Revert logic for building completed definitions
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@ -141,49 +141,20 @@ impl<'p> Translator<'p>
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}
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};
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// TODO: refactor
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let predicate_declarations = self.problem.predicate_declarations.borrow();
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let input_predicate_declarations = self.problem.input_predicate_declarations.borrow();
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let mut definitions = &mut self.definitions;
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let problem = &self.problem;
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let completed_definitions = predicate_declarations.iter()
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.filter_map(
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|predicate_declaration|
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for predicate_declaration in self.problem.predicate_declarations.borrow().iter()
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{
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// Don’t perform completion for input predicates
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if input_predicate_declarations.contains(predicate_declaration)
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if self.problem.input_predicate_declarations.borrow().contains(predicate_declaration)
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{
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return None;
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continue;
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}
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let completed_definition = completed_definition(predicate_declaration,
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&mut definitions, problem);
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Some((std::rc::Rc::clone(predicate_declaration), completed_definition))
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})
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.collect::<std::collections::BTreeMap<_, _>>();
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// Replace occurrences of hidden predicates with their completed definitions
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let output_predicate_declarations = self.problem.output_predicate_declarations.borrow();
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// If no output statements are present, don’t hide any predicates by default
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if !output_predicate_declarations.is_empty()
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{
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let hidden_predicate_declarations =
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predicate_declarations.difference(&output_predicate_declarations);
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for hidden_predicate_declaration in hidden_predicate_declarations
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{
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log::debug!("hidden: {}", hidden_predicate_declaration);
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}
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}
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for (predicate_declaration, completed_definition) in completed_definitions.into_iter()
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{
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let statement_kind = crate::problem::StatementKind::CompletedDefinition(
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std::rc::Rc::clone(&predicate_declaration));
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let completed_definition = completed_definition(predicate_declaration,
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&mut self.definitions, self.problem);
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let statement = crate::problem::Statement::new(statement_kind, completed_definition)
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.with_name(format!("completed_definition_{}_{}", predicate_declaration.name,
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predicate_declaration.arity));
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