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			238 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			238 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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	This file is part of solidity.
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	solidity is free software: you can redistribute it and/or modify
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	it under the terms of the GNU General Public License as published by
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	the Free Software Foundation, either version 3 of the License, or
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	(at your option) any later version.
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	solidity is distributed in the hope that it will be useful,
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	but WITHOUT ANY WARRANTY; without even the implied warranty of
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	MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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	GNU General Public License for more details.
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	You should have received a copy of the GNU General Public License
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	along with solidity.  If not, see <http://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include <libsolidity/formal/SolverInterface.h>
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#include <libsolidity/formal/SymbolicVariables.h>
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#include <libsolidity/ast/ASTVisitor.h>
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#include <libsolidity/interface/ReadFile.h>
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#include <liblangutil/Scanner.h>
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#include <string>
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#include <unordered_map>
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#include <vector>
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namespace langutil
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{
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class ErrorReporter;
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struct SourceLocation;
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}
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namespace dev
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{
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namespace solidity
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{
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class VariableUsage;
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class SMTChecker: private ASTConstVisitor
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{
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public:
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	SMTChecker(langutil::ErrorReporter& _errorReporter, std::map<h256, std::string> const& _smtlib2Responses);
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	void analyze(SourceUnit const& _sources, std::shared_ptr<langutil::Scanner> const& _scanner);
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	/// This is used if the SMT solver is not directly linked into this binary.
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	/// @returns a list of inputs to the SMT solver that were not part of the argument to
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	/// the constructor.
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	std::vector<std::string> unhandledQueries() { return m_interface->unhandledQueries(); }
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private:
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	// TODO: Check that we do not have concurrent reads and writes to a variable,
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	// because the order of expression evaluation is undefined
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	// TODO: or just force a certain order, but people might have a different idea about that.
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	bool visit(ContractDefinition const& _node) override;
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	void endVisit(ContractDefinition const& _node) override;
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	void endVisit(VariableDeclaration const& _node) override;
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	bool visit(FunctionDefinition const& _node) override;
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	void endVisit(FunctionDefinition const& _node) override;
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	bool visit(IfStatement const& _node) override;
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	bool visit(WhileStatement const& _node) override;
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	bool visit(ForStatement const& _node) override;
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	void endVisit(VariableDeclarationStatement const& _node) override;
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	void endVisit(Assignment const& _node) override;
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	void endVisit(TupleExpression const& _node) override;
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	void endVisit(UnaryOperation const& _node) override;
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	void endVisit(BinaryOperation const& _node) override;
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	void endVisit(FunctionCall const& _node) override;
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	void endVisit(Identifier const& _node) override;
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	void endVisit(Literal const& _node) override;
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	void endVisit(Return const& _node) override;
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	bool visit(MemberAccess const& _node) override;
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	void endVisit(IndexAccess const& _node) override;
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	void arithmeticOperation(BinaryOperation const& _op);
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	void compareOperation(BinaryOperation const& _op);
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	void booleanOperation(BinaryOperation const& _op);
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	void visitAssert(FunctionCall const& _funCall);
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	void visitRequire(FunctionCall const& _funCall);
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	void visitGasLeft(FunctionCall const& _funCall);
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	/// Visits the FunctionDefinition of the called function
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	/// if available and inlines the return value.
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	void inlineFunctionCall(FunctionCall const& _funCall);
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	/// Creates an uninterpreted function call.
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	void abstractFunctionCall(FunctionCall const& _funCall);
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	void visitFunctionIdentifier(Identifier const& _identifier);
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	void defineGlobalVariable(std::string const& _name, Expression const& _expr, bool _increaseIndex = false);
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	void defineGlobalFunction(std::string const& _name, Expression const& _expr);
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	/// Handles the side effects of assignment
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	/// to variable of some SMT array type
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	/// while aliasing is not supported.
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	void arrayAssignment();
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	/// Handles assignment to SMT array index.
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	void arrayIndexAssignment(Assignment const& _assignment);
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	/// Erases information about SMT arrays.
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	void eraseArrayKnowledge();
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	/// Division expression in the given type. Requires special treatment because
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	/// of rounding for signed division.
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	smt::Expression division(smt::Expression _left, smt::Expression _right, IntegerType const& _type);
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	void assignment(VariableDeclaration const& _variable, Expression const& _value, langutil::SourceLocation const& _location);
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	void assignment(VariableDeclaration const& _variable, smt::Expression const& _value, langutil::SourceLocation const& _location);
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	/// Maps a variable to an SSA index.
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	using VariableIndices = std::unordered_map<VariableDeclaration const*, int>;
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	/// Visits the branch given by the statement, pushes and pops the current path conditions.
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	/// @param _condition if present, asserts that this condition is true within the branch.
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	/// @returns the variable indices after visiting the branch.
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	VariableIndices visitBranch(Statement const& _statement, smt::Expression const* _condition = nullptr);
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	VariableIndices visitBranch(Statement const& _statement, smt::Expression _condition);
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	/// Check that a condition can be satisfied.
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	void checkCondition(
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		smt::Expression _condition,
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		langutil::SourceLocation const& _location,
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		std::string const& _description,
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		std::string const& _additionalValueName = "",
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		smt::Expression* _additionalValue = nullptr
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	);
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	/// Checks that a boolean condition is not constant. Do not warn if the expression
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	/// is a literal constant.
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	/// @param _description the warning string, $VALUE will be replaced by the constant value.
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	void checkBooleanNotConstant(
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		Expression const& _condition,
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		std::string const& _description
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	);
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	/// Checks that the value is in the range given by the type.
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	void checkUnderOverflow(smt::Expression _value, IntegerType const& _Type, langutil::SourceLocation const& _location);
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	std::pair<smt::CheckResult, std::vector<std::string>>
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	checkSatisfiableAndGenerateModel(std::vector<smt::Expression> const& _expressionsToEvaluate);
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	smt::CheckResult checkSatisfiable();
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	void initializeLocalVariables(FunctionDefinition const& _function);
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	void initializeFunctionCallParameters(FunctionDefinition const& _function, std::vector<smt::Expression> const& _callArgs);
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	void resetStateVariables();
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	void resetVariables(std::vector<VariableDeclaration const*> _variables);
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	/// Given two different branches and the touched variables,
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	/// merge the touched variables into after-branch ite variables
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	/// using the branch condition as guard.
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	void mergeVariables(std::vector<VariableDeclaration const*> const& _variables, smt::Expression const& _condition, VariableIndices const& _indicesEndTrue, VariableIndices const& _indicesEndFalse);
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	/// Tries to create an uninitialized variable and returns true on success.
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	/// This fails if the type is not supported.
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	bool createVariable(VariableDeclaration const& _varDecl);
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	/// @returns true if _delc is a variable that is known at the current point, i.e.
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	/// has a valid index
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	bool knownVariable(VariableDeclaration const& _decl);
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	/// @returns an expression denoting the value of the variable declared in @a _decl
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	/// at the current point.
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	smt::Expression currentValue(VariableDeclaration const& _decl);
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	/// @returns an expression denoting the value of the variable declared in @a _decl
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	/// at the given index. Does not ensure that this index exists.
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	smt::Expression valueAtIndex(VariableDeclaration const& _decl, int _index);
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	/// Allocates a new index for the declaration, updates the current
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	/// index to this value and returns the expression.
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	smt::Expression newValue(VariableDeclaration const& _decl);
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	/// Sets the value of the declaration to zero.
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	void setZeroValue(VariableDeclaration const& _decl);
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	void setZeroValue(SymbolicVariable& _variable);
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	/// Resets the variable to an unknown value (in its range).
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	void setUnknownValue(VariableDeclaration const& decl);
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	void setUnknownValue(SymbolicVariable& _variable);
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	/// Returns the expression corresponding to the AST node. Throws if the expression does not exist.
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	smt::Expression expr(Expression const& _e);
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	/// Creates the expression (value can be arbitrary)
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	void createExpr(Expression const& _e);
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	/// Checks if expression was created
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	bool knownExpr(Expression const& _e) const;
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	/// Creates the expression and sets its value.
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	void defineExpr(Expression const& _e, smt::Expression _value);
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	/// Checks if special variable or function was seen.
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	bool knownGlobalSymbol(std::string const& _var) const;
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	/// Adds a new path condition
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	void pushPathCondition(smt::Expression const& _e);
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	/// Remove the last path condition
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	void popPathCondition();
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	/// Returns the conjunction of all path conditions or True if empty
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	smt::Expression currentPathConditions();
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	/// Conjoin the current path conditions with the given parameter and add to the solver
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	void addPathConjoinedExpression(smt::Expression const& _e);
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	/// Add to the solver: the given expression implied by the current path conditions
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	void addPathImpliedExpression(smt::Expression const& _e);
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	/// Removes local variables from the context.
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	void removeLocalVariables();
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	/// Copy the SSA indices of m_variables.
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	VariableIndices copyVariableIndices();
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	/// Resets the variable indices.
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	void resetVariableIndices(VariableIndices const& _indices);
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	std::shared_ptr<smt::SolverInterface> m_interface;
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	std::shared_ptr<VariableUsage> m_variableUsage;
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	bool m_loopExecutionHappened = false;
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	bool m_arrayAssignmentHappened = false;
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	/// An Expression may have multiple smt::Expression due to
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	/// repeated calls to the same function.
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	std::unordered_map<Expression const*, std::shared_ptr<SymbolicVariable>> m_expressions;
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	std::unordered_map<VariableDeclaration const*, std::shared_ptr<SymbolicVariable>> m_variables;
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	std::unordered_map<std::string, std::shared_ptr<SymbolicVariable>> m_globalContext;
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	/// Stores the instances of an Uninterpreted Function applied to arguments.
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	/// These may be direct application of UFs or Array index access.
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	/// Used to retrieve models.
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	std::set<Expression const*> m_uninterpretedTerms;
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	std::vector<smt::Expression> m_pathConditions;
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	langutil::ErrorReporter& m_errorReporter;
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	std::shared_ptr<langutil::Scanner> m_scanner;
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	/// Stores the current path of function calls.
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	std::vector<FunctionDefinition const*> m_functionPath;
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	/// Returns true if the current function was not visited by
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	/// a function call.
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	bool isRootFunction();
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	/// Returns true if _funDef was already visited.
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	bool visitedFunction(FunctionDefinition const* _funDef);
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};
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}
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}
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