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require 'ref' |
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require 'prop_logic/functions' |
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module PropLogic |
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# |
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# Abstract base class for terms of PropLogic. |
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# Actual terms are subclasses of Term. |
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# |
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class Term |
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include Functions |
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# @raise NotImplementedError Term is abstract class. |
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def initialize |
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raise NotImplementedError, 'Term cannot be initialized' |
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end |
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# disallow duplication |
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def initialize_copy(*) |
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raise TypeError, 'Term cannot be duplicated (immutable, not necessary)' |
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end |
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class << self |
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protected :new |
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end |
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attr_reader :terms |
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def and(*others) |
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others.unshift self |
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Term.get AndTerm, *others |
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end |
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alias_method :&, :and |
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def or(*others) |
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others.unshift self |
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Term.get OrTerm, *others |
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end |
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alias_method :|, :or |
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def not |
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Term.get NotTerm, self |
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end |
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alias_method :~, :not |
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alias_method :-@, :not |
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def then(other) |
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Term.get ThenTerm, self, other |
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end |
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alias_method :>>, :then |
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def to_s_in_term |
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to_s true |
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end |
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def to_nnf |
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if nnf? |
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self |
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else |
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Term.get self.class, *@terms.map(&:to_nnf) |
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end |
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end |
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def nnf? |
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false |
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end |
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def reduce |
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if reduced? |
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self |
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else |
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Term.get self.class, *@terms.map(&:reduce) |
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end |
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end |
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def reduced? |
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false |
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end |
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def to_cnf |
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reduce.to_cnf |
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end |
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def self.validate_terms(*terms) |
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raise ArgumentError, 'no terms given' if terms.empty? |
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terms.map do |term| |
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case term |
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when TrueClass |
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True |
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when FalseClass |
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False |
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when Term |
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term |
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else |
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raise TypeError, "#{term.class} cannot be treated as term" |
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end |
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end |
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end |
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private_class_method :validate_terms |
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def self.generate_cache |
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Ref::WeakValueMap.new |
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end |
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private_class_method :generate_cache |
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def self.cached(klass, *terms) |
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@table ||= generate_cache |
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key = klass.name + terms.map(&:object_id).join(',') |
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return @table[key] if @table[key] |
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ret = klass.__send__ :new, *terms |
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@table[key] = ret |
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# kick caching mechanism |
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ret.variables |
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ret.freeze |
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end |
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private_class_method :cached |
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def self.get(klass, *terms) |
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terms = validate_terms(*terms) |
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if klass == AndTerm || klass == OrTerm |
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terms = terms.map { |t| t.is_a?(klass) ? t.terms : t }.flatten |
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return terms[0] if terms.length == 1 |
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end |
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cached klass, *terms |
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end |
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# check if this term is a cnf term. |
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# @return [Boolean] false unless overridden. |
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def cnf? |
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false |
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end |
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# @return [Array] variables used by this term. |
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def variables |
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@variables ||= @terms.map(&:variables).flatten.uniq |
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end |
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def assign(trues, falses, variables = nil) |
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# contradicted assignment |
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raise ArgumentError, 'Contradicted assignment' unless (trues & falses).empty? |
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variables ||= trues | falses |
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assigned_terms = terms.map do |term| |
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if (term.variables & variables).empty? |
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term |
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else |
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term.assign(trues, falses, variables) |
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end |
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end |
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Term.get self.class, *assigned_terms |
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end |
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def assign_true(*variables) |
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assign variables, [] |
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end |
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def assign_false(*variables) |
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assign [], variables |
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end |
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def sat? |
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PropLogic.sat_solver.call(self) |
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end |
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# loop with each satisfied terms. |
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# @return [Enumerator] if block is not given. |
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# @return [nil] if block is given. |
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def each_sat |
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return to_enum(:each_sat) unless block_given? |
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sat_loop(self) do |sat, solver| |
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yield sat |
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negated_vars = sat.terms.map do |t| |
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t.is_a?(NotTerm) ? t.terms[0] : ~t |
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end |
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solver << PropLogic.all_or(*negated_vars) |
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end |
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end |
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def unsat? |
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sat? == false |
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end |
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def equiv?(other) |
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((self | other) & (~self | ~other)).unsat? |
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end |
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private |
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# checking methods |
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def check_term_uniqueness |
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@is_reduced &&= (@terms.length == @terms.uniq.length) |
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end |
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def check_ambivalent_vars |
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return unless @is_reduced |
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term_by_class = @terms.group_by(&:class) |
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return if term_by_class[NotTerm].nil? || term_by_class[Variable].nil? |
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negated_variales = term_by_class[NotTerm].map { |t| t.terms[0] } |
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@is_reduced = false unless (negated_variales & term_by_class[Variable]).empty? |
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end |
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def check_nnf_reduced |
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@is_reduced = true |
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@is_nnf = @terms.all? do |term| |
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@is_reduced &&= !term.is_a?(Constant) && term.reduced? |
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@is_reduced &&= !term.is_a?(NotTerm) || term.terms[0].is_a?(Variable) |
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next true if @is_reduced |
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term.nnf? |
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end |
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return unless @is_reduced |
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check_term_uniqueness |
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check_ambivalent_vars |
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end |
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end |
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end |
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