Split translation code into smaller modules
This commit is contained in:
parent
6145c2cf1a
commit
442d9f6ac0
@ -1,239 +1,8 @@
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pub struct ScopedFormula
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{
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free_variable_declarations: foliage::VariableDeclarations,
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formula: foliage::Formula,
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}
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mod context;
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mod translate_body;
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pub struct Context
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{
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scoped_formulas: Vec<ScopedFormula>,
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function_declarations: foliage::FunctionDeclarations,
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predicate_declarations: foliage::PredicateDeclarations,
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variable_declaration_stack: foliage::VariableDeclarationStack,
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}
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impl Context
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{
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pub fn new() -> Self
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{
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Self
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{
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scoped_formulas: vec![],
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function_declarations: foliage::FunctionDeclarations::new(),
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predicate_declarations: foliage::PredicateDeclarations::new(),
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variable_declaration_stack: foliage::VariableDeclarationStack::new(),
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}
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}
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pub fn find_or_create_predicate_declaration(&mut self, name: &str, arity: usize)
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-> std::rc::Rc<foliage::PredicateDeclaration>
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{
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match self.predicate_declarations.iter()
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.find(|x| x.name == name && x.arity == arity)
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{
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Some(value) => std::rc::Rc::clone(value),
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None =>
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{
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let declaration = foliage::PredicateDeclaration
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{
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name: name.to_owned(),
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arity,
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};
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let declaration = std::rc::Rc::new(declaration);
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self.predicate_declarations.insert(std::rc::Rc::clone(&declaration));
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log::debug!("new predicate declaration: {}/{}", name, arity);
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declaration
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},
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}
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}
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pub fn find_or_create_function_declaration(&mut self, name: &str, arity: usize)
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-> std::rc::Rc<foliage::FunctionDeclaration>
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{
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match self.function_declarations.iter()
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.find(|x| x.name == name && x.arity == arity)
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{
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Some(value) => std::rc::Rc::clone(value),
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None =>
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{
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let declaration = foliage::FunctionDeclaration
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{
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name: name.to_owned(),
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arity,
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};
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let declaration = std::rc::Rc::new(declaration);
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self.function_declarations.insert(std::rc::Rc::clone(&declaration));
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log::debug!("new function declaration: {}/{}", name, arity);
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declaration
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},
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}
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}
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}
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pub fn translate_body_term(body_term: &clingo::ast::Term, sign: clingo::ast::Sign,
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context: &mut Context)
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-> Result<foliage::Formula, crate::Error>
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{
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let function = match body_term.term_type()
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{
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clingo::ast::TermType::Function(value) => value,
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_ => return Err(crate::Error::new_unsupported_language_feature("only functions supported as body terms")),
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};
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let function_name = function.name().map_err(|error| crate::Error::new_decode_identifier(error))?;
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let predicate_declaration = context.find_or_create_predicate_declaration(function_name,
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function.arguments().len());
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let parameters = function.arguments().iter().map(|_| std::rc::Rc::new(
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foliage::VariableDeclaration
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{
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name: "<anonymous>".to_string(),
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}))
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.collect::<Vec<_>>();
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let predicate_arguments = parameters.iter().map(
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|parameter| Box::new(foliage::Term::Variable(foliage::Variable{declaration: std::rc::Rc::clone(parameter)})))
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.collect::<Vec<_>>();
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let predicate = foliage::Predicate
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{
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declaration: predicate_declaration,
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arguments: predicate_arguments,
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};
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let predicate_literal = match sign
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{
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clingo::ast::Sign::None
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| clingo::ast::Sign::DoubleNegation
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=> foliage::Formula::Predicate(predicate),
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clingo::ast::Sign::Negation
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=> foliage::Formula::Not(Box::new(foliage::Formula::Predicate(predicate))),
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};
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if function.arguments().is_empty()
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{
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return Ok(predicate_literal);
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}
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let mut i = 0;
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let mut arguments = function.arguments().iter().map(|x|
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{
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let result = super::common::choose_value_in_term(x, ¶meters[i],
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|name, arity| context.find_or_create_function_declaration(name, arity))
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.map(|x| Box::new(x));
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i += 1;
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result
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})
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.collect::<Result<Vec<_>, _>>()?;
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arguments.push(Box::new(predicate_literal));
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let and = foliage::Formula::And(arguments);
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Ok(foliage::Formula::Exists(foliage::Exists
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{
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parameters,
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argument: Box::new(and),
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}))
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}
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pub fn translate_body_literal(body_literal: &clingo::ast::BodyLiteral, context: &mut Context)
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-> Result<foliage::Formula, crate::Error>
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{
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match body_literal.sign()
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{
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clingo::ast::Sign::None => (),
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_ => return Err(crate::Error::new_unsupported_language_feature(
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"signed body literals")),
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}
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let literal = match body_literal.body_literal_type()
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{
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clingo::ast::BodyLiteralType::Literal(literal) => literal,
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_ => return Err(crate::Error::new_unsupported_language_feature(
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"only plain body literals supported")),
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};
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match literal.literal_type()
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{
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clingo::ast::LiteralType::Boolean(value) =>
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{
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match literal.sign()
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{
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clingo::ast::Sign::None => (),
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_ => return Err(crate::Error::new_logic("unexpected negated Boolean value")),
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}
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Ok(foliage::Formula::Boolean(value))
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},
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clingo::ast::LiteralType::Symbolic(term) => translate_body_term(term, literal.sign(), context),
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clingo::ast::LiteralType::Comparison(comparison) =>
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{
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let new_variable_declaration = || std::rc::Rc::new(foliage::VariableDeclaration
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{
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name: "<anonymous>".to_string()
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});
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let parameters = vec![new_variable_declaration(), new_variable_declaration()];
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let parameter_z1 = ¶meters[0];
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let parameter_z2 = ¶meters[1];
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let choose_z1_in_t1 = super::common::choose_value_in_term(comparison.left(), ¶meter_z1,
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|name, arity| context.find_or_create_function_declaration(name, arity))?;
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let choose_z2_in_t2 = super::common::choose_value_in_term(comparison.right(), ¶meter_z2,
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|name, arity| context.find_or_create_function_declaration(name, arity))?;
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let variable_1 = foliage::Variable
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{
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declaration: std::rc::Rc::clone(¶meter_z1),
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};
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let variable_2 = foliage::Variable
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{
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declaration: std::rc::Rc::clone(¶meter_z2),
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};
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let comparison_operator
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= super::common::translate_comparison_operator(comparison.comparison_type());
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let compare_z1_and_z2 = foliage::Comparison
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{
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operator: comparison_operator,
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left: Box::new(foliage::Term::Variable(variable_1)),
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right: Box::new(foliage::Term::Variable(variable_2)),
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};
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let and = foliage::Formula::And(vec![Box::new(choose_z1_in_t1),
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Box::new(choose_z2_in_t2), Box::new(foliage::Formula::Comparison(compare_z1_and_z2))]);
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Ok(foliage::Formula::Exists(foliage::Exists
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{
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parameters,
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argument: Box::new(and),
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}))
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},
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_ => Err(crate::Error::new_unsupported_language_feature(
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"body literals other than Booleans, terms, or comparisons")),
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}
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}
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pub fn translate_body(body_literals: &[clingo::ast::BodyLiteral], context: &mut Context)
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-> Result<foliage::Formulas, crate::Error>
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{
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body_literals.iter()
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.map(|body_literal| translate_body_literal(body_literal, context)
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.map(|value| Box::new(value)))
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.collect::<Result<foliage::Formulas, crate::Error>>()
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}
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pub use context::Context;
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use translate_body::translate_body;
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pub fn read(rule: &clingo::ast::Rule, context: &mut Context)
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{
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77
src/translate/verify_properties/context.rs
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77
src/translate/verify_properties/context.rs
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@ -0,0 +1,77 @@
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pub struct ScopedFormula
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{
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free_variable_declarations: foliage::VariableDeclarations,
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formula: foliage::Formula,
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}
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pub struct Context
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{
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scoped_formulas: Vec<ScopedFormula>,
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function_declarations: foliage::FunctionDeclarations,
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predicate_declarations: foliage::PredicateDeclarations,
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variable_declaration_stack: foliage::VariableDeclarationStack,
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}
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impl Context
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{
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pub fn new() -> Self
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{
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Self
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{
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scoped_formulas: vec![],
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function_declarations: foliage::FunctionDeclarations::new(),
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predicate_declarations: foliage::PredicateDeclarations::new(),
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variable_declaration_stack: foliage::VariableDeclarationStack::new(),
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}
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}
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pub fn find_or_create_predicate_declaration(&mut self, name: &str, arity: usize)
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-> std::rc::Rc<foliage::PredicateDeclaration>
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{
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match self.predicate_declarations.iter()
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.find(|x| x.name == name && x.arity == arity)
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{
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Some(value) => std::rc::Rc::clone(value),
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None =>
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{
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let declaration = foliage::PredicateDeclaration
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{
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name: name.to_owned(),
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arity,
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};
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let declaration = std::rc::Rc::new(declaration);
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self.predicate_declarations.insert(std::rc::Rc::clone(&declaration));
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log::debug!("new predicate declaration: {}/{}", name, arity);
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declaration
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},
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}
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}
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pub fn find_or_create_function_declaration(&mut self, name: &str, arity: usize)
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-> std::rc::Rc<foliage::FunctionDeclaration>
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{
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match self.function_declarations.iter()
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.find(|x| x.name == name && x.arity == arity)
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{
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Some(value) => std::rc::Rc::clone(value),
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None =>
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{
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let declaration = foliage::FunctionDeclaration
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{
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name: name.to_owned(),
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arity,
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};
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let declaration = std::rc::Rc::new(declaration);
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self.function_declarations.insert(std::rc::Rc::clone(&declaration));
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log::debug!("new function declaration: {}/{}", name, arity);
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declaration
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},
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}
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}
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}
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158
src/translate/verify_properties/translate_body.rs
Normal file
158
src/translate/verify_properties/translate_body.rs
Normal file
@ -0,0 +1,158 @@
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pub fn translate_body_term(body_term: &clingo::ast::Term, sign: clingo::ast::Sign,
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context: &mut super::Context)
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-> Result<foliage::Formula, crate::Error>
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{
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let function = match body_term.term_type()
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{
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clingo::ast::TermType::Function(value) => value,
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_ => return Err(crate::Error::new_unsupported_language_feature("only functions supported as body terms")),
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};
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let function_name = function.name().map_err(|error| crate::Error::new_decode_identifier(error))?;
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let predicate_declaration = context.find_or_create_predicate_declaration(function_name,
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function.arguments().len());
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let parameters = function.arguments().iter().map(|_| std::rc::Rc::new(
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foliage::VariableDeclaration
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{
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name: "<anonymous>".to_string(),
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}))
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.collect::<Vec<_>>();
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let predicate_arguments = parameters.iter().map(
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|parameter| Box::new(foliage::Term::Variable(foliage::Variable{declaration: std::rc::Rc::clone(parameter)})))
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.collect::<Vec<_>>();
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let predicate = foliage::Predicate
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{
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declaration: predicate_declaration,
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arguments: predicate_arguments,
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};
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let predicate_literal = match sign
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{
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clingo::ast::Sign::None
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| clingo::ast::Sign::DoubleNegation
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=> foliage::Formula::Predicate(predicate),
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clingo::ast::Sign::Negation
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=> foliage::Formula::Not(Box::new(foliage::Formula::Predicate(predicate))),
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};
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if function.arguments().is_empty()
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{
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return Ok(predicate_literal);
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}
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let mut i = 0;
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let mut arguments = function.arguments().iter().map(|x|
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{
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let result = crate::translate::common::choose_value_in_term(x, ¶meters[i],
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|name, arity| context.find_or_create_function_declaration(name, arity))
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.map(|x| Box::new(x));
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i += 1;
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result
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})
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.collect::<Result<Vec<_>, _>>()?;
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arguments.push(Box::new(predicate_literal));
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let and = foliage::Formula::And(arguments);
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Ok(foliage::Formula::Exists(foliage::Exists
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{
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parameters,
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argument: Box::new(and),
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}))
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}
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pub fn translate_body_literal(body_literal: &clingo::ast::BodyLiteral, context: &mut super::Context)
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-> Result<foliage::Formula, crate::Error>
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{
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match body_literal.sign()
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{
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clingo::ast::Sign::None => (),
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_ => return Err(crate::Error::new_unsupported_language_feature(
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"signed body literals")),
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}
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let literal = match body_literal.body_literal_type()
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{
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clingo::ast::BodyLiteralType::Literal(literal) => literal,
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_ => return Err(crate::Error::new_unsupported_language_feature(
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"only plain body literals supported")),
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};
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match literal.literal_type()
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{
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clingo::ast::LiteralType::Boolean(value) =>
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{
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match literal.sign()
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{
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clingo::ast::Sign::None => (),
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_ => return Err(crate::Error::new_logic("unexpected negated Boolean value")),
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}
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Ok(foliage::Formula::Boolean(value))
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},
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clingo::ast::LiteralType::Symbolic(term) => translate_body_term(term, literal.sign(), context),
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clingo::ast::LiteralType::Comparison(comparison) =>
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{
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let new_variable_declaration = || std::rc::Rc::new(foliage::VariableDeclaration
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{
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name: "<anonymous>".to_string()
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});
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let parameters = vec![new_variable_declaration(), new_variable_declaration()];
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let parameter_z1 = ¶meters[0];
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let parameter_z2 = ¶meters[1];
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let choose_z1_in_t1 = crate::translate::common::choose_value_in_term(comparison.left(), ¶meter_z1,
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|name, arity| context.find_or_create_function_declaration(name, arity))?;
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let choose_z2_in_t2 = crate::translate::common::choose_value_in_term(comparison.right(), ¶meter_z2,
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|name, arity| context.find_or_create_function_declaration(name, arity))?;
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let variable_1 = foliage::Variable
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{
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declaration: std::rc::Rc::clone(¶meter_z1),
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};
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let variable_2 = foliage::Variable
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{
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declaration: std::rc::Rc::clone(¶meter_z2),
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};
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let comparison_operator
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= crate::translate::common::translate_comparison_operator(comparison.comparison_type());
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let compare_z1_and_z2 = foliage::Comparison
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{
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operator: comparison_operator,
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left: Box::new(foliage::Term::Variable(variable_1)),
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right: Box::new(foliage::Term::Variable(variable_2)),
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};
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let and = foliage::Formula::And(vec![Box::new(choose_z1_in_t1),
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Box::new(choose_z2_in_t2), Box::new(foliage::Formula::Comparison(compare_z1_and_z2))]);
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Ok(foliage::Formula::Exists(foliage::Exists
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{
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parameters,
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argument: Box::new(and),
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}))
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},
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_ => Err(crate::Error::new_unsupported_language_feature(
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"body literals other than Booleans, terms, or comparisons")),
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}
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}
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pub fn translate_body(body_literals: &[clingo::ast::BodyLiteral], context: &mut super::Context)
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-> Result<foliage::Formulas, crate::Error>
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{
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body_literals.iter()
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.map(|body_literal| translate_body_literal(body_literal, context)
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.map(|value| Box::new(value)))
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.collect::<Result<foliage::Formulas, crate::Error>>()
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}
|
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