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APFloat.h
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APInt.h
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APSInt.h
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AllocatorList.h
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Any.h
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ArrayRef.h
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BitVector.h
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Bitfields.h
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BitmaskEnum.h
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BreadthFirstIterator.h
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CachedHashString.h
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CoalescingBitVector.h
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DAGDeltaAlgorithm.h
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DeltaAlgorithm.h
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DenseMap.h
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DenseMapInfo.h
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DenseSet.h
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DepthFirstIterator.h
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DirectedGraph.h
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EnumeratedArray.h
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EpochTracker.h
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EquivalenceClasses.h
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FloatingPointMode.h
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FoldingSet.h
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FunctionExtras.h
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GraphTraits.h
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Hashing.h
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ImmutableList.h
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ImmutableMap.h
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ImmutableSet.h
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IndexedMap.h
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IntEqClasses.h
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IntervalMap.h
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IntrusiveRefCntPtr.h
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MapVector.h
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None.h
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Optional.h
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PackedVector.h
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PointerEmbeddedInt.h
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PointerIntPair.h
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PointerSumType.h
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PointerUnion.h
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PostOrderIterator.h
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PriorityQueue.h
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PriorityWorklist.h
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SCCIterator.h
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STLExtras.h
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ScopeExit.h
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ScopedHashTable.h
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Sequence.h
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SetOperations.h
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SetVector.h
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SmallBitVector.h
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SmallPtrSet.h
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SmallSet.h
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SmallString.h
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SmallVector.h
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SparseBitVector.h
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SparseMultiSet.h
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SparseSet.h
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Statistic.h
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StringExtras.h
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StringMap.h
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StringMapEntry.h
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StringRef.h
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StringSet.h
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StringSwitch.h
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TinyPtrVector.h
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Triple.h
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Twine.h
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TypeSwitch.h
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UniqueVector.h
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Waymarking.h
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bit.h
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edit_distance.h
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fallible_iterator.h
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ilist.h
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ilist_base.h
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ilist_iterator.h
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ilist_node.h
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ilist_node_base.h
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ilist_node_options.h
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iterator.h
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iterator_range.h
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simple_ilist.h
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Editing: GraphTraits.h
//===- llvm/ADT/GraphTraits.h - Graph traits template -----------*- C++ -*-===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // // This file defines the little GraphTraits<X> template class that should be // specialized by classes that want to be iteratable by generic graph iterators. // // This file also defines the marker class Inverse that is used to iterate over // graphs in a graph defined, inverse ordering... // //===----------------------------------------------------------------------===// #ifndef LLVM_ADT_GRAPHTRAITS_H #define LLVM_ADT_GRAPHTRAITS_H #include "llvm/ADT/iterator_range.h" namespace llvm { // GraphTraits - This class should be specialized by different graph types... // which is why the default version is empty. // // This template evolved from supporting `BasicBlock` to also later supporting // more complex types (e.g. CFG and DomTree). // // GraphTraits can be used to create a view over a graph interpreting it // differently without requiring a copy of the original graph. This could // be achieved by carrying more data in NodeRef. See LoopBodyTraits for one // example. template<class GraphType> struct GraphTraits { // Elements to provide: // typedef NodeRef - Type of Node token in the graph, which should // be cheap to copy. // typedef ChildIteratorType - Type used to iterate over children in graph, // dereference to a NodeRef. // static NodeRef getEntryNode(const GraphType &) // Return the entry node of the graph // static ChildIteratorType child_begin(NodeRef) // static ChildIteratorType child_end (NodeRef) // Return iterators that point to the beginning and ending of the child // node list for the specified node. // typedef ...iterator nodes_iterator; - dereference to a NodeRef // static nodes_iterator nodes_begin(GraphType *G) // static nodes_iterator nodes_end (GraphType *G) // nodes_iterator/begin/end - Allow iteration over all nodes in the graph // typedef EdgeRef - Type of Edge token in the graph, which should // be cheap to copy. // typedef ChildEdgeIteratorType - Type used to iterate over children edges in // graph, dereference to a EdgeRef. // static ChildEdgeIteratorType child_edge_begin(NodeRef) // static ChildEdgeIteratorType child_edge_end(NodeRef) // Return iterators that point to the beginning and ending of the // edge list for the given callgraph node. // // static NodeRef edge_dest(EdgeRef) // Return the destination node of an edge. // static unsigned size (GraphType *G) // Return total number of nodes in the graph // If anyone tries to use this class without having an appropriate // specialization, make an error. If you get this error, it's because you // need to include the appropriate specialization of GraphTraits<> for your // graph, or you need to define it for a new graph type. Either that or // your argument to XXX_begin(...) is unknown or needs to have the proper .h // file #include'd. using NodeRef = typename GraphType::UnknownGraphTypeError; }; // Inverse - This class is used as a little marker class to tell the graph // iterator to iterate over the graph in a graph defined "Inverse" ordering. // Not all graphs define an inverse ordering, and if they do, it depends on // the graph exactly what that is. Here's an example of usage with the // df_iterator: // // idf_iterator<Method*> I = idf_begin(M), E = idf_end(M); // for (; I != E; ++I) { ... } // // Which is equivalent to: // df_iterator<Inverse<Method*>> I = idf_begin(M), E = idf_end(M); // for (; I != E; ++I) { ... } // template <class GraphType> struct Inverse { const GraphType &Graph; inline Inverse(const GraphType &G) : Graph(G) {} }; // Provide a partial specialization of GraphTraits so that the inverse of an // inverse falls back to the original graph. template <class T> struct GraphTraits<Inverse<Inverse<T>>> : GraphTraits<T> {}; // Provide iterator ranges for the graph traits nodes and children template <class GraphType> iterator_range<typename GraphTraits<GraphType>::nodes_iterator> nodes(const GraphType &G) { return make_range(GraphTraits<GraphType>::nodes_begin(G), GraphTraits<GraphType>::nodes_end(G)); } template <class GraphType> iterator_range<typename GraphTraits<Inverse<GraphType>>::nodes_iterator> inverse_nodes(const GraphType &G) { return make_range(GraphTraits<Inverse<GraphType>>::nodes_begin(G), GraphTraits<Inverse<GraphType>>::nodes_end(G)); } template <class GraphType> iterator_range<typename GraphTraits<GraphType>::ChildIteratorType> children(const typename GraphTraits<GraphType>::NodeRef &G) { return make_range(GraphTraits<GraphType>::child_begin(G), GraphTraits<GraphType>::child_end(G)); } template <class GraphType> iterator_range<typename GraphTraits<Inverse<GraphType>>::ChildIteratorType> inverse_children(const typename GraphTraits<GraphType>::NodeRef &G) { return make_range(GraphTraits<Inverse<GraphType>>::child_begin(G), GraphTraits<Inverse<GraphType>>::child_end(G)); } template <class GraphType> iterator_range<typename GraphTraits<GraphType>::ChildEdgeIteratorType> children_edges(const typename GraphTraits<GraphType>::NodeRef &G) { return make_range(GraphTraits<GraphType>::child_edge_begin(G), GraphTraits<GraphType>::child_edge_end(G)); } } // end namespace llvm #endif // LLVM_ADT_GRAPHTRAITS_H
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