mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
187 lines
6.2 KiB
C++
187 lines
6.2 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 <unordered_map>
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#include <set>
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namespace solidity::frontend::smt
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{
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/**
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* Stores the context of the SMT encoding.
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*/
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class EncodingContext
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{
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public:
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EncodingContext();
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/// Resets the entire context except for symbolic variables which stay
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/// alive because of state variables and inlined function calls.
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/// To be used in the beginning of a root function visit.
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void reset();
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/// Clears the entire context, erasing everything.
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/// To be used before a model checking engine starts.
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void clear();
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/// Sets the current solver used by the current engine for
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/// SMT variable declaration.
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void setSolver(SolverInterface* _solver)
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{
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solAssert(_solver, "");
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m_solver = _solver;
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}
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/// Sets whether the context should conjoin assertions in the assertion stack.
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void setAssertionAccumulation(bool _acc) { m_accumulateAssertions = _acc; }
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/// Forwards variable creation to the solver.
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Expression newVariable(std::string _name, SortPointer _sort)
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{
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solAssert(m_solver, "");
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return m_solver->newVariable(move(_name), move(_sort));
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}
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/// Variables.
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//@{
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/// @returns the symbolic representation of a program variable.
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std::shared_ptr<SymbolicVariable> variable(frontend::VariableDeclaration const& _varDecl);
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/// @returns all symbolic variables.
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std::unordered_map<frontend::VariableDeclaration const*, std::shared_ptr<SymbolicVariable>> const& variables() const { return m_variables; }
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/// Creates a symbolic variable and
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/// @returns true if a variable's type is not supported and is therefore abstract.
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bool createVariable(frontend::VariableDeclaration const& _varDecl);
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/// @returns true if variable was created.
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bool knownVariable(frontend::VariableDeclaration const& _varDecl);
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/// Resets a specific variable.
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void resetVariable(frontend::VariableDeclaration const& _variable);
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/// Resets a set of variables.
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void resetVariables(std::set<frontend::VariableDeclaration const*> const& _variables);
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/// Resets variables according to a predicate.
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void resetVariables(std::function<bool(frontend::VariableDeclaration const&)> const& _filter);
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///Resets all variables.
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void resetAllVariables();
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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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Expression newValue(frontend::VariableDeclaration const& _decl);
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/// Sets the value of the declaration to zero.
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void setZeroValue(frontend::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(frontend::VariableDeclaration const& decl);
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void setUnknownValue(SymbolicVariable& _variable);
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//@}
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/// Expressions.
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////@{
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/// @returns the symbolic representation of an AST node expression.
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std::shared_ptr<SymbolicVariable> expression(frontend::Expression const& _e);
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/// @returns all symbolic expressions.
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std::unordered_map<frontend::Expression const*, std::shared_ptr<SymbolicVariable>> const& expressions() const { return m_expressions; }
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/// Creates the expression (value can be arbitrary).
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/// @returns true if type is not supported.
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bool createExpression(frontend::Expression const& _e, std::shared_ptr<SymbolicVariable> _symbExpr = nullptr);
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/// Checks if expression was created.
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bool knownExpression(frontend::Expression const& _e) const;
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//@}
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/// Global variables and functions.
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//@{
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/// Global variables and functions.
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std::shared_ptr<SymbolicVariable> globalSymbol(std::string const& _name);
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/// @returns all symbolic globals.
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std::unordered_map<std::string, std::shared_ptr<SymbolicVariable>> const& globalSymbols() const { return m_globalContext; }
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/// Defines a new global variable or function
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/// and @returns true if type was abstracted.
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bool createGlobalSymbol(std::string const& _name, frontend::Expression const& _expr);
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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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//@}
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/// Blockchain.
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//@{
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/// Value of `this` address.
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Expression thisAddress();
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/// @returns the symbolic balance of address `this`.
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Expression balance();
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/// @returns the symbolic balance of an address.
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Expression balance(Expression _address);
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/// Transfer _value from _from to _to.
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void transfer(Expression _from, Expression _to, Expression _value);
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//@}
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/// Solver.
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//@{
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/// @returns conjunction of all added assertions.
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Expression assertions();
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void pushSolver();
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void popSolver();
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void addAssertion(Expression const& _e);
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SolverInterface* solver()
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{
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solAssert(m_solver, "");
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return m_solver;
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}
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//@}
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private:
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/// Adds _value to _account's balance.
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void addBalance(Expression _account, Expression _value);
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/// Symbolic expressions.
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//{@
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/// Symbolic variables.
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std::unordered_map<frontend::VariableDeclaration const*, std::shared_ptr<SymbolicVariable>> m_variables;
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/// Symbolic expressions.
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std::unordered_map<frontend::Expression const*, std::shared_ptr<SymbolicVariable>> m_expressions;
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/// Symbolic representation of global symbols including
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/// variables and functions.
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std::unordered_map<std::string, std::shared_ptr<smt::SymbolicVariable>> m_globalContext;
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/// Symbolic `this` address.
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std::unique_ptr<SymbolicAddressVariable> m_thisAddress;
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/// Symbolic balances.
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std::unique_ptr<SymbolicVariable> m_balances;
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//@}
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/// Solver related.
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//@{
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/// Solver can be SMT solver or Horn solver in the future.
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SolverInterface* m_solver = nullptr;
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/// Assertion stack.
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std::vector<Expression> m_assertions;
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/// Whether to conjoin assertions in the assertion stack.
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bool m_accumulateAssertions = true;
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//@}
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};
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}
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