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linguakit.perl
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linguakit.perl
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#!/usr/bin/env perl
use strict;
use warnings;
use File::Basename;
use lib dirname(__FILE__);
binmode STDIN, ':utf8';
binmode STDOUT, ':utf8';
binmode STDERR, ':utf8';
use utf8;
push @ARGV, "-h" if $#ARGV < 0;
#Linguakit dependencies
push(@INC, dirname(__FILE__)."/lib");
my $deps = 1;
if (!eval{require Getopt::ArgParse;}){
warn "Please install Getopt::ArgParse module: cpan Getopt::ArgParse\n";
$deps = 0;
}
if (!eval{require Storable;}){
warn "Please install Storable module: cpan Storable\n";
$deps = 0;
}
if (!eval{require PerlIO::gzip;}){
warn "WARNING PerlIO::gzip module not installed, use 'cpan PerlIO::gzip' to solve\n";
}
if (!eval{require LWP::UserAgent;}){
warn "WARNING LWP::UserAgent module not installed, use 'cpan LWP::UserAgent' to solve\n";
}
if (!eval{require HTTP::Request::Common;}){
warn "WARNING HTTP::Request::Common module not installed, use 'cpan HTTP::Request::Common' to solve\n";
}
exit 1 if !$deps;
#Custom text
my $name = "linguakit";
my $shortDescription = "";
my $longDescription = "";
my $foot = "";
my $errorPrint = "$name: ";
my $parser = Getopt::ArgParse -> new_parser( prog => $name, help => $shortDescription, description => $longDescription, epilog => $foot, error_prefix => $errorPrint);
my @common_args = (
['lang', type => 'Scalar', dest => 'lang', required => 1, metavar => "<lang>", help => "Choose the language", choices_i => ["en", "es", "gl", "pt", "histgz"], default => "en"],
['input', type => 'Scalar', dest => 'input', metavar => "<input>", help => "Path of the input(a plain text file or gz/zip) by default STDIN"],
['-s', type => 'Bool', dest => 'string', help => "Changes input from a file path to a text string"]
);
#Modulos
$parser->add_subparsers(title => 'Modules', description => '');
my $dep= $parser->add_parser('dep', help => "Dependency syntactic analysis");
$dep->add_args(@common_args);
$dep->add_argument('-a', type => 'Bool', dest => 'a', help => "Simple dependency analysis (by default syntactic output");
$dep->add_argument('-fa', type => 'Bool', dest => 'fa', help => "Full dependency analysis");
$dep->add_argument('-c', type => 'Bool', dest => 'c', help => "Tagged text with syntactic information (for correction rules)");
$dep->add_argument('-conll', type => 'Bool', dest => 'conll', help => "CoNLL output style");
my $tagger= $parser->add_parser('tagger', help => "Part-of-speech tagging");
$tagger->add_args(@common_args);
$tagger->add_argument('-noner', type => 'Bool', dest => 'noner', help => "No NER or NEC is processed (by default PoS tagger output)");
$tagger->add_argument('-ner', type => 'Bool', dest => 'ner', help => "PoS tagger with Named Entity Recognition - NER (only with 'tagger' module)");
$tagger->add_argument('-nec', type => 'Bool', dest => 'nec', help => "PoS tagger with Named Entity Classification - NEC (only with 'tagger' module)");
my $mwe= $parser->add_parser('mwe', help => "Multiword extraction");
$mwe->add_args(@common_args);
$mwe->add_argument('-chi', type => 'Bool', dest => 'chi', help => "Chi-square co-occurrence measure (by default)");
$mwe->add_argument('-log', type => 'Bool', dest => 'log', help => "Loglikelihood ");
$mwe->add_argument('-scp', type => 'Bool', dest => 'scp', help => "Symmetrical conditional probability");
$mwe->add_argument('-mi', type => 'Bool', dest => 'mi', help => "Mutual information ");
$mwe->add_argument('-cooc', type => 'Bool', dest => 'cooc', help => "Co-occurrence counting");
my $key= $parser->add_parser('key', help => "Keyword extraction");
$key->add_args(@common_args);
my $recog= $parser->add_parser('recog', help => "Language recognition");
$recog->add_args(@common_args[1..2]);
my $sent= $parser->add_parser('sent', help => "Sentiment analysis");
$sent->add_args(@common_args);
my $rel= $parser->add_parser('rel', help => "Relation extraction");
$rel->add_args(@common_args);
my $tok= $parser->add_parser('tok', help => "Tokenizer");
$tok->add_args(@common_args);
$tok->add_argument('-split', type => 'Bool', dest => 'split', help => "Tokenization with splitting");
$tok->add_argument('-sort', type => 'Bool', dest => 'sort', help => "Tokenization with tokens sorted by frequency");
my $seg= $parser->add_parser('seg', help => "Sentence segmentation");
$seg->add_args(@common_args);
my $lem= $parser->add_parser('lem', help => "Lemmatization");
$lem->add_args(@common_args);
my $kwic= $parser->add_parser('kwic', help => "Keyword in context (concordances)");
$kwic->add_args(@common_args);
$kwic->add_argument('-tokens', type => 'Scalar', dest => 'tokens', required => 1 ,help => "the keyword to be searched");
my $link= $parser->add_parser('link', help => "Entity linking and semantic annotation");
$link->add_args(@common_args);
$link->add_argument('-json', type => 'Bool', dest => 'json', help => "Json output format of entity linking (by default)");
$link->add_argument('-xml', type => 'Bool', dest => 'xml', help => "Xml output format of entity linking");
my $aval= $parser->add_parser('aval', help => "Language checker: Avalingua");
$aval->add_args(@common_args);
$aval->add_argument('-json', type => 'Bool', dest => 'json', help => "Json output format of language checker (by default)");
$aval->add_argument('-xml', type => 'Bool', dest => 'xml', help => "Xml output format of language checker");
my $sum= $parser->add_parser('sum', help => "Text summarizer");
$sum->add_args(@common_args);
$sum->add_argument('-p', type => 'Scalar', dest => 'percentage', help => "Percentage of the input text that will be summarized (by default 10%)");
my $conj= $parser->add_parser('conj', help => "Verb conjugator");
$conj->add_args(@common_args);
$conj->add_argument('-pe', type => 'Bool', dest => 'pe', help => "The verb conjugator uses European Portuguese (by default)");
$conj->add_argument('-pb', type => 'Bool', dest => 'pb', help => "The verb conjugator uses Brasilian Portuguese");
$conj->add_argument('-pen', type => 'Bool', dest => 'pen', help => "The verb conjugator uses European Portuguese before the spell agreement");
$conj->add_argument('-pbn', type => 'Bool', dest => 'pbn', help => "The verb conjugator uses Brasilian Portuguese before the spell agreement");
my $coref= $parser->add_parser('coref', help => "Named entity coreference solver");
$coref->add_args(@common_args);
$coref->add_argument('-crnec', type => 'Bool', dest => 'crnec', help => "NEC correction with NE Coreference Resolution");
my $args = $parser->parse_args();
my $LING = $args->get_attr("lang")?$args->lang:"en";
my $MOD = $args->current_command();
my $FILE = $args->get_attr("input");
my $STRING = $args->get_attr("string");
###################################################################
# Script to use different linguistic tools, for instance:
# - - dependency parser (DepPattern)
# - - PoS tagger + NER + NEC
# - - Sentiment Analysis
# - - Multiword Extractor (GaleXtra)
#
# Pablo Gamallo
# ProLNat@GE Group, CiTIUS
# University of Santiago de Compostela
###################################################################
############################
# Config
############################
my $PROGS = "scripts";
my $DIRPARSER = "parsers";
my $NAMEPARSER ="$DIRPARSER/parserDefault-$LING.perl";
my $FILTER ="$PROGS/AdapterFreeling-${LING}.perl";
my $CONLL ="$PROGS/saidaCoNLL-fa.perl";
my $SENT = "tagger/$LING/sentences-${LING}_exe.perl";
my $TOK = "tagger/$LING/tokens-${LING}_exe.perl";
my $SPLIT = "tagger/$LING/splitter-${LING}_exe.perl";
my $LEMMA = "tagger/$LING/lemma-${LING}_exe.perl";
my $NER = "tagger/$LING/ner-${LING}_exe.perl";
my $TAGGER = "tagger/$LING/tagger-${LING}_exe.perl" ;
my $NEC = "tagger/$LING/nec-${LING}_exe.perl";
my $COREF = "tagger/coref/coref_exe.perl";
my $SENTIMENT = "sentiment/nbayes.perl";
my $MWE = "mwe/mwe.perl";
my $MWE_FILT = "mwe/filtro_galextra.perl";
my $MWE_SIX = "mwe/six_tokens.perl";
my $KEYWORD = "keywords/keywords_exe.perl";
my $REL = "triples/triples_exe.perl";
my $LINK = "linking/linking_exe.perl";
my $SUM = "summarizer/summarizer_exe.perl";
my $SENT_SPLIT = "summarizer/Sentence.pl";
my $CONJ = "conjugator/conjugator_exe.perl";
my $AVAL = "avalingua/avalingua_exe.perl";
my $QUELINGUA = "lanrecog/lanrecog.perl";
my $QUELINGUA_LEX = "lanrecog/build_lex.perl";
my $KWIC = "kwic/kwic.perl";
#######################
# EXECUTION #
#######################
my $input;
if($FILE){
if ($STRING){
open($input,"<",\$FILE);
}elsif ($FILE =~ m/\.zip$/){
open ($input, '<:gzip', $FILE) or die("'$FILE' not found.");
}else{
open ($input, '<', $FILE) or die("'$FILE' not found.");
}
binmode $input, ':utf8';
}else{
$input = \*STDIN;
}
if($MOD eq "dep"){
do $SENT;
do $TOK;
do $SPLIT;
do $NER;
do $TAGGER;
do $FILTER;
do $NAMEPARSER;
if($args->conll){ ##Conll dependency output
do $CONLL;
while(my $line = <$input>){
my $list = CONLL::conll(Parser::parse(AdapterFreeling::adapter(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), '-fa'));
for my $result (@{$list}){
print "$result\n";
}
}
}elsif($args->fa){
while(my $line = <$input>){
my $list = Parser::parse(AdapterFreeling::adapter(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), '-fa');
for my $result (@{$list}){
print "$result\n";
}
}
}elsif($args->c){
while(my $line = <$input>){
my $list = Parser::parse(AdapterFreeling::adapter(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), '-c');
for my $result (@{$list}){
print "$result\n";
}
}
}else{##by default dependency output
while(my $line = <$input>){
my $list = Parser::parse(AdapterFreeling::adapter(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), '-a');
for my $result (@{$list}){
print "$result\n";
}
}
}
}elsif($MOD eq "rel"){ ##Triples extration (Open Information Extraction)
do $SENT;
do $TOK;
do $SPLIT;
do $NER;
do $TAGGER;
do $FILTER;
do $NAMEPARSER;
do $CONLL;
do $REL;
while(my $line = <$input>){
my $list = Triples::triples(CONLL::conll(Parser::parse(AdapterFreeling::adapter(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), '-fa')));
for my $result (@{$list}){
print "$result\n";
}
}
# while(my $line = <$input>){
# my $list = Triples::triples(CONLL::conll(Parser::parse(AdapterFreeling::adapter(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), '-fa')));
# for my $result (@{$list}){
# print "$result\n";
# }
# }
}elsif($MOD eq "tagger"){
do $SENT;
do $TOK;
do $SPLIT;
do $TAGGER;
if ($args->ner){ ##PoS tagging with ner
do $NER;
while(my $line = <$input>){
my $list = Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))));
for my $result (@{$list}){
print "$result\n";
}
}
}elsif($args->nec){ ##PoS tagging with nec
do $NER;
do $NEC;
while(my $line = <$input>){
my $list = Nec::nec(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line]))))));
for my $result (@{$list}){
print "$result\n";
}
}
}else{ ##by default PoS tagging
do $LEMMA;
while(my $line = <$input>){
my $list = Tagger::tagger(Lemma::lemma(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))));
for my $result (@{$list}){
print "$result\n";
}
}
}
}elsif($MOD eq "coref"){
do $SENT;
do $TOK;
do $SPLIT;
do $NER;
do $TAGGER;
do $NEC;
do $COREF;
my $Mentions_id = {};#<ref><hash><integer>
if($args->crnec){ ##PoS tagging with Coreference Resolution and NEC correction
while(my $line = <$input>){
my $list = Coref::coref(0, 1, Nec::nec(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), 500, $Mentions_id);
for my $result (@{$list}){
print "$result\n";
}
}
}else{ ##PoS tagging with Coreference Resolution
while(my $line = <$input>){
my $list = Coref::coref(1, 0, Nec::nec(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])))))), 500, $Mentions_id);
for my $result (@{$list}){
print "$result\n";
}
}
}
}elsif($MOD eq "mwe"){ ##multiword extraction
do $SENT;
do $TOK;
do $SPLIT;
do $NER;
do $TAGGER;
do $MWE_FILT;
do $MWE_SIX;
do $MWE;
if($args->log){
# while(my $line = <$input>){
my @lines = <$input>;
my $list = Mwe::mwe(SixTokens::sixTokens(FiltroGalExtra::filtro(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([join("\n" ,@lines)]))))))),"-log",1);
print STDERR "#@lines\n";
for my $result (@{$list}){
print "$result\n";
}
# }
}elsif($args->scp){
# while(my $line = <$input>){
my @lines = <$input>;
my $list = Mwe::mwe(SixTokens::sixTokens(FiltroGalExtra::filtro(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([join("\n" ,@lines)]))))))),"-scp",1);
for my $result (@{$list}){
print "$result\n";
}
# }
}elsif($args->mi){
# while(my $line = <$input>){
my @lines = <$input>;
my $list = Mwe::mwe(SixTokens::sixTokens(FiltroGalExtra::filtro(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([join("\n" ,@lines)]))))))),"-mi",1);
for my $result (@{$list}){
print "$result\n";
}
# }
}elsif($args->cooc){
# while(my $line = <$input>){
my @lines = <$input>;
my $list = Mwe::mwe(SixTokens::sixTokens(FiltroGalExtra::filtro(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([join("\n" ,@lines)]))))))),"-cooc",1);
for my $result (@{$list}){
print "$result\n";
}
# }
}else{
# while(my $line = <$input>){
my @lines = <$input>;
my $list = Mwe::mwe(SixTokens::sixTokens(FiltroGalExtra::filtro(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([join("\n" ,@lines)]))))))),"-chi",1);
for my $result (@{$list}){
print "$result\n";
}
# }
}
}elsif($MOD eq "key"){
do $SENT;
do $TOK;
do $SPLIT;
do $NER;
do $TAGGER;
do $KEYWORD;
Keywords::load($LING);
# while(my $line = <$input>){
my @lines = <$input>;
#my $list = Keywords::keywords(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line]))))));
my $list = Keywords::keywords(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([join("\n" ,@lines)]))))));
for my $result (@{$list}){
print "$result\n";
}
#}
}elsif($MOD eq "sent"){ ##sentiment analysis
do $SENT;
do $TOK;
do $SPLIT;
do $NER;
do $TAGGER;
do $SENTIMENT;
Nbayes::load($LING);
while(my $line = <$input>){
if ($line !~ /\w/){next}
my $result = Nbayes::nbayes(Tagger::tagger(Ner::ner(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line]))))));
print "$result\n";
}
my $result = Nbayes::end();
print $result;
}elsif($MOD eq "recog"){ ##language recognition
do $SENT;
do $TOK;
do $QUELINGUA_LEX;
do $QUELINGUA;
my %Peso = ();#Line acumulator
my $ling = "en";
while(my $line = <$input>){
$ling = LanRecog::langrecog(Tokens::tokens(Sentences::sentences([$line])), \%Peso);
}
print "$ling\n";
}elsif($MOD eq "tok"){ ##tokenizer
do $SENT;
do $TOK;
if($args->sort){ ##tokenizer with sorting by frequency
do $SPLIT;
my %count = ();
while(my $line = <$input>){
my $list = Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])));
for my $token (@{$list}){
$count{$token} = $count{$token} ? $count{$token} + 1 : 1;
}
}
for my $result (sort {$count{$b} <=> $count{$a}} keys %count){
print "$count{$result}\t$result\n";
}
}elsif($args->split){
do $SPLIT;
while(my $line = <$input>){
my $list = Splitter::splitter(Tokens::tokens(Sentences::sentences([$line])));
for my $result (@{$list}){
print "$result\n";
}
}
}else{
while(my $line = <$input>){
my $list = Tokens::tokens(Sentences::sentences([$line]));
for my $result (@{$list}){
print "$result\n";
}
}
}
}elsif($MOD eq "seg"){ ##segmentation
do $SENT;
while(my $line = <$input>){
my $list = Sentences::sentences([$line]);
for my $result (@{$list}){
print "$result\n";
}
}
}elsif($MOD eq "lem"){ ##lemmatizer and PoS tagging
do $SENT;
do $TOK;
do $SPLIT;
do $LEMMA;
while(my $line = <$input>){
my $list = Lemma::lemma(Splitter::splitter(Tokens::tokens(Sentences::sentences([$line]))));
for my $result (@{$list}){
print "$result\n";
}
}
}elsif($MOD eq "kwic"){ ##key word in context (kwic) or concordances with just tokens as context
do $SENT;
do $KWIC;
while(my $line = <$input>){
my $list = Kwic::kwic(Sentences::sentences([$line]),$args->tokens);
for my $result (@{$list}){
print "$result\n";
}
}
}elsif($MOD eq "link"){ ##entity linking
do $LINK;
if($args->xml){
#while(my $line = <$input>){
my @lines = <$input>;
my $result = Linking::linking(join("\n" ,@lines),$LING,"xml");
print "$result\n"
# }
}else{
# while(my $line = <$input>){
my @lines = <$input>;
my $result = Linking::linking(join("\n" ,@lines),$LING,"json");
print "$result\n"
# }
}
}elsif($MOD eq "aval"){ ##entity linking
do $AVAL;
if($args->xml){
#while(my $line = <$input>){
my @lines = <$input>;
my $result = Avalingua::avalingua(join("\n" ,@lines),$LING,"xml");
print "$result\n"
# }
}else{
# while(my $line = <$input>){
my @lines = <$input>;
my $result = Avalingua::avalingua(join("\n" ,@lines),$LING,"json");
print "$result\n"
# }
}
}elsif($MOD eq "sum"){ ##summarizer
do $SUM;
do $SENT_SPLIT;
if($args->percentage){
my @lines = <$input>;
my ($result) = Summarizer::summarizer(join("\n" ,@lines),$LING,$args->percentage);
print "<abstract>$result</abstract>\n";
}else{
my @lines = <$input>;
my ($result) = Summarizer::summarizer(join("\n" ,@lines),$LING,10);
print "<abstract>$result</abstract>\n";
}
}elsif($MOD eq "conj"){ ##conjugator
do $CONJ;
if($args->pe){
while(my $line = <$input>){
my $result = Conjugator::conjugator($line,$LING,'-pe');
print "$result\n"
}
}elsif($args->pb && $LING eq "pt"){
while(my $line = <$input>){
my $result = Conjugator::conjugator($line,$LING,'-pb');
print "$result\n"
}
}elsif($args->pen && $LING eq "pt"){
while(my $line = <$input>){
my $result = Conjugator::conjugator($line,$LING,'-pen');
print "$result\n"
}
}elsif($args->pbn && $LING eq "pt"){
while(my $line = <$input>){
my $result = Conjugator::conjugator($line,$LING,'-pbn');
print "$result\n"
}
}else{
while(my $line = <$input>){
my $result = Conjugator::conjugator($line,$LING);
print "$result\n"
}
}
}
close($input);