mirror of
https://github.com/xiaoyifang/goldendict-ng.git
synced 2024-11-25 01:14:07 +00:00
178 lines
3.8 KiB
C++
178 lines
3.8 KiB
C++
#include "decompress.hh"
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#include "zlib.h"
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#include "bzlib.h"
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#ifdef MAKE_ZIM_SUPPORT
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#include "lzma.h"
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#include "zstd.h"
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#endif
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#define CHUNK_SIZE 2048
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QByteArray zlibDecompress( const char * bufptr, unsigned length )
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{
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z_stream zs;
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char buf[CHUNK_SIZE];
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QByteArray str;
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int res;
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memset( &zs, 0, sizeof(zs) );
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zs.next_in = (Bytef *)bufptr;
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zs.avail_in = length;
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while( 1 )
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{
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res = inflateInit( &zs );
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if( res != Z_OK )
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break;
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while( res != Z_STREAM_END )
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{
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zs.next_out = (Bytef *)buf;
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zs.avail_out = CHUNK_SIZE;
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res = inflate( &zs, Z_SYNC_FLUSH );
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str.append( buf, CHUNK_SIZE - zs.avail_out );
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if( res != Z_OK && res != Z_STREAM_END )
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break;
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}
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break;
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}
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inflateEnd( &zs );
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if( res != Z_STREAM_END )
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str.clear();
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return str;
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}
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string decompressZlib( const char * bufptr, unsigned length )
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{
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QByteArray b = zlibDecompress( bufptr, length );
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return string( b.constData(), b.size() );
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}
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string decompressBzip2( const char * bufptr, unsigned length )
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{
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bz_stream zs;
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char buf[CHUNK_SIZE];
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string str;
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int res;
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memset( &zs, 0, sizeof(zs) );
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zs.next_in = (char *)bufptr;
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zs.avail_in = length;
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zs.total_in_lo32 = length;
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while( 1 )
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{
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res = BZ2_bzDecompressInit( &zs, 0, 0 );
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if( res != BZ_OK )
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break;
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while( res != BZ_STREAM_END )
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{
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zs.next_out = buf;
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zs.avail_out = CHUNK_SIZE;
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zs.total_out_lo32 = length;
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res = BZ2_bzDecompress( &zs );
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str.append( buf, CHUNK_SIZE - zs.avail_out );
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if( res != BZ_OK && res != BZ_STREAM_END )
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break;
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}
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break;
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}
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BZ2_bzDecompressEnd( &zs );
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if( res != BZ_STREAM_END )
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str.clear();
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return str;
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}
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#ifdef MAKE_ZIM_SUPPORT
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string decompressLzma2( const char * bufptr, unsigned length,
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bool raw_decoder )
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{
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string str;
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lzma_ret res;
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char buf[CHUNK_SIZE];
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lzma_stream strm = LZMA_STREAM_INIT;
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strm.next_in = reinterpret_cast< const uint8_t * >( bufptr );
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strm.avail_in = length;
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lzma_options_lzma opt;
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lzma_filter filters[ 2 ];
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if( raw_decoder )
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{
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lzma_lzma_preset(&opt, LZMA_PRESET_DEFAULT);
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filters[ 0 ].id = LZMA_FILTER_LZMA2;
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filters[ 0 ].options = &opt;
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filters[ 1 ].id = LZMA_VLI_UNKNOWN;
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}
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while( 1 )
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{
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if( raw_decoder )
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res = lzma_raw_decoder( &strm, filters );
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else
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res = lzma_stream_decoder( &strm, UINT64_MAX, 0 );
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if( res != LZMA_OK )
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break;
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while ( res != LZMA_STREAM_END )
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{
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strm.next_out = reinterpret_cast< uint8_t * >( buf );
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strm.avail_out = CHUNK_SIZE;
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res = lzma_code( &strm, LZMA_RUN );
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str.append( buf, CHUNK_SIZE - strm.avail_out );
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if( res != LZMA_OK && res != LZMA_STREAM_END )
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break;
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}
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lzma_end( &strm );
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if( res != LZMA_STREAM_END )
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str.clear();
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break;
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}
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return str;
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}
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string decompressZstd( const char *bufptr, unsigned length )
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{
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string str;
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char buf[CHUNK_SIZE];
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size_t res;
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// string err;
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ZSTD_DStream *zds;
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ZSTD_inBuffer in_buf = { bufptr, length, 0 };
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ZSTD_outBuffer out_buf = { buf, CHUNK_SIZE, 0 };
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zds = ZSTD_createDStream();
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if( !zds )
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return str;
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res = ZSTD_initDStream( zds );
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if( ZSTD_isError( res ) )
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{
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// err = string( ZSTD_getErrorName( res ) );
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ZSTD_freeDStream( zds );
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return str;
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}
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do
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{
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out_buf.pos = 0;
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res = ZSTD_decompressStream( zds, &out_buf, &in_buf );
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if( ZSTD_isError( res ) )
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{
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// err = string( ZSTD_getErrorName( res ) );
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ZSTD_freeDStream( zds );
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return string();
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}
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str.append( buf, out_buf.pos );
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}
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while( out_buf.pos >= out_buf.size );
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ZSTD_freeDStream( zds );
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return str;
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}
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#endif
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