xref: /dragonfly/contrib/zstd/lib/common/mem.h (revision a28cd43d)
1*a28cd43dSSascha Wildner /*
2*a28cd43dSSascha Wildner  * Copyright (c) 2016-2020, Yann Collet, Facebook, Inc.
3*a28cd43dSSascha Wildner  * All rights reserved.
4*a28cd43dSSascha Wildner  *
5*a28cd43dSSascha Wildner  * This source code is licensed under both the BSD-style license (found in the
6*a28cd43dSSascha Wildner  * LICENSE file in the root directory of this source tree) and the GPLv2 (found
7*a28cd43dSSascha Wildner  * in the COPYING file in the root directory of this source tree).
8*a28cd43dSSascha Wildner  * You may select, at your option, one of the above-listed licenses.
9*a28cd43dSSascha Wildner  */
10*a28cd43dSSascha Wildner 
11*a28cd43dSSascha Wildner #ifndef MEM_H_MODULE
12*a28cd43dSSascha Wildner #define MEM_H_MODULE
13*a28cd43dSSascha Wildner 
14*a28cd43dSSascha Wildner #if defined (__cplusplus)
15*a28cd43dSSascha Wildner extern "C" {
16*a28cd43dSSascha Wildner #endif
17*a28cd43dSSascha Wildner 
18*a28cd43dSSascha Wildner /*-****************************************
19*a28cd43dSSascha Wildner *  Dependencies
20*a28cd43dSSascha Wildner ******************************************/
21*a28cd43dSSascha Wildner #include <stddef.h>  /* size_t, ptrdiff_t */
22*a28cd43dSSascha Wildner #include "compiler.h"  /* __has_builtin */
23*a28cd43dSSascha Wildner #include "debug.h"  /* DEBUG_STATIC_ASSERT */
24*a28cd43dSSascha Wildner #include "zstd_deps.h"  /* ZSTD_memcpy */
25*a28cd43dSSascha Wildner 
26*a28cd43dSSascha Wildner 
27*a28cd43dSSascha Wildner /*-****************************************
28*a28cd43dSSascha Wildner *  Compiler specifics
29*a28cd43dSSascha Wildner ******************************************/
30*a28cd43dSSascha Wildner #if defined(_MSC_VER)   /* Visual Studio */
31*a28cd43dSSascha Wildner #   include <stdlib.h>  /* _byteswap_ulong */
32*a28cd43dSSascha Wildner #   include <intrin.h>  /* _byteswap_* */
33*a28cd43dSSascha Wildner #endif
34*a28cd43dSSascha Wildner #if defined(__GNUC__)
35*a28cd43dSSascha Wildner #  define MEM_STATIC static __inline __attribute__((unused))
36*a28cd43dSSascha Wildner #elif defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */)
37*a28cd43dSSascha Wildner #  define MEM_STATIC static inline
38*a28cd43dSSascha Wildner #elif defined(_MSC_VER)
39*a28cd43dSSascha Wildner #  define MEM_STATIC static __inline
40*a28cd43dSSascha Wildner #else
41*a28cd43dSSascha Wildner #  define MEM_STATIC static  /* this version may generate warnings for unused static functions; disable the relevant warning */
42*a28cd43dSSascha Wildner #endif
43*a28cd43dSSascha Wildner 
44*a28cd43dSSascha Wildner /*-**************************************************************
45*a28cd43dSSascha Wildner *  Basic Types
46*a28cd43dSSascha Wildner *****************************************************************/
47*a28cd43dSSascha Wildner #if  !defined (__VMS) && (defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */) )
48*a28cd43dSSascha Wildner #  if defined(_AIX)
49*a28cd43dSSascha Wildner #    include <inttypes.h>
50*a28cd43dSSascha Wildner #  else
51*a28cd43dSSascha Wildner #    include <stdint.h> /* intptr_t */
52*a28cd43dSSascha Wildner #  endif
53*a28cd43dSSascha Wildner   typedef   uint8_t BYTE;
54*a28cd43dSSascha Wildner   typedef  uint16_t U16;
55*a28cd43dSSascha Wildner   typedef   int16_t S16;
56*a28cd43dSSascha Wildner   typedef  uint32_t U32;
57*a28cd43dSSascha Wildner   typedef   int32_t S32;
58*a28cd43dSSascha Wildner   typedef  uint64_t U64;
59*a28cd43dSSascha Wildner   typedef   int64_t S64;
60*a28cd43dSSascha Wildner #else
61*a28cd43dSSascha Wildner # include <limits.h>
62*a28cd43dSSascha Wildner #if CHAR_BIT != 8
63*a28cd43dSSascha Wildner #  error "this implementation requires char to be exactly 8-bit type"
64*a28cd43dSSascha Wildner #endif
65*a28cd43dSSascha Wildner   typedef unsigned char      BYTE;
66*a28cd43dSSascha Wildner #if USHRT_MAX != 65535
67*a28cd43dSSascha Wildner #  error "this implementation requires short to be exactly 16-bit type"
68*a28cd43dSSascha Wildner #endif
69*a28cd43dSSascha Wildner   typedef unsigned short      U16;
70*a28cd43dSSascha Wildner   typedef   signed short      S16;
71*a28cd43dSSascha Wildner #if UINT_MAX != 4294967295
72*a28cd43dSSascha Wildner #  error "this implementation requires int to be exactly 32-bit type"
73*a28cd43dSSascha Wildner #endif
74*a28cd43dSSascha Wildner   typedef unsigned int        U32;
75*a28cd43dSSascha Wildner   typedef   signed int        S32;
76*a28cd43dSSascha Wildner /* note : there are no limits defined for long long type in C90.
77*a28cd43dSSascha Wildner  * limits exist in C99, however, in such case, <stdint.h> is preferred */
78*a28cd43dSSascha Wildner   typedef unsigned long long  U64;
79*a28cd43dSSascha Wildner   typedef   signed long long  S64;
80*a28cd43dSSascha Wildner #endif
81*a28cd43dSSascha Wildner 
82*a28cd43dSSascha Wildner 
83*a28cd43dSSascha Wildner /*-**************************************************************
84*a28cd43dSSascha Wildner *  Memory I/O API
85*a28cd43dSSascha Wildner *****************************************************************/
86*a28cd43dSSascha Wildner /*=== Static platform detection ===*/
87*a28cd43dSSascha Wildner MEM_STATIC unsigned MEM_32bits(void);
88*a28cd43dSSascha Wildner MEM_STATIC unsigned MEM_64bits(void);
89*a28cd43dSSascha Wildner MEM_STATIC unsigned MEM_isLittleEndian(void);
90*a28cd43dSSascha Wildner 
91*a28cd43dSSascha Wildner /*=== Native unaligned read/write ===*/
92*a28cd43dSSascha Wildner MEM_STATIC U16 MEM_read16(const void* memPtr);
93*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_read32(const void* memPtr);
94*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_read64(const void* memPtr);
95*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readST(const void* memPtr);
96*a28cd43dSSascha Wildner 
97*a28cd43dSSascha Wildner MEM_STATIC void MEM_write16(void* memPtr, U16 value);
98*a28cd43dSSascha Wildner MEM_STATIC void MEM_write32(void* memPtr, U32 value);
99*a28cd43dSSascha Wildner MEM_STATIC void MEM_write64(void* memPtr, U64 value);
100*a28cd43dSSascha Wildner 
101*a28cd43dSSascha Wildner /*=== Little endian unaligned read/write ===*/
102*a28cd43dSSascha Wildner MEM_STATIC U16 MEM_readLE16(const void* memPtr);
103*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_readLE24(const void* memPtr);
104*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_readLE32(const void* memPtr);
105*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_readLE64(const void* memPtr);
106*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readLEST(const void* memPtr);
107*a28cd43dSSascha Wildner 
108*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE16(void* memPtr, U16 val);
109*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE24(void* memPtr, U32 val);
110*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE32(void* memPtr, U32 val32);
111*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE64(void* memPtr, U64 val64);
112*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLEST(void* memPtr, size_t val);
113*a28cd43dSSascha Wildner 
114*a28cd43dSSascha Wildner /*=== Big endian unaligned read/write ===*/
115*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_readBE32(const void* memPtr);
116*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_readBE64(const void* memPtr);
117*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readBEST(const void* memPtr);
118*a28cd43dSSascha Wildner 
119*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeBE32(void* memPtr, U32 val32);
120*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeBE64(void* memPtr, U64 val64);
121*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeBEST(void* memPtr, size_t val);
122*a28cd43dSSascha Wildner 
123*a28cd43dSSascha Wildner /*=== Byteswap ===*/
124*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_swap32(U32 in);
125*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_swap64(U64 in);
126*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_swapST(size_t in);
127*a28cd43dSSascha Wildner 
128*a28cd43dSSascha Wildner 
129*a28cd43dSSascha Wildner /*-**************************************************************
130*a28cd43dSSascha Wildner *  Memory I/O Implementation
131*a28cd43dSSascha Wildner *****************************************************************/
132*a28cd43dSSascha Wildner /* MEM_FORCE_MEMORY_ACCESS :
133*a28cd43dSSascha Wildner  * By default, access to unaligned memory is controlled by `memcpy()`, which is safe and portable.
134*a28cd43dSSascha Wildner  * Unfortunately, on some target/compiler combinations, the generated assembly is sub-optimal.
135*a28cd43dSSascha Wildner  * The below switch allow to select different access method for improved performance.
136*a28cd43dSSascha Wildner  * Method 0 (default) : use `memcpy()`. Safe and portable.
137*a28cd43dSSascha Wildner  * Method 1 : `__packed` statement. It depends on compiler extension (i.e., not portable).
138*a28cd43dSSascha Wildner  *            This method is safe if your compiler supports it, and *generally* as fast or faster than `memcpy`.
139*a28cd43dSSascha Wildner  * Method 2 : direct access. This method is portable but violate C standard.
140*a28cd43dSSascha Wildner  *            It can generate buggy code on targets depending on alignment.
141*a28cd43dSSascha Wildner  *            In some circumstances, it's the only known way to get the most performance (i.e. GCC + ARMv6)
142*a28cd43dSSascha Wildner  * See http://fastcompression.blogspot.fr/2015/08/accessing-unaligned-memory.html for details.
143*a28cd43dSSascha Wildner  * Prefer these methods in priority order (0 > 1 > 2)
144*a28cd43dSSascha Wildner  */
145*a28cd43dSSascha Wildner #ifndef MEM_FORCE_MEMORY_ACCESS   /* can be defined externally, on command line for example */
146*a28cd43dSSascha Wildner #  if defined(__GNUC__) && ( defined(__ARM_ARCH_6__) || defined(__ARM_ARCH_6J__) || defined(__ARM_ARCH_6K__) || defined(__ARM_ARCH_6Z__) || defined(__ARM_ARCH_6ZK__) || defined(__ARM_ARCH_6T2__) )
147*a28cd43dSSascha Wildner #    define MEM_FORCE_MEMORY_ACCESS 2
148*a28cd43dSSascha Wildner #  elif defined(__INTEL_COMPILER) || defined(__GNUC__) || defined(__ICCARM__)
149*a28cd43dSSascha Wildner #    define MEM_FORCE_MEMORY_ACCESS 1
150*a28cd43dSSascha Wildner #  endif
151*a28cd43dSSascha Wildner #endif
152*a28cd43dSSascha Wildner 
MEM_32bits(void)153*a28cd43dSSascha Wildner MEM_STATIC unsigned MEM_32bits(void) { return sizeof(size_t)==4; }
MEM_64bits(void)154*a28cd43dSSascha Wildner MEM_STATIC unsigned MEM_64bits(void) { return sizeof(size_t)==8; }
155*a28cd43dSSascha Wildner 
MEM_isLittleEndian(void)156*a28cd43dSSascha Wildner MEM_STATIC unsigned MEM_isLittleEndian(void)
157*a28cd43dSSascha Wildner {
158*a28cd43dSSascha Wildner     const union { U32 u; BYTE c[4]; } one = { 1 };   /* don't use static : performance detrimental  */
159*a28cd43dSSascha Wildner     return one.c[0];
160*a28cd43dSSascha Wildner }
161*a28cd43dSSascha Wildner 
162*a28cd43dSSascha Wildner #if defined(MEM_FORCE_MEMORY_ACCESS) && (MEM_FORCE_MEMORY_ACCESS==2)
163*a28cd43dSSascha Wildner 
164*a28cd43dSSascha Wildner /* violates C standard, by lying on structure alignment.
165*a28cd43dSSascha Wildner Only use if no other choice to achieve best performance on target platform */
MEM_read16(const void * memPtr)166*a28cd43dSSascha Wildner MEM_STATIC U16 MEM_read16(const void* memPtr) { return *(const U16*) memPtr; }
MEM_read32(const void * memPtr)167*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_read32(const void* memPtr) { return *(const U32*) memPtr; }
MEM_read64(const void * memPtr)168*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_read64(const void* memPtr) { return *(const U64*) memPtr; }
MEM_readST(const void * memPtr)169*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readST(const void* memPtr) { return *(const size_t*) memPtr; }
170*a28cd43dSSascha Wildner 
MEM_write16(void * memPtr,U16 value)171*a28cd43dSSascha Wildner MEM_STATIC void MEM_write16(void* memPtr, U16 value) { *(U16*)memPtr = value; }
MEM_write32(void * memPtr,U32 value)172*a28cd43dSSascha Wildner MEM_STATIC void MEM_write32(void* memPtr, U32 value) { *(U32*)memPtr = value; }
MEM_write64(void * memPtr,U64 value)173*a28cd43dSSascha Wildner MEM_STATIC void MEM_write64(void* memPtr, U64 value) { *(U64*)memPtr = value; }
174*a28cd43dSSascha Wildner 
175*a28cd43dSSascha Wildner #elif defined(MEM_FORCE_MEMORY_ACCESS) && (MEM_FORCE_MEMORY_ACCESS==1)
176*a28cd43dSSascha Wildner 
177*a28cd43dSSascha Wildner /* __pack instructions are safer, but compiler specific, hence potentially problematic for some compilers */
178*a28cd43dSSascha Wildner /* currently only defined for gcc and icc */
179*a28cd43dSSascha Wildner #if defined(_MSC_VER) || (defined(__INTEL_COMPILER) && defined(WIN32))
180*a28cd43dSSascha Wildner     __pragma( pack(push, 1) )
181*a28cd43dSSascha Wildner     typedef struct { U16 v; } unalign16;
182*a28cd43dSSascha Wildner     typedef struct { U32 v; } unalign32;
183*a28cd43dSSascha Wildner     typedef struct { U64 v; } unalign64;
184*a28cd43dSSascha Wildner     typedef struct { size_t v; } unalignArch;
__pragma(pack (pop))185*a28cd43dSSascha Wildner     __pragma( pack(pop) )
186*a28cd43dSSascha Wildner #else
187*a28cd43dSSascha Wildner     typedef struct { U16 v; } __attribute__((packed)) unalign16;
188*a28cd43dSSascha Wildner     typedef struct { U32 v; } __attribute__((packed)) unalign32;
189*a28cd43dSSascha Wildner     typedef struct { U64 v; } __attribute__((packed)) unalign64;
190*a28cd43dSSascha Wildner     typedef struct { size_t v; } __attribute__((packed)) unalignArch;
191*a28cd43dSSascha Wildner #endif
192*a28cd43dSSascha Wildner 
193*a28cd43dSSascha Wildner MEM_STATIC U16 MEM_read16(const void* ptr) { return ((const unalign16*)ptr)->v; }
MEM_read32(const void * ptr)194*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_read32(const void* ptr) { return ((const unalign32*)ptr)->v; }
MEM_read64(const void * ptr)195*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_read64(const void* ptr) { return ((const unalign64*)ptr)->v; }
MEM_readST(const void * ptr)196*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readST(const void* ptr) { return ((const unalignArch*)ptr)->v; }
197*a28cd43dSSascha Wildner 
MEM_write16(void * memPtr,U16 value)198*a28cd43dSSascha Wildner MEM_STATIC void MEM_write16(void* memPtr, U16 value) { ((unalign16*)memPtr)->v = value; }
MEM_write32(void * memPtr,U32 value)199*a28cd43dSSascha Wildner MEM_STATIC void MEM_write32(void* memPtr, U32 value) { ((unalign32*)memPtr)->v = value; }
MEM_write64(void * memPtr,U64 value)200*a28cd43dSSascha Wildner MEM_STATIC void MEM_write64(void* memPtr, U64 value) { ((unalign64*)memPtr)->v = value; }
201*a28cd43dSSascha Wildner 
202*a28cd43dSSascha Wildner #else
203*a28cd43dSSascha Wildner 
204*a28cd43dSSascha Wildner /* default method, safe and standard.
205*a28cd43dSSascha Wildner    can sometimes prove slower */
206*a28cd43dSSascha Wildner 
MEM_read16(const void * memPtr)207*a28cd43dSSascha Wildner MEM_STATIC U16 MEM_read16(const void* memPtr)
208*a28cd43dSSascha Wildner {
209*a28cd43dSSascha Wildner     U16 val; ZSTD_memcpy(&val, memPtr, sizeof(val)); return val;
210*a28cd43dSSascha Wildner }
211*a28cd43dSSascha Wildner 
MEM_read32(const void * memPtr)212*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_read32(const void* memPtr)
213*a28cd43dSSascha Wildner {
214*a28cd43dSSascha Wildner     U32 val; ZSTD_memcpy(&val, memPtr, sizeof(val)); return val;
215*a28cd43dSSascha Wildner }
216*a28cd43dSSascha Wildner 
MEM_read64(const void * memPtr)217*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_read64(const void* memPtr)
218*a28cd43dSSascha Wildner {
219*a28cd43dSSascha Wildner     U64 val; ZSTD_memcpy(&val, memPtr, sizeof(val)); return val;
220*a28cd43dSSascha Wildner }
221*a28cd43dSSascha Wildner 
MEM_readST(const void * memPtr)222*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readST(const void* memPtr)
223*a28cd43dSSascha Wildner {
224*a28cd43dSSascha Wildner     size_t val; ZSTD_memcpy(&val, memPtr, sizeof(val)); return val;
225*a28cd43dSSascha Wildner }
226*a28cd43dSSascha Wildner 
MEM_write16(void * memPtr,U16 value)227*a28cd43dSSascha Wildner MEM_STATIC void MEM_write16(void* memPtr, U16 value)
228*a28cd43dSSascha Wildner {
229*a28cd43dSSascha Wildner     ZSTD_memcpy(memPtr, &value, sizeof(value));
230*a28cd43dSSascha Wildner }
231*a28cd43dSSascha Wildner 
MEM_write32(void * memPtr,U32 value)232*a28cd43dSSascha Wildner MEM_STATIC void MEM_write32(void* memPtr, U32 value)
233*a28cd43dSSascha Wildner {
234*a28cd43dSSascha Wildner     ZSTD_memcpy(memPtr, &value, sizeof(value));
235*a28cd43dSSascha Wildner }
236*a28cd43dSSascha Wildner 
MEM_write64(void * memPtr,U64 value)237*a28cd43dSSascha Wildner MEM_STATIC void MEM_write64(void* memPtr, U64 value)
238*a28cd43dSSascha Wildner {
239*a28cd43dSSascha Wildner     ZSTD_memcpy(memPtr, &value, sizeof(value));
240*a28cd43dSSascha Wildner }
241*a28cd43dSSascha Wildner 
242*a28cd43dSSascha Wildner #endif /* MEM_FORCE_MEMORY_ACCESS */
243*a28cd43dSSascha Wildner 
MEM_swap32(U32 in)244*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_swap32(U32 in)
245*a28cd43dSSascha Wildner {
246*a28cd43dSSascha Wildner #if defined(_MSC_VER)     /* Visual Studio */
247*a28cd43dSSascha Wildner     return _byteswap_ulong(in);
248*a28cd43dSSascha Wildner #elif (defined (__GNUC__) && (__GNUC__ * 100 + __GNUC_MINOR__ >= 403)) \
249*a28cd43dSSascha Wildner   || (defined(__clang__) && __has_builtin(__builtin_bswap32))
250*a28cd43dSSascha Wildner     return __builtin_bswap32(in);
251*a28cd43dSSascha Wildner #else
252*a28cd43dSSascha Wildner     return  ((in << 24) & 0xff000000 ) |
253*a28cd43dSSascha Wildner             ((in <<  8) & 0x00ff0000 ) |
254*a28cd43dSSascha Wildner             ((in >>  8) & 0x0000ff00 ) |
255*a28cd43dSSascha Wildner             ((in >> 24) & 0x000000ff );
256*a28cd43dSSascha Wildner #endif
257*a28cd43dSSascha Wildner }
258*a28cd43dSSascha Wildner 
MEM_swap64(U64 in)259*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_swap64(U64 in)
260*a28cd43dSSascha Wildner {
261*a28cd43dSSascha Wildner #if defined(_MSC_VER)     /* Visual Studio */
262*a28cd43dSSascha Wildner     return _byteswap_uint64(in);
263*a28cd43dSSascha Wildner #elif (defined (__GNUC__) && (__GNUC__ * 100 + __GNUC_MINOR__ >= 403)) \
264*a28cd43dSSascha Wildner   || (defined(__clang__) && __has_builtin(__builtin_bswap64))
265*a28cd43dSSascha Wildner     return __builtin_bswap64(in);
266*a28cd43dSSascha Wildner #else
267*a28cd43dSSascha Wildner     return  ((in << 56) & 0xff00000000000000ULL) |
268*a28cd43dSSascha Wildner             ((in << 40) & 0x00ff000000000000ULL) |
269*a28cd43dSSascha Wildner             ((in << 24) & 0x0000ff0000000000ULL) |
270*a28cd43dSSascha Wildner             ((in << 8)  & 0x000000ff00000000ULL) |
271*a28cd43dSSascha Wildner             ((in >> 8)  & 0x00000000ff000000ULL) |
272*a28cd43dSSascha Wildner             ((in >> 24) & 0x0000000000ff0000ULL) |
273*a28cd43dSSascha Wildner             ((in >> 40) & 0x000000000000ff00ULL) |
274*a28cd43dSSascha Wildner             ((in >> 56) & 0x00000000000000ffULL);
275*a28cd43dSSascha Wildner #endif
276*a28cd43dSSascha Wildner }
277*a28cd43dSSascha Wildner 
MEM_swapST(size_t in)278*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_swapST(size_t in)
279*a28cd43dSSascha Wildner {
280*a28cd43dSSascha Wildner     if (MEM_32bits())
281*a28cd43dSSascha Wildner         return (size_t)MEM_swap32((U32)in);
282*a28cd43dSSascha Wildner     else
283*a28cd43dSSascha Wildner         return (size_t)MEM_swap64((U64)in);
284*a28cd43dSSascha Wildner }
285*a28cd43dSSascha Wildner 
286*a28cd43dSSascha Wildner /*=== Little endian r/w ===*/
287*a28cd43dSSascha Wildner 
MEM_readLE16(const void * memPtr)288*a28cd43dSSascha Wildner MEM_STATIC U16 MEM_readLE16(const void* memPtr)
289*a28cd43dSSascha Wildner {
290*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
291*a28cd43dSSascha Wildner         return MEM_read16(memPtr);
292*a28cd43dSSascha Wildner     else {
293*a28cd43dSSascha Wildner         const BYTE* p = (const BYTE*)memPtr;
294*a28cd43dSSascha Wildner         return (U16)(p[0] + (p[1]<<8));
295*a28cd43dSSascha Wildner     }
296*a28cd43dSSascha Wildner }
297*a28cd43dSSascha Wildner 
MEM_writeLE16(void * memPtr,U16 val)298*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE16(void* memPtr, U16 val)
299*a28cd43dSSascha Wildner {
300*a28cd43dSSascha Wildner     if (MEM_isLittleEndian()) {
301*a28cd43dSSascha Wildner         MEM_write16(memPtr, val);
302*a28cd43dSSascha Wildner     } else {
303*a28cd43dSSascha Wildner         BYTE* p = (BYTE*)memPtr;
304*a28cd43dSSascha Wildner         p[0] = (BYTE)val;
305*a28cd43dSSascha Wildner         p[1] = (BYTE)(val>>8);
306*a28cd43dSSascha Wildner     }
307*a28cd43dSSascha Wildner }
308*a28cd43dSSascha Wildner 
MEM_readLE24(const void * memPtr)309*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_readLE24(const void* memPtr)
310*a28cd43dSSascha Wildner {
311*a28cd43dSSascha Wildner     return MEM_readLE16(memPtr) + (((const BYTE*)memPtr)[2] << 16);
312*a28cd43dSSascha Wildner }
313*a28cd43dSSascha Wildner 
MEM_writeLE24(void * memPtr,U32 val)314*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE24(void* memPtr, U32 val)
315*a28cd43dSSascha Wildner {
316*a28cd43dSSascha Wildner     MEM_writeLE16(memPtr, (U16)val);
317*a28cd43dSSascha Wildner     ((BYTE*)memPtr)[2] = (BYTE)(val>>16);
318*a28cd43dSSascha Wildner }
319*a28cd43dSSascha Wildner 
MEM_readLE32(const void * memPtr)320*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_readLE32(const void* memPtr)
321*a28cd43dSSascha Wildner {
322*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
323*a28cd43dSSascha Wildner         return MEM_read32(memPtr);
324*a28cd43dSSascha Wildner     else
325*a28cd43dSSascha Wildner         return MEM_swap32(MEM_read32(memPtr));
326*a28cd43dSSascha Wildner }
327*a28cd43dSSascha Wildner 
MEM_writeLE32(void * memPtr,U32 val32)328*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE32(void* memPtr, U32 val32)
329*a28cd43dSSascha Wildner {
330*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
331*a28cd43dSSascha Wildner         MEM_write32(memPtr, val32);
332*a28cd43dSSascha Wildner     else
333*a28cd43dSSascha Wildner         MEM_write32(memPtr, MEM_swap32(val32));
334*a28cd43dSSascha Wildner }
335*a28cd43dSSascha Wildner 
MEM_readLE64(const void * memPtr)336*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_readLE64(const void* memPtr)
337*a28cd43dSSascha Wildner {
338*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
339*a28cd43dSSascha Wildner         return MEM_read64(memPtr);
340*a28cd43dSSascha Wildner     else
341*a28cd43dSSascha Wildner         return MEM_swap64(MEM_read64(memPtr));
342*a28cd43dSSascha Wildner }
343*a28cd43dSSascha Wildner 
MEM_writeLE64(void * memPtr,U64 val64)344*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLE64(void* memPtr, U64 val64)
345*a28cd43dSSascha Wildner {
346*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
347*a28cd43dSSascha Wildner         MEM_write64(memPtr, val64);
348*a28cd43dSSascha Wildner     else
349*a28cd43dSSascha Wildner         MEM_write64(memPtr, MEM_swap64(val64));
350*a28cd43dSSascha Wildner }
351*a28cd43dSSascha Wildner 
MEM_readLEST(const void * memPtr)352*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readLEST(const void* memPtr)
353*a28cd43dSSascha Wildner {
354*a28cd43dSSascha Wildner     if (MEM_32bits())
355*a28cd43dSSascha Wildner         return (size_t)MEM_readLE32(memPtr);
356*a28cd43dSSascha Wildner     else
357*a28cd43dSSascha Wildner         return (size_t)MEM_readLE64(memPtr);
358*a28cd43dSSascha Wildner }
359*a28cd43dSSascha Wildner 
MEM_writeLEST(void * memPtr,size_t val)360*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeLEST(void* memPtr, size_t val)
361*a28cd43dSSascha Wildner {
362*a28cd43dSSascha Wildner     if (MEM_32bits())
363*a28cd43dSSascha Wildner         MEM_writeLE32(memPtr, (U32)val);
364*a28cd43dSSascha Wildner     else
365*a28cd43dSSascha Wildner         MEM_writeLE64(memPtr, (U64)val);
366*a28cd43dSSascha Wildner }
367*a28cd43dSSascha Wildner 
368*a28cd43dSSascha Wildner /*=== Big endian r/w ===*/
369*a28cd43dSSascha Wildner 
MEM_readBE32(const void * memPtr)370*a28cd43dSSascha Wildner MEM_STATIC U32 MEM_readBE32(const void* memPtr)
371*a28cd43dSSascha Wildner {
372*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
373*a28cd43dSSascha Wildner         return MEM_swap32(MEM_read32(memPtr));
374*a28cd43dSSascha Wildner     else
375*a28cd43dSSascha Wildner         return MEM_read32(memPtr);
376*a28cd43dSSascha Wildner }
377*a28cd43dSSascha Wildner 
MEM_writeBE32(void * memPtr,U32 val32)378*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeBE32(void* memPtr, U32 val32)
379*a28cd43dSSascha Wildner {
380*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
381*a28cd43dSSascha Wildner         MEM_write32(memPtr, MEM_swap32(val32));
382*a28cd43dSSascha Wildner     else
383*a28cd43dSSascha Wildner         MEM_write32(memPtr, val32);
384*a28cd43dSSascha Wildner }
385*a28cd43dSSascha Wildner 
MEM_readBE64(const void * memPtr)386*a28cd43dSSascha Wildner MEM_STATIC U64 MEM_readBE64(const void* memPtr)
387*a28cd43dSSascha Wildner {
388*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
389*a28cd43dSSascha Wildner         return MEM_swap64(MEM_read64(memPtr));
390*a28cd43dSSascha Wildner     else
391*a28cd43dSSascha Wildner         return MEM_read64(memPtr);
392*a28cd43dSSascha Wildner }
393*a28cd43dSSascha Wildner 
MEM_writeBE64(void * memPtr,U64 val64)394*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeBE64(void* memPtr, U64 val64)
395*a28cd43dSSascha Wildner {
396*a28cd43dSSascha Wildner     if (MEM_isLittleEndian())
397*a28cd43dSSascha Wildner         MEM_write64(memPtr, MEM_swap64(val64));
398*a28cd43dSSascha Wildner     else
399*a28cd43dSSascha Wildner         MEM_write64(memPtr, val64);
400*a28cd43dSSascha Wildner }
401*a28cd43dSSascha Wildner 
MEM_readBEST(const void * memPtr)402*a28cd43dSSascha Wildner MEM_STATIC size_t MEM_readBEST(const void* memPtr)
403*a28cd43dSSascha Wildner {
404*a28cd43dSSascha Wildner     if (MEM_32bits())
405*a28cd43dSSascha Wildner         return (size_t)MEM_readBE32(memPtr);
406*a28cd43dSSascha Wildner     else
407*a28cd43dSSascha Wildner         return (size_t)MEM_readBE64(memPtr);
408*a28cd43dSSascha Wildner }
409*a28cd43dSSascha Wildner 
MEM_writeBEST(void * memPtr,size_t val)410*a28cd43dSSascha Wildner MEM_STATIC void MEM_writeBEST(void* memPtr, size_t val)
411*a28cd43dSSascha Wildner {
412*a28cd43dSSascha Wildner     if (MEM_32bits())
413*a28cd43dSSascha Wildner         MEM_writeBE32(memPtr, (U32)val);
414*a28cd43dSSascha Wildner     else
415*a28cd43dSSascha Wildner         MEM_writeBE64(memPtr, (U64)val);
416*a28cd43dSSascha Wildner }
417*a28cd43dSSascha Wildner 
418*a28cd43dSSascha Wildner /* code only tested on 32 and 64 bits systems */
MEM_check(void)419*a28cd43dSSascha Wildner MEM_STATIC void MEM_check(void) { DEBUG_STATIC_ASSERT((sizeof(size_t)==4) || (sizeof(size_t)==8)); }
420*a28cd43dSSascha Wildner 
421*a28cd43dSSascha Wildner 
422*a28cd43dSSascha Wildner #if defined (__cplusplus)
423*a28cd43dSSascha Wildner }
424*a28cd43dSSascha Wildner #endif
425*a28cd43dSSascha Wildner 
426*a28cd43dSSascha Wildner #endif /* MEM_H_MODULE */
427