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https://github.com/ethereum/solidity
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Also substitute variables in CSE.
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@ -33,9 +33,31 @@ using namespace dev::julia;
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void CommonSubexpressionEliminator::visit(Expression& _e)
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{
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// Single exception for substitution: We do not substitute one variable for another.
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if (_e.type() != typeid(Identifier))
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// TODO this search rather inefficient.
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// We visit the inner expression first to first simplify inner expressions,
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// which hopefully allows more matches.
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// Note that the DataFlowAnalyzer itself only has code for visiting Statements,
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// so this basically invokes the AST walker directly and thus post-visiting
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// is also fine with regards to data flow analysis.
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DataFlowAnalyzer::visit(_e);
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if (_e.type() == typeid(Identifier))
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{
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Identifier& identifier = boost::get<Identifier>(_e);
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string const& name = identifier.name;
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if (m_value.count(name))
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{
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assertThrow(m_value.at(name), OptimizerException, "");
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if (m_value.at(name)->type() == typeid(Identifier))
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{
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string const& value = boost::get<Identifier>(*m_value.at(name)).name;
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if (inScope(value))
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_e = Identifier{locationOf(_e), value};
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}
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}
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}
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else
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{
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// TODO this search is rather inefficient.
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for (auto const& var: m_value)
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{
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assertThrow(var.second, OptimizerException, "");
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@ -45,5 +67,5 @@ void CommonSubexpressionEliminator::visit(Expression& _e)
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break;
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}
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}
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DataFlowAnalyzer::visit(_e);
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}
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}
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@ -97,6 +97,20 @@ of any function call or opcode execution, the transformation is not performed.
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Note that the component will not move the assigned value of a variable assignment
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or a variable that is referenced more than once.
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## Common Subexpression Eliminator
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This step replaces a subexpression by the value of a pre-existing variable
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that currently has the same value (only if the value is movable), based
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on a syntactic comparison.
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This can be used to compute a local value numbering, especially if the
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expression splitter is used before.
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The expression simplifier will be able to perform better replacements
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if the common subexpression eliminator was run right before it.
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Prerequisites: Disambiguator
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## Full Function Inliner
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## Rematerialisation
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@ -0,0 +1,27 @@
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{
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let a := mload(0)
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let b := add(a, 7)
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let c := a
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let d := c
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let x := add(a, b)
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// CSE has to recognize equality with x here.
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let y := add(d, add(c, 7))
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// some reassignments
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b := mload(a)
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a := b
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mstore(2, a)
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}
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// ----
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// commonSubexpressionEliminator
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// {
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// let a := mload(0)
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// let b := add(a, 7)
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// let c := a
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// let d := a
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// let x := add(a, b)
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// let y := x
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// b := mload(a)
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// a := b
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// mstore(2, b)
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// }
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