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			250 lines
		
	
	
		
			8.1 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			250 lines
		
	
	
		
			8.1 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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 * Common code generator for translating Yul / inline assembly to EVM and EVM1.5.
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 */
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#pragma once
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#include <libyul/backends/evm/EVMAssembly.h>
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#include <libyul/backends/evm/EVMDialect.h>
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#include <libyul/optimiser/ASTWalker.h>
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#include <libyul/AsmDataForward.h>
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#include <libyul/AsmScope.h>
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#include <optional>
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#include <stack>
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namespace langutil
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{
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class ErrorReporter;
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}
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namespace yul
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{
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struct AsmAnalysisInfo;
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class EVMAssembly;
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struct StackTooDeepError: virtual YulException
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{
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	StackTooDeepError(YulString _variable, int _depth): variable(_variable), depth(_depth) {}
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	StackTooDeepError(YulString _functionName, YulString _variable, int _depth):
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		functionName(_functionName), variable(_variable), depth(_depth)
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	{}
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	YulString functionName;
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	YulString variable;
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	int depth;
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};
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struct CodeTransformContext
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{
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	std::map<Scope::Label const*, AbstractAssembly::LabelID> labelIDs;
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	std::map<Scope::Function const*, AbstractAssembly::LabelID> functionEntryIDs;
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	std::map<Scope::Variable const*, int> variableStackHeights;
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	std::map<Scope::Variable const*, unsigned> variableReferences;
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	struct JumpInfo
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	{
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		AbstractAssembly::LabelID label;  ///< Jump's LabelID to jump to.
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		int targetStackHeight;            ///< Stack height after the jump.
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	};
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	struct ForLoopLabels
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	{
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		JumpInfo post; ///< Jump info for jumping to post branch.
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		JumpInfo done; ///< Jump info for jumping to done branch.
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	};
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	std::stack<ForLoopLabels> forLoopStack;
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	std::stack<JumpInfo> functionExitPoints;
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};
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/**
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 * Counts the number of references to a variable. This includes actual (read) references
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 * but also assignments to the variable. It does not include the declaration itself or
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 * function parameters, but it does include function return parameters.
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 *
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 * This component can handle multiple variables of the same name.
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 *
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 * Can only be applied to strict assembly.
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 */
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class VariableReferenceCounter: public yul::ASTWalker
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{
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public:
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	explicit VariableReferenceCounter(
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		CodeTransformContext& _context,
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		AsmAnalysisInfo const& _assemblyInfo
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	): m_context(_context), m_info(_assemblyInfo)
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	{}
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public:
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	void operator()(Identifier const& _identifier);
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	void operator()(FunctionDefinition const&);
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	void operator()(ForLoop const&);
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	void operator()(Block const& _block);
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private:
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	void increaseRefIfFound(YulString _variableName);
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	CodeTransformContext& m_context;
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	AsmAnalysisInfo const& m_info;
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	Scope* m_scope = nullptr;
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};
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class CodeTransform
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{
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public:
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	/// Create the code transformer.
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	/// @param _identifierAccess used to resolve identifiers external to the inline assembly
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	/// As a side-effect of its construction, translates the Yul code and appends it to the
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	/// given assembly.
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	/// Throws StackTooDeepError if a variable is not accessible or if a function has too
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	/// many parameters.
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	CodeTransform(
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		AbstractAssembly& _assembly,
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		AsmAnalysisInfo& _analysisInfo,
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		Block const& _block,
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		EVMDialect const& _dialect,
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		BuiltinContext& _builtinContext,
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		bool _allowStackOpt = false,
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		bool _evm15 = false,
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		ExternalIdentifierAccess const& _identifierAccess = ExternalIdentifierAccess(),
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		bool _useNamedLabelsForFunctions = false
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	): CodeTransform(
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		_assembly,
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		_analysisInfo,
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		_block,
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		_allowStackOpt,
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		_dialect,
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		_builtinContext,
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		_evm15,
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		_identifierAccess,
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		_useNamedLabelsForFunctions,
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		_assembly.stackHeight(),
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		nullptr
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	)
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	{
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	}
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	std::vector<StackTooDeepError> const& stackErrors() const { return m_stackErrors; }
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protected:
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	using Context = CodeTransformContext;
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	CodeTransform(
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		AbstractAssembly& _assembly,
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		AsmAnalysisInfo& _analysisInfo,
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		Block const& _block,
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		bool _allowStackOpt,
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		EVMDialect const& _dialect,
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		BuiltinContext& _builtinContext,
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		bool _evm15,
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		ExternalIdentifierAccess const& _identifierAccess,
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		bool _useNamedLabelsForFunctions,
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		int _stackAdjustment,
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		std::shared_ptr<Context> _context
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	);
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	void decreaseReference(YulString _name, Scope::Variable const& _var);
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	bool unreferenced(Scope::Variable const& _var) const;
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	/// Marks slots of variables that are not used anymore
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	/// and were defined in the current scope for reuse.
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	/// Also POPs unused topmost stack slots.
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	void freeUnusedVariables();
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	/// Marks the stack slot of @a _var to be reused.
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	void deleteVariable(Scope::Variable const& _var);
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public:
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	void operator()(Instruction const& _instruction);
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	void operator()(Literal const& _literal);
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	void operator()(Identifier const& _identifier);
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	void operator()(FunctionCall const&);
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	void operator()(ExpressionStatement const& _statement);
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	void operator()(Assignment const& _assignment);
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	void operator()(VariableDeclaration const& _varDecl);
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	void operator()(If const& _if);
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	void operator()(Switch const& _switch);
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	void operator()(FunctionDefinition const&);
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	void operator()(ForLoop const&);
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	void operator()(Break const&);
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	void operator()(Continue const&);
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	void operator()(Leave const&);
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	void operator()(Block const& _block);
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private:
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	AbstractAssembly::LabelID labelFromIdentifier(Identifier const& _identifier);
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	/// @returns the label ID corresponding to the given label, allocating a new one if
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	/// necessary.
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	AbstractAssembly::LabelID labelID(Scope::Label const& _label);
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	AbstractAssembly::LabelID functionEntryID(YulString _name, Scope::Function const& _function);
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	/// Generates code for an expression that is supposed to return a single value.
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	void visitExpression(Expression const& _expression);
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	void visitStatements(std::vector<Statement> const& _statements);
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	/// Pops all variables declared in the block and checks that the stack height is equal
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	/// to @a _blackStartStackHeight.
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	void finalizeBlock(Block const& _block, int _blockStartStackHeight);
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	void generateMultiAssignment(std::vector<Identifier> const& _variableNames);
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	void generateAssignment(Identifier const& _variableName);
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	/// Determines the stack height difference to the given variables. Throws
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	/// if it is not yet in scope or the height difference is too large. Returns
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	/// the (positive) stack height difference otherwise.
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	int variableHeightDiff(Scope::Variable const& _var, YulString _name, bool _forSwap);
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	void expectDeposit(int _deposit, int _oldHeight) const;
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	void checkStackHeight(void const* _astElement) const;
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	/// Stores the stack error in the list of errors, appends an invalid opcode
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	/// and corrects the stack height to the target stack height.
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	void stackError(StackTooDeepError _error, int _targetStackSize);
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	/// Ensures stack height is down to @p _targetDepth by appending POP instructions to the output assembly.
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	/// Returns the number of POP statements that have been appended.
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	int appendPopUntil(int _targetDepth);
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	AbstractAssembly& m_assembly;
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	AsmAnalysisInfo& m_info;
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	Scope* m_scope = nullptr;
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	EVMDialect const& m_dialect;
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	BuiltinContext& m_builtinContext;
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	bool const m_allowStackOpt = true;
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	bool const m_evm15 = false;
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	bool const m_useNamedLabelsForFunctions = false;
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	ExternalIdentifierAccess m_identifierAccess;
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	/// Adjustment between the stack height as determined during the analysis phase
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	/// and the stack height in the assembly. This is caused by an initial stack being present
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	/// for inline assembly and different stack heights depending on the EVM backend used
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	/// (EVM 1.0 or 1.5).
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	int m_stackAdjustment = 0;
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	std::shared_ptr<Context> m_context;
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	/// Set of variables whose reference counter has reached zero,
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	/// and whose stack slot will be marked as unused once we reach
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	/// statement level in the scope where the variable was defined.
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	std::set<Scope::Variable const*> m_variablesScheduledForDeletion;
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	std::set<int> m_unusedStackSlots;
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	std::vector<StackTooDeepError> m_stackErrors;
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};
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}
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