mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
452 lines
15 KiB
C++
452 lines
15 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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#include <test/libyul/YulOptimizerTestCommon.h>
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#include <libyul/optimiser/BlockFlattener.h>
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#include <libyul/optimiser/VarDeclInitializer.h>
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#include <libyul/optimiser/VarNameCleaner.h>
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#include <libyul/optimiser/ControlFlowSimplifier.h>
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#include <libyul/optimiser/DeadCodeEliminator.h>
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#include <libyul/optimiser/Disambiguator.h>
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#include <libyul/optimiser/CircularReferencesPruner.h>
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#include <libyul/optimiser/ConditionalUnsimplifier.h>
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#include <libyul/optimiser/ConditionalSimplifier.h>
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#include <libyul/optimiser/CommonSubexpressionEliminator.h>
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#include <libyul/optimiser/EquivalentFunctionCombiner.h>
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#include <libyul/optimiser/ExpressionSplitter.h>
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#include <libyul/optimiser/FunctionGrouper.h>
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#include <libyul/optimiser/FunctionHoister.h>
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#include <libyul/optimiser/FunctionSpecializer.h>
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#include <libyul/optimiser/ExpressionInliner.h>
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#include <libyul/optimiser/FullInliner.h>
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#include <libyul/optimiser/ForLoopConditionIntoBody.h>
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#include <libyul/optimiser/ForLoopInitRewriter.h>
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#include <libyul/optimiser/LoadResolver.h>
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#include <libyul/optimiser/LoopInvariantCodeMotion.h>
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#include <libyul/optimiser/MainFunction.h>
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#include <libyul/optimiser/StackLimitEvader.h>
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#include <libyul/optimiser/NameDisplacer.h>
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#include <libyul/optimiser/Rematerialiser.h>
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#include <libyul/optimiser/ExpressionSimplifier.h>
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#include <libyul/optimiser/UnusedFunctionParameterPruner.h>
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#include <libyul/optimiser/UnusedPruner.h>
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#include <libyul/optimiser/ExpressionJoiner.h>
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#include <libyul/optimiser/OptimiserStep.h>
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#include <libyul/optimiser/ReasoningBasedSimplifier.h>
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#include <libyul/optimiser/SSAReverser.h>
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#include <libyul/optimiser/SSATransform.h>
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#include <libyul/optimiser/Semantics.h>
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#include <libyul/optimiser/RedundantAssignEliminator.h>
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#include <libyul/optimiser/StructuralSimplifier.h>
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#include <libyul/optimiser/StackCompressor.h>
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#include <libyul/optimiser/Suite.h>
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#include <libyul/backends/evm/ConstantOptimiser.h>
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#include <libyul/backends/evm/EVMDialect.h>
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#include <libyul/backends/evm/EVMMetrics.h>
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#include <libyul/backends/wasm/WordSizeTransform.h>
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#include <libyul/backends/wasm/WasmDialect.h>
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#include <libyul/AsmPrinter.h>
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#include <libyul/AsmAnalysis.h>
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#include <libyul/CompilabilityChecker.h>
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#include <libsolidity/interface/OptimiserSettings.h>
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#include <random>
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using namespace solidity;
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using namespace solidity::util;
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using namespace solidity::langutil;
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using namespace solidity::yul;
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using namespace solidity::yul::test;
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using namespace solidity::frontend;
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using namespace std;
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YulOptimizerTestCommon::YulOptimizerTestCommon(
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shared_ptr<Object> _obj,
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Dialect const& _dialect
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)
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{
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m_object = _obj;
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m_ast = m_object->code;
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m_analysisInfo = m_object->analysisInfo;
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m_dialect = &_dialect;
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m_namedSteps = {
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{"disambiguator", [&]() { disambiguate(); }},
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{"nameDisplacer", [&]() {
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disambiguate();
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NameDisplacer{
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*m_nameDispenser,
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{"illegal1"_yulstring, "illegal2"_yulstring, "illegal3"_yulstring, "illegal4"_yulstring, "illegal5"_yulstring}
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}(*m_ast);
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}},
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{"blockFlattener", [&]() {
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disambiguate();
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BlockFlattener::run(*m_context, *m_ast);
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}},
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{"constantOptimiser", [&]() {
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GasMeter meter(dynamic_cast<EVMDialect const&>(*m_dialect), false, 200);
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ConstantOptimiser{dynamic_cast<EVMDialect const&>(*m_dialect), meter}(*m_ast);
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}},
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{"varDeclInitializer", [&]() { VarDeclInitializer::run(*m_context, *m_ast); }},
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{"varNameCleaner", [&]() {
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disambiguate();
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FunctionHoister::run(*m_context, *m_ast);
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FunctionGrouper::run(*m_context, *m_ast);
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VarNameCleaner::run(*m_context, *m_ast);
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}},
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{"forLoopConditionIntoBody", [&]() {
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disambiguate();
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ForLoopConditionIntoBody::run(*m_context, *m_ast);
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}},
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{"forLoopInitRewriter", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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}},
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{"commonSubexpressionEliminator", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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CommonSubexpressionEliminator::run(*m_context, *m_ast);
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}},
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{"conditionalUnsimplifier", [&]() {
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disambiguate();
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ConditionalUnsimplifier::run(*m_context, *m_ast);
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}},
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{"conditionalSimplifier", [&]() {
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disambiguate();
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ConditionalSimplifier::run(*m_context, *m_ast);
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}},
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{"expressionSplitter", [&]() { ExpressionSplitter::run(*m_context, *m_ast); }},
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{"expressionJoiner", [&]() {
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disambiguate();
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ExpressionJoiner::run(*m_context, *m_ast);
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}},
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{"splitJoin", [&]() {
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disambiguate();
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ExpressionSplitter::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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}},
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{"functionGrouper", [&]() {
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disambiguate();
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FunctionGrouper::run(*m_context, *m_ast);
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}},
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{"functionHoister", [&]() {
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disambiguate();
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FunctionHoister::run(*m_context, *m_ast);
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}},
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{"functionSpecializer", [&]() {
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disambiguate();
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FunctionHoister::run(*m_context, *m_object->code);
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FunctionSpecializer::run(*m_context, *m_object->code);
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}},
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{"expressionInliner", [&]() {
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disambiguate();
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ExpressionInliner::run(*m_context, *m_ast);
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}},
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{"fullInliner", [&]() {
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disambiguate();
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FunctionHoister::run(*m_context, *m_ast);
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FunctionGrouper::run(*m_context, *m_ast);
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ExpressionSplitter::run(*m_context, *m_ast);
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FullInliner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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}},
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{"mainFunction", [&]() {
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disambiguate();
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FunctionGrouper::run(*m_context, *m_ast);
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MainFunction::run(*m_context, *m_ast);
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}},
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{"rematerialiser", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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Rematerialiser::run(*m_context, *m_ast);
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}},
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{"expressionSimplifier", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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ExpressionSplitter::run(*m_context, *m_ast);
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CommonSubexpressionEliminator::run(*m_context, *m_ast);
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ExpressionSimplifier::run(*m_context, *m_ast);
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ExpressionSimplifier::run(*m_context, *m_ast);
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ExpressionSimplifier::run(*m_context, *m_ast);
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UnusedPruner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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}},
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{"fullSimplify", [&]() {
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disambiguate();
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ExpressionSplitter::run(*m_context, *m_ast);
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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CommonSubexpressionEliminator::run(*m_context, *m_ast);
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ExpressionSimplifier::run(*m_context, *m_ast);
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UnusedPruner::run(*m_context, *m_ast);
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CircularReferencesPruner::run(*m_context, *m_ast);
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DeadCodeEliminator::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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}},
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{"unusedFunctionParameterPruner", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_object->code);
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LiteralRematerialiser::run(*m_context, *m_object->code);
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UnusedFunctionParameterPruner::run(*m_context, *m_object->code);
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}},
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{"unusedPruner", [&]() {
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disambiguate();
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UnusedPruner::run(*m_context, *m_ast);
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}},
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{"circularReferencesPruner", [&]() {
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disambiguate();
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FunctionHoister::run(*m_context, *m_ast);
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CircularReferencesPruner::run(*m_context, *m_ast);
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}},
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{"deadCodeEliminator", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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DeadCodeEliminator::run(*m_context, *m_ast);
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}},
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{"ssaTransform", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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SSATransform::run(*m_context, *m_ast);
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}},
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{"redundantAssignEliminator", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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RedundantAssignEliminator::run(*m_context, *m_ast);
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}},
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{"ssaPlusCleanup", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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SSATransform::run(*m_context, *m_ast);
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RedundantAssignEliminator::run(*m_context, *m_ast);
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}},
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{"loadResolver", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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ExpressionSplitter::run(*m_context, *m_ast);
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CommonSubexpressionEliminator::run(*m_context, *m_ast);
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ExpressionSimplifier::run(*m_context, *m_ast);
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LoadResolver::run(*m_context, *m_ast);
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UnusedPruner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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ExpressionJoiner::run(*m_context, *m_ast);
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}},
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{"loopInvariantCodeMotion", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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LoopInvariantCodeMotion::run(*m_context, *m_ast);
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}},
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{"controlFlowSimplifier", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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ControlFlowSimplifier::run(*m_context, *m_ast);
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}},
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{"structuralSimplifier", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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LiteralRematerialiser::run(*m_context, *m_ast);
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StructuralSimplifier::run(*m_context, *m_ast);
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}},
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{"reasoningBasedSimplifier", [&]() {
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disambiguate();
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ReasoningBasedSimplifier::run(*m_context, *m_object->code);
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}},
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{"equivalentFunctionCombiner", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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EquivalentFunctionCombiner::run(*m_context, *m_ast);
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}},
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{"ssaReverser", [&]() {
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disambiguate();
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SSAReverser::run(*m_context, *m_ast);
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}},
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{"ssaAndBack", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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// apply SSA
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SSATransform::run(*m_context, *m_ast);
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RedundantAssignEliminator::run(*m_context, *m_ast);
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// reverse SSA
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SSAReverser::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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CommonSubexpressionEliminator::run(*m_context, *m_ast);
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UnusedPruner::run(*m_context, *m_ast);
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}},
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{"stackCompressor", [&]() {
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disambiguate();
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ForLoopInitRewriter::run(*m_context, *m_ast);
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FunctionHoister::run(*m_context, *m_ast);
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FunctionGrouper::run(*m_context, *m_ast);
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size_t maxIterations = 16;
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StackCompressor::run(*m_dialect, *m_object, true, maxIterations);
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BlockFlattener::run(*m_context, *m_ast);
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}},
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{"wordSizeTransform", [&]() {
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disambiguate();
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ExpressionSplitter::run(*m_context, *m_ast);
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WordSizeTransform::run(*m_dialect, *m_dialect, *m_ast, *m_nameDispenser);
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}},
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{"fullSuite", [&]() {
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GasMeter meter(dynamic_cast<EVMDialect const&>(*m_dialect), false, 200);
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OptimiserSuite::run(
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*m_dialect,
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&meter,
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*m_object,
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true,
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frontend::OptimiserSettings::DefaultYulOptimiserSteps,
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frontend::OptimiserSettings::standard().expectedExecutionsPerDeployment
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);
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}},
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{"stackLimitEvader", [&]() {
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disambiguate();
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StackLimitEvader::run(*m_context, *m_object, CompilabilityChecker{
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*m_dialect,
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*m_object,
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true
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}.unreachableVariables);
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}},
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{"fakeStackLimitEvader", [&]() {
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disambiguate();
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// Mark all variables with a name starting with "$" for escalation to memory.
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struct FakeUnreachableGenerator: ASTWalker
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{
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map<YulString, set<YulString>> fakeUnreachables;
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using ASTWalker::operator();
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void operator()(FunctionDefinition const& _function) override
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{
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YulString originalFunctionName = m_currentFunction;
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m_currentFunction = _function.name;
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for (TypedName const& _argument: _function.parameters)
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visitVariableName(_argument.name);
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for (TypedName const& _argument: _function.returnVariables)
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visitVariableName(_argument.name);
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ASTWalker::operator()(_function);
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m_currentFunction = originalFunctionName;
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}
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void visitVariableName(YulString _var)
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{
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if (!_var.empty() && _var.str().front() == '$')
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fakeUnreachables[m_currentFunction].insert(_var);
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}
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void operator()(VariableDeclaration const& _varDecl) override
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{
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for (auto const& var: _varDecl.variables)
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visitVariableName(var.name);
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ASTWalker::operator()(_varDecl);
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}
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void operator()(Identifier const& _identifier) override
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{
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visitVariableName(_identifier.name);
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ASTWalker::operator()(_identifier);
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}
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YulString m_currentFunction = YulString{};
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};
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FakeUnreachableGenerator fakeUnreachableGenerator;
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fakeUnreachableGenerator(*m_ast);
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StackLimitEvader::run(*m_context, *m_object, fakeUnreachableGenerator.fakeUnreachables);
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}}
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};
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}
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void YulOptimizerTestCommon::setStep(string const& _optimizerStep)
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{
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m_optimizerStep = _optimizerStep;
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}
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bool YulOptimizerTestCommon::runStep()
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{
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yulAssert(m_dialect, "Dialect not set.");
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updateContext();
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if (m_namedSteps.count(m_optimizerStep))
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m_namedSteps[m_optimizerStep]();
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else
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return false;
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return true;
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}
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string YulOptimizerTestCommon::randomOptimiserStep(unsigned _seed)
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{
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std::mt19937 prng(_seed);
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std::uniform_int_distribution<size_t> dist(1, m_namedSteps.size());
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size_t idx = dist(prng);
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size_t count = 1;
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for (auto &step: m_namedSteps)
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{
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if (count == idx)
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{
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string optimiserStep = step.first;
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// Do not fuzz mainFunction and wordSizeTransform
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// because they do not preserve yul code semantics.
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// Do not fuzz reasoning based simplifier because
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// it can sometimes drain memory.
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if (
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optimiserStep == "mainFunction" ||
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optimiserStep == "wordSizeTransform" ||
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optimiserStep == "reasoningBasedSimplifier"
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)
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// "Fullsuite" is fuzzed roughly four times more frequently than
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// other steps because of the filtering in place above.
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return "fullSuite";
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else
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return optimiserStep;
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}
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count++;
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}
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yulAssert(false, "Optimiser step selection failed.");
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}
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shared_ptr<Block> YulOptimizerTestCommon::run()
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{
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return runStep() ? m_ast : nullptr;
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}
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void YulOptimizerTestCommon::disambiguate()
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{
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*m_object->code = std::get<Block>(Disambiguator(*m_dialect, *m_analysisInfo)(*m_object->code));
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m_analysisInfo.reset();
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updateContext();
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}
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void YulOptimizerTestCommon::updateContext()
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{
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m_nameDispenser = make_unique<NameDispenser>(*m_dialect, *m_object->code, m_reservedIdentifiers);
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m_context = make_unique<OptimiserStepContext>(OptimiserStepContext{
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*m_dialect,
|
|
*m_nameDispenser,
|
|
m_reservedIdentifiers,
|
|
frontend::OptimiserSettings::standard().expectedExecutionsPerDeployment
|
|
});
|
|
}
|