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| Rev | Author | Line No. | Line |
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| 14 | pmbaty | 1 | //- Dominators.h - Implementation of dominators tree for Clang CFG -*- 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 the dominators tree functionality for Clang CFGs. |
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| 10 | // |
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| 11 | //===----------------------------------------------------------------------===// |
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| 12 | |||
| 13 | #ifndef LLVM_CLANG_ANALYSIS_ANALYSES_DOMINATORS_H |
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| 14 | #define LLVM_CLANG_ANALYSIS_ANALYSES_DOMINATORS_H |
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| 15 | |||
| 16 | #include "clang/Analysis/AnalysisDeclContext.h" |
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| 17 | #include "clang/Analysis/CFG.h" |
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| 18 | #include "llvm/ADT/DepthFirstIterator.h" |
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| 19 | #include "llvm/ADT/GraphTraits.h" |
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| 20 | #include "llvm/ADT/iterator.h" |
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| 21 | #include "llvm/Support/GenericIteratedDominanceFrontier.h" |
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| 22 | #include "llvm/Support/GenericDomTree.h" |
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| 23 | #include "llvm/Support/GenericDomTreeConstruction.h" |
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| 24 | #include "llvm/Support/raw_ostream.h" |
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| 25 | |||
| 26 | // FIXME: There is no good reason for the domtree to require a print method |
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| 27 | // which accepts an LLVM Module, so remove this (and the method's argument that |
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| 28 | // needs it) when that is fixed. |
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| 29 | |||
| 30 | namespace llvm { |
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| 31 | |||
| 32 | class Module; |
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| 33 | |||
| 34 | } // namespace llvm |
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| 35 | |||
| 36 | namespace clang { |
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| 37 | |||
| 38 | using DomTreeNode = llvm::DomTreeNodeBase<CFGBlock>; |
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| 39 | |||
| 40 | /// Dominator tree builder for Clang's CFG based on llvm::DominatorTreeBase. |
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| 41 | template <bool IsPostDom> |
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| 42 | class CFGDominatorTreeImpl : public ManagedAnalysis { |
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| 43 | virtual void anchor(); |
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| 44 | |||
| 45 | public: |
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| 46 | using DominatorTreeBase = llvm::DominatorTreeBase<CFGBlock, IsPostDom>; |
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| 47 | |||
| 48 | CFGDominatorTreeImpl() = default; |
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| 49 | |||
| 50 | CFGDominatorTreeImpl(CFG *cfg) { |
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| 51 | buildDominatorTree(cfg); |
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| 52 | } |
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| 53 | |||
| 54 | ~CFGDominatorTreeImpl() override = default; |
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| 55 | |||
| 56 | DominatorTreeBase &getBase() { return DT; } |
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| 57 | |||
| 58 | CFG *getCFG() { return cfg; } |
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| 59 | |||
| 60 | /// \returns the root CFGBlock of the dominators tree. |
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| 61 | CFGBlock *getRoot() const { |
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| 62 | return DT.getRoot(); |
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| 63 | } |
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| 64 | |||
| 65 | /// \returns the root DomTreeNode, which is the wrapper for CFGBlock. |
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| 66 | DomTreeNode *getRootNode() { |
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| 67 | return DT.getRootNode(); |
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| 68 | } |
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| 69 | |||
| 70 | /// Compares two dominator trees. |
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| 71 | /// \returns false if the other dominator tree matches this dominator tree, |
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| 72 | /// false otherwise. |
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| 73 | bool compare(CFGDominatorTreeImpl &Other) const { |
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| 74 | DomTreeNode *R = getRootNode(); |
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| 75 | DomTreeNode *OtherR = Other.getRootNode(); |
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| 76 | |||
| 77 | if (!R || !OtherR || R->getBlock() != OtherR->getBlock()) |
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| 78 | return true; |
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| 79 | |||
| 80 | if (DT.compare(Other.getBase())) |
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| 81 | return true; |
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| 82 | |||
| 83 | return false; |
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| 84 | } |
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| 85 | |||
| 86 | /// Builds the dominator tree for a given CFG. |
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| 87 | void buildDominatorTree(CFG *cfg) { |
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| 88 | assert(cfg); |
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| 89 | this->cfg = cfg; |
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| 90 | DT.recalculate(*cfg); |
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| 91 | } |
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| 92 | |||
| 93 | /// Dumps immediate dominators for each block. |
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| 94 | void dump() { |
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| 95 | llvm::errs() << "Immediate " << (IsPostDom ? "post " : "") |
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| 96 | << "dominance tree (Node#,IDom#):\n"; |
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| 97 | for (CFG::const_iterator I = cfg->begin(), |
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| 98 | E = cfg->end(); I != E; ++I) { |
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| 99 | |||
| 100 | assert(*I && |
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| 101 | "LLVM's Dominator tree builder uses nullpointers to signify the " |
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| 102 | "virtual root!"); |
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| 103 | |||
| 104 | DomTreeNode *IDom = DT.getNode(*I)->getIDom(); |
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| 105 | if (IDom && IDom->getBlock()) |
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| 106 | llvm::errs() << "(" << (*I)->getBlockID() |
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| 107 | << "," |
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| 108 | << IDom->getBlock()->getBlockID() |
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| 109 | << ")\n"; |
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| 110 | else { |
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| 111 | bool IsEntryBlock = *I == &(*I)->getParent()->getEntry(); |
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| 112 | bool IsExitBlock = *I == &(*I)->getParent()->getExit(); |
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| 113 | |||
| 114 | bool IsDomTreeRoot = !IDom && !IsPostDom && IsEntryBlock; |
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| 115 | bool IsPostDomTreeRoot = |
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| 116 | IDom && !IDom->getBlock() && IsPostDom && IsExitBlock; |
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| 117 | |||
| 118 | assert((IsDomTreeRoot || IsPostDomTreeRoot) && |
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| 119 | "If the immediate dominator node is nullptr, the CFG block " |
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| 120 | "should be the exit point (since it's the root of the dominator " |
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| 121 | "tree), or if the CFG block it refers to is a nullpointer, it " |
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| 122 | "must be the entry block (since it's the root of the post " |
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| 123 | "dominator tree)"); |
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| 124 | |||
| 125 | (void)IsDomTreeRoot; |
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| 126 | (void)IsPostDomTreeRoot; |
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| 127 | |||
| 128 | llvm::errs() << "(" << (*I)->getBlockID() |
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| 129 | << "," << (*I)->getBlockID() << ")\n"; |
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| 130 | } |
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| 131 | } |
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| 132 | } |
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| 133 | |||
| 134 | /// Tests whether \p A dominates \p B. |
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| 135 | /// Note a block always dominates itself. |
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| 136 | bool dominates(const CFGBlock *A, const CFGBlock *B) const { |
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| 137 | return DT.dominates(A, B); |
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| 138 | } |
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| 139 | |||
| 140 | /// Tests whether \p A properly dominates \p B. |
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| 141 | /// \returns false if \p A is the same block as \p B, otherwise whether A |
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| 142 | /// dominates B. |
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| 143 | bool properlyDominates(const CFGBlock *A, const CFGBlock *B) const { |
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| 144 | return DT.properlyDominates(A, B); |
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| 145 | } |
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| 146 | |||
| 147 | /// \returns the nearest common dominator CFG block for CFG block \p A and \p |
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| 148 | /// B. If there is no such block then return NULL. |
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| 149 | CFGBlock *findNearestCommonDominator(CFGBlock *A, CFGBlock *B) { |
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| 150 | return DT.findNearestCommonDominator(A, B); |
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| 151 | } |
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| 152 | |||
| 153 | const CFGBlock *findNearestCommonDominator(const CFGBlock *A, |
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| 154 | const CFGBlock *B) { |
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| 155 | return DT.findNearestCommonDominator(A, B); |
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| 156 | } |
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| 157 | |||
| 158 | /// Update the dominator tree information when a node's immediate dominator |
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| 159 | /// changes. |
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| 160 | void changeImmediateDominator(CFGBlock *N, CFGBlock *NewIDom) { |
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| 161 | DT.changeImmediateDominator(N, NewIDom); |
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| 162 | } |
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| 163 | |||
| 164 | /// Tests whether \p A is reachable from the entry block. |
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| 165 | bool isReachableFromEntry(const CFGBlock *A) { |
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| 166 | return DT.isReachableFromEntry(A); |
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| 167 | } |
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| 168 | |||
| 169 | /// Releases the memory held by the dominator tree. |
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| 170 | virtual void releaseMemory() { DT.reset(); } |
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| 171 | |||
| 172 | /// Converts the dominator tree to human readable form. |
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| 173 | virtual void print(raw_ostream &OS, const llvm::Module* M= nullptr) const { |
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| 174 | DT.print(OS); |
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| 175 | } |
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| 176 | |||
| 177 | private: |
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| 178 | CFG *cfg; |
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| 179 | DominatorTreeBase DT; |
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| 180 | }; |
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| 181 | |||
| 182 | using CFGDomTree = CFGDominatorTreeImpl</*IsPostDom*/ false>; |
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| 183 | using CFGPostDomTree = CFGDominatorTreeImpl</*IsPostDom*/ true>; |
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| 184 | |||
| 185 | template<> void CFGDominatorTreeImpl<true>::anchor(); |
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| 186 | template<> void CFGDominatorTreeImpl<false>::anchor(); |
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| 187 | |||
| 188 | } // end of namespace clang |
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| 189 | |||
| 190 | namespace llvm { |
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| 191 | namespace IDFCalculatorDetail { |
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| 192 | |||
| 193 | /// Specialize ChildrenGetterTy to skip nullpointer successors. |
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| 194 | template <bool IsPostDom> |
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| 195 | struct ChildrenGetterTy<clang::CFGBlock, IsPostDom> { |
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| 196 | using NodeRef = typename GraphTraits<clang::CFGBlock *>::NodeRef; |
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| 197 | using ChildrenTy = SmallVector<NodeRef, 8>; |
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| 198 | |||
| 199 | ChildrenTy get(const NodeRef &N) { |
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| 200 | using OrderedNodeTy = |
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| 201 | typename IDFCalculatorBase<clang::CFGBlock, IsPostDom>::OrderedNodeTy; |
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| 202 | |||
| 203 | auto Children = children<OrderedNodeTy>(N); |
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| 204 | ChildrenTy Ret{Children.begin(), Children.end()}; |
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| 205 | llvm::erase_value(Ret, nullptr); |
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| 206 | return Ret; |
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| 207 | } |
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| 208 | }; |
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| 209 | |||
| 210 | } // end of namespace IDFCalculatorDetail |
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| 211 | } // end of namespace llvm |
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| 212 | |||
| 213 | namespace clang { |
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| 214 | |||
| 215 | class ControlDependencyCalculator : public ManagedAnalysis { |
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| 216 | using IDFCalculator = llvm::IDFCalculatorBase<CFGBlock, /*IsPostDom=*/true>; |
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| 217 | using CFGBlockVector = llvm::SmallVector<CFGBlock *, 4>; |
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| 218 | using CFGBlockSet = llvm::SmallPtrSet<CFGBlock *, 4>; |
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| 219 | |||
| 220 | CFGPostDomTree PostDomTree; |
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| 221 | IDFCalculator IDFCalc; |
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| 222 | |||
| 223 | llvm::DenseMap<CFGBlock *, CFGBlockVector> ControlDepenencyMap; |
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| 224 | |||
| 225 | public: |
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| 226 | ControlDependencyCalculator(CFG *cfg) |
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| 227 | : PostDomTree(cfg), IDFCalc(PostDomTree.getBase()) {} |
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| 228 | |||
| 229 | const CFGPostDomTree &getCFGPostDomTree() const { return PostDomTree; } |
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| 230 | |||
| 231 | // Lazily retrieves the set of control dependencies to \p A. |
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| 232 | const CFGBlockVector &getControlDependencies(CFGBlock *A) { |
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| 233 | auto It = ControlDepenencyMap.find(A); |
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| 234 | if (It == ControlDepenencyMap.end()) { |
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| 235 | CFGBlockSet DefiningBlock = {A}; |
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| 236 | IDFCalc.setDefiningBlocks(DefiningBlock); |
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| 237 | |||
| 238 | CFGBlockVector ControlDependencies; |
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| 239 | IDFCalc.calculate(ControlDependencies); |
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| 240 | |||
| 241 | It = ControlDepenencyMap.insert({A, ControlDependencies}).first; |
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| 242 | } |
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| 243 | |||
| 244 | assert(It != ControlDepenencyMap.end()); |
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| 245 | return It->second; |
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| 246 | } |
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| 247 | |||
| 248 | /// Whether \p A is control dependent on \p B. |
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| 249 | bool isControlDependent(CFGBlock *A, CFGBlock *B) { |
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| 250 | return llvm::is_contained(getControlDependencies(A), B); |
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| 251 | } |
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| 252 | |||
| 253 | // Dumps immediate control dependencies for each block. |
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| 254 | LLVM_DUMP_METHOD void dump() { |
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| 255 | CFG *cfg = PostDomTree.getCFG(); |
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| 256 | llvm::errs() << "Control dependencies (Node#,Dependency#):\n"; |
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| 257 | for (CFGBlock *BB : *cfg) { |
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| 258 | |||
| 259 | assert(BB && |
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| 260 | "LLVM's Dominator tree builder uses nullpointers to signify the " |
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| 261 | "virtual root!"); |
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| 262 | |||
| 263 | for (CFGBlock *isControlDependency : getControlDependencies(BB)) |
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| 264 | llvm::errs() << "(" << BB->getBlockID() |
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| 265 | << "," |
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| 266 | << isControlDependency->getBlockID() |
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| 267 | << ")\n"; |
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| 268 | } |
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| 269 | } |
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| 270 | }; |
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| 271 | |||
| 272 | } // namespace clang |
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| 273 | |||
| 274 | namespace llvm { |
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| 275 | |||
| 276 | //===------------------------------------- |
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| 277 | /// DominatorTree GraphTraits specialization so the DominatorTree can be |
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| 278 | /// iterable by generic graph iterators. |
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| 279 | /// |
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| 280 | template <> struct GraphTraits<clang::DomTreeNode *> { |
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| 281 | using NodeRef = ::clang::DomTreeNode *; |
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| 282 | using ChildIteratorType = ::clang::DomTreeNode::const_iterator; |
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| 283 | |||
| 284 | static NodeRef getEntryNode(NodeRef N) { return N; } |
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| 285 | static ChildIteratorType child_begin(NodeRef N) { return N->begin(); } |
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| 286 | static ChildIteratorType child_end(NodeRef N) { return N->end(); } |
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| 287 | |||
| 288 | using nodes_iterator = |
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| 289 | llvm::pointer_iterator<df_iterator<::clang::DomTreeNode *>>; |
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| 290 | |||
| 291 | static nodes_iterator nodes_begin(::clang::DomTreeNode *N) { |
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| 292 | return nodes_iterator(df_begin(getEntryNode(N))); |
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| 293 | } |
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| 294 | |||
| 295 | static nodes_iterator nodes_end(::clang::DomTreeNode *N) { |
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| 296 | return nodes_iterator(df_end(getEntryNode(N))); |
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| 297 | } |
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| 298 | }; |
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| 299 | |||
| 300 | template <> struct GraphTraits<clang::CFGDomTree *> |
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| 301 | : public GraphTraits<clang::DomTreeNode *> { |
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| 302 | static NodeRef getEntryNode(clang::CFGDomTree *DT) { |
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| 303 | return DT->getRootNode(); |
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| 304 | } |
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| 305 | |||
| 306 | static nodes_iterator nodes_begin(clang::CFGDomTree *N) { |
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| 307 | return nodes_iterator(df_begin(getEntryNode(N))); |
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| 308 | } |
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| 309 | |||
| 310 | static nodes_iterator nodes_end(clang::CFGDomTree *N) { |
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| 311 | return nodes_iterator(df_end(getEntryNode(N))); |
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| 312 | } |
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| 313 | }; |
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| 314 | |||
| 315 | } // namespace llvm |
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| 316 | |||
| 317 | #endif // LLVM_CLANG_ANALYSIS_ANALYSES_DOMINATORS_H |