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			399 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			399 lines
		
	
	
		
			11 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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 * Optimiser suite that combines all steps and also provides the settings for the heuristics.
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 */
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#include <libyul/optimiser/Suite.h>
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#include <libyul/optimiser/Disambiguator.h>
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#include <libyul/optimiser/VarDeclInitializer.h>
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#include <libyul/optimiser/BlockFlattener.h>
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#include <libyul/optimiser/CallGraphGenerator.h>
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#include <libyul/optimiser/ControlFlowSimplifier.h>
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#include <libyul/optimiser/ConditionalSimplifier.h>
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#include <libyul/optimiser/ConditionalUnsimplifier.h>
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#include <libyul/optimiser/DeadCodeEliminator.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/EquivalentFunctionCombiner.h>
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#include <libyul/optimiser/ExpressionSplitter.h>
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#include <libyul/optimiser/ExpressionJoiner.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/ForLoopConditionOutOfBody.h>
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#include <libyul/optimiser/ForLoopInitRewriter.h>
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#include <libyul/optimiser/ForLoopConditionIntoBody.h>
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#include <libyul/optimiser/Rematerialiser.h>
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#include <libyul/optimiser/UnusedPruner.h>
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#include <libyul/optimiser/ExpressionSimplifier.h>
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#include <libyul/optimiser/CommonSubexpressionEliminator.h>
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#include <libyul/optimiser/Semantics.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/StackCompressor.h>
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#include <libyul/optimiser/StructuralSimplifier.h>
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#include <libyul/optimiser/SyntacticalEquality.h>
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#include <libyul/optimiser/RedundantAssignEliminator.h>
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#include <libyul/optimiser/VarNameCleaner.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/Metrics.h>
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#include <libyul/backends/evm/ConstantOptimiser.h>
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#include <libyul/AsmAnalysis.h>
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#include <libyul/AsmAnalysisInfo.h>
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#include <libyul/AsmData.h>
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#include <libyul/AsmPrinter.h>
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#include <libyul/Object.h>
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#include <libyul/backends/wasm/WasmDialect.h>
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#include <libyul/backends/evm/NoOutputAssembly.h>
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#include <libdevcore/CommonData.h>
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using namespace std;
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using namespace dev;
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using namespace yul;
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void OptimiserSuite::run(
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	Dialect const& _dialect,
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	GasMeter const* _meter,
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	Object& _object,
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	bool _optimizeStackAllocation,
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	set<YulString> const& _externallyUsedIdentifiers
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)
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{
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	set<YulString> reservedIdentifiers = _externallyUsedIdentifiers;
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	reservedIdentifiers += _dialect.fixedFunctionNames();
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	*_object.code = std::get<Block>(Disambiguator(
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		_dialect,
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		*_object.analysisInfo,
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		reservedIdentifiers
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	)(*_object.code));
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	Block& ast = *_object.code;
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	OptimiserSuite suite(_dialect, reservedIdentifiers, Debug::None, ast);
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	suite.runSequence({
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		VarDeclInitializer::name,
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		FunctionHoister::name,
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		BlockFlattener::name,
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		ForLoopInitRewriter::name,
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		DeadCodeEliminator::name,
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		FunctionGrouper::name,
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		EquivalentFunctionCombiner::name,
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		UnusedPruner::name,
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		BlockFlattener::name,
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		ControlFlowSimplifier::name,
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		LiteralRematerialiser::name,
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		ConditionalUnsimplifier::name,
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		StructuralSimplifier::name,
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		ControlFlowSimplifier::name,
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		ForLoopConditionIntoBody::name,
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		BlockFlattener::name
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	}, ast);
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	// None of the above can make stack problems worse.
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	size_t codeSize = 0;
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	for (size_t rounds = 0; rounds < 12; ++rounds)
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	{
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		{
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			size_t newSize = CodeSize::codeSizeIncludingFunctions(ast);
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			if (newSize == codeSize)
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				break;
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			codeSize = newSize;
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		}
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		{
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			// Turn into SSA and simplify
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			suite.runSequence({
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				ExpressionSplitter::name,
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				SSATransform::name,
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				RedundantAssignEliminator::name,
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				RedundantAssignEliminator::name,
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				ExpressionSimplifier::name,
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				CommonSubexpressionEliminator::name,
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				LoadResolver::name,
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				LoopInvariantCodeMotion::name
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			}, ast);
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		}
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		{
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			// perform structural simplification
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			suite.runSequence({
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				CommonSubexpressionEliminator::name,
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				ConditionalSimplifier::name,
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				LiteralRematerialiser::name,
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				ConditionalUnsimplifier::name,
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				StructuralSimplifier::name,
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				LiteralRematerialiser::name,
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				ForLoopConditionOutOfBody::name,
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				ControlFlowSimplifier::name,
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				StructuralSimplifier::name,
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				ControlFlowSimplifier::name,
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				BlockFlattener::name,
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				DeadCodeEliminator::name,
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				ForLoopConditionIntoBody::name,
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				UnusedPruner::name
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			}, ast);
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		}
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		{
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			// simplify again
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			suite.runSequence({
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				LoadResolver::name,
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				CommonSubexpressionEliminator::name,
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				UnusedPruner::name,
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			}, ast);
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		}
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		{
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			// reverse SSA
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			suite.runSequence({
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				SSAReverser::name,
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				CommonSubexpressionEliminator::name,
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				UnusedPruner::name,
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				ExpressionJoiner::name,
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				ExpressionJoiner::name,
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			}, ast);
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		}
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		// should have good "compilability" property here.
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		{
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			// run functional expression inliner
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			suite.runSequence({
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				ExpressionInliner::name,
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				UnusedPruner::name,
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			}, ast);
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		}
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		{
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			// Prune a bit more in SSA
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			suite.runSequence({
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				ExpressionSplitter::name,
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				SSATransform::name,
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				RedundantAssignEliminator::name,
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				UnusedPruner::name,
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				RedundantAssignEliminator::name,
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				UnusedPruner::name,
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			}, ast);
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		}
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		{
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			// Turn into SSA again and simplify
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			suite.runSequence({
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				ExpressionSplitter::name,
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				SSATransform::name,
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				RedundantAssignEliminator::name,
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				RedundantAssignEliminator::name,
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				CommonSubexpressionEliminator::name,
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				LoadResolver::name,
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			}, ast);
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		}
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		{
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			// run full inliner
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			suite.runSequence({
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				FunctionGrouper::name,
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				EquivalentFunctionCombiner::name,
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				FullInliner::name,
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				BlockFlattener::name
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			}, ast);
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		}
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		{
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			// SSA plus simplify
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			suite.runSequence({
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				ConditionalSimplifier::name,
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				LiteralRematerialiser::name,
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				ConditionalUnsimplifier::name,
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				CommonSubexpressionEliminator::name,
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				SSATransform::name,
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				RedundantAssignEliminator::name,
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				RedundantAssignEliminator::name,
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				LoadResolver::name,
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				ExpressionSimplifier::name,
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				LiteralRematerialiser::name,
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				ForLoopConditionOutOfBody::name,
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				StructuralSimplifier::name,
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				BlockFlattener::name,
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				DeadCodeEliminator::name,
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				ControlFlowSimplifier::name,
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				CommonSubexpressionEliminator::name,
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				SSATransform::name,
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				RedundantAssignEliminator::name,
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				RedundantAssignEliminator::name,
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				ForLoopConditionIntoBody::name,
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				UnusedPruner::name,
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				CommonSubexpressionEliminator::name,
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			}, ast);
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		}
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	}
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	// Make source short and pretty.
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	suite.runSequence({
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		ExpressionJoiner::name,
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		Rematerialiser::name,
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		UnusedPruner::name,
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		ExpressionJoiner::name,
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		UnusedPruner::name,
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		ExpressionJoiner::name,
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		UnusedPruner::name,
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		SSAReverser::name,
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		CommonSubexpressionEliminator::name,
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		LiteralRematerialiser::name,
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		ForLoopConditionOutOfBody::name,
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		CommonSubexpressionEliminator::name,
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		UnusedPruner::name,
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		ExpressionJoiner::name,
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		Rematerialiser::name,
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		UnusedPruner::name,
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	}, ast);
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	// This is a tuning parameter, but actually just prevents infinite loops.
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	size_t stackCompressorMaxIterations = 16;
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	suite.runSequence({
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		FunctionGrouper::name
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	}, ast);
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	// We ignore the return value because we will get a much better error
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	// message once we perform code generation.
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	StackCompressor::run(
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		_dialect,
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		_object,
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		_optimizeStackAllocation,
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		stackCompressorMaxIterations
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	);
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	suite.runSequence({
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		BlockFlattener::name,
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		DeadCodeEliminator::name,
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		ControlFlowSimplifier::name,
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		LiteralRematerialiser::name,
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		ForLoopConditionOutOfBody::name,
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		CommonSubexpressionEliminator::name,
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		FunctionGrouper::name,
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	}, ast);
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	if (EVMDialect const* dialect = dynamic_cast<EVMDialect const*>(&_dialect))
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	{
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		yulAssert(_meter, "");
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		ConstantOptimiser{*dialect, *_meter}(ast);
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	}
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	else if (dynamic_cast<WasmDialect const*>(&_dialect))
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	{
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		// If the first statement is an empty block, remove it.
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		// We should only have function definitions after that.
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		if (ast.statements.size() > 1 && std::get<Block>(ast.statements.front()).statements.empty())
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			ast.statements.erase(ast.statements.begin());
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	}
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	suite.runSequence({
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		VarNameCleaner::name
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	}, ast);
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	*_object.analysisInfo = AsmAnalyzer::analyzeStrictAssertCorrect(_dialect, _object);
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}
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namespace
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{
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template <class... Step>
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map<string, unique_ptr<OptimiserStep>> optimiserStepCollection()
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{
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	map<string, unique_ptr<OptimiserStep>> ret;
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	for (unique_ptr<OptimiserStep>& s: make_vector<unique_ptr<OptimiserStep>>(
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		(make_unique<OptimiserStepInstance<Step>>())...
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	))
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	{
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		yulAssert(!ret.count(s->name), "");
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		ret[s->name] = std::move(s);
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	}
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	return ret;
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}
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}
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map<string, unique_ptr<OptimiserStep>> const& OptimiserSuite::allSteps()
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{
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	static map<string, unique_ptr<OptimiserStep>> instance;
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	if (instance.empty())
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		instance = optimiserStepCollection<
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			BlockFlattener,
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			CommonSubexpressionEliminator,
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			ConditionalSimplifier,
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			ConditionalUnsimplifier,
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			ControlFlowSimplifier,
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			DeadCodeEliminator,
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			EquivalentFunctionCombiner,
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			ExpressionInliner,
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			ExpressionJoiner,
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			ExpressionSimplifier,
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			ExpressionSplitter,
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			ForLoopConditionIntoBody,
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			ForLoopConditionOutOfBody,
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			ForLoopInitRewriter,
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			FullInliner,
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			FunctionGrouper,
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			FunctionHoister,
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			LiteralRematerialiser,
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			LoadResolver,
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			LoopInvariantCodeMotion,
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			RedundantAssignEliminator,
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			Rematerialiser,
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			SSAReverser,
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			SSATransform,
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			StructuralSimplifier,
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			UnusedPruner,
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			VarDeclInitializer,
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			VarNameCleaner
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		>();
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	return instance;
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}
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void OptimiserSuite::runSequence(std::vector<string> const& _steps, Block& _ast)
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{
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	unique_ptr<Block> copy;
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	if (m_debug == Debug::PrintChanges)
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		copy = make_unique<Block>(std::get<Block>(ASTCopier{}(_ast)));
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	for (string const& step: _steps)
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	{
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		if (m_debug == Debug::PrintStep)
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			cout << "Running " << step << endl;
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		allSteps().at(step)->run(m_context, _ast);
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		if (m_debug == Debug::PrintChanges)
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		{
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			// TODO should add switch to also compare variable names!
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			if (SyntacticallyEqual{}.statementEqual(_ast, *copy))
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				cout << "== Running " << step << " did not cause changes." << endl;
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			else
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			{
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				cout << "== Running " << step << " changed the AST." << endl;
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				cout << AsmPrinter{}(_ast) << endl;
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				copy = make_unique<Block>(std::get<Block>(ASTCopier{}(_ast)));
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			}
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		}
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	}
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}
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