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| Rev | Author | Line No. | Line |
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| 14 | pmbaty | 1 | //===------------------------ MapLattice.h ----------------------*- C++ -*-===// |
| 2 | // |
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| 3 | // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
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| 4 | // See https://llvm.org/LICENSE.txt for license information. |
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| 5 | // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception |
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| 6 | // |
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| 7 | //===----------------------------------------------------------------------===// |
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| 8 | // |
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| 9 | // This file defines a parameterized lattice that maps keys to individual |
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| 10 | // lattice elements (of the parameter lattice type). A typical usage is lifting |
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| 11 | // a particular lattice to all variables in a lexical scope. |
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| 12 | // |
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| 13 | //===----------------------------------------------------------------------===// |
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| 14 | |||
| 15 | #ifndef LLVM_CLANG_ANALYSIS_FLOWSENSITIVE__MAPLATTICE_H |
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| 16 | #define LLVM_CLANG_ANALYSIS_FLOWSENSITIVE__MAPLATTICE_H |
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| 17 | |||
| 18 | #include <ostream> |
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| 19 | #include <string> |
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| 20 | #include <utility> |
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| 21 | |||
| 22 | #include "DataflowAnalysis.h" |
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| 23 | #include "clang/AST/Decl.h" |
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| 24 | #include "clang/Analysis/FlowSensitive/DataflowLattice.h" |
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| 25 | #include "llvm/ADT/DenseMap.h" |
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| 26 | #include "llvm/ADT/StringRef.h" |
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| 27 | |||
| 28 | namespace clang { |
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| 29 | namespace dataflow { |
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| 30 | |||
| 31 | /// A lattice that maps keys to individual lattice elements. When instantiated |
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| 32 | /// with an `ElementLattice` that is a bounded semi-lattice, `MapLattice` is |
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| 33 | /// itself a bounded semi-lattice, so long as the user limits themselves to a |
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| 34 | /// finite number of keys. In that case, `top` is (implicitly), the map |
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| 35 | /// containing all valid keys mapped to `top` of `ElementLattice`. |
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| 36 | /// |
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| 37 | /// Requirements on `ElementLattice`: |
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| 38 | /// * Provides standard declarations of a bounded semi-lattice. |
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| 39 | template <typename Key, typename ElementLattice> class MapLattice { |
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| 40 | using Container = llvm::DenseMap<Key, ElementLattice>; |
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| 41 | Container C; |
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| 42 | |||
| 43 | public: |
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| 44 | using key_type = Key; |
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| 45 | using mapped_type = ElementLattice; |
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| 46 | using value_type = typename Container::value_type; |
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| 47 | using iterator = typename Container::iterator; |
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| 48 | using const_iterator = typename Container::const_iterator; |
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| 49 | |||
| 50 | MapLattice() = default; |
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| 51 | |||
| 52 | explicit MapLattice(Container C) { C = std::move(C); } |
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| 53 | |||
| 54 | // The `bottom` element is the empty map. |
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| 55 | static MapLattice bottom() { return MapLattice(); } |
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| 56 | |||
| 57 | std::pair<iterator, bool> |
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| 58 | insert(const std::pair<const key_type, mapped_type> &P) { |
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| 59 | return C.insert(P); |
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| 60 | } |
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| 61 | |||
| 62 | std::pair<iterator, bool> insert(std::pair<const key_type, mapped_type> &&P) { |
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| 63 | return C.insert(std::move(P)); |
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| 64 | } |
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| 65 | |||
| 66 | unsigned size() const { return C.size(); } |
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| 67 | bool empty() const { return C.empty(); } |
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| 68 | |||
| 69 | iterator begin() { return C.begin(); } |
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| 70 | iterator end() { return C.end(); } |
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| 71 | const_iterator begin() const { return C.begin(); } |
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| 72 | const_iterator end() const { return C.end(); } |
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| 73 | |||
| 74 | // Equality is direct equality of underlying map entries. One implication of |
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| 75 | // this definition is that a map with (only) keys that map to bottom is not |
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| 76 | // equal to the empty map. |
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| 77 | friend bool operator==(const MapLattice &LHS, const MapLattice &RHS) { |
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| 78 | return LHS.C == RHS.C; |
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| 79 | } |
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| 80 | |||
| 81 | friend bool operator!=(const MapLattice &LHS, const MapLattice &RHS) { |
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| 82 | return !(LHS == RHS); |
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| 83 | } |
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| 84 | |||
| 85 | bool contains(const key_type &K) const { return C.find(K) != C.end(); } |
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| 86 | |||
| 87 | iterator find(const key_type &K) { return C.find(K); } |
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| 88 | const_iterator find(const key_type &K) const { return C.find(K); } |
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| 89 | |||
| 90 | mapped_type &operator[](const key_type &K) { return C[K]; } |
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| 91 | |||
| 92 | /// If an entry exists in one map but not the other, the missing entry is |
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| 93 | /// treated as implicitly mapping to `bottom`. So, the joined map contains the |
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| 94 | /// entry as it was in the source map. |
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| 95 | LatticeJoinEffect join(const MapLattice &Other) { |
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| 96 | LatticeJoinEffect Effect = LatticeJoinEffect::Unchanged; |
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| 97 | for (const auto &O : Other.C) { |
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| 98 | auto It = C.find(O.first); |
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| 99 | if (It == C.end()) { |
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| 100 | C.insert(O); |
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| 101 | Effect = LatticeJoinEffect::Changed; |
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| 102 | } else if (It->second.join(O.second) == LatticeJoinEffect::Changed) |
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| 103 | Effect = LatticeJoinEffect::Changed; |
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| 104 | } |
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| 105 | return Effect; |
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| 106 | } |
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| 107 | }; |
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| 108 | |||
| 109 | /// Convenience alias that captures the common use of map lattices to model |
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| 110 | /// in-scope variables. |
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| 111 | template <typename ElementLattice> |
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| 112 | using VarMapLattice = MapLattice<const clang::VarDecl *, ElementLattice>; |
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| 113 | |||
| 114 | template <typename Key, typename ElementLattice> |
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| 115 | std::ostream & |
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| 116 | operator<<(std::ostream &Os, |
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| 117 | const clang::dataflow::MapLattice<Key, ElementLattice> &M) { |
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| 118 | std::string Separator; |
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| 119 | Os << "{"; |
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| 120 | for (const auto &E : M) { |
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| 121 | Os << std::exchange(Separator, ", ") << E.first << " => " << E.second; |
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| 122 | } |
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| 123 | Os << "}"; |
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| 124 | return Os; |
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| 125 | } |
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| 126 | |||
| 127 | template <typename ElementLattice> |
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| 128 | std::ostream & |
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| 129 | operator<<(std::ostream &Os, |
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| 130 | const clang::dataflow::VarMapLattice<ElementLattice> &M) { |
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| 131 | std::string Separator; |
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| 132 | Os << "{"; |
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| 133 | for (const auto &E : M) { |
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| 134 | Os << std::exchange(Separator, ", ") << E.first->getName().str() << " => " |
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| 135 | << E.second; |
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| 136 | } |
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| 137 | Os << "}"; |
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| 138 | return Os; |
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| 139 | } |
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| 140 | } // namespace dataflow |
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| 141 | } // namespace clang |
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| 142 | |||
| 143 | #endif // LLVM_CLANG_ANALYSIS_FLOWSENSITIVE__MAPLATTICE_H |