GCC Code Coverage Report
Directory: . Exec Total Coverage
File: src/proof/proof_node_to_sexpr.h Lines: 1 1 100.0 %
Date: 2021-08-16 Branches: 0 0 0.0 %

Line Exec Source
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/******************************************************************************
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 * Top contributors (to current version):
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 *   Andrew Reynolds, Haniel Barbosa, Gereon Kremer
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 *
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 * This file is part of the cvc5 project.
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 *
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 * Copyright (c) 2009-2021 by the authors listed in the file AUTHORS
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 * in the top-level source directory and their institutional affiliations.
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 * All rights reserved.  See the file COPYING in the top-level source
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 * directory for licensing information.
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 * ****************************************************************************
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 *
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 * Conversion from ProofNode to s-expressions.
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 */
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#include "cvc5_private.h"
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#ifndef CVC5__PROOF__PROOF_NODE_TO_SEXPR_H
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#define CVC5__PROOF__PROOF_NODE_TO_SEXPR_H
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#include <map>
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#include "expr/kind.h"
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#include "expr/node.h"
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#include "proof/method_id.h"
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#include "proof/proof_rule.h"
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#include "theory/inference_id.h"
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#include "theory/theory_id.h"
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namespace cvc5 {
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class ProofNode;
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/** A class to convert ProofNode objects to s-expressions */
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class ProofNodeToSExpr
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{
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 public:
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  ProofNodeToSExpr();
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  ~ProofNodeToSExpr() {}
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  /** Convert the given proof node to an s-expression
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   *
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   * This is useful for operations where it is useful to view a ProofNode as
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   * a Node. Printing is one such example, where a ProofNode can be printed
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   * as a dag after this conversion.
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   *
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   * The s-expression for a ProofNode has the form:
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   *   (SEXPR (VAR "<d_rule>") S1 ... Sn (VAR ":args") (SEXPR <d_args>))
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   * where S1, ..., Sn are the s-expressions for its <d_children>.
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   */
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  Node convertToSExpr(const ProofNode* pn);
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 private:
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  /** argument format, determines how to print an argument */
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  enum class ArgFormat
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  {
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    // just use the argument itself
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    DEFAULT,
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    // print the argument as a kind
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    KIND,
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    // print the argument as a theory id
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    THEORY_ID,
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    // print the argument as a method id
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    METHOD_ID,
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    // print the argument as an inference id
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    INFERENCE_ID,
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    // print a variable whose name is the term (see getOrMkNodeVariable)
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    NODE_VAR
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  };
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  /** map proof rules to a variable */
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  std::map<PfRule, Node> d_pfrMap;
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  /** map kind to a variable displaying the kind they represent */
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  std::map<Kind, Node> d_kindMap;
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  /** map theory ids to a variable displaying the theory id they represent */
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  std::map<theory::TheoryId, Node> d_tidMap;
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  /** map method ids to a variable displaying the method id they represent */
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  std::map<MethodId, Node> d_midMap;
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  /** map infer ids to a variable displaying the method id they represent */
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  std::map<theory::InferenceId, Node> d_iidMap;
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  /** Dummy ":args" marker */
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  Node d_argsMarker;
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  /** Dummy ":conclusion" marker */
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  Node d_conclusionMarker;
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  /** map proof nodes to their s-expression */
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  std::map<const ProofNode*, Node> d_pnMap;
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  /**
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   * map nodes to a bound variable, used for nodes that have special AST status
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   * like builtin operators
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   */
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  std::map<TNode, Node> d_nodeMap;
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  /** get or make pf rule variable */
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  Node getOrMkPfRuleVariable(PfRule r);
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  /** get or make kind variable from the kind embedded in n */
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  Node getOrMkKindVariable(TNode n);
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  /** get or make theory id variable */
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  Node getOrMkTheoryIdVariable(TNode n);
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  /** get or make method id variable */
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  Node getOrMkMethodIdVariable(TNode n);
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  /** get or make inference id variable */
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  Node getOrMkInferenceIdVariable(TNode n);
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  /**
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   * Get or make node variable that prints the same as n but has SEXPR type.
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   * This is used to ensure the type checker does not complain when trying to
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   * print e.g. builtin operators as first-class terms in the SEXPR.
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   */
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  Node getOrMkNodeVariable(TNode n);
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  /** get argument based on the provided format */
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  Node getArgument(Node arg, ArgFormat f);
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  /** get argument format for proof node */
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  ArgFormat getArgumentFormat(const ProofNode* pn, size_t i);
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};
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}  // namespace cvc5
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#endif /* CVC5__PROOF__PROOF_RULE_H */