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Peter Collingbournef72a8d42016-11-16 23:40:26 +00001//===- GlobalSplit.cpp - global variable splitter -------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This pass uses inrange annotations on GEP indices to split globals where
11// beneficial. Clang currently attaches these annotations to references to
12// virtual table globals under the Itanium ABI for the benefit of the
13// whole-program virtual call optimization and control flow integrity passes.
14//
15//===----------------------------------------------------------------------===//
16
17#include "llvm/Transforms/IPO.h"
18#include "llvm/ADT/StringExtras.h"
19#include "llvm/IR/Constants.h"
20#include "llvm/IR/GlobalVariable.h"
21#include "llvm/IR/Intrinsics.h"
22#include "llvm/IR/Module.h"
23#include "llvm/IR/Operator.h"
24#include "llvm/Pass.h"
25
26#include <set>
27
28using namespace llvm;
29
30namespace {
31
32bool splitGlobal(GlobalVariable &GV) {
33 // If the address of the global is taken outside of the module, we cannot
34 // apply this transformation.
35 if (!GV.hasLocalLinkage())
36 return false;
37
38 // We currently only know how to split ConstantStructs.
39 auto *Init = dyn_cast_or_null<ConstantStruct>(GV.getInitializer());
40 if (!Init)
41 return false;
42
43 // Verify that each user of the global is an inrange getelementptr constant.
44 // From this it follows that any loads from or stores to that global must use
45 // a pointer derived from an inrange getelementptr constant, which is
46 // sufficient to allow us to apply the splitting transform.
47 for (User *U : GV.users()) {
48 if (!isa<Constant>(U))
49 return false;
50
51 auto *GEP = dyn_cast<GEPOperator>(U);
52 if (!GEP || !GEP->getInRangeIndex() || *GEP->getInRangeIndex() != 1 ||
53 !isa<ConstantInt>(GEP->getOperand(1)) ||
54 !cast<ConstantInt>(GEP->getOperand(1))->isZero() ||
55 !isa<ConstantInt>(GEP->getOperand(2)))
56 return false;
57 }
58
59 SmallVector<MDNode *, 2> Types;
60 GV.getMetadata(LLVMContext::MD_type, Types);
61
62 const DataLayout &DL = GV.getParent()->getDataLayout();
63 const StructLayout *SL = DL.getStructLayout(Init->getType());
64
65 IntegerType *Int32Ty = Type::getInt32Ty(GV.getContext());
66
67 std::vector<GlobalVariable *> SplitGlobals(Init->getNumOperands());
68 for (unsigned I = 0; I != Init->getNumOperands(); ++I) {
69 // Build a global representing this split piece.
70 auto *SplitGV =
71 new GlobalVariable(*GV.getParent(), Init->getOperand(I)->getType(),
72 GV.isConstant(), GlobalValue::PrivateLinkage,
73 Init->getOperand(I), GV.getName() + "." + utostr(I));
74 SplitGlobals[I] = SplitGV;
75
76 unsigned SplitBegin = SL->getElementOffset(I);
77 unsigned SplitEnd = (I == Init->getNumOperands() - 1)
78 ? SL->getSizeInBytes()
79 : SL->getElementOffset(I + 1);
80
81 // Rebuild type metadata, adjusting by the split offset.
82 // FIXME: See if we can use DW_OP_piece to preserve debug metadata here.
83 for (MDNode *Type : Types) {
84 uint64_t ByteOffset = cast<ConstantInt>(
85 cast<ConstantAsMetadata>(Type->getOperand(0))->getValue())
86 ->getZExtValue();
87 if (ByteOffset < SplitBegin || ByteOffset >= SplitEnd)
88 continue;
89 SplitGV->addMetadata(
90 LLVMContext::MD_type,
91 *MDNode::get(GV.getContext(),
92 {ConstantAsMetadata::get(
93 ConstantInt::get(Int32Ty, ByteOffset - SplitBegin)),
94 Type->getOperand(1)}));
95 }
96 }
97
98 for (User *U : GV.users()) {
99 auto *GEP = cast<GEPOperator>(U);
100 unsigned I = cast<ConstantInt>(GEP->getOperand(2))->getZExtValue();
101 if (I >= SplitGlobals.size())
102 continue;
103
104 SmallVector<Value *, 4> Ops;
105 Ops.push_back(ConstantInt::get(Int32Ty, 0));
106 for (unsigned I = 3; I != GEP->getNumOperands(); ++I)
107 Ops.push_back(GEP->getOperand(I));
108
109 auto *NewGEP = ConstantExpr::getGetElementPtr(
110 SplitGlobals[I]->getInitializer()->getType(), SplitGlobals[I], Ops,
111 GEP->isInBounds());
112 GEP->replaceAllUsesWith(NewGEP);
113 }
114
115 // Finally, remove the original global. Any remaining uses refer to invalid
116 // elements of the global, so replace with undef.
117 if (!GV.use_empty())
118 GV.replaceAllUsesWith(UndefValue::get(GV.getType()));
119 GV.eraseFromParent();
120 return true;
121}
122
123bool splitGlobals(Module &M) {
124 // First, see if the module uses either of the llvm.type.test or
125 // llvm.type.checked.load intrinsics, which indicates that splitting globals
126 // may be beneficial.
127 Function *TypeTestFunc =
128 M.getFunction(Intrinsic::getName(Intrinsic::type_test));
129 Function *TypeCheckedLoadFunc =
130 M.getFunction(Intrinsic::getName(Intrinsic::type_checked_load));
131 if ((!TypeTestFunc || TypeTestFunc->use_empty()) &&
132 (!TypeCheckedLoadFunc || TypeCheckedLoadFunc->use_empty()))
133 return false;
134
135 bool Changed = false;
136 for (auto I = M.global_begin(); I != M.global_end();) {
137 GlobalVariable &GV = *I;
138 ++I;
139 Changed |= splitGlobal(GV);
140 }
141 return Changed;
142}
143
144struct GlobalSplit : public ModulePass {
145 static char ID;
146 GlobalSplit() : ModulePass(ID) {
147 initializeGlobalSplitPass(*PassRegistry::getPassRegistry());
148 }
149 bool runOnModule(Module &M) {
150 if (skipModule(M))
151 return false;
152
153 return splitGlobals(M);
154 }
155};
156
157}
158
159INITIALIZE_PASS(GlobalSplit, "globalsplit", "Global splitter", false, false)
160char GlobalSplit::ID = 0;
161
162ModulePass *llvm::createGlobalSplitPass() {
163 return new GlobalSplit;
164}