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164 lines
5.9 KiB
C++
164 lines
5.9 KiB
C++
// $Id$
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/***********************************************************************
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Moses - factored phrase-based language decoder
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Copyright (C) 2006 University of Edinburgh
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This library 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 2.1 of the License, or (at your option) any later version.
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This library 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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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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***********************************************************************/
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#ifndef moses_TranslationOptionCollection_h
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#define moses_TranslationOptionCollection_h
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#include <list>
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#include <boost/unordered_map.hpp>
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#include "TypeDef.h"
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#include "TranslationOption.h"
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#include "TranslationOptionList.h"
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#include "SquareMatrix.h"
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#include "WordsBitmap.h"
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#include "PartialTranslOptColl.h"
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#include "DecodeStep.h"
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#include "InputPath.h"
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namespace Moses
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{
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class LanguageModel;
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class FactorCollection;
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class GenerationDictionary;
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class InputType;
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class FactorMask;
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class Word;
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class DecodeGraph;
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class PhraseDictionary;
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class InputPath;
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/** Contains all phrase translations applicable to current input type (a sentence or confusion network).
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* A key insight into efficient decoding is that various input
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* conditions (trelliss, factored input, normal text, xml markup)
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* all lead to the same decoding algorithm: hypotheses are expanded
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* by applying phrase translations, which can be precomputed.
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*
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* The precomputation of a collection of instances of such TranslationOption
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* depends on the input condition, but they all are presented to
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* decoding algorithm in the same form, using this class.
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*
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* This is a abstract class, and cannot be instantiated directly. Instantiate 1 of the inherited
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* classes instead, for a particular input type
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**/
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class TranslationOptionCollection
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{
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friend std::ostream& operator<<(std::ostream& out, const TranslationOptionCollection& coll);
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TranslationOptionCollection(const TranslationOptionCollection&); /*< no copy constructor */
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protected:
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std::vector< std::vector< TranslationOptionList > > m_collection; /*< contains translation options */
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InputType const &m_source; /*< reference to the input */
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SquareMatrix m_futureScore; /*< matrix of future costs for contiguous parts (span) of the input */
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const size_t m_maxNoTransOptPerCoverage; /*< maximum number of translation options per input span */
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const float m_translationOptionThreshold; /*< threshold for translation options with regard to best option for input span */
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std::vector<const Phrase*> m_unksrcs;
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InputPathList m_inputPathQueue;
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TranslationOptionCollection(InputType const& src, size_t maxNoTransOptPerCoverage,
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float translationOptionThreshold);
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void CalcFutureScore();
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//! Force a creation of a translation option where there are none for a particular source position.
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void ProcessUnknownWord();
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//! special handling of ONE unknown words.
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virtual void ProcessOneUnknownWord(const InputPath &inputPath, size_t sourcePos, size_t length = 1, const ScorePair *inputScores = NULL);
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//! pruning: only keep the top n (m_maxNoTransOptPerCoverage) elements */
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void Prune();
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//! sort all trans opt in each list for cube pruning */
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void Sort();
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//! list of trans opt for a particular span
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TranslationOptionList &GetTranslationOptionList(size_t startPos, size_t endPos);
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const TranslationOptionList &GetTranslationOptionList(size_t startPos, size_t endPos) const;
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void Add(TranslationOption *translationOption);
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//! implemented by inherited class, called by this class
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virtual void ProcessUnknownWord(size_t sourcePos)=0;
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void EvaluateWithSource();
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void CacheLexReordering();
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void GetTargetPhraseCollectionBatch();
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void CreateTranslationOptionsForRange(
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const DecodeGraph &decodeGraph
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, size_t startPos
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, size_t endPos
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, bool adhereTableLimit
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, size_t graphInd
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, InputPath &inputPath);
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void SetInputScore(const InputPath &inputPath, PartialTranslOptColl &oldPtoc);
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public:
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virtual ~TranslationOptionCollection();
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//! input sentence/confusion network
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const InputType& GetSource() const {
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return m_source;
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}
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//!List of unknowns (OOVs)
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const std::vector<const Phrase*>& GetUnknownSources() const {
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return m_unksrcs;
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}
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//! Create all possible translations from the phrase tables
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virtual void CreateTranslationOptions();
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//! Create translation options that exactly cover a specific input span.
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virtual void CreateTranslationOptionsForRange(const DecodeGraph &decodeStepList
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, size_t startPosition
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, size_t endPosition
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, bool adhereTableLimit
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, size_t graphInd) = 0;
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//!Check if this range has XML options
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virtual bool HasXmlOptionsOverlappingRange(size_t startPosition, size_t endPosition) const;
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//! Check if a subsumed XML option constraint is satisfied
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virtual bool ViolatesXmlOptionsConstraint(size_t startPosition, size_t endPosition, TranslationOption *transOpt) const;
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//! Create xml-based translation options for the specific input span
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virtual void CreateXmlOptionsForRange(size_t startPosition, size_t endPosition);
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//! returns future cost matrix for sentence
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inline virtual const SquareMatrix &GetFutureScore() const {
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return m_futureScore;
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}
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//! list of trans opt for a particular span
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const TranslationOptionList &GetTranslationOptionList(const WordsRange &coverage) const {
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return GetTranslationOptionList(coverage.GetStartPos(), coverage.GetEndPos());
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}
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TO_STRING();
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};
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}
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#endif
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