mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
212 lines
6.2 KiB
C++
212 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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/**
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* Full assembly stack that can support EVM-assembly and Yul as input and EVM, EVM1.5 and
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* eWasm as output.
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*/
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#include <libyul/AssemblyStack.h>
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#include <libyul/AsmAnalysis.h>
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#include <libyul/AsmAnalysisInfo.h>
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#include <libyul/AsmParser.h>
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#include <libyul/AsmPrinter.h>
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#include <libyul/backends/evm/AsmCodeGen.h>
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#include <libyul/backends/evm/EVMAssembly.h>
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#include <libyul/backends/evm/EVMCodeTransform.h>
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#include <libyul/backends/evm/EVMDialect.h>
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#include <libyul/backends/evm/EVMObjectCompiler.h>
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#include <libyul/backends/wasm/WasmDialect.h>
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#include <libyul/backends/wasm/EWasmObjectCompiler.h>
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#include <libyul/ObjectParser.h>
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#include <libyul/optimiser/Suite.h>
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#include <libsolidity/interface/OptimiserSettings.h>
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#include <libevmasm/Assembly.h>
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#include <liblangutil/Scanner.h>
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using namespace std;
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using namespace langutil;
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using namespace yul;
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namespace
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{
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shared_ptr<Dialect> languageToDialect(AssemblyStack::Language _language, EVMVersion _version)
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{
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switch (_language)
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{
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case AssemblyStack::Language::Assembly:
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return EVMDialect::looseAssemblyForEVM(_version);
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case AssemblyStack::Language::StrictAssembly:
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return EVMDialect::strictAssemblyForEVMObjects(_version);
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case AssemblyStack::Language::Yul:
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return Dialect::yul();
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case AssemblyStack::Language::EWasm:
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return make_shared<WasmDialect>();
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}
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solAssert(false, "");
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return Dialect::yul();
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}
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}
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Scanner const& AssemblyStack::scanner() const
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{
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solAssert(m_scanner, "");
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return *m_scanner;
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}
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bool AssemblyStack::parseAndAnalyze(std::string const& _sourceName, std::string const& _source)
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{
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m_errors.clear();
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m_analysisSuccessful = false;
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m_scanner = make_shared<Scanner>(CharStream(_source, _sourceName));
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m_parserResult = ObjectParser(m_errorReporter, languageToDialect(m_language, m_evmVersion)).parse(m_scanner, false);
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if (!m_errorReporter.errors().empty())
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return false;
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solAssert(m_parserResult, "");
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solAssert(m_parserResult->code, "");
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return analyzeParsed();
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}
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void AssemblyStack::optimize()
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{
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if (!m_optimiserSettings.runYulOptimiser)
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return;
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if (m_language != Language::StrictAssembly)
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solUnimplemented("Optimizer for both loose assembly and Yul is not yet implemented");
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solAssert(m_analysisSuccessful, "Analysis was not successful.");
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m_analysisSuccessful = false;
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solAssert(m_parserResult, "");
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optimize(*m_parserResult);
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solAssert(analyzeParsed(), "Invalid source code after optimization.");
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}
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bool AssemblyStack::analyzeParsed()
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{
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solAssert(m_parserResult, "");
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m_analysisSuccessful = analyzeParsed(*m_parserResult);
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return m_analysisSuccessful;
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}
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bool AssemblyStack::analyzeParsed(Object& _object)
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{
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solAssert(_object.code, "");
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_object.analysisInfo = make_shared<AsmAnalysisInfo>();
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AsmAnalyzer analyzer(*_object.analysisInfo, m_errorReporter, boost::none, languageToDialect(m_language, m_evmVersion));
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bool success = analyzer.analyze(*_object.code);
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for (auto& subNode: _object.subObjects)
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if (auto subObject = dynamic_cast<Object*>(subNode.get()))
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if (!analyzeParsed(*subObject))
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success = false;
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return success;
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}
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void AssemblyStack::compileEVM(AbstractAssembly& _assembly, bool _evm15, bool _optimize) const
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{
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shared_ptr<EVMDialect> dialect;
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if (m_language == Language::Assembly)
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dialect = EVMDialect::looseAssemblyForEVM(m_evmVersion);
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else if (m_language == AssemblyStack::Language::StrictAssembly)
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dialect = EVMDialect::strictAssemblyForEVMObjects(m_evmVersion);
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else if (m_language == AssemblyStack::Language::Yul)
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dialect = EVMDialect::yulForEVM(m_evmVersion);
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else
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solAssert(false, "Invalid language.");
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EVMObjectCompiler::compile(*m_parserResult, _assembly, *dialect, _evm15, _optimize);
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}
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void AssemblyStack::optimize(Object& _object)
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{
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solAssert(_object.code, "");
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solAssert(_object.analysisInfo, "");
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for (auto& subNode: _object.subObjects)
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if (auto subObject = dynamic_cast<Object*>(subNode.get()))
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optimize(*subObject);
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OptimiserSuite::run(
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languageToDialect(m_language, m_evmVersion),
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*_object.code,
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*_object.analysisInfo,
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m_optimiserSettings.optimizeStackAllocation
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);
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}
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MachineAssemblyObject AssemblyStack::assemble(Machine _machine) const
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{
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solAssert(m_analysisSuccessful, "");
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solAssert(m_parserResult, "");
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solAssert(m_parserResult->code, "");
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solAssert(m_parserResult->analysisInfo, "");
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switch (_machine)
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{
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case Machine::EVM:
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{
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MachineAssemblyObject object;
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dev::eth::Assembly assembly;
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EthAssemblyAdapter adapter(assembly);
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compileEVM(adapter, false, m_optimiserSettings.optimizeStackAllocation);
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object.bytecode = make_shared<dev::eth::LinkerObject>(assembly.assemble());
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object.assembly = assembly.assemblyString();
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return object;
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}
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case Machine::EVM15:
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{
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MachineAssemblyObject object;
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EVMAssembly assembly(true);
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compileEVM(assembly, true, m_optimiserSettings.optimizeStackAllocation);
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object.bytecode = make_shared<dev::eth::LinkerObject>(assembly.finalize());
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/// TODO: fill out text representation
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return object;
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}
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case Machine::eWasm:
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{
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solAssert(m_language == Language::EWasm, "");
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shared_ptr<Dialect> dialect = languageToDialect(m_language, EVMVersion{});
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MachineAssemblyObject object;
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object.assembly = EWasmObjectCompiler::compile(*m_parserResult, *dialect);
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return object;
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}
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}
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// unreachable
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return MachineAssemblyObject();
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}
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string AssemblyStack::print() const
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{
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solAssert(m_parserResult, "");
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solAssert(m_parserResult->code, "");
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return m_parserResult->toString(m_language == Language::Yul) + "\n";
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}
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shared_ptr<Object> AssemblyStack::parserResult() const
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{
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solAssert(m_analysisSuccessful, "Analysis was not successful.");
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solAssert(m_parserResult, "");
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solAssert(m_parserResult->code, "");
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return m_parserResult;
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}
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