mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
250 lines
7.0 KiB
C++
250 lines
7.0 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/interface/Exceptions.h>
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#include <libsolidity/interface/ReadFile.h>
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#include <libdevcore/Common.h>
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#include <libdevcore/Exceptions.h>
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#include <boost/noncopyable.hpp>
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#include <map>
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#include <string>
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#include <vector>
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#include <cstdio>
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namespace dev
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{
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namespace solidity
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{
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namespace smt
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{
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enum class CheckResult
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{
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SATISFIABLE, UNSATISFIABLE, UNKNOWN, CONFLICTING, ERROR
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};
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enum class Sort
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{
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Int,
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Bool
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};
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/// C++ representation of an SMTLIB2 expression.
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class Expression
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{
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friend class SolverInterface;
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public:
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explicit Expression(bool _v): name(_v ? "true" : "false"), sort(Sort::Bool) {}
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Expression(size_t _number): name(std::to_string(_number)), sort(Sort::Int) {}
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Expression(u256 const& _number): name(_number.str()), sort(Sort::Int) {}
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Expression(bigint const& _number): name(_number.str()), sort(Sort::Int) {}
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Expression(Expression const&) = default;
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Expression(Expression&&) = default;
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Expression& operator=(Expression const&) = default;
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Expression& operator=(Expression&&) = default;
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bool hasCorrectArity() const
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{
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static std::map<std::string, unsigned> const operatorsArity{
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{"ite", 3},
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{"not", 1},
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{"and", 2},
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{"or", 2},
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{"=", 2},
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{"<", 2},
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{"<=", 2},
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{">", 2},
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{">=", 2},
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{"+", 2},
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{"-", 2},
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{"*", 2},
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{"/", 2}
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};
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return operatorsArity.count(name) && operatorsArity.at(name) == arguments.size();
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}
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static Expression ite(Expression _condition, Expression _trueValue, Expression _falseValue)
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{
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solAssert(_trueValue.sort == _falseValue.sort, "");
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return Expression("ite", std::vector<Expression>{
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std::move(_condition), std::move(_trueValue), std::move(_falseValue)
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}, _trueValue.sort);
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}
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static Expression implies(Expression _a, Expression _b)
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{
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return !std::move(_a) || std::move(_b);
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}
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friend Expression operator!(Expression _a)
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{
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return Expression("not", std::move(_a), Sort::Bool);
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}
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friend Expression operator&&(Expression _a, Expression _b)
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{
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return Expression("and", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator||(Expression _a, Expression _b)
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{
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return Expression("or", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator==(Expression _a, Expression _b)
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{
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return Expression("=", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator!=(Expression _a, Expression _b)
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{
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return !(std::move(_a) == std::move(_b));
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}
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friend Expression operator<(Expression _a, Expression _b)
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{
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return Expression("<", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator<=(Expression _a, Expression _b)
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{
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return Expression("<=", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator>(Expression _a, Expression _b)
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{
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return Expression(">", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator>=(Expression _a, Expression _b)
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{
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return Expression(">=", std::move(_a), std::move(_b), Sort::Bool);
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}
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friend Expression operator+(Expression _a, Expression _b)
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{
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return Expression("+", std::move(_a), std::move(_b), Sort::Int);
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}
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friend Expression operator-(Expression _a, Expression _b)
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{
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return Expression("-", std::move(_a), std::move(_b), Sort::Int);
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}
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friend Expression operator*(Expression _a, Expression _b)
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{
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return Expression("*", std::move(_a), std::move(_b), Sort::Int);
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}
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friend Expression operator/(Expression _a, Expression _b)
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{
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return Expression("/", std::move(_a), std::move(_b), Sort::Int);
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}
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Expression operator()(std::vector<Expression> _arguments) const
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{
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solAssert(
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arguments.empty(),
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"Attempted function application to non-function."
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);
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switch (sort)
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{
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case Sort::Int:
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return Expression(name, std::move(_arguments), Sort::Int);
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case Sort::Bool:
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return Expression(name, std::move(_arguments), Sort::Bool);
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default:
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solAssert(
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false,
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"Attempted function application to invalid type."
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);
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break;
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}
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}
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std::string name;
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std::vector<Expression> arguments;
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Sort sort;
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private:
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/// Manual constructor, should only be used by SolverInterface and this class itself.
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Expression(std::string _name, std::vector<Expression> _arguments, Sort _sort):
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name(std::move(_name)), arguments(std::move(_arguments)), sort(_sort) {}
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explicit Expression(std::string _name, Sort _sort):
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Expression(std::move(_name), std::vector<Expression>{}, _sort) {}
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Expression(std::string _name, Expression _arg, Sort _sort):
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Expression(std::move(_name), std::vector<Expression>{std::move(_arg)}, _sort) {}
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Expression(std::string _name, Expression _arg1, Expression _arg2, Sort _sort):
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Expression(std::move(_name), std::vector<Expression>{std::move(_arg1), std::move(_arg2)}, _sort) {}
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};
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DEV_SIMPLE_EXCEPTION(SolverError);
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class SolverInterface
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{
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public:
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virtual ~SolverInterface() = default;
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virtual void reset() = 0;
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virtual void push() = 0;
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virtual void pop() = 0;
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virtual void declareFunction(std::string _name, std::vector<Sort> const& _domain, Sort _codomain) = 0;
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void declareFunction(std::string _name, Sort _domain, Sort _codomain)
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{
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declareFunction(std::move(_name), std::vector<Sort>{std::move(_domain)}, std::move(_codomain));
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}
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Expression newFunction(std::string _name, std::vector<Sort> const& _domain, Sort _codomain)
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{
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declareFunction(_name, _domain, _codomain);
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// Subclasses should do something here
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switch (_codomain)
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{
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case Sort::Int:
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return Expression(std::move(_name), {}, Sort::Int);
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case Sort::Bool:
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return Expression(std::move(_name), {}, Sort::Bool);
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default:
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solAssert(false, "Function sort not supported.");
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break;
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}
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}
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virtual void declareInteger(std::string _name) = 0;
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Expression newInteger(std::string _name)
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{
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// Subclasses should do something here
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declareInteger(_name);
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return Expression(std::move(_name), {}, Sort::Int);
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}
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virtual void declareBool(std::string _name) = 0;
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Expression newBool(std::string _name)
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{
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// Subclasses should do something here
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declareBool(_name);
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return Expression(std::move(_name), {}, Sort::Bool);
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}
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virtual void addAssertion(Expression const& _expr) = 0;
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/// Checks for satisfiability, evaluates the expressions if a model
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/// is available. Throws SMTSolverError on error.
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virtual std::pair<CheckResult, std::vector<std::string>>
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check(std::vector<Expression> const& _expressionsToEvaluate) = 0;
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protected:
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// SMT query timeout in milliseconds.
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static int const queryTimeout = 10000;
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};
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}
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}
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}
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