/* This file is part of solidity. solidity is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. solidity is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with solidity. If not, see . */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include using namespace solidity; using namespace solidity::test; using namespace solidity::test::fuzzer; using namespace solidity::yul; using namespace solidity::yul::test; using namespace solidity::yul::test::yul_fuzzer; using namespace solidity::langutil; using namespace solidity::util; using namespace std; static evmc::VM evmone = evmc::VM{evmc_create_evmone()}; DEFINE_PROTO_FUZZER(Program const& _input) { // Solidity creates an invalid instruction for subobjects, so we simply // ignore them in this fuzzer. if (_input.has_obj()) return; bool filterStatefulInstructions = true; bool filterUnboundedLoops = true; bool filterMemoryWrites = true; ProtoConverter converter( filterStatefulInstructions, filterUnboundedLoops, filterMemoryWrites ); string yulSubObject = converter.programToString(_input); // Fuzzer also fuzzes the EVM version field. langutil::EVMVersion version = converter.version(); EVMHost hostContext(version, evmone); hostContext.reset(); // Do not proceed with tests that are too large. 1200 is an arbitrary // threshold. if (yulSubObject.size() > 1200) return; YulStringRepository::reset(); // Package test case into a sub-object Whiskers yulObjectFormat(R"( object "main" { code { codecopy(0, dataoffset("deployed"), datasize("deployed")) return(0, datasize("deployed")) } object "deployed" { code { } } } )"); string yul_source = yulObjectFormat("fuzzerInput", yulSubObject).render(); if (const char* dump_path = getenv("PROTO_FUZZER_DUMP_PATH")) { ofstream of(dump_path); of.write(yul_source.data(), static_cast(yul_source.size())); } solidity::frontend::OptimiserSettings settings = solidity::frontend::OptimiserSettings::none(); AssemblyStack stackUnoptimized; solAssert( stackUnoptimized.parseAndAnalyze("source", yulSubObject), "Parsing fuzzer generated input failed." ); ostringstream unoptimizedState; yulFuzzerUtil::TerminationReason termReason = yulFuzzerUtil::interpret( unoptimizedState, stackUnoptimized.parserResult()->code, EVMDialect::strictAssemblyForEVMObjects(version), true ); if (yulFuzzerUtil::resourceLimitsExceeded(termReason)) return; AssemblyStack stackOptimized; solAssert( stackOptimized.parseAndAnalyze("source", yulSubObject), "Parsing fuzzer generated input failed." ); YulOptimizerTestCommon optimizerTest( stackOptimized.parserResult(), EVMDialect::strictAssemblyForEVMObjects(version) ); // HACK: Force this to fake stack limit evader for now string step = "fakeStackLimitEvader"; optimizerTest.setStep(step); // optimizerTest.setStep(optimizerTest.randomOptimiserStep(_input.step())); shared_ptr astBlock = optimizerTest.run(); string optimisedProgram = Whiskers(R"( object "main" { code { codecopy(0, dataoffset("deployed"), datasize("deployed")) return(0, datasize("deployed")) } object "deployed" { code { } } } )") ("fuzzerInput", AsmPrinter{}(*astBlock)) .render(); bytes optimisedByteCode; optimisedByteCode = YulAssembler{version, settings, optimisedProgram}.assemble(); // Reset host before running optimised code. hostContext.reset(); evmc::result deployResultOpt = YulEvmoneUtility{}.deployCode(optimisedByteCode, hostContext); solAssert( deployResultOpt.status_code == EVMC_SUCCESS, "Evmone: Optimized contract creation failed" ); auto callMessageOpt = YulEvmoneUtility{}.callMessage(deployResultOpt.create_address); evmc::result callResultOpt = hostContext.call(callMessageOpt); bool noRevertInSource = yulSubObject.find("revert") == string::npos; bool noInvalidInSource = yulSubObject.find("invalid") == string::npos; if (noRevertInSource) solAssert( callResultOpt.status_code != EVMC_REVERT, "SolidityEvmoneInterface: EVM One reverted" ); if (noInvalidInSource) solAssert( callResultOpt.status_code != EVMC_INVALID_INSTRUCTION, "Invalid instruction." ); solAssert( (callResultOpt.status_code == EVMC_SUCCESS || (!noRevertInSource && callResultOpt.status_code == EVMC_REVERT) || (!noInvalidInSource && callResultOpt.status_code == EVMC_INVALID_INSTRUCTION)), "Optimised call failed." ); ostringstream optimizedState; optimizedState << EVMHostPrinter{hostContext, deployResultOpt.create_address}.storageOnly(); if (unoptimizedState.str() != optimizedState.str()) { cout << unoptimizedState.str() << endl; cout << optimizedState.str() << endl; } solAssert( unoptimizedState.str() == optimizedState.str(), "State of unoptimised and optimised stack reused code do not match." ); }