#!/usr/bin/env ruby require 'nlp_ruby' require 'json' module HG class HG::Node attr_accessor :label, :cat, :outgoing, :incoming, :score def initialize label=nil, cat=nil, outgoing=[], incoming=[], score=nil @label = label @cat = cat @outgoing = outgoing @incoming = incoming @score = nil end def to_s "Node" end end class HG::Hypergraph attr_accessor :nodes, :edges def initialize nodes=[], edges=[] @nodes = nodes @edges = edges end def arity @edges.map { |e| e.arity }.max end def to_s "Hypergraph" end end class HG::Hyperedge attr_accessor :head, :tails, :weight, :f, :mark def initialize head=nil, tails=[], weight=0.0, f={} @head = head @tails = tails @weight = weight @f = f @mark = 0 end def arity return @tails.size end def marked? arity == @mark end def to_s "Hyperedge" end end def HG::topological_sort nodes sorted = [] s = nodes.reject { |n| !n.incoming.empty? } while !s.empty? sorted << s.shift sorted.last.outgoing.each { |e| next if e.marked? e.mark += 1 s << e.head if e.head.incoming.reject{ |f| f.mark==f.arity }.empty? } end return sorted end def HG::init nodes, semiring, root nodes.each { |n| n.score=semiring.null } root.score = semiring.one end def HG::viterbi hypergraph, root, semiring=ViterbiSemiring.new toposorted = topological_sort hypergraph.nodes init toposorted, semiring, root toposorted.each { |n| n.incoming.each { |e| s = semiring.one e.tails.each { |m| s = semiring.multiply.call(s, m.score) } n.score = semiring.add.call(n.score, semiring.multiply.call(s, e.weight)) } } end def HG::read_hypergraph_from_json fn, semiring=RealSemiring.new, log_weights=false nodes = [] edges = [] nodes_by_label = {} nodes_by_index = [] h = JSON.parse File.new(fn).read w = SparseVector.from_h h['weights'] h['nodes'].each { |i| n = Node.new i['label'], i['cat'] nodes << n nodes_by_label[n.label] = n nodes_by_index << n } h['edges'].each { |i| e = Hyperedge.new nodes_by_label[i['head']], i['tails'].map{|j| nodes_by_label[j]}.to_a, semiring.convert.call(i['weight'].to_f) e.f = SparseVector.from_h i['f'] if log_weights e.weight = Math.exp(w.dot(e.f)) else e.weight = w.dot(e.f) end e.tails.each { |m| m.outgoing << e } e.head.incoming << e edges << e } return Hypergraph.new(nodes, edges), nodes_by_label, nodes_by_index end end #module