xref: /aosp_15_r20/external/vulkan-validation-layers/layers/xxhash.c (revision b7893ccf7851cd6a48cc5a1e965257d8a5cdcc70)
1*b7893ccfSSadaf Ebrahimi /*
2*b7893ccfSSadaf Ebrahimi *  xxHash - Fast Hash algorithm
3*b7893ccfSSadaf Ebrahimi *  Copyright (C) 2012-2016, Yann Collet
4*b7893ccfSSadaf Ebrahimi *
5*b7893ccfSSadaf Ebrahimi *  BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php)
6*b7893ccfSSadaf Ebrahimi *
7*b7893ccfSSadaf Ebrahimi *  Redistribution and use in source and binary forms, with or without
8*b7893ccfSSadaf Ebrahimi *  modification, are permitted provided that the following conditions are
9*b7893ccfSSadaf Ebrahimi *  met:
10*b7893ccfSSadaf Ebrahimi *
11*b7893ccfSSadaf Ebrahimi *  * Redistributions of source code must retain the above copyright
12*b7893ccfSSadaf Ebrahimi *  notice, this list of conditions and the following disclaimer.
13*b7893ccfSSadaf Ebrahimi *  * Redistributions in binary form must reproduce the above
14*b7893ccfSSadaf Ebrahimi *  copyright notice, this list of conditions and the following disclaimer
15*b7893ccfSSadaf Ebrahimi *  in the documentation and/or other materials provided with the
16*b7893ccfSSadaf Ebrahimi *  distribution.
17*b7893ccfSSadaf Ebrahimi *
18*b7893ccfSSadaf Ebrahimi *  THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19*b7893ccfSSadaf Ebrahimi *  "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
20*b7893ccfSSadaf Ebrahimi *  LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
21*b7893ccfSSadaf Ebrahimi *  A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
22*b7893ccfSSadaf Ebrahimi *  OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
23*b7893ccfSSadaf Ebrahimi *  SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
24*b7893ccfSSadaf Ebrahimi *  LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25*b7893ccfSSadaf Ebrahimi *  DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26*b7893ccfSSadaf Ebrahimi *  THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27*b7893ccfSSadaf Ebrahimi *  (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
28*b7893ccfSSadaf Ebrahimi *  OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29*b7893ccfSSadaf Ebrahimi *
30*b7893ccfSSadaf Ebrahimi *  You can contact the author at :
31*b7893ccfSSadaf Ebrahimi *  - xxHash homepage: http://www.xxhash.com
32*b7893ccfSSadaf Ebrahimi *  - xxHash source repository : https://github.com/Cyan4973/xxHash
33*b7893ccfSSadaf Ebrahimi */
34*b7893ccfSSadaf Ebrahimi 
35*b7893ccfSSadaf Ebrahimi 
36*b7893ccfSSadaf Ebrahimi /* *************************************
37*b7893ccfSSadaf Ebrahimi *  Tuning parameters
38*b7893ccfSSadaf Ebrahimi ***************************************/
39*b7893ccfSSadaf Ebrahimi /*!XXH_FORCE_MEMORY_ACCESS :
40*b7893ccfSSadaf Ebrahimi  * By default, access to unaligned memory is controlled by `memcpy()`, which is safe and portable.
41*b7893ccfSSadaf Ebrahimi  * Unfortunately, on some target/compiler combinations, the generated assembly is sub-optimal.
42*b7893ccfSSadaf Ebrahimi  * The below switch allow to select different access method for improved performance.
43*b7893ccfSSadaf Ebrahimi  * Method 0 (default) : use `memcpy()`. Safe and portable.
44*b7893ccfSSadaf Ebrahimi  * Method 1 : `__packed` statement. It depends on compiler extension (ie, not portable).
45*b7893ccfSSadaf Ebrahimi  *            This method is safe if your compiler supports it, and *generally* as fast or faster than `memcpy`.
46*b7893ccfSSadaf Ebrahimi  * Method 2 : direct access. This method doesn't depend on compiler but violate C standard.
47*b7893ccfSSadaf Ebrahimi  *            It can generate buggy code on targets which do not support unaligned memory accesses.
48*b7893ccfSSadaf Ebrahimi  *            But in some circumstances, it's the only known way to get the most performance (ie GCC + ARMv6)
49*b7893ccfSSadaf Ebrahimi  * See http://stackoverflow.com/a/32095106/646947 for details.
50*b7893ccfSSadaf Ebrahimi  * Prefer these methods in priority order (0 > 1 > 2)
51*b7893ccfSSadaf Ebrahimi  */
52*b7893ccfSSadaf Ebrahimi #ifndef XXH_FORCE_MEMORY_ACCESS   /* can be defined externally, on command line for example */
53*b7893ccfSSadaf Ebrahimi #  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__) )
54*b7893ccfSSadaf Ebrahimi #    define XXH_FORCE_MEMORY_ACCESS 2
55*b7893ccfSSadaf Ebrahimi #  elif defined(__INTEL_COMPILER) || \
56*b7893ccfSSadaf Ebrahimi   (defined(__GNUC__) && ( defined(__ARM_ARCH_7__) || defined(__ARM_ARCH_7A__) || defined(__ARM_ARCH_7R__) || defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7S__) ))
57*b7893ccfSSadaf Ebrahimi #    define XXH_FORCE_MEMORY_ACCESS 1
58*b7893ccfSSadaf Ebrahimi #  endif
59*b7893ccfSSadaf Ebrahimi #endif
60*b7893ccfSSadaf Ebrahimi 
61*b7893ccfSSadaf Ebrahimi /*!XXH_ACCEPT_NULL_INPUT_POINTER :
62*b7893ccfSSadaf Ebrahimi  * If the input pointer is a null pointer, xxHash default behavior is to trigger a memory access error, since it is a bad pointer.
63*b7893ccfSSadaf Ebrahimi  * When this option is enabled, xxHash output for null input pointers will be the same as a null-length input.
64*b7893ccfSSadaf Ebrahimi  * By default, this option is disabled. To enable it, uncomment below define :
65*b7893ccfSSadaf Ebrahimi  */
66*b7893ccfSSadaf Ebrahimi /* #define XXH_ACCEPT_NULL_INPUT_POINTER 1 */
67*b7893ccfSSadaf Ebrahimi 
68*b7893ccfSSadaf Ebrahimi /*!XXH_FORCE_NATIVE_FORMAT :
69*b7893ccfSSadaf Ebrahimi  * By default, xxHash library provides endian-independent Hash values, based on little-endian convention.
70*b7893ccfSSadaf Ebrahimi  * Results are therefore identical for little-endian and big-endian CPU.
71*b7893ccfSSadaf Ebrahimi  * This comes at a performance cost for big-endian CPU, since some swapping is required to emulate little-endian format.
72*b7893ccfSSadaf Ebrahimi  * Should endian-independence be of no importance for your application, you may set the #define below to 1,
73*b7893ccfSSadaf Ebrahimi  * to improve speed for Big-endian CPU.
74*b7893ccfSSadaf Ebrahimi  * This option has no impact on Little_Endian CPU.
75*b7893ccfSSadaf Ebrahimi  */
76*b7893ccfSSadaf Ebrahimi #ifndef XXH_FORCE_NATIVE_FORMAT   /* can be defined externally */
77*b7893ccfSSadaf Ebrahimi #  define XXH_FORCE_NATIVE_FORMAT 0
78*b7893ccfSSadaf Ebrahimi #endif
79*b7893ccfSSadaf Ebrahimi 
80*b7893ccfSSadaf Ebrahimi /*!XXH_FORCE_ALIGN_CHECK :
81*b7893ccfSSadaf Ebrahimi  * This is a minor performance trick, only useful with lots of very small keys.
82*b7893ccfSSadaf Ebrahimi  * It means : check for aligned/unaligned input.
83*b7893ccfSSadaf Ebrahimi  * The check costs one initial branch per hash;
84*b7893ccfSSadaf Ebrahimi  * set it to 0 when the input is guaranteed to be aligned,
85*b7893ccfSSadaf Ebrahimi  * or when alignment doesn't matter for performance.
86*b7893ccfSSadaf Ebrahimi  */
87*b7893ccfSSadaf Ebrahimi #ifndef XXH_FORCE_ALIGN_CHECK /* can be defined externally */
88*b7893ccfSSadaf Ebrahimi #  if defined(__i386) || defined(_M_IX86) || defined(__x86_64__) || defined(_M_X64)
89*b7893ccfSSadaf Ebrahimi #    define XXH_FORCE_ALIGN_CHECK 0
90*b7893ccfSSadaf Ebrahimi #  else
91*b7893ccfSSadaf Ebrahimi #    define XXH_FORCE_ALIGN_CHECK 1
92*b7893ccfSSadaf Ebrahimi #  endif
93*b7893ccfSSadaf Ebrahimi #endif
94*b7893ccfSSadaf Ebrahimi 
95*b7893ccfSSadaf Ebrahimi 
96*b7893ccfSSadaf Ebrahimi /* *************************************
97*b7893ccfSSadaf Ebrahimi *  Includes & Memory related functions
98*b7893ccfSSadaf Ebrahimi ***************************************/
99*b7893ccfSSadaf Ebrahimi /*! Modify the local functions below should you wish to use some other memory routines
100*b7893ccfSSadaf Ebrahimi *   for malloc(), free() */
101*b7893ccfSSadaf Ebrahimi #include <stdlib.h>
XXH_malloc(size_t s)102*b7893ccfSSadaf Ebrahimi static void* XXH_malloc(size_t s) { return malloc(s); }
XXH_free(void * p)103*b7893ccfSSadaf Ebrahimi static void  XXH_free  (void* p)  { free(p); }
104*b7893ccfSSadaf Ebrahimi /*! and for memcpy() */
105*b7893ccfSSadaf Ebrahimi #include <string.h>
XXH_memcpy(void * dest,const void * src,size_t size)106*b7893ccfSSadaf Ebrahimi static void* XXH_memcpy(void* dest, const void* src, size_t size) { return memcpy(dest,src,size); }
107*b7893ccfSSadaf Ebrahimi 
108*b7893ccfSSadaf Ebrahimi #define XXH_STATIC_LINKING_ONLY
109*b7893ccfSSadaf Ebrahimi #include "xxhash.h"
110*b7893ccfSSadaf Ebrahimi 
111*b7893ccfSSadaf Ebrahimi 
112*b7893ccfSSadaf Ebrahimi /* *************************************
113*b7893ccfSSadaf Ebrahimi *  Compiler Specific Options
114*b7893ccfSSadaf Ebrahimi ***************************************/
115*b7893ccfSSadaf Ebrahimi #ifdef _MSC_VER    /* Visual Studio */
116*b7893ccfSSadaf Ebrahimi #  pragma warning(disable : 4127)      /* disable: C4127: conditional expression is constant */
117*b7893ccfSSadaf Ebrahimi #  define FORCE_INLINE static __forceinline
118*b7893ccfSSadaf Ebrahimi #else
119*b7893ccfSSadaf Ebrahimi #  if defined (__cplusplus) || defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L   /* C99 */
120*b7893ccfSSadaf Ebrahimi #    ifdef __GNUC__
121*b7893ccfSSadaf Ebrahimi #      define FORCE_INLINE static inline __attribute__((always_inline))
122*b7893ccfSSadaf Ebrahimi #    else
123*b7893ccfSSadaf Ebrahimi #      define FORCE_INLINE static inline
124*b7893ccfSSadaf Ebrahimi #    endif
125*b7893ccfSSadaf Ebrahimi #  else
126*b7893ccfSSadaf Ebrahimi #    define FORCE_INLINE static
127*b7893ccfSSadaf Ebrahimi #  endif /* __STDC_VERSION__ */
128*b7893ccfSSadaf Ebrahimi #endif
129*b7893ccfSSadaf Ebrahimi 
130*b7893ccfSSadaf Ebrahimi 
131*b7893ccfSSadaf Ebrahimi /* *************************************
132*b7893ccfSSadaf Ebrahimi *  Basic Types
133*b7893ccfSSadaf Ebrahimi ***************************************/
134*b7893ccfSSadaf Ebrahimi #ifndef MEM_MODULE
135*b7893ccfSSadaf Ebrahimi # if !defined (__VMS) && (defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */) )
136*b7893ccfSSadaf Ebrahimi #   include <stdint.h>
137*b7893ccfSSadaf Ebrahimi     typedef uint8_t  BYTE;
138*b7893ccfSSadaf Ebrahimi     typedef uint16_t U16;
139*b7893ccfSSadaf Ebrahimi     typedef uint32_t U32;
140*b7893ccfSSadaf Ebrahimi # else
141*b7893ccfSSadaf Ebrahimi     typedef unsigned char      BYTE;
142*b7893ccfSSadaf Ebrahimi     typedef unsigned short     U16;
143*b7893ccfSSadaf Ebrahimi     typedef unsigned int       U32;
144*b7893ccfSSadaf Ebrahimi # endif
145*b7893ccfSSadaf Ebrahimi #endif
146*b7893ccfSSadaf Ebrahimi 
147*b7893ccfSSadaf Ebrahimi #if (defined(XXH_FORCE_MEMORY_ACCESS) && (XXH_FORCE_MEMORY_ACCESS==2))
148*b7893ccfSSadaf Ebrahimi 
149*b7893ccfSSadaf Ebrahimi /* Force direct memory access. Only works on CPU which support unaligned memory access in hardware */
XXH_read32(const void * memPtr)150*b7893ccfSSadaf Ebrahimi static U32 XXH_read32(const void* memPtr) { return *(const U32*) memPtr; }
151*b7893ccfSSadaf Ebrahimi 
152*b7893ccfSSadaf Ebrahimi #elif (defined(XXH_FORCE_MEMORY_ACCESS) && (XXH_FORCE_MEMORY_ACCESS==1))
153*b7893ccfSSadaf Ebrahimi 
154*b7893ccfSSadaf Ebrahimi /* __pack instructions are safer, but compiler specific, hence potentially problematic for some compilers */
155*b7893ccfSSadaf Ebrahimi /* currently only defined for gcc and icc */
156*b7893ccfSSadaf Ebrahimi typedef union { U32 u32; } __attribute__((packed)) unalign;
XXH_read32(const void * ptr)157*b7893ccfSSadaf Ebrahimi static U32 XXH_read32(const void* ptr) { return ((const unalign*)ptr)->u32; }
158*b7893ccfSSadaf Ebrahimi 
159*b7893ccfSSadaf Ebrahimi #else
160*b7893ccfSSadaf Ebrahimi 
161*b7893ccfSSadaf Ebrahimi /* portable and safe solution. Generally efficient.
162*b7893ccfSSadaf Ebrahimi  * see : http://stackoverflow.com/a/32095106/646947
163*b7893ccfSSadaf Ebrahimi  */
XXH_read32(const void * memPtr)164*b7893ccfSSadaf Ebrahimi static U32 XXH_read32(const void* memPtr)
165*b7893ccfSSadaf Ebrahimi {
166*b7893ccfSSadaf Ebrahimi     U32 val;
167*b7893ccfSSadaf Ebrahimi     memcpy(&val, memPtr, sizeof(val));
168*b7893ccfSSadaf Ebrahimi     return val;
169*b7893ccfSSadaf Ebrahimi }
170*b7893ccfSSadaf Ebrahimi 
171*b7893ccfSSadaf Ebrahimi #endif   /* XXH_FORCE_DIRECT_MEMORY_ACCESS */
172*b7893ccfSSadaf Ebrahimi 
173*b7893ccfSSadaf Ebrahimi 
174*b7893ccfSSadaf Ebrahimi /* ****************************************
175*b7893ccfSSadaf Ebrahimi *  Compiler-specific Functions and Macros
176*b7893ccfSSadaf Ebrahimi ******************************************/
177*b7893ccfSSadaf Ebrahimi #define XXH_GCC_VERSION (__GNUC__ * 100 + __GNUC_MINOR__)
178*b7893ccfSSadaf Ebrahimi 
179*b7893ccfSSadaf Ebrahimi /* Note : although _rotl exists for minGW (GCC under windows), performance seems poor */
180*b7893ccfSSadaf Ebrahimi #if defined(_MSC_VER)
181*b7893ccfSSadaf Ebrahimi #  define XXH_rotl32(x,r) _rotl(x,r)
182*b7893ccfSSadaf Ebrahimi #  define XXH_rotl64(x,r) _rotl64(x,r)
183*b7893ccfSSadaf Ebrahimi #else
184*b7893ccfSSadaf Ebrahimi #  define XXH_rotl32(x,r) ((x << r) | (x >> (32 - r)))
185*b7893ccfSSadaf Ebrahimi #  define XXH_rotl64(x,r) ((x << r) | (x >> (64 - r)))
186*b7893ccfSSadaf Ebrahimi #endif
187*b7893ccfSSadaf Ebrahimi 
188*b7893ccfSSadaf Ebrahimi #if defined(_MSC_VER)     /* Visual Studio */
189*b7893ccfSSadaf Ebrahimi #  define XXH_swap32 _byteswap_ulong
190*b7893ccfSSadaf Ebrahimi #elif XXH_GCC_VERSION >= 403
191*b7893ccfSSadaf Ebrahimi #  define XXH_swap32 __builtin_bswap32
192*b7893ccfSSadaf Ebrahimi #else
XXH_swap32(U32 x)193*b7893ccfSSadaf Ebrahimi static U32 XXH_swap32 (U32 x)
194*b7893ccfSSadaf Ebrahimi {
195*b7893ccfSSadaf Ebrahimi     return  ((x << 24) & 0xff000000 ) |
196*b7893ccfSSadaf Ebrahimi             ((x <<  8) & 0x00ff0000 ) |
197*b7893ccfSSadaf Ebrahimi             ((x >>  8) & 0x0000ff00 ) |
198*b7893ccfSSadaf Ebrahimi             ((x >> 24) & 0x000000ff );
199*b7893ccfSSadaf Ebrahimi }
200*b7893ccfSSadaf Ebrahimi #endif
201*b7893ccfSSadaf Ebrahimi 
202*b7893ccfSSadaf Ebrahimi 
203*b7893ccfSSadaf Ebrahimi /* *************************************
204*b7893ccfSSadaf Ebrahimi *  Architecture Macros
205*b7893ccfSSadaf Ebrahimi ***************************************/
206*b7893ccfSSadaf Ebrahimi typedef enum { XXH_bigEndian=0, XXH_littleEndian=1 } XXH_endianess;
207*b7893ccfSSadaf Ebrahimi 
208*b7893ccfSSadaf Ebrahimi /* XXH_CPU_LITTLE_ENDIAN can be defined externally, for example on the compiler command line */
209*b7893ccfSSadaf Ebrahimi #ifndef XXH_CPU_LITTLE_ENDIAN
210*b7893ccfSSadaf Ebrahimi     static const int g_one = 1;
211*b7893ccfSSadaf Ebrahimi #   define XXH_CPU_LITTLE_ENDIAN   (*(const char*)(&g_one))
212*b7893ccfSSadaf Ebrahimi #endif
213*b7893ccfSSadaf Ebrahimi 
214*b7893ccfSSadaf Ebrahimi 
215*b7893ccfSSadaf Ebrahimi /* ***************************
216*b7893ccfSSadaf Ebrahimi *  Memory reads
217*b7893ccfSSadaf Ebrahimi *****************************/
218*b7893ccfSSadaf Ebrahimi typedef enum { XXH_aligned, XXH_unaligned } XXH_alignment;
219*b7893ccfSSadaf Ebrahimi 
XXH_readLE32_align(const void * ptr,XXH_endianess endian,XXH_alignment align)220*b7893ccfSSadaf Ebrahimi FORCE_INLINE U32 XXH_readLE32_align(const void* ptr, XXH_endianess endian, XXH_alignment align)
221*b7893ccfSSadaf Ebrahimi {
222*b7893ccfSSadaf Ebrahimi     if (align==XXH_unaligned)
223*b7893ccfSSadaf Ebrahimi         return endian==XXH_littleEndian ? XXH_read32(ptr) : XXH_swap32(XXH_read32(ptr));
224*b7893ccfSSadaf Ebrahimi     else
225*b7893ccfSSadaf Ebrahimi         return endian==XXH_littleEndian ? *(const U32*)ptr : XXH_swap32(*(const U32*)ptr);
226*b7893ccfSSadaf Ebrahimi }
227*b7893ccfSSadaf Ebrahimi 
XXH_readLE32(const void * ptr,XXH_endianess endian)228*b7893ccfSSadaf Ebrahimi FORCE_INLINE U32 XXH_readLE32(const void* ptr, XXH_endianess endian)
229*b7893ccfSSadaf Ebrahimi {
230*b7893ccfSSadaf Ebrahimi     return XXH_readLE32_align(ptr, endian, XXH_unaligned);
231*b7893ccfSSadaf Ebrahimi }
232*b7893ccfSSadaf Ebrahimi 
XXH_readBE32(const void * ptr)233*b7893ccfSSadaf Ebrahimi static U32 XXH_readBE32(const void* ptr)
234*b7893ccfSSadaf Ebrahimi {
235*b7893ccfSSadaf Ebrahimi     return XXH_CPU_LITTLE_ENDIAN ? XXH_swap32(XXH_read32(ptr)) : XXH_read32(ptr);
236*b7893ccfSSadaf Ebrahimi }
237*b7893ccfSSadaf Ebrahimi 
238*b7893ccfSSadaf Ebrahimi 
239*b7893ccfSSadaf Ebrahimi /* *************************************
240*b7893ccfSSadaf Ebrahimi *  Macros
241*b7893ccfSSadaf Ebrahimi ***************************************/
242*b7893ccfSSadaf Ebrahimi #define XXH_STATIC_ASSERT(c)   { enum { XXH_static_assert = 1/(int)(!!(c)) }; }    /* use only *after* variable declarations */
XXH_versionNumber(void)243*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API unsigned XXH_versionNumber (void) { return XXH_VERSION_NUMBER; }
244*b7893ccfSSadaf Ebrahimi 
245*b7893ccfSSadaf Ebrahimi 
246*b7893ccfSSadaf Ebrahimi /* *******************************************************************
247*b7893ccfSSadaf Ebrahimi *  32-bits hash functions
248*b7893ccfSSadaf Ebrahimi *********************************************************************/
249*b7893ccfSSadaf Ebrahimi static const U32 PRIME32_1 = 2654435761U;
250*b7893ccfSSadaf Ebrahimi static const U32 PRIME32_2 = 2246822519U;
251*b7893ccfSSadaf Ebrahimi static const U32 PRIME32_3 = 3266489917U;
252*b7893ccfSSadaf Ebrahimi static const U32 PRIME32_4 =  668265263U;
253*b7893ccfSSadaf Ebrahimi static const U32 PRIME32_5 =  374761393U;
254*b7893ccfSSadaf Ebrahimi 
XXH32_round(U32 seed,U32 input)255*b7893ccfSSadaf Ebrahimi static U32 XXH32_round(U32 seed, U32 input)
256*b7893ccfSSadaf Ebrahimi {
257*b7893ccfSSadaf Ebrahimi     seed += input * PRIME32_2;
258*b7893ccfSSadaf Ebrahimi     seed  = XXH_rotl32(seed, 13);
259*b7893ccfSSadaf Ebrahimi     seed *= PRIME32_1;
260*b7893ccfSSadaf Ebrahimi     return seed;
261*b7893ccfSSadaf Ebrahimi }
262*b7893ccfSSadaf Ebrahimi 
XXH32_endian_align(const void * input,size_t len,U32 seed,XXH_endianess endian,XXH_alignment align)263*b7893ccfSSadaf Ebrahimi FORCE_INLINE U32 XXH32_endian_align(const void* input, size_t len, U32 seed, XXH_endianess endian, XXH_alignment align)
264*b7893ccfSSadaf Ebrahimi {
265*b7893ccfSSadaf Ebrahimi     const BYTE* p = (const BYTE*)input;
266*b7893ccfSSadaf Ebrahimi     const BYTE* bEnd = p + len;
267*b7893ccfSSadaf Ebrahimi     U32 h32;
268*b7893ccfSSadaf Ebrahimi #define XXH_get32bits(p) XXH_readLE32_align(p, endian, align)
269*b7893ccfSSadaf Ebrahimi 
270*b7893ccfSSadaf Ebrahimi #ifdef XXH_ACCEPT_NULL_INPUT_POINTER
271*b7893ccfSSadaf Ebrahimi     if (p==NULL) {
272*b7893ccfSSadaf Ebrahimi         len=0;
273*b7893ccfSSadaf Ebrahimi         bEnd=p=(const BYTE*)(size_t)16;
274*b7893ccfSSadaf Ebrahimi     }
275*b7893ccfSSadaf Ebrahimi #endif
276*b7893ccfSSadaf Ebrahimi 
277*b7893ccfSSadaf Ebrahimi     if (len>=16) {
278*b7893ccfSSadaf Ebrahimi         const BYTE* const limit = bEnd - 16;
279*b7893ccfSSadaf Ebrahimi         U32 v1 = seed + PRIME32_1 + PRIME32_2;
280*b7893ccfSSadaf Ebrahimi         U32 v2 = seed + PRIME32_2;
281*b7893ccfSSadaf Ebrahimi         U32 v3 = seed + 0;
282*b7893ccfSSadaf Ebrahimi         U32 v4 = seed - PRIME32_1;
283*b7893ccfSSadaf Ebrahimi 
284*b7893ccfSSadaf Ebrahimi         do {
285*b7893ccfSSadaf Ebrahimi             v1 = XXH32_round(v1, XXH_get32bits(p)); p+=4;
286*b7893ccfSSadaf Ebrahimi             v2 = XXH32_round(v2, XXH_get32bits(p)); p+=4;
287*b7893ccfSSadaf Ebrahimi             v3 = XXH32_round(v3, XXH_get32bits(p)); p+=4;
288*b7893ccfSSadaf Ebrahimi             v4 = XXH32_round(v4, XXH_get32bits(p)); p+=4;
289*b7893ccfSSadaf Ebrahimi         } while (p<=limit);
290*b7893ccfSSadaf Ebrahimi 
291*b7893ccfSSadaf Ebrahimi         h32 = XXH_rotl32(v1, 1) + XXH_rotl32(v2, 7) + XXH_rotl32(v3, 12) + XXH_rotl32(v4, 18);
292*b7893ccfSSadaf Ebrahimi     } else {
293*b7893ccfSSadaf Ebrahimi         h32  = seed + PRIME32_5;
294*b7893ccfSSadaf Ebrahimi     }
295*b7893ccfSSadaf Ebrahimi 
296*b7893ccfSSadaf Ebrahimi     h32 += (U32) len;
297*b7893ccfSSadaf Ebrahimi 
298*b7893ccfSSadaf Ebrahimi     while (p+4<=bEnd) {
299*b7893ccfSSadaf Ebrahimi         h32 += XXH_get32bits(p) * PRIME32_3;
300*b7893ccfSSadaf Ebrahimi         h32  = XXH_rotl32(h32, 17) * PRIME32_4 ;
301*b7893ccfSSadaf Ebrahimi         p+=4;
302*b7893ccfSSadaf Ebrahimi     }
303*b7893ccfSSadaf Ebrahimi 
304*b7893ccfSSadaf Ebrahimi     while (p<bEnd) {
305*b7893ccfSSadaf Ebrahimi         h32 += (*p) * PRIME32_5;
306*b7893ccfSSadaf Ebrahimi         h32 = XXH_rotl32(h32, 11) * PRIME32_1 ;
307*b7893ccfSSadaf Ebrahimi         p++;
308*b7893ccfSSadaf Ebrahimi     }
309*b7893ccfSSadaf Ebrahimi 
310*b7893ccfSSadaf Ebrahimi     h32 ^= h32 >> 15;
311*b7893ccfSSadaf Ebrahimi     h32 *= PRIME32_2;
312*b7893ccfSSadaf Ebrahimi     h32 ^= h32 >> 13;
313*b7893ccfSSadaf Ebrahimi     h32 *= PRIME32_3;
314*b7893ccfSSadaf Ebrahimi     h32 ^= h32 >> 16;
315*b7893ccfSSadaf Ebrahimi 
316*b7893ccfSSadaf Ebrahimi     return h32;
317*b7893ccfSSadaf Ebrahimi }
318*b7893ccfSSadaf Ebrahimi 
319*b7893ccfSSadaf Ebrahimi 
XXH32(const void * input,size_t len,unsigned int seed)320*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API unsigned int XXH32 (const void* input, size_t len, unsigned int seed)
321*b7893ccfSSadaf Ebrahimi {
322*b7893ccfSSadaf Ebrahimi #if 0
323*b7893ccfSSadaf Ebrahimi     /* Simple version, good for code maintenance, but unfortunately slow for small inputs */
324*b7893ccfSSadaf Ebrahimi     XXH32_state_t state;
325*b7893ccfSSadaf Ebrahimi     XXH32_reset(&state, seed);
326*b7893ccfSSadaf Ebrahimi     XXH32_update(&state, input, len);
327*b7893ccfSSadaf Ebrahimi     return XXH32_digest(&state);
328*b7893ccfSSadaf Ebrahimi #else
329*b7893ccfSSadaf Ebrahimi     XXH_endianess endian_detected = (XXH_endianess)XXH_CPU_LITTLE_ENDIAN;
330*b7893ccfSSadaf Ebrahimi 
331*b7893ccfSSadaf Ebrahimi     if (XXH_FORCE_ALIGN_CHECK) {
332*b7893ccfSSadaf Ebrahimi         if ((((size_t)input) & 3) == 0) {   /* Input is 4-bytes aligned, leverage the speed benefit */
333*b7893ccfSSadaf Ebrahimi             if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
334*b7893ccfSSadaf Ebrahimi                 return XXH32_endian_align(input, len, seed, XXH_littleEndian, XXH_aligned);
335*b7893ccfSSadaf Ebrahimi             else
336*b7893ccfSSadaf Ebrahimi                 return XXH32_endian_align(input, len, seed, XXH_bigEndian, XXH_aligned);
337*b7893ccfSSadaf Ebrahimi     }   }
338*b7893ccfSSadaf Ebrahimi 
339*b7893ccfSSadaf Ebrahimi     if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
340*b7893ccfSSadaf Ebrahimi         return XXH32_endian_align(input, len, seed, XXH_littleEndian, XXH_unaligned);
341*b7893ccfSSadaf Ebrahimi     else
342*b7893ccfSSadaf Ebrahimi         return XXH32_endian_align(input, len, seed, XXH_bigEndian, XXH_unaligned);
343*b7893ccfSSadaf Ebrahimi #endif
344*b7893ccfSSadaf Ebrahimi }
345*b7893ccfSSadaf Ebrahimi 
346*b7893ccfSSadaf Ebrahimi 
347*b7893ccfSSadaf Ebrahimi 
348*b7893ccfSSadaf Ebrahimi /*======   Hash streaming   ======*/
349*b7893ccfSSadaf Ebrahimi 
XXH32_createState(void)350*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH32_state_t* XXH32_createState(void)
351*b7893ccfSSadaf Ebrahimi {
352*b7893ccfSSadaf Ebrahimi     return (XXH32_state_t*)XXH_malloc(sizeof(XXH32_state_t));
353*b7893ccfSSadaf Ebrahimi }
XXH32_freeState(XXH32_state_t * statePtr)354*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH_errorcode XXH32_freeState(XXH32_state_t* statePtr)
355*b7893ccfSSadaf Ebrahimi {
356*b7893ccfSSadaf Ebrahimi     XXH_free(statePtr);
357*b7893ccfSSadaf Ebrahimi     return XXH_OK;
358*b7893ccfSSadaf Ebrahimi }
359*b7893ccfSSadaf Ebrahimi 
XXH32_copyState(XXH32_state_t * dstState,const XXH32_state_t * srcState)360*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API void XXH32_copyState(XXH32_state_t* dstState, const XXH32_state_t* srcState)
361*b7893ccfSSadaf Ebrahimi {
362*b7893ccfSSadaf Ebrahimi     memcpy(dstState, srcState, sizeof(*dstState));
363*b7893ccfSSadaf Ebrahimi }
364*b7893ccfSSadaf Ebrahimi 
XXH32_reset(XXH32_state_t * statePtr,unsigned int seed)365*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH_errorcode XXH32_reset(XXH32_state_t* statePtr, unsigned int seed)
366*b7893ccfSSadaf Ebrahimi {
367*b7893ccfSSadaf Ebrahimi     XXH32_state_t state;   /* using a local state to memcpy() in order to avoid strict-aliasing warnings */
368*b7893ccfSSadaf Ebrahimi     memset(&state, 0, sizeof(state)-4);   /* do not write into reserved, for future removal */
369*b7893ccfSSadaf Ebrahimi     state.v1 = seed + PRIME32_1 + PRIME32_2;
370*b7893ccfSSadaf Ebrahimi     state.v2 = seed + PRIME32_2;
371*b7893ccfSSadaf Ebrahimi     state.v3 = seed + 0;
372*b7893ccfSSadaf Ebrahimi     state.v4 = seed - PRIME32_1;
373*b7893ccfSSadaf Ebrahimi     memcpy(statePtr, &state, sizeof(state));
374*b7893ccfSSadaf Ebrahimi     return XXH_OK;
375*b7893ccfSSadaf Ebrahimi }
376*b7893ccfSSadaf Ebrahimi 
377*b7893ccfSSadaf Ebrahimi 
XXH32_update_endian(XXH32_state_t * state,const void * input,size_t len,XXH_endianess endian)378*b7893ccfSSadaf Ebrahimi FORCE_INLINE XXH_errorcode XXH32_update_endian (XXH32_state_t* state, const void* input, size_t len, XXH_endianess endian)
379*b7893ccfSSadaf Ebrahimi {
380*b7893ccfSSadaf Ebrahimi     const BYTE* p = (const BYTE*)input;
381*b7893ccfSSadaf Ebrahimi     const BYTE* const bEnd = p + len;
382*b7893ccfSSadaf Ebrahimi 
383*b7893ccfSSadaf Ebrahimi #ifdef XXH_ACCEPT_NULL_INPUT_POINTER
384*b7893ccfSSadaf Ebrahimi     if (input==NULL) return XXH_ERROR;
385*b7893ccfSSadaf Ebrahimi #endif
386*b7893ccfSSadaf Ebrahimi 
387*b7893ccfSSadaf Ebrahimi     state->total_len_32 += (unsigned)len;
388*b7893ccfSSadaf Ebrahimi     state->large_len |= (len>=16) | (state->total_len_32>=16);
389*b7893ccfSSadaf Ebrahimi 
390*b7893ccfSSadaf Ebrahimi     if (state->memsize + len < 16)  {   /* fill in tmp buffer */
391*b7893ccfSSadaf Ebrahimi         XXH_memcpy((BYTE*)(state->mem32) + state->memsize, input, len);
392*b7893ccfSSadaf Ebrahimi         state->memsize += (unsigned)len;
393*b7893ccfSSadaf Ebrahimi         return XXH_OK;
394*b7893ccfSSadaf Ebrahimi     }
395*b7893ccfSSadaf Ebrahimi 
396*b7893ccfSSadaf Ebrahimi     if (state->memsize) {   /* some data left from previous update */
397*b7893ccfSSadaf Ebrahimi         XXH_memcpy((BYTE*)(state->mem32) + state->memsize, input, 16-state->memsize);
398*b7893ccfSSadaf Ebrahimi         {   const U32* p32 = state->mem32;
399*b7893ccfSSadaf Ebrahimi             state->v1 = XXH32_round(state->v1, XXH_readLE32(p32, endian)); p32++;
400*b7893ccfSSadaf Ebrahimi             state->v2 = XXH32_round(state->v2, XXH_readLE32(p32, endian)); p32++;
401*b7893ccfSSadaf Ebrahimi             state->v3 = XXH32_round(state->v3, XXH_readLE32(p32, endian)); p32++;
402*b7893ccfSSadaf Ebrahimi             state->v4 = XXH32_round(state->v4, XXH_readLE32(p32, endian));
403*b7893ccfSSadaf Ebrahimi         }
404*b7893ccfSSadaf Ebrahimi         p += 16-state->memsize;
405*b7893ccfSSadaf Ebrahimi         state->memsize = 0;
406*b7893ccfSSadaf Ebrahimi     }
407*b7893ccfSSadaf Ebrahimi 
408*b7893ccfSSadaf Ebrahimi     if (p <= bEnd-16) {
409*b7893ccfSSadaf Ebrahimi         const BYTE* const limit = bEnd - 16;
410*b7893ccfSSadaf Ebrahimi         U32 v1 = state->v1;
411*b7893ccfSSadaf Ebrahimi         U32 v2 = state->v2;
412*b7893ccfSSadaf Ebrahimi         U32 v3 = state->v3;
413*b7893ccfSSadaf Ebrahimi         U32 v4 = state->v4;
414*b7893ccfSSadaf Ebrahimi 
415*b7893ccfSSadaf Ebrahimi         do {
416*b7893ccfSSadaf Ebrahimi             v1 = XXH32_round(v1, XXH_readLE32(p, endian)); p+=4;
417*b7893ccfSSadaf Ebrahimi             v2 = XXH32_round(v2, XXH_readLE32(p, endian)); p+=4;
418*b7893ccfSSadaf Ebrahimi             v3 = XXH32_round(v3, XXH_readLE32(p, endian)); p+=4;
419*b7893ccfSSadaf Ebrahimi             v4 = XXH32_round(v4, XXH_readLE32(p, endian)); p+=4;
420*b7893ccfSSadaf Ebrahimi         } while (p<=limit);
421*b7893ccfSSadaf Ebrahimi 
422*b7893ccfSSadaf Ebrahimi         state->v1 = v1;
423*b7893ccfSSadaf Ebrahimi         state->v2 = v2;
424*b7893ccfSSadaf Ebrahimi         state->v3 = v3;
425*b7893ccfSSadaf Ebrahimi         state->v4 = v4;
426*b7893ccfSSadaf Ebrahimi     }
427*b7893ccfSSadaf Ebrahimi 
428*b7893ccfSSadaf Ebrahimi     if (p < bEnd) {
429*b7893ccfSSadaf Ebrahimi         XXH_memcpy(state->mem32, p, (size_t)(bEnd-p));
430*b7893ccfSSadaf Ebrahimi         state->memsize = (unsigned)(bEnd-p);
431*b7893ccfSSadaf Ebrahimi     }
432*b7893ccfSSadaf Ebrahimi 
433*b7893ccfSSadaf Ebrahimi     return XXH_OK;
434*b7893ccfSSadaf Ebrahimi }
435*b7893ccfSSadaf Ebrahimi 
XXH32_update(XXH32_state_t * state_in,const void * input,size_t len)436*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH_errorcode XXH32_update (XXH32_state_t* state_in, const void* input, size_t len)
437*b7893ccfSSadaf Ebrahimi {
438*b7893ccfSSadaf Ebrahimi     XXH_endianess endian_detected = (XXH_endianess)XXH_CPU_LITTLE_ENDIAN;
439*b7893ccfSSadaf Ebrahimi 
440*b7893ccfSSadaf Ebrahimi     if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
441*b7893ccfSSadaf Ebrahimi         return XXH32_update_endian(state_in, input, len, XXH_littleEndian);
442*b7893ccfSSadaf Ebrahimi     else
443*b7893ccfSSadaf Ebrahimi         return XXH32_update_endian(state_in, input, len, XXH_bigEndian);
444*b7893ccfSSadaf Ebrahimi }
445*b7893ccfSSadaf Ebrahimi 
446*b7893ccfSSadaf Ebrahimi 
447*b7893ccfSSadaf Ebrahimi 
XXH32_digest_endian(const XXH32_state_t * state,XXH_endianess endian)448*b7893ccfSSadaf Ebrahimi FORCE_INLINE U32 XXH32_digest_endian (const XXH32_state_t* state, XXH_endianess endian)
449*b7893ccfSSadaf Ebrahimi {
450*b7893ccfSSadaf Ebrahimi     const BYTE * p = (const BYTE*)state->mem32;
451*b7893ccfSSadaf Ebrahimi     const BYTE* const bEnd = (const BYTE*)(state->mem32) + state->memsize;
452*b7893ccfSSadaf Ebrahimi     U32 h32;
453*b7893ccfSSadaf Ebrahimi 
454*b7893ccfSSadaf Ebrahimi     if (state->large_len) {
455*b7893ccfSSadaf Ebrahimi         h32 = XXH_rotl32(state->v1, 1) + XXH_rotl32(state->v2, 7) + XXH_rotl32(state->v3, 12) + XXH_rotl32(state->v4, 18);
456*b7893ccfSSadaf Ebrahimi     } else {
457*b7893ccfSSadaf Ebrahimi         h32 = state->v3 /* == seed */ + PRIME32_5;
458*b7893ccfSSadaf Ebrahimi     }
459*b7893ccfSSadaf Ebrahimi 
460*b7893ccfSSadaf Ebrahimi     h32 += state->total_len_32;
461*b7893ccfSSadaf Ebrahimi 
462*b7893ccfSSadaf Ebrahimi     while (p+4<=bEnd) {
463*b7893ccfSSadaf Ebrahimi         h32 += XXH_readLE32(p, endian) * PRIME32_3;
464*b7893ccfSSadaf Ebrahimi         h32  = XXH_rotl32(h32, 17) * PRIME32_4;
465*b7893ccfSSadaf Ebrahimi         p+=4;
466*b7893ccfSSadaf Ebrahimi     }
467*b7893ccfSSadaf Ebrahimi 
468*b7893ccfSSadaf Ebrahimi     while (p<bEnd) {
469*b7893ccfSSadaf Ebrahimi         h32 += (*p) * PRIME32_5;
470*b7893ccfSSadaf Ebrahimi         h32  = XXH_rotl32(h32, 11) * PRIME32_1;
471*b7893ccfSSadaf Ebrahimi         p++;
472*b7893ccfSSadaf Ebrahimi     }
473*b7893ccfSSadaf Ebrahimi 
474*b7893ccfSSadaf Ebrahimi     h32 ^= h32 >> 15;
475*b7893ccfSSadaf Ebrahimi     h32 *= PRIME32_2;
476*b7893ccfSSadaf Ebrahimi     h32 ^= h32 >> 13;
477*b7893ccfSSadaf Ebrahimi     h32 *= PRIME32_3;
478*b7893ccfSSadaf Ebrahimi     h32 ^= h32 >> 16;
479*b7893ccfSSadaf Ebrahimi 
480*b7893ccfSSadaf Ebrahimi     return h32;
481*b7893ccfSSadaf Ebrahimi }
482*b7893ccfSSadaf Ebrahimi 
483*b7893ccfSSadaf Ebrahimi 
XXH32_digest(const XXH32_state_t * state_in)484*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API unsigned int XXH32_digest (const XXH32_state_t* state_in)
485*b7893ccfSSadaf Ebrahimi {
486*b7893ccfSSadaf Ebrahimi     XXH_endianess endian_detected = (XXH_endianess)XXH_CPU_LITTLE_ENDIAN;
487*b7893ccfSSadaf Ebrahimi 
488*b7893ccfSSadaf Ebrahimi     if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
489*b7893ccfSSadaf Ebrahimi         return XXH32_digest_endian(state_in, XXH_littleEndian);
490*b7893ccfSSadaf Ebrahimi     else
491*b7893ccfSSadaf Ebrahimi         return XXH32_digest_endian(state_in, XXH_bigEndian);
492*b7893ccfSSadaf Ebrahimi }
493*b7893ccfSSadaf Ebrahimi 
494*b7893ccfSSadaf Ebrahimi 
495*b7893ccfSSadaf Ebrahimi /*======   Canonical representation   ======*/
496*b7893ccfSSadaf Ebrahimi 
497*b7893ccfSSadaf Ebrahimi /*! Default XXH result types are basic unsigned 32 and 64 bits.
498*b7893ccfSSadaf Ebrahimi *   The canonical representation follows human-readable write convention, aka big-endian (large digits first).
499*b7893ccfSSadaf Ebrahimi *   These functions allow transformation of hash result into and from its canonical format.
500*b7893ccfSSadaf Ebrahimi *   This way, hash values can be written into a file or buffer, and remain comparable across different systems and programs.
501*b7893ccfSSadaf Ebrahimi */
502*b7893ccfSSadaf Ebrahimi 
XXH32_canonicalFromHash(XXH32_canonical_t * dst,XXH32_hash_t hash)503*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API void XXH32_canonicalFromHash(XXH32_canonical_t* dst, XXH32_hash_t hash)
504*b7893ccfSSadaf Ebrahimi {
505*b7893ccfSSadaf Ebrahimi     XXH_STATIC_ASSERT(sizeof(XXH32_canonical_t) == sizeof(XXH32_hash_t));
506*b7893ccfSSadaf Ebrahimi     if (XXH_CPU_LITTLE_ENDIAN) hash = XXH_swap32(hash);
507*b7893ccfSSadaf Ebrahimi     memcpy(dst, &hash, sizeof(*dst));
508*b7893ccfSSadaf Ebrahimi }
509*b7893ccfSSadaf Ebrahimi 
XXH32_hashFromCanonical(const XXH32_canonical_t * src)510*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH32_hash_t XXH32_hashFromCanonical(const XXH32_canonical_t* src)
511*b7893ccfSSadaf Ebrahimi {
512*b7893ccfSSadaf Ebrahimi     return XXH_readBE32(src);
513*b7893ccfSSadaf Ebrahimi }
514*b7893ccfSSadaf Ebrahimi 
515*b7893ccfSSadaf Ebrahimi 
516*b7893ccfSSadaf Ebrahimi #ifndef XXH_NO_LONG_LONG
517*b7893ccfSSadaf Ebrahimi 
518*b7893ccfSSadaf Ebrahimi /* *******************************************************************
519*b7893ccfSSadaf Ebrahimi *  64-bits hash functions
520*b7893ccfSSadaf Ebrahimi *********************************************************************/
521*b7893ccfSSadaf Ebrahimi 
522*b7893ccfSSadaf Ebrahimi /*======   Memory access   ======*/
523*b7893ccfSSadaf Ebrahimi 
524*b7893ccfSSadaf Ebrahimi #ifndef MEM_MODULE
525*b7893ccfSSadaf Ebrahimi # define MEM_MODULE
526*b7893ccfSSadaf Ebrahimi # if !defined (__VMS) && (defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */) )
527*b7893ccfSSadaf Ebrahimi #   include <stdint.h>
528*b7893ccfSSadaf Ebrahimi     typedef uint64_t U64;
529*b7893ccfSSadaf Ebrahimi # else
530*b7893ccfSSadaf Ebrahimi     typedef unsigned long long U64;   /* if your compiler doesn't support unsigned long long, replace by another 64-bit type here. Note that xxhash.h will also need to be updated. */
531*b7893ccfSSadaf Ebrahimi # endif
532*b7893ccfSSadaf Ebrahimi #endif
533*b7893ccfSSadaf Ebrahimi 
534*b7893ccfSSadaf Ebrahimi 
535*b7893ccfSSadaf Ebrahimi #if (defined(XXH_FORCE_MEMORY_ACCESS) && (XXH_FORCE_MEMORY_ACCESS==2))
536*b7893ccfSSadaf Ebrahimi 
537*b7893ccfSSadaf Ebrahimi /* Force direct memory access. Only works on CPU which support unaligned memory access in hardware */
XXH_read64(const void * memPtr)538*b7893ccfSSadaf Ebrahimi static U64 XXH_read64(const void* memPtr) { return *(const U64*) memPtr; }
539*b7893ccfSSadaf Ebrahimi 
540*b7893ccfSSadaf Ebrahimi #elif (defined(XXH_FORCE_MEMORY_ACCESS) && (XXH_FORCE_MEMORY_ACCESS==1))
541*b7893ccfSSadaf Ebrahimi 
542*b7893ccfSSadaf Ebrahimi /* __pack instructions are safer, but compiler specific, hence potentially problematic for some compilers */
543*b7893ccfSSadaf Ebrahimi /* currently only defined for gcc and icc */
544*b7893ccfSSadaf Ebrahimi typedef union { U32 u32; U64 u64; } __attribute__((packed)) unalign64;
XXH_read64(const void * ptr)545*b7893ccfSSadaf Ebrahimi static U64 XXH_read64(const void* ptr) { return ((const unalign64*)ptr)->u64; }
546*b7893ccfSSadaf Ebrahimi 
547*b7893ccfSSadaf Ebrahimi #else
548*b7893ccfSSadaf Ebrahimi 
549*b7893ccfSSadaf Ebrahimi /* portable and safe solution. Generally efficient.
550*b7893ccfSSadaf Ebrahimi  * see : http://stackoverflow.com/a/32095106/646947
551*b7893ccfSSadaf Ebrahimi  */
552*b7893ccfSSadaf Ebrahimi 
XXH_read64(const void * memPtr)553*b7893ccfSSadaf Ebrahimi static U64 XXH_read64(const void* memPtr)
554*b7893ccfSSadaf Ebrahimi {
555*b7893ccfSSadaf Ebrahimi     U64 val;
556*b7893ccfSSadaf Ebrahimi     memcpy(&val, memPtr, sizeof(val));
557*b7893ccfSSadaf Ebrahimi     return val;
558*b7893ccfSSadaf Ebrahimi }
559*b7893ccfSSadaf Ebrahimi 
560*b7893ccfSSadaf Ebrahimi #endif   /* XXH_FORCE_DIRECT_MEMORY_ACCESS */
561*b7893ccfSSadaf Ebrahimi 
562*b7893ccfSSadaf Ebrahimi #if defined(_MSC_VER)     /* Visual Studio */
563*b7893ccfSSadaf Ebrahimi #  define XXH_swap64 _byteswap_uint64
564*b7893ccfSSadaf Ebrahimi #elif XXH_GCC_VERSION >= 403
565*b7893ccfSSadaf Ebrahimi #  define XXH_swap64 __builtin_bswap64
566*b7893ccfSSadaf Ebrahimi #else
XXH_swap64(U64 x)567*b7893ccfSSadaf Ebrahimi static U64 XXH_swap64 (U64 x)
568*b7893ccfSSadaf Ebrahimi {
569*b7893ccfSSadaf Ebrahimi     return  ((x << 56) & 0xff00000000000000ULL) |
570*b7893ccfSSadaf Ebrahimi             ((x << 40) & 0x00ff000000000000ULL) |
571*b7893ccfSSadaf Ebrahimi             ((x << 24) & 0x0000ff0000000000ULL) |
572*b7893ccfSSadaf Ebrahimi             ((x << 8)  & 0x000000ff00000000ULL) |
573*b7893ccfSSadaf Ebrahimi             ((x >> 8)  & 0x00000000ff000000ULL) |
574*b7893ccfSSadaf Ebrahimi             ((x >> 24) & 0x0000000000ff0000ULL) |
575*b7893ccfSSadaf Ebrahimi             ((x >> 40) & 0x000000000000ff00ULL) |
576*b7893ccfSSadaf Ebrahimi             ((x >> 56) & 0x00000000000000ffULL);
577*b7893ccfSSadaf Ebrahimi }
578*b7893ccfSSadaf Ebrahimi #endif
579*b7893ccfSSadaf Ebrahimi 
XXH_readLE64_align(const void * ptr,XXH_endianess endian,XXH_alignment align)580*b7893ccfSSadaf Ebrahimi FORCE_INLINE U64 XXH_readLE64_align(const void* ptr, XXH_endianess endian, XXH_alignment align)
581*b7893ccfSSadaf Ebrahimi {
582*b7893ccfSSadaf Ebrahimi     if (align==XXH_unaligned)
583*b7893ccfSSadaf Ebrahimi         return endian==XXH_littleEndian ? XXH_read64(ptr) : XXH_swap64(XXH_read64(ptr));
584*b7893ccfSSadaf Ebrahimi     else
585*b7893ccfSSadaf Ebrahimi         return endian==XXH_littleEndian ? *(const U64*)ptr : XXH_swap64(*(const U64*)ptr);
586*b7893ccfSSadaf Ebrahimi }
587*b7893ccfSSadaf Ebrahimi 
XXH_readLE64(const void * ptr,XXH_endianess endian)588*b7893ccfSSadaf Ebrahimi FORCE_INLINE U64 XXH_readLE64(const void* ptr, XXH_endianess endian)
589*b7893ccfSSadaf Ebrahimi {
590*b7893ccfSSadaf Ebrahimi     return XXH_readLE64_align(ptr, endian, XXH_unaligned);
591*b7893ccfSSadaf Ebrahimi }
592*b7893ccfSSadaf Ebrahimi 
XXH_readBE64(const void * ptr)593*b7893ccfSSadaf Ebrahimi static U64 XXH_readBE64(const void* ptr)
594*b7893ccfSSadaf Ebrahimi {
595*b7893ccfSSadaf Ebrahimi     return XXH_CPU_LITTLE_ENDIAN ? XXH_swap64(XXH_read64(ptr)) : XXH_read64(ptr);
596*b7893ccfSSadaf Ebrahimi }
597*b7893ccfSSadaf Ebrahimi 
598*b7893ccfSSadaf Ebrahimi 
599*b7893ccfSSadaf Ebrahimi /*======   xxh64   ======*/
600*b7893ccfSSadaf Ebrahimi 
601*b7893ccfSSadaf Ebrahimi static const U64 PRIME64_1 = 11400714785074694791ULL;
602*b7893ccfSSadaf Ebrahimi static const U64 PRIME64_2 = 14029467366897019727ULL;
603*b7893ccfSSadaf Ebrahimi static const U64 PRIME64_3 =  1609587929392839161ULL;
604*b7893ccfSSadaf Ebrahimi static const U64 PRIME64_4 =  9650029242287828579ULL;
605*b7893ccfSSadaf Ebrahimi static const U64 PRIME64_5 =  2870177450012600261ULL;
606*b7893ccfSSadaf Ebrahimi 
XXH64_round(U64 acc,U64 input)607*b7893ccfSSadaf Ebrahimi static U64 XXH64_round(U64 acc, U64 input)
608*b7893ccfSSadaf Ebrahimi {
609*b7893ccfSSadaf Ebrahimi     acc += input * PRIME64_2;
610*b7893ccfSSadaf Ebrahimi     acc  = XXH_rotl64(acc, 31);
611*b7893ccfSSadaf Ebrahimi     acc *= PRIME64_1;
612*b7893ccfSSadaf Ebrahimi     return acc;
613*b7893ccfSSadaf Ebrahimi }
614*b7893ccfSSadaf Ebrahimi 
XXH64_mergeRound(U64 acc,U64 val)615*b7893ccfSSadaf Ebrahimi static U64 XXH64_mergeRound(U64 acc, U64 val)
616*b7893ccfSSadaf Ebrahimi {
617*b7893ccfSSadaf Ebrahimi     val  = XXH64_round(0, val);
618*b7893ccfSSadaf Ebrahimi     acc ^= val;
619*b7893ccfSSadaf Ebrahimi     acc  = acc * PRIME64_1 + PRIME64_4;
620*b7893ccfSSadaf Ebrahimi     return acc;
621*b7893ccfSSadaf Ebrahimi }
622*b7893ccfSSadaf Ebrahimi 
XXH64_endian_align(const void * input,size_t len,U64 seed,XXH_endianess endian,XXH_alignment align)623*b7893ccfSSadaf Ebrahimi FORCE_INLINE U64 XXH64_endian_align(const void* input, size_t len, U64 seed, XXH_endianess endian, XXH_alignment align)
624*b7893ccfSSadaf Ebrahimi {
625*b7893ccfSSadaf Ebrahimi     const BYTE* p = (const BYTE*)input;
626*b7893ccfSSadaf Ebrahimi     const BYTE* bEnd = p + len;
627*b7893ccfSSadaf Ebrahimi     U64 h64;
628*b7893ccfSSadaf Ebrahimi #define XXH_get64bits(p) XXH_readLE64_align(p, endian, align)
629*b7893ccfSSadaf Ebrahimi 
630*b7893ccfSSadaf Ebrahimi #ifdef XXH_ACCEPT_NULL_INPUT_POINTER
631*b7893ccfSSadaf Ebrahimi     if (p==NULL) {
632*b7893ccfSSadaf Ebrahimi         len=0;
633*b7893ccfSSadaf Ebrahimi         bEnd=p=(const BYTE*)(size_t)32;
634*b7893ccfSSadaf Ebrahimi     }
635*b7893ccfSSadaf Ebrahimi #endif
636*b7893ccfSSadaf Ebrahimi 
637*b7893ccfSSadaf Ebrahimi     if (len>=32) {
638*b7893ccfSSadaf Ebrahimi         const BYTE* const limit = bEnd - 32;
639*b7893ccfSSadaf Ebrahimi         U64 v1 = seed + PRIME64_1 + PRIME64_2;
640*b7893ccfSSadaf Ebrahimi         U64 v2 = seed + PRIME64_2;
641*b7893ccfSSadaf Ebrahimi         U64 v3 = seed + 0;
642*b7893ccfSSadaf Ebrahimi         U64 v4 = seed - PRIME64_1;
643*b7893ccfSSadaf Ebrahimi 
644*b7893ccfSSadaf Ebrahimi         do {
645*b7893ccfSSadaf Ebrahimi             v1 = XXH64_round(v1, XXH_get64bits(p)); p+=8;
646*b7893ccfSSadaf Ebrahimi             v2 = XXH64_round(v2, XXH_get64bits(p)); p+=8;
647*b7893ccfSSadaf Ebrahimi             v3 = XXH64_round(v3, XXH_get64bits(p)); p+=8;
648*b7893ccfSSadaf Ebrahimi             v4 = XXH64_round(v4, XXH_get64bits(p)); p+=8;
649*b7893ccfSSadaf Ebrahimi         } while (p<=limit);
650*b7893ccfSSadaf Ebrahimi 
651*b7893ccfSSadaf Ebrahimi         h64 = XXH_rotl64(v1, 1) + XXH_rotl64(v2, 7) + XXH_rotl64(v3, 12) + XXH_rotl64(v4, 18);
652*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v1);
653*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v2);
654*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v3);
655*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v4);
656*b7893ccfSSadaf Ebrahimi 
657*b7893ccfSSadaf Ebrahimi     } else {
658*b7893ccfSSadaf Ebrahimi         h64  = seed + PRIME64_5;
659*b7893ccfSSadaf Ebrahimi     }
660*b7893ccfSSadaf Ebrahimi 
661*b7893ccfSSadaf Ebrahimi     h64 += (U64) len;
662*b7893ccfSSadaf Ebrahimi 
663*b7893ccfSSadaf Ebrahimi     while (p+8<=bEnd) {
664*b7893ccfSSadaf Ebrahimi         U64 const k1 = XXH64_round(0, XXH_get64bits(p));
665*b7893ccfSSadaf Ebrahimi         h64 ^= k1;
666*b7893ccfSSadaf Ebrahimi         h64  = XXH_rotl64(h64,27) * PRIME64_1 + PRIME64_4;
667*b7893ccfSSadaf Ebrahimi         p+=8;
668*b7893ccfSSadaf Ebrahimi     }
669*b7893ccfSSadaf Ebrahimi 
670*b7893ccfSSadaf Ebrahimi     if (p+4<=bEnd) {
671*b7893ccfSSadaf Ebrahimi         h64 ^= (U64)(XXH_get32bits(p)) * PRIME64_1;
672*b7893ccfSSadaf Ebrahimi         h64 = XXH_rotl64(h64, 23) * PRIME64_2 + PRIME64_3;
673*b7893ccfSSadaf Ebrahimi         p+=4;
674*b7893ccfSSadaf Ebrahimi     }
675*b7893ccfSSadaf Ebrahimi 
676*b7893ccfSSadaf Ebrahimi     while (p<bEnd) {
677*b7893ccfSSadaf Ebrahimi         h64 ^= (*p) * PRIME64_5;
678*b7893ccfSSadaf Ebrahimi         h64 = XXH_rotl64(h64, 11) * PRIME64_1;
679*b7893ccfSSadaf Ebrahimi         p++;
680*b7893ccfSSadaf Ebrahimi     }
681*b7893ccfSSadaf Ebrahimi 
682*b7893ccfSSadaf Ebrahimi     h64 ^= h64 >> 33;
683*b7893ccfSSadaf Ebrahimi     h64 *= PRIME64_2;
684*b7893ccfSSadaf Ebrahimi     h64 ^= h64 >> 29;
685*b7893ccfSSadaf Ebrahimi     h64 *= PRIME64_3;
686*b7893ccfSSadaf Ebrahimi     h64 ^= h64 >> 32;
687*b7893ccfSSadaf Ebrahimi 
688*b7893ccfSSadaf Ebrahimi     return h64;
689*b7893ccfSSadaf Ebrahimi }
690*b7893ccfSSadaf Ebrahimi 
691*b7893ccfSSadaf Ebrahimi 
XXH64(const void * input,size_t len,unsigned long long seed)692*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API unsigned long long XXH64 (const void* input, size_t len, unsigned long long seed)
693*b7893ccfSSadaf Ebrahimi {
694*b7893ccfSSadaf Ebrahimi #if 0
695*b7893ccfSSadaf Ebrahimi     /* Simple version, good for code maintenance, but unfortunately slow for small inputs */
696*b7893ccfSSadaf Ebrahimi     XXH64_state_t state;
697*b7893ccfSSadaf Ebrahimi     XXH64_reset(&state, seed);
698*b7893ccfSSadaf Ebrahimi     XXH64_update(&state, input, len);
699*b7893ccfSSadaf Ebrahimi     return XXH64_digest(&state);
700*b7893ccfSSadaf Ebrahimi #else
701*b7893ccfSSadaf Ebrahimi     XXH_endianess endian_detected = (XXH_endianess)XXH_CPU_LITTLE_ENDIAN;
702*b7893ccfSSadaf Ebrahimi 
703*b7893ccfSSadaf Ebrahimi     if (XXH_FORCE_ALIGN_CHECK) {
704*b7893ccfSSadaf Ebrahimi         if ((((size_t)input) & 7)==0) {  /* Input is aligned, let's leverage the speed advantage */
705*b7893ccfSSadaf Ebrahimi             if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
706*b7893ccfSSadaf Ebrahimi                 return XXH64_endian_align(input, len, seed, XXH_littleEndian, XXH_aligned);
707*b7893ccfSSadaf Ebrahimi             else
708*b7893ccfSSadaf Ebrahimi                 return XXH64_endian_align(input, len, seed, XXH_bigEndian, XXH_aligned);
709*b7893ccfSSadaf Ebrahimi     }   }
710*b7893ccfSSadaf Ebrahimi 
711*b7893ccfSSadaf Ebrahimi     if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
712*b7893ccfSSadaf Ebrahimi         return XXH64_endian_align(input, len, seed, XXH_littleEndian, XXH_unaligned);
713*b7893ccfSSadaf Ebrahimi     else
714*b7893ccfSSadaf Ebrahimi         return XXH64_endian_align(input, len, seed, XXH_bigEndian, XXH_unaligned);
715*b7893ccfSSadaf Ebrahimi #endif
716*b7893ccfSSadaf Ebrahimi }
717*b7893ccfSSadaf Ebrahimi 
718*b7893ccfSSadaf Ebrahimi /*======   Hash Streaming   ======*/
719*b7893ccfSSadaf Ebrahimi 
XXH64_createState(void)720*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH64_state_t* XXH64_createState(void)
721*b7893ccfSSadaf Ebrahimi {
722*b7893ccfSSadaf Ebrahimi     return (XXH64_state_t*)XXH_malloc(sizeof(XXH64_state_t));
723*b7893ccfSSadaf Ebrahimi }
XXH64_freeState(XXH64_state_t * statePtr)724*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH_errorcode XXH64_freeState(XXH64_state_t* statePtr)
725*b7893ccfSSadaf Ebrahimi {
726*b7893ccfSSadaf Ebrahimi     XXH_free(statePtr);
727*b7893ccfSSadaf Ebrahimi     return XXH_OK;
728*b7893ccfSSadaf Ebrahimi }
729*b7893ccfSSadaf Ebrahimi 
XXH64_copyState(XXH64_state_t * dstState,const XXH64_state_t * srcState)730*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API void XXH64_copyState(XXH64_state_t* dstState, const XXH64_state_t* srcState)
731*b7893ccfSSadaf Ebrahimi {
732*b7893ccfSSadaf Ebrahimi     memcpy(dstState, srcState, sizeof(*dstState));
733*b7893ccfSSadaf Ebrahimi }
734*b7893ccfSSadaf Ebrahimi 
XXH64_reset(XXH64_state_t * statePtr,unsigned long long seed)735*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH_errorcode XXH64_reset(XXH64_state_t* statePtr, unsigned long long seed)
736*b7893ccfSSadaf Ebrahimi {
737*b7893ccfSSadaf Ebrahimi     XXH64_state_t state;   /* using a local state to memcpy() in order to avoid strict-aliasing warnings */
738*b7893ccfSSadaf Ebrahimi     memset(&state, 0, sizeof(state)-8);   /* do not write into reserved, for future removal */
739*b7893ccfSSadaf Ebrahimi     state.v1 = seed + PRIME64_1 + PRIME64_2;
740*b7893ccfSSadaf Ebrahimi     state.v2 = seed + PRIME64_2;
741*b7893ccfSSadaf Ebrahimi     state.v3 = seed + 0;
742*b7893ccfSSadaf Ebrahimi     state.v4 = seed - PRIME64_1;
743*b7893ccfSSadaf Ebrahimi     memcpy(statePtr, &state, sizeof(state));
744*b7893ccfSSadaf Ebrahimi     return XXH_OK;
745*b7893ccfSSadaf Ebrahimi }
746*b7893ccfSSadaf Ebrahimi 
XXH64_update_endian(XXH64_state_t * state,const void * input,size_t len,XXH_endianess endian)747*b7893ccfSSadaf Ebrahimi FORCE_INLINE XXH_errorcode XXH64_update_endian (XXH64_state_t* state, const void* input, size_t len, XXH_endianess endian)
748*b7893ccfSSadaf Ebrahimi {
749*b7893ccfSSadaf Ebrahimi     const BYTE* p = (const BYTE*)input;
750*b7893ccfSSadaf Ebrahimi     const BYTE* const bEnd = p + len;
751*b7893ccfSSadaf Ebrahimi 
752*b7893ccfSSadaf Ebrahimi #ifdef XXH_ACCEPT_NULL_INPUT_POINTER
753*b7893ccfSSadaf Ebrahimi     if (input==NULL) return XXH_ERROR;
754*b7893ccfSSadaf Ebrahimi #endif
755*b7893ccfSSadaf Ebrahimi 
756*b7893ccfSSadaf Ebrahimi     state->total_len += len;
757*b7893ccfSSadaf Ebrahimi 
758*b7893ccfSSadaf Ebrahimi     if (state->memsize + len < 32) {  /* fill in tmp buffer */
759*b7893ccfSSadaf Ebrahimi         XXH_memcpy(((BYTE*)state->mem64) + state->memsize, input, len);
760*b7893ccfSSadaf Ebrahimi         state->memsize += (U32)len;
761*b7893ccfSSadaf Ebrahimi         return XXH_OK;
762*b7893ccfSSadaf Ebrahimi     }
763*b7893ccfSSadaf Ebrahimi 
764*b7893ccfSSadaf Ebrahimi     if (state->memsize) {   /* tmp buffer is full */
765*b7893ccfSSadaf Ebrahimi         XXH_memcpy(((BYTE*)state->mem64) + state->memsize, input, 32-state->memsize);
766*b7893ccfSSadaf Ebrahimi         state->v1 = XXH64_round(state->v1, XXH_readLE64(state->mem64+0, endian));
767*b7893ccfSSadaf Ebrahimi         state->v2 = XXH64_round(state->v2, XXH_readLE64(state->mem64+1, endian));
768*b7893ccfSSadaf Ebrahimi         state->v3 = XXH64_round(state->v3, XXH_readLE64(state->mem64+2, endian));
769*b7893ccfSSadaf Ebrahimi         state->v4 = XXH64_round(state->v4, XXH_readLE64(state->mem64+3, endian));
770*b7893ccfSSadaf Ebrahimi         p += 32-state->memsize;
771*b7893ccfSSadaf Ebrahimi         state->memsize = 0;
772*b7893ccfSSadaf Ebrahimi     }
773*b7893ccfSSadaf Ebrahimi 
774*b7893ccfSSadaf Ebrahimi     if (p+32 <= bEnd) {
775*b7893ccfSSadaf Ebrahimi         const BYTE* const limit = bEnd - 32;
776*b7893ccfSSadaf Ebrahimi         U64 v1 = state->v1;
777*b7893ccfSSadaf Ebrahimi         U64 v2 = state->v2;
778*b7893ccfSSadaf Ebrahimi         U64 v3 = state->v3;
779*b7893ccfSSadaf Ebrahimi         U64 v4 = state->v4;
780*b7893ccfSSadaf Ebrahimi 
781*b7893ccfSSadaf Ebrahimi         do {
782*b7893ccfSSadaf Ebrahimi             v1 = XXH64_round(v1, XXH_readLE64(p, endian)); p+=8;
783*b7893ccfSSadaf Ebrahimi             v2 = XXH64_round(v2, XXH_readLE64(p, endian)); p+=8;
784*b7893ccfSSadaf Ebrahimi             v3 = XXH64_round(v3, XXH_readLE64(p, endian)); p+=8;
785*b7893ccfSSadaf Ebrahimi             v4 = XXH64_round(v4, XXH_readLE64(p, endian)); p+=8;
786*b7893ccfSSadaf Ebrahimi         } while (p<=limit);
787*b7893ccfSSadaf Ebrahimi 
788*b7893ccfSSadaf Ebrahimi         state->v1 = v1;
789*b7893ccfSSadaf Ebrahimi         state->v2 = v2;
790*b7893ccfSSadaf Ebrahimi         state->v3 = v3;
791*b7893ccfSSadaf Ebrahimi         state->v4 = v4;
792*b7893ccfSSadaf Ebrahimi     }
793*b7893ccfSSadaf Ebrahimi 
794*b7893ccfSSadaf Ebrahimi     if (p < bEnd) {
795*b7893ccfSSadaf Ebrahimi         XXH_memcpy(state->mem64, p, (size_t)(bEnd-p));
796*b7893ccfSSadaf Ebrahimi         state->memsize = (unsigned)(bEnd-p);
797*b7893ccfSSadaf Ebrahimi     }
798*b7893ccfSSadaf Ebrahimi 
799*b7893ccfSSadaf Ebrahimi     return XXH_OK;
800*b7893ccfSSadaf Ebrahimi }
801*b7893ccfSSadaf Ebrahimi 
XXH64_update(XXH64_state_t * state_in,const void * input,size_t len)802*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH_errorcode XXH64_update (XXH64_state_t* state_in, const void* input, size_t len)
803*b7893ccfSSadaf Ebrahimi {
804*b7893ccfSSadaf Ebrahimi     XXH_endianess endian_detected = (XXH_endianess)XXH_CPU_LITTLE_ENDIAN;
805*b7893ccfSSadaf Ebrahimi 
806*b7893ccfSSadaf Ebrahimi     if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
807*b7893ccfSSadaf Ebrahimi         return XXH64_update_endian(state_in, input, len, XXH_littleEndian);
808*b7893ccfSSadaf Ebrahimi     else
809*b7893ccfSSadaf Ebrahimi         return XXH64_update_endian(state_in, input, len, XXH_bigEndian);
810*b7893ccfSSadaf Ebrahimi }
811*b7893ccfSSadaf Ebrahimi 
XXH64_digest_endian(const XXH64_state_t * state,XXH_endianess endian)812*b7893ccfSSadaf Ebrahimi FORCE_INLINE U64 XXH64_digest_endian (const XXH64_state_t* state, XXH_endianess endian)
813*b7893ccfSSadaf Ebrahimi {
814*b7893ccfSSadaf Ebrahimi     const BYTE * p = (const BYTE*)state->mem64;
815*b7893ccfSSadaf Ebrahimi     const BYTE* const bEnd = (const BYTE*)state->mem64 + state->memsize;
816*b7893ccfSSadaf Ebrahimi     U64 h64;
817*b7893ccfSSadaf Ebrahimi 
818*b7893ccfSSadaf Ebrahimi     if (state->total_len >= 32) {
819*b7893ccfSSadaf Ebrahimi         U64 const v1 = state->v1;
820*b7893ccfSSadaf Ebrahimi         U64 const v2 = state->v2;
821*b7893ccfSSadaf Ebrahimi         U64 const v3 = state->v3;
822*b7893ccfSSadaf Ebrahimi         U64 const v4 = state->v4;
823*b7893ccfSSadaf Ebrahimi 
824*b7893ccfSSadaf Ebrahimi         h64 = XXH_rotl64(v1, 1) + XXH_rotl64(v2, 7) + XXH_rotl64(v3, 12) + XXH_rotl64(v4, 18);
825*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v1);
826*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v2);
827*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v3);
828*b7893ccfSSadaf Ebrahimi         h64 = XXH64_mergeRound(h64, v4);
829*b7893ccfSSadaf Ebrahimi     } else {
830*b7893ccfSSadaf Ebrahimi         h64  = state->v3 + PRIME64_5;
831*b7893ccfSSadaf Ebrahimi     }
832*b7893ccfSSadaf Ebrahimi 
833*b7893ccfSSadaf Ebrahimi     h64 += (U64) state->total_len;
834*b7893ccfSSadaf Ebrahimi 
835*b7893ccfSSadaf Ebrahimi     while (p+8<=bEnd) {
836*b7893ccfSSadaf Ebrahimi         U64 const k1 = XXH64_round(0, XXH_readLE64(p, endian));
837*b7893ccfSSadaf Ebrahimi         h64 ^= k1;
838*b7893ccfSSadaf Ebrahimi         h64  = XXH_rotl64(h64,27) * PRIME64_1 + PRIME64_4;
839*b7893ccfSSadaf Ebrahimi         p+=8;
840*b7893ccfSSadaf Ebrahimi     }
841*b7893ccfSSadaf Ebrahimi 
842*b7893ccfSSadaf Ebrahimi     if (p+4<=bEnd) {
843*b7893ccfSSadaf Ebrahimi         h64 ^= (U64)(XXH_readLE32(p, endian)) * PRIME64_1;
844*b7893ccfSSadaf Ebrahimi         h64  = XXH_rotl64(h64, 23) * PRIME64_2 + PRIME64_3;
845*b7893ccfSSadaf Ebrahimi         p+=4;
846*b7893ccfSSadaf Ebrahimi     }
847*b7893ccfSSadaf Ebrahimi 
848*b7893ccfSSadaf Ebrahimi     while (p<bEnd) {
849*b7893ccfSSadaf Ebrahimi         h64 ^= (*p) * PRIME64_5;
850*b7893ccfSSadaf Ebrahimi         h64  = XXH_rotl64(h64, 11) * PRIME64_1;
851*b7893ccfSSadaf Ebrahimi         p++;
852*b7893ccfSSadaf Ebrahimi     }
853*b7893ccfSSadaf Ebrahimi 
854*b7893ccfSSadaf Ebrahimi     h64 ^= h64 >> 33;
855*b7893ccfSSadaf Ebrahimi     h64 *= PRIME64_2;
856*b7893ccfSSadaf Ebrahimi     h64 ^= h64 >> 29;
857*b7893ccfSSadaf Ebrahimi     h64 *= PRIME64_3;
858*b7893ccfSSadaf Ebrahimi     h64 ^= h64 >> 32;
859*b7893ccfSSadaf Ebrahimi 
860*b7893ccfSSadaf Ebrahimi     return h64;
861*b7893ccfSSadaf Ebrahimi }
862*b7893ccfSSadaf Ebrahimi 
XXH64_digest(const XXH64_state_t * state_in)863*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API unsigned long long XXH64_digest (const XXH64_state_t* state_in)
864*b7893ccfSSadaf Ebrahimi {
865*b7893ccfSSadaf Ebrahimi     XXH_endianess endian_detected = (XXH_endianess)XXH_CPU_LITTLE_ENDIAN;
866*b7893ccfSSadaf Ebrahimi 
867*b7893ccfSSadaf Ebrahimi     if ((endian_detected==XXH_littleEndian) || XXH_FORCE_NATIVE_FORMAT)
868*b7893ccfSSadaf Ebrahimi         return XXH64_digest_endian(state_in, XXH_littleEndian);
869*b7893ccfSSadaf Ebrahimi     else
870*b7893ccfSSadaf Ebrahimi         return XXH64_digest_endian(state_in, XXH_bigEndian);
871*b7893ccfSSadaf Ebrahimi }
872*b7893ccfSSadaf Ebrahimi 
873*b7893ccfSSadaf Ebrahimi 
874*b7893ccfSSadaf Ebrahimi /*====== Canonical representation   ======*/
875*b7893ccfSSadaf Ebrahimi 
XXH64_canonicalFromHash(XXH64_canonical_t * dst,XXH64_hash_t hash)876*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API void XXH64_canonicalFromHash(XXH64_canonical_t* dst, XXH64_hash_t hash)
877*b7893ccfSSadaf Ebrahimi {
878*b7893ccfSSadaf Ebrahimi     XXH_STATIC_ASSERT(sizeof(XXH64_canonical_t) == sizeof(XXH64_hash_t));
879*b7893ccfSSadaf Ebrahimi     if (XXH_CPU_LITTLE_ENDIAN) hash = XXH_swap64(hash);
880*b7893ccfSSadaf Ebrahimi     memcpy(dst, &hash, sizeof(*dst));
881*b7893ccfSSadaf Ebrahimi }
882*b7893ccfSSadaf Ebrahimi 
XXH64_hashFromCanonical(const XXH64_canonical_t * src)883*b7893ccfSSadaf Ebrahimi XXH_PUBLIC_API XXH64_hash_t XXH64_hashFromCanonical(const XXH64_canonical_t* src)
884*b7893ccfSSadaf Ebrahimi {
885*b7893ccfSSadaf Ebrahimi     return XXH_readBE64(src);
886*b7893ccfSSadaf Ebrahimi }
887*b7893ccfSSadaf Ebrahimi 
888*b7893ccfSSadaf Ebrahimi #endif  /* XXH_NO_LONG_LONG */
889