Update to latest LZ4.
Update a couple of comments.
This commit is contained in:
parent
224fb529e9
commit
03840b31c5
5 changed files with 564 additions and 565 deletions
120
lz4/lz4.h
120
lz4/lz4.h
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@ -31,28 +31,6 @@
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- LZ4 homepage : http://fastcompression.blogspot.com/p/lz4.html
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- LZ4 source repository : http://code.google.com/p/lz4/
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*/
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/*
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* This file is a part of Pcompress, a chunked parallel multi-
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* algorithm lossless compression and decompression program.
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*
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* Copyright (C) 2012 Moinak Ghosh. All rights reserved.
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* Use is subject to license terms.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 3 of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* moinakg@belenix.org, http://moinakg.wordpress.com/
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*
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*/
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#pragma once
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#if defined (__cplusplus)
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@ -60,6 +38,14 @@ extern "C" {
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#endif
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//**************************************
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// Compiler Options
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//**************************************
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#ifdef _MSC_VER // Visual Studio
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# define inline __inline // Visual is not C99, but supports some kind of inline
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#endif
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//****************************
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// Simple Functions
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//****************************
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@ -69,19 +55,22 @@ int LZ4_uncompress (const char* source, char* dest, int osize);
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/*
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LZ4_compress() :
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isize : is the input size. Max supported value is ~1.9GB
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return : the number of bytes written in buffer dest
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or 0 if the compression fails (if LZ4_COMPRESSMIN is set)
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note : destination buffer must be already allocated.
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destination buffer must be sized to handle worst cases situations (input data not compressible)
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worst case size evaluation is provided by function LZ4_compressBound()
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Compresses 'isize' bytes from 'source' into 'dest'.
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Destination buffer must be already allocated,
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and must be sized to handle worst cases situations (input data not compressible)
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Worst case size evaluation is provided by function LZ4_compressBound()
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isize : is the input size. Max supported value is ~1.9GB
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return : the number of bytes written in buffer dest
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LZ4_uncompress() :
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osize : is the output size, therefore the original size
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return : the number of bytes read in the source buffer
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If the source stream is malformed, the function will stop decoding and return a negative result, indicating the byte position of the faulty instruction
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This function never writes beyond dest + osize, and is therefore protected against malicious data packets
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note : destination buffer must be already allocated
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osize : is the output size, therefore the original size
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return : the number of bytes read in the source buffer
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If the source stream is malformed, the function will stop decoding and return a negative result, indicating the byte position of the faulty instruction
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This function never writes outside of provided buffers, and never modifies input buffer.
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note : destination buffer must be already allocated.
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its size must be a minimum of 'osize' bytes.
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*/
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@ -89,16 +78,34 @@ LZ4_uncompress() :
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// Advanced Functions
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//****************************
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int LZ4_compressBound(int isize);
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static inline int LZ4_compressBound(int isize) { return ((isize) + ((isize)/255) + 16); }
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#define LZ4_COMPRESSBOUND( isize) ((isize) + ((isize)/255) + 16)
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/*
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LZ4_compressBound() :
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Provides the maximum size that LZ4 may output in a "worst case" scenario (input data not compressible)
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primarily useful for memory allocation of output buffer.
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Provides the maximum size that LZ4 may output in a "worst case" scenario (input data not compressible)
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primarily useful for memory allocation of output buffer.
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inline function is recommended for the general case,
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but macro is also provided when results need to be evaluated at compile time (such as table size allocation).
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isize : is the input size. Max supported value is ~1.9GB
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return : maximum output size in a "worst case" scenario
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note : this function is limited by "int" range (2^31-1)
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isize : is the input size. Max supported value is ~1.9GB
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return : maximum output size in a "worst case" scenario
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note : this function is limited by "int" range (2^31-1)
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*/
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int LZ4_compress_limitedOutput (const char* source, char* dest, int isize, int maxOutputSize);
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/*
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LZ4_compress_limitedOutput() :
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Compress 'isize' bytes from 'source' into an output buffer 'dest' of maximum size 'maxOutputSize'.
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If it cannot achieve it, compression will stop, and result of the function will be zero.
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This function never writes outside of provided output buffer.
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isize : is the input size. Max supported value is ~1.9GB
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maxOutputSize : is the size of the destination buffer (which must be already allocated)
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return : the number of bytes written in buffer 'dest'
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or 0 if the compression fails
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*/
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@ -106,34 +113,13 @@ int LZ4_uncompress_unknownOutputSize (const char* source, char* dest, int isize,
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/*
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LZ4_uncompress_unknownOutputSize() :
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isize : is the input size, therefore the compressed size
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maxOutputSize : is the size of the destination buffer (which must be already allocated)
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return : the number of bytes decoded in the destination buffer (necessarily <= maxOutputSize)
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If the source stream is malformed, the function will stop decoding and return a negative result, indicating the byte position of the faulty instruction
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This function never writes beyond dest + maxOutputSize, and is therefore protected against malicious data packets
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note : Destination buffer must be already allocated.
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This version is slightly slower than LZ4_uncompress()
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*/
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int LZ4_compressCtx(void** ctx, const char* source, char* dest, int isize);
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int LZ4_compress64kCtx(void** ctx, const char* source, char* dest, int isize);
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/*
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LZ4_compressCtx() :
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This function explicitly handles the CTX memory structure.
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It avoids allocating/deallocating memory between each call, improving performance when malloc is heavily invoked.
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This function is only useful when memory is allocated into the heap (HASH_LOG value beyond STACK_LIMIT)
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Performance difference will be noticeable only when repetitively calling the compression function over many small segments.
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Note : by default, memory is allocated into the stack, therefore "malloc" is not invoked.
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LZ4_compress64kCtx() :
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Same as LZ4_compressCtx(), but specific to small inputs (<64KB).
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isize *Must* be <64KB, otherwise the output will be corrupted.
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On first call : provide a *ctx=NULL; It will be automatically allocated.
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On next calls : reuse the same ctx pointer.
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Use different pointers for different threads when doing multi-threading.
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isize : is the input size, therefore the compressed size
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maxOutputSize : is the size of the destination buffer (which must be already allocated)
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return : the number of bytes decoded in the destination buffer (necessarily <= maxOutputSize)
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If the source stream is malformed, the function will stop decoding and return a negative result, indicating the byte position of the faulty instruction
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This function never writes beyond dest + maxOutputSize, and is therefore protected against malicious data packets
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note : Destination buffer must be already allocated.
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This version is slightly slower than LZ4_uncompress()
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*/
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106
lz4/lz4hc.c
106
lz4/lz4hc.c
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@ -31,26 +31,6 @@
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- LZ4 source repository : http://code.google.com/p/lz4/
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*/
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/*
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* This file is a part of Pcompress, a chunked parallel multi-
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* algorithm lossless compression and decompression program.
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*
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* Copyright (C) 2012 Moinak Ghosh. All rights reserved.
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* Use is subject to license terms.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 3 of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* moinakg@belenix.org, http://moinakg.wordpress.com/
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*
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*/
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//**************************************
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// CPU Feature Detection
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@ -88,12 +68,20 @@
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#ifdef _MSC_VER
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#define inline __forceinline // Visual is not C99, but supports some kind of inline
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#include <intrin.h> // For Visual 2005
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# if LZ4_ARCH64 // 64-bit
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# pragma intrinsic(_BitScanForward64) // For Visual 2005
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# pragma intrinsic(_BitScanReverse64) // For Visual 2005
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# else
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# pragma intrinsic(_BitScanForward) // For Visual 2005
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# pragma intrinsic(_BitScanReverse) // For Visual 2005
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# endif
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#endif
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#ifdef _MSC_VER // Visual Studio
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#define bswap16(x) _byteswap_ushort(x)
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#define lz4_bswap16(x) _byteswap_ushort(x)
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#else
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#define bswap16(x) ((unsigned short int) ((((x) >> 8) & 0xffu) | (((x) & 0xffu) << 8)))
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#define lz4_bswap16(x) ((unsigned short int) ((((x) >> 8) & 0xffu) | (((x) & 0xffu) << 8)))
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#endif
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@ -197,8 +185,8 @@ typedef struct _U64_S { U64 v; } U64_S;
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#endif
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#if defined(LZ4_BIG_ENDIAN)
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#define LZ4_READ_LITTLEENDIAN_16(d,s,p) { U16 v = A16(p); v = bswap16(v); d = (s) - v; }
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#define LZ4_WRITE_LITTLEENDIAN_16(p,i) { U16 v = (U16)(i); v = bswap16(v); A16(p) = v; p+=2; }
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#define LZ4_READ_LITTLEENDIAN_16(d,s,p) { U16 v = A16(p); v = lz4_bswap16(v); d = (s) - v; }
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#define LZ4_WRITE_LITTLEENDIAN_16(p,i) { U16 v = (U16)(i); v = lz4_bswap16(v); A16(p) = v; p+=2; }
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#else // Little Endian
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#define LZ4_READ_LITTLEENDIAN_16(d,s,p) { d = (s) - A16(p); }
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#define LZ4_WRITE_LITTLEENDIAN_16(p,v) { A16(p) = v; p+=2; }
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@ -352,7 +340,7 @@ inline static int LZ4HC_InsertAndFindBestMatch (LZ4HC_Data_Structure* hc4, const
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// HC4 match finder
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LZ4HC_Insert(hc4, ip);
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ref = HASH_POINTER(ip);
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while ((ref > (ip-MAX_DISTANCE)) && (nbAttempts))
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while ((ref >= (ip-MAX_DISTANCE)) && (nbAttempts))
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{
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nbAttempts--;
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if (*(ref+ml) == *(ip+ml))
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@ -362,15 +350,15 @@ inline static int LZ4HC_InsertAndFindBestMatch (LZ4HC_Data_Structure* hc4, const
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const BYTE* ipt = ip+MINMATCH;
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#ifdef __USE_SSE_INTRIN__
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while (ipt<matchlimit-15) {
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int mask;
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__m128i span1 = _mm_loadu_si128((__m128i *)(reft));
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__m128i span2 = _mm_loadu_si128((__m128i *)(ipt));
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mask = _mm_movemask_epi8(_mm_cmpeq_epi8(span1, span2)) ^ 0xffff;
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if (!mask) { ipt+=16; reft+=16; continue; }
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ipt += __builtin_ctz(mask);
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goto _endCount;
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}
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while (ipt<matchlimit-15) {
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int mask;
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__m128i span1 = _mm_loadu_si128((__m128i *)(reft));
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__m128i span2 = _mm_loadu_si128((__m128i *)(ipt));
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mask = _mm_movemask_epi8(_mm_cmpeq_epi8(span1, span2)) ^ 0xffff;
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if (!mask) { ipt+=16; reft+=16; continue; }
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ipt += __builtin_ctz(mask);
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goto _endCount;
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}
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#endif
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while (ipt<matchlimit-(STEPSIZE-1))
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{
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@ -384,7 +372,7 @@ inline static int LZ4HC_InsertAndFindBestMatch (LZ4HC_Data_Structure* hc4, const
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if ((ipt<matchlimit) && (*reft == *ipt)) ipt++;
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_endCount:
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if (ipt-ip > ml) { ml = ipt-ip; *matchpos = ref; }
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if (ipt-ip > ml) { ml = (int)(ipt-ip); *matchpos = ref; }
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}
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ref = GETNEXT(ref);
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}
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@ -400,13 +388,13 @@ inline static int LZ4HC_InsertAndGetWiderMatch (LZ4HC_Data_Structure* hc4, const
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INITBASE(base,hc4->base);
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const BYTE* ref;
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int nbAttempts = MAX_NB_ATTEMPTS;
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int delta = ip-startLimit;
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int delta = (int)(ip-startLimit);
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// First Match
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LZ4HC_Insert(hc4, ip);
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ref = HASH_POINTER(ip);
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while ((ref > ip-MAX_DISTANCE) && (ref >= hc4->base) && (nbAttempts))
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while ((ref >= ip-MAX_DISTANCE) && (ref >= hc4->base) && (nbAttempts))
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{
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nbAttempts--;
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if (*(startLimit + longest) == *(ref - delta + longest))
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@ -417,15 +405,15 @@ inline static int LZ4HC_InsertAndGetWiderMatch (LZ4HC_Data_Structure* hc4, const
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const BYTE* startt = ip;
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#ifdef __USE_SSE_INTRIN__
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while (ipt<matchlimit-15) {
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int mask;
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__m128i span1 = _mm_loadu_si128((__m128i *)(reft));
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__m128i span2 = _mm_loadu_si128((__m128i *)(ipt));
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mask = _mm_movemask_epi8(_mm_cmpeq_epi8(span1, span2)) ^ 0xffff;
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if (!mask) { ipt+=16; reft+=16; continue; }
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ipt += __builtin_ctz(mask);
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goto _endCount;
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}
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while (ipt<matchlimit-15) {
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int mask;
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__m128i span1 = _mm_loadu_si128((__m128i *)(reft));
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__m128i span2 = _mm_loadu_si128((__m128i *)(ipt));
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mask = _mm_movemask_epi8(_mm_cmpeq_epi8(span1, span2)) ^ 0xffff;
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if (!mask) { ipt+=16; reft+=16; continue; }
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ipt += __builtin_ctz(mask);
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goto _endCount;
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}
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#endif
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while (ipt<matchlimit-(STEPSIZE-1))
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{
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@ -444,7 +432,7 @@ _endCount:
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if ((ipt-startt) > longest)
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{
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longest = ipt-startt;
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longest = (int)(ipt-startt);
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*matchpos = reft;
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*startpos = startt;
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}
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@ -462,7 +450,7 @@ inline static int LZ4_encodeSequence(const BYTE** ip, BYTE** op, const BYTE** an
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BYTE* token;
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// Encode Literal length
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length = *ip - *anchor;
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length = (int)(*ip - *anchor);
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token = (*op)++;
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if (length>=(int)RUN_MASK) { *token=(RUN_MASK<<ML_BITS); len = length-RUN_MASK; for(; len > 254 ; len-=255) *(*op)++ = 255; *(*op)++ = (BYTE)len; }
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else *token = (length<<ML_BITS);
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@ -471,7 +459,7 @@ inline static int LZ4_encodeSequence(const BYTE** ip, BYTE** op, const BYTE** an
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LZ4_BLINDCOPY(*anchor, *op, length);
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// Encode Offset
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LZ4_WRITE_LITTLEENDIAN_16(*op,*ip-ref);
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LZ4_WRITE_LITTLEENDIAN_16(*op,(U16)(*ip-ref));
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// Encode MatchLength
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len = (int)(ml-MINMATCH);
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@ -564,8 +552,8 @@ _Search3:
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int correction;
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int new_ml = ml;
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if (new_ml > OPTIMAL_ML) new_ml = OPTIMAL_ML;
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if (ip+new_ml > start2 + ml2 - MINMATCH) new_ml = start2 - ip + ml2 - MINMATCH;
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correction = new_ml - (start2 - ip);
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if (ip+new_ml > start2 + ml2 - MINMATCH) new_ml = (int)(start2 - ip) + ml2 - MINMATCH;
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correction = new_ml - (int)(start2 - ip);
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if (correction > 0)
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{
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start2 += correction;
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@ -588,8 +576,8 @@ _Search3:
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{
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int correction;
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if (ml > OPTIMAL_ML) ml = OPTIMAL_ML;
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if (ip+ml > start2 + ml2 - MINMATCH) ml = start2 - ip + ml2 - MINMATCH;
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correction = ml - (start2 - ip);
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if (ip+ml > start2 + ml2 - MINMATCH) ml = (int)(start2 - ip) + ml2 - MINMATCH;
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correction = ml - (int)(start2 - ip);
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if (correction > 0)
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{
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start2 += correction;
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@ -599,7 +587,7 @@ _Search3:
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}
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else
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{
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ml = start2 - ip;
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ml = (int)(start2 - ip);
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}
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}
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// Now, encode 2 sequences
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@ -615,7 +603,7 @@ _Search3:
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{
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if (start2 < ip+ml)
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{
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int correction = (ip+ml) - start2;
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int correction = (int)(ip+ml - start2);
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start2 += correction;
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ref2 += correction;
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ml2 -= correction;
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@ -652,8 +640,8 @@ _Search3:
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{
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int correction;
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if (ml > OPTIMAL_ML) ml = OPTIMAL_ML;
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if (ip + ml > start2 + ml2 - MINMATCH) ml = start2 - ip + ml2 - MINMATCH;
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correction = ml - (start2 - ip);
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if (ip + ml > start2 + ml2 - MINMATCH) ml = (int)(start2 - ip) + ml2 - MINMATCH;
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correction = ml - (int)(start2 - ip);
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if (correction > 0)
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{
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start2 += correction;
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@ -663,7 +651,7 @@ _Search3:
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}
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else
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{
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ml = start2 - ip;
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ml = (int)(start2 - ip);
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}
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}
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LZ4_encodeSequence(&ip, &op, &anchor, ml, ref);
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@ -682,7 +670,7 @@ _Search3:
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// Encode Last Literals
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{
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int lastRun = iend - anchor;
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||||
int lastRun = (int)(iend - anchor);
|
||||
if (lastRun>=(int)RUN_MASK) { *op++=(RUN_MASK<<ML_BITS); lastRun-=RUN_MASK; for(; lastRun > 254 ; lastRun-=255) *op++ = 255; *op++ = (BYTE) lastRun; }
|
||||
else *op++ = (lastRun<<ML_BITS);
|
||||
memcpy(op, anchor, iend - anchor);
|
||||
|
|
22
lz4/lz4hc.h
22
lz4/lz4hc.h
|
@ -31,28 +31,6 @@
|
|||
- LZ4 homepage : http://fastcompression.blogspot.com/p/lz4.html
|
||||
- LZ4 source repository : http://code.google.com/p/lz4/
|
||||
*/
|
||||
|
||||
/*
|
||||
* This file is a part of Pcompress, a chunked parallel multi-
|
||||
* algorithm lossless compression and decompression program.
|
||||
*
|
||||
* Copyright (C) 2012 Moinak Ghosh. All rights reserved.
|
||||
* Use is subject to license terms.
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or
|
||||
* modify it under the terms of the GNU Lesser General Public
|
||||
* License as published by the Free Software Foundation; either
|
||||
* version 3 of the License, or (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
||||
* Lesser General Public License for more details.
|
||||
*
|
||||
* moinakg@belenix.org, http://moinakg.wordpress.com/
|
||||
*
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
|
||||
|
||||
|
|
12
main.c
12
main.c
|
@ -208,6 +208,7 @@ preproc_compress(compress_func_ptr cmp_func, void *src, uint64_t srclen, void *d
|
|||
} else {
|
||||
/*
|
||||
* Execution won't come here but just in case ...
|
||||
* Even Delta2 encoding below enables LZP.
|
||||
*/
|
||||
fprintf(stderr, "Invalid preprocessing mode\n");
|
||||
return (-1);
|
||||
|
@ -541,11 +542,12 @@ cont:
|
|||
*
|
||||
* Chunk Flags, 8 bits:
|
||||
* I I I I I I I I
|
||||
* | | | | |
|
||||
* | '-----' | `- 0 - Uncompressed
|
||||
* | | | 1 - Compressed
|
||||
* | | |
|
||||
* | | `---- 1 - Chunk was Deduped
|
||||
* | | | | | |
|
||||
* | '-----' | | `- 0 - Uncompressed
|
||||
* | | | | 1 - Compressed
|
||||
* | | | |
|
||||
* | | | `---- 1 - Chunk was Deduped
|
||||
* | | `------- 1 - Chunk was pre-compressed
|
||||
* | |
|
||||
* | | 1 - Bzip2 (Adaptive Mode)
|
||||
* | `---------------- 2 - Lzma (Adaptive Mode)
|
||||
|
|
Loading…
Reference in a new issue