimi ? MBEDTLS_BSWAP32(mbedtls_get_unaligned_uint32((data) + (offset))) \
276*62c56f98SSadaf Ebrahimi : mbedtls_get_unaligned_uint32((data) + (offset)) \
277*62c56f98SSadaf Ebrahimi )
278*62c56f98SSadaf Ebrahimi
279*62c56f98SSadaf Ebrahimi
280*62c56f98SSadaf Ebrahimi /**
281*62c56f98SSadaf Ebrahimi * Put in memory a 32 bits unsigned integer in little-endian order.
282*62c56f98SSadaf Ebrahimi *
283*62c56f98SSadaf Ebrahimi * \param n 32 bits unsigned integer to put in memory.
284*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 32
285*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
286*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the least significant
287*62c56f98SSadaf Ebrahimi * byte of the 32 bits unsigned integer \p n.
288*62c56f98SSadaf Ebrahimi */
289*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT32_LE(n, data, offset) \
290*62c56f98SSadaf Ebrahimi { \
291*62c56f98SSadaf Ebrahimi if (MBEDTLS_IS_BIG_ENDIAN) \
292*62c56f98SSadaf Ebrahimi { \
293*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint32((data) + (offset), MBEDTLS_BSWAP32((uint32_t) (n))); \
294*62c56f98SSadaf Ebrahimi } \
295*62c56f98SSadaf Ebrahimi else \
296*62c56f98SSadaf Ebrahimi { \
297*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint32((data) + (offset), ((uint32_t) (n))); \
298*62c56f98SSadaf Ebrahimi } \
299*62c56f98SSadaf Ebrahimi }
300*62c56f98SSadaf Ebrahimi
301*62c56f98SSadaf Ebrahimi /**
302*62c56f98SSadaf Ebrahimi * Get the unsigned 16 bits integer corresponding to two bytes in
303*62c56f98SSadaf Ebrahimi * little-endian order (LSB first).
304*62c56f98SSadaf Ebrahimi *
305*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the two bytes from.
306*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and least significant
307*62c56f98SSadaf Ebrahimi * byte of the two bytes to build the 16 bits unsigned
308*62c56f98SSadaf Ebrahimi * integer from.
309*62c56f98SSadaf Ebrahimi */
310*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT16_LE(data, offset) \
311*62c56f98SSadaf Ebrahimi ((MBEDTLS_IS_BIG_ENDIAN) \
312*62c56f98SSadaf Ebrahimi ? MBEDTLS_BSWAP16(mbedtls_get_unaligned_uint16((data) + (offset))) \
313*62c56f98SSadaf Ebrahimi : mbedtls_get_unaligned_uint16((data) + (offset)) \
314*62c56f98SSadaf Ebrahimi )
315*62c56f98SSadaf Ebrahimi
316*62c56f98SSadaf Ebrahimi /**
317*62c56f98SSadaf Ebrahimi * Put in memory a 16 bits unsigned integer in little-endian order.
318*62c56f98SSadaf Ebrahimi *
319*62c56f98SSadaf Ebrahimi * \param n 16 bits unsigned integer to put in memory.
320*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 16
321*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
322*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the least significant
323*62c56f98SSadaf Ebrahimi * byte of the 16 bits unsigned integer \p n.
324*62c56f98SSadaf Ebrahimi */
325*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT16_LE(n, data, offset) \
326*62c56f98SSadaf Ebrahimi { \
327*62c56f98SSadaf Ebrahimi if (MBEDTLS_IS_BIG_ENDIAN) \
328*62c56f98SSadaf Ebrahimi { \
329*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint16((data) + (offset), MBEDTLS_BSWAP16((uint16_t) (n))); \
330*62c56f98SSadaf Ebrahimi } \
331*62c56f98SSadaf Ebrahimi else \
332*62c56f98SSadaf Ebrahimi { \
333*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint16((data) + (offset), (uint16_t) (n)); \
334*62c56f98SSadaf Ebrahimi } \
335*62c56f98SSadaf Ebrahimi }
336*62c56f98SSadaf Ebrahimi
337*62c56f98SSadaf Ebrahimi /**
338*62c56f98SSadaf Ebrahimi * Get the unsigned 16 bits integer corresponding to two bytes in
339*62c56f98SSadaf Ebrahimi * big-endian order (MSB first).
340*62c56f98SSadaf Ebrahimi *
341*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the two bytes from.
342*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and most significant
343*62c56f98SSadaf Ebrahimi * byte of the two bytes to build the 16 bits unsigned
344*62c56f98SSadaf Ebrahimi * integer from.
345*62c56f98SSadaf Ebrahimi */
346*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT16_BE(data, offset) \
347*62c56f98SSadaf Ebrahimi ((MBEDTLS_IS_BIG_ENDIAN) \
348*62c56f98SSadaf Ebrahimi ? mbedtls_get_unaligned_uint16((data) + (offset)) \
349*62c56f98SSadaf Ebrahimi : MBEDTLS_BSWAP16(mbedtls_get_unaligned_uint16((data) + (offset))) \
350*62c56f98SSadaf Ebrahimi )
351*62c56f98SSadaf Ebrahimi
352*62c56f98SSadaf Ebrahimi /**
353*62c56f98SSadaf Ebrahimi * Put in memory a 16 bits unsigned integer in big-endian order.
354*62c56f98SSadaf Ebrahimi *
355*62c56f98SSadaf Ebrahimi * \param n 16 bits unsigned integer to put in memory.
356*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 16
357*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
358*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the most significant
359*62c56f98SSadaf Ebrahimi * byte of the 16 bits unsigned integer \p n.
360*62c56f98SSadaf Ebrahimi */
361*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT16_BE(n, data, offset) \
362*62c56f98SSadaf Ebrahimi { \
363*62c56f98SSadaf Ebrahimi if (MBEDTLS_IS_BIG_ENDIAN) \
364*62c56f98SSadaf Ebrahimi { \
365*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint16((data) + (offset), (uint16_t) (n)); \
366*62c56f98SSadaf Ebrahimi } \
367*62c56f98SSadaf Ebrahimi else \
368*62c56f98SSadaf Ebrahimi { \
369*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint16((data) + (offset), MBEDTLS_BSWAP16((uint16_t) (n))); \
370*62c56f98SSadaf Ebrahimi } \
371*62c56f98SSadaf Ebrahimi }
372*62c56f98SSadaf Ebrahimi
373*62c56f98SSadaf Ebrahimi /**
374*62c56f98SSadaf Ebrahimi * Get the unsigned 24 bits integer corresponding to three bytes in
375*62c56f98SSadaf Ebrahimi * big-endian order (MSB first).
376*62c56f98SSadaf Ebrahimi *
377*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the three bytes from.
378*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and most significant
379*62c56f98SSadaf Ebrahimi * byte of the three bytes to build the 24 bits unsigned
380*62c56f98SSadaf Ebrahimi * integer from.
381*62c56f98SSadaf Ebrahimi */
382*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT24_BE(data, offset) \
383*62c56f98SSadaf Ebrahimi ( \
384*62c56f98SSadaf Ebrahimi ((uint32_t) (data)[(offset)] << 16) \
385*62c56f98SSadaf Ebrahimi | ((uint32_t) (data)[(offset) + 1] << 8) \
386*62c56f98SSadaf Ebrahimi | ((uint32_t) (data)[(offset) + 2]) \
387*62c56f98SSadaf Ebrahimi )
388*62c56f98SSadaf Ebrahimi
389*62c56f98SSadaf Ebrahimi /**
390*62c56f98SSadaf Ebrahimi * Put in memory a 24 bits unsigned integer in big-endian order.
391*62c56f98SSadaf Ebrahimi *
392*62c56f98SSadaf Ebrahimi * \param n 24 bits unsigned integer to put in memory.
393*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 24
394*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
395*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the most significant
396*62c56f98SSadaf Ebrahimi * byte of the 24 bits unsigned integer \p n.
397*62c56f98SSadaf Ebrahimi */
398*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT24_BE(n, data, offset) \
399*62c56f98SSadaf Ebrahimi { \
400*62c56f98SSadaf Ebrahimi (data)[(offset)] = MBEDTLS_BYTE_2(n); \
401*62c56f98SSadaf Ebrahimi (data)[(offset) + 1] = MBEDTLS_BYTE_1(n); \
402*62c56f98SSadaf Ebrahimi (data)[(offset) + 2] = MBEDTLS_BYTE_0(n); \
403*62c56f98SSadaf Ebrahimi }
404*62c56f98SSadaf Ebrahimi
405*62c56f98SSadaf Ebrahimi /**
406*62c56f98SSadaf Ebrahimi * Get the unsigned 24 bits integer corresponding to three bytes in
407*62c56f98SSadaf Ebrahimi * little-endian order (LSB first).
408*62c56f98SSadaf Ebrahimi *
409*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the three bytes from.
410*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and least significant
411*62c56f98SSadaf Ebrahimi * byte of the three bytes to build the 24 bits unsigned
412*62c56f98SSadaf Ebrahimi * integer from.
413*62c56f98SSadaf Ebrahimi */
414*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT24_LE(data, offset) \
415*62c56f98SSadaf Ebrahimi ( \
416*62c56f98SSadaf Ebrahimi ((uint32_t) (data)[(offset)]) \
417*62c56f98SSadaf Ebrahimi | ((uint32_t) (data)[(offset) + 1] << 8) \
418*62c56f98SSadaf Ebrahimi | ((uint32_t) (data)[(offset) + 2] << 16) \
419*62c56f98SSadaf Ebrahimi )
420*62c56f98SSadaf Ebrahimi
421*62c56f98SSadaf Ebrahimi /**
422*62c56f98SSadaf Ebrahimi * Put in memory a 24 bits unsigned integer in little-endian order.
423*62c56f98SSadaf Ebrahimi *
424*62c56f98SSadaf Ebrahimi * \param n 24 bits unsigned integer to put in memory.
425*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 24
426*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
427*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the least significant
428*62c56f98SSadaf Ebrahimi * byte of the 24 bits unsigned integer \p n.
429*62c56f98SSadaf Ebrahimi */
430*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT24_LE(n, data, offset) \
431*62c56f98SSadaf Ebrahimi { \
432*62c56f98SSadaf Ebrahimi (data)[(offset)] = MBEDTLS_BYTE_0(n); \
433*62c56f98SSadaf Ebrahimi (data)[(offset) + 1] = MBEDTLS_BYTE_1(n); \
434*62c56f98SSadaf Ebrahimi (data)[(offset) + 2] = MBEDTLS_BYTE_2(n); \
435*62c56f98SSadaf Ebrahimi }
436*62c56f98SSadaf Ebrahimi
437*62c56f98SSadaf Ebrahimi /**
438*62c56f98SSadaf Ebrahimi * Get the unsigned 64 bits integer corresponding to eight bytes in
439*62c56f98SSadaf Ebrahimi * big-endian order (MSB first).
440*62c56f98SSadaf Ebrahimi *
441*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the eight bytes from.
442*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and most significant
443*62c56f98SSadaf Ebrahimi * byte of the eight bytes to build the 64 bits unsigned
444*62c56f98SSadaf Ebrahimi * integer from.
445*62c56f98SSadaf Ebrahimi */
446*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT64_BE(data, offset) \
447*62c56f98SSadaf Ebrahimi ((MBEDTLS_IS_BIG_ENDIAN) \
448*62c56f98SSadaf Ebrahimi ? mbedtls_get_unaligned_uint64((data) + (offset)) \
449*62c56f98SSadaf Ebrahimi : MBEDTLS_BSWAP64(mbedtls_get_unaligned_uint64((data) + (offset))) \
450*62c56f98SSadaf Ebrahimi )
451*62c56f98SSadaf Ebrahimi
452*62c56f98SSadaf Ebrahimi /**
453*62c56f98SSadaf Ebrahimi * Put in memory a 64 bits unsigned integer in big-endian order.
454*62c56f98SSadaf Ebrahimi *
455*62c56f98SSadaf Ebrahimi * \param n 64 bits unsigned integer to put in memory.
456*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 64
457*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
458*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the most significant
459*62c56f98SSadaf Ebrahimi * byte of the 64 bits unsigned integer \p n.
460*62c56f98SSadaf Ebrahimi */
461*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT64_BE(n, data, offset) \
462*62c56f98SSadaf Ebrahimi { \
463*62c56f98SSadaf Ebrahimi if (MBEDTLS_IS_BIG_ENDIAN) \
464*62c56f98SSadaf Ebrahimi { \
465*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint64((data) + (offset), (uint64_t) (n)); \
466*62c56f98SSadaf Ebrahimi } \
467*62c56f98SSadaf Ebrahimi else \
468*62c56f98SSadaf Ebrahimi { \
469*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint64((data) + (offset), MBEDTLS_BSWAP64((uint64_t) (n))); \
470*62c56f98SSadaf Ebrahimi } \
471*62c56f98SSadaf Ebrahimi }
472*62c56f98SSadaf Ebrahimi
473*62c56f98SSadaf Ebrahimi /**
474*62c56f98SSadaf Ebrahimi * Get the unsigned 64 bits integer corresponding to eight bytes in
475*62c56f98SSadaf Ebrahimi * little-endian order (LSB first).
476*62c56f98SSadaf Ebrahimi *
477*62c56f98SSadaf Ebrahimi * \param data Base address of the memory to get the eight bytes from.
478*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data of the first and least significant
479*62c56f98SSadaf Ebrahimi * byte of the eight bytes to build the 64 bits unsigned
480*62c56f98SSadaf Ebrahimi * integer from.
481*62c56f98SSadaf Ebrahimi */
482*62c56f98SSadaf Ebrahimi #define MBEDTLS_GET_UINT64_LE(data, offset) \
483*62c56f98SSadaf Ebrahimi ((MBEDTLS_IS_BIG_ENDIAN) \
484*62c56f98SSadaf Ebrahimi ? MBEDTLS_BSWAP64(mbedtls_get_unaligned_uint64((data) + (offset))) \
485*62c56f98SSadaf Ebrahimi : mbedtls_get_unaligned_uint64((data) + (offset)) \
486*62c56f98SSadaf Ebrahimi )
487*62c56f98SSadaf Ebrahimi
488*62c56f98SSadaf Ebrahimi /**
489*62c56f98SSadaf Ebrahimi * Put in memory a 64 bits unsigned integer in little-endian order.
490*62c56f98SSadaf Ebrahimi *
491*62c56f98SSadaf Ebrahimi * \param n 64 bits unsigned integer to put in memory.
492*62c56f98SSadaf Ebrahimi * \param data Base address of the memory where to put the 64
493*62c56f98SSadaf Ebrahimi * bits unsigned integer in.
494*62c56f98SSadaf Ebrahimi * \param offset Offset from \p data where to put the least significant
495*62c56f98SSadaf Ebrahimi * byte of the 64 bits unsigned integer \p n.
496*62c56f98SSadaf Ebrahimi */
497*62c56f98SSadaf Ebrahimi #define MBEDTLS_PUT_UINT64_LE(n, data, offset) \
498*62c56f98SSadaf Ebrahimi { \
499*62c56f98SSadaf Ebrahimi if (MBEDTLS_IS_BIG_ENDIAN) \
500*62c56f98SSadaf Ebrahimi { \
501*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint64((data) + (offset), MBEDTLS_BSWAP64((uint64_t) (n))); \
502*62c56f98SSadaf Ebrahimi } \
503*62c56f98SSadaf Ebrahimi else \
504*62c56f98SSadaf Ebrahimi { \
505*62c56f98SSadaf Ebrahimi mbedtls_put_unaligned_uint64((data) + (offset), (uint64_t) (n)); \
506*62c56f98SSadaf Ebrahimi } \
507*62c56f98SSadaf Ebrahimi }
508*62c56f98SSadaf Ebrahimi
509*62c56f98SSadaf Ebrahimi #endif /* MBEDTLS_LIBRARY_ALIGNMENT_H */
510