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0653ec9564
--HG-- branch : minor
395 lines
10 KiB
C++
395 lines
10 KiB
C++
/**
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* Copyright (c) 2006-2016 LOVE Development Team
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*
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* This software is provided 'as-is', without any express or implied
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* warranty. In no event will the authors be held liable for any damages
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* arising from the use of this software.
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*
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* Permission is granted to anyone to use this software for any purpose,
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* including commercial applications, and to alter it and redistribute it
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* freely, subject to the following restrictions:
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*
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* 1. The origin of this software must not be misrepresented; you must not
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* claim that you wrote the original software. If you use this software
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* in a product, an acknowledgment in the product documentation would be
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* appreciated but is not required.
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* 2. Altered source versions must be plainly marked as such, and must not be
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* misrepresented as being the original software.
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* 3. This notice may not be removed or altered from any source distribution.
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**/
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// LOVE
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#include "Compressor.h"
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#include "common/config.h"
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#include "common/int.h"
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// LZ4
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#include "libraries/lz4/lz4.h"
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#include "libraries/lz4/lz4hc.h"
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// zlib
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#include <zlib.h>
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namespace love
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{
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namespace math
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{
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class LZ4Compressor : public Compressor
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{
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public:
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char *compress(Format format, const char *data, size_t dataSize, int level, size_t &compressedSize) override
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{
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if (format != FORMAT_LZ4)
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throw love::Exception("Invalid format (expecting LZ4)");
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if (dataSize > LZ4_MAX_INPUT_SIZE)
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throw love::Exception("Data is too large for LZ4 compressor.");
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// We use a custom header to store some info with the compressed data.
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const size_t headersize = sizeof(uint32);
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int maxdestsize = LZ4_compressBound((int) dataSize);
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size_t maxsize = headersize + (size_t) maxdestsize;
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char *compressedbytes = nullptr;
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try
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{
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compressedbytes = new char[maxsize];
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}
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catch (std::bad_alloc &)
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{
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throw love::Exception("Out of memory.");
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}
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// Store the size of the uncompressed data as a header.
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#ifdef LOVE_BIG_ENDIAN
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// Make sure it's little-endian for storage.
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*(uint32 *) compressedbytes = swapuint32((uint32) dataSize);
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#else
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*(uint32 *) compressedbytes = (uint32) dataSize;
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#endif
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// Use LZ4-HC for compression level 9 and higher.
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int csize = 0;
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if (level > 8)
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csize = LZ4_compress_HC(data, compressedbytes + headersize, (int) dataSize, maxdestsize, 0);
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else
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csize = LZ4_compress_default(data, compressedbytes + headersize, (int) dataSize, maxdestsize);
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if (csize <= 0)
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{
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delete[] compressedbytes;
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throw love::Exception("Could not LZ4-compress data.");
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}
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// We allocated space for the maximum possible amount of data, but the
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// actual compressed size might be much smaller, so we should shrink the
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// data buffer if so.
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if ((double) maxsize / (double) (csize + headersize) >= 1.2)
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{
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char *cbytes = new (std::nothrow) char[csize + headersize];
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if (cbytes)
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{
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memcpy(cbytes, compressedbytes, csize + headersize);
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delete[] compressedbytes;
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compressedbytes = cbytes;
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}
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}
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compressedSize = (size_t) csize + headersize;
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return compressedbytes;
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}
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char *decompress(Format format, const char *data, size_t dataSize, size_t &decompressedSize) override
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{
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if (format != FORMAT_LZ4)
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throw love::Exception("Invalid format (expecting LZ4)");
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const size_t headersize = sizeof(uint32);
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char *rawbytes = nullptr;
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if (dataSize < headersize)
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throw love::Exception("Invalid LZ4-compressed data size.");
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// Extract the original uncompressed size (stored in our custom header.)
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#ifdef LOVE_BIG_ENDIAN
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// Convert from stored little-endian to big-endian.
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uint32 rawsize = swapuint32(*(uint32 *) data);
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#else
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uint32 rawsize = *(uint32 *) data;
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#endif
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try
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{
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rawbytes = new char[rawsize];
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}
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catch (std::bad_alloc &)
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{
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throw love::Exception("Out of memory.");
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}
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// If the uncompressed size is passed in as an argument (non-zero) and
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// it matches the header's stored size, then we assume it's 100% accurate
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// and we use a more efficient decompression function.
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if (decompressedSize > 0 && decompressedSize == (size_t) rawsize)
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{
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// We don't use the header here, but we need to account for its size.
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if (LZ4_decompress_fast(data + headersize, rawbytes, (int) decompressedSize) < 0)
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{
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delete[] rawbytes;
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throw love::Exception("Could not decompress LZ4-compressed data.");
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}
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}
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else
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{
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// Account for our custom header's size in the decompress arguments.
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int result = LZ4_decompress_safe(data + headersize, rawbytes,
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(int) (dataSize - headersize), rawsize);
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if (result < 0)
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{
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delete[] rawbytes;
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throw love::Exception("Could not decompress LZ4-compressed data.");
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}
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decompressedSize = (size_t) result;
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}
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return rawbytes;
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}
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bool isSupported(Format format) const override
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{
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return format == FORMAT_LZ4;
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}
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}; // LZ4Compressor
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class zlibCompressor : public Compressor
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{
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private:
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// The following three functions are mostly copied from the zlib source
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// (compressBound, compress2, and uncompress), but modified to support both
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// zlib and gzip.
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uLong zlibCompressBound(Format format, uLong sourceLen)
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{
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uLong size = sourceLen + (sourceLen >> 12) + (sourceLen >> 14) + (sourceLen >> 25) + 13;
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// The gzip header is slightly larger than the zlib header.
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if (format == FORMAT_GZIP)
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size += 18 - 6;
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return size;
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}
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int zlibCompress(Format format, Bytef *dest, uLongf *destLen, const Bytef *source, uLong sourceLen, int level)
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{
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z_stream stream = {};
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stream.next_in = (Bytef *) source;
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stream.avail_in = (uInt) sourceLen;
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stream.next_out = dest;
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stream.avail_out = (uInt) (*destLen);
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int windowbits = 15;
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if (format == FORMAT_GZIP)
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windowbits += 16; // This tells zlib to use a gzip header.
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int err = deflateInit2(&stream, level, Z_DEFLATED, windowbits, 8, Z_DEFAULT_STRATEGY);
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if (err != Z_OK)
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return err;
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err = deflate(&stream, Z_FINISH);
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if (err != Z_STREAM_END)
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{
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deflateEnd(&stream);
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return err == Z_OK ? Z_BUF_ERROR : err;
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}
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*destLen = stream.total_out;
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return deflateEnd(&stream);
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}
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int zlibDecompress(Bytef *dest, uLongf *destLen, const Bytef *source, uLong sourceLen)
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{
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z_stream stream = {};
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stream.next_in = (Bytef *) source;
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stream.avail_in = (uInt) sourceLen;
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stream.next_out = dest;
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stream.avail_out = (uInt) (*destLen);
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// 15 is the default. Adding 32 makes zlib auto-detect the header type.
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int windowbits = 15 + 32;
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int err = inflateInit2(&stream, windowbits);
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if (err != Z_OK)
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return err;
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err = inflate(&stream, Z_FINISH);
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if (err != Z_STREAM_END)
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{
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inflateEnd(&stream);
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if (err == Z_NEED_DICT || (err == Z_BUF_ERROR && stream.avail_in == 0))
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return Z_DATA_ERROR;
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return err;
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}
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*destLen = stream.total_out;
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return inflateEnd(&stream);
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}
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public:
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char *compress(Format format, const char *data, size_t dataSize, int level, size_t &compressedSize) override
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{
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if (!isSupported(format))
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throw love::Exception("Invalid format (expecting zlib or gzip)");
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if (level < 0)
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level = Z_DEFAULT_COMPRESSION;
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else if (level > 9)
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level = 9;
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uLong maxsize = zlibCompressBound(format, (uLong) dataSize);
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char *compressedbytes = nullptr;
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try
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{
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compressedbytes = new char[maxsize];
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}
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catch (std::bad_alloc &)
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{
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throw love::Exception("Out of memory.");
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}
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uLongf destlen = maxsize;
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int status = zlibCompress(format, (Bytef *) compressedbytes, &destlen, (const Bytef *) data, (uLong) dataSize, level);
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if (status != Z_OK)
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{
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delete[] compressedbytes;
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throw love::Exception("Could not zlib/gzip-compress data.");
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}
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// We allocated space for the maximum possible amount of data, but the
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// actual compressed size might be much smaller, so we should shrink the
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// data buffer if so.
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if ((double) maxsize / (double) destlen >= 1.3)
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{
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char *cbytes = new (std::nothrow) char[destlen];
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if (cbytes)
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{
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memcpy(cbytes, compressedbytes, destlen);
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delete[] compressedbytes;
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compressedbytes = cbytes;
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}
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}
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compressedSize = (size_t) destlen;
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return compressedbytes;
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}
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char *decompress(Format format, const char *data, size_t dataSize, size_t &decompressedSize) override
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{
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if (!isSupported(format))
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throw love::Exception("Invalid format (expecting zlib or gzip)");
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char *rawbytes = nullptr;
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// We might know the output size before decompression. If not, we guess.
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size_t rawsize = decompressedSize > 0 ? decompressedSize : dataSize * 2;
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// Repeatedly try to decompress with an increasingly large output buffer.
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while (true)
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{
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try
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{
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rawbytes = new char[rawsize];
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}
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catch (std::bad_alloc &)
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{
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throw love::Exception("Out of memory.");
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}
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uLongf destLen = (uLongf) rawsize;
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int status = zlibDecompress((Bytef *) rawbytes, &destLen, (const Bytef *) data, (uLong) dataSize);
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if (status == Z_OK)
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{
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decompressedSize = (size_t) destLen;
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break;
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}
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else if (status != Z_BUF_ERROR)
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{
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// For any error other than "not enough room", throw an exception.
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delete[] rawbytes;
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throw love::Exception("Could not decompress zlib/gzip-compressed data.");
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}
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// Not enough room in the output buffer: try again with a larger size.
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delete[] rawbytes;
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rawsize *= 2;
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}
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return rawbytes;
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}
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bool isSupported(Format format) const override
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{
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return format == FORMAT_ZLIB || format == FORMAT_GZIP;
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}
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}; // zlibCompressor
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Compressor *Compressor::getCompressor(Format format)
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{
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static LZ4Compressor lz4compressor;
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static zlibCompressor zlibcompressor;
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Compressor *compressors[] = {&lz4compressor, &zlibcompressor};
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for (Compressor *c : compressors)
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{
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if (c->isSupported(format))
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return c;
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}
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return nullptr;
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}
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bool Compressor::getConstant(const char *in, Format &out)
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{
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return formatNames.find(in, out);
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}
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bool Compressor::getConstant(Format in, const char *&out)
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{
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return formatNames.find(in, out);
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}
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StringMap<Compressor::Format, Compressor::FORMAT_MAX_ENUM>::Entry Compressor::formatEntries[] =
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{
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{"lz4", FORMAT_LZ4},
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{"zlib", FORMAT_ZLIB},
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{"gzip", FORMAT_GZIP},
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};
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StringMap<Compressor::Format, Compressor::FORMAT_MAX_ENUM> Compressor::formatNames(Compressor::formatEntries, sizeof(Compressor::formatEntries));
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} // math
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} // love
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