mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
@@ -106,6 +106,9 @@ void ContractDefinition::checkTypeRequirements()
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));
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hashes.insert(hash);
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}
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if (isLibrary())
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checkLibraryRequirements();
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}
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map<FixedHash<4>, FunctionTypePointer> ContractDefinition::interfaceFunctions() const
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@@ -335,6 +338,17 @@ void ContractDefinition::checkExternalTypeClashes() const
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));
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}
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void ContractDefinition::checkLibraryRequirements() const
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{
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solAssert(m_isLibrary, "");
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if (!m_baseContracts.empty())
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BOOST_THROW_EXCEPTION(createTypeError("Library is not allowed to inherit."));
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for (auto const& var: m_stateVariables)
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if (!var->isConstant())
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BOOST_THROW_EXCEPTION(var->createTypeError("Library cannot have non-constant state variables"));
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}
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vector<ASTPointer<EventDefinition>> const& ContractDefinition::interfaceEvents() const
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{
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if (!m_interfaceEvents)
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@@ -452,6 +466,10 @@ void InheritanceSpecifier::checkTypeRequirements()
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ContractDefinition const* base = dynamic_cast<ContractDefinition const*>(&m_baseName->referencedDeclaration());
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solAssert(base, "Base contract not available.");
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if (base->isLibrary())
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BOOST_THROW_EXCEPTION(createTypeError("Libraries cannot be inherited from."));
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TypePointers parameterTypes = ContractType(*base).constructorType()->parameterTypes();
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if (!m_arguments.empty() && parameterTypes.size() != m_arguments.size())
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BOOST_THROW_EXCEPTION(createTypeError(
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+9
-3
@@ -215,7 +215,7 @@ protected:
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/// @}
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/**
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* Definition of a contract. This is the only AST nodes where child nodes are not visited in
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* Definition of a contract or library. This is the only AST nodes where child nodes are not visited in
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* document order. It first visits all struct declarations, then all variable declarations and
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* finally all function declarations.
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*/
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@@ -232,7 +232,8 @@ public:
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std::vector<ASTPointer<VariableDeclaration>> const& _stateVariables,
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std::vector<ASTPointer<FunctionDefinition>> const& _definedFunctions,
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std::vector<ASTPointer<ModifierDefinition>> const& _functionModifiers,
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std::vector<ASTPointer<EventDefinition>> const& _events
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std::vector<ASTPointer<EventDefinition>> const& _events,
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bool _isLibrary
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):
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Declaration(_location, _name),
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Documented(_documentation),
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@@ -243,7 +244,8 @@ public:
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m_stateVariables(_stateVariables),
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m_definedFunctions(_definedFunctions),
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m_functionModifiers(_functionModifiers),
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m_events(_events)
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m_events(_events),
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m_isLibrary(_isLibrary)
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{}
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virtual void accept(ASTVisitor& _visitor) override;
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@@ -257,6 +259,7 @@ public:
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std::vector<ASTPointer<FunctionDefinition>> const& definedFunctions() const { return m_definedFunctions; }
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std::vector<ASTPointer<EventDefinition>> const& events() const { return m_events; }
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std::vector<ASTPointer<EventDefinition>> const& interfaceEvents() const;
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bool isLibrary() const { return m_isLibrary; }
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virtual TypePointer type(ContractDefinition const* m_currentContract) const override;
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@@ -297,6 +300,8 @@ private:
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/// Checks that different functions with external visibility end up having different
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/// external argument types (i.e. different signature).
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void checkExternalTypeClashes() const;
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/// Checks that all requirements for a library are fulfilled if this is a library.
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void checkLibraryRequirements() const;
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std::vector<std::pair<FixedHash<4>, FunctionTypePointer>> const& interfaceFunctionList() const;
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@@ -307,6 +312,7 @@ private:
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std::vector<ASTPointer<FunctionDefinition>> m_definedFunctions;
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std::vector<ASTPointer<ModifierDefinition>> m_functionModifiers;
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std::vector<ASTPointer<EventDefinition>> m_events;
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bool m_isLibrary;
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// parsed Natspec documentation of the contract.
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std::string m_userDocumentation;
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@@ -48,8 +48,10 @@ private:
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unsigned stackHeight;
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};
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void Compiler::compileContract(ContractDefinition const& _contract,
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map<ContractDefinition const*, bytes const*> const& _contracts)
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void Compiler::compileContract(
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ContractDefinition const& _contract,
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std::map<const ContractDefinition*, eth::Assembly const*> const& _contracts
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)
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{
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m_context = CompilerContext(); // clear it just in case
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{
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@@ -70,7 +72,7 @@ void Compiler::compileContract(ContractDefinition const& _contract,
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void Compiler::compileClone(
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ContractDefinition const& _contract,
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map<ContractDefinition const*, bytes const*> const& _contracts
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map<ContractDefinition const*, eth::Assembly const*> const& _contracts
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)
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{
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m_context = CompilerContext(); // clear it just in case
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@@ -98,11 +100,13 @@ eth::AssemblyItem Compiler::functionEntryLabel(FunctionDefinition const& _functi
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return m_runtimeContext.functionEntryLabelIfExists(_function);
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}
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void Compiler::initializeContext(ContractDefinition const& _contract,
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map<ContractDefinition const*, bytes const*> const& _contracts)
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void Compiler::initializeContext(
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ContractDefinition const& _contract,
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map<ContractDefinition const*, eth::Assembly const*> const& _compiledContracts
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)
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{
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CompilerUtils(m_context).initialiseFreeMemoryPointer();
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m_context.setCompiledContracts(_contracts);
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m_context.setCompiledContracts(_compiledContracts);
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m_context.setInheritanceHierarchy(_contract.linearizedBaseContracts());
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registerStateVariables(_contract);
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m_context.resetVisitedNodes(&_contract);
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+12
-7
@@ -42,16 +42,19 @@ public:
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{
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}
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void compileContract(ContractDefinition const& _contract,
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std::map<ContractDefinition const*, bytes const*> const& _contracts);
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void compileContract(
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ContractDefinition const& _contract,
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std::map<ContractDefinition const*, eth::Assembly const*> const& _contracts
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);
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/// Compiles a contract that uses CALLCODE to call into a pre-deployed version of the given
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/// contract at runtime, but contains the full creation-time code.
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void compileClone(
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ContractDefinition const& _contract,
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std::map<ContractDefinition const*, bytes const*> const& _contracts
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std::map<ContractDefinition const*, eth::Assembly const*> const& _contracts
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);
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bytes assembledBytecode() { return m_context.assembledBytecode(); }
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bytes runtimeBytecode() { return m_context.assembledRuntimeBytecode(m_runtimeSub); }
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eth::Assembly const& assembly() { return m_context.assembly(); }
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eth::LinkerObject assembledObject() { return m_context.assembledObject(); }
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eth::LinkerObject runtimeObject() { return m_context.assembledRuntimeObject(m_runtimeSub); }
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/// @arg _sourceCodes is the map of input files to source code strings
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/// @arg _inJsonFromat shows whether the out should be in Json format
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Json::Value streamAssembly(std::ostream& _stream, StringMap const& _sourceCodes = StringMap(), bool _inJsonFormat = false) const
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@@ -69,8 +72,10 @@ public:
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private:
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/// Registers the non-function objects inside the contract with the context.
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void initializeContext(ContractDefinition const& _contract,
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std::map<ContractDefinition const*, bytes const*> const& _contracts);
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void initializeContext(
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ContractDefinition const& _contract,
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std::map<ContractDefinition const*, eth::Assembly const*> const& _compiledContracts
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);
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/// Adds the code that is run at creation time. Should be run after exchanging the run-time context
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/// with a new and initialized context. Adds the constructor code.
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void packIntoContractCreator(ContractDefinition const& _contract, CompilerContext const& _runtimeContext);
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@@ -65,7 +65,7 @@ void CompilerContext::removeVariable(VariableDeclaration const& _declaration)
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m_localVariables.erase(&_declaration);
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}
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bytes const& CompilerContext::compiledContract(const ContractDefinition& _contract) const
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eth::Assembly const& CompilerContext::compiledContract(const ContractDefinition& _contract) const
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{
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auto ret = m_compiledContracts.find(&_contract);
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solAssert(ret != m_compiledContracts.end(), "Compiled contract not found.");
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@@ -47,8 +47,8 @@ public:
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void addVariable(VariableDeclaration const& _declaration, unsigned _offsetToCurrent = 0);
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void removeVariable(VariableDeclaration const& _declaration);
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void setCompiledContracts(std::map<ContractDefinition const*, bytes const*> const& _contracts) { m_compiledContracts = _contracts; }
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bytes const& compiledContract(ContractDefinition const& _contract) const;
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void setCompiledContracts(std::map<ContractDefinition const*, eth::Assembly const*> const& _contracts) { m_compiledContracts = _contracts; }
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eth::Assembly const& compiledContract(ContractDefinition const& _contract) const;
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void setStackOffset(int _offset) { m_asm.setDeposit(_offset); }
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void adjustStackOffset(int _adjustment) { m_asm.adjustDeposit(_adjustment); }
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@@ -112,6 +112,8 @@ public:
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void appendProgramSize() { return m_asm.appendProgramSize(); }
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/// Adds data to the data section, pushes a reference to the stack
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eth::AssemblyItem appendData(bytes const& _data) { return m_asm.append(_data); }
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/// Appends the address (virtual, will be filled in by linker) of a library.
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void appendLibraryAddress(std::string const& _identifier) { m_asm.appendLibraryAddress(_identifier); }
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/// Resets the stack of visited nodes with a new stack having only @c _node
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void resetVisitedNodes(ASTNode const* _node);
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/// Pops the stack of visited nodes
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@@ -135,8 +137,8 @@ public:
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return m_asm.stream(_stream, "", _sourceCodes, _inJsonFormat);
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}
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bytes assembledBytecode() { return m_asm.assemble(); }
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bytes assembledRuntimeBytecode(size_t _subIndex) { m_asm.assemble(); return m_asm.data(u256(_subIndex)); }
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eth::LinkerObject const& assembledObject() { return m_asm.assemble(); }
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eth::LinkerObject const& assembledRuntimeObject(size_t _subIndex) { return m_asm.sub(_subIndex).assemble(); }
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/**
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* Helper class to pop the visited nodes stack when a scope closes
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@@ -164,7 +166,7 @@ private:
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/// Magic global variables like msg, tx or this, distinguished by type.
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std::set<Declaration const*> m_magicGlobals;
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/// Other already compiled contracts to be used in contract creation calls.
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std::map<ContractDefinition const*, bytes const*> m_compiledContracts;
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std::map<ContractDefinition const*, eth::Assembly const*> m_compiledContracts;
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/// Storage offsets of state variables
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std::map<Declaration const*, std::pair<u256, unsigned>> m_stateVariables;
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/// Offsets of local variables on the stack (relative to stack base).
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@@ -153,7 +153,7 @@ void CompilerStack::compile(bool _optimize, unsigned _runs)
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if (!m_parseSuccessful)
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parse();
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map<ContractDefinition const*, bytes const*> contractBytecode;
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map<ContractDefinition const*, eth::Assembly const*> compiledContracts;
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for (Source const* source: m_sourceOrder)
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for (ASTPointer<ASTNode> const& node: source->ast->nodes())
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if (ContractDefinition* contract = dynamic_cast<ContractDefinition*>(node.get()))
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@@ -161,26 +161,24 @@ void CompilerStack::compile(bool _optimize, unsigned _runs)
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if (!contract->isFullyImplemented())
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continue;
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shared_ptr<Compiler> compiler = make_shared<Compiler>(_optimize, _runs);
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compiler->compileContract(*contract, contractBytecode);
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compiler->compileContract(*contract, compiledContracts);
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Contract& compiledContract = m_contracts.at(contract->name());
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compiledContract.bytecode = compiler->assembledBytecode();
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compiledContract.runtimeBytecode = compiler->runtimeBytecode();
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compiledContract.compiler = move(compiler);
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compiler = make_shared<Compiler>(_optimize, _runs);
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compiler->compileContract(*contract, contractBytecode);
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contractBytecode[compiledContract.contract] = &compiledContract.bytecode;
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compiledContract.compiler = compiler;
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compiledContract.object = compiler->assembledObject();
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compiledContract.runtimeObject = compiler->runtimeObject();
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compiledContracts[compiledContract.contract] = &compiler->assembly();
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|
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Compiler cloneCompiler(_optimize, _runs);
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cloneCompiler.compileClone(*contract, contractBytecode);
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compiledContract.cloneBytecode = cloneCompiler.assembledBytecode();
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cloneCompiler.compileClone(*contract, compiledContracts);
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compiledContract.cloneObject = cloneCompiler.assembledObject();
|
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}
|
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}
|
||||
|
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bytes const& CompilerStack::compile(string const& _sourceCode, bool _optimize)
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||||
eth::LinkerObject const& CompilerStack::compile(string const& _sourceCode, bool _optimize)
|
||||
{
|
||||
parse(_sourceCode);
|
||||
compile(_optimize);
|
||||
return bytecode();
|
||||
return object();
|
||||
}
|
||||
|
||||
eth::AssemblyItems const* CompilerStack::assemblyItems(string const& _contractName) const
|
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@@ -195,24 +193,28 @@ eth::AssemblyItems const* CompilerStack::runtimeAssemblyItems(string const& _con
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return currentContract.compiler ? &contract(_contractName).compiler->runtimeAssemblyItems() : nullptr;
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||||
}
|
||||
|
||||
bytes const& CompilerStack::bytecode(string const& _contractName) const
|
||||
eth::LinkerObject const& CompilerStack::object(string const& _contractName) const
|
||||
{
|
||||
return contract(_contractName).bytecode;
|
||||
return contract(_contractName).object;
|
||||
}
|
||||
|
||||
bytes const& CompilerStack::runtimeBytecode(string const& _contractName) const
|
||||
eth::LinkerObject const& CompilerStack::runtimeObject(string const& _contractName) const
|
||||
{
|
||||
return contract(_contractName).runtimeBytecode;
|
||||
return contract(_contractName).runtimeObject;
|
||||
}
|
||||
|
||||
bytes const& CompilerStack::cloneBytecode(string const& _contractName) const
|
||||
eth::LinkerObject const& CompilerStack::cloneObject(string const& _contractName) const
|
||||
{
|
||||
return contract(_contractName).cloneBytecode;
|
||||
return contract(_contractName).cloneObject;
|
||||
}
|
||||
|
||||
dev::h256 CompilerStack::contractCodeHash(string const& _contractName) const
|
||||
{
|
||||
return dev::sha3(runtimeBytecode(_contractName));
|
||||
auto const& obj = runtimeObject(_contractName);
|
||||
if (obj.bytecode.empty() || !obj.linkReferences.empty())
|
||||
return dev::h256();
|
||||
else
|
||||
return dev::sha3(obj.bytecode);
|
||||
}
|
||||
|
||||
Json::Value CompilerStack::streamAssembly(ostream& _outStream, string const& _contractName, StringMap _sourceCodes, bool _inJsonFormat) const
|
||||
@@ -305,7 +307,7 @@ size_t CompilerStack::functionEntryPoint(
|
||||
return 0;
|
||||
}
|
||||
|
||||
bytes CompilerStack::staticCompile(std::string const& _sourceCode, bool _optimize)
|
||||
eth::LinkerObject CompilerStack::staticCompile(std::string const& _sourceCode, bool _optimize)
|
||||
{
|
||||
CompilerStack stack;
|
||||
return stack.compile(_sourceCode, _optimize);
|
||||
|
||||
+15
-12
@@ -32,6 +32,7 @@
|
||||
#include <libdevcore/Common.h>
|
||||
#include <libdevcore/FixedHash.h>
|
||||
#include <libevmasm/SourceLocation.h>
|
||||
#include <libevmasm/LinkerObject.h>
|
||||
|
||||
namespace dev
|
||||
{
|
||||
@@ -92,23 +93,25 @@ public:
|
||||
/// Compiles the source units that were previously added and parsed.
|
||||
void compile(bool _optimize = false, unsigned _runs = 200);
|
||||
/// Parses and compiles the given source code.
|
||||
/// @returns the compiled bytecode
|
||||
bytes const& compile(std::string const& _sourceCode, bool _optimize = false);
|
||||
/// @returns the compiled linker object
|
||||
eth::LinkerObject const& compile(std::string const& _sourceCode, bool _optimize = false);
|
||||
|
||||
/// @returns the assembled bytecode for a contract.
|
||||
bytes const& bytecode(std::string const& _contractName = "") const;
|
||||
/// @returns the runtime bytecode for the contract, i.e. the code that is returned by the constructor.
|
||||
bytes const& runtimeBytecode(std::string const& _contractName = "") const;
|
||||
/// @returns the assembled bytecode for a contract (empty if it has to be linked or lacks implementation).
|
||||
eth::LinkerObject const& object(std::string const& _contractName = "") const;
|
||||
/// @returns the runtime bytecode for the contract (empty if it has to be linked or lacks implementation).
|
||||
eth::LinkerObject const& runtimeObject(std::string const& _contractName = "") const;
|
||||
/// @returns the bytecode of a contract that uses an already deployed contract via CALLCODE.
|
||||
/// The returned bytes will contain a sequence of 20 bytes of the format "XXX...XXX" which have to
|
||||
/// substituted by the actual address. Note that this sequence starts end ends in three X
|
||||
/// characters but can contain anything in between.
|
||||
bytes const& cloneBytecode(std::string const& _contractName = "") const;
|
||||
eth::LinkerObject const& cloneObject(std::string const& _contractName = "") const;
|
||||
/// @returns normal contract assembly items
|
||||
eth::AssemblyItems const* assemblyItems(std::string const& _contractName = "") const;
|
||||
/// @returns runtime contract assembly items
|
||||
eth::AssemblyItems const* runtimeAssemblyItems(std::string const& _contractName = "") const;
|
||||
/// @returns hash of the runtime bytecode for the contract, i.e. the code that is returned by the constructor.
|
||||
/// @returns hash of the runtime bytecode for the contract, i.e. the code that is
|
||||
/// returned by the constructor or the zero-h256 if the contract still needs to be linked or
|
||||
/// does not have runtime code.
|
||||
dev::h256 contractCodeHash(std::string const& _contractName = "") const;
|
||||
|
||||
/// Streams a verbose version of the assembly to @a _outStream.
|
||||
@@ -146,7 +149,7 @@ public:
|
||||
|
||||
/// Compile the given @a _sourceCode to bytecode. If a scanner is provided, it is used for
|
||||
/// scanning the source code - this is useful for printing exception information.
|
||||
static bytes staticCompile(std::string const& _sourceCode, bool _optimize = false);
|
||||
static eth::LinkerObject staticCompile(std::string const& _sourceCode, bool _optimize = false);
|
||||
|
||||
/// Helper function for logs printing. Do only use in error cases, it's quite expensive.
|
||||
/// line and columns are numbered starting from 1 with following order:
|
||||
@@ -170,9 +173,9 @@ private:
|
||||
{
|
||||
ContractDefinition const* contract = nullptr;
|
||||
std::shared_ptr<Compiler> compiler;
|
||||
bytes bytecode;
|
||||
bytes runtimeBytecode;
|
||||
bytes cloneBytecode;
|
||||
eth::LinkerObject object;
|
||||
eth::LinkerObject runtimeObject;
|
||||
eth::LinkerObject cloneObject;
|
||||
std::shared_ptr<InterfaceHandler> interfaceHandler;
|
||||
mutable std::unique_ptr<std::string const> interface;
|
||||
mutable std::unique_ptr<std::string const> solidityInterface;
|
||||
|
||||
@@ -454,12 +454,11 @@ bool ExpressionCompiler::visit(FunctionCall const& _functionCall)
|
||||
ContractDefinition const& contract =
|
||||
dynamic_cast<ContractType const&>(*function.returnParameterTypes().front()).contractDefinition();
|
||||
// copy the contract's code into memory
|
||||
bytes const& bytecode = m_context.compiledContract(contract);
|
||||
eth::Assembly const& assembly = m_context.compiledContract(contract);
|
||||
utils().fetchFreeMemoryPointer();
|
||||
m_context << u256(bytecode.size()) << eth::Instruction::DUP1;
|
||||
//@todo could be done by actually appending the Assembly, but then we probably need to compile
|
||||
// multiple times. Will revisit once external fuctions are inlined.
|
||||
m_context.appendData(bytecode);
|
||||
// pushes size
|
||||
eth::AssemblyItem subroutine = m_context.addSubroutine(assembly);
|
||||
m_context << eth::Instruction::DUP1 << subroutine;
|
||||
m_context << eth::Instruction::DUP4 << eth::Instruction::CODECOPY;
|
||||
|
||||
m_context << eth::Instruction::ADD;
|
||||
@@ -773,9 +772,15 @@ void ExpressionCompiler::endVisit(MemberAccess const& _memberAccess)
|
||||
|
||||
if (dynamic_cast<ContractType const*>(type.actualType().get()))
|
||||
{
|
||||
auto const* function = dynamic_cast<FunctionDefinition const*>(_memberAccess.referencedDeclaration());
|
||||
solAssert(!!function, "Function not found in member access");
|
||||
m_context << m_context.functionEntryLabel(*function).pushTag();
|
||||
auto const& funType = dynamic_cast<FunctionType const&>(*_memberAccess.type());
|
||||
if (funType.location() != FunctionType::Location::Internal)
|
||||
m_context << funType.externalIdentifier();
|
||||
else
|
||||
{
|
||||
auto const* function = dynamic_cast<FunctionDefinition const*>(_memberAccess.referencedDeclaration());
|
||||
solAssert(!!function, "Function not found in member access");
|
||||
m_context << m_context.functionEntryLabel(*function).pushTag();
|
||||
}
|
||||
}
|
||||
else if (auto enumType = dynamic_cast<EnumType const*>(type.actualType().get()))
|
||||
m_context << enumType->memberValue(_memberAccess.memberName());
|
||||
@@ -924,9 +929,11 @@ void ExpressionCompiler::endVisit(Identifier const& _identifier)
|
||||
utils().convertType(*variable->value()->type(), *variable->type());
|
||||
}
|
||||
}
|
||||
else if (dynamic_cast<ContractDefinition const*>(declaration))
|
||||
else if (auto contract = dynamic_cast<ContractDefinition const*>(declaration))
|
||||
{
|
||||
// no-op
|
||||
if (contract->isLibrary())
|
||||
//@todo name should be unique, change once we have module management
|
||||
m_context.appendLibraryAddress(contract->name());
|
||||
}
|
||||
else if (dynamic_cast<EventDefinition const*>(declaration))
|
||||
{
|
||||
|
||||
@@ -71,13 +71,14 @@ ASTPointer<SourceUnit> Parser::parse(shared_ptr<Scanner> const& _scanner)
|
||||
vector<ASTPointer<ASTNode>> nodes;
|
||||
while (m_scanner->currentToken() != Token::EOS)
|
||||
{
|
||||
switch (m_scanner->currentToken())
|
||||
switch (auto token = m_scanner->currentToken())
|
||||
{
|
||||
case Token::Import:
|
||||
nodes.push_back(parseImportDirective());
|
||||
break;
|
||||
case Token::Contract:
|
||||
nodes.push_back(parseContractDefinition());
|
||||
case Token::Library:
|
||||
nodes.push_back(parseContractDefinition(token == Token::Library));
|
||||
break;
|
||||
default:
|
||||
BOOST_THROW_EXCEPTION(createParserError(std::string("Expected import directive or contract definition.")));
|
||||
@@ -113,13 +114,13 @@ ASTPointer<ImportDirective> Parser::parseImportDirective()
|
||||
return nodeFactory.createNode<ImportDirective>(url);
|
||||
}
|
||||
|
||||
ASTPointer<ContractDefinition> Parser::parseContractDefinition()
|
||||
ASTPointer<ContractDefinition> Parser::parseContractDefinition(bool _isLibrary)
|
||||
{
|
||||
ASTNodeFactory nodeFactory(*this);
|
||||
ASTPointer<ASTString> docString;
|
||||
if (m_scanner->currentCommentLiteral() != "")
|
||||
docString = make_shared<ASTString>(m_scanner->currentCommentLiteral());
|
||||
expectToken(Token::Contract);
|
||||
expectToken(_isLibrary ? Token::Library : Token::Contract);
|
||||
ASTPointer<ASTString> name = expectIdentifierToken();
|
||||
vector<ASTPointer<InheritanceSpecifier>> baseContracts;
|
||||
vector<ASTPointer<StructDefinition>> structs;
|
||||
@@ -177,7 +178,8 @@ ASTPointer<ContractDefinition> Parser::parseContractDefinition()
|
||||
stateVariables,
|
||||
functions,
|
||||
modifiers,
|
||||
events
|
||||
events,
|
||||
_isLibrary
|
||||
);
|
||||
}
|
||||
|
||||
|
||||
@@ -61,15 +61,17 @@ private:
|
||||
///@{
|
||||
///@name Parsing functions for the AST nodes
|
||||
ASTPointer<ImportDirective> parseImportDirective();
|
||||
ASTPointer<ContractDefinition> parseContractDefinition();
|
||||
ASTPointer<ContractDefinition> parseContractDefinition(bool _isLibrary);
|
||||
ASTPointer<InheritanceSpecifier> parseInheritanceSpecifier();
|
||||
Declaration::Visibility parseVisibilitySpecifier(Token::Value _token);
|
||||
ASTPointer<FunctionDefinition> parseFunctionDefinition(ASTString const* _contractName);
|
||||
ASTPointer<StructDefinition> parseStructDefinition();
|
||||
ASTPointer<EnumDefinition> parseEnumDefinition();
|
||||
ASTPointer<EnumValue> parseEnumValue();
|
||||
ASTPointer<VariableDeclaration> parseVariableDeclaration(VarDeclParserOptions const& _options = VarDeclParserOptions(),
|
||||
ASTPointer<TypeName> const& _lookAheadArrayType = ASTPointer<TypeName>());
|
||||
ASTPointer<VariableDeclaration> parseVariableDeclaration(
|
||||
VarDeclParserOptions const& _options = VarDeclParserOptions(),
|
||||
ASTPointer<TypeName> const& _lookAheadArrayType = ASTPointer<TypeName>()
|
||||
);
|
||||
ASTPointer<ModifierDefinition> parseModifierDefinition();
|
||||
ASTPointer<EventDefinition> parseEventDefinition();
|
||||
ASTPointer<ModifierInvocation> parseModifierInvocation();
|
||||
|
||||
+2
-1
@@ -160,6 +160,7 @@ namespace solidity
|
||||
K(Internal, "internal", 0) \
|
||||
K(Import, "import", 0) \
|
||||
K(Is, "is", 0) \
|
||||
K(Library, "library", 0) \
|
||||
K(Mapping, "mapping", 0) \
|
||||
K(Memory, "memory", 0) \
|
||||
K(Modifier, "modifier", 0) \
|
||||
@@ -305,7 +306,7 @@ namespace solidity
|
||||
/* Identifiers (not keywords or future reserved words). */ \
|
||||
T(Identifier, NULL, 0) \
|
||||
\
|
||||
/* Keywords reserved for future. use. */ \
|
||||
/* Keywords reserved for future use. */ \
|
||||
K(As, "as", 0) \
|
||||
K(Case, "case", 0) \
|
||||
K(Catch, "catch", 0) \
|
||||
|
||||
+28
-10
@@ -971,7 +971,7 @@ MemberList const& ContractType::members() const
|
||||
for (auto const& it: m_contract.interfaceFunctions())
|
||||
members.push_back(MemberList::Member(
|
||||
it.second->declaration().name(),
|
||||
it.second->asMemberFunction(),
|
||||
it.second->asMemberFunction(false),
|
||||
&it.second->declaration()
|
||||
));
|
||||
m_members.reset(new MemberList(members));
|
||||
@@ -1538,7 +1538,7 @@ TypePointer FunctionType::copyAndSetGasOrValue(bool _setGas, bool _setValue) con
|
||||
);
|
||||
}
|
||||
|
||||
FunctionTypePointer FunctionType::asMemberFunction() const
|
||||
FunctionTypePointer FunctionType::asMemberFunction(bool _inLibrary) const
|
||||
{
|
||||
TypePointers parameterTypes;
|
||||
for (auto const& t: m_parameterTypes)
|
||||
@@ -1563,7 +1563,7 @@ FunctionTypePointer FunctionType::asMemberFunction() const
|
||||
returnParameterTypes,
|
||||
m_parameterNames,
|
||||
returnParameterNames,
|
||||
m_location,
|
||||
_inLibrary ? Location::CallCode : m_location,
|
||||
m_arbitraryParameters,
|
||||
m_declaration,
|
||||
m_gasSet,
|
||||
@@ -1633,21 +1633,39 @@ u256 TypeType::storageSize() const
|
||||
<< errinfo_comment("Storage size of non-storable type type requested."));
|
||||
}
|
||||
|
||||
unsigned TypeType::sizeOnStack() const
|
||||
{
|
||||
if (auto contractType = dynamic_cast<ContractType const*>(m_actualType.get()))
|
||||
if (contractType->contractDefinition().isLibrary())
|
||||
return 1;
|
||||
return 0;
|
||||
}
|
||||
|
||||
MemberList const& TypeType::members() const
|
||||
{
|
||||
// We need to lazy-initialize it because of recursive references.
|
||||
if (!m_members)
|
||||
{
|
||||
MemberList::MemberMap members;
|
||||
if (m_actualType->category() == Category::Contract && m_currentContract != nullptr)
|
||||
if (m_actualType->category() == Category::Contract)
|
||||
{
|
||||
ContractDefinition const& contract = dynamic_cast<ContractType const&>(*m_actualType).contractDefinition();
|
||||
vector<ContractDefinition const*> currentBases = m_currentContract->linearizedBaseContracts();
|
||||
if (find(currentBases.begin(), currentBases.end(), &contract) != currentBases.end())
|
||||
// We are accessing the type of a base contract, so add all public and protected
|
||||
// members. Note that this does not add inherited functions on purpose.
|
||||
for (Declaration const* decl: contract.inheritableMembers())
|
||||
members.push_back(MemberList::Member(decl->name(), decl->type(), decl));
|
||||
if (contract.isLibrary())
|
||||
for (auto const& it: contract.interfaceFunctions())
|
||||
members.push_back(MemberList::Member(
|
||||
it.second->declaration().name(),
|
||||
it.second->asMemberFunction(true), // use callcode
|
||||
&it.second->declaration()
|
||||
));
|
||||
else if (m_currentContract != nullptr)
|
||||
{
|
||||
vector<ContractDefinition const*> currentBases = m_currentContract->linearizedBaseContracts();
|
||||
if (find(currentBases.begin(), currentBases.end(), &contract) != currentBases.end())
|
||||
// We are accessing the type of a base contract, so add all public and protected
|
||||
// members. Note that this does not add inherited functions on purpose.
|
||||
for (Declaration const* decl: contract.inheritableMembers())
|
||||
members.push_back(MemberList::Member(decl->name(), decl->type(), decl));
|
||||
}
|
||||
}
|
||||
else if (m_actualType->category() == Category::Enum)
|
||||
{
|
||||
|
||||
+5
-3
@@ -517,7 +517,7 @@ private:
|
||||
};
|
||||
|
||||
/**
|
||||
* The type of a contract instance, there is one distinct type for each contract definition.
|
||||
* The type of a contract instance or library, there is one distinct type for each contract definition.
|
||||
*/
|
||||
class ContractType: public Type
|
||||
{
|
||||
@@ -788,7 +788,8 @@ public:
|
||||
/// removed and the location of reference types is changed from CallData to Memory.
|
||||
/// This is needed if external functions are called on other contracts, as they cannot return
|
||||
/// dynamic values.
|
||||
FunctionTypePointer asMemberFunction() const;
|
||||
/// @param _inLibrary if true, uses CallCode as location.
|
||||
FunctionTypePointer asMemberFunction(bool _inLibrary) const;
|
||||
|
||||
private:
|
||||
static TypePointers parseElementaryTypeVector(strings const& _types);
|
||||
@@ -851,6 +852,7 @@ public:
|
||||
/**
|
||||
* The type of a type reference. The type of "uint32" when used in "a = uint32(2)" is an example
|
||||
* of a TypeType.
|
||||
* For super contracts or libraries, this has members directly.
|
||||
*/
|
||||
class TypeType: public Type
|
||||
{
|
||||
@@ -865,7 +867,7 @@ public:
|
||||
virtual bool canBeStored() const override { return false; }
|
||||
virtual u256 storageSize() const override;
|
||||
virtual bool canLiveOutsideStorage() const override { return false; }
|
||||
virtual unsigned sizeOnStack() const override { return 0; }
|
||||
virtual unsigned sizeOnStack() const override;
|
||||
virtual std::string toString(bool _short) const override { return "type(" + m_actualType->toString(_short) + ")"; }
|
||||
virtual MemberList const& members() const override;
|
||||
|
||||
|
||||
@@ -1,4 +1,4 @@
|
||||
ContractDefinition = 'contract' Identifier
|
||||
ContractDefinition = ( 'contract' | 'library' ) Identifier
|
||||
( 'is' InheritanceSpecifier (',' InheritanceSpecifier )* )?
|
||||
'{' ContractPart* '}'
|
||||
ContractPart = StateVariableDeclaration | StructDefinition | ModifierDefinition | FunctionDefinition | EnumDefinition
|
||||
|
||||
Reference in New Issue
Block a user