10c16b537SWarner Losh /* 20c16b537SWarner Losh * Copyright (c) 2016-present, Yann Collet, Facebook, Inc. 30c16b537SWarner Losh * All rights reserved. 40c16b537SWarner Losh * 50c16b537SWarner Losh * This source code is licensed under both the BSD-style license (found in the 60c16b537SWarner Losh * LICENSE file in the root directory of this source tree) and the GPLv2 (found 70c16b537SWarner Losh * in the COPYING file in the root directory of this source tree). 80c16b537SWarner Losh * You may select, at your option, one of the above-listed licenses. 90c16b537SWarner Losh */ 100c16b537SWarner Losh 110c16b537SWarner Losh 120c16b537SWarner Losh /*- Dependencies -*/ 130c16b537SWarner Losh #include "zstd_v05.h" 140c16b537SWarner Losh #include "error_private.h" 150c16b537SWarner Losh 160c16b537SWarner Losh 170c16b537SWarner Losh /* ****************************************************************** 180c16b537SWarner Losh mem.h 190c16b537SWarner Losh low-level memory access routines 200c16b537SWarner Losh Copyright (C) 2013-2015, Yann Collet. 210c16b537SWarner Losh 220c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 230c16b537SWarner Losh 240c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 250c16b537SWarner Losh modification, are permitted provided that the following conditions are 260c16b537SWarner Losh met: 270c16b537SWarner Losh 280c16b537SWarner Losh * Redistributions of source code must retain the above copyright 290c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 300c16b537SWarner Losh * Redistributions in binary form must reproduce the above 310c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 320c16b537SWarner Losh in the documentation and/or other materials provided with the 330c16b537SWarner Losh distribution. 340c16b537SWarner Losh 350c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 360c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 370c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 380c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 390c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 400c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 410c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 420c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 430c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 440c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 450c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 460c16b537SWarner Losh 470c16b537SWarner Losh You can contact the author at : 480c16b537SWarner Losh - FSEv05 source repository : https://github.com/Cyan4973/FiniteStateEntropy 490c16b537SWarner Losh - Public forum : https://groups.google.com/forum/#!forum/lz4c 500c16b537SWarner Losh ****************************************************************** */ 510c16b537SWarner Losh #ifndef MEM_H_MODULE 520c16b537SWarner Losh #define MEM_H_MODULE 530c16b537SWarner Losh 540c16b537SWarner Losh #if defined (__cplusplus) 550c16b537SWarner Losh extern "C" { 560c16b537SWarner Losh #endif 570c16b537SWarner Losh 580c16b537SWarner Losh /*-**************************************** 590c16b537SWarner Losh * Dependencies 600c16b537SWarner Losh ******************************************/ 610c16b537SWarner Losh #include <stddef.h> /* size_t, ptrdiff_t */ 620c16b537SWarner Losh #include <string.h> /* memcpy */ 630c16b537SWarner Losh 640c16b537SWarner Losh 650c16b537SWarner Losh /*-**************************************** 660c16b537SWarner Losh * Compiler specifics 670c16b537SWarner Losh ******************************************/ 680c16b537SWarner Losh #if defined(__GNUC__) 690c16b537SWarner Losh # define MEM_STATIC static __attribute__((unused)) 700c16b537SWarner Losh #elif defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */) 710c16b537SWarner Losh # define MEM_STATIC static inline 720c16b537SWarner Losh #elif defined(_MSC_VER) 730c16b537SWarner Losh # define MEM_STATIC static __inline 740c16b537SWarner Losh #else 750c16b537SWarner Losh # define MEM_STATIC static /* this version may generate warnings for unused static functions; disable the relevant warning */ 760c16b537SWarner Losh #endif 770c16b537SWarner Losh 780c16b537SWarner Losh 790c16b537SWarner Losh /*-************************************************************** 800c16b537SWarner Losh * Basic Types 810c16b537SWarner Losh *****************************************************************/ 820c16b537SWarner Losh #if defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */) 830c16b537SWarner Losh # include <stdint.h> 840c16b537SWarner Losh typedef uint8_t BYTE; 850c16b537SWarner Losh typedef uint16_t U16; 860c16b537SWarner Losh typedef int16_t S16; 870c16b537SWarner Losh typedef uint32_t U32; 880c16b537SWarner Losh typedef int32_t S32; 890c16b537SWarner Losh typedef uint64_t U64; 900c16b537SWarner Losh typedef int64_t S64; 910c16b537SWarner Losh #else 920c16b537SWarner Losh typedef unsigned char BYTE; 930c16b537SWarner Losh typedef unsigned short U16; 940c16b537SWarner Losh typedef signed short S16; 950c16b537SWarner Losh typedef unsigned int U32; 960c16b537SWarner Losh typedef signed int S32; 970c16b537SWarner Losh typedef unsigned long long U64; 980c16b537SWarner Losh typedef signed long long S64; 990c16b537SWarner Losh #endif 1000c16b537SWarner Losh 1010c16b537SWarner Losh 1020c16b537SWarner Losh /*-************************************************************** 1030c16b537SWarner Losh * Memory I/O 1040c16b537SWarner Losh *****************************************************************/ 1050c16b537SWarner Losh /* MEM_FORCE_MEMORY_ACCESS : 1060c16b537SWarner Losh * By default, access to unaligned memory is controlled by `memcpy()`, which is safe and portable. 1070c16b537SWarner Losh * Unfortunately, on some target/compiler combinations, the generated assembly is sub-optimal. 1080c16b537SWarner Losh * The below switch allow to select different access method for improved performance. 1090c16b537SWarner Losh * Method 0 (default) : use `memcpy()`. Safe and portable. 1100c16b537SWarner Losh * Method 1 : `__packed` statement. It depends on compiler extension (ie, not portable). 1110c16b537SWarner Losh * This method is safe if your compiler supports it, and *generally* as fast or faster than `memcpy`. 1120c16b537SWarner Losh * Method 2 : direct access. This method is portable but violate C standard. 1130c16b537SWarner Losh * It can generate buggy code on targets depending on alignment. 1140c16b537SWarner Losh * In some circumstances, it's the only known way to get the most performance (ie GCC + ARMv6) 1150c16b537SWarner Losh * See http://fastcompression.blogspot.fr/2015/08/accessing-unaligned-memory.html for details. 1160c16b537SWarner Losh * Prefer these methods in priority order (0 > 1 > 2) 1170c16b537SWarner Losh */ 1180c16b537SWarner Losh #ifndef MEM_FORCE_MEMORY_ACCESS /* can be defined externally, on command line for example */ 1190c16b537SWarner Losh # 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__) ) 1200c16b537SWarner Losh # define MEM_FORCE_MEMORY_ACCESS 2 1210c16b537SWarner Losh # elif (defined(__INTEL_COMPILER) && !defined(WIN32)) || \ 1220c16b537SWarner Losh (defined(__GNUC__) && ( defined(__ARM_ARCH_7__) || defined(__ARM_ARCH_7A__) || defined(__ARM_ARCH_7R__) || defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7S__) )) 1230c16b537SWarner Losh # define MEM_FORCE_MEMORY_ACCESS 1 1240c16b537SWarner Losh # endif 1250c16b537SWarner Losh #endif 1260c16b537SWarner Losh 1270c16b537SWarner Losh MEM_STATIC unsigned MEM_32bits(void) { return sizeof(void*)==4; } 1280c16b537SWarner Losh MEM_STATIC unsigned MEM_64bits(void) { return sizeof(void*)==8; } 1290c16b537SWarner Losh 1300c16b537SWarner Losh MEM_STATIC unsigned MEM_isLittleEndian(void) 1310c16b537SWarner Losh { 1320c16b537SWarner Losh const union { U32 u; BYTE c[4]; } one = { 1 }; /* don't use static : performance detrimental */ 1330c16b537SWarner Losh return one.c[0]; 1340c16b537SWarner Losh } 1350c16b537SWarner Losh 1360c16b537SWarner Losh #if defined(MEM_FORCE_MEMORY_ACCESS) && (MEM_FORCE_MEMORY_ACCESS==2) 1370c16b537SWarner Losh 1380c16b537SWarner Losh /* violates C standard, by lying on structure alignment. 1390c16b537SWarner Losh Only use if no other choice to achieve best performance on target platform */ 1400c16b537SWarner Losh MEM_STATIC U16 MEM_read16(const void* memPtr) { return *(const U16*) memPtr; } 1410c16b537SWarner Losh MEM_STATIC U32 MEM_read32(const void* memPtr) { return *(const U32*) memPtr; } 1420c16b537SWarner Losh MEM_STATIC U64 MEM_read64(const void* memPtr) { return *(const U64*) memPtr; } 1430c16b537SWarner Losh 1440c16b537SWarner Losh MEM_STATIC void MEM_write16(void* memPtr, U16 value) { *(U16*)memPtr = value; } 1450c16b537SWarner Losh MEM_STATIC void MEM_write32(void* memPtr, U32 value) { *(U32*)memPtr = value; } 1460c16b537SWarner Losh MEM_STATIC void MEM_write64(void* memPtr, U64 value) { *(U64*)memPtr = value; } 1470c16b537SWarner Losh 1480c16b537SWarner Losh #elif defined(MEM_FORCE_MEMORY_ACCESS) && (MEM_FORCE_MEMORY_ACCESS==1) 1490c16b537SWarner Losh 1500c16b537SWarner Losh /* __pack instructions are safer, but compiler specific, hence potentially problematic for some compilers */ 1510c16b537SWarner Losh /* currently only defined for gcc and icc */ 1520c16b537SWarner Losh typedef union { U16 u16; U32 u32; U64 u64; size_t st; } __attribute__((packed)) unalign; 1530c16b537SWarner Losh 1540c16b537SWarner Losh MEM_STATIC U16 MEM_read16(const void* ptr) { return ((const unalign*)ptr)->u16; } 1550c16b537SWarner Losh MEM_STATIC U32 MEM_read32(const void* ptr) { return ((const unalign*)ptr)->u32; } 1560c16b537SWarner Losh MEM_STATIC U64 MEM_read64(const void* ptr) { return ((const unalign*)ptr)->u64; } 1570c16b537SWarner Losh 1580c16b537SWarner Losh MEM_STATIC void MEM_write16(void* memPtr, U16 value) { ((unalign*)memPtr)->u16 = value; } 1590c16b537SWarner Losh MEM_STATIC void MEM_write32(void* memPtr, U32 value) { ((unalign*)memPtr)->u32 = value; } 1600c16b537SWarner Losh MEM_STATIC void MEM_write64(void* memPtr, U64 value) { ((unalign*)memPtr)->u64 = value; } 1610c16b537SWarner Losh 1620c16b537SWarner Losh #else 1630c16b537SWarner Losh 1640c16b537SWarner Losh /* default method, safe and standard. 1650c16b537SWarner Losh can sometimes prove slower */ 1660c16b537SWarner Losh 1670c16b537SWarner Losh MEM_STATIC U16 MEM_read16(const void* memPtr) 1680c16b537SWarner Losh { 1690c16b537SWarner Losh U16 val; memcpy(&val, memPtr, sizeof(val)); return val; 1700c16b537SWarner Losh } 1710c16b537SWarner Losh 1720c16b537SWarner Losh MEM_STATIC U32 MEM_read32(const void* memPtr) 1730c16b537SWarner Losh { 1740c16b537SWarner Losh U32 val; memcpy(&val, memPtr, sizeof(val)); return val; 1750c16b537SWarner Losh } 1760c16b537SWarner Losh 1770c16b537SWarner Losh MEM_STATIC U64 MEM_read64(const void* memPtr) 1780c16b537SWarner Losh { 1790c16b537SWarner Losh U64 val; memcpy(&val, memPtr, sizeof(val)); return val; 1800c16b537SWarner Losh } 1810c16b537SWarner Losh 1820c16b537SWarner Losh MEM_STATIC void MEM_write16(void* memPtr, U16 value) 1830c16b537SWarner Losh { 1840c16b537SWarner Losh memcpy(memPtr, &value, sizeof(value)); 1850c16b537SWarner Losh } 1860c16b537SWarner Losh 1870c16b537SWarner Losh MEM_STATIC void MEM_write32(void* memPtr, U32 value) 1880c16b537SWarner Losh { 1890c16b537SWarner Losh memcpy(memPtr, &value, sizeof(value)); 1900c16b537SWarner Losh } 1910c16b537SWarner Losh 1920c16b537SWarner Losh MEM_STATIC void MEM_write64(void* memPtr, U64 value) 1930c16b537SWarner Losh { 1940c16b537SWarner Losh memcpy(memPtr, &value, sizeof(value)); 1950c16b537SWarner Losh } 1960c16b537SWarner Losh 1970c16b537SWarner Losh #endif /* MEM_FORCE_MEMORY_ACCESS */ 1980c16b537SWarner Losh 1990c16b537SWarner Losh 2000c16b537SWarner Losh MEM_STATIC U16 MEM_readLE16(const void* memPtr) 2010c16b537SWarner Losh { 2020c16b537SWarner Losh if (MEM_isLittleEndian()) 2030c16b537SWarner Losh return MEM_read16(memPtr); 2040c16b537SWarner Losh else { 2050c16b537SWarner Losh const BYTE* p = (const BYTE*)memPtr; 2060c16b537SWarner Losh return (U16)(p[0] + (p[1]<<8)); 2070c16b537SWarner Losh } 2080c16b537SWarner Losh } 2090c16b537SWarner Losh 2100c16b537SWarner Losh MEM_STATIC void MEM_writeLE16(void* memPtr, U16 val) 2110c16b537SWarner Losh { 2120c16b537SWarner Losh if (MEM_isLittleEndian()) { 2130c16b537SWarner Losh MEM_write16(memPtr, val); 2140c16b537SWarner Losh } else { 2150c16b537SWarner Losh BYTE* p = (BYTE*)memPtr; 2160c16b537SWarner Losh p[0] = (BYTE)val; 2170c16b537SWarner Losh p[1] = (BYTE)(val>>8); 2180c16b537SWarner Losh } 2190c16b537SWarner Losh } 2200c16b537SWarner Losh 2210c16b537SWarner Losh MEM_STATIC U32 MEM_readLE32(const void* memPtr) 2220c16b537SWarner Losh { 2230c16b537SWarner Losh if (MEM_isLittleEndian()) 2240c16b537SWarner Losh return MEM_read32(memPtr); 2250c16b537SWarner Losh else { 2260c16b537SWarner Losh const BYTE* p = (const BYTE*)memPtr; 2270c16b537SWarner Losh return (U32)((U32)p[0] + ((U32)p[1]<<8) + ((U32)p[2]<<16) + ((U32)p[3]<<24)); 2280c16b537SWarner Losh } 2290c16b537SWarner Losh } 2300c16b537SWarner Losh 2310c16b537SWarner Losh 2320c16b537SWarner Losh MEM_STATIC U64 MEM_readLE64(const void* memPtr) 2330c16b537SWarner Losh { 2340c16b537SWarner Losh if (MEM_isLittleEndian()) 2350c16b537SWarner Losh return MEM_read64(memPtr); 2360c16b537SWarner Losh else { 2370c16b537SWarner Losh const BYTE* p = (const BYTE*)memPtr; 2380c16b537SWarner Losh return (U64)((U64)p[0] + ((U64)p[1]<<8) + ((U64)p[2]<<16) + ((U64)p[3]<<24) 2390c16b537SWarner Losh + ((U64)p[4]<<32) + ((U64)p[5]<<40) + ((U64)p[6]<<48) + ((U64)p[7]<<56)); 2400c16b537SWarner Losh } 2410c16b537SWarner Losh } 2420c16b537SWarner Losh 2430c16b537SWarner Losh 2440c16b537SWarner Losh MEM_STATIC size_t MEM_readLEST(const void* memPtr) 2450c16b537SWarner Losh { 2460c16b537SWarner Losh if (MEM_32bits()) 2470c16b537SWarner Losh return (size_t)MEM_readLE32(memPtr); 2480c16b537SWarner Losh else 2490c16b537SWarner Losh return (size_t)MEM_readLE64(memPtr); 2500c16b537SWarner Losh } 2510c16b537SWarner Losh 2520c16b537SWarner Losh 2530c16b537SWarner Losh #if defined (__cplusplus) 2540c16b537SWarner Losh } 2550c16b537SWarner Losh #endif 2560c16b537SWarner Losh 2570c16b537SWarner Losh #endif /* MEM_H_MODULE */ 2580c16b537SWarner Losh 2590c16b537SWarner Losh /* 2600c16b537SWarner Losh zstd - standard compression library 2610c16b537SWarner Losh Header File for static linking only 2620c16b537SWarner Losh Copyright (C) 2014-2016, Yann Collet. 2630c16b537SWarner Losh 2640c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 2650c16b537SWarner Losh 2660c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 2670c16b537SWarner Losh modification, are permitted provided that the following conditions are 2680c16b537SWarner Losh met: 2690c16b537SWarner Losh * Redistributions of source code must retain the above copyright 2700c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 2710c16b537SWarner Losh * Redistributions in binary form must reproduce the above 2720c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 2730c16b537SWarner Losh in the documentation and/or other materials provided with the 2740c16b537SWarner Losh distribution. 2750c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 2760c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 2770c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 2780c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 2790c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 2800c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 2810c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 2820c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 2830c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 2840c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 2850c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 2860c16b537SWarner Losh 2870c16b537SWarner Losh You can contact the author at : 2880c16b537SWarner Losh - zstd homepage : http://www.zstd.net 2890c16b537SWarner Losh */ 2900c16b537SWarner Losh #ifndef ZSTD_STATIC_H 2910c16b537SWarner Losh #define ZSTD_STATIC_H 2920c16b537SWarner Losh 2930c16b537SWarner Losh /* The prototypes defined within this file are considered experimental. 2940c16b537SWarner Losh * They should not be used in the context DLL as they may change in the future. 2950c16b537SWarner Losh * Prefer static linking if you need them, to control breaking version changes issues. 2960c16b537SWarner Losh */ 2970c16b537SWarner Losh 2980c16b537SWarner Losh #if defined (__cplusplus) 2990c16b537SWarner Losh extern "C" { 3000c16b537SWarner Losh #endif 3010c16b537SWarner Losh 3020c16b537SWarner Losh 3030c16b537SWarner Losh 3040c16b537SWarner Losh /*-************************************* 3050c16b537SWarner Losh * Types 3060c16b537SWarner Losh ***************************************/ 3070c16b537SWarner Losh #define ZSTDv05_WINDOWLOG_ABSOLUTEMIN 11 3080c16b537SWarner Losh 3090c16b537SWarner Losh 3100c16b537SWarner Losh /*-************************************* 3110c16b537SWarner Losh * Advanced functions 3120c16b537SWarner Losh ***************************************/ 3130c16b537SWarner Losh /*- Advanced Decompression functions -*/ 3140c16b537SWarner Losh 3150c16b537SWarner Losh /*! ZSTDv05_decompress_usingPreparedDCtx() : 3160c16b537SWarner Losh * Same as ZSTDv05_decompress_usingDict, but using a reference context `preparedDCtx`, where dictionary has been loaded. 3170c16b537SWarner Losh * It avoids reloading the dictionary each time. 3180c16b537SWarner Losh * `preparedDCtx` must have been properly initialized using ZSTDv05_decompressBegin_usingDict(). 3190c16b537SWarner Losh * Requires 2 contexts : 1 for reference, which will not be modified, and 1 to run the decompression operation */ 3200c16b537SWarner Losh size_t ZSTDv05_decompress_usingPreparedDCtx( 3210c16b537SWarner Losh ZSTDv05_DCtx* dctx, const ZSTDv05_DCtx* preparedDCtx, 3220c16b537SWarner Losh void* dst, size_t dstCapacity, 3230c16b537SWarner Losh const void* src, size_t srcSize); 3240c16b537SWarner Losh 3250c16b537SWarner Losh 3260c16b537SWarner Losh /* ************************************** 3270c16b537SWarner Losh * Streaming functions (direct mode) 3280c16b537SWarner Losh ****************************************/ 3290c16b537SWarner Losh size_t ZSTDv05_decompressBegin(ZSTDv05_DCtx* dctx); 3300c16b537SWarner Losh 3310c16b537SWarner Losh /* 3320c16b537SWarner Losh Streaming decompression, direct mode (bufferless) 3330c16b537SWarner Losh 3340c16b537SWarner Losh A ZSTDv05_DCtx object is required to track streaming operations. 3350c16b537SWarner Losh Use ZSTDv05_createDCtx() / ZSTDv05_freeDCtx() to manage it. 3360c16b537SWarner Losh A ZSTDv05_DCtx object can be re-used multiple times. 3370c16b537SWarner Losh 3380c16b537SWarner Losh First typical operation is to retrieve frame parameters, using ZSTDv05_getFrameParams(). 3390c16b537SWarner Losh This operation is independent, and just needs enough input data to properly decode the frame header. 3400c16b537SWarner Losh Objective is to retrieve *params.windowlog, to know minimum amount of memory required during decoding. 3410c16b537SWarner Losh Result : 0 when successful, it means the ZSTDv05_parameters structure has been filled. 3420c16b537SWarner Losh >0 : means there is not enough data into src. Provides the expected size to successfully decode header. 3430c16b537SWarner Losh errorCode, which can be tested using ZSTDv05_isError() 3440c16b537SWarner Losh 3450c16b537SWarner Losh Start decompression, with ZSTDv05_decompressBegin() or ZSTDv05_decompressBegin_usingDict() 3460c16b537SWarner Losh Alternatively, you can copy a prepared context, using ZSTDv05_copyDCtx() 3470c16b537SWarner Losh 3480c16b537SWarner Losh Then use ZSTDv05_nextSrcSizeToDecompress() and ZSTDv05_decompressContinue() alternatively. 3490c16b537SWarner Losh ZSTDv05_nextSrcSizeToDecompress() tells how much bytes to provide as 'srcSize' to ZSTDv05_decompressContinue(). 3500c16b537SWarner Losh ZSTDv05_decompressContinue() requires this exact amount of bytes, or it will fail. 3510c16b537SWarner Losh ZSTDv05_decompressContinue() needs previous data blocks during decompression, up to (1 << windowlog). 3520c16b537SWarner Losh They should preferably be located contiguously, prior to current block. Alternatively, a round buffer is also possible. 3530c16b537SWarner Losh 3540c16b537SWarner Losh @result of ZSTDv05_decompressContinue() is the number of bytes regenerated within 'dst'. 3550c16b537SWarner Losh It can be zero, which is not an error; it just means ZSTDv05_decompressContinue() has decoded some header. 3560c16b537SWarner Losh 3570c16b537SWarner Losh A frame is fully decoded when ZSTDv05_nextSrcSizeToDecompress() returns zero. 3580c16b537SWarner Losh Context can then be reset to start a new decompression. 3590c16b537SWarner Losh */ 3600c16b537SWarner Losh 3610c16b537SWarner Losh 3620c16b537SWarner Losh /* ************************************** 3630c16b537SWarner Losh * Block functions 3640c16b537SWarner Losh ****************************************/ 3650c16b537SWarner Losh /*! Block functions produce and decode raw zstd blocks, without frame metadata. 3660c16b537SWarner Losh User will have to take in charge required information to regenerate data, such as block sizes. 3670c16b537SWarner Losh 3680c16b537SWarner Losh A few rules to respect : 3690c16b537SWarner Losh - Uncompressed block size must be <= 128 KB 3700c16b537SWarner Losh - Compressing or decompressing requires a context structure 3710c16b537SWarner Losh + Use ZSTDv05_createCCtx() and ZSTDv05_createDCtx() 3720c16b537SWarner Losh - It is necessary to init context before starting 3730c16b537SWarner Losh + compression : ZSTDv05_compressBegin() 3740c16b537SWarner Losh + decompression : ZSTDv05_decompressBegin() 3750c16b537SWarner Losh + variants _usingDict() are also allowed 3760c16b537SWarner Losh + copyCCtx() and copyDCtx() work too 3770c16b537SWarner Losh - When a block is considered not compressible enough, ZSTDv05_compressBlock() result will be zero. 3780c16b537SWarner Losh In which case, nothing is produced into `dst`. 3790c16b537SWarner Losh + User must test for such outcome and deal directly with uncompressed data 3800c16b537SWarner Losh + ZSTDv05_decompressBlock() doesn't accept uncompressed data as input !! 3810c16b537SWarner Losh */ 3820c16b537SWarner Losh 3830c16b537SWarner Losh size_t ZSTDv05_decompressBlock(ZSTDv05_DCtx* dctx, void* dst, size_t dstCapacity, const void* src, size_t srcSize); 3840c16b537SWarner Losh 3850c16b537SWarner Losh 3860c16b537SWarner Losh 3870c16b537SWarner Losh 3880c16b537SWarner Losh #if defined (__cplusplus) 3890c16b537SWarner Losh } 3900c16b537SWarner Losh #endif 3910c16b537SWarner Losh 3920c16b537SWarner Losh #endif /* ZSTDv05_STATIC_H */ 3930c16b537SWarner Losh 3940c16b537SWarner Losh 3950c16b537SWarner Losh /* 3960c16b537SWarner Losh zstd_internal - common functions to include 3970c16b537SWarner Losh Header File for include 3980c16b537SWarner Losh Copyright (C) 2014-2016, Yann Collet. 3990c16b537SWarner Losh 4000c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 4010c16b537SWarner Losh 4020c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 4030c16b537SWarner Losh modification, are permitted provided that the following conditions are 4040c16b537SWarner Losh met: 4050c16b537SWarner Losh * Redistributions of source code must retain the above copyright 4060c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 4070c16b537SWarner Losh * Redistributions in binary form must reproduce the above 4080c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 4090c16b537SWarner Losh in the documentation and/or other materials provided with the 4100c16b537SWarner Losh distribution. 4110c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 4120c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 4130c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 4140c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 4150c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 4160c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 4170c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 4180c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 4190c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 4200c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 4210c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 4220c16b537SWarner Losh 4230c16b537SWarner Losh You can contact the author at : 4240c16b537SWarner Losh - zstd source repository : https://github.com/Cyan4973/zstd 4250c16b537SWarner Losh */ 4260c16b537SWarner Losh #ifndef ZSTD_CCOMMON_H_MODULE 4270c16b537SWarner Losh #define ZSTD_CCOMMON_H_MODULE 4280c16b537SWarner Losh 4290c16b537SWarner Losh 4300c16b537SWarner Losh 4310c16b537SWarner Losh /*-************************************* 4320c16b537SWarner Losh * Common macros 4330c16b537SWarner Losh ***************************************/ 4340c16b537SWarner Losh #define MIN(a,b) ((a)<(b) ? (a) : (b)) 4350c16b537SWarner Losh #define MAX(a,b) ((a)>(b) ? (a) : (b)) 4360c16b537SWarner Losh 4370c16b537SWarner Losh 4380c16b537SWarner Losh /*-************************************* 4390c16b537SWarner Losh * Common constants 4400c16b537SWarner Losh ***************************************/ 4410c16b537SWarner Losh #define ZSTDv05_DICT_MAGIC 0xEC30A435 4420c16b537SWarner Losh 4430c16b537SWarner Losh #define KB *(1 <<10) 4440c16b537SWarner Losh #define MB *(1 <<20) 4450c16b537SWarner Losh #define GB *(1U<<30) 4460c16b537SWarner Losh 4470c16b537SWarner Losh #define BLOCKSIZE (128 KB) /* define, for static allocation */ 4480c16b537SWarner Losh 4490c16b537SWarner Losh static const size_t ZSTDv05_blockHeaderSize = 3; 4500c16b537SWarner Losh static const size_t ZSTDv05_frameHeaderSize_min = 5; 4510c16b537SWarner Losh #define ZSTDv05_frameHeaderSize_max 5 /* define, for static allocation */ 4520c16b537SWarner Losh 4530c16b537SWarner Losh #define BITv057 128 4540c16b537SWarner Losh #define BITv056 64 4550c16b537SWarner Losh #define BITv055 32 4560c16b537SWarner Losh #define BITv054 16 4570c16b537SWarner Losh #define BITv051 2 4580c16b537SWarner Losh #define BITv050 1 4590c16b537SWarner Losh 4600c16b537SWarner Losh #define IS_HUFv05 0 4610c16b537SWarner Losh #define IS_PCH 1 4620c16b537SWarner Losh #define IS_RAW 2 4630c16b537SWarner Losh #define IS_RLE 3 4640c16b537SWarner Losh 4650c16b537SWarner Losh #define MINMATCH 4 4660c16b537SWarner Losh #define REPCODE_STARTVALUE 1 4670c16b537SWarner Losh 4680c16b537SWarner Losh #define Litbits 8 4690c16b537SWarner Losh #define MLbits 7 4700c16b537SWarner Losh #define LLbits 6 4710c16b537SWarner Losh #define Offbits 5 4720c16b537SWarner Losh #define MaxLit ((1<<Litbits) - 1) 4730c16b537SWarner Losh #define MaxML ((1<<MLbits) - 1) 4740c16b537SWarner Losh #define MaxLL ((1<<LLbits) - 1) 4750c16b537SWarner Losh #define MaxOff ((1<<Offbits)- 1) 4760c16b537SWarner Losh #define MLFSEv05Log 10 4770c16b537SWarner Losh #define LLFSEv05Log 10 4780c16b537SWarner Losh #define OffFSEv05Log 9 4790c16b537SWarner Losh #define MaxSeq MAX(MaxLL, MaxML) 4800c16b537SWarner Losh 4810c16b537SWarner Losh #define FSEv05_ENCODING_RAW 0 4820c16b537SWarner Losh #define FSEv05_ENCODING_RLE 1 4830c16b537SWarner Losh #define FSEv05_ENCODING_STATIC 2 4840c16b537SWarner Losh #define FSEv05_ENCODING_DYNAMIC 3 4850c16b537SWarner Losh 4860c16b537SWarner Losh 4870c16b537SWarner Losh #define HufLog 12 4880c16b537SWarner Losh 4890c16b537SWarner Losh #define MIN_SEQUENCES_SIZE 1 /* nbSeq==0 */ 4900c16b537SWarner Losh #define MIN_CBLOCK_SIZE (1 /*litCSize*/ + 1 /* RLE or RAW */ + MIN_SEQUENCES_SIZE /* nbSeq==0 */) /* for a non-null block */ 4910c16b537SWarner Losh 4920c16b537SWarner Losh #define WILDCOPY_OVERLENGTH 8 4930c16b537SWarner Losh 494*2b9c00cbSConrad Meyer #define ZSTD_CONTENTSIZE_ERROR (0ULL - 2) 495*2b9c00cbSConrad Meyer 4960c16b537SWarner Losh typedef enum { bt_compressed, bt_raw, bt_rle, bt_end } blockType_t; 4970c16b537SWarner Losh 4980c16b537SWarner Losh 4990c16b537SWarner Losh /*-******************************************* 5000c16b537SWarner Losh * Shared functions to include for inlining 5010c16b537SWarner Losh *********************************************/ 5020c16b537SWarner Losh static void ZSTDv05_copy8(void* dst, const void* src) { memcpy(dst, src, 8); } 5030c16b537SWarner Losh 5040c16b537SWarner Losh #define COPY8(d,s) { ZSTDv05_copy8(d,s); d+=8; s+=8; } 5050c16b537SWarner Losh 5060c16b537SWarner Losh /*! ZSTDv05_wildcopy() : 5070c16b537SWarner Losh * custom version of memcpy(), can copy up to 7 bytes too many (8 bytes if length==0) */ 5080c16b537SWarner Losh MEM_STATIC void ZSTDv05_wildcopy(void* dst, const void* src, ptrdiff_t length) 5090c16b537SWarner Losh { 5100c16b537SWarner Losh const BYTE* ip = (const BYTE*)src; 5110c16b537SWarner Losh BYTE* op = (BYTE*)dst; 5120c16b537SWarner Losh BYTE* const oend = op + length; 5130c16b537SWarner Losh do 5140c16b537SWarner Losh COPY8(op, ip) 5150c16b537SWarner Losh while (op < oend); 5160c16b537SWarner Losh } 5170c16b537SWarner Losh 5180c16b537SWarner Losh 5190c16b537SWarner Losh /*-******************************************* 5200c16b537SWarner Losh * Private interfaces 5210c16b537SWarner Losh *********************************************/ 5220c16b537SWarner Losh typedef struct { 5230c16b537SWarner Losh void* buffer; 5240c16b537SWarner Losh U32* offsetStart; 5250c16b537SWarner Losh U32* offset; 5260c16b537SWarner Losh BYTE* offCodeStart; 5270c16b537SWarner Losh BYTE* offCode; 5280c16b537SWarner Losh BYTE* litStart; 5290c16b537SWarner Losh BYTE* lit; 5300c16b537SWarner Losh BYTE* litLengthStart; 5310c16b537SWarner Losh BYTE* litLength; 5320c16b537SWarner Losh BYTE* matchLengthStart; 5330c16b537SWarner Losh BYTE* matchLength; 5340c16b537SWarner Losh BYTE* dumpsStart; 5350c16b537SWarner Losh BYTE* dumps; 5360c16b537SWarner Losh /* opt */ 5370c16b537SWarner Losh U32* matchLengthFreq; 5380c16b537SWarner Losh U32* litLengthFreq; 5390c16b537SWarner Losh U32* litFreq; 5400c16b537SWarner Losh U32* offCodeFreq; 5410c16b537SWarner Losh U32 matchLengthSum; 5420c16b537SWarner Losh U32 litLengthSum; 5430c16b537SWarner Losh U32 litSum; 5440c16b537SWarner Losh U32 offCodeSum; 5450c16b537SWarner Losh } seqStore_t; 5460c16b537SWarner Losh 5470c16b537SWarner Losh 5480c16b537SWarner Losh 5490c16b537SWarner Losh #endif /* ZSTDv05_CCOMMON_H_MODULE */ 5500c16b537SWarner Losh /* ****************************************************************** 5510c16b537SWarner Losh FSEv05 : Finite State Entropy coder 5520c16b537SWarner Losh header file 5530c16b537SWarner Losh Copyright (C) 2013-2015, Yann Collet. 5540c16b537SWarner Losh 5550c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 5560c16b537SWarner Losh 5570c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 5580c16b537SWarner Losh modification, are permitted provided that the following conditions are 5590c16b537SWarner Losh met: 5600c16b537SWarner Losh 5610c16b537SWarner Losh * Redistributions of source code must retain the above copyright 5620c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 5630c16b537SWarner Losh * Redistributions in binary form must reproduce the above 5640c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 5650c16b537SWarner Losh in the documentation and/or other materials provided with the 5660c16b537SWarner Losh distribution. 5670c16b537SWarner Losh 5680c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 5690c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 5700c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 5710c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 5720c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 5730c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 5740c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 5750c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 5760c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 5770c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 5780c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 5790c16b537SWarner Losh 5800c16b537SWarner Losh You can contact the author at : 5810c16b537SWarner Losh - Source repository : https://github.com/Cyan4973/FiniteStateEntropy 5820c16b537SWarner Losh - Public forum : https://groups.google.com/forum/#!forum/lz4c 5830c16b537SWarner Losh ****************************************************************** */ 5840c16b537SWarner Losh #ifndef FSEv05_H 5850c16b537SWarner Losh #define FSEv05_H 5860c16b537SWarner Losh 5870c16b537SWarner Losh #if defined (__cplusplus) 5880c16b537SWarner Losh extern "C" { 5890c16b537SWarner Losh #endif 5900c16b537SWarner Losh 5910c16b537SWarner Losh 5920c16b537SWarner Losh /* ***************************************** 5930c16b537SWarner Losh * Includes 5940c16b537SWarner Losh ******************************************/ 5950c16b537SWarner Losh #include <stddef.h> /* size_t, ptrdiff_t */ 5960c16b537SWarner Losh 5970c16b537SWarner Losh 5980c16b537SWarner Losh /*-**************************************** 5990c16b537SWarner Losh * FSEv05 simple functions 6000c16b537SWarner Losh ******************************************/ 6010c16b537SWarner Losh size_t FSEv05_decompress(void* dst, size_t maxDstSize, 6020c16b537SWarner Losh const void* cSrc, size_t cSrcSize); 6030c16b537SWarner Losh /*! 6040c16b537SWarner Losh FSEv05_decompress(): 6050c16b537SWarner Losh Decompress FSEv05 data from buffer 'cSrc', of size 'cSrcSize', 6060c16b537SWarner Losh into already allocated destination buffer 'dst', of size 'maxDstSize'. 6070c16b537SWarner Losh return : size of regenerated data (<= maxDstSize) 6080c16b537SWarner Losh or an error code, which can be tested using FSEv05_isError() 6090c16b537SWarner Losh 6100c16b537SWarner Losh ** Important ** : FSEv05_decompress() doesn't decompress non-compressible nor RLE data !!! 6110c16b537SWarner Losh Why ? : making this distinction requires a header. 6120c16b537SWarner Losh Header management is intentionally delegated to the user layer, which can better manage special cases. 6130c16b537SWarner Losh */ 6140c16b537SWarner Losh 6150c16b537SWarner Losh 6160c16b537SWarner Losh /* ***************************************** 6170c16b537SWarner Losh * Tool functions 6180c16b537SWarner Losh ******************************************/ 6190c16b537SWarner Losh /* Error Management */ 6200c16b537SWarner Losh unsigned FSEv05_isError(size_t code); /* tells if a return value is an error code */ 6210c16b537SWarner Losh const char* FSEv05_getErrorName(size_t code); /* provides error code string (useful for debugging) */ 6220c16b537SWarner Losh 6230c16b537SWarner Losh 6240c16b537SWarner Losh 6250c16b537SWarner Losh 6260c16b537SWarner Losh /* ***************************************** 6270c16b537SWarner Losh * FSEv05 detailed API 6280c16b537SWarner Losh ******************************************/ 6290c16b537SWarner Losh /* *** DECOMPRESSION *** */ 6300c16b537SWarner Losh 6310c16b537SWarner Losh /*! 6320c16b537SWarner Losh FSEv05_readNCount(): 6330c16b537SWarner Losh Read compactly saved 'normalizedCounter' from 'rBuffer'. 6340c16b537SWarner Losh return : size read from 'rBuffer' 6350c16b537SWarner Losh or an errorCode, which can be tested using FSEv05_isError() 6360c16b537SWarner Losh maxSymbolValuePtr[0] and tableLogPtr[0] will also be updated with their respective values */ 6370c16b537SWarner Losh size_t FSEv05_readNCount (short* normalizedCounter, unsigned* maxSymbolValuePtr, unsigned* tableLogPtr, const void* rBuffer, size_t rBuffSize); 6380c16b537SWarner Losh 6390c16b537SWarner Losh /*! 6400c16b537SWarner Losh Constructor and Destructor of type FSEv05_DTable 6410c16b537SWarner Losh Note that its size depends on 'tableLog' */ 6420c16b537SWarner Losh typedef unsigned FSEv05_DTable; /* don't allocate that. It's just a way to be more restrictive than void* */ 6430c16b537SWarner Losh FSEv05_DTable* FSEv05_createDTable(unsigned tableLog); 6440c16b537SWarner Losh void FSEv05_freeDTable(FSEv05_DTable* dt); 6450c16b537SWarner Losh 6460c16b537SWarner Losh /*! 6470c16b537SWarner Losh FSEv05_buildDTable(): 6480c16b537SWarner Losh Builds 'dt', which must be already allocated, using FSEv05_createDTable() 6490c16b537SWarner Losh @return : 0, 6500c16b537SWarner Losh or an errorCode, which can be tested using FSEv05_isError() */ 6510c16b537SWarner Losh size_t FSEv05_buildDTable (FSEv05_DTable* dt, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog); 6520c16b537SWarner Losh 6530c16b537SWarner Losh /*! 6540c16b537SWarner Losh FSEv05_decompress_usingDTable(): 6550c16b537SWarner Losh Decompress compressed source @cSrc of size @cSrcSize using `dt` 6560c16b537SWarner Losh into `dst` which must be already allocated. 6570c16b537SWarner Losh @return : size of regenerated data (necessarily <= @dstCapacity) 6580c16b537SWarner Losh or an errorCode, which can be tested using FSEv05_isError() */ 6590c16b537SWarner Losh size_t FSEv05_decompress_usingDTable(void* dst, size_t dstCapacity, const void* cSrc, size_t cSrcSize, const FSEv05_DTable* dt); 6600c16b537SWarner Losh 6610c16b537SWarner Losh 6620c16b537SWarner Losh 6630c16b537SWarner Losh #if defined (__cplusplus) 6640c16b537SWarner Losh } 6650c16b537SWarner Losh #endif 6660c16b537SWarner Losh 6670c16b537SWarner Losh #endif /* FSEv05_H */ 6680c16b537SWarner Losh /* ****************************************************************** 6690c16b537SWarner Losh bitstream 6700c16b537SWarner Losh Part of FSEv05 library 6710c16b537SWarner Losh header file (to include) 6720c16b537SWarner Losh Copyright (C) 2013-2016, Yann Collet. 6730c16b537SWarner Losh 6740c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 6750c16b537SWarner Losh 6760c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 6770c16b537SWarner Losh modification, are permitted provided that the following conditions are 6780c16b537SWarner Losh met: 6790c16b537SWarner Losh 6800c16b537SWarner Losh * Redistributions of source code must retain the above copyright 6810c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 6820c16b537SWarner Losh * Redistributions in binary form must reproduce the above 6830c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 6840c16b537SWarner Losh in the documentation and/or other materials provided with the 6850c16b537SWarner Losh distribution. 6860c16b537SWarner Losh 6870c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 6880c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 6890c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 6900c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 6910c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 6920c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 6930c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 6940c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 6950c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 6960c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 6970c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 6980c16b537SWarner Losh 6990c16b537SWarner Losh You can contact the author at : 7000c16b537SWarner Losh - Source repository : https://github.com/Cyan4973/FiniteStateEntropy 7010c16b537SWarner Losh ****************************************************************** */ 7020c16b537SWarner Losh #ifndef BITv05STREAM_H_MODULE 7030c16b537SWarner Losh #define BITv05STREAM_H_MODULE 7040c16b537SWarner Losh 7050c16b537SWarner Losh #if defined (__cplusplus) 7060c16b537SWarner Losh extern "C" { 7070c16b537SWarner Losh #endif 7080c16b537SWarner Losh 7090c16b537SWarner Losh 7100c16b537SWarner Losh /* 7110c16b537SWarner Losh * This API consists of small unitary functions, which highly benefit from being inlined. 7120c16b537SWarner Losh * Since link-time-optimization is not available for all compilers, 7130c16b537SWarner Losh * these functions are defined into a .h to be included. 7140c16b537SWarner Losh */ 7150c16b537SWarner Losh 7160c16b537SWarner Losh 7170c16b537SWarner Losh 7180c16b537SWarner Losh /*-******************************************** 7190c16b537SWarner Losh * bitStream decoding API (read backward) 7200c16b537SWarner Losh **********************************************/ 7210c16b537SWarner Losh typedef struct 7220c16b537SWarner Losh { 7230c16b537SWarner Losh size_t bitContainer; 7240c16b537SWarner Losh unsigned bitsConsumed; 7250c16b537SWarner Losh const char* ptr; 7260c16b537SWarner Losh const char* start; 7270c16b537SWarner Losh } BITv05_DStream_t; 7280c16b537SWarner Losh 7290c16b537SWarner Losh typedef enum { BITv05_DStream_unfinished = 0, 7300c16b537SWarner Losh BITv05_DStream_endOfBuffer = 1, 7310c16b537SWarner Losh BITv05_DStream_completed = 2, 7320c16b537SWarner Losh BITv05_DStream_overflow = 3 } BITv05_DStream_status; /* result of BITv05_reloadDStream() */ 7330c16b537SWarner Losh /* 1,2,4,8 would be better for bitmap combinations, but slows down performance a bit ... :( */ 7340c16b537SWarner Losh 7350c16b537SWarner Losh MEM_STATIC size_t BITv05_initDStream(BITv05_DStream_t* bitD, const void* srcBuffer, size_t srcSize); 7360c16b537SWarner Losh MEM_STATIC size_t BITv05_readBits(BITv05_DStream_t* bitD, unsigned nbBits); 7370c16b537SWarner Losh MEM_STATIC BITv05_DStream_status BITv05_reloadDStream(BITv05_DStream_t* bitD); 7380c16b537SWarner Losh MEM_STATIC unsigned BITv05_endOfDStream(const BITv05_DStream_t* bitD); 7390c16b537SWarner Losh 7400c16b537SWarner Losh 7410c16b537SWarner Losh /*-**************************************** 7420c16b537SWarner Losh * unsafe API 7430c16b537SWarner Losh ******************************************/ 7440c16b537SWarner Losh MEM_STATIC size_t BITv05_readBitsFast(BITv05_DStream_t* bitD, unsigned nbBits); 7450c16b537SWarner Losh /* faster, but works only if nbBits >= 1 */ 7460c16b537SWarner Losh 7470c16b537SWarner Losh 7480c16b537SWarner Losh 7490c16b537SWarner Losh /*-************************************************************** 7500c16b537SWarner Losh * Helper functions 7510c16b537SWarner Losh ****************************************************************/ 752052d3c12SConrad Meyer MEM_STATIC unsigned BITv05_highbit32 (U32 val) 7530c16b537SWarner Losh { 7540c16b537SWarner Losh # if defined(_MSC_VER) /* Visual */ 7550c16b537SWarner Losh unsigned long r=0; 7560c16b537SWarner Losh _BitScanReverse ( &r, val ); 7570c16b537SWarner Losh return (unsigned) r; 7580c16b537SWarner Losh # elif defined(__GNUC__) && (__GNUC__ >= 3) /* Use GCC Intrinsic */ 7590c16b537SWarner Losh return 31 - __builtin_clz (val); 7600c16b537SWarner Losh # else /* Software version */ 7610c16b537SWarner Losh static const unsigned DeBruijnClz[32] = { 0, 9, 1, 10, 13, 21, 2, 29, 11, 14, 16, 18, 22, 25, 3, 30, 8, 12, 20, 28, 15, 17, 24, 7, 19, 27, 23, 6, 26, 5, 4, 31 }; 7620c16b537SWarner Losh U32 v = val; 7630c16b537SWarner Losh unsigned r; 7640c16b537SWarner Losh v |= v >> 1; 7650c16b537SWarner Losh v |= v >> 2; 7660c16b537SWarner Losh v |= v >> 4; 7670c16b537SWarner Losh v |= v >> 8; 7680c16b537SWarner Losh v |= v >> 16; 7690c16b537SWarner Losh r = DeBruijnClz[ (U32) (v * 0x07C4ACDDU) >> 27]; 7700c16b537SWarner Losh return r; 7710c16b537SWarner Losh # endif 7720c16b537SWarner Losh } 7730c16b537SWarner Losh 7740c16b537SWarner Losh 7750c16b537SWarner Losh 7760c16b537SWarner Losh /*-******************************************************** 7770c16b537SWarner Losh * bitStream decoding 7780c16b537SWarner Losh **********************************************************/ 7790c16b537SWarner Losh /*!BITv05_initDStream 7800c16b537SWarner Losh * Initialize a BITv05_DStream_t. 7810c16b537SWarner Losh * @bitD : a pointer to an already allocated BITv05_DStream_t structure 7820c16b537SWarner Losh * @srcBuffer must point at the beginning of a bitStream 7830c16b537SWarner Losh * @srcSize must be the exact size of the bitStream 7840c16b537SWarner Losh * @result : size of stream (== srcSize) or an errorCode if a problem is detected 7850c16b537SWarner Losh */ 7860c16b537SWarner Losh MEM_STATIC size_t BITv05_initDStream(BITv05_DStream_t* bitD, const void* srcBuffer, size_t srcSize) 7870c16b537SWarner Losh { 7880c16b537SWarner Losh if (srcSize < 1) { memset(bitD, 0, sizeof(*bitD)); return ERROR(srcSize_wrong); } 7890c16b537SWarner Losh 7900c16b537SWarner Losh if (srcSize >= sizeof(size_t)) { /* normal case */ 7910c16b537SWarner Losh U32 contain32; 7920c16b537SWarner Losh bitD->start = (const char*)srcBuffer; 7930c16b537SWarner Losh bitD->ptr = (const char*)srcBuffer + srcSize - sizeof(size_t); 7940c16b537SWarner Losh bitD->bitContainer = MEM_readLEST(bitD->ptr); 7950c16b537SWarner Losh contain32 = ((const BYTE*)srcBuffer)[srcSize-1]; 7960c16b537SWarner Losh if (contain32 == 0) return ERROR(GENERIC); /* endMark not present */ 7970c16b537SWarner Losh bitD->bitsConsumed = 8 - BITv05_highbit32(contain32); 7980c16b537SWarner Losh } else { 7990c16b537SWarner Losh U32 contain32; 8000c16b537SWarner Losh bitD->start = (const char*)srcBuffer; 8010c16b537SWarner Losh bitD->ptr = bitD->start; 8020c16b537SWarner Losh bitD->bitContainer = *(const BYTE*)(bitD->start); 8030c16b537SWarner Losh switch(srcSize) 8040c16b537SWarner Losh { 8050c16b537SWarner Losh case 7: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[6]) << (sizeof(size_t)*8 - 16);/* fall-through */ 8060c16b537SWarner Losh case 6: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[5]) << (sizeof(size_t)*8 - 24);/* fall-through */ 8070c16b537SWarner Losh case 5: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[4]) << (sizeof(size_t)*8 - 32);/* fall-through */ 8080c16b537SWarner Losh case 4: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[3]) << 24; /* fall-through */ 8090c16b537SWarner Losh case 3: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[2]) << 16; /* fall-through */ 8100c16b537SWarner Losh case 2: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[1]) << 8; /* fall-through */ 8110c16b537SWarner Losh default: break; 8120c16b537SWarner Losh } 8130c16b537SWarner Losh contain32 = ((const BYTE*)srcBuffer)[srcSize-1]; 8140c16b537SWarner Losh if (contain32 == 0) return ERROR(GENERIC); /* endMark not present */ 8150c16b537SWarner Losh bitD->bitsConsumed = 8 - BITv05_highbit32(contain32); 8160c16b537SWarner Losh bitD->bitsConsumed += (U32)(sizeof(size_t) - srcSize)*8; 8170c16b537SWarner Losh } 8180c16b537SWarner Losh 8190c16b537SWarner Losh return srcSize; 8200c16b537SWarner Losh } 8210c16b537SWarner Losh 8220c16b537SWarner Losh MEM_STATIC size_t BITv05_lookBits(BITv05_DStream_t* bitD, U32 nbBits) 8230c16b537SWarner Losh { 8240c16b537SWarner Losh const U32 bitMask = sizeof(bitD->bitContainer)*8 - 1; 8250c16b537SWarner Losh return ((bitD->bitContainer << (bitD->bitsConsumed & bitMask)) >> 1) >> ((bitMask-nbBits) & bitMask); 8260c16b537SWarner Losh } 8270c16b537SWarner Losh 8280c16b537SWarner Losh /*! BITv05_lookBitsFast : 8290c16b537SWarner Losh * unsafe version; only works only if nbBits >= 1 */ 8300c16b537SWarner Losh MEM_STATIC size_t BITv05_lookBitsFast(BITv05_DStream_t* bitD, U32 nbBits) 8310c16b537SWarner Losh { 8320c16b537SWarner Losh const U32 bitMask = sizeof(bitD->bitContainer)*8 - 1; 8330c16b537SWarner Losh return (bitD->bitContainer << (bitD->bitsConsumed & bitMask)) >> (((bitMask+1)-nbBits) & bitMask); 8340c16b537SWarner Losh } 8350c16b537SWarner Losh 8360c16b537SWarner Losh MEM_STATIC void BITv05_skipBits(BITv05_DStream_t* bitD, U32 nbBits) 8370c16b537SWarner Losh { 8380c16b537SWarner Losh bitD->bitsConsumed += nbBits; 8390c16b537SWarner Losh } 8400c16b537SWarner Losh 841a0483764SConrad Meyer MEM_STATIC size_t BITv05_readBits(BITv05_DStream_t* bitD, unsigned nbBits) 8420c16b537SWarner Losh { 8430c16b537SWarner Losh size_t value = BITv05_lookBits(bitD, nbBits); 8440c16b537SWarner Losh BITv05_skipBits(bitD, nbBits); 8450c16b537SWarner Losh return value; 8460c16b537SWarner Losh } 8470c16b537SWarner Losh 8480c16b537SWarner Losh /*!BITv05_readBitsFast : 8490c16b537SWarner Losh * unsafe version; only works only if nbBits >= 1 */ 850a0483764SConrad Meyer MEM_STATIC size_t BITv05_readBitsFast(BITv05_DStream_t* bitD, unsigned nbBits) 8510c16b537SWarner Losh { 8520c16b537SWarner Losh size_t value = BITv05_lookBitsFast(bitD, nbBits); 8530c16b537SWarner Losh BITv05_skipBits(bitD, nbBits); 8540c16b537SWarner Losh return value; 8550c16b537SWarner Losh } 8560c16b537SWarner Losh 8570c16b537SWarner Losh MEM_STATIC BITv05_DStream_status BITv05_reloadDStream(BITv05_DStream_t* bitD) 8580c16b537SWarner Losh { 8590c16b537SWarner Losh if (bitD->bitsConsumed > (sizeof(bitD->bitContainer)*8)) /* should never happen */ 8600c16b537SWarner Losh return BITv05_DStream_overflow; 8610c16b537SWarner Losh 8620c16b537SWarner Losh if (bitD->ptr >= bitD->start + sizeof(bitD->bitContainer)) { 8630c16b537SWarner Losh bitD->ptr -= bitD->bitsConsumed >> 3; 8640c16b537SWarner Losh bitD->bitsConsumed &= 7; 8650c16b537SWarner Losh bitD->bitContainer = MEM_readLEST(bitD->ptr); 8660c16b537SWarner Losh return BITv05_DStream_unfinished; 8670c16b537SWarner Losh } 8680c16b537SWarner Losh if (bitD->ptr == bitD->start) { 8690c16b537SWarner Losh if (bitD->bitsConsumed < sizeof(bitD->bitContainer)*8) return BITv05_DStream_endOfBuffer; 8700c16b537SWarner Losh return BITv05_DStream_completed; 8710c16b537SWarner Losh } 8720c16b537SWarner Losh { 8730c16b537SWarner Losh U32 nbBytes = bitD->bitsConsumed >> 3; 8740c16b537SWarner Losh BITv05_DStream_status result = BITv05_DStream_unfinished; 8750c16b537SWarner Losh if (bitD->ptr - nbBytes < bitD->start) { 8760c16b537SWarner Losh nbBytes = (U32)(bitD->ptr - bitD->start); /* ptr > start */ 8770c16b537SWarner Losh result = BITv05_DStream_endOfBuffer; 8780c16b537SWarner Losh } 8790c16b537SWarner Losh bitD->ptr -= nbBytes; 8800c16b537SWarner Losh bitD->bitsConsumed -= nbBytes*8; 8810c16b537SWarner Losh bitD->bitContainer = MEM_readLEST(bitD->ptr); /* reminder : srcSize > sizeof(bitD) */ 8820c16b537SWarner Losh return result; 8830c16b537SWarner Losh } 8840c16b537SWarner Losh } 8850c16b537SWarner Losh 8860c16b537SWarner Losh /*! BITv05_endOfDStream 8870c16b537SWarner Losh * @return Tells if DStream has reached its exact end 8880c16b537SWarner Losh */ 8890c16b537SWarner Losh MEM_STATIC unsigned BITv05_endOfDStream(const BITv05_DStream_t* DStream) 8900c16b537SWarner Losh { 8910c16b537SWarner Losh return ((DStream->ptr == DStream->start) && (DStream->bitsConsumed == sizeof(DStream->bitContainer)*8)); 8920c16b537SWarner Losh } 8930c16b537SWarner Losh 8940c16b537SWarner Losh #if defined (__cplusplus) 8950c16b537SWarner Losh } 8960c16b537SWarner Losh #endif 8970c16b537SWarner Losh 8980c16b537SWarner Losh #endif /* BITv05STREAM_H_MODULE */ 8990c16b537SWarner Losh /* ****************************************************************** 9000c16b537SWarner Losh FSEv05 : Finite State Entropy coder 9010c16b537SWarner Losh header file for static linking (only) 9020c16b537SWarner Losh Copyright (C) 2013-2015, Yann Collet 9030c16b537SWarner Losh 9040c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 9050c16b537SWarner Losh 9060c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 9070c16b537SWarner Losh modification, are permitted provided that the following conditions are 9080c16b537SWarner Losh met: 9090c16b537SWarner Losh 9100c16b537SWarner Losh * Redistributions of source code must retain the above copyright 9110c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 9120c16b537SWarner Losh * Redistributions in binary form must reproduce the above 9130c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 9140c16b537SWarner Losh in the documentation and/or other materials provided with the 9150c16b537SWarner Losh distribution. 9160c16b537SWarner Losh 9170c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 9180c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 9190c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 9200c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 9210c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 9220c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 9230c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 9240c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 9250c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 9260c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 9270c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 9280c16b537SWarner Losh 9290c16b537SWarner Losh You can contact the author at : 9300c16b537SWarner Losh - Source repository : https://github.com/Cyan4973/FiniteStateEntropy 9310c16b537SWarner Losh - Public forum : https://groups.google.com/forum/#!forum/lz4c 9320c16b537SWarner Losh ****************************************************************** */ 9330c16b537SWarner Losh #ifndef FSEv05_STATIC_H 9340c16b537SWarner Losh #define FSEv05_STATIC_H 9350c16b537SWarner Losh 9360c16b537SWarner Losh #if defined (__cplusplus) 9370c16b537SWarner Losh extern "C" { 9380c16b537SWarner Losh #endif 9390c16b537SWarner Losh 9400c16b537SWarner Losh 9410c16b537SWarner Losh 9420c16b537SWarner Losh /* ***************************************** 9430c16b537SWarner Losh * Static allocation 9440c16b537SWarner Losh *******************************************/ 9450c16b537SWarner Losh /* It is possible to statically allocate FSEv05 CTable/DTable as a table of unsigned using below macros */ 9460c16b537SWarner Losh #define FSEv05_DTABLE_SIZE_U32(maxTableLog) (1 + (1<<maxTableLog)) 9470c16b537SWarner Losh 9480c16b537SWarner Losh 9490c16b537SWarner Losh /* ***************************************** 9500c16b537SWarner Losh * FSEv05 advanced API 9510c16b537SWarner Losh *******************************************/ 9520c16b537SWarner Losh size_t FSEv05_buildDTable_raw (FSEv05_DTable* dt, unsigned nbBits); 9530c16b537SWarner Losh /* build a fake FSEv05_DTable, designed to read an uncompressed bitstream where each symbol uses nbBits */ 9540c16b537SWarner Losh 9550c16b537SWarner Losh size_t FSEv05_buildDTable_rle (FSEv05_DTable* dt, unsigned char symbolValue); 9560c16b537SWarner Losh /* build a fake FSEv05_DTable, designed to always generate the same symbolValue */ 9570c16b537SWarner Losh 9580c16b537SWarner Losh 9590c16b537SWarner Losh 9600c16b537SWarner Losh /* ***************************************** 9610c16b537SWarner Losh * FSEv05 symbol decompression API 9620c16b537SWarner Losh *******************************************/ 9630c16b537SWarner Losh typedef struct 9640c16b537SWarner Losh { 9650c16b537SWarner Losh size_t state; 9660c16b537SWarner Losh const void* table; /* precise table may vary, depending on U16 */ 9670c16b537SWarner Losh } FSEv05_DState_t; 9680c16b537SWarner Losh 9690c16b537SWarner Losh 9700c16b537SWarner Losh static void FSEv05_initDState(FSEv05_DState_t* DStatePtr, BITv05_DStream_t* bitD, const FSEv05_DTable* dt); 9710c16b537SWarner Losh 9720c16b537SWarner Losh static unsigned char FSEv05_decodeSymbol(FSEv05_DState_t* DStatePtr, BITv05_DStream_t* bitD); 9730c16b537SWarner Losh 9740c16b537SWarner Losh static unsigned FSEv05_endOfDState(const FSEv05_DState_t* DStatePtr); 9750c16b537SWarner Losh 9760c16b537SWarner Losh 9770c16b537SWarner Losh 9780c16b537SWarner Losh /* ***************************************** 9790c16b537SWarner Losh * FSEv05 unsafe API 9800c16b537SWarner Losh *******************************************/ 9810c16b537SWarner Losh static unsigned char FSEv05_decodeSymbolFast(FSEv05_DState_t* DStatePtr, BITv05_DStream_t* bitD); 9820c16b537SWarner Losh /* faster, but works only if nbBits is always >= 1 (otherwise, result will be corrupted) */ 9830c16b537SWarner Losh 9840c16b537SWarner Losh 9850c16b537SWarner Losh /* ***************************************** 9860c16b537SWarner Losh * Implementation of inlined functions 9870c16b537SWarner Losh *******************************************/ 9880c16b537SWarner Losh /* decompression */ 9890c16b537SWarner Losh 9900c16b537SWarner Losh typedef struct { 9910c16b537SWarner Losh U16 tableLog; 9920c16b537SWarner Losh U16 fastMode; 9930c16b537SWarner Losh } FSEv05_DTableHeader; /* sizeof U32 */ 9940c16b537SWarner Losh 9950c16b537SWarner Losh typedef struct 9960c16b537SWarner Losh { 9970c16b537SWarner Losh unsigned short newState; 9980c16b537SWarner Losh unsigned char symbol; 9990c16b537SWarner Losh unsigned char nbBits; 10000c16b537SWarner Losh } FSEv05_decode_t; /* size == U32 */ 10010c16b537SWarner Losh 10020c16b537SWarner Losh MEM_STATIC void FSEv05_initDState(FSEv05_DState_t* DStatePtr, BITv05_DStream_t* bitD, const FSEv05_DTable* dt) 10030c16b537SWarner Losh { 10040c16b537SWarner Losh const void* ptr = dt; 10050c16b537SWarner Losh const FSEv05_DTableHeader* const DTableH = (const FSEv05_DTableHeader*)ptr; 10060c16b537SWarner Losh DStatePtr->state = BITv05_readBits(bitD, DTableH->tableLog); 10070c16b537SWarner Losh BITv05_reloadDStream(bitD); 10080c16b537SWarner Losh DStatePtr->table = dt + 1; 10090c16b537SWarner Losh } 10100c16b537SWarner Losh 10110c16b537SWarner Losh MEM_STATIC BYTE FSEv05_peakSymbol(FSEv05_DState_t* DStatePtr) 10120c16b537SWarner Losh { 10130c16b537SWarner Losh const FSEv05_decode_t DInfo = ((const FSEv05_decode_t*)(DStatePtr->table))[DStatePtr->state]; 10140c16b537SWarner Losh return DInfo.symbol; 10150c16b537SWarner Losh } 10160c16b537SWarner Losh 10170c16b537SWarner Losh MEM_STATIC BYTE FSEv05_decodeSymbol(FSEv05_DState_t* DStatePtr, BITv05_DStream_t* bitD) 10180c16b537SWarner Losh { 10190c16b537SWarner Losh const FSEv05_decode_t DInfo = ((const FSEv05_decode_t*)(DStatePtr->table))[DStatePtr->state]; 10200c16b537SWarner Losh const U32 nbBits = DInfo.nbBits; 10210c16b537SWarner Losh BYTE symbol = DInfo.symbol; 10220c16b537SWarner Losh size_t lowBits = BITv05_readBits(bitD, nbBits); 10230c16b537SWarner Losh 10240c16b537SWarner Losh DStatePtr->state = DInfo.newState + lowBits; 10250c16b537SWarner Losh return symbol; 10260c16b537SWarner Losh } 10270c16b537SWarner Losh 10280c16b537SWarner Losh MEM_STATIC BYTE FSEv05_decodeSymbolFast(FSEv05_DState_t* DStatePtr, BITv05_DStream_t* bitD) 10290c16b537SWarner Losh { 10300c16b537SWarner Losh const FSEv05_decode_t DInfo = ((const FSEv05_decode_t*)(DStatePtr->table))[DStatePtr->state]; 10310c16b537SWarner Losh const U32 nbBits = DInfo.nbBits; 10320c16b537SWarner Losh BYTE symbol = DInfo.symbol; 10330c16b537SWarner Losh size_t lowBits = BITv05_readBitsFast(bitD, nbBits); 10340c16b537SWarner Losh 10350c16b537SWarner Losh DStatePtr->state = DInfo.newState + lowBits; 10360c16b537SWarner Losh return symbol; 10370c16b537SWarner Losh } 10380c16b537SWarner Losh 10390c16b537SWarner Losh MEM_STATIC unsigned FSEv05_endOfDState(const FSEv05_DState_t* DStatePtr) 10400c16b537SWarner Losh { 10410c16b537SWarner Losh return DStatePtr->state == 0; 10420c16b537SWarner Losh } 10430c16b537SWarner Losh 10440c16b537SWarner Losh 10450c16b537SWarner Losh #if defined (__cplusplus) 10460c16b537SWarner Losh } 10470c16b537SWarner Losh #endif 10480c16b537SWarner Losh 10490c16b537SWarner Losh #endif /* FSEv05_STATIC_H */ 10500c16b537SWarner Losh /* ****************************************************************** 10510c16b537SWarner Losh FSEv05 : Finite State Entropy coder 10520c16b537SWarner Losh Copyright (C) 2013-2015, Yann Collet. 10530c16b537SWarner Losh 10540c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 10550c16b537SWarner Losh 10560c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 10570c16b537SWarner Losh modification, are permitted provided that the following conditions are 10580c16b537SWarner Losh met: 10590c16b537SWarner Losh 10600c16b537SWarner Losh * Redistributions of source code must retain the above copyright 10610c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 10620c16b537SWarner Losh * Redistributions in binary form must reproduce the above 10630c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 10640c16b537SWarner Losh in the documentation and/or other materials provided with the 10650c16b537SWarner Losh distribution. 10660c16b537SWarner Losh 10670c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 10680c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 10690c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 10700c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 10710c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 10720c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 10730c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 10740c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 10750c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 10760c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 10770c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 10780c16b537SWarner Losh 10790c16b537SWarner Losh You can contact the author at : 10800c16b537SWarner Losh - FSEv05 source repository : https://github.com/Cyan4973/FiniteStateEntropy 10810c16b537SWarner Losh - Public forum : https://groups.google.com/forum/#!forum/lz4c 10820c16b537SWarner Losh ****************************************************************** */ 10830c16b537SWarner Losh 10840c16b537SWarner Losh #ifndef FSEv05_COMMONDEFS_ONLY 10850c16b537SWarner Losh 10860c16b537SWarner Losh /* ************************************************************** 10870c16b537SWarner Losh * Tuning parameters 10880c16b537SWarner Losh ****************************************************************/ 10890c16b537SWarner Losh /*!MEMORY_USAGE : 10900c16b537SWarner Losh * Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.) 10910c16b537SWarner Losh * Increasing memory usage improves compression ratio 10920c16b537SWarner Losh * Reduced memory usage can improve speed, due to cache effect 10930c16b537SWarner Losh * Recommended max value is 14, for 16KB, which nicely fits into Intel x86 L1 cache */ 10940c16b537SWarner Losh #define FSEv05_MAX_MEMORY_USAGE 14 10950c16b537SWarner Losh #define FSEv05_DEFAULT_MEMORY_USAGE 13 10960c16b537SWarner Losh 10970c16b537SWarner Losh /*!FSEv05_MAX_SYMBOL_VALUE : 10980c16b537SWarner Losh * Maximum symbol value authorized. 10990c16b537SWarner Losh * Required for proper stack allocation */ 11000c16b537SWarner Losh #define FSEv05_MAX_SYMBOL_VALUE 255 11010c16b537SWarner Losh 11020c16b537SWarner Losh 11030c16b537SWarner Losh /* ************************************************************** 11040c16b537SWarner Losh * template functions type & suffix 11050c16b537SWarner Losh ****************************************************************/ 11060c16b537SWarner Losh #define FSEv05_FUNCTION_TYPE BYTE 11070c16b537SWarner Losh #define FSEv05_FUNCTION_EXTENSION 11080c16b537SWarner Losh #define FSEv05_DECODE_TYPE FSEv05_decode_t 11090c16b537SWarner Losh 11100c16b537SWarner Losh 11110c16b537SWarner Losh #endif /* !FSEv05_COMMONDEFS_ONLY */ 11120c16b537SWarner Losh 11130c16b537SWarner Losh /* ************************************************************** 11140c16b537SWarner Losh * Compiler specifics 11150c16b537SWarner Losh ****************************************************************/ 11160c16b537SWarner Losh #ifdef _MSC_VER /* Visual Studio */ 11170c16b537SWarner Losh # define FORCE_INLINE static __forceinline 11180c16b537SWarner Losh # include <intrin.h> /* For Visual 2005 */ 11190c16b537SWarner Losh # pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */ 11200c16b537SWarner Losh # pragma warning(disable : 4214) /* disable: C4214: non-int bitfields */ 11210c16b537SWarner Losh #else 11220c16b537SWarner Losh # if defined (__cplusplus) || defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L /* C99 */ 11230c16b537SWarner Losh # ifdef __GNUC__ 11240c16b537SWarner Losh # define FORCE_INLINE static inline __attribute__((always_inline)) 11250c16b537SWarner Losh # else 11260c16b537SWarner Losh # define FORCE_INLINE static inline 11270c16b537SWarner Losh # endif 11280c16b537SWarner Losh # else 11290c16b537SWarner Losh # define FORCE_INLINE static 11300c16b537SWarner Losh # endif /* __STDC_VERSION__ */ 11310c16b537SWarner Losh #endif 11320c16b537SWarner Losh 11330c16b537SWarner Losh 11340c16b537SWarner Losh /* ************************************************************** 11350c16b537SWarner Losh * Includes 11360c16b537SWarner Losh ****************************************************************/ 11370c16b537SWarner Losh #include <stdlib.h> /* malloc, free, qsort */ 11380c16b537SWarner Losh #include <string.h> /* memcpy, memset */ 11390c16b537SWarner Losh #include <stdio.h> /* printf (debug) */ 11400c16b537SWarner Losh 11410c16b537SWarner Losh 11420c16b537SWarner Losh 11430c16b537SWarner Losh /* *************************************************************** 11440c16b537SWarner Losh * Constants 11450c16b537SWarner Losh *****************************************************************/ 11460c16b537SWarner Losh #define FSEv05_MAX_TABLELOG (FSEv05_MAX_MEMORY_USAGE-2) 11470c16b537SWarner Losh #define FSEv05_MAX_TABLESIZE (1U<<FSEv05_MAX_TABLELOG) 11480c16b537SWarner Losh #define FSEv05_MAXTABLESIZE_MASK (FSEv05_MAX_TABLESIZE-1) 11490c16b537SWarner Losh #define FSEv05_DEFAULT_TABLELOG (FSEv05_DEFAULT_MEMORY_USAGE-2) 11500c16b537SWarner Losh #define FSEv05_MIN_TABLELOG 5 11510c16b537SWarner Losh 11520c16b537SWarner Losh #define FSEv05_TABLELOG_ABSOLUTE_MAX 15 11530c16b537SWarner Losh #if FSEv05_MAX_TABLELOG > FSEv05_TABLELOG_ABSOLUTE_MAX 11540c16b537SWarner Losh #error "FSEv05_MAX_TABLELOG > FSEv05_TABLELOG_ABSOLUTE_MAX is not supported" 11550c16b537SWarner Losh #endif 11560c16b537SWarner Losh 11570c16b537SWarner Losh 11580c16b537SWarner Losh /* ************************************************************** 11590c16b537SWarner Losh * Error Management 11600c16b537SWarner Losh ****************************************************************/ 11610c16b537SWarner Losh #define FSEv05_STATIC_ASSERT(c) { enum { FSEv05_static_assert = 1/(int)(!!(c)) }; } /* use only *after* variable declarations */ 11620c16b537SWarner Losh 11630c16b537SWarner Losh 11640c16b537SWarner Losh /* ************************************************************** 11650c16b537SWarner Losh * Complex types 11660c16b537SWarner Losh ****************************************************************/ 1167a0483764SConrad Meyer typedef unsigned DTable_max_t[FSEv05_DTABLE_SIZE_U32(FSEv05_MAX_TABLELOG)]; 11680c16b537SWarner Losh 11690c16b537SWarner Losh 11700c16b537SWarner Losh /* ************************************************************** 11710c16b537SWarner Losh * Templates 11720c16b537SWarner Losh ****************************************************************/ 11730c16b537SWarner Losh /* 11740c16b537SWarner Losh designed to be included 11750c16b537SWarner Losh for type-specific functions (template emulation in C) 11760c16b537SWarner Losh Objective is to write these functions only once, for improved maintenance 11770c16b537SWarner Losh */ 11780c16b537SWarner Losh 11790c16b537SWarner Losh /* safety checks */ 11800c16b537SWarner Losh #ifndef FSEv05_FUNCTION_EXTENSION 11810c16b537SWarner Losh # error "FSEv05_FUNCTION_EXTENSION must be defined" 11820c16b537SWarner Losh #endif 11830c16b537SWarner Losh #ifndef FSEv05_FUNCTION_TYPE 11840c16b537SWarner Losh # error "FSEv05_FUNCTION_TYPE must be defined" 11850c16b537SWarner Losh #endif 11860c16b537SWarner Losh 11870c16b537SWarner Losh /* Function names */ 11880c16b537SWarner Losh #define FSEv05_CAT(X,Y) X##Y 11890c16b537SWarner Losh #define FSEv05_FUNCTION_NAME(X,Y) FSEv05_CAT(X,Y) 11900c16b537SWarner Losh #define FSEv05_TYPE_NAME(X,Y) FSEv05_CAT(X,Y) 11910c16b537SWarner Losh 11920c16b537SWarner Losh 11930c16b537SWarner Losh /* Function templates */ 11940c16b537SWarner Losh static U32 FSEv05_tableStep(U32 tableSize) { return (tableSize>>1) + (tableSize>>3) + 3; } 11950c16b537SWarner Losh 11960c16b537SWarner Losh 11970c16b537SWarner Losh 11980c16b537SWarner Losh FSEv05_DTable* FSEv05_createDTable (unsigned tableLog) 11990c16b537SWarner Losh { 12000c16b537SWarner Losh if (tableLog > FSEv05_TABLELOG_ABSOLUTE_MAX) tableLog = FSEv05_TABLELOG_ABSOLUTE_MAX; 12010c16b537SWarner Losh return (FSEv05_DTable*)malloc( FSEv05_DTABLE_SIZE_U32(tableLog) * sizeof (U32) ); 12020c16b537SWarner Losh } 12030c16b537SWarner Losh 12040c16b537SWarner Losh void FSEv05_freeDTable (FSEv05_DTable* dt) 12050c16b537SWarner Losh { 12060c16b537SWarner Losh free(dt); 12070c16b537SWarner Losh } 12080c16b537SWarner Losh 12090c16b537SWarner Losh size_t FSEv05_buildDTable(FSEv05_DTable* dt, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog) 12100c16b537SWarner Losh { 12110c16b537SWarner Losh FSEv05_DTableHeader DTableH; 12120c16b537SWarner Losh void* const tdPtr = dt+1; /* because dt is unsigned, 32-bits aligned on 32-bits */ 12130c16b537SWarner Losh FSEv05_DECODE_TYPE* const tableDecode = (FSEv05_DECODE_TYPE*) (tdPtr); 12140c16b537SWarner Losh const U32 tableSize = 1 << tableLog; 12150c16b537SWarner Losh const U32 tableMask = tableSize-1; 12160c16b537SWarner Losh const U32 step = FSEv05_tableStep(tableSize); 12170c16b537SWarner Losh U16 symbolNext[FSEv05_MAX_SYMBOL_VALUE+1]; 12180c16b537SWarner Losh U32 position = 0; 12190c16b537SWarner Losh U32 highThreshold = tableSize-1; 12200c16b537SWarner Losh const S16 largeLimit= (S16)(1 << (tableLog-1)); 12210c16b537SWarner Losh U32 noLarge = 1; 12220c16b537SWarner Losh U32 s; 12230c16b537SWarner Losh 12240c16b537SWarner Losh /* Sanity Checks */ 12250c16b537SWarner Losh if (maxSymbolValue > FSEv05_MAX_SYMBOL_VALUE) return ERROR(maxSymbolValue_tooLarge); 12260c16b537SWarner Losh if (tableLog > FSEv05_MAX_TABLELOG) return ERROR(tableLog_tooLarge); 12270c16b537SWarner Losh 12280c16b537SWarner Losh /* Init, lay down lowprob symbols */ 12290f743729SConrad Meyer memset(tableDecode, 0, sizeof(FSEv05_FUNCTION_TYPE) * (maxSymbolValue+1) ); /* useless init, but keep static analyzer happy, and we don't need to performance optimize legacy decoders */ 12300c16b537SWarner Losh DTableH.tableLog = (U16)tableLog; 12310c16b537SWarner Losh for (s=0; s<=maxSymbolValue; s++) { 12320c16b537SWarner Losh if (normalizedCounter[s]==-1) { 12330c16b537SWarner Losh tableDecode[highThreshold--].symbol = (FSEv05_FUNCTION_TYPE)s; 12340c16b537SWarner Losh symbolNext[s] = 1; 12350c16b537SWarner Losh } else { 12360c16b537SWarner Losh if (normalizedCounter[s] >= largeLimit) noLarge=0; 12370c16b537SWarner Losh symbolNext[s] = normalizedCounter[s]; 12380c16b537SWarner Losh } } 12390c16b537SWarner Losh 12400c16b537SWarner Losh /* Spread symbols */ 12410c16b537SWarner Losh for (s=0; s<=maxSymbolValue; s++) { 12420c16b537SWarner Losh int i; 12430c16b537SWarner Losh for (i=0; i<normalizedCounter[s]; i++) { 12440c16b537SWarner Losh tableDecode[position].symbol = (FSEv05_FUNCTION_TYPE)s; 12450c16b537SWarner Losh position = (position + step) & tableMask; 12460c16b537SWarner Losh while (position > highThreshold) position = (position + step) & tableMask; /* lowprob area */ 12470c16b537SWarner Losh } } 12480c16b537SWarner Losh 12490c16b537SWarner Losh if (position!=0) return ERROR(GENERIC); /* position must reach all cells once, otherwise normalizedCounter is incorrect */ 12500c16b537SWarner Losh 12510c16b537SWarner Losh /* Build Decoding table */ 12520c16b537SWarner Losh { 12530c16b537SWarner Losh U32 i; 12540c16b537SWarner Losh for (i=0; i<tableSize; i++) { 12550c16b537SWarner Losh FSEv05_FUNCTION_TYPE symbol = (FSEv05_FUNCTION_TYPE)(tableDecode[i].symbol); 12560c16b537SWarner Losh U16 nextState = symbolNext[symbol]++; 12570c16b537SWarner Losh tableDecode[i].nbBits = (BYTE) (tableLog - BITv05_highbit32 ((U32)nextState) ); 12580c16b537SWarner Losh tableDecode[i].newState = (U16) ( (nextState << tableDecode[i].nbBits) - tableSize); 12590c16b537SWarner Losh } } 12600c16b537SWarner Losh 12610c16b537SWarner Losh DTableH.fastMode = (U16)noLarge; 12620c16b537SWarner Losh memcpy(dt, &DTableH, sizeof(DTableH)); 12630c16b537SWarner Losh return 0; 12640c16b537SWarner Losh } 12650c16b537SWarner Losh 12660c16b537SWarner Losh 12670c16b537SWarner Losh #ifndef FSEv05_COMMONDEFS_ONLY 12680c16b537SWarner Losh /*-**************************************** 12690c16b537SWarner Losh * FSEv05 helper functions 12700c16b537SWarner Losh ******************************************/ 12710c16b537SWarner Losh unsigned FSEv05_isError(size_t code) { return ERR_isError(code); } 12720c16b537SWarner Losh 12730c16b537SWarner Losh const char* FSEv05_getErrorName(size_t code) { return ERR_getErrorName(code); } 12740c16b537SWarner Losh 12750c16b537SWarner Losh 12760c16b537SWarner Losh /*-************************************************************** 12770c16b537SWarner Losh * FSEv05 NCount encoding-decoding 12780c16b537SWarner Losh ****************************************************************/ 12790c16b537SWarner Losh static short FSEv05_abs(short a) { return a<0 ? -a : a; } 12800c16b537SWarner Losh 12810c16b537SWarner Losh 12820c16b537SWarner Losh size_t FSEv05_readNCount (short* normalizedCounter, unsigned* maxSVPtr, unsigned* tableLogPtr, 12830c16b537SWarner Losh const void* headerBuffer, size_t hbSize) 12840c16b537SWarner Losh { 12850c16b537SWarner Losh const BYTE* const istart = (const BYTE*) headerBuffer; 12860c16b537SWarner Losh const BYTE* const iend = istart + hbSize; 12870c16b537SWarner Losh const BYTE* ip = istart; 12880c16b537SWarner Losh int nbBits; 12890c16b537SWarner Losh int remaining; 12900c16b537SWarner Losh int threshold; 12910c16b537SWarner Losh U32 bitStream; 12920c16b537SWarner Losh int bitCount; 12930c16b537SWarner Losh unsigned charnum = 0; 12940c16b537SWarner Losh int previous0 = 0; 12950c16b537SWarner Losh 12960c16b537SWarner Losh if (hbSize < 4) return ERROR(srcSize_wrong); 12970c16b537SWarner Losh bitStream = MEM_readLE32(ip); 12980c16b537SWarner Losh nbBits = (bitStream & 0xF) + FSEv05_MIN_TABLELOG; /* extract tableLog */ 12990c16b537SWarner Losh if (nbBits > FSEv05_TABLELOG_ABSOLUTE_MAX) return ERROR(tableLog_tooLarge); 13000c16b537SWarner Losh bitStream >>= 4; 13010c16b537SWarner Losh bitCount = 4; 13020c16b537SWarner Losh *tableLogPtr = nbBits; 13030c16b537SWarner Losh remaining = (1<<nbBits)+1; 13040c16b537SWarner Losh threshold = 1<<nbBits; 13050c16b537SWarner Losh nbBits++; 13060c16b537SWarner Losh 13070c16b537SWarner Losh while ((remaining>1) && (charnum<=*maxSVPtr)) { 13080c16b537SWarner Losh if (previous0) { 13090c16b537SWarner Losh unsigned n0 = charnum; 13100c16b537SWarner Losh while ((bitStream & 0xFFFF) == 0xFFFF) { 13110c16b537SWarner Losh n0+=24; 13120c16b537SWarner Losh if (ip < iend-5) { 13130c16b537SWarner Losh ip+=2; 13140c16b537SWarner Losh bitStream = MEM_readLE32(ip) >> bitCount; 13150c16b537SWarner Losh } else { 13160c16b537SWarner Losh bitStream >>= 16; 13170c16b537SWarner Losh bitCount+=16; 13180c16b537SWarner Losh } } 13190c16b537SWarner Losh while ((bitStream & 3) == 3) { 13200c16b537SWarner Losh n0+=3; 13210c16b537SWarner Losh bitStream>>=2; 13220c16b537SWarner Losh bitCount+=2; 13230c16b537SWarner Losh } 13240c16b537SWarner Losh n0 += bitStream & 3; 13250c16b537SWarner Losh bitCount += 2; 13260c16b537SWarner Losh if (n0 > *maxSVPtr) return ERROR(maxSymbolValue_tooSmall); 13270c16b537SWarner Losh while (charnum < n0) normalizedCounter[charnum++] = 0; 13280c16b537SWarner Losh if ((ip <= iend-7) || (ip + (bitCount>>3) <= iend-4)) { 13290c16b537SWarner Losh ip += bitCount>>3; 13300c16b537SWarner Losh bitCount &= 7; 13310c16b537SWarner Losh bitStream = MEM_readLE32(ip) >> bitCount; 13320c16b537SWarner Losh } 13330c16b537SWarner Losh else 13340c16b537SWarner Losh bitStream >>= 2; 13350c16b537SWarner Losh } 13360c16b537SWarner Losh { 13370c16b537SWarner Losh const short max = (short)((2*threshold-1)-remaining); 13380c16b537SWarner Losh short count; 13390c16b537SWarner Losh 13400c16b537SWarner Losh if ((bitStream & (threshold-1)) < (U32)max) { 13410c16b537SWarner Losh count = (short)(bitStream & (threshold-1)); 13420c16b537SWarner Losh bitCount += nbBits-1; 13430c16b537SWarner Losh } else { 13440c16b537SWarner Losh count = (short)(bitStream & (2*threshold-1)); 13450c16b537SWarner Losh if (count >= threshold) count -= max; 13460c16b537SWarner Losh bitCount += nbBits; 13470c16b537SWarner Losh } 13480c16b537SWarner Losh 13490c16b537SWarner Losh count--; /* extra accuracy */ 13500c16b537SWarner Losh remaining -= FSEv05_abs(count); 13510c16b537SWarner Losh normalizedCounter[charnum++] = count; 13520c16b537SWarner Losh previous0 = !count; 13530c16b537SWarner Losh while (remaining < threshold) { 13540c16b537SWarner Losh nbBits--; 13550c16b537SWarner Losh threshold >>= 1; 13560c16b537SWarner Losh } 13570c16b537SWarner Losh 13580c16b537SWarner Losh if ((ip <= iend-7) || (ip + (bitCount>>3) <= iend-4)) { 13590c16b537SWarner Losh ip += bitCount>>3; 13600c16b537SWarner Losh bitCount &= 7; 13610c16b537SWarner Losh } else { 13620c16b537SWarner Losh bitCount -= (int)(8 * (iend - 4 - ip)); 13630c16b537SWarner Losh ip = iend - 4; 13640c16b537SWarner Losh } 13650c16b537SWarner Losh bitStream = MEM_readLE32(ip) >> (bitCount & 31); 13660c16b537SWarner Losh } } 13670c16b537SWarner Losh if (remaining != 1) return ERROR(GENERIC); 13680c16b537SWarner Losh *maxSVPtr = charnum-1; 13690c16b537SWarner Losh 13700c16b537SWarner Losh ip += (bitCount+7)>>3; 13710c16b537SWarner Losh if ((size_t)(ip-istart) > hbSize) return ERROR(srcSize_wrong); 13720c16b537SWarner Losh return ip-istart; 13730c16b537SWarner Losh } 13740c16b537SWarner Losh 13750c16b537SWarner Losh 13760c16b537SWarner Losh 13770c16b537SWarner Losh /*-******************************************************* 13780c16b537SWarner Losh * Decompression (Byte symbols) 13790c16b537SWarner Losh *********************************************************/ 13800c16b537SWarner Losh size_t FSEv05_buildDTable_rle (FSEv05_DTable* dt, BYTE symbolValue) 13810c16b537SWarner Losh { 13820c16b537SWarner Losh void* ptr = dt; 13830c16b537SWarner Losh FSEv05_DTableHeader* const DTableH = (FSEv05_DTableHeader*)ptr; 13840c16b537SWarner Losh void* dPtr = dt + 1; 13850c16b537SWarner Losh FSEv05_decode_t* const cell = (FSEv05_decode_t*)dPtr; 13860c16b537SWarner Losh 13870c16b537SWarner Losh DTableH->tableLog = 0; 13880c16b537SWarner Losh DTableH->fastMode = 0; 13890c16b537SWarner Losh 13900c16b537SWarner Losh cell->newState = 0; 13910c16b537SWarner Losh cell->symbol = symbolValue; 13920c16b537SWarner Losh cell->nbBits = 0; 13930c16b537SWarner Losh 13940c16b537SWarner Losh return 0; 13950c16b537SWarner Losh } 13960c16b537SWarner Losh 13970c16b537SWarner Losh 13980c16b537SWarner Losh size_t FSEv05_buildDTable_raw (FSEv05_DTable* dt, unsigned nbBits) 13990c16b537SWarner Losh { 14000c16b537SWarner Losh void* ptr = dt; 14010c16b537SWarner Losh FSEv05_DTableHeader* const DTableH = (FSEv05_DTableHeader*)ptr; 14020c16b537SWarner Losh void* dPtr = dt + 1; 14030c16b537SWarner Losh FSEv05_decode_t* const dinfo = (FSEv05_decode_t*)dPtr; 14040c16b537SWarner Losh const unsigned tableSize = 1 << nbBits; 14050c16b537SWarner Losh const unsigned tableMask = tableSize - 1; 14060c16b537SWarner Losh const unsigned maxSymbolValue = tableMask; 14070c16b537SWarner Losh unsigned s; 14080c16b537SWarner Losh 14090c16b537SWarner Losh /* Sanity checks */ 14100c16b537SWarner Losh if (nbBits < 1) return ERROR(GENERIC); /* min size */ 14110c16b537SWarner Losh 14120c16b537SWarner Losh /* Build Decoding Table */ 14130c16b537SWarner Losh DTableH->tableLog = (U16)nbBits; 14140c16b537SWarner Losh DTableH->fastMode = 1; 14150c16b537SWarner Losh for (s=0; s<=maxSymbolValue; s++) { 14160c16b537SWarner Losh dinfo[s].newState = 0; 14170c16b537SWarner Losh dinfo[s].symbol = (BYTE)s; 14180c16b537SWarner Losh dinfo[s].nbBits = (BYTE)nbBits; 14190c16b537SWarner Losh } 14200c16b537SWarner Losh 14210c16b537SWarner Losh return 0; 14220c16b537SWarner Losh } 14230c16b537SWarner Losh 14240c16b537SWarner Losh FORCE_INLINE size_t FSEv05_decompress_usingDTable_generic( 14250c16b537SWarner Losh void* dst, size_t maxDstSize, 14260c16b537SWarner Losh const void* cSrc, size_t cSrcSize, 14270c16b537SWarner Losh const FSEv05_DTable* dt, const unsigned fast) 14280c16b537SWarner Losh { 14290c16b537SWarner Losh BYTE* const ostart = (BYTE*) dst; 14300c16b537SWarner Losh BYTE* op = ostart; 14310c16b537SWarner Losh BYTE* const omax = op + maxDstSize; 14320c16b537SWarner Losh BYTE* const olimit = omax-3; 14330c16b537SWarner Losh 14340c16b537SWarner Losh BITv05_DStream_t bitD; 14350c16b537SWarner Losh FSEv05_DState_t state1; 14360c16b537SWarner Losh FSEv05_DState_t state2; 14370c16b537SWarner Losh size_t errorCode; 14380c16b537SWarner Losh 14390c16b537SWarner Losh /* Init */ 14400c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD, cSrc, cSrcSize); /* replaced last arg by maxCompressed Size */ 14410c16b537SWarner Losh if (FSEv05_isError(errorCode)) return errorCode; 14420c16b537SWarner Losh 14430c16b537SWarner Losh FSEv05_initDState(&state1, &bitD, dt); 14440c16b537SWarner Losh FSEv05_initDState(&state2, &bitD, dt); 14450c16b537SWarner Losh 14460c16b537SWarner Losh #define FSEv05_GETSYMBOL(statePtr) fast ? FSEv05_decodeSymbolFast(statePtr, &bitD) : FSEv05_decodeSymbol(statePtr, &bitD) 14470c16b537SWarner Losh 14480c16b537SWarner Losh /* 4 symbols per loop */ 14490c16b537SWarner Losh for ( ; (BITv05_reloadDStream(&bitD)==BITv05_DStream_unfinished) && (op<olimit) ; op+=4) { 14500c16b537SWarner Losh op[0] = FSEv05_GETSYMBOL(&state1); 14510c16b537SWarner Losh 14520c16b537SWarner Losh if (FSEv05_MAX_TABLELOG*2+7 > sizeof(bitD.bitContainer)*8) /* This test must be static */ 14530c16b537SWarner Losh BITv05_reloadDStream(&bitD); 14540c16b537SWarner Losh 14550c16b537SWarner Losh op[1] = FSEv05_GETSYMBOL(&state2); 14560c16b537SWarner Losh 14570c16b537SWarner Losh if (FSEv05_MAX_TABLELOG*4+7 > sizeof(bitD.bitContainer)*8) /* This test must be static */ 14580c16b537SWarner Losh { if (BITv05_reloadDStream(&bitD) > BITv05_DStream_unfinished) { op+=2; break; } } 14590c16b537SWarner Losh 14600c16b537SWarner Losh op[2] = FSEv05_GETSYMBOL(&state1); 14610c16b537SWarner Losh 14620c16b537SWarner Losh if (FSEv05_MAX_TABLELOG*2+7 > sizeof(bitD.bitContainer)*8) /* This test must be static */ 14630c16b537SWarner Losh BITv05_reloadDStream(&bitD); 14640c16b537SWarner Losh 14650c16b537SWarner Losh op[3] = FSEv05_GETSYMBOL(&state2); 14660c16b537SWarner Losh } 14670c16b537SWarner Losh 14680c16b537SWarner Losh /* tail */ 14690c16b537SWarner Losh /* note : BITv05_reloadDStream(&bitD) >= FSEv05_DStream_partiallyFilled; Ends at exactly BITv05_DStream_completed */ 14700c16b537SWarner Losh while (1) { 14710c16b537SWarner Losh if ( (BITv05_reloadDStream(&bitD)>BITv05_DStream_completed) || (op==omax) || (BITv05_endOfDStream(&bitD) && (fast || FSEv05_endOfDState(&state1))) ) 14720c16b537SWarner Losh break; 14730c16b537SWarner Losh 14740c16b537SWarner Losh *op++ = FSEv05_GETSYMBOL(&state1); 14750c16b537SWarner Losh 14760c16b537SWarner Losh if ( (BITv05_reloadDStream(&bitD)>BITv05_DStream_completed) || (op==omax) || (BITv05_endOfDStream(&bitD) && (fast || FSEv05_endOfDState(&state2))) ) 14770c16b537SWarner Losh break; 14780c16b537SWarner Losh 14790c16b537SWarner Losh *op++ = FSEv05_GETSYMBOL(&state2); 14800c16b537SWarner Losh } 14810c16b537SWarner Losh 14820c16b537SWarner Losh /* end ? */ 14830c16b537SWarner Losh if (BITv05_endOfDStream(&bitD) && FSEv05_endOfDState(&state1) && FSEv05_endOfDState(&state2)) 14840c16b537SWarner Losh return op-ostart; 14850c16b537SWarner Losh 14860c16b537SWarner Losh if (op==omax) return ERROR(dstSize_tooSmall); /* dst buffer is full, but cSrc unfinished */ 14870c16b537SWarner Losh 14880c16b537SWarner Losh return ERROR(corruption_detected); 14890c16b537SWarner Losh } 14900c16b537SWarner Losh 14910c16b537SWarner Losh 14920c16b537SWarner Losh size_t FSEv05_decompress_usingDTable(void* dst, size_t originalSize, 14930c16b537SWarner Losh const void* cSrc, size_t cSrcSize, 14940c16b537SWarner Losh const FSEv05_DTable* dt) 14950c16b537SWarner Losh { 14960c16b537SWarner Losh const void* ptr = dt; 14970c16b537SWarner Losh const FSEv05_DTableHeader* DTableH = (const FSEv05_DTableHeader*)ptr; 14980c16b537SWarner Losh const U32 fastMode = DTableH->fastMode; 14990c16b537SWarner Losh 15000c16b537SWarner Losh /* select fast mode (static) */ 15010c16b537SWarner Losh if (fastMode) return FSEv05_decompress_usingDTable_generic(dst, originalSize, cSrc, cSrcSize, dt, 1); 15020c16b537SWarner Losh return FSEv05_decompress_usingDTable_generic(dst, originalSize, cSrc, cSrcSize, dt, 0); 15030c16b537SWarner Losh } 15040c16b537SWarner Losh 15050c16b537SWarner Losh 15060c16b537SWarner Losh size_t FSEv05_decompress(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize) 15070c16b537SWarner Losh { 15080c16b537SWarner Losh const BYTE* const istart = (const BYTE*)cSrc; 15090c16b537SWarner Losh const BYTE* ip = istart; 15100c16b537SWarner Losh short counting[FSEv05_MAX_SYMBOL_VALUE+1]; 15110c16b537SWarner Losh DTable_max_t dt; /* Static analyzer seems unable to understand this table will be properly initialized later */ 15120c16b537SWarner Losh unsigned tableLog; 15130c16b537SWarner Losh unsigned maxSymbolValue = FSEv05_MAX_SYMBOL_VALUE; 15140c16b537SWarner Losh size_t errorCode; 15150c16b537SWarner Losh 15160c16b537SWarner Losh if (cSrcSize<2) return ERROR(srcSize_wrong); /* too small input size */ 15170c16b537SWarner Losh 15180c16b537SWarner Losh /* normal FSEv05 decoding mode */ 15190c16b537SWarner Losh errorCode = FSEv05_readNCount (counting, &maxSymbolValue, &tableLog, istart, cSrcSize); 15200c16b537SWarner Losh if (FSEv05_isError(errorCode)) return errorCode; 15210c16b537SWarner Losh if (errorCode >= cSrcSize) return ERROR(srcSize_wrong); /* too small input size */ 15220c16b537SWarner Losh ip += errorCode; 15230c16b537SWarner Losh cSrcSize -= errorCode; 15240c16b537SWarner Losh 15250c16b537SWarner Losh errorCode = FSEv05_buildDTable (dt, counting, maxSymbolValue, tableLog); 15260c16b537SWarner Losh if (FSEv05_isError(errorCode)) return errorCode; 15270c16b537SWarner Losh 15280c16b537SWarner Losh /* always return, even if it is an error code */ 15290c16b537SWarner Losh return FSEv05_decompress_usingDTable (dst, maxDstSize, ip, cSrcSize, dt); 15300c16b537SWarner Losh } 15310c16b537SWarner Losh 15320c16b537SWarner Losh 15330c16b537SWarner Losh 15340c16b537SWarner Losh #endif /* FSEv05_COMMONDEFS_ONLY */ 15350c16b537SWarner Losh /* ****************************************************************** 15360c16b537SWarner Losh Huff0 : Huffman coder, part of New Generation Entropy library 15370c16b537SWarner Losh header file 15380c16b537SWarner Losh Copyright (C) 2013-2016, Yann Collet. 15390c16b537SWarner Losh 15400c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 15410c16b537SWarner Losh 15420c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 15430c16b537SWarner Losh modification, are permitted provided that the following conditions are 15440c16b537SWarner Losh met: 15450c16b537SWarner Losh 15460c16b537SWarner Losh * Redistributions of source code must retain the above copyright 15470c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 15480c16b537SWarner Losh * Redistributions in binary form must reproduce the above 15490c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 15500c16b537SWarner Losh in the documentation and/or other materials provided with the 15510c16b537SWarner Losh distribution. 15520c16b537SWarner Losh 15530c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 15540c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 15550c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 15560c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 15570c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 15580c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 15590c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 15600c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 15610c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 15620c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 15630c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 15640c16b537SWarner Losh 15650c16b537SWarner Losh You can contact the author at : 15660c16b537SWarner Losh - Source repository : https://github.com/Cyan4973/FiniteStateEntropy 15670c16b537SWarner Losh ****************************************************************** */ 15680c16b537SWarner Losh #ifndef HUFF0_H 15690c16b537SWarner Losh #define HUFF0_H 15700c16b537SWarner Losh 15710c16b537SWarner Losh #if defined (__cplusplus) 15720c16b537SWarner Losh extern "C" { 15730c16b537SWarner Losh #endif 15740c16b537SWarner Losh 15750c16b537SWarner Losh 15760c16b537SWarner Losh 15770c16b537SWarner Losh /* **************************************** 15780c16b537SWarner Losh * Huff0 simple functions 15790c16b537SWarner Losh ******************************************/ 15800c16b537SWarner Losh size_t HUFv05_decompress(void* dst, size_t dstSize, 15810c16b537SWarner Losh const void* cSrc, size_t cSrcSize); 15820c16b537SWarner Losh /*! 15830c16b537SWarner Losh HUFv05_decompress(): 15840c16b537SWarner Losh Decompress Huff0 data from buffer 'cSrc', of size 'cSrcSize', 15850c16b537SWarner Losh into already allocated destination buffer 'dst', of size 'dstSize'. 15860c16b537SWarner Losh @dstSize : must be the **exact** size of original (uncompressed) data. 15870c16b537SWarner Losh Note : in contrast with FSEv05, HUFv05_decompress can regenerate 15880c16b537SWarner Losh RLE (cSrcSize==1) and uncompressed (cSrcSize==dstSize) data, 15890c16b537SWarner Losh because it knows size to regenerate. 15900c16b537SWarner Losh @return : size of regenerated data (== dstSize) 15910c16b537SWarner Losh or an error code, which can be tested using HUFv05_isError() 15920c16b537SWarner Losh */ 15930c16b537SWarner Losh 15940c16b537SWarner Losh 15950c16b537SWarner Losh /* **************************************** 15960c16b537SWarner Losh * Tool functions 15970c16b537SWarner Losh ******************************************/ 15980c16b537SWarner Losh /* Error Management */ 15990c16b537SWarner Losh unsigned HUFv05_isError(size_t code); /* tells if a return value is an error code */ 16000c16b537SWarner Losh const char* HUFv05_getErrorName(size_t code); /* provides error code string (useful for debugging) */ 16010c16b537SWarner Losh 16020c16b537SWarner Losh 16030c16b537SWarner Losh #if defined (__cplusplus) 16040c16b537SWarner Losh } 16050c16b537SWarner Losh #endif 16060c16b537SWarner Losh 16070c16b537SWarner Losh #endif /* HUF0_H */ 16080c16b537SWarner Losh /* ****************************************************************** 16090c16b537SWarner Losh Huff0 : Huffman codec, part of New Generation Entropy library 16100c16b537SWarner Losh header file, for static linking only 16110c16b537SWarner Losh Copyright (C) 2013-2016, Yann Collet 16120c16b537SWarner Losh 16130c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 16140c16b537SWarner Losh 16150c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 16160c16b537SWarner Losh modification, are permitted provided that the following conditions are 16170c16b537SWarner Losh met: 16180c16b537SWarner Losh 16190c16b537SWarner Losh * Redistributions of source code must retain the above copyright 16200c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 16210c16b537SWarner Losh * Redistributions in binary form must reproduce the above 16220c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 16230c16b537SWarner Losh in the documentation and/or other materials provided with the 16240c16b537SWarner Losh distribution. 16250c16b537SWarner Losh 16260c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 16270c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 16280c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 16290c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 16300c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 16310c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 16320c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 16330c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 16340c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 16350c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 16360c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 16370c16b537SWarner Losh 16380c16b537SWarner Losh You can contact the author at : 16390c16b537SWarner Losh - Source repository : https://github.com/Cyan4973/FiniteStateEntropy 16400c16b537SWarner Losh ****************************************************************** */ 16410c16b537SWarner Losh #ifndef HUF0_STATIC_H 16420c16b537SWarner Losh #define HUF0_STATIC_H 16430c16b537SWarner Losh 16440c16b537SWarner Losh #if defined (__cplusplus) 16450c16b537SWarner Losh extern "C" { 16460c16b537SWarner Losh #endif 16470c16b537SWarner Losh 16480c16b537SWarner Losh 16490c16b537SWarner Losh 16500c16b537SWarner Losh /* **************************************** 16510c16b537SWarner Losh * Static allocation 16520c16b537SWarner Losh ******************************************/ 16530c16b537SWarner Losh /* static allocation of Huff0's DTable */ 16540c16b537SWarner Losh #define HUFv05_DTABLE_SIZE(maxTableLog) (1 + (1<<maxTableLog)) 16550c16b537SWarner Losh #define HUFv05_CREATE_STATIC_DTABLEX2(DTable, maxTableLog) \ 16560c16b537SWarner Losh unsigned short DTable[HUFv05_DTABLE_SIZE(maxTableLog)] = { maxTableLog } 16570c16b537SWarner Losh #define HUFv05_CREATE_STATIC_DTABLEX4(DTable, maxTableLog) \ 16580c16b537SWarner Losh unsigned int DTable[HUFv05_DTABLE_SIZE(maxTableLog)] = { maxTableLog } 16590c16b537SWarner Losh #define HUFv05_CREATE_STATIC_DTABLEX6(DTable, maxTableLog) \ 16600c16b537SWarner Losh unsigned int DTable[HUFv05_DTABLE_SIZE(maxTableLog) * 3 / 2] = { maxTableLog } 16610c16b537SWarner Losh 16620c16b537SWarner Losh 16630c16b537SWarner Losh /* **************************************** 16640c16b537SWarner Losh * Advanced decompression functions 16650c16b537SWarner Losh ******************************************/ 16660c16b537SWarner Losh size_t HUFv05_decompress4X2 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize); /* single-symbol decoder */ 16670c16b537SWarner Losh size_t HUFv05_decompress4X4 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize); /* double-symbols decoder */ 16680c16b537SWarner Losh 16690c16b537SWarner Losh 16700c16b537SWarner Losh /* **************************************** 16710c16b537SWarner Losh * Huff0 detailed API 16720c16b537SWarner Losh ******************************************/ 16730c16b537SWarner Losh /*! 16740c16b537SWarner Losh HUFv05_decompress() does the following: 16750c16b537SWarner Losh 1. select the decompression algorithm (X2, X4, X6) based on pre-computed heuristics 16760c16b537SWarner Losh 2. build Huffman table from save, using HUFv05_readDTableXn() 16770c16b537SWarner Losh 3. decode 1 or 4 segments in parallel using HUFv05_decompressSXn_usingDTable 16780c16b537SWarner Losh */ 16790c16b537SWarner Losh size_t HUFv05_readDTableX2 (unsigned short* DTable, const void* src, size_t srcSize); 16800c16b537SWarner Losh size_t HUFv05_readDTableX4 (unsigned* DTable, const void* src, size_t srcSize); 16810c16b537SWarner Losh 16820c16b537SWarner Losh size_t HUFv05_decompress4X2_usingDTable(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize, const unsigned short* DTable); 16830c16b537SWarner Losh size_t HUFv05_decompress4X4_usingDTable(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize, const unsigned* DTable); 16840c16b537SWarner Losh 16850c16b537SWarner Losh 16860c16b537SWarner Losh /* single stream variants */ 16870c16b537SWarner Losh 16880c16b537SWarner Losh size_t HUFv05_decompress1X2 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize); /* single-symbol decoder */ 16890c16b537SWarner Losh size_t HUFv05_decompress1X4 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize); /* double-symbol decoder */ 16900c16b537SWarner Losh 16910c16b537SWarner Losh size_t HUFv05_decompress1X2_usingDTable(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize, const unsigned short* DTable); 16920c16b537SWarner Losh size_t HUFv05_decompress1X4_usingDTable(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize, const unsigned* DTable); 16930c16b537SWarner Losh 16940c16b537SWarner Losh 16950c16b537SWarner Losh 16960c16b537SWarner Losh #if defined (__cplusplus) 16970c16b537SWarner Losh } 16980c16b537SWarner Losh #endif 16990c16b537SWarner Losh 17000c16b537SWarner Losh #endif /* HUF0_STATIC_H */ 17010c16b537SWarner Losh /* ****************************************************************** 17020c16b537SWarner Losh Huff0 : Huffman coder, part of New Generation Entropy library 17030c16b537SWarner Losh Copyright (C) 2013-2015, Yann Collet. 17040c16b537SWarner Losh 17050c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 17060c16b537SWarner Losh 17070c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 17080c16b537SWarner Losh modification, are permitted provided that the following conditions are 17090c16b537SWarner Losh met: 17100c16b537SWarner Losh 17110c16b537SWarner Losh * Redistributions of source code must retain the above copyright 17120c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 17130c16b537SWarner Losh * Redistributions in binary form must reproduce the above 17140c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 17150c16b537SWarner Losh in the documentation and/or other materials provided with the 17160c16b537SWarner Losh distribution. 17170c16b537SWarner Losh 17180c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 17190c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 17200c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 17210c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 17220c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 17230c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 17240c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 17250c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 17260c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 17270c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 17280c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 17290c16b537SWarner Losh 17300c16b537SWarner Losh You can contact the author at : 17310c16b537SWarner Losh - FSEv05+Huff0 source repository : https://github.com/Cyan4973/FiniteStateEntropy 17320c16b537SWarner Losh - Public forum : https://groups.google.com/forum/#!forum/lz4c 17330c16b537SWarner Losh ****************************************************************** */ 17340c16b537SWarner Losh 17350c16b537SWarner Losh /* ************************************************************** 17360c16b537SWarner Losh * Compiler specifics 17370c16b537SWarner Losh ****************************************************************/ 17380c16b537SWarner Losh #if defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */) 17390c16b537SWarner Losh /* inline is defined */ 17400c16b537SWarner Losh #elif defined(_MSC_VER) 17410c16b537SWarner Losh # define inline __inline 17420c16b537SWarner Losh #else 17430c16b537SWarner Losh # define inline /* disable inline */ 17440c16b537SWarner Losh #endif 17450c16b537SWarner Losh 17460c16b537SWarner Losh 17470c16b537SWarner Losh #ifdef _MSC_VER /* Visual Studio */ 17480c16b537SWarner Losh # pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */ 17490c16b537SWarner Losh #endif 17500c16b537SWarner Losh 17510c16b537SWarner Losh 17520c16b537SWarner Losh /* ************************************************************** 17530c16b537SWarner Losh * Includes 17540c16b537SWarner Losh ****************************************************************/ 17550c16b537SWarner Losh #include <stdlib.h> /* malloc, free, qsort */ 17560c16b537SWarner Losh #include <string.h> /* memcpy, memset */ 17570c16b537SWarner Losh #include <stdio.h> /* printf (debug) */ 17580c16b537SWarner Losh 17590c16b537SWarner Losh 17600c16b537SWarner Losh /* ************************************************************** 17610c16b537SWarner Losh * Constants 17620c16b537SWarner Losh ****************************************************************/ 17630c16b537SWarner Losh #define HUFv05_ABSOLUTEMAX_TABLELOG 16 /* absolute limit of HUFv05_MAX_TABLELOG. Beyond that value, code does not work */ 17640c16b537SWarner Losh #define HUFv05_MAX_TABLELOG 12 /* max configured tableLog (for static allocation); can be modified up to HUFv05_ABSOLUTEMAX_TABLELOG */ 17650c16b537SWarner Losh #define HUFv05_DEFAULT_TABLELOG HUFv05_MAX_TABLELOG /* tableLog by default, when not specified */ 17660c16b537SWarner Losh #define HUFv05_MAX_SYMBOL_VALUE 255 17670c16b537SWarner Losh #if (HUFv05_MAX_TABLELOG > HUFv05_ABSOLUTEMAX_TABLELOG) 17680c16b537SWarner Losh # error "HUFv05_MAX_TABLELOG is too large !" 17690c16b537SWarner Losh #endif 17700c16b537SWarner Losh 17710c16b537SWarner Losh 17720c16b537SWarner Losh /* ************************************************************** 17730c16b537SWarner Losh * Error Management 17740c16b537SWarner Losh ****************************************************************/ 17750c16b537SWarner Losh unsigned HUFv05_isError(size_t code) { return ERR_isError(code); } 17760c16b537SWarner Losh const char* HUFv05_getErrorName(size_t code) { return ERR_getErrorName(code); } 17770c16b537SWarner Losh #define HUFv05_STATIC_ASSERT(c) { enum { HUFv05_static_assert = 1/(int)(!!(c)) }; } /* use only *after* variable declarations */ 17780c16b537SWarner Losh 17790c16b537SWarner Losh 17800c16b537SWarner Losh /* ******************************************************* 17810c16b537SWarner Losh * Huff0 : Huffman block decompression 17820c16b537SWarner Losh *********************************************************/ 17830c16b537SWarner Losh typedef struct { BYTE byte; BYTE nbBits; } HUFv05_DEltX2; /* single-symbol decoding */ 17840c16b537SWarner Losh 17850c16b537SWarner Losh typedef struct { U16 sequence; BYTE nbBits; BYTE length; } HUFv05_DEltX4; /* double-symbols decoding */ 17860c16b537SWarner Losh 17870c16b537SWarner Losh typedef struct { BYTE symbol; BYTE weight; } sortedSymbol_t; 17880c16b537SWarner Losh 17890c16b537SWarner Losh /*! HUFv05_readStats 17900c16b537SWarner Losh Read compact Huffman tree, saved by HUFv05_writeCTable 17910c16b537SWarner Losh @huffWeight : destination buffer 17920c16b537SWarner Losh @return : size read from `src` 17930c16b537SWarner Losh */ 17940c16b537SWarner Losh static size_t HUFv05_readStats(BYTE* huffWeight, size_t hwSize, U32* rankStats, 17950c16b537SWarner Losh U32* nbSymbolsPtr, U32* tableLogPtr, 17960c16b537SWarner Losh const void* src, size_t srcSize) 17970c16b537SWarner Losh { 17980c16b537SWarner Losh U32 weightTotal; 17990c16b537SWarner Losh U32 tableLog; 18000c16b537SWarner Losh const BYTE* ip = (const BYTE*) src; 18010c16b537SWarner Losh size_t iSize; 18020c16b537SWarner Losh size_t oSize; 18030c16b537SWarner Losh U32 n; 18040c16b537SWarner Losh 18050c16b537SWarner Losh if (!srcSize) return ERROR(srcSize_wrong); 18060c16b537SWarner Losh iSize = ip[0]; 18070c16b537SWarner Losh //memset(huffWeight, 0, hwSize); /* is not necessary, even though some analyzer complain ... */ 18080c16b537SWarner Losh 18090c16b537SWarner Losh if (iSize >= 128) { /* special header */ 18100c16b537SWarner Losh if (iSize >= (242)) { /* RLE */ 18110c16b537SWarner Losh static int l[14] = { 1, 2, 3, 4, 7, 8, 15, 16, 31, 32, 63, 64, 127, 128 }; 18120c16b537SWarner Losh oSize = l[iSize-242]; 18130c16b537SWarner Losh memset(huffWeight, 1, hwSize); 18140c16b537SWarner Losh iSize = 0; 18150c16b537SWarner Losh } 18160c16b537SWarner Losh else { /* Incompressible */ 18170c16b537SWarner Losh oSize = iSize - 127; 18180c16b537SWarner Losh iSize = ((oSize+1)/2); 18190c16b537SWarner Losh if (iSize+1 > srcSize) return ERROR(srcSize_wrong); 18200c16b537SWarner Losh if (oSize >= hwSize) return ERROR(corruption_detected); 18210c16b537SWarner Losh ip += 1; 18220c16b537SWarner Losh for (n=0; n<oSize; n+=2) { 18230c16b537SWarner Losh huffWeight[n] = ip[n/2] >> 4; 18240c16b537SWarner Losh huffWeight[n+1] = ip[n/2] & 15; 18250c16b537SWarner Losh } } } 18260c16b537SWarner Losh else { /* header compressed with FSEv05 (normal case) */ 18270c16b537SWarner Losh if (iSize+1 > srcSize) return ERROR(srcSize_wrong); 18280c16b537SWarner Losh oSize = FSEv05_decompress(huffWeight, hwSize-1, ip+1, iSize); /* max (hwSize-1) values decoded, as last one is implied */ 18290c16b537SWarner Losh if (FSEv05_isError(oSize)) return oSize; 18300c16b537SWarner Losh } 18310c16b537SWarner Losh 18320c16b537SWarner Losh /* collect weight stats */ 18330c16b537SWarner Losh memset(rankStats, 0, (HUFv05_ABSOLUTEMAX_TABLELOG + 1) * sizeof(U32)); 18340c16b537SWarner Losh weightTotal = 0; 18350c16b537SWarner Losh for (n=0; n<oSize; n++) { 18360c16b537SWarner Losh if (huffWeight[n] >= HUFv05_ABSOLUTEMAX_TABLELOG) return ERROR(corruption_detected); 18370c16b537SWarner Losh rankStats[huffWeight[n]]++; 18380c16b537SWarner Losh weightTotal += (1 << huffWeight[n]) >> 1; 18390c16b537SWarner Losh } 18400c16b537SWarner Losh if (weightTotal == 0) return ERROR(corruption_detected); 18410c16b537SWarner Losh 18420c16b537SWarner Losh /* get last non-null symbol weight (implied, total must be 2^n) */ 18430c16b537SWarner Losh tableLog = BITv05_highbit32(weightTotal) + 1; 18440c16b537SWarner Losh if (tableLog > HUFv05_ABSOLUTEMAX_TABLELOG) return ERROR(corruption_detected); 18450c16b537SWarner Losh { /* determine last weight */ 18460c16b537SWarner Losh U32 total = 1 << tableLog; 18470c16b537SWarner Losh U32 rest = total - weightTotal; 18480c16b537SWarner Losh U32 verif = 1 << BITv05_highbit32(rest); 18490c16b537SWarner Losh U32 lastWeight = BITv05_highbit32(rest) + 1; 18500c16b537SWarner Losh if (verif != rest) return ERROR(corruption_detected); /* last value must be a clean power of 2 */ 18510c16b537SWarner Losh huffWeight[oSize] = (BYTE)lastWeight; 18520c16b537SWarner Losh rankStats[lastWeight]++; 18530c16b537SWarner Losh } 18540c16b537SWarner Losh 18550c16b537SWarner Losh /* check tree construction validity */ 18560c16b537SWarner Losh if ((rankStats[1] < 2) || (rankStats[1] & 1)) return ERROR(corruption_detected); /* by construction : at least 2 elts of rank 1, must be even */ 18570c16b537SWarner Losh 18580c16b537SWarner Losh /* results */ 18590c16b537SWarner Losh *nbSymbolsPtr = (U32)(oSize+1); 18600c16b537SWarner Losh *tableLogPtr = tableLog; 18610c16b537SWarner Losh return iSize+1; 18620c16b537SWarner Losh } 18630c16b537SWarner Losh 18640c16b537SWarner Losh 18650c16b537SWarner Losh /*-***************************/ 18660c16b537SWarner Losh /* single-symbol decoding */ 18670c16b537SWarner Losh /*-***************************/ 18680c16b537SWarner Losh 18690c16b537SWarner Losh size_t HUFv05_readDTableX2 (U16* DTable, const void* src, size_t srcSize) 18700c16b537SWarner Losh { 18710c16b537SWarner Losh BYTE huffWeight[HUFv05_MAX_SYMBOL_VALUE + 1]; 18720c16b537SWarner Losh U32 rankVal[HUFv05_ABSOLUTEMAX_TABLELOG + 1]; /* large enough for values from 0 to 16 */ 18730c16b537SWarner Losh U32 tableLog = 0; 18740c16b537SWarner Losh size_t iSize; 18750c16b537SWarner Losh U32 nbSymbols = 0; 18760c16b537SWarner Losh U32 n; 18770c16b537SWarner Losh U32 nextRankStart; 18780c16b537SWarner Losh void* const dtPtr = DTable + 1; 18790c16b537SWarner Losh HUFv05_DEltX2* const dt = (HUFv05_DEltX2*)dtPtr; 18800c16b537SWarner Losh 18810c16b537SWarner Losh HUFv05_STATIC_ASSERT(sizeof(HUFv05_DEltX2) == sizeof(U16)); /* if compilation fails here, assertion is false */ 18820c16b537SWarner Losh //memset(huffWeight, 0, sizeof(huffWeight)); /* is not necessary, even though some analyzer complain ... */ 18830c16b537SWarner Losh 18840c16b537SWarner Losh iSize = HUFv05_readStats(huffWeight, HUFv05_MAX_SYMBOL_VALUE + 1, rankVal, &nbSymbols, &tableLog, src, srcSize); 18850c16b537SWarner Losh if (HUFv05_isError(iSize)) return iSize; 18860c16b537SWarner Losh 18870c16b537SWarner Losh /* check result */ 18880c16b537SWarner Losh if (tableLog > DTable[0]) return ERROR(tableLog_tooLarge); /* DTable is too small */ 18890c16b537SWarner Losh DTable[0] = (U16)tableLog; /* maybe should separate sizeof allocated DTable, from used size of DTable, in case of re-use */ 18900c16b537SWarner Losh 18910c16b537SWarner Losh /* Prepare ranks */ 18920c16b537SWarner Losh nextRankStart = 0; 18930c16b537SWarner Losh for (n=1; n<=tableLog; n++) { 18940c16b537SWarner Losh U32 current = nextRankStart; 18950c16b537SWarner Losh nextRankStart += (rankVal[n] << (n-1)); 18960c16b537SWarner Losh rankVal[n] = current; 18970c16b537SWarner Losh } 18980c16b537SWarner Losh 18990c16b537SWarner Losh /* fill DTable */ 19000c16b537SWarner Losh for (n=0; n<nbSymbols; n++) { 19010c16b537SWarner Losh const U32 w = huffWeight[n]; 19020c16b537SWarner Losh const U32 length = (1 << w) >> 1; 19030c16b537SWarner Losh U32 i; 19040c16b537SWarner Losh HUFv05_DEltX2 D; 19050c16b537SWarner Losh D.byte = (BYTE)n; D.nbBits = (BYTE)(tableLog + 1 - w); 19060c16b537SWarner Losh for (i = rankVal[w]; i < rankVal[w] + length; i++) 19070c16b537SWarner Losh dt[i] = D; 19080c16b537SWarner Losh rankVal[w] += length; 19090c16b537SWarner Losh } 19100c16b537SWarner Losh 19110c16b537SWarner Losh return iSize; 19120c16b537SWarner Losh } 19130c16b537SWarner Losh 19140c16b537SWarner Losh static BYTE HUFv05_decodeSymbolX2(BITv05_DStream_t* Dstream, const HUFv05_DEltX2* dt, const U32 dtLog) 19150c16b537SWarner Losh { 19160c16b537SWarner Losh const size_t val = BITv05_lookBitsFast(Dstream, dtLog); /* note : dtLog >= 1 */ 19170c16b537SWarner Losh const BYTE c = dt[val].byte; 19180c16b537SWarner Losh BITv05_skipBits(Dstream, dt[val].nbBits); 19190c16b537SWarner Losh return c; 19200c16b537SWarner Losh } 19210c16b537SWarner Losh 19220c16b537SWarner Losh #define HUFv05_DECODE_SYMBOLX2_0(ptr, DStreamPtr) \ 19230c16b537SWarner Losh *ptr++ = HUFv05_decodeSymbolX2(DStreamPtr, dt, dtLog) 19240c16b537SWarner Losh 19250c16b537SWarner Losh #define HUFv05_DECODE_SYMBOLX2_1(ptr, DStreamPtr) \ 19260c16b537SWarner Losh if (MEM_64bits() || (HUFv05_MAX_TABLELOG<=12)) \ 19270c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(ptr, DStreamPtr) 19280c16b537SWarner Losh 19290c16b537SWarner Losh #define HUFv05_DECODE_SYMBOLX2_2(ptr, DStreamPtr) \ 19300c16b537SWarner Losh if (MEM_64bits()) \ 19310c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(ptr, DStreamPtr) 19320c16b537SWarner Losh 19330c16b537SWarner Losh static inline size_t HUFv05_decodeStreamX2(BYTE* p, BITv05_DStream_t* const bitDPtr, BYTE* const pEnd, const HUFv05_DEltX2* const dt, const U32 dtLog) 19340c16b537SWarner Losh { 19350c16b537SWarner Losh BYTE* const pStart = p; 19360c16b537SWarner Losh 19370c16b537SWarner Losh /* up to 4 symbols at a time */ 19380c16b537SWarner Losh while ((BITv05_reloadDStream(bitDPtr) == BITv05_DStream_unfinished) && (p <= pEnd-4)) { 19390c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(p, bitDPtr); 19400c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_1(p, bitDPtr); 19410c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(p, bitDPtr); 19420c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(p, bitDPtr); 19430c16b537SWarner Losh } 19440c16b537SWarner Losh 19450c16b537SWarner Losh /* closer to the end */ 19460c16b537SWarner Losh while ((BITv05_reloadDStream(bitDPtr) == BITv05_DStream_unfinished) && (p < pEnd)) 19470c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(p, bitDPtr); 19480c16b537SWarner Losh 19490c16b537SWarner Losh /* no more data to retrieve from bitstream, hence no need to reload */ 19500c16b537SWarner Losh while (p < pEnd) 19510c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(p, bitDPtr); 19520c16b537SWarner Losh 19530c16b537SWarner Losh return pEnd-pStart; 19540c16b537SWarner Losh } 19550c16b537SWarner Losh 19560c16b537SWarner Losh size_t HUFv05_decompress1X2_usingDTable( 19570c16b537SWarner Losh void* dst, size_t dstSize, 19580c16b537SWarner Losh const void* cSrc, size_t cSrcSize, 19590c16b537SWarner Losh const U16* DTable) 19600c16b537SWarner Losh { 19610c16b537SWarner Losh BYTE* op = (BYTE*)dst; 19620c16b537SWarner Losh BYTE* const oend = op + dstSize; 19630c16b537SWarner Losh const U32 dtLog = DTable[0]; 19640c16b537SWarner Losh const void* dtPtr = DTable; 19650c16b537SWarner Losh const HUFv05_DEltX2* const dt = ((const HUFv05_DEltX2*)dtPtr)+1; 19660c16b537SWarner Losh BITv05_DStream_t bitD; 19670c16b537SWarner Losh 19680c16b537SWarner Losh if (dstSize <= cSrcSize) return ERROR(dstSize_tooSmall); 19690c16b537SWarner Losh { size_t const errorCode = BITv05_initDStream(&bitD, cSrc, cSrcSize); 19700c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; } 19710c16b537SWarner Losh 19720c16b537SWarner Losh HUFv05_decodeStreamX2(op, &bitD, oend, dt, dtLog); 19730c16b537SWarner Losh 19740c16b537SWarner Losh /* check */ 19750c16b537SWarner Losh if (!BITv05_endOfDStream(&bitD)) return ERROR(corruption_detected); 19760c16b537SWarner Losh 19770c16b537SWarner Losh return dstSize; 19780c16b537SWarner Losh } 19790c16b537SWarner Losh 19800c16b537SWarner Losh size_t HUFv05_decompress1X2 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize) 19810c16b537SWarner Losh { 19820c16b537SWarner Losh HUFv05_CREATE_STATIC_DTABLEX2(DTable, HUFv05_MAX_TABLELOG); 19830c16b537SWarner Losh const BYTE* ip = (const BYTE*) cSrc; 19840c16b537SWarner Losh size_t errorCode; 19850c16b537SWarner Losh 19860c16b537SWarner Losh errorCode = HUFv05_readDTableX2 (DTable, cSrc, cSrcSize); 19870c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 19880c16b537SWarner Losh if (errorCode >= cSrcSize) return ERROR(srcSize_wrong); 19890c16b537SWarner Losh ip += errorCode; 19900c16b537SWarner Losh cSrcSize -= errorCode; 19910c16b537SWarner Losh 19920c16b537SWarner Losh return HUFv05_decompress1X2_usingDTable (dst, dstSize, ip, cSrcSize, DTable); 19930c16b537SWarner Losh } 19940c16b537SWarner Losh 19950c16b537SWarner Losh 19960c16b537SWarner Losh size_t HUFv05_decompress4X2_usingDTable( 19970c16b537SWarner Losh void* dst, size_t dstSize, 19980c16b537SWarner Losh const void* cSrc, size_t cSrcSize, 19990c16b537SWarner Losh const U16* DTable) 20000c16b537SWarner Losh { 20010c16b537SWarner Losh const BYTE* const istart = (const BYTE*) cSrc; 20020c16b537SWarner Losh BYTE* const ostart = (BYTE*) dst; 20030c16b537SWarner Losh BYTE* const oend = ostart + dstSize; 20040c16b537SWarner Losh const void* const dtPtr = DTable; 20050c16b537SWarner Losh const HUFv05_DEltX2* const dt = ((const HUFv05_DEltX2*)dtPtr) +1; 20060c16b537SWarner Losh const U32 dtLog = DTable[0]; 20070c16b537SWarner Losh size_t errorCode; 20080c16b537SWarner Losh 20090c16b537SWarner Losh /* Init */ 20100c16b537SWarner Losh BITv05_DStream_t bitD1; 20110c16b537SWarner Losh BITv05_DStream_t bitD2; 20120c16b537SWarner Losh BITv05_DStream_t bitD3; 20130c16b537SWarner Losh BITv05_DStream_t bitD4; 20140c16b537SWarner Losh const size_t length1 = MEM_readLE16(istart); 20150c16b537SWarner Losh const size_t length2 = MEM_readLE16(istart+2); 20160c16b537SWarner Losh const size_t length3 = MEM_readLE16(istart+4); 20170c16b537SWarner Losh size_t length4; 20180c16b537SWarner Losh const BYTE* const istart1 = istart + 6; /* jumpTable */ 20190c16b537SWarner Losh const BYTE* const istart2 = istart1 + length1; 20200c16b537SWarner Losh const BYTE* const istart3 = istart2 + length2; 20210c16b537SWarner Losh const BYTE* const istart4 = istart3 + length3; 20220c16b537SWarner Losh const size_t segmentSize = (dstSize+3) / 4; 20230c16b537SWarner Losh BYTE* const opStart2 = ostart + segmentSize; 20240c16b537SWarner Losh BYTE* const opStart3 = opStart2 + segmentSize; 20250c16b537SWarner Losh BYTE* const opStart4 = opStart3 + segmentSize; 20260c16b537SWarner Losh BYTE* op1 = ostart; 20270c16b537SWarner Losh BYTE* op2 = opStart2; 20280c16b537SWarner Losh BYTE* op3 = opStart3; 20290c16b537SWarner Losh BYTE* op4 = opStart4; 20300c16b537SWarner Losh U32 endSignal; 20310c16b537SWarner Losh 20320c16b537SWarner Losh /* Check */ 20330c16b537SWarner Losh if (cSrcSize < 10) return ERROR(corruption_detected); /* strict minimum : jump table + 1 byte per stream */ 20340c16b537SWarner Losh 20350c16b537SWarner Losh length4 = cSrcSize - (length1 + length2 + length3 + 6); 20360c16b537SWarner Losh if (length4 > cSrcSize) return ERROR(corruption_detected); /* overflow */ 20370c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD1, istart1, length1); 20380c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 20390c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD2, istart2, length2); 20400c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 20410c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD3, istart3, length3); 20420c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 20430c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD4, istart4, length4); 20440c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 20450c16b537SWarner Losh 20460c16b537SWarner Losh /* 16-32 symbols per loop (4-8 symbols per stream) */ 20470c16b537SWarner Losh endSignal = BITv05_reloadDStream(&bitD1) | BITv05_reloadDStream(&bitD2) | BITv05_reloadDStream(&bitD3) | BITv05_reloadDStream(&bitD4); 20480c16b537SWarner Losh for ( ; (endSignal==BITv05_DStream_unfinished) && (op4<(oend-7)) ; ) { 20490c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op1, &bitD1); 20500c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op2, &bitD2); 20510c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op3, &bitD3); 20520c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op4, &bitD4); 20530c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_1(op1, &bitD1); 20540c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_1(op2, &bitD2); 20550c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_1(op3, &bitD3); 20560c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_1(op4, &bitD4); 20570c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op1, &bitD1); 20580c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op2, &bitD2); 20590c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op3, &bitD3); 20600c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_2(op4, &bitD4); 20610c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(op1, &bitD1); 20620c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(op2, &bitD2); 20630c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(op3, &bitD3); 20640c16b537SWarner Losh HUFv05_DECODE_SYMBOLX2_0(op4, &bitD4); 20650c16b537SWarner Losh endSignal = BITv05_reloadDStream(&bitD1) | BITv05_reloadDStream(&bitD2) | BITv05_reloadDStream(&bitD3) | BITv05_reloadDStream(&bitD4); 20660c16b537SWarner Losh } 20670c16b537SWarner Losh 20680c16b537SWarner Losh /* check corruption */ 20690c16b537SWarner Losh if (op1 > opStart2) return ERROR(corruption_detected); 20700c16b537SWarner Losh if (op2 > opStart3) return ERROR(corruption_detected); 20710c16b537SWarner Losh if (op3 > opStart4) return ERROR(corruption_detected); 20720c16b537SWarner Losh /* note : op4 supposed already verified within main loop */ 20730c16b537SWarner Losh 20740c16b537SWarner Losh /* finish bitStreams one by one */ 20750c16b537SWarner Losh HUFv05_decodeStreamX2(op1, &bitD1, opStart2, dt, dtLog); 20760c16b537SWarner Losh HUFv05_decodeStreamX2(op2, &bitD2, opStart3, dt, dtLog); 20770c16b537SWarner Losh HUFv05_decodeStreamX2(op3, &bitD3, opStart4, dt, dtLog); 20780c16b537SWarner Losh HUFv05_decodeStreamX2(op4, &bitD4, oend, dt, dtLog); 20790c16b537SWarner Losh 20800c16b537SWarner Losh /* check */ 20810c16b537SWarner Losh endSignal = BITv05_endOfDStream(&bitD1) & BITv05_endOfDStream(&bitD2) & BITv05_endOfDStream(&bitD3) & BITv05_endOfDStream(&bitD4); 20820c16b537SWarner Losh if (!endSignal) return ERROR(corruption_detected); 20830c16b537SWarner Losh 20840c16b537SWarner Losh /* decoded size */ 20850c16b537SWarner Losh return dstSize; 20860c16b537SWarner Losh } 20870c16b537SWarner Losh 20880c16b537SWarner Losh 20890c16b537SWarner Losh size_t HUFv05_decompress4X2 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize) 20900c16b537SWarner Losh { 20910c16b537SWarner Losh HUFv05_CREATE_STATIC_DTABLEX2(DTable, HUFv05_MAX_TABLELOG); 20920c16b537SWarner Losh const BYTE* ip = (const BYTE*) cSrc; 20930c16b537SWarner Losh size_t errorCode; 20940c16b537SWarner Losh 20950c16b537SWarner Losh errorCode = HUFv05_readDTableX2 (DTable, cSrc, cSrcSize); 20960c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 20970c16b537SWarner Losh if (errorCode >= cSrcSize) return ERROR(srcSize_wrong); 20980c16b537SWarner Losh ip += errorCode; 20990c16b537SWarner Losh cSrcSize -= errorCode; 21000c16b537SWarner Losh 21010c16b537SWarner Losh return HUFv05_decompress4X2_usingDTable (dst, dstSize, ip, cSrcSize, DTable); 21020c16b537SWarner Losh } 21030c16b537SWarner Losh 21040c16b537SWarner Losh 21050c16b537SWarner Losh /* *************************/ 21060c16b537SWarner Losh /* double-symbols decoding */ 21070c16b537SWarner Losh /* *************************/ 21080c16b537SWarner Losh 21090c16b537SWarner Losh static void HUFv05_fillDTableX4Level2(HUFv05_DEltX4* DTable, U32 sizeLog, const U32 consumed, 21100c16b537SWarner Losh const U32* rankValOrigin, const int minWeight, 21110c16b537SWarner Losh const sortedSymbol_t* sortedSymbols, const U32 sortedListSize, 21120c16b537SWarner Losh U32 nbBitsBaseline, U16 baseSeq) 21130c16b537SWarner Losh { 21140c16b537SWarner Losh HUFv05_DEltX4 DElt; 21150c16b537SWarner Losh U32 rankVal[HUFv05_ABSOLUTEMAX_TABLELOG + 1]; 21160c16b537SWarner Losh U32 s; 21170c16b537SWarner Losh 21180c16b537SWarner Losh /* get pre-calculated rankVal */ 21190c16b537SWarner Losh memcpy(rankVal, rankValOrigin, sizeof(rankVal)); 21200c16b537SWarner Losh 21210c16b537SWarner Losh /* fill skipped values */ 21220c16b537SWarner Losh if (minWeight>1) { 21230c16b537SWarner Losh U32 i, skipSize = rankVal[minWeight]; 21240c16b537SWarner Losh MEM_writeLE16(&(DElt.sequence), baseSeq); 21250c16b537SWarner Losh DElt.nbBits = (BYTE)(consumed); 21260c16b537SWarner Losh DElt.length = 1; 21270c16b537SWarner Losh for (i = 0; i < skipSize; i++) 21280c16b537SWarner Losh DTable[i] = DElt; 21290c16b537SWarner Losh } 21300c16b537SWarner Losh 21310c16b537SWarner Losh /* fill DTable */ 21320c16b537SWarner Losh for (s=0; s<sortedListSize; s++) { /* note : sortedSymbols already skipped */ 21330c16b537SWarner Losh const U32 symbol = sortedSymbols[s].symbol; 21340c16b537SWarner Losh const U32 weight = sortedSymbols[s].weight; 21350c16b537SWarner Losh const U32 nbBits = nbBitsBaseline - weight; 21360c16b537SWarner Losh const U32 length = 1 << (sizeLog-nbBits); 21370c16b537SWarner Losh const U32 start = rankVal[weight]; 21380c16b537SWarner Losh U32 i = start; 21390c16b537SWarner Losh const U32 end = start + length; 21400c16b537SWarner Losh 21410c16b537SWarner Losh MEM_writeLE16(&(DElt.sequence), (U16)(baseSeq + (symbol << 8))); 21420c16b537SWarner Losh DElt.nbBits = (BYTE)(nbBits + consumed); 21430c16b537SWarner Losh DElt.length = 2; 21440c16b537SWarner Losh do { DTable[i++] = DElt; } while (i<end); /* since length >= 1 */ 21450c16b537SWarner Losh 21460c16b537SWarner Losh rankVal[weight] += length; 21470c16b537SWarner Losh } 21480c16b537SWarner Losh } 21490c16b537SWarner Losh 21500c16b537SWarner Losh typedef U32 rankVal_t[HUFv05_ABSOLUTEMAX_TABLELOG][HUFv05_ABSOLUTEMAX_TABLELOG + 1]; 21510c16b537SWarner Losh 21520c16b537SWarner Losh static void HUFv05_fillDTableX4(HUFv05_DEltX4* DTable, const U32 targetLog, 21530c16b537SWarner Losh const sortedSymbol_t* sortedList, const U32 sortedListSize, 21540c16b537SWarner Losh const U32* rankStart, rankVal_t rankValOrigin, const U32 maxWeight, 21550c16b537SWarner Losh const U32 nbBitsBaseline) 21560c16b537SWarner Losh { 21570c16b537SWarner Losh U32 rankVal[HUFv05_ABSOLUTEMAX_TABLELOG + 1]; 21580c16b537SWarner Losh const int scaleLog = nbBitsBaseline - targetLog; /* note : targetLog >= srcLog, hence scaleLog <= 1 */ 21590c16b537SWarner Losh const U32 minBits = nbBitsBaseline - maxWeight; 21600c16b537SWarner Losh U32 s; 21610c16b537SWarner Losh 21620c16b537SWarner Losh memcpy(rankVal, rankValOrigin, sizeof(rankVal)); 21630c16b537SWarner Losh 21640c16b537SWarner Losh /* fill DTable */ 21650c16b537SWarner Losh for (s=0; s<sortedListSize; s++) { 21660c16b537SWarner Losh const U16 symbol = sortedList[s].symbol; 21670c16b537SWarner Losh const U32 weight = sortedList[s].weight; 21680c16b537SWarner Losh const U32 nbBits = nbBitsBaseline - weight; 21690c16b537SWarner Losh const U32 start = rankVal[weight]; 21700c16b537SWarner Losh const U32 length = 1 << (targetLog-nbBits); 21710c16b537SWarner Losh 21720c16b537SWarner Losh if (targetLog-nbBits >= minBits) { /* enough room for a second symbol */ 21730c16b537SWarner Losh U32 sortedRank; 21740c16b537SWarner Losh int minWeight = nbBits + scaleLog; 21750c16b537SWarner Losh if (minWeight < 1) minWeight = 1; 21760c16b537SWarner Losh sortedRank = rankStart[minWeight]; 21770c16b537SWarner Losh HUFv05_fillDTableX4Level2(DTable+start, targetLog-nbBits, nbBits, 21780c16b537SWarner Losh rankValOrigin[nbBits], minWeight, 21790c16b537SWarner Losh sortedList+sortedRank, sortedListSize-sortedRank, 21800c16b537SWarner Losh nbBitsBaseline, symbol); 21810c16b537SWarner Losh } else { 21820c16b537SWarner Losh U32 i; 21830c16b537SWarner Losh const U32 end = start + length; 21840c16b537SWarner Losh HUFv05_DEltX4 DElt; 21850c16b537SWarner Losh 21860c16b537SWarner Losh MEM_writeLE16(&(DElt.sequence), symbol); 21870c16b537SWarner Losh DElt.nbBits = (BYTE)(nbBits); 21880c16b537SWarner Losh DElt.length = 1; 21890c16b537SWarner Losh for (i = start; i < end; i++) 21900c16b537SWarner Losh DTable[i] = DElt; 21910c16b537SWarner Losh } 21920c16b537SWarner Losh rankVal[weight] += length; 21930c16b537SWarner Losh } 21940c16b537SWarner Losh } 21950c16b537SWarner Losh 2196a0483764SConrad Meyer size_t HUFv05_readDTableX4 (unsigned* DTable, const void* src, size_t srcSize) 21970c16b537SWarner Losh { 21980c16b537SWarner Losh BYTE weightList[HUFv05_MAX_SYMBOL_VALUE + 1]; 21990c16b537SWarner Losh sortedSymbol_t sortedSymbol[HUFv05_MAX_SYMBOL_VALUE + 1]; 22000c16b537SWarner Losh U32 rankStats[HUFv05_ABSOLUTEMAX_TABLELOG + 1] = { 0 }; 22010c16b537SWarner Losh U32 rankStart0[HUFv05_ABSOLUTEMAX_TABLELOG + 2] = { 0 }; 22020c16b537SWarner Losh U32* const rankStart = rankStart0+1; 22030c16b537SWarner Losh rankVal_t rankVal; 22040c16b537SWarner Losh U32 tableLog, maxW, sizeOfSort, nbSymbols; 22050c16b537SWarner Losh const U32 memLog = DTable[0]; 22060c16b537SWarner Losh size_t iSize; 22070c16b537SWarner Losh void* dtPtr = DTable; 22080c16b537SWarner Losh HUFv05_DEltX4* const dt = ((HUFv05_DEltX4*)dtPtr) + 1; 22090c16b537SWarner Losh 2210a0483764SConrad Meyer HUFv05_STATIC_ASSERT(sizeof(HUFv05_DEltX4) == sizeof(unsigned)); /* if compilation fails here, assertion is false */ 22110c16b537SWarner Losh if (memLog > HUFv05_ABSOLUTEMAX_TABLELOG) return ERROR(tableLog_tooLarge); 22120c16b537SWarner Losh //memset(weightList, 0, sizeof(weightList)); /* is not necessary, even though some analyzer complain ... */ 22130c16b537SWarner Losh 22140c16b537SWarner Losh iSize = HUFv05_readStats(weightList, HUFv05_MAX_SYMBOL_VALUE + 1, rankStats, &nbSymbols, &tableLog, src, srcSize); 22150c16b537SWarner Losh if (HUFv05_isError(iSize)) return iSize; 22160c16b537SWarner Losh 22170c16b537SWarner Losh /* check result */ 22180c16b537SWarner Losh if (tableLog > memLog) return ERROR(tableLog_tooLarge); /* DTable can't fit code depth */ 22190c16b537SWarner Losh 22200c16b537SWarner Losh /* find maxWeight */ 22210c16b537SWarner Losh for (maxW = tableLog; rankStats[maxW]==0; maxW--) {} /* necessarily finds a solution before 0 */ 22220c16b537SWarner Losh 22230c16b537SWarner Losh /* Get start index of each weight */ 22240c16b537SWarner Losh { 22250c16b537SWarner Losh U32 w, nextRankStart = 0; 22260c16b537SWarner Losh for (w=1; w<=maxW; w++) { 22270c16b537SWarner Losh U32 current = nextRankStart; 22280c16b537SWarner Losh nextRankStart += rankStats[w]; 22290c16b537SWarner Losh rankStart[w] = current; 22300c16b537SWarner Losh } 22310c16b537SWarner Losh rankStart[0] = nextRankStart; /* put all 0w symbols at the end of sorted list*/ 22320c16b537SWarner Losh sizeOfSort = nextRankStart; 22330c16b537SWarner Losh } 22340c16b537SWarner Losh 22350c16b537SWarner Losh /* sort symbols by weight */ 22360c16b537SWarner Losh { 22370c16b537SWarner Losh U32 s; 22380c16b537SWarner Losh for (s=0; s<nbSymbols; s++) { 22390c16b537SWarner Losh U32 w = weightList[s]; 22400c16b537SWarner Losh U32 r = rankStart[w]++; 22410c16b537SWarner Losh sortedSymbol[r].symbol = (BYTE)s; 22420c16b537SWarner Losh sortedSymbol[r].weight = (BYTE)w; 22430c16b537SWarner Losh } 22440c16b537SWarner Losh rankStart[0] = 0; /* forget 0w symbols; this is beginning of weight(1) */ 22450c16b537SWarner Losh } 22460c16b537SWarner Losh 22470c16b537SWarner Losh /* Build rankVal */ 22480c16b537SWarner Losh { 22490c16b537SWarner Losh const U32 minBits = tableLog+1 - maxW; 22500c16b537SWarner Losh U32 nextRankVal = 0; 22510c16b537SWarner Losh U32 w, consumed; 22520c16b537SWarner Losh const int rescale = (memLog-tableLog) - 1; /* tableLog <= memLog */ 22530c16b537SWarner Losh U32* rankVal0 = rankVal[0]; 22540c16b537SWarner Losh for (w=1; w<=maxW; w++) { 22550c16b537SWarner Losh U32 current = nextRankVal; 22560c16b537SWarner Losh nextRankVal += rankStats[w] << (w+rescale); 22570c16b537SWarner Losh rankVal0[w] = current; 22580c16b537SWarner Losh } 22590c16b537SWarner Losh for (consumed = minBits; consumed <= memLog - minBits; consumed++) { 22600c16b537SWarner Losh U32* rankValPtr = rankVal[consumed]; 22610c16b537SWarner Losh for (w = 1; w <= maxW; w++) { 22620c16b537SWarner Losh rankValPtr[w] = rankVal0[w] >> consumed; 22630c16b537SWarner Losh } } } 22640c16b537SWarner Losh 22650c16b537SWarner Losh HUFv05_fillDTableX4(dt, memLog, 22660c16b537SWarner Losh sortedSymbol, sizeOfSort, 22670c16b537SWarner Losh rankStart0, rankVal, maxW, 22680c16b537SWarner Losh tableLog+1); 22690c16b537SWarner Losh 22700c16b537SWarner Losh return iSize; 22710c16b537SWarner Losh } 22720c16b537SWarner Losh 22730c16b537SWarner Losh 22740c16b537SWarner Losh static U32 HUFv05_decodeSymbolX4(void* op, BITv05_DStream_t* DStream, const HUFv05_DEltX4* dt, const U32 dtLog) 22750c16b537SWarner Losh { 22760c16b537SWarner Losh const size_t val = BITv05_lookBitsFast(DStream, dtLog); /* note : dtLog >= 1 */ 22770c16b537SWarner Losh memcpy(op, dt+val, 2); 22780c16b537SWarner Losh BITv05_skipBits(DStream, dt[val].nbBits); 22790c16b537SWarner Losh return dt[val].length; 22800c16b537SWarner Losh } 22810c16b537SWarner Losh 22820c16b537SWarner Losh static U32 HUFv05_decodeLastSymbolX4(void* op, BITv05_DStream_t* DStream, const HUFv05_DEltX4* dt, const U32 dtLog) 22830c16b537SWarner Losh { 22840c16b537SWarner Losh const size_t val = BITv05_lookBitsFast(DStream, dtLog); /* note : dtLog >= 1 */ 22850c16b537SWarner Losh memcpy(op, dt+val, 1); 22860c16b537SWarner Losh if (dt[val].length==1) BITv05_skipBits(DStream, dt[val].nbBits); 22870c16b537SWarner Losh else { 22880c16b537SWarner Losh if (DStream->bitsConsumed < (sizeof(DStream->bitContainer)*8)) { 22890c16b537SWarner Losh BITv05_skipBits(DStream, dt[val].nbBits); 22900c16b537SWarner Losh if (DStream->bitsConsumed > (sizeof(DStream->bitContainer)*8)) 22910c16b537SWarner Losh DStream->bitsConsumed = (sizeof(DStream->bitContainer)*8); /* ugly hack; works only because it's the last symbol. Note : can't easily extract nbBits from just this symbol */ 22920c16b537SWarner Losh } } 22930c16b537SWarner Losh return 1; 22940c16b537SWarner Losh } 22950c16b537SWarner Losh 22960c16b537SWarner Losh 22970c16b537SWarner Losh #define HUFv05_DECODE_SYMBOLX4_0(ptr, DStreamPtr) \ 22980c16b537SWarner Losh ptr += HUFv05_decodeSymbolX4(ptr, DStreamPtr, dt, dtLog) 22990c16b537SWarner Losh 23000c16b537SWarner Losh #define HUFv05_DECODE_SYMBOLX4_1(ptr, DStreamPtr) \ 23010c16b537SWarner Losh if (MEM_64bits() || (HUFv05_MAX_TABLELOG<=12)) \ 23020c16b537SWarner Losh ptr += HUFv05_decodeSymbolX4(ptr, DStreamPtr, dt, dtLog) 23030c16b537SWarner Losh 23040c16b537SWarner Losh #define HUFv05_DECODE_SYMBOLX4_2(ptr, DStreamPtr) \ 23050c16b537SWarner Losh if (MEM_64bits()) \ 23060c16b537SWarner Losh ptr += HUFv05_decodeSymbolX4(ptr, DStreamPtr, dt, dtLog) 23070c16b537SWarner Losh 23080c16b537SWarner Losh static inline size_t HUFv05_decodeStreamX4(BYTE* p, BITv05_DStream_t* bitDPtr, BYTE* const pEnd, const HUFv05_DEltX4* const dt, const U32 dtLog) 23090c16b537SWarner Losh { 23100c16b537SWarner Losh BYTE* const pStart = p; 23110c16b537SWarner Losh 23120c16b537SWarner Losh /* up to 8 symbols at a time */ 23130c16b537SWarner Losh while ((BITv05_reloadDStream(bitDPtr) == BITv05_DStream_unfinished) && (p < pEnd-7)) { 23140c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(p, bitDPtr); 23150c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_1(p, bitDPtr); 23160c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(p, bitDPtr); 23170c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(p, bitDPtr); 23180c16b537SWarner Losh } 23190c16b537SWarner Losh 23200c16b537SWarner Losh /* closer to the end */ 23210c16b537SWarner Losh while ((BITv05_reloadDStream(bitDPtr) == BITv05_DStream_unfinished) && (p <= pEnd-2)) 23220c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(p, bitDPtr); 23230c16b537SWarner Losh 23240c16b537SWarner Losh while (p <= pEnd-2) 23250c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(p, bitDPtr); /* no need to reload : reached the end of DStream */ 23260c16b537SWarner Losh 23270c16b537SWarner Losh if (p < pEnd) 23280c16b537SWarner Losh p += HUFv05_decodeLastSymbolX4(p, bitDPtr, dt, dtLog); 23290c16b537SWarner Losh 23300c16b537SWarner Losh return p-pStart; 23310c16b537SWarner Losh } 23320c16b537SWarner Losh 23330c16b537SWarner Losh 23340c16b537SWarner Losh size_t HUFv05_decompress1X4_usingDTable( 23350c16b537SWarner Losh void* dst, size_t dstSize, 23360c16b537SWarner Losh const void* cSrc, size_t cSrcSize, 2337a0483764SConrad Meyer const unsigned* DTable) 23380c16b537SWarner Losh { 23390c16b537SWarner Losh const BYTE* const istart = (const BYTE*) cSrc; 23400c16b537SWarner Losh BYTE* const ostart = (BYTE*) dst; 23410c16b537SWarner Losh BYTE* const oend = ostart + dstSize; 23420c16b537SWarner Losh 23430c16b537SWarner Losh const U32 dtLog = DTable[0]; 23440c16b537SWarner Losh const void* const dtPtr = DTable; 23450c16b537SWarner Losh const HUFv05_DEltX4* const dt = ((const HUFv05_DEltX4*)dtPtr) +1; 23460c16b537SWarner Losh size_t errorCode; 23470c16b537SWarner Losh 23480c16b537SWarner Losh /* Init */ 23490c16b537SWarner Losh BITv05_DStream_t bitD; 23500c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD, istart, cSrcSize); 23510c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 23520c16b537SWarner Losh 23530c16b537SWarner Losh /* finish bitStreams one by one */ 23540c16b537SWarner Losh HUFv05_decodeStreamX4(ostart, &bitD, oend, dt, dtLog); 23550c16b537SWarner Losh 23560c16b537SWarner Losh /* check */ 23570c16b537SWarner Losh if (!BITv05_endOfDStream(&bitD)) return ERROR(corruption_detected); 23580c16b537SWarner Losh 23590c16b537SWarner Losh /* decoded size */ 23600c16b537SWarner Losh return dstSize; 23610c16b537SWarner Losh } 23620c16b537SWarner Losh 23630c16b537SWarner Losh size_t HUFv05_decompress1X4 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize) 23640c16b537SWarner Losh { 23650c16b537SWarner Losh HUFv05_CREATE_STATIC_DTABLEX4(DTable, HUFv05_MAX_TABLELOG); 23660c16b537SWarner Losh const BYTE* ip = (const BYTE*) cSrc; 23670c16b537SWarner Losh 23680c16b537SWarner Losh size_t hSize = HUFv05_readDTableX4 (DTable, cSrc, cSrcSize); 23690c16b537SWarner Losh if (HUFv05_isError(hSize)) return hSize; 23700c16b537SWarner Losh if (hSize >= cSrcSize) return ERROR(srcSize_wrong); 23710c16b537SWarner Losh ip += hSize; 23720c16b537SWarner Losh cSrcSize -= hSize; 23730c16b537SWarner Losh 23740c16b537SWarner Losh return HUFv05_decompress1X4_usingDTable (dst, dstSize, ip, cSrcSize, DTable); 23750c16b537SWarner Losh } 23760c16b537SWarner Losh 23770c16b537SWarner Losh size_t HUFv05_decompress4X4_usingDTable( 23780c16b537SWarner Losh void* dst, size_t dstSize, 23790c16b537SWarner Losh const void* cSrc, size_t cSrcSize, 2380a0483764SConrad Meyer const unsigned* DTable) 23810c16b537SWarner Losh { 23820c16b537SWarner Losh if (cSrcSize < 10) return ERROR(corruption_detected); /* strict minimum : jump table + 1 byte per stream */ 23830c16b537SWarner Losh 23840c16b537SWarner Losh { 23850c16b537SWarner Losh const BYTE* const istart = (const BYTE*) cSrc; 23860c16b537SWarner Losh BYTE* const ostart = (BYTE*) dst; 23870c16b537SWarner Losh BYTE* const oend = ostart + dstSize; 23880c16b537SWarner Losh const void* const dtPtr = DTable; 23890c16b537SWarner Losh const HUFv05_DEltX4* const dt = ((const HUFv05_DEltX4*)dtPtr) +1; 23900c16b537SWarner Losh const U32 dtLog = DTable[0]; 23910c16b537SWarner Losh size_t errorCode; 23920c16b537SWarner Losh 23930c16b537SWarner Losh /* Init */ 23940c16b537SWarner Losh BITv05_DStream_t bitD1; 23950c16b537SWarner Losh BITv05_DStream_t bitD2; 23960c16b537SWarner Losh BITv05_DStream_t bitD3; 23970c16b537SWarner Losh BITv05_DStream_t bitD4; 23980c16b537SWarner Losh const size_t length1 = MEM_readLE16(istart); 23990c16b537SWarner Losh const size_t length2 = MEM_readLE16(istart+2); 24000c16b537SWarner Losh const size_t length3 = MEM_readLE16(istart+4); 24010c16b537SWarner Losh size_t length4; 24020c16b537SWarner Losh const BYTE* const istart1 = istart + 6; /* jumpTable */ 24030c16b537SWarner Losh const BYTE* const istart2 = istart1 + length1; 24040c16b537SWarner Losh const BYTE* const istart3 = istart2 + length2; 24050c16b537SWarner Losh const BYTE* const istart4 = istart3 + length3; 24060c16b537SWarner Losh const size_t segmentSize = (dstSize+3) / 4; 24070c16b537SWarner Losh BYTE* const opStart2 = ostart + segmentSize; 24080c16b537SWarner Losh BYTE* const opStart3 = opStart2 + segmentSize; 24090c16b537SWarner Losh BYTE* const opStart4 = opStart3 + segmentSize; 24100c16b537SWarner Losh BYTE* op1 = ostart; 24110c16b537SWarner Losh BYTE* op2 = opStart2; 24120c16b537SWarner Losh BYTE* op3 = opStart3; 24130c16b537SWarner Losh BYTE* op4 = opStart4; 24140c16b537SWarner Losh U32 endSignal; 24150c16b537SWarner Losh 24160c16b537SWarner Losh length4 = cSrcSize - (length1 + length2 + length3 + 6); 24170c16b537SWarner Losh if (length4 > cSrcSize) return ERROR(corruption_detected); /* overflow */ 24180c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD1, istart1, length1); 24190c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 24200c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD2, istart2, length2); 24210c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 24220c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD3, istart3, length3); 24230c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 24240c16b537SWarner Losh errorCode = BITv05_initDStream(&bitD4, istart4, length4); 24250c16b537SWarner Losh if (HUFv05_isError(errorCode)) return errorCode; 24260c16b537SWarner Losh 24270c16b537SWarner Losh /* 16-32 symbols per loop (4-8 symbols per stream) */ 24280c16b537SWarner Losh endSignal = BITv05_reloadDStream(&bitD1) | BITv05_reloadDStream(&bitD2) | BITv05_reloadDStream(&bitD3) | BITv05_reloadDStream(&bitD4); 24290c16b537SWarner Losh for ( ; (endSignal==BITv05_DStream_unfinished) && (op4<(oend-7)) ; ) { 24300c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op1, &bitD1); 24310c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op2, &bitD2); 24320c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op3, &bitD3); 24330c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op4, &bitD4); 24340c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_1(op1, &bitD1); 24350c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_1(op2, &bitD2); 24360c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_1(op3, &bitD3); 24370c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_1(op4, &bitD4); 24380c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op1, &bitD1); 24390c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op2, &bitD2); 24400c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op3, &bitD3); 24410c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_2(op4, &bitD4); 24420c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(op1, &bitD1); 24430c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(op2, &bitD2); 24440c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(op3, &bitD3); 24450c16b537SWarner Losh HUFv05_DECODE_SYMBOLX4_0(op4, &bitD4); 24460c16b537SWarner Losh 24470c16b537SWarner Losh endSignal = BITv05_reloadDStream(&bitD1) | BITv05_reloadDStream(&bitD2) | BITv05_reloadDStream(&bitD3) | BITv05_reloadDStream(&bitD4); 24480c16b537SWarner Losh } 24490c16b537SWarner Losh 24500c16b537SWarner Losh /* check corruption */ 24510c16b537SWarner Losh if (op1 > opStart2) return ERROR(corruption_detected); 24520c16b537SWarner Losh if (op2 > opStart3) return ERROR(corruption_detected); 24530c16b537SWarner Losh if (op3 > opStart4) return ERROR(corruption_detected); 24540c16b537SWarner Losh /* note : op4 supposed already verified within main loop */ 24550c16b537SWarner Losh 24560c16b537SWarner Losh /* finish bitStreams one by one */ 24570c16b537SWarner Losh HUFv05_decodeStreamX4(op1, &bitD1, opStart2, dt, dtLog); 24580c16b537SWarner Losh HUFv05_decodeStreamX4(op2, &bitD2, opStart3, dt, dtLog); 24590c16b537SWarner Losh HUFv05_decodeStreamX4(op3, &bitD3, opStart4, dt, dtLog); 24600c16b537SWarner Losh HUFv05_decodeStreamX4(op4, &bitD4, oend, dt, dtLog); 24610c16b537SWarner Losh 24620c16b537SWarner Losh /* check */ 24630c16b537SWarner Losh endSignal = BITv05_endOfDStream(&bitD1) & BITv05_endOfDStream(&bitD2) & BITv05_endOfDStream(&bitD3) & BITv05_endOfDStream(&bitD4); 24640c16b537SWarner Losh if (!endSignal) return ERROR(corruption_detected); 24650c16b537SWarner Losh 24660c16b537SWarner Losh /* decoded size */ 24670c16b537SWarner Losh return dstSize; 24680c16b537SWarner Losh } 24690c16b537SWarner Losh } 24700c16b537SWarner Losh 24710c16b537SWarner Losh 24720c16b537SWarner Losh size_t HUFv05_decompress4X4 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize) 24730c16b537SWarner Losh { 24740c16b537SWarner Losh HUFv05_CREATE_STATIC_DTABLEX4(DTable, HUFv05_MAX_TABLELOG); 24750c16b537SWarner Losh const BYTE* ip = (const BYTE*) cSrc; 24760c16b537SWarner Losh 24770c16b537SWarner Losh size_t hSize = HUFv05_readDTableX4 (DTable, cSrc, cSrcSize); 24780c16b537SWarner Losh if (HUFv05_isError(hSize)) return hSize; 24790c16b537SWarner Losh if (hSize >= cSrcSize) return ERROR(srcSize_wrong); 24800c16b537SWarner Losh ip += hSize; 24810c16b537SWarner Losh cSrcSize -= hSize; 24820c16b537SWarner Losh 24830c16b537SWarner Losh return HUFv05_decompress4X4_usingDTable (dst, dstSize, ip, cSrcSize, DTable); 24840c16b537SWarner Losh } 24850c16b537SWarner Losh 24860c16b537SWarner Losh 24870c16b537SWarner Losh /* ********************************/ 24880c16b537SWarner Losh /* Generic decompression selector */ 24890c16b537SWarner Losh /* ********************************/ 24900c16b537SWarner Losh 24910c16b537SWarner Losh typedef struct { U32 tableTime; U32 decode256Time; } algo_time_t; 24920c16b537SWarner Losh static const algo_time_t algoTime[16 /* Quantization */][3 /* single, double, quad */] = 24930c16b537SWarner Losh { 24940c16b537SWarner Losh /* single, double, quad */ 24950c16b537SWarner Losh {{0,0}, {1,1}, {2,2}}, /* Q==0 : impossible */ 24960c16b537SWarner Losh {{0,0}, {1,1}, {2,2}}, /* Q==1 : impossible */ 24970c16b537SWarner Losh {{ 38,130}, {1313, 74}, {2151, 38}}, /* Q == 2 : 12-18% */ 24980c16b537SWarner Losh {{ 448,128}, {1353, 74}, {2238, 41}}, /* Q == 3 : 18-25% */ 24990c16b537SWarner Losh {{ 556,128}, {1353, 74}, {2238, 47}}, /* Q == 4 : 25-32% */ 25000c16b537SWarner Losh {{ 714,128}, {1418, 74}, {2436, 53}}, /* Q == 5 : 32-38% */ 25010c16b537SWarner Losh {{ 883,128}, {1437, 74}, {2464, 61}}, /* Q == 6 : 38-44% */ 25020c16b537SWarner Losh {{ 897,128}, {1515, 75}, {2622, 68}}, /* Q == 7 : 44-50% */ 25030c16b537SWarner Losh {{ 926,128}, {1613, 75}, {2730, 75}}, /* Q == 8 : 50-56% */ 25040c16b537SWarner Losh {{ 947,128}, {1729, 77}, {3359, 77}}, /* Q == 9 : 56-62% */ 25050c16b537SWarner Losh {{1107,128}, {2083, 81}, {4006, 84}}, /* Q ==10 : 62-69% */ 25060c16b537SWarner Losh {{1177,128}, {2379, 87}, {4785, 88}}, /* Q ==11 : 69-75% */ 25070c16b537SWarner Losh {{1242,128}, {2415, 93}, {5155, 84}}, /* Q ==12 : 75-81% */ 25080c16b537SWarner Losh {{1349,128}, {2644,106}, {5260,106}}, /* Q ==13 : 81-87% */ 25090c16b537SWarner Losh {{1455,128}, {2422,124}, {4174,124}}, /* Q ==14 : 87-93% */ 25100c16b537SWarner Losh {{ 722,128}, {1891,145}, {1936,146}}, /* Q ==15 : 93-99% */ 25110c16b537SWarner Losh }; 25120c16b537SWarner Losh 25130c16b537SWarner Losh typedef size_t (*decompressionAlgo)(void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize); 25140c16b537SWarner Losh 25150c16b537SWarner Losh size_t HUFv05_decompress (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize) 25160c16b537SWarner Losh { 25170c16b537SWarner Losh static const decompressionAlgo decompress[3] = { HUFv05_decompress4X2, HUFv05_decompress4X4, NULL }; 25180c16b537SWarner Losh /* estimate decompression time */ 25190c16b537SWarner Losh U32 Q; 25200c16b537SWarner Losh const U32 D256 = (U32)(dstSize >> 8); 25210c16b537SWarner Losh U32 Dtime[3]; 25220c16b537SWarner Losh U32 algoNb = 0; 25230c16b537SWarner Losh int n; 25240c16b537SWarner Losh 25250c16b537SWarner Losh /* validation checks */ 25260c16b537SWarner Losh if (dstSize == 0) return ERROR(dstSize_tooSmall); 25270c16b537SWarner Losh if (cSrcSize >= dstSize) return ERROR(corruption_detected); /* invalid, or not compressed, but not compressed already dealt with */ 25280c16b537SWarner Losh if (cSrcSize == 1) { memset(dst, *(const BYTE*)cSrc, dstSize); return dstSize; } /* RLE */ 25290c16b537SWarner Losh 25300c16b537SWarner Losh /* decoder timing evaluation */ 25310c16b537SWarner Losh Q = (U32)(cSrcSize * 16 / dstSize); /* Q < 16 since dstSize > cSrcSize */ 25320c16b537SWarner Losh for (n=0; n<3; n++) 25330c16b537SWarner Losh Dtime[n] = algoTime[Q][n].tableTime + (algoTime[Q][n].decode256Time * D256); 25340c16b537SWarner Losh 25350c16b537SWarner Losh Dtime[1] += Dtime[1] >> 4; Dtime[2] += Dtime[2] >> 3; /* advantage to algorithms using less memory, for cache eviction */ 25360c16b537SWarner Losh 25370c16b537SWarner Losh if (Dtime[1] < Dtime[0]) algoNb = 1; 25380c16b537SWarner Losh 25390c16b537SWarner Losh return decompress[algoNb](dst, dstSize, cSrc, cSrcSize); 25400c16b537SWarner Losh 25410c16b537SWarner Losh //return HUFv05_decompress4X2(dst, dstSize, cSrc, cSrcSize); /* multi-streams single-symbol decoding */ 25420c16b537SWarner Losh //return HUFv05_decompress4X4(dst, dstSize, cSrc, cSrcSize); /* multi-streams double-symbols decoding */ 25430c16b537SWarner Losh //return HUFv05_decompress4X6(dst, dstSize, cSrc, cSrcSize); /* multi-streams quad-symbols decoding */ 25440c16b537SWarner Losh } 25450c16b537SWarner Losh /* 25460c16b537SWarner Losh zstd - standard compression library 25470c16b537SWarner Losh Copyright (C) 2014-2016, Yann Collet. 25480c16b537SWarner Losh 25490c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 25500c16b537SWarner Losh 25510c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 25520c16b537SWarner Losh modification, are permitted provided that the following conditions are 25530c16b537SWarner Losh met: 25540c16b537SWarner Losh * Redistributions of source code must retain the above copyright 25550c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 25560c16b537SWarner Losh * Redistributions in binary form must reproduce the above 25570c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 25580c16b537SWarner Losh in the documentation and/or other materials provided with the 25590c16b537SWarner Losh distribution. 25600c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 25610c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 25620c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 25630c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 25640c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 25650c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 25660c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 25670c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 25680c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25690c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 25700c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 25710c16b537SWarner Losh 25720c16b537SWarner Losh You can contact the author at : 25730c16b537SWarner Losh - zstd source repository : https://github.com/Cyan4973/zstd 25740c16b537SWarner Losh */ 25750c16b537SWarner Losh 25760c16b537SWarner Losh /* *************************************************************** 25770c16b537SWarner Losh * Tuning parameters 25780c16b537SWarner Losh *****************************************************************/ 25790c16b537SWarner Losh /*! 25800c16b537SWarner Losh * HEAPMODE : 25810c16b537SWarner Losh * Select how default decompression function ZSTDv05_decompress() will allocate memory, 25820c16b537SWarner Losh * in memory stack (0), or in memory heap (1, requires malloc()) 25830c16b537SWarner Losh */ 25840c16b537SWarner Losh #ifndef ZSTDv05_HEAPMODE 25850c16b537SWarner Losh # define ZSTDv05_HEAPMODE 1 25860c16b537SWarner Losh #endif 25870c16b537SWarner Losh 25880c16b537SWarner Losh 25890c16b537SWarner Losh /*-******************************************************* 25900c16b537SWarner Losh * Dependencies 25910c16b537SWarner Losh *********************************************************/ 25920c16b537SWarner Losh #include <stdlib.h> /* calloc */ 25930c16b537SWarner Losh #include <string.h> /* memcpy, memmove */ 25940c16b537SWarner Losh #include <stdio.h> /* debug only : printf */ 25950c16b537SWarner Losh 25960c16b537SWarner Losh 25970c16b537SWarner Losh /*-******************************************************* 25980c16b537SWarner Losh * Compiler specifics 25990c16b537SWarner Losh *********************************************************/ 26000c16b537SWarner Losh #ifdef _MSC_VER /* Visual Studio */ 26010c16b537SWarner Losh # include <intrin.h> /* For Visual 2005 */ 26020c16b537SWarner Losh # pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */ 26030c16b537SWarner Losh # pragma warning(disable : 4324) /* disable: C4324: padded structure */ 26040c16b537SWarner Losh #endif 26050c16b537SWarner Losh 26060c16b537SWarner Losh 26070c16b537SWarner Losh /*-************************************* 26080c16b537SWarner Losh * Local types 26090c16b537SWarner Losh ***************************************/ 26100c16b537SWarner Losh typedef struct 26110c16b537SWarner Losh { 26120c16b537SWarner Losh blockType_t blockType; 26130c16b537SWarner Losh U32 origSize; 26140c16b537SWarner Losh } blockProperties_t; 26150c16b537SWarner Losh 26160c16b537SWarner Losh 26170c16b537SWarner Losh /* ******************************************************* 26180c16b537SWarner Losh * Memory operations 26190c16b537SWarner Losh **********************************************************/ 26200c16b537SWarner Losh static void ZSTDv05_copy4(void* dst, const void* src) { memcpy(dst, src, 4); } 26210c16b537SWarner Losh 26220c16b537SWarner Losh 26230c16b537SWarner Losh /* ************************************* 26240c16b537SWarner Losh * Error Management 26250c16b537SWarner Losh ***************************************/ 26260c16b537SWarner Losh /*! ZSTDv05_isError() : 26270c16b537SWarner Losh * tells if a return value is an error code */ 26280c16b537SWarner Losh unsigned ZSTDv05_isError(size_t code) { return ERR_isError(code); } 26290c16b537SWarner Losh 26300c16b537SWarner Losh 26310c16b537SWarner Losh /*! ZSTDv05_getErrorName() : 26320c16b537SWarner Losh * provides error code string (useful for debugging) */ 26330c16b537SWarner Losh const char* ZSTDv05_getErrorName(size_t code) { return ERR_getErrorName(code); } 26340c16b537SWarner Losh 26350c16b537SWarner Losh 26360c16b537SWarner Losh /* ************************************************************* 26370c16b537SWarner Losh * Context management 26380c16b537SWarner Losh ***************************************************************/ 26390c16b537SWarner Losh typedef enum { ZSTDv05ds_getFrameHeaderSize, ZSTDv05ds_decodeFrameHeader, 26400c16b537SWarner Losh ZSTDv05ds_decodeBlockHeader, ZSTDv05ds_decompressBlock } ZSTDv05_dStage; 26410c16b537SWarner Losh 26420c16b537SWarner Losh struct ZSTDv05_DCtx_s 26430c16b537SWarner Losh { 26440c16b537SWarner Losh FSEv05_DTable LLTable[FSEv05_DTABLE_SIZE_U32(LLFSEv05Log)]; 26450c16b537SWarner Losh FSEv05_DTable OffTable[FSEv05_DTABLE_SIZE_U32(OffFSEv05Log)]; 26460c16b537SWarner Losh FSEv05_DTable MLTable[FSEv05_DTABLE_SIZE_U32(MLFSEv05Log)]; 26470c16b537SWarner Losh unsigned hufTableX4[HUFv05_DTABLE_SIZE(HufLog)]; 26480c16b537SWarner Losh const void* previousDstEnd; 26490c16b537SWarner Losh const void* base; 26500c16b537SWarner Losh const void* vBase; 26510c16b537SWarner Losh const void* dictEnd; 26520c16b537SWarner Losh size_t expected; 26530c16b537SWarner Losh size_t headerSize; 26540c16b537SWarner Losh ZSTDv05_parameters params; 26550c16b537SWarner Losh blockType_t bType; /* used in ZSTDv05_decompressContinue(), to transfer blockType between header decoding and block decoding stages */ 26560c16b537SWarner Losh ZSTDv05_dStage stage; 26570c16b537SWarner Losh U32 flagStaticTables; 26580c16b537SWarner Losh const BYTE* litPtr; 26590c16b537SWarner Losh size_t litSize; 26600c16b537SWarner Losh BYTE litBuffer[BLOCKSIZE + WILDCOPY_OVERLENGTH]; 26610c16b537SWarner Losh BYTE headerBuffer[ZSTDv05_frameHeaderSize_max]; 26620c16b537SWarner Losh }; /* typedef'd to ZSTDv05_DCtx within "zstd_static.h" */ 26630c16b537SWarner Losh 26640f743729SConrad Meyer size_t ZSTDv05_sizeofDCtx (void); /* Hidden declaration */ 26650c16b537SWarner Losh size_t ZSTDv05_sizeofDCtx (void) { return sizeof(ZSTDv05_DCtx); } 26660c16b537SWarner Losh 26670c16b537SWarner Losh size_t ZSTDv05_decompressBegin(ZSTDv05_DCtx* dctx) 26680c16b537SWarner Losh { 26690c16b537SWarner Losh dctx->expected = ZSTDv05_frameHeaderSize_min; 26700c16b537SWarner Losh dctx->stage = ZSTDv05ds_getFrameHeaderSize; 26710c16b537SWarner Losh dctx->previousDstEnd = NULL; 26720c16b537SWarner Losh dctx->base = NULL; 26730c16b537SWarner Losh dctx->vBase = NULL; 26740c16b537SWarner Losh dctx->dictEnd = NULL; 26750c16b537SWarner Losh dctx->hufTableX4[0] = HufLog; 26760c16b537SWarner Losh dctx->flagStaticTables = 0; 26770c16b537SWarner Losh return 0; 26780c16b537SWarner Losh } 26790c16b537SWarner Losh 26800c16b537SWarner Losh ZSTDv05_DCtx* ZSTDv05_createDCtx(void) 26810c16b537SWarner Losh { 26820c16b537SWarner Losh ZSTDv05_DCtx* dctx = (ZSTDv05_DCtx*)malloc(sizeof(ZSTDv05_DCtx)); 26830c16b537SWarner Losh if (dctx==NULL) return NULL; 26840c16b537SWarner Losh ZSTDv05_decompressBegin(dctx); 26850c16b537SWarner Losh return dctx; 26860c16b537SWarner Losh } 26870c16b537SWarner Losh 26880c16b537SWarner Losh size_t ZSTDv05_freeDCtx(ZSTDv05_DCtx* dctx) 26890c16b537SWarner Losh { 26900c16b537SWarner Losh free(dctx); 26910c16b537SWarner Losh return 0; /* reserved as a potential error code in the future */ 26920c16b537SWarner Losh } 26930c16b537SWarner Losh 26940c16b537SWarner Losh void ZSTDv05_copyDCtx(ZSTDv05_DCtx* dstDCtx, const ZSTDv05_DCtx* srcDCtx) 26950c16b537SWarner Losh { 26960c16b537SWarner Losh memcpy(dstDCtx, srcDCtx, 26970c16b537SWarner Losh sizeof(ZSTDv05_DCtx) - (BLOCKSIZE+WILDCOPY_OVERLENGTH + ZSTDv05_frameHeaderSize_max)); /* no need to copy workspace */ 26980c16b537SWarner Losh } 26990c16b537SWarner Losh 27000c16b537SWarner Losh 27010c16b537SWarner Losh /* ************************************************************* 27020c16b537SWarner Losh * Decompression section 27030c16b537SWarner Losh ***************************************************************/ 27040c16b537SWarner Losh 27050c16b537SWarner Losh /* Frame format description 27060c16b537SWarner Losh Frame Header - [ Block Header - Block ] - Frame End 27070c16b537SWarner Losh 1) Frame Header 27080c16b537SWarner Losh - 4 bytes - Magic Number : ZSTDv05_MAGICNUMBER (defined within zstd_internal.h) 27090c16b537SWarner Losh - 1 byte - Window Descriptor 27100c16b537SWarner Losh 2) Block Header 27110c16b537SWarner Losh - 3 bytes, starting with a 2-bits descriptor 27120c16b537SWarner Losh Uncompressed, Compressed, Frame End, unused 27130c16b537SWarner Losh 3) Block 27140c16b537SWarner Losh See Block Format Description 27150c16b537SWarner Losh 4) Frame End 27160c16b537SWarner Losh - 3 bytes, compatible with Block Header 27170c16b537SWarner Losh */ 27180c16b537SWarner Losh 27190c16b537SWarner Losh /* Block format description 27200c16b537SWarner Losh 27210c16b537SWarner Losh Block = Literal Section - Sequences Section 27220c16b537SWarner Losh Prerequisite : size of (compressed) block, maximum size of regenerated data 27230c16b537SWarner Losh 27240c16b537SWarner Losh 1) Literal Section 27250c16b537SWarner Losh 27260c16b537SWarner Losh 1.1) Header : 1-5 bytes 27270c16b537SWarner Losh flags: 2 bits 27280c16b537SWarner Losh 00 compressed by Huff0 27290c16b537SWarner Losh 01 unused 27300c16b537SWarner Losh 10 is Raw (uncompressed) 27310c16b537SWarner Losh 11 is Rle 27320c16b537SWarner Losh Note : using 01 => Huff0 with precomputed table ? 27330c16b537SWarner Losh Note : delta map ? => compressed ? 27340c16b537SWarner Losh 27350c16b537SWarner Losh 1.1.1) Huff0-compressed literal block : 3-5 bytes 27360c16b537SWarner Losh srcSize < 1 KB => 3 bytes (2-2-10-10) => single stream 27370c16b537SWarner Losh srcSize < 1 KB => 3 bytes (2-2-10-10) 27380c16b537SWarner Losh srcSize < 16KB => 4 bytes (2-2-14-14) 27390c16b537SWarner Losh else => 5 bytes (2-2-18-18) 27400c16b537SWarner Losh big endian convention 27410c16b537SWarner Losh 27420c16b537SWarner Losh 1.1.2) Raw (uncompressed) literal block header : 1-3 bytes 27430c16b537SWarner Losh size : 5 bits: (IS_RAW<<6) + (0<<4) + size 27440c16b537SWarner Losh 12 bits: (IS_RAW<<6) + (2<<4) + (size>>8) 27450c16b537SWarner Losh size&255 27460c16b537SWarner Losh 20 bits: (IS_RAW<<6) + (3<<4) + (size>>16) 27470c16b537SWarner Losh size>>8&255 27480c16b537SWarner Losh size&255 27490c16b537SWarner Losh 27500c16b537SWarner Losh 1.1.3) Rle (repeated single byte) literal block header : 1-3 bytes 27510c16b537SWarner Losh size : 5 bits: (IS_RLE<<6) + (0<<4) + size 27520c16b537SWarner Losh 12 bits: (IS_RLE<<6) + (2<<4) + (size>>8) 27530c16b537SWarner Losh size&255 27540c16b537SWarner Losh 20 bits: (IS_RLE<<6) + (3<<4) + (size>>16) 27550c16b537SWarner Losh size>>8&255 27560c16b537SWarner Losh size&255 27570c16b537SWarner Losh 27580c16b537SWarner Losh 1.1.4) Huff0-compressed literal block, using precomputed CTables : 3-5 bytes 27590c16b537SWarner Losh srcSize < 1 KB => 3 bytes (2-2-10-10) => single stream 27600c16b537SWarner Losh srcSize < 1 KB => 3 bytes (2-2-10-10) 27610c16b537SWarner Losh srcSize < 16KB => 4 bytes (2-2-14-14) 27620c16b537SWarner Losh else => 5 bytes (2-2-18-18) 27630c16b537SWarner Losh big endian convention 27640c16b537SWarner Losh 27650c16b537SWarner Losh 1- CTable available (stored into workspace ?) 27660c16b537SWarner Losh 2- Small input (fast heuristic ? Full comparison ? depend on clevel ?) 27670c16b537SWarner Losh 27680c16b537SWarner Losh 27690c16b537SWarner Losh 1.2) Literal block content 27700c16b537SWarner Losh 27710c16b537SWarner Losh 1.2.1) Huff0 block, using sizes from header 27720c16b537SWarner Losh See Huff0 format 27730c16b537SWarner Losh 27740c16b537SWarner Losh 1.2.2) Huff0 block, using prepared table 27750c16b537SWarner Losh 27760c16b537SWarner Losh 1.2.3) Raw content 27770c16b537SWarner Losh 27780c16b537SWarner Losh 1.2.4) single byte 27790c16b537SWarner Losh 27800c16b537SWarner Losh 27810c16b537SWarner Losh 2) Sequences section 27820c16b537SWarner Losh TO DO 27830c16b537SWarner Losh */ 27840c16b537SWarner Losh 27850c16b537SWarner Losh 27860c16b537SWarner Losh /** ZSTDv05_decodeFrameHeader_Part1() : 27870c16b537SWarner Losh * decode the 1st part of the Frame Header, which tells Frame Header size. 27880c16b537SWarner Losh * srcSize must be == ZSTDv05_frameHeaderSize_min. 27890c16b537SWarner Losh * @return : the full size of the Frame Header */ 27900c16b537SWarner Losh static size_t ZSTDv05_decodeFrameHeader_Part1(ZSTDv05_DCtx* zc, const void* src, size_t srcSize) 27910c16b537SWarner Losh { 27920c16b537SWarner Losh U32 magicNumber; 27930c16b537SWarner Losh if (srcSize != ZSTDv05_frameHeaderSize_min) 27940c16b537SWarner Losh return ERROR(srcSize_wrong); 27950c16b537SWarner Losh magicNumber = MEM_readLE32(src); 27960c16b537SWarner Losh if (magicNumber != ZSTDv05_MAGICNUMBER) return ERROR(prefix_unknown); 27970c16b537SWarner Losh zc->headerSize = ZSTDv05_frameHeaderSize_min; 27980c16b537SWarner Losh return zc->headerSize; 27990c16b537SWarner Losh } 28000c16b537SWarner Losh 28010c16b537SWarner Losh 28020c16b537SWarner Losh size_t ZSTDv05_getFrameParams(ZSTDv05_parameters* params, const void* src, size_t srcSize) 28030c16b537SWarner Losh { 28040c16b537SWarner Losh U32 magicNumber; 28050c16b537SWarner Losh if (srcSize < ZSTDv05_frameHeaderSize_min) return ZSTDv05_frameHeaderSize_max; 28060c16b537SWarner Losh magicNumber = MEM_readLE32(src); 28070c16b537SWarner Losh if (magicNumber != ZSTDv05_MAGICNUMBER) return ERROR(prefix_unknown); 28080c16b537SWarner Losh memset(params, 0, sizeof(*params)); 28090c16b537SWarner Losh params->windowLog = (((const BYTE*)src)[4] & 15) + ZSTDv05_WINDOWLOG_ABSOLUTEMIN; 28100c16b537SWarner Losh if ((((const BYTE*)src)[4] >> 4) != 0) return ERROR(frameParameter_unsupported); /* reserved bits */ 28110c16b537SWarner Losh return 0; 28120c16b537SWarner Losh } 28130c16b537SWarner Losh 28140c16b537SWarner Losh /** ZSTDv05_decodeFrameHeader_Part2() : 28150c16b537SWarner Losh * decode the full Frame Header. 28160c16b537SWarner Losh * srcSize must be the size provided by ZSTDv05_decodeFrameHeader_Part1(). 28170c16b537SWarner Losh * @return : 0, or an error code, which can be tested using ZSTDv05_isError() */ 28180c16b537SWarner Losh static size_t ZSTDv05_decodeFrameHeader_Part2(ZSTDv05_DCtx* zc, const void* src, size_t srcSize) 28190c16b537SWarner Losh { 28200c16b537SWarner Losh size_t result; 28210c16b537SWarner Losh if (srcSize != zc->headerSize) 28220c16b537SWarner Losh return ERROR(srcSize_wrong); 28230c16b537SWarner Losh result = ZSTDv05_getFrameParams(&(zc->params), src, srcSize); 28240c16b537SWarner Losh if ((MEM_32bits()) && (zc->params.windowLog > 25)) return ERROR(frameParameter_unsupported); 28250c16b537SWarner Losh return result; 28260c16b537SWarner Losh } 28270c16b537SWarner Losh 28280c16b537SWarner Losh 28290f743729SConrad Meyer static size_t ZSTDv05_getcBlockSize(const void* src, size_t srcSize, blockProperties_t* bpPtr) 28300c16b537SWarner Losh { 28310c16b537SWarner Losh const BYTE* const in = (const BYTE* const)src; 28320c16b537SWarner Losh BYTE headerFlags; 28330c16b537SWarner Losh U32 cSize; 28340c16b537SWarner Losh 28350c16b537SWarner Losh if (srcSize < 3) 28360c16b537SWarner Losh return ERROR(srcSize_wrong); 28370c16b537SWarner Losh 28380c16b537SWarner Losh headerFlags = *in; 28390c16b537SWarner Losh cSize = in[2] + (in[1]<<8) + ((in[0] & 7)<<16); 28400c16b537SWarner Losh 28410c16b537SWarner Losh bpPtr->blockType = (blockType_t)(headerFlags >> 6); 28420c16b537SWarner Losh bpPtr->origSize = (bpPtr->blockType == bt_rle) ? cSize : 0; 28430c16b537SWarner Losh 28440c16b537SWarner Losh if (bpPtr->blockType == bt_end) return 0; 28450c16b537SWarner Losh if (bpPtr->blockType == bt_rle) return 1; 28460c16b537SWarner Losh return cSize; 28470c16b537SWarner Losh } 28480c16b537SWarner Losh 28490c16b537SWarner Losh 28500c16b537SWarner Losh static size_t ZSTDv05_copyRawBlock(void* dst, size_t maxDstSize, const void* src, size_t srcSize) 28510c16b537SWarner Losh { 28520f743729SConrad Meyer if (dst==NULL) return ERROR(dstSize_tooSmall); 28530c16b537SWarner Losh if (srcSize > maxDstSize) return ERROR(dstSize_tooSmall); 28540c16b537SWarner Losh memcpy(dst, src, srcSize); 28550c16b537SWarner Losh return srcSize; 28560c16b537SWarner Losh } 28570c16b537SWarner Losh 28580c16b537SWarner Losh 28590c16b537SWarner Losh /*! ZSTDv05_decodeLiteralsBlock() : 28600c16b537SWarner Losh @return : nb of bytes read from src (< srcSize ) */ 28610f743729SConrad Meyer static size_t ZSTDv05_decodeLiteralsBlock(ZSTDv05_DCtx* dctx, 28620c16b537SWarner Losh const void* src, size_t srcSize) /* note : srcSize < BLOCKSIZE */ 28630c16b537SWarner Losh { 28640c16b537SWarner Losh const BYTE* const istart = (const BYTE*) src; 28650c16b537SWarner Losh 28660c16b537SWarner Losh /* any compressed block with literals segment must be at least this size */ 28670c16b537SWarner Losh if (srcSize < MIN_CBLOCK_SIZE) return ERROR(corruption_detected); 28680c16b537SWarner Losh 28690c16b537SWarner Losh switch(istart[0]>> 6) 28700c16b537SWarner Losh { 28710c16b537SWarner Losh case IS_HUFv05: 28720c16b537SWarner Losh { 28730c16b537SWarner Losh size_t litSize, litCSize, singleStream=0; 28740c16b537SWarner Losh U32 lhSize = ((istart[0]) >> 4) & 3; 28750c16b537SWarner Losh if (srcSize < 5) return ERROR(corruption_detected); /* srcSize >= MIN_CBLOCK_SIZE == 3; here we need up to 5 for case 3 */ 28760c16b537SWarner Losh switch(lhSize) 28770c16b537SWarner Losh { 28780c16b537SWarner Losh case 0: case 1: default: /* note : default is impossible, since lhSize into [0..3] */ 28790c16b537SWarner Losh /* 2 - 2 - 10 - 10 */ 28800c16b537SWarner Losh lhSize=3; 28810c16b537SWarner Losh singleStream = istart[0] & 16; 28820c16b537SWarner Losh litSize = ((istart[0] & 15) << 6) + (istart[1] >> 2); 28830c16b537SWarner Losh litCSize = ((istart[1] & 3) << 8) + istart[2]; 28840c16b537SWarner Losh break; 28850c16b537SWarner Losh case 2: 28860c16b537SWarner Losh /* 2 - 2 - 14 - 14 */ 28870c16b537SWarner Losh lhSize=4; 28880c16b537SWarner Losh litSize = ((istart[0] & 15) << 10) + (istart[1] << 2) + (istart[2] >> 6); 28890c16b537SWarner Losh litCSize = ((istart[2] & 63) << 8) + istart[3]; 28900c16b537SWarner Losh break; 28910c16b537SWarner Losh case 3: 28920c16b537SWarner Losh /* 2 - 2 - 18 - 18 */ 28930c16b537SWarner Losh lhSize=5; 28940c16b537SWarner Losh litSize = ((istart[0] & 15) << 14) + (istart[1] << 6) + (istart[2] >> 2); 28950c16b537SWarner Losh litCSize = ((istart[2] & 3) << 16) + (istart[3] << 8) + istart[4]; 28960c16b537SWarner Losh break; 28970c16b537SWarner Losh } 28980c16b537SWarner Losh if (litSize > BLOCKSIZE) return ERROR(corruption_detected); 28990c16b537SWarner Losh if (litCSize + lhSize > srcSize) return ERROR(corruption_detected); 29000c16b537SWarner Losh 29010c16b537SWarner Losh if (HUFv05_isError(singleStream ? 29020c16b537SWarner Losh HUFv05_decompress1X2(dctx->litBuffer, litSize, istart+lhSize, litCSize) : 29030c16b537SWarner Losh HUFv05_decompress (dctx->litBuffer, litSize, istart+lhSize, litCSize) )) 29040c16b537SWarner Losh return ERROR(corruption_detected); 29050c16b537SWarner Losh 29060c16b537SWarner Losh dctx->litPtr = dctx->litBuffer; 29070c16b537SWarner Losh dctx->litSize = litSize; 29080c16b537SWarner Losh memset(dctx->litBuffer + dctx->litSize, 0, WILDCOPY_OVERLENGTH); 29090c16b537SWarner Losh return litCSize + lhSize; 29100c16b537SWarner Losh } 29110c16b537SWarner Losh case IS_PCH: 29120c16b537SWarner Losh { 29130c16b537SWarner Losh size_t errorCode; 29140c16b537SWarner Losh size_t litSize, litCSize; 29150c16b537SWarner Losh U32 lhSize = ((istart[0]) >> 4) & 3; 29160c16b537SWarner Losh if (lhSize != 1) /* only case supported for now : small litSize, single stream */ 29170c16b537SWarner Losh return ERROR(corruption_detected); 29180c16b537SWarner Losh if (!dctx->flagStaticTables) 29190c16b537SWarner Losh return ERROR(dictionary_corrupted); 29200c16b537SWarner Losh 29210c16b537SWarner Losh /* 2 - 2 - 10 - 10 */ 29220c16b537SWarner Losh lhSize=3; 29230c16b537SWarner Losh litSize = ((istart[0] & 15) << 6) + (istart[1] >> 2); 29240c16b537SWarner Losh litCSize = ((istart[1] & 3) << 8) + istart[2]; 29250c16b537SWarner Losh if (litCSize + lhSize > srcSize) return ERROR(corruption_detected); 29260c16b537SWarner Losh 29270c16b537SWarner Losh errorCode = HUFv05_decompress1X4_usingDTable(dctx->litBuffer, litSize, istart+lhSize, litCSize, dctx->hufTableX4); 29280c16b537SWarner Losh if (HUFv05_isError(errorCode)) return ERROR(corruption_detected); 29290c16b537SWarner Losh 29300c16b537SWarner Losh dctx->litPtr = dctx->litBuffer; 29310c16b537SWarner Losh dctx->litSize = litSize; 29320c16b537SWarner Losh memset(dctx->litBuffer + dctx->litSize, 0, WILDCOPY_OVERLENGTH); 29330c16b537SWarner Losh return litCSize + lhSize; 29340c16b537SWarner Losh } 29350c16b537SWarner Losh case IS_RAW: 29360c16b537SWarner Losh { 29370c16b537SWarner Losh size_t litSize; 29380c16b537SWarner Losh U32 lhSize = ((istart[0]) >> 4) & 3; 29390c16b537SWarner Losh switch(lhSize) 29400c16b537SWarner Losh { 29410c16b537SWarner Losh case 0: case 1: default: /* note : default is impossible, since lhSize into [0..3] */ 29420c16b537SWarner Losh lhSize=1; 29430c16b537SWarner Losh litSize = istart[0] & 31; 29440c16b537SWarner Losh break; 29450c16b537SWarner Losh case 2: 29460c16b537SWarner Losh litSize = ((istart[0] & 15) << 8) + istart[1]; 29470c16b537SWarner Losh break; 29480c16b537SWarner Losh case 3: 29490c16b537SWarner Losh litSize = ((istart[0] & 15) << 16) + (istart[1] << 8) + istart[2]; 29500c16b537SWarner Losh break; 29510c16b537SWarner Losh } 29520c16b537SWarner Losh 29530c16b537SWarner Losh if (lhSize+litSize+WILDCOPY_OVERLENGTH > srcSize) { /* risk reading beyond src buffer with wildcopy */ 29540c16b537SWarner Losh if (litSize+lhSize > srcSize) return ERROR(corruption_detected); 29550c16b537SWarner Losh memcpy(dctx->litBuffer, istart+lhSize, litSize); 29560c16b537SWarner Losh dctx->litPtr = dctx->litBuffer; 29570c16b537SWarner Losh dctx->litSize = litSize; 29580c16b537SWarner Losh memset(dctx->litBuffer + dctx->litSize, 0, WILDCOPY_OVERLENGTH); 29590c16b537SWarner Losh return lhSize+litSize; 29600c16b537SWarner Losh } 29610c16b537SWarner Losh /* direct reference into compressed stream */ 29620c16b537SWarner Losh dctx->litPtr = istart+lhSize; 29630c16b537SWarner Losh dctx->litSize = litSize; 29640c16b537SWarner Losh return lhSize+litSize; 29650c16b537SWarner Losh } 29660c16b537SWarner Losh case IS_RLE: 29670c16b537SWarner Losh { 29680c16b537SWarner Losh size_t litSize; 29690c16b537SWarner Losh U32 lhSize = ((istart[0]) >> 4) & 3; 29700c16b537SWarner Losh switch(lhSize) 29710c16b537SWarner Losh { 29720c16b537SWarner Losh case 0: case 1: default: /* note : default is impossible, since lhSize into [0..3] */ 29730c16b537SWarner Losh lhSize = 1; 29740c16b537SWarner Losh litSize = istart[0] & 31; 29750c16b537SWarner Losh break; 29760c16b537SWarner Losh case 2: 29770c16b537SWarner Losh litSize = ((istart[0] & 15) << 8) + istart[1]; 29780c16b537SWarner Losh break; 29790c16b537SWarner Losh case 3: 29800c16b537SWarner Losh litSize = ((istart[0] & 15) << 16) + (istart[1] << 8) + istart[2]; 29810c16b537SWarner Losh if (srcSize<4) return ERROR(corruption_detected); /* srcSize >= MIN_CBLOCK_SIZE == 3; here we need lhSize+1 = 4 */ 29820c16b537SWarner Losh break; 29830c16b537SWarner Losh } 29840c16b537SWarner Losh if (litSize > BLOCKSIZE) return ERROR(corruption_detected); 29850c16b537SWarner Losh memset(dctx->litBuffer, istart[lhSize], litSize + WILDCOPY_OVERLENGTH); 29860c16b537SWarner Losh dctx->litPtr = dctx->litBuffer; 29870c16b537SWarner Losh dctx->litSize = litSize; 29880c16b537SWarner Losh return lhSize+1; 29890c16b537SWarner Losh } 29900c16b537SWarner Losh default: 29910c16b537SWarner Losh return ERROR(corruption_detected); /* impossible */ 29920c16b537SWarner Losh } 29930c16b537SWarner Losh } 29940c16b537SWarner Losh 29950c16b537SWarner Losh 29960f743729SConrad Meyer static size_t ZSTDv05_decodeSeqHeaders(int* nbSeq, const BYTE** dumpsPtr, size_t* dumpsLengthPtr, 29970c16b537SWarner Losh FSEv05_DTable* DTableLL, FSEv05_DTable* DTableML, FSEv05_DTable* DTableOffb, 29980c16b537SWarner Losh const void* src, size_t srcSize, U32 flagStaticTable) 29990c16b537SWarner Losh { 30000c16b537SWarner Losh const BYTE* const istart = (const BYTE* const)src; 30010c16b537SWarner Losh const BYTE* ip = istart; 30020c16b537SWarner Losh const BYTE* const iend = istart + srcSize; 30030c16b537SWarner Losh U32 LLtype, Offtype, MLtype; 3004a0483764SConrad Meyer unsigned LLlog, Offlog, MLlog; 30050c16b537SWarner Losh size_t dumpsLength; 30060c16b537SWarner Losh 30070c16b537SWarner Losh /* check */ 30080c16b537SWarner Losh if (srcSize < MIN_SEQUENCES_SIZE) 30090c16b537SWarner Losh return ERROR(srcSize_wrong); 30100c16b537SWarner Losh 30110c16b537SWarner Losh /* SeqHead */ 30120c16b537SWarner Losh *nbSeq = *ip++; 30130c16b537SWarner Losh if (*nbSeq==0) return 1; 30140c16b537SWarner Losh if (*nbSeq >= 128) { 30150c16b537SWarner Losh if (ip >= iend) return ERROR(srcSize_wrong); 30160c16b537SWarner Losh *nbSeq = ((nbSeq[0]-128)<<8) + *ip++; 30170c16b537SWarner Losh } 30180c16b537SWarner Losh 30190c16b537SWarner Losh if (ip >= iend) return ERROR(srcSize_wrong); 30200c16b537SWarner Losh LLtype = *ip >> 6; 30210c16b537SWarner Losh Offtype = (*ip >> 4) & 3; 30220c16b537SWarner Losh MLtype = (*ip >> 2) & 3; 30230c16b537SWarner Losh if (*ip & 2) { 30240c16b537SWarner Losh if (ip+3 > iend) return ERROR(srcSize_wrong); 30250c16b537SWarner Losh dumpsLength = ip[2]; 30260c16b537SWarner Losh dumpsLength += ip[1] << 8; 30270c16b537SWarner Losh ip += 3; 30280c16b537SWarner Losh } else { 30290c16b537SWarner Losh if (ip+2 > iend) return ERROR(srcSize_wrong); 30300c16b537SWarner Losh dumpsLength = ip[1]; 30310c16b537SWarner Losh dumpsLength += (ip[0] & 1) << 8; 30320c16b537SWarner Losh ip += 2; 30330c16b537SWarner Losh } 30340c16b537SWarner Losh *dumpsPtr = ip; 30350c16b537SWarner Losh ip += dumpsLength; 30360c16b537SWarner Losh *dumpsLengthPtr = dumpsLength; 30370c16b537SWarner Losh 30380c16b537SWarner Losh /* check */ 30390c16b537SWarner Losh if (ip > iend-3) return ERROR(srcSize_wrong); /* min : all 3 are "raw", hence no header, but at least xxLog bits per type */ 30400c16b537SWarner Losh 30410c16b537SWarner Losh /* sequences */ 30420c16b537SWarner Losh { 30430c16b537SWarner Losh S16 norm[MaxML+1]; /* assumption : MaxML >= MaxLL >= MaxOff */ 30440c16b537SWarner Losh size_t headerSize; 30450c16b537SWarner Losh 30460c16b537SWarner Losh /* Build DTables */ 30470c16b537SWarner Losh switch(LLtype) 30480c16b537SWarner Losh { 30490c16b537SWarner Losh case FSEv05_ENCODING_RLE : 30500c16b537SWarner Losh LLlog = 0; 30510c16b537SWarner Losh FSEv05_buildDTable_rle(DTableLL, *ip++); 30520c16b537SWarner Losh break; 30530c16b537SWarner Losh case FSEv05_ENCODING_RAW : 30540c16b537SWarner Losh LLlog = LLbits; 30550c16b537SWarner Losh FSEv05_buildDTable_raw(DTableLL, LLbits); 30560c16b537SWarner Losh break; 30570c16b537SWarner Losh case FSEv05_ENCODING_STATIC: 30580c16b537SWarner Losh if (!flagStaticTable) return ERROR(corruption_detected); 30590c16b537SWarner Losh break; 30600c16b537SWarner Losh case FSEv05_ENCODING_DYNAMIC : 30610c16b537SWarner Losh default : /* impossible */ 3062a0483764SConrad Meyer { unsigned max = MaxLL; 30630c16b537SWarner Losh headerSize = FSEv05_readNCount(norm, &max, &LLlog, ip, iend-ip); 30640c16b537SWarner Losh if (FSEv05_isError(headerSize)) return ERROR(GENERIC); 30650c16b537SWarner Losh if (LLlog > LLFSEv05Log) return ERROR(corruption_detected); 30660c16b537SWarner Losh ip += headerSize; 30670c16b537SWarner Losh FSEv05_buildDTable(DTableLL, norm, max, LLlog); 30680c16b537SWarner Losh } } 30690c16b537SWarner Losh 30700c16b537SWarner Losh switch(Offtype) 30710c16b537SWarner Losh { 30720c16b537SWarner Losh case FSEv05_ENCODING_RLE : 30730c16b537SWarner Losh Offlog = 0; 30740c16b537SWarner Losh if (ip > iend-2) return ERROR(srcSize_wrong); /* min : "raw", hence no header, but at least xxLog bits */ 30750c16b537SWarner Losh FSEv05_buildDTable_rle(DTableOffb, *ip++ & MaxOff); /* if *ip > MaxOff, data is corrupted */ 30760c16b537SWarner Losh break; 30770c16b537SWarner Losh case FSEv05_ENCODING_RAW : 30780c16b537SWarner Losh Offlog = Offbits; 30790c16b537SWarner Losh FSEv05_buildDTable_raw(DTableOffb, Offbits); 30800c16b537SWarner Losh break; 30810c16b537SWarner Losh case FSEv05_ENCODING_STATIC: 30820c16b537SWarner Losh if (!flagStaticTable) return ERROR(corruption_detected); 30830c16b537SWarner Losh break; 30840c16b537SWarner Losh case FSEv05_ENCODING_DYNAMIC : 30850c16b537SWarner Losh default : /* impossible */ 3086a0483764SConrad Meyer { unsigned max = MaxOff; 30870c16b537SWarner Losh headerSize = FSEv05_readNCount(norm, &max, &Offlog, ip, iend-ip); 30880c16b537SWarner Losh if (FSEv05_isError(headerSize)) return ERROR(GENERIC); 30890c16b537SWarner Losh if (Offlog > OffFSEv05Log) return ERROR(corruption_detected); 30900c16b537SWarner Losh ip += headerSize; 30910c16b537SWarner Losh FSEv05_buildDTable(DTableOffb, norm, max, Offlog); 30920c16b537SWarner Losh } } 30930c16b537SWarner Losh 30940c16b537SWarner Losh switch(MLtype) 30950c16b537SWarner Losh { 30960c16b537SWarner Losh case FSEv05_ENCODING_RLE : 30970c16b537SWarner Losh MLlog = 0; 30980c16b537SWarner Losh if (ip > iend-2) return ERROR(srcSize_wrong); /* min : "raw", hence no header, but at least xxLog bits */ 30990c16b537SWarner Losh FSEv05_buildDTable_rle(DTableML, *ip++); 31000c16b537SWarner Losh break; 31010c16b537SWarner Losh case FSEv05_ENCODING_RAW : 31020c16b537SWarner Losh MLlog = MLbits; 31030c16b537SWarner Losh FSEv05_buildDTable_raw(DTableML, MLbits); 31040c16b537SWarner Losh break; 31050c16b537SWarner Losh case FSEv05_ENCODING_STATIC: 31060c16b537SWarner Losh if (!flagStaticTable) return ERROR(corruption_detected); 31070c16b537SWarner Losh break; 31080c16b537SWarner Losh case FSEv05_ENCODING_DYNAMIC : 31090c16b537SWarner Losh default : /* impossible */ 3110a0483764SConrad Meyer { unsigned max = MaxML; 31110c16b537SWarner Losh headerSize = FSEv05_readNCount(norm, &max, &MLlog, ip, iend-ip); 31120c16b537SWarner Losh if (FSEv05_isError(headerSize)) return ERROR(GENERIC); 31130c16b537SWarner Losh if (MLlog > MLFSEv05Log) return ERROR(corruption_detected); 31140c16b537SWarner Losh ip += headerSize; 31150c16b537SWarner Losh FSEv05_buildDTable(DTableML, norm, max, MLlog); 31160c16b537SWarner Losh } } } 31170c16b537SWarner Losh 31180c16b537SWarner Losh return ip-istart; 31190c16b537SWarner Losh } 31200c16b537SWarner Losh 31210c16b537SWarner Losh 31220c16b537SWarner Losh typedef struct { 31230c16b537SWarner Losh size_t litLength; 31240c16b537SWarner Losh size_t matchLength; 31250c16b537SWarner Losh size_t offset; 31260c16b537SWarner Losh } seq_t; 31270c16b537SWarner Losh 31280c16b537SWarner Losh typedef struct { 31290c16b537SWarner Losh BITv05_DStream_t DStream; 31300c16b537SWarner Losh FSEv05_DState_t stateLL; 31310c16b537SWarner Losh FSEv05_DState_t stateOffb; 31320c16b537SWarner Losh FSEv05_DState_t stateML; 31330c16b537SWarner Losh size_t prevOffset; 31340c16b537SWarner Losh const BYTE* dumps; 31350c16b537SWarner Losh const BYTE* dumpsEnd; 31360c16b537SWarner Losh } seqState_t; 31370c16b537SWarner Losh 31380c16b537SWarner Losh 31390c16b537SWarner Losh 31400c16b537SWarner Losh static void ZSTDv05_decodeSequence(seq_t* seq, seqState_t* seqState) 31410c16b537SWarner Losh { 31420c16b537SWarner Losh size_t litLength; 31430c16b537SWarner Losh size_t prevOffset; 31440c16b537SWarner Losh size_t offset; 31450c16b537SWarner Losh size_t matchLength; 31460c16b537SWarner Losh const BYTE* dumps = seqState->dumps; 31470c16b537SWarner Losh const BYTE* const de = seqState->dumpsEnd; 31480c16b537SWarner Losh 31490c16b537SWarner Losh /* Literal length */ 31500c16b537SWarner Losh litLength = FSEv05_peakSymbol(&(seqState->stateLL)); 31510c16b537SWarner Losh prevOffset = litLength ? seq->offset : seqState->prevOffset; 31520c16b537SWarner Losh if (litLength == MaxLL) { 31530c16b537SWarner Losh U32 add = *dumps++; 31540c16b537SWarner Losh if (add < 255) litLength += add; 31550c16b537SWarner Losh else { 31560c16b537SWarner Losh litLength = MEM_readLE32(dumps) & 0xFFFFFF; /* no risk : dumps is always followed by seq tables > 1 byte */ 31570c16b537SWarner Losh if (litLength&1) litLength>>=1, dumps += 3; 31580c16b537SWarner Losh else litLength = (U16)(litLength)>>1, dumps += 2; 31590c16b537SWarner Losh } 31600c16b537SWarner Losh if (dumps > de) { litLength = MaxLL+255; } /* late correction, to avoid using uninitialized memory */ 31610c16b537SWarner Losh if (dumps >= de) { dumps = de-1; } /* late correction, to avoid read overflow (data is now corrupted anyway) */ 31620c16b537SWarner Losh } 31630c16b537SWarner Losh 31640c16b537SWarner Losh /* Offset */ 31650c16b537SWarner Losh { 31660c16b537SWarner Losh static const U32 offsetPrefix[MaxOff+1] = { 31670c16b537SWarner Losh 1 /*fake*/, 1, 2, 4, 8, 16, 32, 64, 128, 256, 31680c16b537SWarner Losh 512, 1024, 2048, 4096, 8192, 16384, 32768, 65536, 131072, 262144, 31690c16b537SWarner Losh 524288, 1048576, 2097152, 4194304, 8388608, 16777216, 33554432, /*fake*/ 1, 1, 1, 1, 1 }; 31700c16b537SWarner Losh U32 offsetCode = FSEv05_peakSymbol(&(seqState->stateOffb)); /* <= maxOff, by table construction */ 31710c16b537SWarner Losh U32 nbBits = offsetCode - 1; 31720c16b537SWarner Losh if (offsetCode==0) nbBits = 0; /* cmove */ 31730c16b537SWarner Losh offset = offsetPrefix[offsetCode] + BITv05_readBits(&(seqState->DStream), nbBits); 31740c16b537SWarner Losh if (MEM_32bits()) BITv05_reloadDStream(&(seqState->DStream)); 31750c16b537SWarner Losh if (offsetCode==0) offset = prevOffset; /* repcode, cmove */ 31760c16b537SWarner Losh if (offsetCode | !litLength) seqState->prevOffset = seq->offset; /* cmove */ 31770c16b537SWarner Losh FSEv05_decodeSymbol(&(seqState->stateOffb), &(seqState->DStream)); /* update */ 31780c16b537SWarner Losh } 31790c16b537SWarner Losh 31800c16b537SWarner Losh /* Literal length update */ 31810c16b537SWarner Losh FSEv05_decodeSymbol(&(seqState->stateLL), &(seqState->DStream)); /* update */ 31820c16b537SWarner Losh if (MEM_32bits()) BITv05_reloadDStream(&(seqState->DStream)); 31830c16b537SWarner Losh 31840c16b537SWarner Losh /* MatchLength */ 31850c16b537SWarner Losh matchLength = FSEv05_decodeSymbol(&(seqState->stateML), &(seqState->DStream)); 31860c16b537SWarner Losh if (matchLength == MaxML) { 31870c16b537SWarner Losh U32 add = *dumps++; 31880c16b537SWarner Losh if (add < 255) matchLength += add; 31890c16b537SWarner Losh else { 31900c16b537SWarner Losh matchLength = MEM_readLE32(dumps) & 0xFFFFFF; /* no pb : dumps is always followed by seq tables > 1 byte */ 31910c16b537SWarner Losh if (matchLength&1) matchLength>>=1, dumps += 3; 31920c16b537SWarner Losh else matchLength = (U16)(matchLength)>>1, dumps += 2; 31930c16b537SWarner Losh } 31940c16b537SWarner Losh if (dumps > de) { matchLength = MaxML+255; } /* late correction, to avoid using uninitialized memory */ 31950c16b537SWarner Losh if (dumps >= de) { dumps = de-1; } /* late correction, to avoid read overflow (data is now corrupted anyway) */ 31960c16b537SWarner Losh } 31970c16b537SWarner Losh matchLength += MINMATCH; 31980c16b537SWarner Losh 31990c16b537SWarner Losh /* save result */ 32000c16b537SWarner Losh seq->litLength = litLength; 32010c16b537SWarner Losh seq->offset = offset; 32020c16b537SWarner Losh seq->matchLength = matchLength; 32030c16b537SWarner Losh seqState->dumps = dumps; 32040c16b537SWarner Losh 32050c16b537SWarner Losh #if 0 /* debug */ 32060c16b537SWarner Losh { 32070c16b537SWarner Losh static U64 totalDecoded = 0; 32080c16b537SWarner Losh printf("pos %6u : %3u literals & match %3u bytes at distance %6u \n", 32090c16b537SWarner Losh (U32)(totalDecoded), (U32)litLength, (U32)matchLength, (U32)offset); 32100c16b537SWarner Losh totalDecoded += litLength + matchLength; 32110c16b537SWarner Losh } 32120c16b537SWarner Losh #endif 32130c16b537SWarner Losh } 32140c16b537SWarner Losh 32150c16b537SWarner Losh 32160c16b537SWarner Losh static size_t ZSTDv05_execSequence(BYTE* op, 32170c16b537SWarner Losh BYTE* const oend, seq_t sequence, 32180c16b537SWarner Losh const BYTE** litPtr, const BYTE* const litLimit, 32190c16b537SWarner Losh const BYTE* const base, const BYTE* const vBase, const BYTE* const dictEnd) 32200c16b537SWarner Losh { 32210c16b537SWarner Losh static const int dec32table[] = { 0, 1, 2, 1, 4, 4, 4, 4 }; /* added */ 3222*2b9c00cbSConrad Meyer static const int dec64table[] = { 8, 8, 8, 7, 8, 9,10,11 }; /* subtracted */ 32230c16b537SWarner Losh BYTE* const oLitEnd = op + sequence.litLength; 32240c16b537SWarner Losh const size_t sequenceLength = sequence.litLength + sequence.matchLength; 32250c16b537SWarner Losh BYTE* const oMatchEnd = op + sequenceLength; /* risk : address space overflow (32-bits) */ 32260c16b537SWarner Losh BYTE* const oend_8 = oend-8; 32270c16b537SWarner Losh const BYTE* const litEnd = *litPtr + sequence.litLength; 32280c16b537SWarner Losh const BYTE* match = oLitEnd - sequence.offset; 32290c16b537SWarner Losh 32300c16b537SWarner Losh /* check */ 32310c16b537SWarner Losh if (oLitEnd > oend_8) return ERROR(dstSize_tooSmall); /* last match must start at a minimum distance of 8 from oend */ 32320c16b537SWarner Losh if (oMatchEnd > oend) return ERROR(dstSize_tooSmall); /* overwrite beyond dst buffer */ 32330c16b537SWarner Losh if (litEnd > litLimit) return ERROR(corruption_detected); /* risk read beyond lit buffer */ 32340c16b537SWarner Losh 32350c16b537SWarner Losh /* copy Literals */ 32360c16b537SWarner Losh ZSTDv05_wildcopy(op, *litPtr, sequence.litLength); /* note : oLitEnd <= oend-8 : no risk of overwrite beyond oend */ 32370c16b537SWarner Losh op = oLitEnd; 32380c16b537SWarner Losh *litPtr = litEnd; /* update for next sequence */ 32390c16b537SWarner Losh 32400c16b537SWarner Losh /* copy Match */ 32410c16b537SWarner Losh if (sequence.offset > (size_t)(oLitEnd - base)) { 32420c16b537SWarner Losh /* offset beyond prefix */ 32430c16b537SWarner Losh if (sequence.offset > (size_t)(oLitEnd - vBase)) 32440c16b537SWarner Losh return ERROR(corruption_detected); 32450c16b537SWarner Losh match = dictEnd - (base-match); 32460c16b537SWarner Losh if (match + sequence.matchLength <= dictEnd) { 32470c16b537SWarner Losh memmove(oLitEnd, match, sequence.matchLength); 32480c16b537SWarner Losh return sequenceLength; 32490c16b537SWarner Losh } 32500c16b537SWarner Losh /* span extDict & currentPrefixSegment */ 32510c16b537SWarner Losh { 32520c16b537SWarner Losh size_t length1 = dictEnd - match; 32530c16b537SWarner Losh memmove(oLitEnd, match, length1); 32540c16b537SWarner Losh op = oLitEnd + length1; 32550c16b537SWarner Losh sequence.matchLength -= length1; 32560c16b537SWarner Losh match = base; 32570c16b537SWarner Losh if (op > oend_8 || sequence.matchLength < MINMATCH) { 32580c16b537SWarner Losh while (op < oMatchEnd) *op++ = *match++; 32590c16b537SWarner Losh return sequenceLength; 32600c16b537SWarner Losh } 32610c16b537SWarner Losh } } 32620c16b537SWarner Losh /* Requirement: op <= oend_8 */ 32630c16b537SWarner Losh 32640c16b537SWarner Losh /* match within prefix */ 32650c16b537SWarner Losh if (sequence.offset < 8) { 32660c16b537SWarner Losh /* close range match, overlap */ 32670c16b537SWarner Losh const int sub2 = dec64table[sequence.offset]; 32680c16b537SWarner Losh op[0] = match[0]; 32690c16b537SWarner Losh op[1] = match[1]; 32700c16b537SWarner Losh op[2] = match[2]; 32710c16b537SWarner Losh op[3] = match[3]; 32720c16b537SWarner Losh match += dec32table[sequence.offset]; 32730c16b537SWarner Losh ZSTDv05_copy4(op+4, match); 32740c16b537SWarner Losh match -= sub2; 32750c16b537SWarner Losh } else { 32760c16b537SWarner Losh ZSTDv05_copy8(op, match); 32770c16b537SWarner Losh } 32780c16b537SWarner Losh op += 8; match += 8; 32790c16b537SWarner Losh 32800c16b537SWarner Losh if (oMatchEnd > oend-(16-MINMATCH)) { 32810c16b537SWarner Losh if (op < oend_8) { 32820c16b537SWarner Losh ZSTDv05_wildcopy(op, match, oend_8 - op); 32830c16b537SWarner Losh match += oend_8 - op; 32840c16b537SWarner Losh op = oend_8; 32850c16b537SWarner Losh } 32860c16b537SWarner Losh while (op < oMatchEnd) 32870c16b537SWarner Losh *op++ = *match++; 32880c16b537SWarner Losh } else { 32890c16b537SWarner Losh ZSTDv05_wildcopy(op, match, (ptrdiff_t)sequence.matchLength-8); /* works even if matchLength < 8 */ 32900c16b537SWarner Losh } 32910c16b537SWarner Losh return sequenceLength; 32920c16b537SWarner Losh } 32930c16b537SWarner Losh 32940c16b537SWarner Losh 32950c16b537SWarner Losh static size_t ZSTDv05_decompressSequences( 32960c16b537SWarner Losh ZSTDv05_DCtx* dctx, 32970c16b537SWarner Losh void* dst, size_t maxDstSize, 32980c16b537SWarner Losh const void* seqStart, size_t seqSize) 32990c16b537SWarner Losh { 33000c16b537SWarner Losh const BYTE* ip = (const BYTE*)seqStart; 33010c16b537SWarner Losh const BYTE* const iend = ip + seqSize; 33020c16b537SWarner Losh BYTE* const ostart = (BYTE* const)dst; 33030c16b537SWarner Losh BYTE* op = ostart; 33040c16b537SWarner Losh BYTE* const oend = ostart + maxDstSize; 33050f743729SConrad Meyer size_t errorCode, dumpsLength=0; 33060c16b537SWarner Losh const BYTE* litPtr = dctx->litPtr; 33070c16b537SWarner Losh const BYTE* const litEnd = litPtr + dctx->litSize; 33080f743729SConrad Meyer int nbSeq=0; 33090f743729SConrad Meyer const BYTE* dumps = NULL; 3310a0483764SConrad Meyer unsigned* DTableLL = dctx->LLTable; 3311a0483764SConrad Meyer unsigned* DTableML = dctx->MLTable; 3312a0483764SConrad Meyer unsigned* DTableOffb = dctx->OffTable; 33130c16b537SWarner Losh const BYTE* const base = (const BYTE*) (dctx->base); 33140c16b537SWarner Losh const BYTE* const vBase = (const BYTE*) (dctx->vBase); 33150c16b537SWarner Losh const BYTE* const dictEnd = (const BYTE*) (dctx->dictEnd); 33160c16b537SWarner Losh 33170c16b537SWarner Losh /* Build Decoding Tables */ 33180c16b537SWarner Losh errorCode = ZSTDv05_decodeSeqHeaders(&nbSeq, &dumps, &dumpsLength, 33190c16b537SWarner Losh DTableLL, DTableML, DTableOffb, 33200c16b537SWarner Losh ip, seqSize, dctx->flagStaticTables); 33210c16b537SWarner Losh if (ZSTDv05_isError(errorCode)) return errorCode; 33220c16b537SWarner Losh ip += errorCode; 33230c16b537SWarner Losh 33240c16b537SWarner Losh /* Regen sequences */ 33250c16b537SWarner Losh if (nbSeq) { 33260c16b537SWarner Losh seq_t sequence; 33270c16b537SWarner Losh seqState_t seqState; 33280c16b537SWarner Losh 33290c16b537SWarner Losh memset(&sequence, 0, sizeof(sequence)); 33300c16b537SWarner Losh sequence.offset = REPCODE_STARTVALUE; 33310c16b537SWarner Losh seqState.dumps = dumps; 33320c16b537SWarner Losh seqState.dumpsEnd = dumps + dumpsLength; 33330c16b537SWarner Losh seqState.prevOffset = REPCODE_STARTVALUE; 33340c16b537SWarner Losh errorCode = BITv05_initDStream(&(seqState.DStream), ip, iend-ip); 33350c16b537SWarner Losh if (ERR_isError(errorCode)) return ERROR(corruption_detected); 33360c16b537SWarner Losh FSEv05_initDState(&(seqState.stateLL), &(seqState.DStream), DTableLL); 33370c16b537SWarner Losh FSEv05_initDState(&(seqState.stateOffb), &(seqState.DStream), DTableOffb); 33380c16b537SWarner Losh FSEv05_initDState(&(seqState.stateML), &(seqState.DStream), DTableML); 33390c16b537SWarner Losh 33400c16b537SWarner Losh for ( ; (BITv05_reloadDStream(&(seqState.DStream)) <= BITv05_DStream_completed) && nbSeq ; ) { 33410c16b537SWarner Losh size_t oneSeqSize; 33420c16b537SWarner Losh nbSeq--; 33430c16b537SWarner Losh ZSTDv05_decodeSequence(&sequence, &seqState); 33440c16b537SWarner Losh oneSeqSize = ZSTDv05_execSequence(op, oend, sequence, &litPtr, litEnd, base, vBase, dictEnd); 33450c16b537SWarner Losh if (ZSTDv05_isError(oneSeqSize)) return oneSeqSize; 33460c16b537SWarner Losh op += oneSeqSize; 33470c16b537SWarner Losh } 33480c16b537SWarner Losh 33490c16b537SWarner Losh /* check if reached exact end */ 33500c16b537SWarner Losh if (nbSeq) return ERROR(corruption_detected); 33510c16b537SWarner Losh } 33520c16b537SWarner Losh 33530c16b537SWarner Losh /* last literal segment */ 33540c16b537SWarner Losh { 33550c16b537SWarner Losh size_t lastLLSize = litEnd - litPtr; 33560c16b537SWarner Losh if (litPtr > litEnd) return ERROR(corruption_detected); /* too many literals already used */ 33570c16b537SWarner Losh if (op+lastLLSize > oend) return ERROR(dstSize_tooSmall); 33580c16b537SWarner Losh memcpy(op, litPtr, lastLLSize); 33590c16b537SWarner Losh op += lastLLSize; 33600c16b537SWarner Losh } 33610c16b537SWarner Losh 33620c16b537SWarner Losh return op-ostart; 33630c16b537SWarner Losh } 33640c16b537SWarner Losh 33650c16b537SWarner Losh 33660c16b537SWarner Losh static void ZSTDv05_checkContinuity(ZSTDv05_DCtx* dctx, const void* dst) 33670c16b537SWarner Losh { 33680c16b537SWarner Losh if (dst != dctx->previousDstEnd) { /* not contiguous */ 33690c16b537SWarner Losh dctx->dictEnd = dctx->previousDstEnd; 33700c16b537SWarner Losh dctx->vBase = (const char*)dst - ((const char*)(dctx->previousDstEnd) - (const char*)(dctx->base)); 33710c16b537SWarner Losh dctx->base = dst; 33720c16b537SWarner Losh dctx->previousDstEnd = dst; 33730c16b537SWarner Losh } 33740c16b537SWarner Losh } 33750c16b537SWarner Losh 33760c16b537SWarner Losh 33770c16b537SWarner Losh static size_t ZSTDv05_decompressBlock_internal(ZSTDv05_DCtx* dctx, 33780c16b537SWarner Losh void* dst, size_t dstCapacity, 33790c16b537SWarner Losh const void* src, size_t srcSize) 33800c16b537SWarner Losh { /* blockType == blockCompressed */ 33810c16b537SWarner Losh const BYTE* ip = (const BYTE*)src; 33820c16b537SWarner Losh size_t litCSize; 33830c16b537SWarner Losh 33840c16b537SWarner Losh if (srcSize >= BLOCKSIZE) return ERROR(srcSize_wrong); 33850c16b537SWarner Losh 33860c16b537SWarner Losh /* Decode literals sub-block */ 33870c16b537SWarner Losh litCSize = ZSTDv05_decodeLiteralsBlock(dctx, src, srcSize); 33880c16b537SWarner Losh if (ZSTDv05_isError(litCSize)) return litCSize; 33890c16b537SWarner Losh ip += litCSize; 33900c16b537SWarner Losh srcSize -= litCSize; 33910c16b537SWarner Losh 33920c16b537SWarner Losh return ZSTDv05_decompressSequences(dctx, dst, dstCapacity, ip, srcSize); 33930c16b537SWarner Losh } 33940c16b537SWarner Losh 33950c16b537SWarner Losh 33960c16b537SWarner Losh size_t ZSTDv05_decompressBlock(ZSTDv05_DCtx* dctx, 33970c16b537SWarner Losh void* dst, size_t dstCapacity, 33980c16b537SWarner Losh const void* src, size_t srcSize) 33990c16b537SWarner Losh { 34000c16b537SWarner Losh ZSTDv05_checkContinuity(dctx, dst); 34010c16b537SWarner Losh return ZSTDv05_decompressBlock_internal(dctx, dst, dstCapacity, src, srcSize); 34020c16b537SWarner Losh } 34030c16b537SWarner Losh 34040c16b537SWarner Losh 34050c16b537SWarner Losh /*! ZSTDv05_decompress_continueDCtx 34060c16b537SWarner Losh * dctx must have been properly initialized */ 34070c16b537SWarner Losh static size_t ZSTDv05_decompress_continueDCtx(ZSTDv05_DCtx* dctx, 34080c16b537SWarner Losh void* dst, size_t maxDstSize, 34090c16b537SWarner Losh const void* src, size_t srcSize) 34100c16b537SWarner Losh { 34110c16b537SWarner Losh const BYTE* ip = (const BYTE*)src; 34120c16b537SWarner Losh const BYTE* iend = ip + srcSize; 34130c16b537SWarner Losh BYTE* const ostart = (BYTE* const)dst; 34140c16b537SWarner Losh BYTE* op = ostart; 34150c16b537SWarner Losh BYTE* const oend = ostart + maxDstSize; 34160c16b537SWarner Losh size_t remainingSize = srcSize; 34170c16b537SWarner Losh blockProperties_t blockProperties; 34180f743729SConrad Meyer memset(&blockProperties, 0, sizeof(blockProperties)); 34190c16b537SWarner Losh 34200c16b537SWarner Losh /* Frame Header */ 34210f743729SConrad Meyer { size_t frameHeaderSize; 34220c16b537SWarner Losh if (srcSize < ZSTDv05_frameHeaderSize_min+ZSTDv05_blockHeaderSize) return ERROR(srcSize_wrong); 34230c16b537SWarner Losh frameHeaderSize = ZSTDv05_decodeFrameHeader_Part1(dctx, src, ZSTDv05_frameHeaderSize_min); 34240c16b537SWarner Losh if (ZSTDv05_isError(frameHeaderSize)) return frameHeaderSize; 34250c16b537SWarner Losh if (srcSize < frameHeaderSize+ZSTDv05_blockHeaderSize) return ERROR(srcSize_wrong); 34260c16b537SWarner Losh ip += frameHeaderSize; remainingSize -= frameHeaderSize; 34270c16b537SWarner Losh frameHeaderSize = ZSTDv05_decodeFrameHeader_Part2(dctx, src, frameHeaderSize); 34280c16b537SWarner Losh if (ZSTDv05_isError(frameHeaderSize)) return frameHeaderSize; 34290c16b537SWarner Losh } 34300c16b537SWarner Losh 34310c16b537SWarner Losh /* Loop on each block */ 34320c16b537SWarner Losh while (1) 34330c16b537SWarner Losh { 34340c16b537SWarner Losh size_t decodedSize=0; 34350c16b537SWarner Losh size_t cBlockSize = ZSTDv05_getcBlockSize(ip, iend-ip, &blockProperties); 34360c16b537SWarner Losh if (ZSTDv05_isError(cBlockSize)) return cBlockSize; 34370c16b537SWarner Losh 34380c16b537SWarner Losh ip += ZSTDv05_blockHeaderSize; 34390c16b537SWarner Losh remainingSize -= ZSTDv05_blockHeaderSize; 34400c16b537SWarner Losh if (cBlockSize > remainingSize) return ERROR(srcSize_wrong); 34410c16b537SWarner Losh 34420c16b537SWarner Losh switch(blockProperties.blockType) 34430c16b537SWarner Losh { 34440c16b537SWarner Losh case bt_compressed: 34450c16b537SWarner Losh decodedSize = ZSTDv05_decompressBlock_internal(dctx, op, oend-op, ip, cBlockSize); 34460c16b537SWarner Losh break; 34470c16b537SWarner Losh case bt_raw : 34480c16b537SWarner Losh decodedSize = ZSTDv05_copyRawBlock(op, oend-op, ip, cBlockSize); 34490c16b537SWarner Losh break; 34500c16b537SWarner Losh case bt_rle : 34510c16b537SWarner Losh return ERROR(GENERIC); /* not yet supported */ 34520c16b537SWarner Losh break; 34530c16b537SWarner Losh case bt_end : 34540c16b537SWarner Losh /* end of frame */ 34550c16b537SWarner Losh if (remainingSize) return ERROR(srcSize_wrong); 34560c16b537SWarner Losh break; 34570c16b537SWarner Losh default: 34580c16b537SWarner Losh return ERROR(GENERIC); /* impossible */ 34590c16b537SWarner Losh } 34600c16b537SWarner Losh if (cBlockSize == 0) break; /* bt_end */ 34610c16b537SWarner Losh 34620c16b537SWarner Losh if (ZSTDv05_isError(decodedSize)) return decodedSize; 34630c16b537SWarner Losh op += decodedSize; 34640c16b537SWarner Losh ip += cBlockSize; 34650c16b537SWarner Losh remainingSize -= cBlockSize; 34660c16b537SWarner Losh } 34670c16b537SWarner Losh 34680c16b537SWarner Losh return op-ostart; 34690c16b537SWarner Losh } 34700c16b537SWarner Losh 34710c16b537SWarner Losh 34720c16b537SWarner Losh size_t ZSTDv05_decompress_usingPreparedDCtx(ZSTDv05_DCtx* dctx, const ZSTDv05_DCtx* refDCtx, 34730c16b537SWarner Losh void* dst, size_t maxDstSize, 34740c16b537SWarner Losh const void* src, size_t srcSize) 34750c16b537SWarner Losh { 34760c16b537SWarner Losh ZSTDv05_copyDCtx(dctx, refDCtx); 34770c16b537SWarner Losh ZSTDv05_checkContinuity(dctx, dst); 34780c16b537SWarner Losh return ZSTDv05_decompress_continueDCtx(dctx, dst, maxDstSize, src, srcSize); 34790c16b537SWarner Losh } 34800c16b537SWarner Losh 34810c16b537SWarner Losh 34820c16b537SWarner Losh size_t ZSTDv05_decompress_usingDict(ZSTDv05_DCtx* dctx, 34830c16b537SWarner Losh void* dst, size_t maxDstSize, 34840c16b537SWarner Losh const void* src, size_t srcSize, 34850c16b537SWarner Losh const void* dict, size_t dictSize) 34860c16b537SWarner Losh { 34870c16b537SWarner Losh ZSTDv05_decompressBegin_usingDict(dctx, dict, dictSize); 34880c16b537SWarner Losh ZSTDv05_checkContinuity(dctx, dst); 34890c16b537SWarner Losh return ZSTDv05_decompress_continueDCtx(dctx, dst, maxDstSize, src, srcSize); 34900c16b537SWarner Losh } 34910c16b537SWarner Losh 34920c16b537SWarner Losh 34930c16b537SWarner Losh size_t ZSTDv05_decompressDCtx(ZSTDv05_DCtx* dctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize) 34940c16b537SWarner Losh { 34950c16b537SWarner Losh return ZSTDv05_decompress_usingDict(dctx, dst, maxDstSize, src, srcSize, NULL, 0); 34960c16b537SWarner Losh } 34970c16b537SWarner Losh 34980c16b537SWarner Losh size_t ZSTDv05_decompress(void* dst, size_t maxDstSize, const void* src, size_t srcSize) 34990c16b537SWarner Losh { 35000c16b537SWarner Losh #if defined(ZSTDv05_HEAPMODE) && (ZSTDv05_HEAPMODE==1) 35010c16b537SWarner Losh size_t regenSize; 35020c16b537SWarner Losh ZSTDv05_DCtx* dctx = ZSTDv05_createDCtx(); 35030c16b537SWarner Losh if (dctx==NULL) return ERROR(memory_allocation); 35040c16b537SWarner Losh regenSize = ZSTDv05_decompressDCtx(dctx, dst, maxDstSize, src, srcSize); 35050c16b537SWarner Losh ZSTDv05_freeDCtx(dctx); 35060c16b537SWarner Losh return regenSize; 35070c16b537SWarner Losh #else 35080c16b537SWarner Losh ZSTDv05_DCtx dctx; 35090c16b537SWarner Losh return ZSTDv05_decompressDCtx(&dctx, dst, maxDstSize, src, srcSize); 35100c16b537SWarner Losh #endif 35110c16b537SWarner Losh } 35120c16b537SWarner Losh 3513*2b9c00cbSConrad Meyer /* ZSTD_errorFrameSizeInfoLegacy() : 3514*2b9c00cbSConrad Meyer assumes `cSize` and `dBound` are _not_ NULL */ 3515*2b9c00cbSConrad Meyer static void ZSTD_errorFrameSizeInfoLegacy(size_t* cSize, unsigned long long* dBound, size_t ret) 3516*2b9c00cbSConrad Meyer { 3517*2b9c00cbSConrad Meyer *cSize = ret; 3518*2b9c00cbSConrad Meyer *dBound = ZSTD_CONTENTSIZE_ERROR; 3519*2b9c00cbSConrad Meyer } 3520*2b9c00cbSConrad Meyer 3521*2b9c00cbSConrad Meyer void ZSTDv05_findFrameSizeInfoLegacy(const void *src, size_t srcSize, size_t* cSize, unsigned long long* dBound) 35220c16b537SWarner Losh { 35230c16b537SWarner Losh const BYTE* ip = (const BYTE*)src; 35240c16b537SWarner Losh size_t remainingSize = srcSize; 3525*2b9c00cbSConrad Meyer size_t nbBlocks = 0; 35260c16b537SWarner Losh blockProperties_t blockProperties; 35270c16b537SWarner Losh 35280c16b537SWarner Losh /* Frame Header */ 3529*2b9c00cbSConrad Meyer if (srcSize < ZSTDv05_frameHeaderSize_min) { 3530*2b9c00cbSConrad Meyer ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(srcSize_wrong)); 3531*2b9c00cbSConrad Meyer return; 3532*2b9c00cbSConrad Meyer } 3533*2b9c00cbSConrad Meyer if (MEM_readLE32(src) != ZSTDv05_MAGICNUMBER) { 3534*2b9c00cbSConrad Meyer ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(prefix_unknown)); 3535*2b9c00cbSConrad Meyer return; 3536*2b9c00cbSConrad Meyer } 35370c16b537SWarner Losh ip += ZSTDv05_frameHeaderSize_min; remainingSize -= ZSTDv05_frameHeaderSize_min; 35380c16b537SWarner Losh 35390c16b537SWarner Losh /* Loop on each block */ 35400c16b537SWarner Losh while (1) 35410c16b537SWarner Losh { 35420c16b537SWarner Losh size_t cBlockSize = ZSTDv05_getcBlockSize(ip, remainingSize, &blockProperties); 3543*2b9c00cbSConrad Meyer if (ZSTDv05_isError(cBlockSize)) { 3544*2b9c00cbSConrad Meyer ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, cBlockSize); 3545*2b9c00cbSConrad Meyer return; 3546*2b9c00cbSConrad Meyer } 35470c16b537SWarner Losh 35480c16b537SWarner Losh ip += ZSTDv05_blockHeaderSize; 35490c16b537SWarner Losh remainingSize -= ZSTDv05_blockHeaderSize; 3550*2b9c00cbSConrad Meyer if (cBlockSize > remainingSize) { 3551*2b9c00cbSConrad Meyer ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(srcSize_wrong)); 3552*2b9c00cbSConrad Meyer return; 3553*2b9c00cbSConrad Meyer } 35540c16b537SWarner Losh 35550c16b537SWarner Losh if (cBlockSize == 0) break; /* bt_end */ 35560c16b537SWarner Losh 35570c16b537SWarner Losh ip += cBlockSize; 35580c16b537SWarner Losh remainingSize -= cBlockSize; 3559*2b9c00cbSConrad Meyer nbBlocks++; 35600c16b537SWarner Losh } 35610c16b537SWarner Losh 3562*2b9c00cbSConrad Meyer *cSize = ip - (const BYTE*)src; 3563*2b9c00cbSConrad Meyer *dBound = nbBlocks * BLOCKSIZE; 35640c16b537SWarner Losh } 35650c16b537SWarner Losh 35660c16b537SWarner Losh /* ****************************** 35670c16b537SWarner Losh * Streaming Decompression API 35680c16b537SWarner Losh ********************************/ 35690c16b537SWarner Losh size_t ZSTDv05_nextSrcSizeToDecompress(ZSTDv05_DCtx* dctx) 35700c16b537SWarner Losh { 35710c16b537SWarner Losh return dctx->expected; 35720c16b537SWarner Losh } 35730c16b537SWarner Losh 35740c16b537SWarner Losh size_t ZSTDv05_decompressContinue(ZSTDv05_DCtx* dctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize) 35750c16b537SWarner Losh { 35760c16b537SWarner Losh /* Sanity check */ 35770c16b537SWarner Losh if (srcSize != dctx->expected) return ERROR(srcSize_wrong); 35780c16b537SWarner Losh ZSTDv05_checkContinuity(dctx, dst); 35790c16b537SWarner Losh 35800c16b537SWarner Losh /* Decompress : frame header; part 1 */ 35810c16b537SWarner Losh switch (dctx->stage) 35820c16b537SWarner Losh { 35830c16b537SWarner Losh case ZSTDv05ds_getFrameHeaderSize : 35840c16b537SWarner Losh /* get frame header size */ 35850c16b537SWarner Losh if (srcSize != ZSTDv05_frameHeaderSize_min) return ERROR(srcSize_wrong); /* impossible */ 35860c16b537SWarner Losh dctx->headerSize = ZSTDv05_decodeFrameHeader_Part1(dctx, src, ZSTDv05_frameHeaderSize_min); 35870c16b537SWarner Losh if (ZSTDv05_isError(dctx->headerSize)) return dctx->headerSize; 35880c16b537SWarner Losh memcpy(dctx->headerBuffer, src, ZSTDv05_frameHeaderSize_min); 35890c16b537SWarner Losh if (dctx->headerSize > ZSTDv05_frameHeaderSize_min) return ERROR(GENERIC); /* should never happen */ 35900c16b537SWarner Losh dctx->expected = 0; /* not necessary to copy more */ 35910c16b537SWarner Losh /* fallthrough */ 35920c16b537SWarner Losh case ZSTDv05ds_decodeFrameHeader: 35930c16b537SWarner Losh /* get frame header */ 35940c16b537SWarner Losh { size_t const result = ZSTDv05_decodeFrameHeader_Part2(dctx, dctx->headerBuffer, dctx->headerSize); 35950c16b537SWarner Losh if (ZSTDv05_isError(result)) return result; 35960c16b537SWarner Losh dctx->expected = ZSTDv05_blockHeaderSize; 35970c16b537SWarner Losh dctx->stage = ZSTDv05ds_decodeBlockHeader; 35980c16b537SWarner Losh return 0; 35990c16b537SWarner Losh } 36000c16b537SWarner Losh case ZSTDv05ds_decodeBlockHeader: 36010c16b537SWarner Losh { 36020c16b537SWarner Losh /* Decode block header */ 36030c16b537SWarner Losh blockProperties_t bp; 36040c16b537SWarner Losh size_t blockSize = ZSTDv05_getcBlockSize(src, ZSTDv05_blockHeaderSize, &bp); 36050c16b537SWarner Losh if (ZSTDv05_isError(blockSize)) return blockSize; 36060c16b537SWarner Losh if (bp.blockType == bt_end) { 36070c16b537SWarner Losh dctx->expected = 0; 36080c16b537SWarner Losh dctx->stage = ZSTDv05ds_getFrameHeaderSize; 36090c16b537SWarner Losh } 36100c16b537SWarner Losh else { 36110c16b537SWarner Losh dctx->expected = blockSize; 36120c16b537SWarner Losh dctx->bType = bp.blockType; 36130c16b537SWarner Losh dctx->stage = ZSTDv05ds_decompressBlock; 36140c16b537SWarner Losh } 36150c16b537SWarner Losh return 0; 36160c16b537SWarner Losh } 36170c16b537SWarner Losh case ZSTDv05ds_decompressBlock: 36180c16b537SWarner Losh { 36190c16b537SWarner Losh /* Decompress : block content */ 36200c16b537SWarner Losh size_t rSize; 36210c16b537SWarner Losh switch(dctx->bType) 36220c16b537SWarner Losh { 36230c16b537SWarner Losh case bt_compressed: 36240c16b537SWarner Losh rSize = ZSTDv05_decompressBlock_internal(dctx, dst, maxDstSize, src, srcSize); 36250c16b537SWarner Losh break; 36260c16b537SWarner Losh case bt_raw : 36270c16b537SWarner Losh rSize = ZSTDv05_copyRawBlock(dst, maxDstSize, src, srcSize); 36280c16b537SWarner Losh break; 36290c16b537SWarner Losh case bt_rle : 36300c16b537SWarner Losh return ERROR(GENERIC); /* not yet handled */ 36310c16b537SWarner Losh break; 36320c16b537SWarner Losh case bt_end : /* should never happen (filtered at phase 1) */ 36330c16b537SWarner Losh rSize = 0; 36340c16b537SWarner Losh break; 36350c16b537SWarner Losh default: 36360c16b537SWarner Losh return ERROR(GENERIC); /* impossible */ 36370c16b537SWarner Losh } 36380c16b537SWarner Losh dctx->stage = ZSTDv05ds_decodeBlockHeader; 36390c16b537SWarner Losh dctx->expected = ZSTDv05_blockHeaderSize; 36400c16b537SWarner Losh dctx->previousDstEnd = (char*)dst + rSize; 36410c16b537SWarner Losh return rSize; 36420c16b537SWarner Losh } 36430c16b537SWarner Losh default: 36440c16b537SWarner Losh return ERROR(GENERIC); /* impossible */ 36450c16b537SWarner Losh } 36460c16b537SWarner Losh } 36470c16b537SWarner Losh 36480c16b537SWarner Losh 36490c16b537SWarner Losh static void ZSTDv05_refDictContent(ZSTDv05_DCtx* dctx, const void* dict, size_t dictSize) 36500c16b537SWarner Losh { 36510c16b537SWarner Losh dctx->dictEnd = dctx->previousDstEnd; 36520c16b537SWarner Losh dctx->vBase = (const char*)dict - ((const char*)(dctx->previousDstEnd) - (const char*)(dctx->base)); 36530c16b537SWarner Losh dctx->base = dict; 36540c16b537SWarner Losh dctx->previousDstEnd = (const char*)dict + dictSize; 36550c16b537SWarner Losh } 36560c16b537SWarner Losh 36570c16b537SWarner Losh static size_t ZSTDv05_loadEntropy(ZSTDv05_DCtx* dctx, const void* dict, size_t dictSize) 36580c16b537SWarner Losh { 36590c16b537SWarner Losh size_t hSize, offcodeHeaderSize, matchlengthHeaderSize, errorCode, litlengthHeaderSize; 36600c16b537SWarner Losh short offcodeNCount[MaxOff+1]; 3661a0483764SConrad Meyer unsigned offcodeMaxValue=MaxOff, offcodeLog; 36620c16b537SWarner Losh short matchlengthNCount[MaxML+1]; 36630c16b537SWarner Losh unsigned matchlengthMaxValue = MaxML, matchlengthLog; 36640c16b537SWarner Losh short litlengthNCount[MaxLL+1]; 36650c16b537SWarner Losh unsigned litlengthMaxValue = MaxLL, litlengthLog; 36660c16b537SWarner Losh 36670c16b537SWarner Losh hSize = HUFv05_readDTableX4(dctx->hufTableX4, dict, dictSize); 36680c16b537SWarner Losh if (HUFv05_isError(hSize)) return ERROR(dictionary_corrupted); 36690c16b537SWarner Losh dict = (const char*)dict + hSize; 36700c16b537SWarner Losh dictSize -= hSize; 36710c16b537SWarner Losh 36720c16b537SWarner Losh offcodeHeaderSize = FSEv05_readNCount(offcodeNCount, &offcodeMaxValue, &offcodeLog, dict, dictSize); 36730c16b537SWarner Losh if (FSEv05_isError(offcodeHeaderSize)) return ERROR(dictionary_corrupted); 36740c16b537SWarner Losh if (offcodeLog > OffFSEv05Log) return ERROR(dictionary_corrupted); 36750c16b537SWarner Losh errorCode = FSEv05_buildDTable(dctx->OffTable, offcodeNCount, offcodeMaxValue, offcodeLog); 36760c16b537SWarner Losh if (FSEv05_isError(errorCode)) return ERROR(dictionary_corrupted); 36770c16b537SWarner Losh dict = (const char*)dict + offcodeHeaderSize; 36780c16b537SWarner Losh dictSize -= offcodeHeaderSize; 36790c16b537SWarner Losh 36800c16b537SWarner Losh matchlengthHeaderSize = FSEv05_readNCount(matchlengthNCount, &matchlengthMaxValue, &matchlengthLog, dict, dictSize); 36810c16b537SWarner Losh if (FSEv05_isError(matchlengthHeaderSize)) return ERROR(dictionary_corrupted); 36820c16b537SWarner Losh if (matchlengthLog > MLFSEv05Log) return ERROR(dictionary_corrupted); 36830c16b537SWarner Losh errorCode = FSEv05_buildDTable(dctx->MLTable, matchlengthNCount, matchlengthMaxValue, matchlengthLog); 36840c16b537SWarner Losh if (FSEv05_isError(errorCode)) return ERROR(dictionary_corrupted); 36850c16b537SWarner Losh dict = (const char*)dict + matchlengthHeaderSize; 36860c16b537SWarner Losh dictSize -= matchlengthHeaderSize; 36870c16b537SWarner Losh 36880c16b537SWarner Losh litlengthHeaderSize = FSEv05_readNCount(litlengthNCount, &litlengthMaxValue, &litlengthLog, dict, dictSize); 36890c16b537SWarner Losh if (litlengthLog > LLFSEv05Log) return ERROR(dictionary_corrupted); 36900c16b537SWarner Losh if (FSEv05_isError(litlengthHeaderSize)) return ERROR(dictionary_corrupted); 36910c16b537SWarner Losh errorCode = FSEv05_buildDTable(dctx->LLTable, litlengthNCount, litlengthMaxValue, litlengthLog); 36920c16b537SWarner Losh if (FSEv05_isError(errorCode)) return ERROR(dictionary_corrupted); 36930c16b537SWarner Losh 36940c16b537SWarner Losh dctx->flagStaticTables = 1; 36950c16b537SWarner Losh return hSize + offcodeHeaderSize + matchlengthHeaderSize + litlengthHeaderSize; 36960c16b537SWarner Losh } 36970c16b537SWarner Losh 36980c16b537SWarner Losh static size_t ZSTDv05_decompress_insertDictionary(ZSTDv05_DCtx* dctx, const void* dict, size_t dictSize) 36990c16b537SWarner Losh { 37000c16b537SWarner Losh size_t eSize; 37010c16b537SWarner Losh U32 magic = MEM_readLE32(dict); 37020c16b537SWarner Losh if (magic != ZSTDv05_DICT_MAGIC) { 37030c16b537SWarner Losh /* pure content mode */ 37040c16b537SWarner Losh ZSTDv05_refDictContent(dctx, dict, dictSize); 37050c16b537SWarner Losh return 0; 37060c16b537SWarner Losh } 37070c16b537SWarner Losh /* load entropy tables */ 37080c16b537SWarner Losh dict = (const char*)dict + 4; 37090c16b537SWarner Losh dictSize -= 4; 37100c16b537SWarner Losh eSize = ZSTDv05_loadEntropy(dctx, dict, dictSize); 37110c16b537SWarner Losh if (ZSTDv05_isError(eSize)) return ERROR(dictionary_corrupted); 37120c16b537SWarner Losh 37130c16b537SWarner Losh /* reference dictionary content */ 37140c16b537SWarner Losh dict = (const char*)dict + eSize; 37150c16b537SWarner Losh dictSize -= eSize; 37160c16b537SWarner Losh ZSTDv05_refDictContent(dctx, dict, dictSize); 37170c16b537SWarner Losh 37180c16b537SWarner Losh return 0; 37190c16b537SWarner Losh } 37200c16b537SWarner Losh 37210c16b537SWarner Losh 37220c16b537SWarner Losh size_t ZSTDv05_decompressBegin_usingDict(ZSTDv05_DCtx* dctx, const void* dict, size_t dictSize) 37230c16b537SWarner Losh { 37240c16b537SWarner Losh size_t errorCode; 37250c16b537SWarner Losh errorCode = ZSTDv05_decompressBegin(dctx); 37260c16b537SWarner Losh if (ZSTDv05_isError(errorCode)) return errorCode; 37270c16b537SWarner Losh 37280c16b537SWarner Losh if (dict && dictSize) { 37290c16b537SWarner Losh errorCode = ZSTDv05_decompress_insertDictionary(dctx, dict, dictSize); 37300c16b537SWarner Losh if (ZSTDv05_isError(errorCode)) return ERROR(dictionary_corrupted); 37310c16b537SWarner Losh } 37320c16b537SWarner Losh 37330c16b537SWarner Losh return 0; 37340c16b537SWarner Losh } 37350c16b537SWarner Losh 37360c16b537SWarner Losh /* 37370c16b537SWarner Losh Buffered version of Zstd compression library 37380c16b537SWarner Losh Copyright (C) 2015-2016, Yann Collet. 37390c16b537SWarner Losh 37400c16b537SWarner Losh BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) 37410c16b537SWarner Losh 37420c16b537SWarner Losh Redistribution and use in source and binary forms, with or without 37430c16b537SWarner Losh modification, are permitted provided that the following conditions are 37440c16b537SWarner Losh met: 37450c16b537SWarner Losh * Redistributions of source code must retain the above copyright 37460c16b537SWarner Losh notice, this list of conditions and the following disclaimer. 37470c16b537SWarner Losh * Redistributions in binary form must reproduce the above 37480c16b537SWarner Losh copyright notice, this list of conditions and the following disclaimer 37490c16b537SWarner Losh in the documentation and/or other materials provided with the 37500c16b537SWarner Losh distribution. 37510c16b537SWarner Losh THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 37520c16b537SWarner Losh "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 37530c16b537SWarner Losh LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 37540c16b537SWarner Losh A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 37550c16b537SWarner Losh OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 37560c16b537SWarner Losh SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 37570c16b537SWarner Losh LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 37580c16b537SWarner Losh DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 37590c16b537SWarner Losh THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 37600c16b537SWarner Losh (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 37610c16b537SWarner Losh OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 37620c16b537SWarner Losh 37630c16b537SWarner Losh You can contact the author at : 37640c16b537SWarner Losh - zstd source repository : https://github.com/Cyan4973/zstd 37650c16b537SWarner Losh - ztsd public forum : https://groups.google.com/forum/#!forum/lz4c 37660c16b537SWarner Losh */ 37670c16b537SWarner Losh 37680c16b537SWarner Losh /* The objects defined into this file should be considered experimental. 37690c16b537SWarner Losh * They are not labelled stable, as their prototype may change in the future. 37700c16b537SWarner Losh * You can use them for tests, provide feedback, or if you can endure risk of future changes. 37710c16b537SWarner Losh */ 37720c16b537SWarner Losh 37730c16b537SWarner Losh 37740c16b537SWarner Losh 37750c16b537SWarner Losh /* ************************************* 37760c16b537SWarner Losh * Constants 37770c16b537SWarner Losh ***************************************/ 37780c16b537SWarner Losh static size_t ZBUFFv05_blockHeaderSize = 3; 37790c16b537SWarner Losh 37800c16b537SWarner Losh 37810c16b537SWarner Losh 37820c16b537SWarner Losh /* *** Compression *** */ 37830c16b537SWarner Losh 37840c16b537SWarner Losh static size_t ZBUFFv05_limitCopy(void* dst, size_t maxDstSize, const void* src, size_t srcSize) 37850c16b537SWarner Losh { 37860c16b537SWarner Losh size_t length = MIN(maxDstSize, srcSize); 37870c16b537SWarner Losh memcpy(dst, src, length); 37880c16b537SWarner Losh return length; 37890c16b537SWarner Losh } 37900c16b537SWarner Losh 37910c16b537SWarner Losh 37920c16b537SWarner Losh 37930c16b537SWarner Losh 37940c16b537SWarner Losh /** ************************************************ 37950c16b537SWarner Losh * Streaming decompression 37960c16b537SWarner Losh * 37970c16b537SWarner Losh * A ZBUFFv05_DCtx object is required to track streaming operation. 37980c16b537SWarner Losh * Use ZBUFFv05_createDCtx() and ZBUFFv05_freeDCtx() to create/release resources. 37990c16b537SWarner Losh * Use ZBUFFv05_decompressInit() to start a new decompression operation. 38000c16b537SWarner Losh * ZBUFFv05_DCtx objects can be reused multiple times. 38010c16b537SWarner Losh * 38020c16b537SWarner Losh * Use ZBUFFv05_decompressContinue() repetitively to consume your input. 38030c16b537SWarner Losh * *srcSizePtr and *maxDstSizePtr can be any size. 38040c16b537SWarner Losh * The function will report how many bytes were read or written by modifying *srcSizePtr and *maxDstSizePtr. 38050c16b537SWarner Losh * Note that it may not consume the entire input, in which case it's up to the caller to call again the function with remaining input. 38060c16b537SWarner Losh * The content of dst will be overwritten (up to *maxDstSizePtr) at each function call, so save its content if it matters or change dst . 38070c16b537SWarner Losh * return : a hint to preferred nb of bytes to use as input for next function call (it's only a hint, to improve latency) 38080c16b537SWarner Losh * or 0 when a frame is completely decoded 38090c16b537SWarner Losh * or an error code, which can be tested using ZBUFFv05_isError(). 38100c16b537SWarner Losh * 38110c16b537SWarner Losh * Hint : recommended buffer sizes (not compulsory) 38120c16b537SWarner Losh * output : 128 KB block size is the internal unit, it ensures it's always possible to write a full block when it's decoded. 38130c16b537SWarner Losh * input : just follow indications from ZBUFFv05_decompressContinue() to minimize latency. It should always be <= 128 KB + 3 . 38140c16b537SWarner Losh * **************************************************/ 38150c16b537SWarner Losh 38160c16b537SWarner Losh typedef enum { ZBUFFv05ds_init, ZBUFFv05ds_readHeader, ZBUFFv05ds_loadHeader, ZBUFFv05ds_decodeHeader, 38170c16b537SWarner Losh ZBUFFv05ds_read, ZBUFFv05ds_load, ZBUFFv05ds_flush } ZBUFFv05_dStage; 38180c16b537SWarner Losh 38190c16b537SWarner Losh /* *** Resource management *** */ 38200c16b537SWarner Losh 38210c16b537SWarner Losh #define ZSTDv05_frameHeaderSize_max 5 /* too magical, should come from reference */ 38220c16b537SWarner Losh struct ZBUFFv05_DCtx_s { 38230c16b537SWarner Losh ZSTDv05_DCtx* zc; 38240c16b537SWarner Losh ZSTDv05_parameters params; 38250c16b537SWarner Losh char* inBuff; 38260c16b537SWarner Losh size_t inBuffSize; 38270c16b537SWarner Losh size_t inPos; 38280c16b537SWarner Losh char* outBuff; 38290c16b537SWarner Losh size_t outBuffSize; 38300c16b537SWarner Losh size_t outStart; 38310c16b537SWarner Losh size_t outEnd; 38320c16b537SWarner Losh size_t hPos; 38330c16b537SWarner Losh ZBUFFv05_dStage stage; 38340c16b537SWarner Losh unsigned char headerBuffer[ZSTDv05_frameHeaderSize_max]; 38350c16b537SWarner Losh }; /* typedef'd to ZBUFFv05_DCtx within "zstd_buffered.h" */ 38360c16b537SWarner Losh 38370c16b537SWarner Losh 38380c16b537SWarner Losh ZBUFFv05_DCtx* ZBUFFv05_createDCtx(void) 38390c16b537SWarner Losh { 38400c16b537SWarner Losh ZBUFFv05_DCtx* zbc = (ZBUFFv05_DCtx*)malloc(sizeof(ZBUFFv05_DCtx)); 38410c16b537SWarner Losh if (zbc==NULL) return NULL; 38420c16b537SWarner Losh memset(zbc, 0, sizeof(*zbc)); 38430c16b537SWarner Losh zbc->zc = ZSTDv05_createDCtx(); 38440c16b537SWarner Losh zbc->stage = ZBUFFv05ds_init; 38450c16b537SWarner Losh return zbc; 38460c16b537SWarner Losh } 38470c16b537SWarner Losh 38480c16b537SWarner Losh size_t ZBUFFv05_freeDCtx(ZBUFFv05_DCtx* zbc) 38490c16b537SWarner Losh { 38500c16b537SWarner Losh if (zbc==NULL) return 0; /* support free on null */ 38510c16b537SWarner Losh ZSTDv05_freeDCtx(zbc->zc); 38520c16b537SWarner Losh free(zbc->inBuff); 38530c16b537SWarner Losh free(zbc->outBuff); 38540c16b537SWarner Losh free(zbc); 38550c16b537SWarner Losh return 0; 38560c16b537SWarner Losh } 38570c16b537SWarner Losh 38580c16b537SWarner Losh 38590c16b537SWarner Losh /* *** Initialization *** */ 38600c16b537SWarner Losh 38610c16b537SWarner Losh size_t ZBUFFv05_decompressInitDictionary(ZBUFFv05_DCtx* zbc, const void* dict, size_t dictSize) 38620c16b537SWarner Losh { 38630c16b537SWarner Losh zbc->stage = ZBUFFv05ds_readHeader; 38640c16b537SWarner Losh zbc->hPos = zbc->inPos = zbc->outStart = zbc->outEnd = 0; 38650c16b537SWarner Losh return ZSTDv05_decompressBegin_usingDict(zbc->zc, dict, dictSize); 38660c16b537SWarner Losh } 38670c16b537SWarner Losh 38680c16b537SWarner Losh size_t ZBUFFv05_decompressInit(ZBUFFv05_DCtx* zbc) 38690c16b537SWarner Losh { 38700c16b537SWarner Losh return ZBUFFv05_decompressInitDictionary(zbc, NULL, 0); 38710c16b537SWarner Losh } 38720c16b537SWarner Losh 38730c16b537SWarner Losh 38740c16b537SWarner Losh /* *** Decompression *** */ 38750c16b537SWarner Losh 38760c16b537SWarner Losh size_t ZBUFFv05_decompressContinue(ZBUFFv05_DCtx* zbc, void* dst, size_t* maxDstSizePtr, const void* src, size_t* srcSizePtr) 38770c16b537SWarner Losh { 38780c16b537SWarner Losh const char* const istart = (const char*)src; 38790c16b537SWarner Losh const char* ip = istart; 38800c16b537SWarner Losh const char* const iend = istart + *srcSizePtr; 38810c16b537SWarner Losh char* const ostart = (char*)dst; 38820c16b537SWarner Losh char* op = ostart; 38830c16b537SWarner Losh char* const oend = ostart + *maxDstSizePtr; 38840c16b537SWarner Losh U32 notDone = 1; 38850c16b537SWarner Losh 38860c16b537SWarner Losh while (notDone) { 38870c16b537SWarner Losh switch(zbc->stage) 38880c16b537SWarner Losh { 38890c16b537SWarner Losh case ZBUFFv05ds_init : 38900c16b537SWarner Losh return ERROR(init_missing); 38910c16b537SWarner Losh 38920c16b537SWarner Losh case ZBUFFv05ds_readHeader : 38930c16b537SWarner Losh /* read header from src */ 38940c16b537SWarner Losh { 38950c16b537SWarner Losh size_t headerSize = ZSTDv05_getFrameParams(&(zbc->params), src, *srcSizePtr); 38960c16b537SWarner Losh if (ZSTDv05_isError(headerSize)) return headerSize; 38970c16b537SWarner Losh if (headerSize) { 38980c16b537SWarner Losh /* not enough input to decode header : tell how many bytes would be necessary */ 38990c16b537SWarner Losh memcpy(zbc->headerBuffer+zbc->hPos, src, *srcSizePtr); 39000c16b537SWarner Losh zbc->hPos += *srcSizePtr; 39010c16b537SWarner Losh *maxDstSizePtr = 0; 39020c16b537SWarner Losh zbc->stage = ZBUFFv05ds_loadHeader; 39030c16b537SWarner Losh return headerSize - zbc->hPos; 39040c16b537SWarner Losh } 39050c16b537SWarner Losh zbc->stage = ZBUFFv05ds_decodeHeader; 39060c16b537SWarner Losh break; 39070c16b537SWarner Losh } 39080c16b537SWarner Losh /* fall-through */ 39090c16b537SWarner Losh case ZBUFFv05ds_loadHeader: 39100c16b537SWarner Losh /* complete header from src */ 39110c16b537SWarner Losh { 39120c16b537SWarner Losh size_t headerSize = ZBUFFv05_limitCopy( 39130c16b537SWarner Losh zbc->headerBuffer + zbc->hPos, ZSTDv05_frameHeaderSize_max - zbc->hPos, 39140c16b537SWarner Losh src, *srcSizePtr); 39150c16b537SWarner Losh zbc->hPos += headerSize; 39160c16b537SWarner Losh ip += headerSize; 39170c16b537SWarner Losh headerSize = ZSTDv05_getFrameParams(&(zbc->params), zbc->headerBuffer, zbc->hPos); 39180c16b537SWarner Losh if (ZSTDv05_isError(headerSize)) return headerSize; 39190c16b537SWarner Losh if (headerSize) { 39200c16b537SWarner Losh /* not enough input to decode header : tell how many bytes would be necessary */ 39210c16b537SWarner Losh *maxDstSizePtr = 0; 39220c16b537SWarner Losh return headerSize - zbc->hPos; 39230c16b537SWarner Losh } 39240c16b537SWarner Losh // zbc->stage = ZBUFFv05ds_decodeHeader; break; /* useless : stage follows */ 39250c16b537SWarner Losh } 39260c16b537SWarner Losh /* fall-through */ 39270c16b537SWarner Losh case ZBUFFv05ds_decodeHeader: 39280c16b537SWarner Losh /* apply header to create / resize buffers */ 39290c16b537SWarner Losh { 39300c16b537SWarner Losh size_t neededOutSize = (size_t)1 << zbc->params.windowLog; 39310c16b537SWarner Losh size_t neededInSize = BLOCKSIZE; /* a block is never > BLOCKSIZE */ 39320c16b537SWarner Losh if (zbc->inBuffSize < neededInSize) { 39330c16b537SWarner Losh free(zbc->inBuff); 39340c16b537SWarner Losh zbc->inBuffSize = neededInSize; 39350c16b537SWarner Losh zbc->inBuff = (char*)malloc(neededInSize); 39360c16b537SWarner Losh if (zbc->inBuff == NULL) return ERROR(memory_allocation); 39370c16b537SWarner Losh } 39380c16b537SWarner Losh if (zbc->outBuffSize < neededOutSize) { 39390c16b537SWarner Losh free(zbc->outBuff); 39400c16b537SWarner Losh zbc->outBuffSize = neededOutSize; 39410c16b537SWarner Losh zbc->outBuff = (char*)malloc(neededOutSize); 39420c16b537SWarner Losh if (zbc->outBuff == NULL) return ERROR(memory_allocation); 39430c16b537SWarner Losh } } 39440c16b537SWarner Losh if (zbc->hPos) { 39450c16b537SWarner Losh /* some data already loaded into headerBuffer : transfer into inBuff */ 39460c16b537SWarner Losh memcpy(zbc->inBuff, zbc->headerBuffer, zbc->hPos); 39470c16b537SWarner Losh zbc->inPos = zbc->hPos; 39480c16b537SWarner Losh zbc->hPos = 0; 39490c16b537SWarner Losh zbc->stage = ZBUFFv05ds_load; 39500c16b537SWarner Losh break; 39510c16b537SWarner Losh } 39520c16b537SWarner Losh zbc->stage = ZBUFFv05ds_read; 39530c16b537SWarner Losh /* fall-through */ 39540c16b537SWarner Losh case ZBUFFv05ds_read: 39550c16b537SWarner Losh { 39560c16b537SWarner Losh size_t neededInSize = ZSTDv05_nextSrcSizeToDecompress(zbc->zc); 39570c16b537SWarner Losh if (neededInSize==0) { /* end of frame */ 39580c16b537SWarner Losh zbc->stage = ZBUFFv05ds_init; 39590c16b537SWarner Losh notDone = 0; 39600c16b537SWarner Losh break; 39610c16b537SWarner Losh } 39620c16b537SWarner Losh if ((size_t)(iend-ip) >= neededInSize) { 39630c16b537SWarner Losh /* directly decode from src */ 39640c16b537SWarner Losh size_t decodedSize = ZSTDv05_decompressContinue(zbc->zc, 39650c16b537SWarner Losh zbc->outBuff + zbc->outStart, zbc->outBuffSize - zbc->outStart, 39660c16b537SWarner Losh ip, neededInSize); 39670c16b537SWarner Losh if (ZSTDv05_isError(decodedSize)) return decodedSize; 39680c16b537SWarner Losh ip += neededInSize; 39690c16b537SWarner Losh if (!decodedSize) break; /* this was just a header */ 39700c16b537SWarner Losh zbc->outEnd = zbc->outStart + decodedSize; 39710c16b537SWarner Losh zbc->stage = ZBUFFv05ds_flush; 39720c16b537SWarner Losh break; 39730c16b537SWarner Losh } 39740c16b537SWarner Losh if (ip==iend) { notDone = 0; break; } /* no more input */ 39750c16b537SWarner Losh zbc->stage = ZBUFFv05ds_load; 39760c16b537SWarner Losh } 39770c16b537SWarner Losh /* fall-through */ 39780c16b537SWarner Losh case ZBUFFv05ds_load: 39790c16b537SWarner Losh { 39800c16b537SWarner Losh size_t neededInSize = ZSTDv05_nextSrcSizeToDecompress(zbc->zc); 39810c16b537SWarner Losh size_t toLoad = neededInSize - zbc->inPos; /* should always be <= remaining space within inBuff */ 39820c16b537SWarner Losh size_t loadedSize; 39830c16b537SWarner Losh if (toLoad > zbc->inBuffSize - zbc->inPos) return ERROR(corruption_detected); /* should never happen */ 39840c16b537SWarner Losh loadedSize = ZBUFFv05_limitCopy(zbc->inBuff + zbc->inPos, toLoad, ip, iend-ip); 39850c16b537SWarner Losh ip += loadedSize; 39860c16b537SWarner Losh zbc->inPos += loadedSize; 39870c16b537SWarner Losh if (loadedSize < toLoad) { notDone = 0; break; } /* not enough input, wait for more */ 39880c16b537SWarner Losh { 39890c16b537SWarner Losh size_t decodedSize = ZSTDv05_decompressContinue(zbc->zc, 39900c16b537SWarner Losh zbc->outBuff + zbc->outStart, zbc->outBuffSize - zbc->outStart, 39910c16b537SWarner Losh zbc->inBuff, neededInSize); 39920c16b537SWarner Losh if (ZSTDv05_isError(decodedSize)) return decodedSize; 39930c16b537SWarner Losh zbc->inPos = 0; /* input is consumed */ 39940c16b537SWarner Losh if (!decodedSize) { zbc->stage = ZBUFFv05ds_read; break; } /* this was just a header */ 39950c16b537SWarner Losh zbc->outEnd = zbc->outStart + decodedSize; 39960c16b537SWarner Losh zbc->stage = ZBUFFv05ds_flush; 39970c16b537SWarner Losh // break; /* ZBUFFv05ds_flush follows */ 39980c16b537SWarner Losh } 39990c16b537SWarner Losh } 40000c16b537SWarner Losh /* fall-through */ 40010c16b537SWarner Losh case ZBUFFv05ds_flush: 40020c16b537SWarner Losh { 40030c16b537SWarner Losh size_t toFlushSize = zbc->outEnd - zbc->outStart; 40040c16b537SWarner Losh size_t flushedSize = ZBUFFv05_limitCopy(op, oend-op, zbc->outBuff + zbc->outStart, toFlushSize); 40050c16b537SWarner Losh op += flushedSize; 40060c16b537SWarner Losh zbc->outStart += flushedSize; 40070c16b537SWarner Losh if (flushedSize == toFlushSize) { 40080c16b537SWarner Losh zbc->stage = ZBUFFv05ds_read; 40090c16b537SWarner Losh if (zbc->outStart + BLOCKSIZE > zbc->outBuffSize) 40100c16b537SWarner Losh zbc->outStart = zbc->outEnd = 0; 40110c16b537SWarner Losh break; 40120c16b537SWarner Losh } 40130c16b537SWarner Losh /* cannot flush everything */ 40140c16b537SWarner Losh notDone = 0; 40150c16b537SWarner Losh break; 40160c16b537SWarner Losh } 40170c16b537SWarner Losh default: return ERROR(GENERIC); /* impossible */ 40180c16b537SWarner Losh } } 40190c16b537SWarner Losh 40200c16b537SWarner Losh *srcSizePtr = ip-istart; 40210c16b537SWarner Losh *maxDstSizePtr = op-ostart; 40220c16b537SWarner Losh 40230c16b537SWarner Losh { size_t nextSrcSizeHint = ZSTDv05_nextSrcSizeToDecompress(zbc->zc); 40240c16b537SWarner Losh if (nextSrcSizeHint > ZBUFFv05_blockHeaderSize) nextSrcSizeHint+= ZBUFFv05_blockHeaderSize; /* get next block header too */ 40250c16b537SWarner Losh nextSrcSizeHint -= zbc->inPos; /* already loaded*/ 40260c16b537SWarner Losh return nextSrcSizeHint; 40270c16b537SWarner Losh } 40280c16b537SWarner Losh } 40290c16b537SWarner Losh 40300c16b537SWarner Losh 40310c16b537SWarner Losh 40320c16b537SWarner Losh /* ************************************* 40330c16b537SWarner Losh * Tool functions 40340c16b537SWarner Losh ***************************************/ 40350c16b537SWarner Losh unsigned ZBUFFv05_isError(size_t errorCode) { return ERR_isError(errorCode); } 40360c16b537SWarner Losh const char* ZBUFFv05_getErrorName(size_t errorCode) { return ERR_getErrorName(errorCode); } 40370c16b537SWarner Losh 40380c16b537SWarner Losh size_t ZBUFFv05_recommendedDInSize(void) { return BLOCKSIZE + ZBUFFv05_blockHeaderSize /* block header size*/ ; } 40390c16b537SWarner Losh size_t ZBUFFv05_recommendedDOutSize(void) { return BLOCKSIZE; } 4040