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| 14 | pmbaty | 1 | //===- ScopedHashTable.h - A simple scoped hash table -----------*- 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 implements an efficient scoped hash table, which is useful for |
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| 10 | // things like dominator-based optimizations. This allows clients to do things |
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| 11 | // like this: |
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| 12 | // |
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| 13 | // ScopedHashTable<int, int> HT; |
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| 14 | // { |
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| 15 | // ScopedHashTableScope<int, int> Scope1(HT); |
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| 16 | // HT.insert(0, 0); |
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| 17 | // HT.insert(1, 1); |
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| 18 | // { |
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| 19 | // ScopedHashTableScope<int, int> Scope2(HT); |
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| 20 | // HT.insert(0, 42); |
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| 21 | // } |
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| 22 | // } |
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| 23 | // |
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| 24 | // Looking up the value for "0" in the Scope2 block will return 42. Looking |
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| 25 | // up the value for 0 before 42 is inserted or after Scope2 is popped will |
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| 26 | // return 0. |
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| 27 | // |
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| 28 | //===----------------------------------------------------------------------===// |
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| 29 | |||
| 30 | #ifndef LLVM_ADT_SCOPEDHASHTABLE_H |
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| 31 | #define LLVM_ADT_SCOPEDHASHTABLE_H |
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| 32 | |||
| 33 | #include "llvm/ADT/DenseMap.h" |
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| 34 | #include "llvm/ADT/DenseMapInfo.h" |
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| 35 | #include "llvm/Support/AllocatorBase.h" |
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| 36 | #include <cassert> |
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| 37 | #include <new> |
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| 38 | |||
| 39 | namespace llvm { |
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| 40 | |||
| 41 | template <typename K, typename V, typename KInfo = DenseMapInfo<K>, |
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| 42 | typename AllocatorTy = MallocAllocator> |
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| 43 | class ScopedHashTable; |
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| 44 | |||
| 45 | template <typename K, typename V> |
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| 46 | class ScopedHashTableVal { |
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| 47 | ScopedHashTableVal *NextInScope; |
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| 48 | ScopedHashTableVal *NextForKey; |
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| 49 | K Key; |
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| 50 | V Val; |
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| 51 | |||
| 52 | ScopedHashTableVal(const K &key, const V &val) : Key(key), Val(val) {} |
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| 53 | |||
| 54 | public: |
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| 55 | const K &getKey() const { return Key; } |
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| 56 | const V &getValue() const { return Val; } |
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| 57 | V &getValue() { return Val; } |
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| 58 | |||
| 59 | ScopedHashTableVal *getNextForKey() { return NextForKey; } |
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| 60 | const ScopedHashTableVal *getNextForKey() const { return NextForKey; } |
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| 61 | ScopedHashTableVal *getNextInScope() { return NextInScope; } |
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| 62 | |||
| 63 | template <typename AllocatorTy> |
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| 64 | static ScopedHashTableVal *Create(ScopedHashTableVal *nextInScope, |
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| 65 | ScopedHashTableVal *nextForKey, |
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| 66 | const K &key, const V &val, |
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| 67 | AllocatorTy &Allocator) { |
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| 68 | ScopedHashTableVal *New = Allocator.template Allocate<ScopedHashTableVal>(); |
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| 69 | // Set up the value. |
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| 70 | new (New) ScopedHashTableVal(key, val); |
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| 71 | New->NextInScope = nextInScope; |
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| 72 | New->NextForKey = nextForKey; |
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| 73 | return New; |
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| 74 | } |
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| 75 | |||
| 76 | template <typename AllocatorTy> void Destroy(AllocatorTy &Allocator) { |
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| 77 | // Free memory referenced by the item. |
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| 78 | this->~ScopedHashTableVal(); |
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| 79 | Allocator.Deallocate(this); |
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| 80 | } |
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| 81 | }; |
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| 82 | |||
| 83 | template <typename K, typename V, typename KInfo = DenseMapInfo<K>, |
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| 84 | typename AllocatorTy = MallocAllocator> |
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| 85 | class ScopedHashTableScope { |
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| 86 | /// HT - The hashtable that we are active for. |
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| 87 | ScopedHashTable<K, V, KInfo, AllocatorTy> &HT; |
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| 88 | |||
| 89 | /// PrevScope - This is the scope that we are shadowing in HT. |
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| 90 | ScopedHashTableScope *PrevScope; |
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| 91 | |||
| 92 | /// LastValInScope - This is the last value that was inserted for this scope |
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| 93 | /// or null if none have been inserted yet. |
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| 94 | ScopedHashTableVal<K, V> *LastValInScope; |
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| 95 | |||
| 96 | public: |
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| 97 | ScopedHashTableScope(ScopedHashTable<K, V, KInfo, AllocatorTy> &HT); |
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| 98 | ScopedHashTableScope(ScopedHashTableScope &) = delete; |
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| 99 | ScopedHashTableScope &operator=(ScopedHashTableScope &) = delete; |
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| 100 | ~ScopedHashTableScope(); |
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| 101 | |||
| 102 | ScopedHashTableScope *getParentScope() { return PrevScope; } |
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| 103 | const ScopedHashTableScope *getParentScope() const { return PrevScope; } |
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| 104 | |||
| 105 | private: |
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| 106 | friend class ScopedHashTable<K, V, KInfo, AllocatorTy>; |
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| 107 | |||
| 108 | ScopedHashTableVal<K, V> *getLastValInScope() { |
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| 109 | return LastValInScope; |
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| 110 | } |
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| 111 | |||
| 112 | void setLastValInScope(ScopedHashTableVal<K, V> *Val) { |
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| 113 | LastValInScope = Val; |
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| 114 | } |
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| 115 | }; |
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| 116 | |||
| 117 | template <typename K, typename V, typename KInfo = DenseMapInfo<K>> |
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| 118 | class ScopedHashTableIterator { |
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| 119 | ScopedHashTableVal<K, V> *Node; |
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| 120 | |||
| 121 | public: |
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| 122 | ScopedHashTableIterator(ScopedHashTableVal<K, V> *node) : Node(node) {} |
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| 123 | |||
| 124 | V &operator*() const { |
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| 125 | assert(Node && "Dereference end()"); |
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| 126 | return Node->getValue(); |
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| 127 | } |
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| 128 | V *operator->() const { |
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| 129 | return &Node->getValue(); |
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| 130 | } |
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| 131 | |||
| 132 | bool operator==(const ScopedHashTableIterator &RHS) const { |
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| 133 | return Node == RHS.Node; |
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| 134 | } |
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| 135 | bool operator!=(const ScopedHashTableIterator &RHS) const { |
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| 136 | return Node != RHS.Node; |
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| 137 | } |
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| 138 | |||
| 139 | inline ScopedHashTableIterator& operator++() { // Preincrement |
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| 140 | assert(Node && "incrementing past end()"); |
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| 141 | Node = Node->getNextForKey(); |
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| 142 | return *this; |
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| 143 | } |
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| 144 | ScopedHashTableIterator operator++(int) { // Postincrement |
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| 145 | ScopedHashTableIterator tmp = *this; ++*this; return tmp; |
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| 146 | } |
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| 147 | }; |
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| 148 | |||
| 149 | template <typename K, typename V, typename KInfo, typename AllocatorTy> |
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| 150 | class ScopedHashTable : detail::AllocatorHolder<AllocatorTy> { |
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| 151 | using AllocTy = detail::AllocatorHolder<AllocatorTy>; |
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| 152 | |||
| 153 | public: |
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| 154 | /// ScopeTy - This is a helpful typedef that allows clients to get easy access |
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| 155 | /// to the name of the scope for this hash table. |
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| 156 | using ScopeTy = ScopedHashTableScope<K, V, KInfo, AllocatorTy>; |
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| 157 | using size_type = unsigned; |
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| 158 | |||
| 159 | private: |
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| 160 | friend class ScopedHashTableScope<K, V, KInfo, AllocatorTy>; |
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| 161 | |||
| 162 | using ValTy = ScopedHashTableVal<K, V>; |
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| 163 | |||
| 164 | DenseMap<K, ValTy*, KInfo> TopLevelMap; |
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| 165 | ScopeTy *CurScope = nullptr; |
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| 166 | |||
| 167 | public: |
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| 168 | ScopedHashTable() = default; |
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| 169 | ScopedHashTable(AllocatorTy A) : AllocTy(A) {} |
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| 170 | ScopedHashTable(const ScopedHashTable &) = delete; |
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| 171 | ScopedHashTable &operator=(const ScopedHashTable &) = delete; |
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| 172 | |||
| 173 | ~ScopedHashTable() { |
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| 174 | assert(!CurScope && TopLevelMap.empty() && "Scope imbalance!"); |
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| 175 | } |
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| 176 | |||
| 177 | /// Access to the allocator. |
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| 178 | using AllocTy::getAllocator; |
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| 179 | |||
| 180 | /// Return 1 if the specified key is in the table, 0 otherwise. |
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| 181 | size_type count(const K &Key) const { |
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| 182 | return TopLevelMap.count(Key); |
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| 183 | } |
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| 184 | |||
| 185 | V lookup(const K &Key) const { |
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| 186 | auto I = TopLevelMap.find(Key); |
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| 187 | if (I != TopLevelMap.end()) |
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| 188 | return I->second->getValue(); |
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| 189 | |||
| 190 | return V(); |
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| 191 | } |
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| 192 | |||
| 193 | void insert(const K &Key, const V &Val) { |
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| 194 | insertIntoScope(CurScope, Key, Val); |
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| 195 | } |
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| 196 | |||
| 197 | using iterator = ScopedHashTableIterator<K, V, KInfo>; |
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| 198 | |||
| 199 | iterator end() { return iterator(nullptr); } |
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| 200 | |||
| 201 | iterator begin(const K &Key) { |
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| 202 | typename DenseMap<K, ValTy*, KInfo>::iterator I = |
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| 203 | TopLevelMap.find(Key); |
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| 204 | if (I == TopLevelMap.end()) return end(); |
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| 205 | return iterator(I->second); |
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| 206 | } |
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| 207 | |||
| 208 | ScopeTy *getCurScope() { return CurScope; } |
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| 209 | const ScopeTy *getCurScope() const { return CurScope; } |
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| 210 | |||
| 211 | /// insertIntoScope - This inserts the specified key/value at the specified |
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| 212 | /// (possibly not the current) scope. While it is ok to insert into a scope |
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| 213 | /// that isn't the current one, it isn't ok to insert *underneath* an existing |
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| 214 | /// value of the specified key. |
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| 215 | void insertIntoScope(ScopeTy *S, const K &Key, const V &Val) { |
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| 216 | assert(S && "No scope active!"); |
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| 217 | ScopedHashTableVal<K, V> *&KeyEntry = TopLevelMap[Key]; |
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| 218 | KeyEntry = ValTy::Create(S->getLastValInScope(), KeyEntry, Key, Val, |
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| 219 | getAllocator()); |
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| 220 | S->setLastValInScope(KeyEntry); |
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| 221 | } |
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| 222 | }; |
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| 223 | |||
| 224 | /// ScopedHashTableScope ctor - Install this as the current scope for the hash |
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| 225 | /// table. |
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| 226 | template <typename K, typename V, typename KInfo, typename Allocator> |
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| 227 | ScopedHashTableScope<K, V, KInfo, Allocator>:: |
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| 228 | ScopedHashTableScope(ScopedHashTable<K, V, KInfo, Allocator> &ht) : HT(ht) { |
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| 229 | PrevScope = HT.CurScope; |
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| 230 | HT.CurScope = this; |
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| 231 | LastValInScope = nullptr; |
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| 232 | } |
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| 233 | |||
| 234 | template <typename K, typename V, typename KInfo, typename Allocator> |
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| 235 | ScopedHashTableScope<K, V, KInfo, Allocator>::~ScopedHashTableScope() { |
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| 236 | assert(HT.CurScope == this && "Scope imbalance!"); |
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| 237 | HT.CurScope = PrevScope; |
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| 238 | |||
| 239 | // Pop and delete all values corresponding to this scope. |
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| 240 | while (ScopedHashTableVal<K, V> *ThisEntry = LastValInScope) { |
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| 241 | // Pop this value out of the TopLevelMap. |
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| 242 | if (!ThisEntry->getNextForKey()) { |
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| 243 | assert(HT.TopLevelMap[ThisEntry->getKey()] == ThisEntry && |
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| 244 | "Scope imbalance!"); |
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| 245 | HT.TopLevelMap.erase(ThisEntry->getKey()); |
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| 246 | } else { |
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| 247 | ScopedHashTableVal<K, V> *&KeyEntry = HT.TopLevelMap[ThisEntry->getKey()]; |
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| 248 | assert(KeyEntry == ThisEntry && "Scope imbalance!"); |
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| 249 | KeyEntry = ThisEntry->getNextForKey(); |
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| 250 | } |
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| 251 | |||
| 252 | // Pop this value out of the scope. |
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| 253 | LastValInScope = ThisEntry->getNextInScope(); |
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| 254 | |||
| 255 | // Delete this entry. |
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| 256 | ThisEntry->Destroy(HT.getAllocator()); |
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| 257 | } |
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| 258 | } |
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| 259 | |||
| 260 | } // end namespace llvm |
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| 261 | |||
| 262 | #endif // LLVM_ADT_SCOPEDHASHTABLE_H |