mirror of
https://github.com/moses-smt/mosesdecoder.git
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3f8d8d7842
This will improve the portability. We also change the interface of I/O functions for ease of the development unit tests.
133 lines
3.2 KiB
C++
133 lines
3.2 KiB
C++
/*
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* ScoreData.cpp
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* mert - Minimum Error Rate Training
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*
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* Created by Nicola Bertoldi on 13/05/08.
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*
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*/
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#include "ScoreData.h"
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#include <fstream>
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#include "Scorer.h"
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#include "Util.h"
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#include "FileStream.h"
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ScoreData::ScoreData(Scorer* scorer) :
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m_scorer(scorer)
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{
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m_score_type = m_scorer->getName();
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// This is not dangerous: we don't use the this pointer in SetScoreData.
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m_scorer->setScoreData(this);
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m_num_scores = m_scorer->NumberOfScores();
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// TRACE_ERR("ScoreData: m_num_scores: " << m_num_scores << std::endl);
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}
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void ScoreData::save(ostream* os, bool bin)
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{
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for (scoredata_t::iterator i = m_array.begin();
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i != m_array.end(); ++i) {
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i->save(os, m_score_type, bin);
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}
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}
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void ScoreData::save(const string &file, bool bin)
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{
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if (file.empty()) return;
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TRACE_ERR("saving the array into " << file << endl);
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// matches a stream with a file. Opens the file.
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ofstream ofs(file.c_str(), ios::out);
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ostream* os = &ofs;
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save(os, bin);
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ofs.close();
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}
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void ScoreData::save(bool bin) {
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save(&cout, bin);
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}
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void ScoreData::load(istream* is)
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{
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ScoreArray entry;
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while (!is->eof()) {
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if (!is->good()) {
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cerr << "ERROR ScoreData::load inFile.good()" << endl;
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}
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entry.clear();
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entry.load(is);
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if (entry.size() == 0) {
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break;
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}
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add(entry);
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}
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}
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void ScoreData::load(const string &file)
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{
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TRACE_ERR("loading score data from " << file << endl);
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inputfilestream input_stream(file); // matches a stream with a file. Opens the file
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if (!input_stream) {
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throw runtime_error("Unable to open score file: " + file);
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}
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istream* is = &input_stream;
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load(is);
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input_stream.close();
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}
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void ScoreData::add(ScoreArray& e)
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{
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if (exists(e.getIndex())) { // array at position e.getIndex() already exists
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//enlarge array at position e.getIndex()
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size_t pos = getIndex(e.getIndex());
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m_array.at(pos).merge(e);
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} else {
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m_array.push_back(e);
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setIndex();
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}
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}
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void ScoreData::add(const ScoreStats& e, const string& sent_idx)
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{
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if (exists(sent_idx)) { // array at position e.getIndex() already exists
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// Enlarge array at position e.getIndex()
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size_t pos = getIndex(sent_idx);
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// TRACE_ERR("Inserting in array " << sent_idx << std::endl);
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m_array.at(pos).add(e);
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// TRACE_ERR("size: " << size() << " -> " << a.size() << std::endl);
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} else {
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// TRACE_ERR("Creating a new entry in the array" << std::endl);
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ScoreArray a;
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a.NumberOfScores(m_num_scores);
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a.add(e);
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a.setIndex(sent_idx);
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size_t idx = m_array.size();
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m_array.push_back(a);
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m_index_to_array_name[idx] = sent_idx;
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m_array_name_to_index[sent_idx]=idx;
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// TRACE_ERR("size: " << size() << " -> " << a.size() << std::endl);
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}
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}
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bool ScoreData::check_consistency() const
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{
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if (m_array.size() == 0)
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return true;
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for (scoredata_t::const_iterator i = m_array.begin(); i != m_array.end(); ++i)
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if (!i->check_consistency()) return false;
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return true;
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}
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void ScoreData::setIndex()
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{
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size_t j = 0;
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for (scoredata_t::iterator i = m_array.begin(); i != m_array.end(); ++i) {
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m_index_to_array_name[j] = i->getIndex();
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m_array_name_to_index[i->getIndex()]=j;
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j++;
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}
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}
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