1 | /* |
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2 | zstd - standard compression library |
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3 | Copyright (C) 2014-2016, Yann Collet. |
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4 | |
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5 | BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php) |
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6 | |
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7 | Redistribution and use in source and binary forms, with or without |
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8 | modification, are permitted provided that the following conditions are |
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9 | met: |
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10 | * Redistributions of source code must retain the above copyright |
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11 | notice, this list of conditions and the following disclaimer. |
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12 | * Redistributions in binary form must reproduce the above |
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13 | copyright notice, this list of conditions and the following disclaimer |
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14 | in the documentation and/or other materials provided with the |
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15 | distribution. |
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16 | THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS |
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17 | "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT |
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18 | LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR |
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19 | A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT |
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20 | OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, |
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21 | SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT |
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22 | LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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23 | DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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24 | THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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25 | (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE |
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26 | OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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27 | |
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28 | You can contact the author at : |
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29 | - zstd homepage : http://www.zstd.net |
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30 | */ |
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31 | |
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32 | /* *************************************************************** |
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33 | * Tuning parameters |
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34 | *****************************************************************/ |
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35 | /*! |
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36 | * HEAPMODE : |
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37 | * Select how default decompression function ZSTD_decompress() will allocate memory, |
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38 | * in memory stack (0), or in memory heap (1, requires malloc()) |
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39 | */ |
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40 | #ifndef ZSTD_HEAPMODE |
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41 | # define ZSTD_HEAPMODE 1 |
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42 | #endif |
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43 | |
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44 | /*! |
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45 | * LEGACY_SUPPORT : |
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46 | * if set to 1, ZSTD_decompress() can decode older formats (v0.1+) |
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47 | */ |
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48 | #ifndef ZSTD_LEGACY_SUPPORT |
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49 | # define ZSTD_LEGACY_SUPPORT 0 |
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50 | #endif |
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51 | |
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52 | |
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53 | /*-******************************************************* |
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54 | * Dependencies |
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55 | *********************************************************/ |
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56 | #include <string.h> /* memcpy, memmove, memset */ |
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57 | #include <stdio.h> /* debug only : printf */ |
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58 | #include "mem.h" /* low level memory routines */ |
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59 | #define XXH_STATIC_LINKING_ONLY /* XXH64_state_t */ |
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60 | #include "xxhash.h" /* XXH64_* */ |
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61 | #define FSE_STATIC_LINKING_ONLY |
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62 | #include "fse.h" |
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63 | #define HUF_STATIC_LINKING_ONLY |
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64 | #include "huf.h" |
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65 | #include "zstd_internal.h" |
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66 | |
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67 | #if defined(ZSTD_LEGACY_SUPPORT) && (ZSTD_LEGACY_SUPPORT>=1) |
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68 | # include "zstd_legacy.h" |
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69 | #endif |
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70 | |
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71 | |
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72 | /*-******************************************************* |
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73 | * Compiler specifics |
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74 | *********************************************************/ |
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75 | #ifdef _MSC_VER /* Visual Studio */ |
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76 | # define FORCE_INLINE static __forceinline |
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77 | # include <intrin.h> /* For Visual 2005 */ |
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78 | # pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */ |
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79 | # pragma warning(disable : 4324) /* disable: C4324: padded structure */ |
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80 | #else |
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81 | # ifdef __GNUC__ |
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82 | # define FORCE_INLINE static inline __attribute__((always_inline)) |
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83 | # else |
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84 | # define FORCE_INLINE static inline |
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85 | # endif |
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86 | #endif |
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87 | |
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88 | |
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89 | /*-************************************* |
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90 | * Macros |
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91 | ***************************************/ |
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92 | #define ZSTD_isError ERR_isError /* for inlining */ |
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93 | #define FSE_isError ERR_isError |
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94 | #define HUF_isError ERR_isError |
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95 | |
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96 | |
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97 | /*_******************************************************* |
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98 | * Memory operations |
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99 | **********************************************************/ |
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100 | static void ZSTD_copy4(void* dst, const void* src) { memcpy(dst, src, 4); } |
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101 | |
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102 | |
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103 | /*-************************************************************* |
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104 | * Context management |
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105 | ***************************************************************/ |
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106 | typedef enum { ZSTDds_getFrameHeaderSize, ZSTDds_decodeFrameHeader, |
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107 | ZSTDds_decodeBlockHeader, ZSTDds_decompressBlock, |
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108 | ZSTDds_decodeSkippableHeader, ZSTDds_skipFrame } ZSTD_dStage; |
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109 | |
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110 | struct ZSTD_DCtx_s |
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111 | { |
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112 | FSE_DTable LLTable[FSE_DTABLE_SIZE_U32(LLFSELog)]; |
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113 | FSE_DTable OffTable[FSE_DTABLE_SIZE_U32(OffFSELog)]; |
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114 | FSE_DTable MLTable[FSE_DTABLE_SIZE_U32(MLFSELog)]; |
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115 | HUF_DTable hufTable[HUF_DTABLE_SIZE(HufLog)]; /* can accommodate HUF_decompress4X */ |
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116 | const void* previousDstEnd; |
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117 | const void* base; |
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118 | const void* vBase; |
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119 | const void* dictEnd; |
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120 | size_t expected; |
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121 | U32 rep[3]; |
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122 | ZSTD_frameParams fParams; |
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123 | blockType_t bType; /* used in ZSTD_decompressContinue(), to transfer blockType between header decoding and block decoding stages */ |
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124 | ZSTD_dStage stage; |
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125 | U32 litEntropy; |
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126 | U32 fseEntropy; |
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127 | XXH64_state_t xxhState; |
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128 | size_t headerSize; |
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129 | U32 dictID; |
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130 | const BYTE* litPtr; |
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131 | ZSTD_customMem customMem; |
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132 | size_t litBufSize; |
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133 | size_t litSize; |
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134 | BYTE litBuffer[ZSTD_BLOCKSIZE_MAX + WILDCOPY_OVERLENGTH]; |
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135 | BYTE headerBuffer[ZSTD_FRAMEHEADERSIZE_MAX]; |
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136 | }; /* typedef'd to ZSTD_DCtx within "zstd_static.h" */ |
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137 | |
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138 | size_t ZSTD_sizeofDCtx (const ZSTD_DCtx* dctx) { return sizeof(*dctx); } |
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139 | |
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140 | size_t ZSTD_estimateDCtxSize(void) { return sizeof(ZSTD_DCtx); } |
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141 | |
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142 | size_t ZSTD_decompressBegin(ZSTD_DCtx* dctx) |
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143 | { |
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144 | dctx->expected = ZSTD_frameHeaderSize_min; |
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145 | dctx->stage = ZSTDds_getFrameHeaderSize; |
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146 | dctx->previousDstEnd = NULL; |
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147 | dctx->base = NULL; |
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148 | dctx->vBase = NULL; |
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149 | dctx->dictEnd = NULL; |
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150 | dctx->hufTable[0] = (HUF_DTable)((HufLog)*0x1000001); |
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151 | dctx->litEntropy = dctx->fseEntropy = 0; |
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152 | dctx->dictID = 0; |
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153 | { int i; for (i=0; i<ZSTD_REP_NUM; i++) dctx->rep[i] = repStartValue[i]; } |
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154 | return 0; |
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155 | } |
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156 | |
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157 | ZSTD_DCtx* ZSTD_createDCtx_advanced(ZSTD_customMem customMem) |
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158 | { |
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159 | ZSTD_DCtx* dctx; |
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160 | |
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161 | if (!customMem.customAlloc && !customMem.customFree) |
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162 | customMem = defaultCustomMem; |
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163 | |
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164 | if (!customMem.customAlloc || !customMem.customFree) |
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165 | return NULL; |
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166 | |
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167 | dctx = (ZSTD_DCtx*) customMem.customAlloc(customMem.opaque, sizeof(ZSTD_DCtx)); |
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168 | if (!dctx) return NULL; |
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169 | memcpy(&dctx->customMem, &customMem, sizeof(ZSTD_customMem)); |
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170 | ZSTD_decompressBegin(dctx); |
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171 | return dctx; |
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172 | } |
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173 | |
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174 | ZSTD_DCtx* ZSTD_createDCtx(void) |
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175 | { |
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176 | return ZSTD_createDCtx_advanced(defaultCustomMem); |
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177 | } |
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178 | |
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179 | size_t ZSTD_freeDCtx(ZSTD_DCtx* dctx) |
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180 | { |
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181 | if (dctx==NULL) return 0; /* support free on NULL */ |
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182 | dctx->customMem.customFree(dctx->customMem.opaque, dctx); |
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183 | return 0; /* reserved as a potential error code in the future */ |
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184 | } |
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185 | |
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186 | void ZSTD_copyDCtx(ZSTD_DCtx* dstDCtx, const ZSTD_DCtx* srcDCtx) |
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187 | { |
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188 | memcpy(dstDCtx, srcDCtx, |
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189 | sizeof(ZSTD_DCtx) - (ZSTD_BLOCKSIZE_MAX+WILDCOPY_OVERLENGTH + ZSTD_frameHeaderSize_max)); /* no need to copy workspace */ |
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190 | } |
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191 | |
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192 | |
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193 | /*-************************************************************* |
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194 | * Decompression section |
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195 | ***************************************************************/ |
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196 | |
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197 | /* Frame format description |
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198 | Frame Header - [ Block Header - Block ] - Frame End |
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199 | 1) Frame Header |
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200 | - 4 bytes - Magic Number : ZSTD_MAGICNUMBER (defined within zstd.h) |
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201 | - 1 byte - Frame Descriptor |
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202 | 2) Block Header |
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203 | - 3 bytes, starting with a 2-bits descriptor |
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204 | Uncompressed, Compressed, Frame End, unused |
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205 | 3) Block |
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206 | See Block Format Description |
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207 | 4) Frame End |
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208 | - 3 bytes, compatible with Block Header |
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209 | */ |
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210 | |
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211 | |
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212 | /* Frame Header : |
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213 | |
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214 | 1 byte - FrameHeaderDescription : |
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215 | bit 0-1 : dictID (0, 1, 2 or 4 bytes) |
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216 | bit 2 : checksumFlag |
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217 | bit 3 : reserved (must be zero) |
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218 | bit 4 : reserved (unused, can be any value) |
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219 | bit 5 : Single Segment (if 1, WindowLog byte is not present) |
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220 | bit 6-7 : FrameContentFieldSize (0, 2, 4, or 8) |
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221 | if (SkippedWindowLog && !FrameContentFieldsize) FrameContentFieldsize=1; |
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222 | |
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223 | Optional : WindowLog (0 or 1 byte) |
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224 | bit 0-2 : octal Fractional (1/8th) |
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225 | bit 3-7 : Power of 2, with 0 = 1 KB (up to 2 TB) |
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226 | |
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227 | Optional : dictID (0, 1, 2 or 4 bytes) |
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228 | Automatic adaptation |
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229 | 0 : no dictID |
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230 | 1 : 1 - 255 |
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231 | 2 : 256 - 65535 |
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232 | 4 : all other values |
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233 | |
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234 | Optional : content size (0, 1, 2, 4 or 8 bytes) |
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235 | 0 : unknown (fcfs==0 and swl==0) |
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236 | 1 : 0-255 bytes (fcfs==0 and swl==1) |
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237 | 2 : 256 - 65535+256 (fcfs==1) |
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238 | 4 : 0 - 4GB-1 (fcfs==2) |
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239 | 8 : 0 - 16EB-1 (fcfs==3) |
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240 | */ |
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241 | |
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242 | |
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243 | /* Compressed Block, format description |
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244 | |
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245 | Block = Literal Section - Sequences Section |
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246 | Prerequisite : size of (compressed) block, maximum size of regenerated data |
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247 | |
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248 | 1) Literal Section |
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249 | |
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250 | 1.1) Header : 1-5 bytes |
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251 | flags: 2 bits |
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252 | 00 compressed by Huff0 |
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253 | 01 unused |
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254 | 10 is Raw (uncompressed) |
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255 | 11 is Rle |
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256 | Note : using 01 => Huff0 with precomputed table ? |
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257 | Note : delta map ? => compressed ? |
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258 | |
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259 | 1.1.1) Huff0-compressed literal block : 3-5 bytes |
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260 | srcSize < 1 KB => 3 bytes (2-2-10-10) => single stream |
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261 | srcSize < 1 KB => 3 bytes (2-2-10-10) |
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262 | srcSize < 16KB => 4 bytes (2-2-14-14) |
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263 | else => 5 bytes (2-2-18-18) |
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264 | big endian convention |
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265 | |
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266 | 1.1.2) Raw (uncompressed) literal block header : 1-3 bytes |
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267 | size : 5 bits: (IS_RAW<<6) + (0<<4) + size |
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268 | 12 bits: (IS_RAW<<6) + (2<<4) + (size>>8) |
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269 | size&255 |
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270 | 20 bits: (IS_RAW<<6) + (3<<4) + (size>>16) |
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271 | size>>8&255 |
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272 | size&255 |
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273 | |
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274 | 1.1.3) Rle (repeated single byte) literal block header : 1-3 bytes |
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275 | size : 5 bits: (IS_RLE<<6) + (0<<4) + size |
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276 | 12 bits: (IS_RLE<<6) + (2<<4) + (size>>8) |
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277 | size&255 |
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278 | 20 bits: (IS_RLE<<6) + (3<<4) + (size>>16) |
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279 | size>>8&255 |
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280 | size&255 |
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281 | |
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282 | 1.1.4) Huff0-compressed literal block, using precomputed CTables : 3-5 bytes |
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283 | srcSize < 1 KB => 3 bytes (2-2-10-10) => single stream |
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284 | srcSize < 1 KB => 3 bytes (2-2-10-10) |
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285 | srcSize < 16KB => 4 bytes (2-2-14-14) |
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286 | else => 5 bytes (2-2-18-18) |
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287 | big endian convention |
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288 | |
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289 | 1- CTable available (stored into workspace ?) |
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290 | 2- Small input (fast heuristic ? Full comparison ? depend on clevel ?) |
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291 | |
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292 | |
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293 | 1.2) Literal block content |
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294 | |
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295 | 1.2.1) Huff0 block, using sizes from header |
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296 | See Huff0 format |
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297 | |
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298 | 1.2.2) Huff0 block, using prepared table |
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299 | |
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300 | 1.2.3) Raw content |
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301 | |
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302 | 1.2.4) single byte |
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303 | |
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304 | |
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305 | 2) Sequences section |
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306 | TO DO |
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307 | */ |
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308 | |
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309 | /** ZSTD_frameHeaderSize() : |
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310 | * srcSize must be >= ZSTD_frameHeaderSize_min. |
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311 | * @return : size of the Frame Header */ |
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312 | static size_t ZSTD_frameHeaderSize(const void* src, size_t srcSize) |
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313 | { |
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314 | if (srcSize < ZSTD_frameHeaderSize_min) return ERROR(srcSize_wrong); |
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315 | { BYTE const fhd = ((const BYTE*)src)[4]; |
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316 | U32 const dictID= fhd & 3; |
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317 | U32 const directMode = (fhd >> 5) & 1; |
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318 | U32 const fcsId = fhd >> 6; |
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319 | return ZSTD_frameHeaderSize_min + !directMode + ZSTD_did_fieldSize[dictID] + ZSTD_fcs_fieldSize[fcsId] |
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320 | + (directMode && !ZSTD_fcs_fieldSize[fcsId]); |
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321 | } |
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322 | } |
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323 | |
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324 | |
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325 | /** ZSTD_getFrameParams() : |
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326 | * decode Frame Header, or require larger `srcSize`. |
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327 | * @return : 0, `fparamsPtr` is correctly filled, |
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328 | * >0, `srcSize` is too small, result is expected `srcSize`, |
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329 | * or an error code, which can be tested using ZSTD_isError() */ |
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330 | size_t ZSTD_getFrameParams(ZSTD_frameParams* fparamsPtr, const void* src, size_t srcSize) |
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331 | { |
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332 | const BYTE* ip = (const BYTE*)src; |
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333 | |
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334 | if (srcSize < ZSTD_frameHeaderSize_min) return ZSTD_frameHeaderSize_min; |
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335 | if (MEM_readLE32(src) != ZSTD_MAGICNUMBER) { |
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336 | if ((MEM_readLE32(src) & 0xFFFFFFF0U) == ZSTD_MAGIC_SKIPPABLE_START) { |
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337 | if (srcSize < ZSTD_skippableHeaderSize) return ZSTD_skippableHeaderSize; /* magic number + skippable frame length */ |
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338 | memset(fparamsPtr, 0, sizeof(*fparamsPtr)); |
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339 | fparamsPtr->frameContentSize = MEM_readLE32((const char *)src + 4); |
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340 | fparamsPtr->windowSize = 0; /* windowSize==0 means a frame is skippable */ |
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341 | return 0; |
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342 | } |
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343 | return ERROR(prefix_unknown); |
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344 | } |
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345 | |
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346 | /* ensure there is enough `srcSize` to fully read/decode frame header */ |
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347 | { size_t const fhsize = ZSTD_frameHeaderSize(src, srcSize); |
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348 | if (srcSize < fhsize) return fhsize; } |
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349 | |
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350 | { BYTE const fhdByte = ip[4]; |
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351 | size_t pos = 5; |
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352 | U32 const dictIDSizeCode = fhdByte&3; |
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353 | U32 const checksumFlag = (fhdByte>>2)&1; |
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354 | U32 const directMode = (fhdByte>>5)&1; |
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355 | U32 const fcsID = fhdByte>>6; |
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356 | U32 const windowSizeMax = 1U << ZSTD_WINDOWLOG_MAX; |
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357 | U32 windowSize = 0; |
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358 | U32 dictID = 0; |
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359 | U64 frameContentSize = 0; |
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360 | if ((fhdByte & 0x08) != 0) return ERROR(frameParameter_unsupported); /* reserved bits, which must be zero */ |
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361 | if (!directMode) { |
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362 | BYTE const wlByte = ip[pos++]; |
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363 | U32 const windowLog = (wlByte >> 3) + ZSTD_WINDOWLOG_ABSOLUTEMIN; |
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364 | if (windowLog > ZSTD_WINDOWLOG_MAX) return ERROR(frameParameter_unsupported); |
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365 | windowSize = (1U << windowLog); |
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366 | windowSize += (windowSize >> 3) * (wlByte&7); |
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367 | } |
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368 | |
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369 | switch(dictIDSizeCode) |
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370 | { |
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371 | default: /* impossible */ |
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372 | case 0 : break; |
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373 | case 1 : dictID = ip[pos]; pos++; break; |
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374 | case 2 : dictID = MEM_readLE16(ip+pos); pos+=2; break; |
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375 | case 3 : dictID = MEM_readLE32(ip+pos); pos+=4; break; |
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376 | } |
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377 | switch(fcsID) |
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378 | { |
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379 | default: /* impossible */ |
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380 | case 0 : if (directMode) frameContentSize = ip[pos]; break; |
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381 | case 1 : frameContentSize = MEM_readLE16(ip+pos)+256; break; |
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382 | case 2 : frameContentSize = MEM_readLE32(ip+pos); break; |
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383 | case 3 : frameContentSize = MEM_readLE64(ip+pos); break; |
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384 | } |
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385 | if (!windowSize) windowSize = (U32)frameContentSize; |
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386 | if (windowSize > windowSizeMax) return ERROR(frameParameter_unsupported); |
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387 | fparamsPtr->frameContentSize = frameContentSize; |
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388 | fparamsPtr->windowSize = windowSize; |
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389 | fparamsPtr->dictID = dictID; |
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390 | fparamsPtr->checksumFlag = checksumFlag; |
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391 | } |
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392 | return 0; |
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393 | } |
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394 | |
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395 | |
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396 | /** ZSTD_getDecompressedSize() : |
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397 | * compatible with legacy mode |
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398 | * @return : decompressed size if known, 0 otherwise |
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399 | note : 0 can mean any of the following : |
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400 | - decompressed size is not provided within frame header |
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401 | - frame header unknown / not supported |
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402 | - frame header not completely provided (`srcSize` too small) */ |
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403 | unsigned long long ZSTD_getDecompressedSize(const void* src, size_t srcSize) |
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404 | { |
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405 | #if defined(ZSTD_LEGACY_SUPPORT) && (ZSTD_LEGACY_SUPPORT==1) |
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406 | if (ZSTD_isLegacy(src, srcSize)) return ZSTD_getDecompressedSize_legacy(src, srcSize); |
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407 | #endif |
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408 | { ZSTD_frameParams fparams; |
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409 | size_t const frResult = ZSTD_getFrameParams(&fparams, src, srcSize); |
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410 | if (frResult!=0) return 0; |
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411 | return fparams.frameContentSize; |
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412 | } |
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413 | } |
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414 | |
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415 | |
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416 | /** ZSTD_decodeFrameHeader() : |
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417 | * `srcSize` must be the size provided by ZSTD_frameHeaderSize(). |
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418 | * @return : 0 if success, or an error code, which can be tested using ZSTD_isError() */ |
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419 | static size_t ZSTD_decodeFrameHeader(ZSTD_DCtx* dctx, const void* src, size_t srcSize) |
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420 | { |
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421 | size_t const result = ZSTD_getFrameParams(&(dctx->fParams), src, srcSize); |
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422 | if (dctx->fParams.dictID && (dctx->dictID != dctx->fParams.dictID)) return ERROR(dictionary_wrong); |
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423 | if (dctx->fParams.checksumFlag) XXH64_reset(&dctx->xxhState, 0); |
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424 | return result; |
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425 | } |
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426 | |
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427 | |
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428 | typedef struct |
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429 | { |
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430 | blockType_t blockType; |
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431 | U32 origSize; |
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432 | } blockProperties_t; |
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433 | |
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434 | /*! ZSTD_getcBlockSize() : |
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435 | * Provides the size of compressed block from block header `src` */ |
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436 | size_t ZSTD_getcBlockSize(const void* src, size_t srcSize, blockProperties_t* bpPtr) |
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437 | { |
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438 | const BYTE* const in = (const BYTE* const)src; |
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439 | U32 cSize; |
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440 | |
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441 | if (srcSize < ZSTD_blockHeaderSize) return ERROR(srcSize_wrong); |
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442 | |
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443 | bpPtr->blockType = (blockType_t)((*in) >> 6); |
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444 | cSize = in[2] + (in[1]<<8) + ((in[0] & 7)<<16); |
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445 | bpPtr->origSize = (bpPtr->blockType == bt_rle) ? cSize : 0; |
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446 | |
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447 | if (bpPtr->blockType == bt_end) return 0; |
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448 | if (bpPtr->blockType == bt_rle) return 1; |
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449 | return cSize; |
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450 | } |
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451 | |
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452 | |
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453 | static size_t ZSTD_copyRawBlock(void* dst, size_t dstCapacity, const void* src, size_t srcSize) |
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454 | { |
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455 | if (srcSize > dstCapacity) return ERROR(dstSize_tooSmall); |
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456 | memcpy(dst, src, srcSize); |
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457 | return srcSize; |
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458 | } |
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459 | |
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460 | |
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461 | /*! ZSTD_decodeLiteralsBlock() : |
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462 | @return : nb of bytes read from src (< srcSize ) */ |
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463 | size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx, |
---|
464 | const void* src, size_t srcSize) /* note : srcSize < BLOCKSIZE */ |
---|
465 | { |
---|
466 | const BYTE* const istart = (const BYTE*) src; |
---|
467 | |
---|
468 | if (srcSize < MIN_CBLOCK_SIZE) return ERROR(corruption_detected); |
---|
469 | |
---|
470 | switch((litBlockType_t)(istart[0]>> 6)) |
---|
471 | { |
---|
472 | case lbt_huffman: |
---|
473 | { size_t litSize, litCSize, singleStream=0; |
---|
474 | U32 lhSize = (istart[0] >> 4) & 3; |
---|
475 | if (srcSize < 5) return ERROR(corruption_detected); /* srcSize >= MIN_CBLOCK_SIZE == 3; here we need up to 5 for lhSize, + cSize (+nbSeq) */ |
---|
476 | switch(lhSize) |
---|
477 | { |
---|
478 | case 0: case 1: default: /* note : default is impossible, since lhSize into [0..3] */ |
---|
479 | /* 2 - 2 - 10 - 10 */ |
---|
480 | lhSize=3; |
---|
481 | singleStream = istart[0] & 16; |
---|
482 | litSize = ((istart[0] & 15) << 6) + (istart[1] >> 2); |
---|
483 | litCSize = ((istart[1] & 3) << 8) + istart[2]; |
---|
484 | break; |
---|
485 | case 2: |
---|
486 | /* 2 - 2 - 14 - 14 */ |
---|
487 | lhSize=4; |
---|
488 | litSize = ((istart[0] & 15) << 10) + (istart[1] << 2) + (istart[2] >> 6); |
---|
489 | litCSize = ((istart[2] & 63) << 8) + istart[3]; |
---|
490 | break; |
---|
491 | case 3: |
---|
492 | /* 2 - 2 - 18 - 18 */ |
---|
493 | lhSize=5; |
---|
494 | litSize = ((istart[0] & 15) << 14) + (istart[1] << 6) + (istart[2] >> 2); |
---|
495 | litCSize = ((istart[2] & 3) << 16) + (istart[3] << 8) + istart[4]; |
---|
496 | break; |
---|
497 | } |
---|
498 | if (litSize > ZSTD_BLOCKSIZE_MAX) return ERROR(corruption_detected); |
---|
499 | if (litCSize + lhSize > srcSize) return ERROR(corruption_detected); |
---|
500 | |
---|
501 | if (HUF_isError(singleStream ? |
---|
502 | HUF_decompress1X2_DCtx(dctx->hufTable, dctx->litBuffer, litSize, istart+lhSize, litCSize) : |
---|
503 | HUF_decompress4X_hufOnly (dctx->hufTable, dctx->litBuffer, litSize, istart+lhSize, litCSize) )) |
---|
504 | return ERROR(corruption_detected); |
---|
505 | |
---|
506 | dctx->litPtr = dctx->litBuffer; |
---|
507 | dctx->litBufSize = ZSTD_BLOCKSIZE_MAX+8; |
---|
508 | dctx->litSize = litSize; |
---|
509 | dctx->litEntropy = 1; |
---|
510 | return litCSize + lhSize; |
---|
511 | } |
---|
512 | case lbt_repeat: |
---|
513 | { size_t litSize, litCSize; |
---|
514 | U32 lhSize = ((istart[0]) >> 4) & 3; |
---|
515 | if (lhSize != 1) /* only case supported for now : small litSize, single stream */ |
---|
516 | return ERROR(corruption_detected); |
---|
517 | if (dctx->litEntropy==0) |
---|
518 | return ERROR(dictionary_corrupted); |
---|
519 | |
---|
520 | /* 2 - 2 - 10 - 10 */ |
---|
521 | lhSize=3; |
---|
522 | litSize = ((istart[0] & 15) << 6) + (istart[1] >> 2); |
---|
523 | litCSize = ((istart[1] & 3) << 8) + istart[2]; |
---|
524 | if (litCSize + lhSize > srcSize) return ERROR(corruption_detected); |
---|
525 | |
---|
526 | { size_t const errorCode = HUF_decompress1X4_usingDTable(dctx->litBuffer, litSize, istart+lhSize, litCSize, dctx->hufTable); |
---|
527 | if (HUF_isError(errorCode)) return ERROR(corruption_detected); |
---|
528 | } |
---|
529 | dctx->litPtr = dctx->litBuffer; |
---|
530 | dctx->litBufSize = ZSTD_BLOCKSIZE_MAX+WILDCOPY_OVERLENGTH; |
---|
531 | dctx->litSize = litSize; |
---|
532 | return litCSize + lhSize; |
---|
533 | } |
---|
534 | case lbt_raw: |
---|
535 | { size_t litSize; |
---|
536 | U32 lhSize = ((istart[0]) >> 4) & 3; |
---|
537 | switch(lhSize) |
---|
538 | { |
---|
539 | case 0: case 1: default: /* note : default is impossible, since lhSize into [0..3] */ |
---|
540 | lhSize=1; |
---|
541 | litSize = istart[0] & 31; |
---|
542 | break; |
---|
543 | case 2: |
---|
544 | litSize = ((istart[0] & 15) << 8) + istart[1]; |
---|
545 | break; |
---|
546 | case 3: |
---|
547 | litSize = ((istart[0] & 15) << 16) + (istart[1] << 8) + istart[2]; |
---|
548 | break; |
---|
549 | } |
---|
550 | |
---|
551 | if (lhSize+litSize+WILDCOPY_OVERLENGTH > srcSize) { /* risk reading beyond src buffer with wildcopy */ |
---|
552 | if (litSize+lhSize > srcSize) return ERROR(corruption_detected); |
---|
553 | memcpy(dctx->litBuffer, istart+lhSize, litSize); |
---|
554 | dctx->litPtr = dctx->litBuffer; |
---|
555 | dctx->litBufSize = ZSTD_BLOCKSIZE_MAX+8; |
---|
556 | dctx->litSize = litSize; |
---|
557 | return lhSize+litSize; |
---|
558 | } |
---|
559 | /* direct reference into compressed stream */ |
---|
560 | dctx->litPtr = istart+lhSize; |
---|
561 | dctx->litBufSize = srcSize-lhSize; |
---|
562 | dctx->litSize = litSize; |
---|
563 | return lhSize+litSize; |
---|
564 | } |
---|
565 | case lbt_rle: |
---|
566 | { size_t litSize; |
---|
567 | U32 lhSize = ((istart[0]) >> 4) & 3; |
---|
568 | switch(lhSize) |
---|
569 | { |
---|
570 | case 0: case 1: default: /* note : default is impossible, since lhSize into [0..3] */ |
---|
571 | lhSize = 1; |
---|
572 | litSize = istart[0] & 31; |
---|
573 | break; |
---|
574 | case 2: |
---|
575 | litSize = ((istart[0] & 15) << 8) + istart[1]; |
---|
576 | break; |
---|
577 | case 3: |
---|
578 | litSize = ((istart[0] & 15) << 16) + (istart[1] << 8) + istart[2]; |
---|
579 | if (srcSize<4) return ERROR(corruption_detected); /* srcSize >= MIN_CBLOCK_SIZE == 3; here we need lhSize+1 = 4 */ |
---|
580 | break; |
---|
581 | } |
---|
582 | if (litSize > ZSTD_BLOCKSIZE_MAX) return ERROR(corruption_detected); |
---|
583 | memset(dctx->litBuffer, istart[lhSize], litSize); |
---|
584 | dctx->litPtr = dctx->litBuffer; |
---|
585 | dctx->litBufSize = ZSTD_BLOCKSIZE_MAX+WILDCOPY_OVERLENGTH; |
---|
586 | dctx->litSize = litSize; |
---|
587 | return lhSize+1; |
---|
588 | } |
---|
589 | default: |
---|
590 | return ERROR(corruption_detected); /* impossible */ |
---|
591 | } |
---|
592 | } |
---|
593 | |
---|
594 | |
---|
595 | /*! ZSTD_buildSeqTable() : |
---|
596 | @return : nb bytes read from src, |
---|
597 | or an error code if it fails, testable with ZSTD_isError() |
---|
598 | */ |
---|
599 | FORCE_INLINE size_t ZSTD_buildSeqTable(FSE_DTable* DTable, U32 type, U32 max, U32 maxLog, |
---|
600 | const void* src, size_t srcSize, |
---|
601 | const S16* defaultNorm, U32 defaultLog, U32 flagRepeatTable) |
---|
602 | { |
---|
603 | switch(type) |
---|
604 | { |
---|
605 | case FSE_ENCODING_RLE : |
---|
606 | if (!srcSize) return ERROR(srcSize_wrong); |
---|
607 | if ( (*(const BYTE*)src) > max) return ERROR(corruption_detected); |
---|
608 | FSE_buildDTable_rle(DTable, *(const BYTE*)src); /* if *src > max, data is corrupted */ |
---|
609 | return 1; |
---|
610 | case FSE_ENCODING_RAW : |
---|
611 | FSE_buildDTable(DTable, defaultNorm, max, defaultLog); |
---|
612 | return 0; |
---|
613 | case FSE_ENCODING_STATIC: |
---|
614 | if (!flagRepeatTable) return ERROR(corruption_detected); |
---|
615 | return 0; |
---|
616 | default : /* impossible */ |
---|
617 | case FSE_ENCODING_DYNAMIC : |
---|
618 | { U32 tableLog; |
---|
619 | S16 norm[MaxSeq+1]; |
---|
620 | size_t const headerSize = FSE_readNCount(norm, &max, &tableLog, src, srcSize); |
---|
621 | if (FSE_isError(headerSize)) return ERROR(corruption_detected); |
---|
622 | if (tableLog > maxLog) return ERROR(corruption_detected); |
---|
623 | FSE_buildDTable(DTable, norm, max, tableLog); |
---|
624 | return headerSize; |
---|
625 | } } |
---|
626 | } |
---|
627 | |
---|
628 | |
---|
629 | size_t ZSTD_decodeSeqHeaders(int* nbSeqPtr, |
---|
630 | FSE_DTable* DTableLL, FSE_DTable* DTableML, FSE_DTable* DTableOffb, U32 flagRepeatTable, |
---|
631 | const void* src, size_t srcSize) |
---|
632 | { |
---|
633 | const BYTE* const istart = (const BYTE* const)src; |
---|
634 | const BYTE* const iend = istart + srcSize; |
---|
635 | const BYTE* ip = istart; |
---|
636 | |
---|
637 | /* check */ |
---|
638 | if (srcSize < MIN_SEQUENCES_SIZE) return ERROR(srcSize_wrong); |
---|
639 | |
---|
640 | /* SeqHead */ |
---|
641 | { int nbSeq = *ip++; |
---|
642 | if (!nbSeq) { *nbSeqPtr=0; return 1; } |
---|
643 | if (nbSeq > 0x7F) { |
---|
644 | if (nbSeq == 0xFF) |
---|
645 | nbSeq = MEM_readLE16(ip) + LONGNBSEQ, ip+=2; |
---|
646 | else |
---|
647 | nbSeq = ((nbSeq-0x80)<<8) + *ip++; |
---|
648 | } |
---|
649 | *nbSeqPtr = nbSeq; |
---|
650 | } |
---|
651 | |
---|
652 | /* FSE table descriptors */ |
---|
653 | { U32 const LLtype = *ip >> 6; |
---|
654 | U32 const OFtype = (*ip >> 4) & 3; |
---|
655 | U32 const MLtype = (*ip >> 2) & 3; |
---|
656 | ip++; |
---|
657 | |
---|
658 | /* check */ |
---|
659 | if (ip > iend-3) return ERROR(srcSize_wrong); /* min : all 3 are "raw", hence no header, but at least xxLog bits per type */ |
---|
660 | |
---|
661 | /* Build DTables */ |
---|
662 | { size_t const llhSize = ZSTD_buildSeqTable(DTableLL, LLtype, MaxLL, LLFSELog, ip, iend-ip, LL_defaultNorm, LL_defaultNormLog, flagRepeatTable); |
---|
663 | if (ZSTD_isError(llhSize)) return ERROR(corruption_detected); |
---|
664 | ip += llhSize; |
---|
665 | } |
---|
666 | { size_t const ofhSize = ZSTD_buildSeqTable(DTableOffb, OFtype, MaxOff, OffFSELog, ip, iend-ip, OF_defaultNorm, OF_defaultNormLog, flagRepeatTable); |
---|
667 | if (ZSTD_isError(ofhSize)) return ERROR(corruption_detected); |
---|
668 | ip += ofhSize; |
---|
669 | } |
---|
670 | { size_t const mlhSize = ZSTD_buildSeqTable(DTableML, MLtype, MaxML, MLFSELog, ip, iend-ip, ML_defaultNorm, ML_defaultNormLog, flagRepeatTable); |
---|
671 | if (ZSTD_isError(mlhSize)) return ERROR(corruption_detected); |
---|
672 | ip += mlhSize; |
---|
673 | } } |
---|
674 | |
---|
675 | return ip-istart; |
---|
676 | } |
---|
677 | |
---|
678 | |
---|
679 | typedef struct { |
---|
680 | size_t litLength; |
---|
681 | size_t matchLength; |
---|
682 | size_t offset; |
---|
683 | } seq_t; |
---|
684 | |
---|
685 | typedef struct { |
---|
686 | BIT_DStream_t DStream; |
---|
687 | FSE_DState_t stateLL; |
---|
688 | FSE_DState_t stateOffb; |
---|
689 | FSE_DState_t stateML; |
---|
690 | size_t prevOffset[ZSTD_REP_INIT]; |
---|
691 | } seqState_t; |
---|
692 | |
---|
693 | |
---|
694 | static seq_t ZSTD_decodeSequence(seqState_t* seqState) |
---|
695 | { |
---|
696 | seq_t seq; |
---|
697 | |
---|
698 | U32 const llCode = FSE_peekSymbol(&(seqState->stateLL)); |
---|
699 | U32 const mlCode = FSE_peekSymbol(&(seqState->stateML)); |
---|
700 | U32 const ofCode = FSE_peekSymbol(&(seqState->stateOffb)); /* <= maxOff, by table construction */ |
---|
701 | |
---|
702 | U32 const llBits = LL_bits[llCode]; |
---|
703 | U32 const mlBits = ML_bits[mlCode]; |
---|
704 | U32 const ofBits = ofCode; |
---|
705 | U32 const totalBits = llBits+mlBits+ofBits; |
---|
706 | |
---|
707 | static const U32 LL_base[MaxLL+1] = { |
---|
708 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, |
---|
709 | 16, 18, 20, 22, 24, 28, 32, 40, 48, 64, 0x80, 0x100, 0x200, 0x400, 0x800, 0x1000, |
---|
710 | 0x2000, 0x4000, 0x8000, 0x10000 }; |
---|
711 | |
---|
712 | static const U32 ML_base[MaxML+1] = { |
---|
713 | 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, |
---|
714 | 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, |
---|
715 | 35, 37, 39, 41, 43, 47, 51, 59, 67, 83, 99, 0x83, 0x103, 0x203, 0x403, 0x803, |
---|
716 | 0x1003, 0x2003, 0x4003, 0x8003, 0x10003 }; |
---|
717 | |
---|
718 | static const U32 OF_base[MaxOff+1] = { |
---|
719 | 0, 1, 1, 5, 0xD, 0x1D, 0x3D, 0x7D, |
---|
720 | 0xFD, 0x1FD, 0x3FD, 0x7FD, 0xFFD, 0x1FFD, 0x3FFD, 0x7FFD, |
---|
721 | 0xFFFD, 0x1FFFD, 0x3FFFD, 0x7FFFD, 0xFFFFD, 0x1FFFFD, 0x3FFFFD, 0x7FFFFD, |
---|
722 | 0xFFFFFD, 0x1FFFFFD, 0x3FFFFFD, 0x7FFFFFD, 0xFFFFFFD }; |
---|
723 | |
---|
724 | /* sequence */ |
---|
725 | { size_t offset; |
---|
726 | if (!ofCode) |
---|
727 | offset = 0; |
---|
728 | else { |
---|
729 | offset = OF_base[ofCode] + BIT_readBits(&(seqState->DStream), ofBits); /* <= (ZSTD_WINDOWLOG_MAX-1) bits */ |
---|
730 | if (MEM_32bits()) BIT_reloadDStream(&(seqState->DStream)); |
---|
731 | } |
---|
732 | |
---|
733 | if (ofCode <= 1) { |
---|
734 | if ((llCode == 0) & (offset <= 1)) offset = 1-offset; |
---|
735 | if (offset) { |
---|
736 | size_t const temp = seqState->prevOffset[offset]; |
---|
737 | if (offset != 1) seqState->prevOffset[2] = seqState->prevOffset[1]; |
---|
738 | seqState->prevOffset[1] = seqState->prevOffset[0]; |
---|
739 | seqState->prevOffset[0] = offset = temp; |
---|
740 | } else { |
---|
741 | offset = seqState->prevOffset[0]; |
---|
742 | } |
---|
743 | } else { |
---|
744 | seqState->prevOffset[2] = seqState->prevOffset[1]; |
---|
745 | seqState->prevOffset[1] = seqState->prevOffset[0]; |
---|
746 | seqState->prevOffset[0] = offset; |
---|
747 | } |
---|
748 | seq.offset = offset; |
---|
749 | } |
---|
750 | |
---|
751 | seq.matchLength = ML_base[mlCode] + ((mlCode>31) ? BIT_readBits(&(seqState->DStream), mlBits) : 0); /* <= 16 bits */ |
---|
752 | if (MEM_32bits() && (mlBits+llBits>24)) BIT_reloadDStream(&(seqState->DStream)); |
---|
753 | |
---|
754 | seq.litLength = LL_base[llCode] + ((llCode>15) ? BIT_readBits(&(seqState->DStream), llBits) : 0); /* <= 16 bits */ |
---|
755 | if (MEM_32bits() || |
---|
756 | (totalBits > 64 - 7 - (LLFSELog+MLFSELog+OffFSELog)) ) BIT_reloadDStream(&(seqState->DStream)); |
---|
757 | |
---|
758 | /* ANS state update */ |
---|
759 | FSE_updateState(&(seqState->stateLL), &(seqState->DStream)); /* <= 9 bits */ |
---|
760 | FSE_updateState(&(seqState->stateML), &(seqState->DStream)); /* <= 9 bits */ |
---|
761 | if (MEM_32bits()) BIT_reloadDStream(&(seqState->DStream)); /* <= 18 bits */ |
---|
762 | FSE_updateState(&(seqState->stateOffb), &(seqState->DStream)); /* <= 8 bits */ |
---|
763 | |
---|
764 | return seq; |
---|
765 | } |
---|
766 | |
---|
767 | |
---|
768 | FORCE_INLINE |
---|
769 | size_t ZSTD_execSequence(BYTE* op, |
---|
770 | BYTE* const oend, seq_t sequence, |
---|
771 | const BYTE** litPtr, const BYTE* const litLimit_w, |
---|
772 | const BYTE* const base, const BYTE* const vBase, const BYTE* const dictEnd) |
---|
773 | { |
---|
774 | BYTE* const oLitEnd = op + sequence.litLength; |
---|
775 | size_t const sequenceLength = sequence.litLength + sequence.matchLength; |
---|
776 | BYTE* const oMatchEnd = op + sequenceLength; /* risk : address space overflow (32-bits) */ |
---|
777 | BYTE* const oend_w = oend-WILDCOPY_OVERLENGTH; |
---|
778 | const BYTE* const iLitEnd = *litPtr + sequence.litLength; |
---|
779 | const BYTE* match = oLitEnd - sequence.offset; |
---|
780 | |
---|
781 | /* check */ |
---|
782 | if ((oLitEnd>oend_w) | (oMatchEnd>oend)) return ERROR(dstSize_tooSmall); /* last match must start at a minimum distance of WILDCOPY_OVERLENGTH from oend */ |
---|
783 | if (iLitEnd > litLimit_w) return ERROR(corruption_detected); /* over-read beyond lit buffer */ |
---|
784 | |
---|
785 | /* copy Literals */ |
---|
786 | ZSTD_wildcopy(op, *litPtr, sequence.litLength); /* note : since oLitEnd <= oend-WILDCOPY_OVERLENGTH, no risk of overwrite beyond oend */ |
---|
787 | op = oLitEnd; |
---|
788 | *litPtr = iLitEnd; /* update for next sequence */ |
---|
789 | |
---|
790 | /* copy Match */ |
---|
791 | if (sequence.offset > (size_t)(oLitEnd - base)) { |
---|
792 | /* offset beyond prefix */ |
---|
793 | if (sequence.offset > (size_t)(oLitEnd - vBase)) return ERROR(corruption_detected); |
---|
794 | match = dictEnd - (base-match); |
---|
795 | if (match + sequence.matchLength <= dictEnd) { |
---|
796 | memmove(oLitEnd, match, sequence.matchLength); |
---|
797 | return sequenceLength; |
---|
798 | } |
---|
799 | /* span extDict & currentPrefixSegment */ |
---|
800 | { size_t const length1 = dictEnd - match; |
---|
801 | memmove(oLitEnd, match, length1); |
---|
802 | op = oLitEnd + length1; |
---|
803 | sequence.matchLength -= length1; |
---|
804 | match = base; |
---|
805 | } } |
---|
806 | |
---|
807 | /* match within prefix */ |
---|
808 | if (sequence.offset < 8) { |
---|
809 | /* close range match, overlap */ |
---|
810 | static const U32 dec32table[] = { 0, 1, 2, 1, 4, 4, 4, 4 }; /* added */ |
---|
811 | static const int dec64table[] = { 8, 8, 8, 7, 8, 9,10,11 }; /* substracted */ |
---|
812 | int const sub2 = dec64table[sequence.offset]; |
---|
813 | op[0] = match[0]; |
---|
814 | op[1] = match[1]; |
---|
815 | op[2] = match[2]; |
---|
816 | op[3] = match[3]; |
---|
817 | match += dec32table[sequence.offset]; |
---|
818 | ZSTD_copy4(op+4, match); |
---|
819 | match -= sub2; |
---|
820 | } else { |
---|
821 | ZSTD_copy8(op, match); |
---|
822 | } |
---|
823 | op += 8; match += 8; |
---|
824 | |
---|
825 | if (oMatchEnd > oend-(16-MINMATCH)) { |
---|
826 | if (op < oend_w) { |
---|
827 | ZSTD_wildcopy(op, match, oend_w - op); |
---|
828 | match += oend_w - op; |
---|
829 | op = oend_w; |
---|
830 | } |
---|
831 | while (op < oMatchEnd) *op++ = *match++; |
---|
832 | } else { |
---|
833 | ZSTD_wildcopy(op, match, sequence.matchLength-8); /* works even if matchLength < 8 */ |
---|
834 | } |
---|
835 | return sequenceLength; |
---|
836 | } |
---|
837 | |
---|
838 | |
---|
839 | static size_t ZSTD_decompressSequences( |
---|
840 | ZSTD_DCtx* dctx, |
---|
841 | void* dst, size_t maxDstSize, |
---|
842 | const void* seqStart, size_t seqSize) |
---|
843 | { |
---|
844 | const BYTE* ip = (const BYTE*)seqStart; |
---|
845 | const BYTE* const iend = ip + seqSize; |
---|
846 | BYTE* const ostart = (BYTE* const)dst; |
---|
847 | BYTE* const oend = ostart + maxDstSize; |
---|
848 | BYTE* op = ostart; |
---|
849 | const BYTE* litPtr = dctx->litPtr; |
---|
850 | const BYTE* const litLimit_w = litPtr + dctx->litBufSize - WILDCOPY_OVERLENGTH; |
---|
851 | const BYTE* const litEnd = litPtr + dctx->litSize; |
---|
852 | FSE_DTable* DTableLL = dctx->LLTable; |
---|
853 | FSE_DTable* DTableML = dctx->MLTable; |
---|
854 | FSE_DTable* DTableOffb = dctx->OffTable; |
---|
855 | const BYTE* const base = (const BYTE*) (dctx->base); |
---|
856 | const BYTE* const vBase = (const BYTE*) (dctx->vBase); |
---|
857 | const BYTE* const dictEnd = (const BYTE*) (dctx->dictEnd); |
---|
858 | int nbSeq; |
---|
859 | |
---|
860 | /* Build Decoding Tables */ |
---|
861 | { size_t const seqHSize = ZSTD_decodeSeqHeaders(&nbSeq, DTableLL, DTableML, DTableOffb, dctx->fseEntropy, ip, seqSize); |
---|
862 | if (ZSTD_isError(seqHSize)) return seqHSize; |
---|
863 | ip += seqHSize; |
---|
864 | } |
---|
865 | |
---|
866 | /* Regen sequences */ |
---|
867 | if (nbSeq) { |
---|
868 | seqState_t seqState; |
---|
869 | dctx->fseEntropy = 1; |
---|
870 | { U32 i; for (i=0; i<ZSTD_REP_INIT; i++) seqState.prevOffset[i] = dctx->rep[i]; } |
---|
871 | { size_t const errorCode = BIT_initDStream(&(seqState.DStream), ip, iend-ip); |
---|
872 | if (ERR_isError(errorCode)) return ERROR(corruption_detected); } |
---|
873 | FSE_initDState(&(seqState.stateLL), &(seqState.DStream), DTableLL); |
---|
874 | FSE_initDState(&(seqState.stateOffb), &(seqState.DStream), DTableOffb); |
---|
875 | FSE_initDState(&(seqState.stateML), &(seqState.DStream), DTableML); |
---|
876 | |
---|
877 | for ( ; (BIT_reloadDStream(&(seqState.DStream)) <= BIT_DStream_completed) && nbSeq ; ) { |
---|
878 | nbSeq--; |
---|
879 | { seq_t const sequence = ZSTD_decodeSequence(&seqState); |
---|
880 | size_t const oneSeqSize = ZSTD_execSequence(op, oend, sequence, &litPtr, litLimit_w, base, vBase, dictEnd); |
---|
881 | if (ZSTD_isError(oneSeqSize)) return oneSeqSize; |
---|
882 | op += oneSeqSize; |
---|
883 | } } |
---|
884 | |
---|
885 | /* check if reached exact end */ |
---|
886 | if (nbSeq) return ERROR(corruption_detected); |
---|
887 | /* save reps for next block */ |
---|
888 | { U32 i; for (i=0; i<ZSTD_REP_INIT; i++) dctx->rep[i] = (U32)(seqState.prevOffset[i]); } |
---|
889 | } |
---|
890 | |
---|
891 | /* last literal segment */ |
---|
892 | { size_t const lastLLSize = litEnd - litPtr; |
---|
893 | //if (litPtr > litEnd) return ERROR(corruption_detected); /* too many literals already used */ |
---|
894 | if (lastLLSize > (size_t)(oend-op)) return ERROR(dstSize_tooSmall); |
---|
895 | memcpy(op, litPtr, lastLLSize); |
---|
896 | op += lastLLSize; |
---|
897 | } |
---|
898 | |
---|
899 | return op-ostart; |
---|
900 | } |
---|
901 | |
---|
902 | |
---|
903 | static void ZSTD_checkContinuity(ZSTD_DCtx* dctx, const void* dst) |
---|
904 | { |
---|
905 | if (dst != dctx->previousDstEnd) { /* not contiguous */ |
---|
906 | dctx->dictEnd = dctx->previousDstEnd; |
---|
907 | dctx->vBase = (const char*)dst - ((const char*)(dctx->previousDstEnd) - (const char*)(dctx->base)); |
---|
908 | dctx->base = dst; |
---|
909 | dctx->previousDstEnd = dst; |
---|
910 | } |
---|
911 | } |
---|
912 | |
---|
913 | |
---|
914 | static size_t ZSTD_decompressBlock_internal(ZSTD_DCtx* dctx, |
---|
915 | void* dst, size_t dstCapacity, |
---|
916 | const void* src, size_t srcSize) |
---|
917 | { /* blockType == blockCompressed */ |
---|
918 | const BYTE* ip = (const BYTE*)src; |
---|
919 | |
---|
920 | if (srcSize >= ZSTD_BLOCKSIZE_MAX) return ERROR(srcSize_wrong); |
---|
921 | |
---|
922 | /* Decode literals sub-block */ |
---|
923 | { size_t const litCSize = ZSTD_decodeLiteralsBlock(dctx, src, srcSize); |
---|
924 | if (ZSTD_isError(litCSize)) return litCSize; |
---|
925 | ip += litCSize; |
---|
926 | srcSize -= litCSize; |
---|
927 | } |
---|
928 | return ZSTD_decompressSequences(dctx, dst, dstCapacity, ip, srcSize); |
---|
929 | } |
---|
930 | |
---|
931 | |
---|
932 | size_t ZSTD_decompressBlock(ZSTD_DCtx* dctx, |
---|
933 | void* dst, size_t dstCapacity, |
---|
934 | const void* src, size_t srcSize) |
---|
935 | { |
---|
936 | size_t dSize; |
---|
937 | ZSTD_checkContinuity(dctx, dst); |
---|
938 | dSize = ZSTD_decompressBlock_internal(dctx, dst, dstCapacity, src, srcSize); |
---|
939 | dctx->previousDstEnd = (char*)dst + dSize; |
---|
940 | return dSize; |
---|
941 | } |
---|
942 | |
---|
943 | |
---|
944 | /** ZSTD_insertBlock() : |
---|
945 | insert `src` block into `dctx` history. Useful to track uncompressed blocks. */ |
---|
946 | ZSTDLIB_API size_t ZSTD_insertBlock(ZSTD_DCtx* dctx, const void* blockStart, size_t blockSize) |
---|
947 | { |
---|
948 | ZSTD_checkContinuity(dctx, blockStart); |
---|
949 | dctx->previousDstEnd = (const char*)blockStart + blockSize; |
---|
950 | return blockSize; |
---|
951 | } |
---|
952 | |
---|
953 | |
---|
954 | size_t ZSTD_generateNxBytes(void* dst, size_t dstCapacity, BYTE byte, size_t length) |
---|
955 | { |
---|
956 | if (length > dstCapacity) return ERROR(dstSize_tooSmall); |
---|
957 | memset(dst, byte, length); |
---|
958 | return length; |
---|
959 | } |
---|
960 | |
---|
961 | |
---|
962 | /*! ZSTD_decompressFrame() : |
---|
963 | * `dctx` must be properly initialized */ |
---|
964 | static size_t ZSTD_decompressFrame(ZSTD_DCtx* dctx, |
---|
965 | void* dst, size_t dstCapacity, |
---|
966 | const void* src, size_t srcSize) |
---|
967 | { |
---|
968 | const BYTE* ip = (const BYTE*)src; |
---|
969 | const BYTE* const iend = ip + srcSize; |
---|
970 | BYTE* const ostart = (BYTE* const)dst; |
---|
971 | BYTE* const oend = ostart + dstCapacity; |
---|
972 | BYTE* op = ostart; |
---|
973 | size_t remainingSize = srcSize; |
---|
974 | |
---|
975 | /* check */ |
---|
976 | if (srcSize < ZSTD_frameHeaderSize_min+ZSTD_blockHeaderSize) return ERROR(srcSize_wrong); |
---|
977 | |
---|
978 | /* Frame Header */ |
---|
979 | { size_t const frameHeaderSize = ZSTD_frameHeaderSize(src, ZSTD_frameHeaderSize_min); |
---|
980 | if (ZSTD_isError(frameHeaderSize)) return frameHeaderSize; |
---|
981 | if (srcSize < frameHeaderSize+ZSTD_blockHeaderSize) return ERROR(srcSize_wrong); |
---|
982 | if (ZSTD_decodeFrameHeader(dctx, src, frameHeaderSize)) return ERROR(corruption_detected); |
---|
983 | ip += frameHeaderSize; remainingSize -= frameHeaderSize; |
---|
984 | } |
---|
985 | |
---|
986 | /* Loop on each block */ |
---|
987 | while (1) { |
---|
988 | size_t decodedSize; |
---|
989 | blockProperties_t blockProperties; |
---|
990 | size_t const cBlockSize = ZSTD_getcBlockSize(ip, iend-ip, &blockProperties); |
---|
991 | if (ZSTD_isError(cBlockSize)) return cBlockSize; |
---|
992 | |
---|
993 | ip += ZSTD_blockHeaderSize; |
---|
994 | remainingSize -= ZSTD_blockHeaderSize; |
---|
995 | if (cBlockSize > remainingSize) return ERROR(srcSize_wrong); |
---|
996 | |
---|
997 | switch(blockProperties.blockType) |
---|
998 | { |
---|
999 | case bt_compressed: |
---|
1000 | decodedSize = ZSTD_decompressBlock_internal(dctx, op, oend-op, ip, cBlockSize); |
---|
1001 | break; |
---|
1002 | case bt_raw : |
---|
1003 | decodedSize = ZSTD_copyRawBlock(op, oend-op, ip, cBlockSize); |
---|
1004 | break; |
---|
1005 | case bt_rle : |
---|
1006 | decodedSize = ZSTD_generateNxBytes(op, oend-op, *ip, blockProperties.origSize); |
---|
1007 | break; |
---|
1008 | case bt_end : |
---|
1009 | /* end of frame */ |
---|
1010 | if (remainingSize) return ERROR(srcSize_wrong); |
---|
1011 | decodedSize = 0; |
---|
1012 | break; |
---|
1013 | default: |
---|
1014 | return ERROR(GENERIC); /* impossible */ |
---|
1015 | } |
---|
1016 | if (cBlockSize == 0) break; /* bt_end */ |
---|
1017 | |
---|
1018 | if (ZSTD_isError(decodedSize)) return decodedSize; |
---|
1019 | if (dctx->fParams.checksumFlag) XXH64_update(&dctx->xxhState, op, decodedSize); |
---|
1020 | op += decodedSize; |
---|
1021 | ip += cBlockSize; |
---|
1022 | remainingSize -= cBlockSize; |
---|
1023 | } |
---|
1024 | |
---|
1025 | return op-ostart; |
---|
1026 | } |
---|
1027 | |
---|
1028 | |
---|
1029 | /*! ZSTD_decompress_usingPreparedDCtx() : |
---|
1030 | * Same as ZSTD_decompress_usingDict, but using a reference context `preparedDCtx`, where dictionary has been loaded. |
---|
1031 | * It avoids reloading the dictionary each time. |
---|
1032 | * `preparedDCtx` must have been properly initialized using ZSTD_decompressBegin_usingDict(). |
---|
1033 | * Requires 2 contexts : 1 for reference (preparedDCtx), which will not be modified, and 1 to run the decompression operation (dctx) */ |
---|
1034 | size_t ZSTD_decompress_usingPreparedDCtx(ZSTD_DCtx* dctx, const ZSTD_DCtx* refDCtx, |
---|
1035 | void* dst, size_t dstCapacity, |
---|
1036 | const void* src, size_t srcSize) |
---|
1037 | { |
---|
1038 | ZSTD_copyDCtx(dctx, refDCtx); |
---|
1039 | ZSTD_checkContinuity(dctx, dst); |
---|
1040 | return ZSTD_decompressFrame(dctx, dst, dstCapacity, src, srcSize); |
---|
1041 | } |
---|
1042 | |
---|
1043 | |
---|
1044 | size_t ZSTD_decompress_usingDict(ZSTD_DCtx* dctx, |
---|
1045 | void* dst, size_t dstCapacity, |
---|
1046 | const void* src, size_t srcSize, |
---|
1047 | const void* dict, size_t dictSize) |
---|
1048 | { |
---|
1049 | #if defined(ZSTD_LEGACY_SUPPORT) && (ZSTD_LEGACY_SUPPORT==1) |
---|
1050 | if (ZSTD_isLegacy(src, srcSize)) return ZSTD_decompressLegacy(dst, dstCapacity, src, srcSize, dict, dictSize); |
---|
1051 | #endif |
---|
1052 | ZSTD_decompressBegin_usingDict(dctx, dict, dictSize); |
---|
1053 | ZSTD_checkContinuity(dctx, dst); |
---|
1054 | return ZSTD_decompressFrame(dctx, dst, dstCapacity, src, srcSize); |
---|
1055 | } |
---|
1056 | |
---|
1057 | |
---|
1058 | size_t ZSTD_decompressDCtx(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, const void* src, size_t srcSize) |
---|
1059 | { |
---|
1060 | return ZSTD_decompress_usingDict(dctx, dst, dstCapacity, src, srcSize, NULL, 0); |
---|
1061 | } |
---|
1062 | |
---|
1063 | |
---|
1064 | size_t ZSTD_decompress(void* dst, size_t dstCapacity, const void* src, size_t srcSize) |
---|
1065 | { |
---|
1066 | #if defined(ZSTD_HEAPMODE) && (ZSTD_HEAPMODE==1) |
---|
1067 | size_t regenSize; |
---|
1068 | ZSTD_DCtx* const dctx = ZSTD_createDCtx(); |
---|
1069 | if (dctx==NULL) return ERROR(memory_allocation); |
---|
1070 | regenSize = ZSTD_decompressDCtx(dctx, dst, dstCapacity, src, srcSize); |
---|
1071 | ZSTD_freeDCtx(dctx); |
---|
1072 | return regenSize; |
---|
1073 | #else /* stack mode */ |
---|
1074 | ZSTD_DCtx dctx; |
---|
1075 | return ZSTD_decompressDCtx(&dctx, dst, dstCapacity, src, srcSize); |
---|
1076 | #endif |
---|
1077 | } |
---|
1078 | |
---|
1079 | |
---|
1080 | /*_****************************** |
---|
1081 | * Streaming Decompression API |
---|
1082 | ********************************/ |
---|
1083 | size_t ZSTD_nextSrcSizeToDecompress(ZSTD_DCtx* dctx) |
---|
1084 | { |
---|
1085 | return dctx->expected; |
---|
1086 | } |
---|
1087 | |
---|
1088 | int ZSTD_isSkipFrame(ZSTD_DCtx* dctx) |
---|
1089 | { |
---|
1090 | return dctx->stage == ZSTDds_skipFrame; |
---|
1091 | } |
---|
1092 | |
---|
1093 | /** ZSTD_decompressContinue() : |
---|
1094 | * @return : nb of bytes generated into `dst` (necessarily <= `dstCapacity) |
---|
1095 | * or an error code, which can be tested using ZSTD_isError() */ |
---|
1096 | size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, const void* src, size_t srcSize) |
---|
1097 | { |
---|
1098 | /* Sanity check */ |
---|
1099 | if (srcSize != dctx->expected) return ERROR(srcSize_wrong); |
---|
1100 | if (dstCapacity) ZSTD_checkContinuity(dctx, dst); |
---|
1101 | |
---|
1102 | switch (dctx->stage) |
---|
1103 | { |
---|
1104 | case ZSTDds_getFrameHeaderSize : |
---|
1105 | if (srcSize != ZSTD_frameHeaderSize_min) return ERROR(srcSize_wrong); /* impossible */ |
---|
1106 | if ((MEM_readLE32(src) & 0xFFFFFFF0U) == ZSTD_MAGIC_SKIPPABLE_START) { |
---|
1107 | memcpy(dctx->headerBuffer, src, ZSTD_frameHeaderSize_min); |
---|
1108 | dctx->expected = ZSTD_skippableHeaderSize - ZSTD_frameHeaderSize_min; /* magic number + skippable frame length */ |
---|
1109 | dctx->stage = ZSTDds_decodeSkippableHeader; |
---|
1110 | return 0; |
---|
1111 | } |
---|
1112 | dctx->headerSize = ZSTD_frameHeaderSize(src, ZSTD_frameHeaderSize_min); |
---|
1113 | if (ZSTD_isError(dctx->headerSize)) return dctx->headerSize; |
---|
1114 | memcpy(dctx->headerBuffer, src, ZSTD_frameHeaderSize_min); |
---|
1115 | if (dctx->headerSize > ZSTD_frameHeaderSize_min) { |
---|
1116 | dctx->expected = dctx->headerSize - ZSTD_frameHeaderSize_min; |
---|
1117 | dctx->stage = ZSTDds_decodeFrameHeader; |
---|
1118 | return 0; |
---|
1119 | } |
---|
1120 | dctx->expected = 0; /* not necessary to copy more */ |
---|
1121 | |
---|
1122 | case ZSTDds_decodeFrameHeader: |
---|
1123 | { size_t result; |
---|
1124 | memcpy(dctx->headerBuffer + ZSTD_frameHeaderSize_min, src, dctx->expected); |
---|
1125 | result = ZSTD_decodeFrameHeader(dctx, dctx->headerBuffer, dctx->headerSize); |
---|
1126 | if (ZSTD_isError(result)) return result; |
---|
1127 | dctx->expected = ZSTD_blockHeaderSize; |
---|
1128 | dctx->stage = ZSTDds_decodeBlockHeader; |
---|
1129 | return 0; |
---|
1130 | } |
---|
1131 | case ZSTDds_decodeBlockHeader: |
---|
1132 | { blockProperties_t bp; |
---|
1133 | size_t const cBlockSize = ZSTD_getcBlockSize(src, ZSTD_blockHeaderSize, &bp); |
---|
1134 | if (ZSTD_isError(cBlockSize)) return cBlockSize; |
---|
1135 | if (bp.blockType == bt_end) { |
---|
1136 | if (dctx->fParams.checksumFlag) { |
---|
1137 | U64 const h64 = XXH64_digest(&dctx->xxhState); |
---|
1138 | U32 const h32 = (U32)(h64>>11) & ((1<<22)-1); |
---|
1139 | const BYTE* const ip = (const BYTE*)src; |
---|
1140 | U32 const check32 = ip[2] + (ip[1] << 8) + ((ip[0] & 0x3F) << 16); |
---|
1141 | if (check32 != h32) return ERROR(checksum_wrong); |
---|
1142 | } |
---|
1143 | dctx->expected = 0; |
---|
1144 | dctx->stage = ZSTDds_getFrameHeaderSize; |
---|
1145 | } else { |
---|
1146 | dctx->expected = cBlockSize; |
---|
1147 | dctx->bType = bp.blockType; |
---|
1148 | dctx->stage = ZSTDds_decompressBlock; |
---|
1149 | } |
---|
1150 | return 0; |
---|
1151 | } |
---|
1152 | case ZSTDds_decompressBlock: |
---|
1153 | { size_t rSize; |
---|
1154 | switch(dctx->bType) |
---|
1155 | { |
---|
1156 | case bt_compressed: |
---|
1157 | rSize = ZSTD_decompressBlock_internal(dctx, dst, dstCapacity, src, srcSize); |
---|
1158 | break; |
---|
1159 | case bt_raw : |
---|
1160 | rSize = ZSTD_copyRawBlock(dst, dstCapacity, src, srcSize); |
---|
1161 | break; |
---|
1162 | case bt_rle : |
---|
1163 | return ERROR(GENERIC); /* not yet handled */ |
---|
1164 | break; |
---|
1165 | case bt_end : /* should never happen (filtered at phase 1) */ |
---|
1166 | rSize = 0; |
---|
1167 | break; |
---|
1168 | default: |
---|
1169 | return ERROR(GENERIC); /* impossible */ |
---|
1170 | } |
---|
1171 | dctx->stage = ZSTDds_decodeBlockHeader; |
---|
1172 | dctx->expected = ZSTD_blockHeaderSize; |
---|
1173 | dctx->previousDstEnd = (char*)dst + rSize; |
---|
1174 | if (ZSTD_isError(rSize)) return rSize; |
---|
1175 | if (dctx->fParams.checksumFlag) XXH64_update(&dctx->xxhState, dst, rSize); |
---|
1176 | return rSize; |
---|
1177 | } |
---|
1178 | case ZSTDds_decodeSkippableHeader: |
---|
1179 | { memcpy(dctx->headerBuffer + ZSTD_frameHeaderSize_min, src, dctx->expected); |
---|
1180 | dctx->expected = MEM_readLE32(dctx->headerBuffer + 4); |
---|
1181 | dctx->stage = ZSTDds_skipFrame; |
---|
1182 | return 0; |
---|
1183 | } |
---|
1184 | case ZSTDds_skipFrame: |
---|
1185 | { dctx->expected = 0; |
---|
1186 | dctx->stage = ZSTDds_getFrameHeaderSize; |
---|
1187 | return 0; |
---|
1188 | } |
---|
1189 | default: |
---|
1190 | return ERROR(GENERIC); /* impossible */ |
---|
1191 | } |
---|
1192 | } |
---|
1193 | |
---|
1194 | |
---|
1195 | static size_t ZSTD_refDictContent(ZSTD_DCtx* dctx, const void* dict, size_t dictSize) |
---|
1196 | { |
---|
1197 | dctx->dictEnd = dctx->previousDstEnd; |
---|
1198 | dctx->vBase = (const char*)dict - ((const char*)(dctx->previousDstEnd) - (const char*)(dctx->base)); |
---|
1199 | dctx->base = dict; |
---|
1200 | dctx->previousDstEnd = (const char*)dict + dictSize; |
---|
1201 | return 0; |
---|
1202 | } |
---|
1203 | |
---|
1204 | static size_t ZSTD_loadEntropy(ZSTD_DCtx* dctx, const void* const dict, size_t const dictSize) |
---|
1205 | { |
---|
1206 | const BYTE* dictPtr = (const BYTE*)dict; |
---|
1207 | const BYTE* const dictEnd = dictPtr + dictSize; |
---|
1208 | |
---|
1209 | { size_t const hSize = HUF_readDTableX4(dctx->hufTable, dict, dictSize); |
---|
1210 | if (HUF_isError(hSize)) return ERROR(dictionary_corrupted); |
---|
1211 | dictPtr += hSize; |
---|
1212 | } |
---|
1213 | |
---|
1214 | { short offcodeNCount[MaxOff+1]; |
---|
1215 | U32 offcodeMaxValue=MaxOff, offcodeLog=OffFSELog; |
---|
1216 | size_t const offcodeHeaderSize = FSE_readNCount(offcodeNCount, &offcodeMaxValue, &offcodeLog, dictPtr, dictEnd-dictPtr); |
---|
1217 | if (FSE_isError(offcodeHeaderSize)) return ERROR(dictionary_corrupted); |
---|
1218 | { size_t const errorCode = FSE_buildDTable(dctx->OffTable, offcodeNCount, offcodeMaxValue, offcodeLog); |
---|
1219 | if (FSE_isError(errorCode)) return ERROR(dictionary_corrupted); } |
---|
1220 | dictPtr += offcodeHeaderSize; |
---|
1221 | } |
---|
1222 | |
---|
1223 | { short matchlengthNCount[MaxML+1]; |
---|
1224 | unsigned matchlengthMaxValue = MaxML, matchlengthLog = MLFSELog; |
---|
1225 | size_t const matchlengthHeaderSize = FSE_readNCount(matchlengthNCount, &matchlengthMaxValue, &matchlengthLog, dictPtr, dictEnd-dictPtr); |
---|
1226 | if (FSE_isError(matchlengthHeaderSize)) return ERROR(dictionary_corrupted); |
---|
1227 | { size_t const errorCode = FSE_buildDTable(dctx->MLTable, matchlengthNCount, matchlengthMaxValue, matchlengthLog); |
---|
1228 | if (FSE_isError(errorCode)) return ERROR(dictionary_corrupted); } |
---|
1229 | dictPtr += matchlengthHeaderSize; |
---|
1230 | } |
---|
1231 | |
---|
1232 | { short litlengthNCount[MaxLL+1]; |
---|
1233 | unsigned litlengthMaxValue = MaxLL, litlengthLog = LLFSELog; |
---|
1234 | size_t const litlengthHeaderSize = FSE_readNCount(litlengthNCount, &litlengthMaxValue, &litlengthLog, dictPtr, dictEnd-dictPtr); |
---|
1235 | if (FSE_isError(litlengthHeaderSize)) return ERROR(dictionary_corrupted); |
---|
1236 | { size_t const errorCode = FSE_buildDTable(dctx->LLTable, litlengthNCount, litlengthMaxValue, litlengthLog); |
---|
1237 | if (FSE_isError(errorCode)) return ERROR(dictionary_corrupted); } |
---|
1238 | dictPtr += litlengthHeaderSize; |
---|
1239 | } |
---|
1240 | |
---|
1241 | if (dictPtr+12 > dictEnd) return ERROR(dictionary_corrupted); |
---|
1242 | dctx->rep[0] = MEM_readLE32(dictPtr+0); if (dctx->rep[0] >= dictSize) return ERROR(dictionary_corrupted); |
---|
1243 | dctx->rep[1] = MEM_readLE32(dictPtr+4); if (dctx->rep[1] >= dictSize) return ERROR(dictionary_corrupted); |
---|
1244 | dctx->rep[2] = MEM_readLE32(dictPtr+8); if (dctx->rep[2] >= dictSize) return ERROR(dictionary_corrupted); |
---|
1245 | dictPtr += 12; |
---|
1246 | |
---|
1247 | dctx->litEntropy = dctx->fseEntropy = 1; |
---|
1248 | return dictPtr - (const BYTE*)dict; |
---|
1249 | } |
---|
1250 | |
---|
1251 | static size_t ZSTD_decompress_insertDictionary(ZSTD_DCtx* dctx, const void* dict, size_t dictSize) |
---|
1252 | { |
---|
1253 | if (dictSize < 8) return ZSTD_refDictContent(dctx, dict, dictSize); |
---|
1254 | { U32 const magic = MEM_readLE32(dict); |
---|
1255 | if (magic != ZSTD_DICT_MAGIC) { |
---|
1256 | return ZSTD_refDictContent(dctx, dict, dictSize); /* pure content mode */ |
---|
1257 | } } |
---|
1258 | dctx->dictID = MEM_readLE32((const char*)dict + 4); |
---|
1259 | |
---|
1260 | /* load entropy tables */ |
---|
1261 | dict = (const char*)dict + 8; |
---|
1262 | dictSize -= 8; |
---|
1263 | { size_t const eSize = ZSTD_loadEntropy(dctx, dict, dictSize); |
---|
1264 | if (ZSTD_isError(eSize)) return ERROR(dictionary_corrupted); |
---|
1265 | dict = (const char*)dict + eSize; |
---|
1266 | dictSize -= eSize; |
---|
1267 | } |
---|
1268 | |
---|
1269 | /* reference dictionary content */ |
---|
1270 | return ZSTD_refDictContent(dctx, dict, dictSize); |
---|
1271 | } |
---|
1272 | |
---|
1273 | |
---|
1274 | size_t ZSTD_decompressBegin_usingDict(ZSTD_DCtx* dctx, const void* dict, size_t dictSize) |
---|
1275 | { |
---|
1276 | { size_t const errorCode = ZSTD_decompressBegin(dctx); |
---|
1277 | if (ZSTD_isError(errorCode)) return errorCode; } |
---|
1278 | |
---|
1279 | if (dict && dictSize) { |
---|
1280 | size_t const errorCode = ZSTD_decompress_insertDictionary(dctx, dict, dictSize); |
---|
1281 | if (ZSTD_isError(errorCode)) return ERROR(dictionary_corrupted); |
---|
1282 | } |
---|
1283 | |
---|
1284 | return 0; |
---|
1285 | } |
---|
1286 | |
---|
1287 | |
---|
1288 | struct ZSTD_DDict_s { |
---|
1289 | void* dict; |
---|
1290 | size_t dictSize; |
---|
1291 | ZSTD_DCtx* refContext; |
---|
1292 | }; /* typedef'd tp ZSTD_CDict within zstd.h */ |
---|
1293 | |
---|
1294 | ZSTD_DDict* ZSTD_createDDict_advanced(const void* dict, size_t dictSize, ZSTD_customMem customMem) |
---|
1295 | { |
---|
1296 | if (!customMem.customAlloc && !customMem.customFree) |
---|
1297 | customMem = defaultCustomMem; |
---|
1298 | |
---|
1299 | if (!customMem.customAlloc || !customMem.customFree) |
---|
1300 | return NULL; |
---|
1301 | |
---|
1302 | { ZSTD_DDict* const ddict = (ZSTD_DDict*) customMem.customAlloc(customMem.opaque, sizeof(*ddict)); |
---|
1303 | void* const dictContent = customMem.customAlloc(customMem.opaque, dictSize); |
---|
1304 | ZSTD_DCtx* const dctx = ZSTD_createDCtx_advanced(customMem); |
---|
1305 | |
---|
1306 | if (!dictContent || !ddict || !dctx) { |
---|
1307 | customMem.customFree(customMem.opaque, dictContent); |
---|
1308 | customMem.customFree(customMem.opaque, ddict); |
---|
1309 | customMem.customFree(customMem.opaque, dctx); |
---|
1310 | return NULL; |
---|
1311 | } |
---|
1312 | |
---|
1313 | memcpy(dictContent, dict, dictSize); |
---|
1314 | { size_t const errorCode = ZSTD_decompressBegin_usingDict(dctx, dictContent, dictSize); |
---|
1315 | if (ZSTD_isError(errorCode)) { |
---|
1316 | customMem.customFree(customMem.opaque, dictContent); |
---|
1317 | customMem.customFree(customMem.opaque, ddict); |
---|
1318 | customMem.customFree(customMem.opaque, dctx); |
---|
1319 | return NULL; |
---|
1320 | } } |
---|
1321 | |
---|
1322 | ddict->dict = dictContent; |
---|
1323 | ddict->dictSize = dictSize; |
---|
1324 | ddict->refContext = dctx; |
---|
1325 | return ddict; |
---|
1326 | } |
---|
1327 | } |
---|
1328 | |
---|
1329 | /*! ZSTD_createDDict() : |
---|
1330 | * Create a digested dictionary, ready to start decompression without startup delay. |
---|
1331 | * `dict` can be released after `ZSTD_DDict` creation */ |
---|
1332 | ZSTD_DDict* ZSTD_createDDict(const void* dict, size_t dictSize) |
---|
1333 | { |
---|
1334 | ZSTD_customMem const allocator = { NULL, NULL, NULL }; |
---|
1335 | return ZSTD_createDDict_advanced(dict, dictSize, allocator); |
---|
1336 | } |
---|
1337 | |
---|
1338 | size_t ZSTD_freeDDict(ZSTD_DDict* ddict) |
---|
1339 | { |
---|
1340 | ZSTD_freeFunction const cFree = ddict->refContext->customMem.customFree; |
---|
1341 | void* const opaque = ddict->refContext->customMem.opaque; |
---|
1342 | ZSTD_freeDCtx(ddict->refContext); |
---|
1343 | cFree(opaque, ddict->dict); |
---|
1344 | cFree(opaque, ddict); |
---|
1345 | return 0; |
---|
1346 | } |
---|
1347 | |
---|
1348 | /*! ZSTD_decompress_usingDDict() : |
---|
1349 | * Decompression using a pre-digested Dictionary |
---|
1350 | * Use dictionary without significant overhead. */ |
---|
1351 | ZSTDLIB_API size_t ZSTD_decompress_usingDDict(ZSTD_DCtx* dctx, |
---|
1352 | void* dst, size_t dstCapacity, |
---|
1353 | const void* src, size_t srcSize, |
---|
1354 | const ZSTD_DDict* ddict) |
---|
1355 | { |
---|
1356 | #if defined(ZSTD_LEGACY_SUPPORT) && (ZSTD_LEGACY_SUPPORT==1) |
---|
1357 | if (ZSTD_isLegacy(src, srcSize)) return ZSTD_decompressLegacy(dst, dstCapacity, src, srcSize, ddict->dict, ddict->dictSize); |
---|
1358 | #endif |
---|
1359 | return ZSTD_decompress_usingPreparedDCtx(dctx, ddict->refContext, |
---|
1360 | dst, dstCapacity, |
---|
1361 | src, srcSize); |
---|
1362 | } |
---|