mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
298 lines
8.6 KiB
C++
298 lines
8.6 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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// SPDX-License-Identifier: GPL-3.0
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/**
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* Implements generators for synthesizing mostly syntactically valid
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* Solidity test programs.
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*/
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#pragma once
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#include <test/tools/ossfuzz/Generators.h>
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#include <liblangutil/Exceptions.h>
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#include <memory>
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#include <random>
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#include <set>
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#include <variant>
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namespace solidity::test::fuzzer
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{
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/// Forward declarations
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class SolidityGenerator;
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/// Type declarations
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#define SEMICOLON() ;
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#define FORWARDDECLAREGENERATORS(G) class G
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GENERATORLIST(FORWARDDECLAREGENERATORS, SEMICOLON(), SEMICOLON())
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#undef FORWARDDECLAREGENERATORS
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#undef SEMICOLON
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#define COMMA() ,
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using GeneratorPtr = std::variant<
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#define VARIANTOFSHARED(G) std::shared_ptr<G>
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GENERATORLIST(VARIANTOFSHARED, COMMA(), )
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>;
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#undef VARIANTOFSHARED
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using Generator = std::variant<
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#define VARIANTOFGENERATOR(G) G
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GENERATORLIST(VARIANTOFGENERATOR, COMMA(), )
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>;
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#undef VARIANTOFGENERATOR
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#undef COMMA
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using RandomEngine = std::mt19937_64;
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using Distribution = std::uniform_int_distribution<size_t>;
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struct UniformRandomDistribution
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{
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explicit UniformRandomDistribution(std::unique_ptr<RandomEngine> _randomEngine):
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randomEngine(std::move(_randomEngine))
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{}
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/// @returns an unsigned integer in the range [1, @param _n] chosen
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/// uniformly at random.
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[[nodiscard]] size_t distributionOneToN(size_t _n) const
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{
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return Distribution(1, _n)(*randomEngine);
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}
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/// @returns true with a probability of 1/(@param _n), false otherwise.
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/// @param _n must be non zero.
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[[nodiscard]] bool probable(size_t _n) const
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{
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solAssert(_n > 0, "");
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return distributionOneToN(_n) == 1;
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}
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std::unique_ptr<RandomEngine> randomEngine;
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};
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struct TestState
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{
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explicit TestState(std::shared_ptr<UniformRandomDistribution> _urd):
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sourceUnitPaths({}),
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currentSourceUnitPath({}),
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uRandDist(std::move(_urd))
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{}
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/// Adds @param _path to @name sourceUnitPaths updates
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/// @name currentSourceUnitPath.
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void addSourceUnit(std::string const& _path)
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{
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sourceUnitPaths.insert(_path);
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currentSourceUnitPath = _path;
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}
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/// @returns true if @name sourceUnitPaths is empty,
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/// false otherwise.
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[[nodiscard]] bool empty() const
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{
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return sourceUnitPaths.empty();
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}
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/// @returns the number of items in @name sourceUnitPaths.
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[[nodiscard]] size_t size() const
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{
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return sourceUnitPaths.size();
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}
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/// Prints test state to @param _os.
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void print(std::ostream& _os) const;
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/// @returns a randomly chosen path from @param _sourceUnitPaths.
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[[nodiscard]] std::string randomPath(std::set<std::string> const& _sourceUnitPaths) const;
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/// @returns a randomly chosen path from @name sourceUnitPaths.
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[[nodiscard]] std::string randomPath() const;
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/// @returns a randomly chosen non current source unit path.
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[[nodiscard]] std::string randomNonCurrentPath() const;
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/// List of source paths in test input.
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std::set<std::string> sourceUnitPaths;
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/// Source path being currently visited.
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std::string currentSourceUnitPath;
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/// Uniform random distribution.
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std::shared_ptr<UniformRandomDistribution> uRandDist;
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};
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struct GeneratorBase
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{
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explicit GeneratorBase(std::shared_ptr<SolidityGenerator> _mutator);
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template <typename T>
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std::shared_ptr<T> generator()
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{
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for (auto& g: generators)
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if (std::holds_alternative<std::shared_ptr<T>>(g))
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return std::get<std::shared_ptr<T>>(g);
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solAssert(false, "");
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}
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/// @returns test fragment created by this generator.
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std::string generate()
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{
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std::string generatedCode = visit();
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endVisit();
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return generatedCode;
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}
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/// @returns a string representing the generation of
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/// the Solidity grammar element.
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virtual std::string visit() = 0;
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/// Method called after visiting this generator. Used
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/// for clearing state if necessary.
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virtual void endVisit() {}
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/// Visitor that invokes child grammar elements of
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/// this grammar element returning their string
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/// representations.
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std::string visitChildren();
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/// Adds generators for child grammar elements of
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/// this grammar element.
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void addGenerators(std::set<GeneratorPtr> _generators)
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{
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generators += _generators;
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}
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/// Virtual method to obtain string name of generator.
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virtual std::string name() = 0;
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/// Virtual method to add generators that this grammar
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/// element depends on. If not overridden, there are
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/// no dependencies.
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virtual void setup() {}
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virtual ~GeneratorBase()
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{
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generators.clear();
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}
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/// Shared pointer to the mutator instance
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std::shared_ptr<SolidityGenerator> mutator;
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/// Set of generators used by this generator.
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std::set<GeneratorPtr> generators;
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/// Shared ptr to global test state.
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std::shared_ptr<TestState> state;
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/// Uniform random distribution
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std::shared_ptr<UniformRandomDistribution> uRandDist;
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};
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class TestCaseGenerator: public GeneratorBase
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{
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public:
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explicit TestCaseGenerator(std::shared_ptr<SolidityGenerator> _mutator):
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GeneratorBase(std::move(_mutator)),
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m_numSourceUnits(0)
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{}
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void setup() override;
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std::string visit() override;
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std::string name() override
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{
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return "Test case generator";
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}
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private:
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/// @returns a new source path name that is formed by concatenating
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/// a static prefix @name m_sourceUnitNamePrefix, a monotonically
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/// increasing counter starting from 0 and the postfix (extension)
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/// ".sol".
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[[nodiscard]] std::string path() const
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{
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return m_sourceUnitNamePrefix + std::to_string(m_numSourceUnits) + ".sol";
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}
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/// Adds @param _path to list of source paths in global test
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/// state and increments @name m_numSourceUnits.
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void updateSourcePath(std::string const& _path)
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{
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state->addSourceUnit(_path);
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m_numSourceUnits++;
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}
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/// Number of source units in test input
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size_t m_numSourceUnits;
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/// String prefix of source unit names
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std::string const m_sourceUnitNamePrefix = "su";
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/// Maximum number of source units per test input
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static constexpr unsigned s_maxSourceUnits = 3;
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};
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class SourceUnitGenerator: public GeneratorBase
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{
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public:
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explicit SourceUnitGenerator(std::shared_ptr<SolidityGenerator> _mutator):
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GeneratorBase(std::move(_mutator))
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{}
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void setup() override;
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std::string visit() override;
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std::string name() override { return "Source unit generator"; }
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};
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class PragmaGenerator: public GeneratorBase
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{
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public:
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explicit PragmaGenerator(std::shared_ptr<SolidityGenerator> _mutator):
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GeneratorBase(std::move(_mutator))
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{}
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std::string visit() override;
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std::string name() override { return "Pragma generator"; }
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};
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class ImportGenerator: public GeneratorBase
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{
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public:
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explicit ImportGenerator(std::shared_ptr<SolidityGenerator> _mutator):
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GeneratorBase(std::move(_mutator))
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{}
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std::string visit() override;
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std::string name() override { return "Import generator"; }
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private:
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/// Inverse probability with which a source unit
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/// imports itself. Keeping this at 17 seems to
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/// produce self imported source units with a
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/// frequency small enough so that it does not
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/// consume too many fuzzing cycles but large
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/// enough so that the fuzzer generates self
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/// import statements every once in a while.
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static constexpr size_t s_selfImportInvProb = 17;
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};
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class SolidityGenerator: public std::enable_shared_from_this<SolidityGenerator>
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{
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public:
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explicit SolidityGenerator(unsigned _seed);
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/// @returns the generator of type @param T.
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template <typename T>
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std::shared_ptr<T> generator();
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/// @returns a shared ptr to underlying random
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/// number distribution.
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std::shared_ptr<UniformRandomDistribution> uniformRandomDist()
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{
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return m_urd;
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}
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/// @returns a pseudo randomly generated test case.
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std::string generateTestProgram();
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/// @returns shared ptr to global test state.
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std::shared_ptr<TestState> testState()
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{
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return m_state;
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}
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private:
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template <typename T>
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void createGenerator()
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{
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m_generators.insert(
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std::make_shared<T>(shared_from_this())
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);
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}
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template <std::size_t I = 0>
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void createGenerators();
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void destroyGenerators()
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{
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m_generators.clear();
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}
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/// Sub generators
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std::set<GeneratorPtr> m_generators;
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/// Shared global test state
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std::shared_ptr<TestState> m_state;
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/// Uniform random distribution
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std::shared_ptr<UniformRandomDistribution> m_urd;
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};
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}
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