mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
Named assembly labels.
This commit is contained in:
parent
7dd372ce5c
commit
73771f5bb2
@ -49,6 +49,8 @@ void Assembly::append(Assembly const& _a)
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}
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m_deposit = newDeposit;
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m_usedTags += _a.m_usedTags;
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// This does not transfer the names of named tags on purpose. The tags themselves are
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// transferred, but their names are only available inside the assembly.
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for (auto const& i: _a.m_data)
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m_data.insert(i);
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for (auto const& i: _a.m_strings)
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@ -326,6 +328,14 @@ AssemblyItem const& Assembly::append(AssemblyItem const& _i)
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return back();
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}
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AssemblyItem Assembly::namedTag(string const& _name)
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{
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assertThrow(!_name.empty(), AssemblyException, "");
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if (!m_namedTags.count(_name))
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m_namedTags[_name] = size_t(newTag().data());
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return AssemblyItem(Tag, m_namedTags.at(_name));
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}
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AssemblyItem Assembly::newPushLibraryAddress(string const& _identifier)
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{
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h256 h(dev::keccak256(_identifier));
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@ -581,6 +591,7 @@ LinkerObject const& Assembly::assemble() const
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assertThrow(i.data() != 0, AssemblyException, "");
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assertThrow(i.splitForeignPushTag().first == size_t(-1), AssemblyException, "Foreign tag.");
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assertThrow(ret.bytecode.size() < 0xffffffffL, AssemblyException, "Tag too large.");
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assertThrow(m_tagPositionsInBytecode[size_t(i.data())] == size_t(-1), AssemblyException, "Duplicate tag position.");
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m_tagPositionsInBytecode[size_t(i.data())] = ret.bytecode.size();
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ret.bytecode.push_back((byte)Instruction::JUMPDEST);
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break;
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@ -47,6 +47,8 @@ public:
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AssemblyItem newTag() { return AssemblyItem(Tag, m_usedTags++); }
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AssemblyItem newPushTag() { return AssemblyItem(PushTag, m_usedTags++); }
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/// Returns a tag identified by the given name. Creates it if it does not yet exist.
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AssemblyItem namedTag(std::string const& _name);
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AssemblyItem newData(bytes const& _data) { h256 h(dev::keccak256(asString(_data))); m_data[h] = _data; return AssemblyItem(PushData, h); }
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AssemblyItem newSub(AssemblyPointer const& _sub) { m_subs.push_back(_sub); return AssemblyItem(PushSub, m_subs.size() - 1); }
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Assembly const& sub(size_t _sub) const { return *m_subs.at(_sub); }
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@ -150,6 +152,7 @@ private:
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protected:
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/// 0 is reserved for exception
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unsigned m_usedTags = 1;
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std::map<std::string, size_t> m_namedTags;
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AssemblyItems m_items;
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std::map<h256, bytes> m_data;
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/// Data that is appended to the very end of the contract.
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@ -66,6 +66,8 @@ public:
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virtual void appendLabelReference(LabelID _labelId) = 0;
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/// Generate a new unique label.
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virtual LabelID newLabelId() = 0;
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/// Returns a label identified by the given name. Creates it if it does not yet exist.
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virtual LabelID namedLabel(std::string const& _name) = 0;
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/// Append a reference to a to-be-linked symobl.
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/// Currently, we assume that the value is always a 20 byte number.
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virtual void appendLinkerSymbol(std::string const& _name) = 0;
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@ -77,6 +77,14 @@ EVMAssembly::LabelID EVMAssembly::newLabelId()
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return m_nextLabelId++;
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}
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AbstractAssembly::LabelID EVMAssembly::namedLabel(string const& _name)
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{
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solAssert(!_name.empty(), "");
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if (!m_namedLabels.count(_name))
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m_namedLabels[_name] = newLabelId();
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return m_namedLabels[_name];
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}
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void EVMAssembly::appendLinkerSymbol(string const&)
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{
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solAssert(false, "Linker symbols not yet implemented.");
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@ -52,6 +52,8 @@ public:
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virtual void appendLabelReference(LabelID _labelId) override;
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/// Generate a new unique label.
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virtual LabelID newLabelId() override;
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/// Returns a label identified by the given name. Creates it if it does not yet exist.
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virtual LabelID namedLabel(std::string const& _name) override;
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/// Append a reference to a to-be-linked symobl.
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/// Currently, we assume that the value is always a 20 byte number.
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virtual void appendLinkerSymbol(std::string const& _name) override;
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@ -85,6 +87,7 @@ private:
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LabelID m_nextLabelId = 0;
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int m_stackHeight = 0;
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bytes m_bytecode;
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std::map<std::string, LabelID> m_namedLabels;
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std::map<LabelID, size_t> m_labelPositions;
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std::map<size_t, LabelID> m_labelReferences;
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std::vector<size_t> m_assemblySizePositions;
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@ -108,10 +108,10 @@ void CodeTransform::operator()(FunctionCall const& _call)
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visitExpression(arg);
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m_assembly.setSourceLocation(_call.location);
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if (m_evm15)
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m_assembly.appendJumpsub(functionEntryID(*function), function->arguments.size(), function->returns.size());
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m_assembly.appendJumpsub(functionEntryID(_call.functionName.name, *function), function->arguments.size(), function->returns.size());
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else
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{
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m_assembly.appendJumpTo(functionEntryID(*function), function->returns.size() - function->arguments.size() - 1);
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m_assembly.appendJumpTo(functionEntryID(_call.functionName.name, *function), function->returns.size() - function->arguments.size() - 1);
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m_assembly.appendLabel(returnLabel);
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m_stackAdjustment--;
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}
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@ -286,12 +286,12 @@ void CodeTransform::operator()(FunctionDefinition const& _function)
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if (m_evm15)
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{
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m_assembly.appendJumpTo(afterFunction, -stackHeightBefore);
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m_assembly.appendBeginsub(functionEntryID(function), _function.arguments.size());
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m_assembly.appendBeginsub(functionEntryID(_function.name, function), _function.arguments.size());
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}
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else
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{
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m_assembly.appendJumpTo(afterFunction, -stackHeightBefore + height);
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m_assembly.appendLabel(functionEntryID(function));
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m_assembly.appendLabel(functionEntryID(_function.name, function));
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}
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m_stackAdjustment += localStackAdjustment;
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@ -303,8 +303,16 @@ void CodeTransform::operator()(FunctionDefinition const& _function)
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m_assembly.appendConstant(u256(0));
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}
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CodeTransform(m_assembly, m_info, m_julia, m_evm15, m_identifierAccess, localStackAdjustment, m_context)
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(_function.body);
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CodeTransform(
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m_assembly,
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m_info,
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m_julia,
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m_evm15,
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m_identifierAccess,
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m_useNamedLabelsForFunctions,
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localStackAdjustment,
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m_context
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)(_function.body);
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{
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// The stack layout here is:
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@ -421,10 +429,16 @@ AbstractAssembly::LabelID CodeTransform::labelID(Scope::Label const& _label)
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return m_context->labelIDs[&_label];
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}
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AbstractAssembly::LabelID CodeTransform::functionEntryID(Scope::Function const& _function)
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AbstractAssembly::LabelID CodeTransform::functionEntryID(string const& _name, Scope::Function const& _function)
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{
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if (!m_context->functionEntryIDs.count(&_function))
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m_context->functionEntryIDs[&_function] = m_assembly.newLabelId();
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{
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AbstractAssembly::LabelID id =
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m_useNamedLabelsForFunctions ?
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m_assembly.namedLabel(_name) :
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m_assembly.newLabelId();
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m_context->functionEntryIDs[&_function] = id;
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}
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return m_context->functionEntryIDs[&_function];
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}
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@ -50,13 +50,15 @@ public:
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solidity::assembly::AsmAnalysisInfo& _analysisInfo,
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bool _julia = false,
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bool _evm15 = false,
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ExternalIdentifierAccess const& _identifierAccess = ExternalIdentifierAccess()
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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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_julia,
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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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std::make_shared<Context>()
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)
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@ -78,6 +80,7 @@ protected:
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bool _julia,
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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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@ -85,6 +88,7 @@ protected:
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m_info(_analysisInfo),
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m_julia(_julia),
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m_evm15(_evm15),
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m_useNamedLabelsForFunctions(_useNamedLabelsForFunctions),
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m_identifierAccess(_identifierAccess),
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m_stackAdjustment(_stackAdjustment),
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m_context(_context)
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@ -110,7 +114,7 @@ private:
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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(solidity::assembly::Scope::Label const& _label);
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AbstractAssembly::LabelID functionEntryID(solidity::assembly::Scope::Function const& _function);
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AbstractAssembly::LabelID functionEntryID(std::string const& _name, solidity::assembly::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(solidity::assembly::Statement const& _expression);
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@ -136,6 +140,7 @@ private:
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solidity::assembly::Scope* m_scope = nullptr;
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bool m_julia = false;
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bool m_evm15 = false;
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bool 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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@ -266,19 +266,9 @@ void CompilerContext::resetVisitedNodes(ASTNode const* _node)
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void CompilerContext::appendInlineAssembly(
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string const& _assembly,
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vector<string> const& _localVariables,
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map<string, string> const& _replacements
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bool _system
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)
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{
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string replacedAssembly;
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string const* assembly = &_assembly;
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if (!_replacements.empty())
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{
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replacedAssembly = _assembly;
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for (auto const& replacement: _replacements)
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replacedAssembly = boost::algorithm::replace_all_copy(replacedAssembly, replacement.first, replacement.second);
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assembly = &replacedAssembly;
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}
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int startStackHeight = stackHeight();
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julia::ExternalIdentifierAccess identifierAccess;
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@ -320,7 +310,7 @@ void CompilerContext::appendInlineAssembly(
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ErrorList errors;
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ErrorReporter errorReporter(errors);
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auto scanner = make_shared<Scanner>(CharStream(*assembly), "--CODEGEN--");
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auto scanner = make_shared<Scanner>(CharStream(_assembly), "--CODEGEN--");
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auto parserResult = assembly::Parser(errorReporter).parse(scanner);
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solAssert(parserResult, "Failed to parse inline assembly block.");
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solAssert(errorReporter.errors().empty(), "Failed to parse inline assembly block.");
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@ -329,7 +319,7 @@ void CompilerContext::appendInlineAssembly(
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assembly::AsmAnalyzer analyzer(analysisInfo, errorReporter, false, identifierAccess.resolve);
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solAssert(analyzer.analyze(*parserResult), "Failed to analyze inline assembly block.");
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solAssert(errorReporter.errors().empty(), "Failed to analyze inline assembly block.");
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assembly::CodeGenerator::assemble(*parserResult, analysisInfo, *m_asm, identifierAccess);
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assembly::CodeGenerator::assemble(*parserResult, analysisInfo, *m_asm, identifierAccess, _system);
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}
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FunctionDefinition const& CompilerContext::resolveVirtualFunction(
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@ -156,6 +156,8 @@ public:
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eth::AssemblyItem pushNewTag() { return m_asm->append(m_asm->newPushTag()).tag(); }
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/// @returns a new tag without pushing any opcodes or data
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eth::AssemblyItem newTag() { return m_asm->newTag(); }
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/// @returns a new tag identified by name.
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eth::AssemblyItem namedTag(std::string const& _name) { return m_asm->namedTag(_name); }
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/// Adds a subroutine to the code (in the data section) and pushes its size (via a tag)
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/// on the stack. @returns the pushsub assembly item.
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eth::AssemblyItem addSubroutine(eth::AssemblyPointer const& _assembly) { return m_asm->appendSubroutine(_assembly); }
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@ -185,10 +187,11 @@ public:
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/// Appends inline assembly. @a _replacements are string-matching replacements that are performed
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/// prior to parsing the inline assembly.
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/// @param _localVariables assigns stack positions to variables with the last one being the stack top
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/// @param _system if true, this is a "system-level" assembly where all functions use named labels.
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void appendInlineAssembly(
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std::string const& _assembly,
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std::vector<std::string> const& _localVariables = std::vector<std::string>(),
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std::map<std::string, std::string> const& _replacements = std::map<std::string, std::string>{}
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bool _system = false
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);
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/// Appends arbitrary data to the end of the bytecode.
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@ -319,7 +319,7 @@ void CompilerUtils::abiEncode(
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ABIFunctions funs;
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string routine = funs.tupleEncoder(_givenTypes, _targetTypes, _encodeAsLibraryTypes);
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routine += funs.requestedFunctions();
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m_context.appendInlineAssembly("{" + routine + "}", variables);
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m_context.appendInlineAssembly("{" + routine + "}", variables, true);
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// Remove everyhing except for "value0" / the final memory pointer.
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popStackSlots(numValues);
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}
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@ -83,6 +83,10 @@ public:
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{
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return assemblyTagToIdentifier(m_assembly.newTag());
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}
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virtual size_t namedLabel(std::string const& _name) override
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{
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return assemblyTagToIdentifier(m_assembly.namedTag(_name));
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}
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virtual void appendLinkerSymbol(std::string const& _linkerSymbol) override
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{
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m_assembly.appendLibraryAddress(_linkerSymbol);
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@ -141,9 +145,17 @@ void assembly::CodeGenerator::assemble(
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Block const& _parsedData,
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AsmAnalysisInfo& _analysisInfo,
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eth::Assembly& _assembly,
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julia::ExternalIdentifierAccess const& _identifierAccess
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julia::ExternalIdentifierAccess const& _identifierAccess,
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bool _useNamedLabelsForFunctions
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)
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{
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EthAssemblyAdapter assemblyAdapter(_assembly);
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julia::CodeTransform(assemblyAdapter, _analysisInfo, false, false, _identifierAccess)(_parsedData);
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julia::CodeTransform(
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assemblyAdapter,
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_analysisInfo,
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false,
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false,
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_identifierAccess,
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_useNamedLabelsForFunctions
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)(_parsedData);
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}
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Block const& _parsedData,
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AsmAnalysisInfo& _analysisInfo,
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eth::Assembly& _assembly,
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julia::ExternalIdentifierAccess const& _identifierAccess = julia::ExternalIdentifierAccess()
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julia::ExternalIdentifierAccess const& _identifierAccess = julia::ExternalIdentifierAccess(),
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bool _useNamedLabelsForFunctions = false
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);
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};
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@ -398,6 +398,34 @@ BOOST_AUTO_TEST_CASE(calldata)
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)
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}
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BOOST_AUTO_TEST_CASE(function_name_collision)
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{
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// This tests a collision between a function name used by inline assembly
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// and by the ABI encoder
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string sourceCode = R"(
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contract C {
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function f(uint x) returns (uint) {
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assembly {
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function abi_encode_t_uint256_to_t_uint256() {
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mstore(0, 7)
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return(0, 0x20)
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}
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switch x
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case 0 { abi_encode_t_uint256_to_t_uint256() }
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}
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return 1;
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}
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}
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)";
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BOTH_ENCODERS(
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("f(uint256)", encodeArgs(0)) == encodeArgs(7));
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BOOST_CHECK(callContractFunction("f(uint256)", encodeArgs(1)) == encodeArgs(1));
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)
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}
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BOOST_AUTO_TEST_SUITE_END()
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}
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Block a user