mirror of
https://github.com/xiaoyifang/goldendict-ng.git
synced 2024-12-18 03:14:06 +00:00
652 lines
17 KiB
C++
652 lines
17 KiB
C++
/* This file is (c) 2008-2012 Konstantin Isakov <ikm@goldendict.org>
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* Part of GoldenDict. Licensed under GPLv3 or later, see the LICENSE file */
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#include "lsa.hh"
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#include "file.hh"
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#include "iconv.hh"
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#include "folding.hh"
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#include "utf8.hh"
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#include "btreeidx.hh"
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#include "fsencoding.hh"
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#include "audiolink.hh"
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#include "gddebug.hh"
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#include <set>
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#include <string>
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#ifdef _MSC_VER
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#include <stub_msvc.h>
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#endif
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#define OV_EXCLUDE_STATIC_CALLBACKS
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#include <vorbis/vorbisfile.h>
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#include <QDir>
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#include <QUrl>
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#include <QDebug>
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#include <QFile>
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#include "utils.hh"
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namespace Lsa {
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using std::string;
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using gd::wstring;
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using std::map;
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using std::multimap;
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using std::set;
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using BtreeIndexing::WordArticleLink;
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using BtreeIndexing::IndexedWords;
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using BtreeIndexing::IndexInfo;
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namespace {
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DEF_EX( exInvalidData, "Invalid data encountered", Dictionary::Ex )
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DEF_EX( exFailedToOpenVorbisData, "Failed to open Vorbis data", Dictionary::Ex )
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DEF_EX( exFailedToSeekInVorbisData, "Failed to seek in Vorbis data", Dictionary::Ex )
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DEF_EX( exFailedToRetrieveVorbisInfo, "Failed to retrieve Vorbis info", Dictionary::Ex )
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enum
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{
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Signature = 0x5841534c, // LSAX on little-endian, XASL on big-endian
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CurrentFormatVersion = 5
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};
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struct IdxHeader
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{
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uint32_t signature; // First comes the signature, BGLX
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uint32_t formatVersion; // File format version, currently 1.
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uint32_t soundsCount; // Total number of sounds, for informative purposes only
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uint32_t vorbisOffset; // Offset of the vorbis file which contains all snds
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uint32_t indexBtreeMaxElements; // Two fields from IndexInfo
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uint32_t indexRootOffset;
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}
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#ifndef _MSC_VER
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__attribute__((packed))
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#endif
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;
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bool indexIsOldOrBad( string const & indexFile )
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{
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File::Class idx( indexFile, "rb" );
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IdxHeader header;
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return idx.readRecords( &header, sizeof( header ), 1 ) != 1 ||
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header.signature != Signature ||
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header.formatVersion != CurrentFormatVersion;
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}
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string stripExtension( string const & str )
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{
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if ( str.size() > 3 &&
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( strcasecmp( str.c_str() + ( str.size() - 4 ), ".wav" ) == 0 ) )
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return string( str, 0, str.size() - 4 );
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else
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return str;
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}
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struct Entry
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{
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string name;
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uint32_t samplesLength;
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uint32_t samplesOffset;
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public:
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// Reads an entry from the file's current position
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Entry( File::Class & f );
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};
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Entry::Entry( File::Class & f )
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{
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bool firstEntry = ( f.tell() == 13 );
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// Read the entry's filename
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size_t read = 0;
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vector< uint16_t > filenameBuffer( 64 );
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for( ; ; ++read )
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{
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if ( filenameBuffer.size() <= read )
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filenameBuffer.resize( read + 64 );
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f.read( &filenameBuffer[ read ], 2 );
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if ( filenameBuffer[ read ] == 0xD )
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{
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if ( f.read< uint16_t >() != 0xA )
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throw exInvalidData();
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// Filename ending marker
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break;
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}
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}
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// Skip zero or ff, or just ff.
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if ( uint8_t x = f.read< uint8_t >() )
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{
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if ( x != 0xFF )
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throw exInvalidData();
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}
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else
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if ( f.read< uint8_t >() != 0xFF )
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throw exInvalidData();
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if ( !firstEntry )
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{
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// For all entries but the first one, read its offset in
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// samples.
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samplesOffset = f.read< uint32_t >();
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if ( f.read< uint8_t >() != 0xFF )
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throw exInvalidData();
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}
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else
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samplesOffset = 0;
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// Read the size of the recording, in samples
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samplesLength = f.read< uint32_t >();
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name = Iconv::toUtf8( Iconv::Utf16Le, &filenameBuffer.front(),
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read * sizeof( uint16_t ) );
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}
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class LsaDictionary: public BtreeIndexing::BtreeDictionary
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{
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Mutex idxMutex;
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File::Class idx;
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IdxHeader idxHeader;
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public:
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LsaDictionary( string const & id, string const & indexFile,
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vector< string > const & dictionaryFiles );
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virtual string getName() throw();
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virtual map< Dictionary::Property, string > getProperties() throw()
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{ return map< Dictionary::Property, string >(); }
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virtual unsigned long getArticleCount() throw()
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{ return idxHeader.soundsCount; }
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virtual unsigned long getWordCount() throw()
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{ return getArticleCount(); }
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virtual sptr< Dictionary::DataRequest > getArticle( wstring const &,
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vector< wstring > const & alts,
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wstring const &,
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bool ignoreDiacritics )
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;
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virtual sptr< Dictionary::DataRequest > getResource( string const & name )
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;
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protected:
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virtual void loadIcon() throw();
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};
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string LsaDictionary::getName() throw()
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{
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string result = FsEncoding::basename( getDictionaryFilenames()[ 0 ] );
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// Strip the extension
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result.erase( result.rfind( '.' ) );
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return result;
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}
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LsaDictionary::LsaDictionary( string const & id,
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string const & indexFile,
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vector< string > const & dictionaryFiles ):
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BtreeDictionary( id, dictionaryFiles ),
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idx( indexFile, "rb" ),
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idxHeader( idx.read< IdxHeader >() )
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{
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// Initialize the index
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openIndex( IndexInfo( idxHeader.indexBtreeMaxElements,
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idxHeader.indexRootOffset ),
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idx, idxMutex );
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}
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sptr< Dictionary::DataRequest > LsaDictionary::getArticle( wstring const & word,
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vector< wstring > const & alts,
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wstring const &,
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bool ignoreDiacritics )
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{
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vector< WordArticleLink > chain = findArticles( word, ignoreDiacritics );
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for( unsigned x = 0; x < alts.size(); ++x )
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{
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/// Make an additional query for each alt
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vector< WordArticleLink > altChain = findArticles( alts[ x ], ignoreDiacritics );
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chain.insert( chain.end(), altChain.begin(), altChain.end() );
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}
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multimap< wstring, string > mainArticles, alternateArticles;
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set< uint32_t > articlesIncluded; // Some synonims make it that the articles
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// appear several times. We combat this
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// by only allowing them to appear once.
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wstring wordCaseFolded = Folding::applySimpleCaseOnly( word );
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if( ignoreDiacritics )
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wordCaseFolded = Folding::applyDiacriticsOnly( wordCaseFolded );
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for( unsigned x = 0; x < chain.size(); ++x )
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{
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if ( articlesIncluded.find( chain[ x ].articleOffset ) != articlesIncluded.end() )
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continue; // We already have this article in the body.
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// Ok. Now, does it go to main articles, or to alternate ones? We list
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// main ones first, and alternates after.
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// We do the case-folded comparison here.
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wstring headwordStripped =
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Folding::applySimpleCaseOnly( Utf8::decode( chain[ x ].word ) );
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if( ignoreDiacritics )
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headwordStripped = Folding::applyDiacriticsOnly( headwordStripped );
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multimap< wstring, string > & mapToUse =
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( wordCaseFolded == headwordStripped ) ?
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mainArticles : alternateArticles;
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mapToUse.insert( std::pair< wstring, string >(
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Folding::applySimpleCaseOnly( Utf8::decode( chain[ x ].word ) ), chain[ x ].word ) );
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articlesIncluded.insert( chain[ x ].articleOffset );
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}
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if ( mainArticles.empty() && alternateArticles.empty() )
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return new Dictionary::DataRequestInstant( false ); // No such word
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string result;
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multimap< wstring, string >::const_iterator i;
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result += "<table class=\"lsa_play\">";
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for( i = mainArticles.begin(); i != mainArticles.end(); ++i )
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{
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result += "<tr>";
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QUrl url;
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url.setScheme( "gdau" );
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url.setHost( QString::fromUtf8( getId().c_str() ) );
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url.setPath( Utils::Url::ensureLeadingSlash( QString::fromUtf8( i->second.c_str() ) ) );
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string ref = string( "\"" ) + url.toEncoded().data() + "\"";
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result += addAudioLink( ref, getId() );
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result += "<td><a href=" + ref + "><img src=\"qrcx://localhost/icons/playsound.png\" border=\"0\" alt=\"Play\"/></a></td>";
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result += "<td><a href=" + ref + ">" + i->second + "</a></td>";
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result += "</tr>";
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}
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for( i = alternateArticles.begin(); i != alternateArticles.end(); ++i )
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{
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result += "<tr>";
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QUrl url;
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url.setScheme( "gdau" );
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url.setHost( QString::fromUtf8( getId().c_str() ) );
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url.setPath( Utils::Url::ensureLeadingSlash( QString::fromUtf8( i->second.c_str() ) ) );
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string ref = string( "\"" ) + url.toEncoded().data() + "\"";
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result += addAudioLink( ref, getId() );
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result += "<td><a href=" + ref + "><img src=\"qrcx://localhost/icons/playsound.png\" border=\"0\" alt=\"Play\"/></a></td>";
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result += "<td><a href=" + ref + ">" + i->second + "</a></td>";
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result += "</tr>";
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}
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result += "</table>";
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Dictionary::DataRequestInstant * ret =
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new Dictionary::DataRequestInstant( true );
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ret->getData().resize( result.size() );
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memcpy( &(ret->getData().front()), result.data(), result.size() );
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return ret;
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}
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/// This wraps around file operations
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struct ShiftedVorbis
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{
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QFile & f;
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size_t shift;
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ShiftedVorbis( QFile & f_, size_t shift_ ): f( f_ ), shift( shift_ )
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{}
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static size_t read( void * ptr, size_t size, size_t nmemb, void * datasource );
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static int seek( void * datasource, ogg_int64_t offset, int whence );
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static long tell( void * datasource );
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static ov_callbacks callbacks;
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};
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size_t ShiftedVorbis::read( void * ptr, size_t size, size_t nmemb,
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void * datasource )
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{
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ShiftedVorbis * sv = ( ShiftedVorbis * ) datasource;
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return sv->f.read( reinterpret_cast<char *>( ptr ), size * nmemb );
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}
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int ShiftedVorbis::seek( void * datasource, ogg_int64_t offset, int whence )
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{
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ShiftedVorbis * sv = ( ShiftedVorbis * ) datasource;
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if ( whence == SEEK_SET )
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offset += sv->shift;
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if( whence == SEEK_CUR )
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offset += sv->f.pos();
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if( whence == SEEK_END )
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offset += sv->f.size();
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return sv->f.seek( offset );
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}
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long ShiftedVorbis::tell( void * datasource )
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{
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ShiftedVorbis * sv = ( ShiftedVorbis * ) datasource;
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long result = sv->f.pos();
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if ( result != -1 )
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result -= sv->shift;
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return result;
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}
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ov_callbacks ShiftedVorbis::callbacks = { ShiftedVorbis::read,
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ShiftedVorbis::seek,
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NULL,
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ShiftedVorbis::tell };
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// A crude .wav header which is sufficient for our needs
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struct WavHeader
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{
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char riff[ 4 ]; // RIFF
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uint32_t riffLength;
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char waveAndFmt[ 8 ]; // WAVEfmt%20
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uint32_t fmtLength; // 16
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uint16_t formatTag; // 1
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uint16_t channels; // 1 or 2
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uint32_t samplesPerSec;
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uint32_t bytesPerSec;
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uint16_t blockAlign;
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uint16_t bitsPerSample; // 16
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char data[ 4 ]; // data
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uint32_t dataLength;
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}
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#ifndef _MSC_VER
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__attribute__((packed))
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#endif
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;
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sptr< Dictionary::DataRequest > LsaDictionary::getResource( string const & name )
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{
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// See if the name ends in .wav. Remove that extension then
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string strippedName =
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( name.size() > 3 && ( name.compare( name.size() - 4, 4, ".wav" ) == 0 ) ) ?
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string( name, 0, name.size() - 4 ) : name;
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vector< WordArticleLink > chain = findArticles( Utf8::decode( strippedName ) );
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if ( chain.empty() )
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return new Dictionary::DataRequestInstant( false ); // No such resource
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File::Class f( getDictionaryFilenames()[ 0 ], "rb" );
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f.seek( chain[ 0 ].articleOffset );
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Entry e( f );
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f.seek( idxHeader.vorbisOffset );
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ShiftedVorbis sv( f.file(), idxHeader.vorbisOffset );
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OggVorbis_File vf;
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int result = ov_open_callbacks( &sv, &vf, 0, 0, ShiftedVorbis::callbacks );
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if ( result )
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throw exFailedToOpenVorbisData();
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if ( ov_pcm_seek( &vf, e.samplesOffset ) )
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throw exFailedToSeekInVorbisData();
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vorbis_info * vi = ov_info( &vf, -1 );
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if ( !vi )
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{
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ov_clear( &vf );
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throw exFailedToRetrieveVorbisInfo();
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}
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sptr< Dictionary::DataRequestInstant > dr = new
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Dictionary::DataRequestInstant( true );
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vector< char > & data = dr->getData();
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data.resize( sizeof( WavHeader ) + e.samplesLength * 2 );
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WavHeader * wh = (WavHeader *)&data.front();
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memset( wh, 0, sizeof( *wh ) );
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memcpy( wh->riff, "RIFF", 4 );
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wh->riffLength = data.size() - 8;
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memcpy( wh->waveAndFmt, "WAVEfmt ", 8 );
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wh->fmtLength = 16;
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wh->formatTag = 1;
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wh->channels = vi->channels;
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wh->samplesPerSec = vi->rate;
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wh->bytesPerSec = vi->channels * vi->rate * 2;
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wh->blockAlign = vi->channels * 2;
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wh->bitsPerSample = 16;
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memcpy( wh->data, "data", 4 );
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wh->dataLength = data.size() - sizeof( *wh );
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// Now decode vorbis to the rest of the block
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char * ptr = &data.front() + sizeof( *wh );
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int left = data.size() - sizeof( *wh );
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int bitstream = 0;
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while( left )
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{
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long result = ov_read( &vf, ptr, left, 0, 2, 1, &bitstream );
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if ( result <= 0 )
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{
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gdWarning( "Failed to read Vorbis data (code = %ld)\n", result );
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memset( ptr, 0, left );
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break;
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}
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if ( result > left )
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{
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GD_FDPRINTF( stderr, "Warning: Vorbis decode returned more data than requested.\n" );
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result = left;
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}
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ptr += result;
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left -= result;
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}
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ov_clear( &vf );
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return dr;
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}
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void LsaDictionary::loadIcon() throw()
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{
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if ( dictionaryIconLoaded )
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return;
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QString fileName =
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QDir::fromNativeSeparators( FsEncoding::decode( getDictionaryFilenames()[ 0 ].c_str() ) );
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// Remove the extension
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fileName.chop( 3 );
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if( !loadIconFromFile( fileName ) )
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{
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// Load failed -- use default icons
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dictionaryNativeIcon = dictionaryIcon = QIcon(":/icons/playsound_full.png");
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}
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dictionaryIconLoaded = true;
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}
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}
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vector< sptr< Dictionary::Class > > makeDictionaries(
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vector< string > const & fileNames,
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string const & indicesDir,
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Dictionary::Initializing & initializing )
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{
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vector< sptr< Dictionary::Class > > dictionaries;
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for( vector< string >::const_iterator i = fileNames.begin(); i != fileNames.end();
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++i )
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{
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/// Only allow .dat and .lsa extensions to save scanning time
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if ( i->size() < 4 ||
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( strcasecmp( i->c_str() + ( i->size() - 4 ), ".dat" ) != 0 &&
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strcasecmp( i->c_str() + ( i->size() - 4 ), ".lsa" ) != 0 ) )
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continue;
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try
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{
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File::Class f( *i, "rb" );
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/// Check the signature
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char buf[ 9 ];
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if ( f.readRecords( buf, 9, 1 ) != 1 || memcmp( buf, "L\09\0S\0A\0\xff", 9 ) != 0 )
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{
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// The file is too short or the signature doesn't match -- skip this
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// file
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continue;
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}
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vector< string > dictFiles( 1, *i );
|
|
|
|
string dictId = Dictionary::makeDictionaryId( dictFiles );
|
|
|
|
string indexFile = indicesDir + dictId;
|
|
|
|
if ( Dictionary::needToRebuildIndex( dictFiles, indexFile ) || indexIsOldOrBad( indexFile ) )
|
|
{
|
|
// Building the index
|
|
|
|
gdDebug( "Lsa: Building the index for dictionary: %s\n", i->c_str() );
|
|
|
|
initializing.indexingDictionary( FsEncoding::basename( *i ) );
|
|
|
|
File::Class idx( indexFile, "wb" );
|
|
|
|
IdxHeader idxHeader;
|
|
|
|
memset( &idxHeader, 0, sizeof( idxHeader ) );
|
|
|
|
// We write a dummy header first. At the end of the process the header
|
|
// will be rewritten with the right values.
|
|
|
|
idx.write( idxHeader );
|
|
|
|
IndexedWords indexedWords;
|
|
|
|
/// XXX handle big-endian machines here!
|
|
uint32_t entriesCount = f.read< uint32_t >();
|
|
|
|
GD_DPRINTF( "%s: %u entries\n", i->c_str(), entriesCount );
|
|
|
|
idxHeader.soundsCount = entriesCount;
|
|
|
|
vector< uint16_t > filenameBuffer;
|
|
|
|
while( entriesCount-- )
|
|
{
|
|
uint32_t offset = f.tell();
|
|
|
|
Entry e( f );
|
|
|
|
|
|
// Remove the extension, no need for that in the index
|
|
e.name = stripExtension( e.name );
|
|
|
|
GD_DPRINTF( "Read filename %s (%u at %u)<\n", e.name.c_str(), e.samplesLength, e.samplesOffset );
|
|
|
|
// Insert new entry into an index
|
|
|
|
indexedWords.addWord( Utf8::decode( e.name ), offset );
|
|
}
|
|
|
|
idxHeader.vorbisOffset = f.tell();
|
|
|
|
// Make sure there's really some vobis data there
|
|
|
|
char buf[ 4 ];
|
|
|
|
f.read( buf, sizeof( buf ) );
|
|
|
|
if ( strncmp( buf, "OggS", 4 ) != 0 )
|
|
throw exInvalidData();
|
|
|
|
// Build the index
|
|
|
|
IndexInfo idxInfo = BtreeIndexing::buildIndex( indexedWords, idx );
|
|
|
|
idxHeader.indexBtreeMaxElements = idxInfo.btreeMaxElements;
|
|
idxHeader.indexRootOffset = idxInfo.rootOffset;
|
|
|
|
// That concludes it. Update the header.
|
|
|
|
idxHeader.signature = Signature;
|
|
idxHeader.formatVersion = CurrentFormatVersion;
|
|
|
|
idx.rewind();
|
|
|
|
idx.write( &idxHeader, sizeof( idxHeader ) );
|
|
}
|
|
|
|
dictionaries.push_back( new LsaDictionary( dictId,
|
|
indexFile,
|
|
dictFiles ) );
|
|
}
|
|
catch( std::exception & e )
|
|
{
|
|
gdWarning( "Lingvo's LSA reading failed: %s, error: %s\n",
|
|
i->c_str(), e.what() );
|
|
}
|
|
}
|
|
|
|
return dictionaries;
|
|
}
|
|
|
|
|
|
}
|