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Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001//===-- DataFlowSanitizer.cpp - dynamic data flow analysis ----------------===//
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/// \file
10/// This file is a part of DataFlowSanitizer, a generalised dynamic data flow
11/// analysis.
12///
13/// Unlike other Sanitizer tools, this tool is not designed to detect a specific
14/// class of bugs on its own. Instead, it provides a generic dynamic data flow
15/// analysis framework to be used by clients to help detect application-specific
16/// issues within their own code.
17///
18/// The analysis is based on automatic propagation of data flow labels (also
19/// known as taint labels) through a program as it performs computation. Each
20/// byte of application memory is backed by two bytes of shadow memory which
21/// hold the label. On Linux/x86_64, memory is laid out as follows:
22///
23/// +--------------------+ 0x800000000000 (top of memory)
24/// | application memory |
25/// +--------------------+ 0x700000008000 (kAppAddr)
26/// | |
27/// | unused |
28/// | |
29/// +--------------------+ 0x200200000000 (kUnusedAddr)
30/// | union table |
31/// +--------------------+ 0x200000000000 (kUnionTableAddr)
32/// | shadow memory |
33/// +--------------------+ 0x000000010000 (kShadowAddr)
34/// | reserved by kernel |
35/// +--------------------+ 0x000000000000
36///
37/// To derive a shadow memory address from an application memory address,
38/// bits 44-46 are cleared to bring the address into the range
39/// [0x000000008000,0x100000000000). Then the address is shifted left by 1 to
40/// account for the double byte representation of shadow labels and move the
41/// address into the shadow memory range. See the function
42/// DataFlowSanitizer::getShadowAddress below.
43///
44/// For more information, please refer to the design document:
45/// http://clang.llvm.org/docs/DataFlowSanitizerDesign.html
46
47#include "llvm/Transforms/Instrumentation.h"
48#include "llvm/ADT/DenseMap.h"
49#include "llvm/ADT/DenseSet.h"
50#include "llvm/ADT/DepthFirstIterator.h"
Peter Collingbourne28a10af2013-08-27 22:09:06 +000051#include "llvm/ADT/StringExtras.h"
Peter Collingbourne0826e602014-12-05 21:22:32 +000052#include "llvm/ADT/Triple.h"
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000053#include "llvm/Analysis/ValueTracking.h"
Peter Collingbourne705a1ae2014-07-15 04:41:17 +000054#include "llvm/IR/Dominators.h"
David Blaikiec6c6c7b2014-10-07 22:59:46 +000055#include "llvm/IR/DebugInfo.h"
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000056#include "llvm/IR/IRBuilder.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000057#include "llvm/IR/InlineAsm.h"
Chandler Carruth7da14f12014-03-06 03:23:41 +000058#include "llvm/IR/InstVisitor.h"
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000059#include "llvm/IR/LLVMContext.h"
60#include "llvm/IR/MDBuilder.h"
61#include "llvm/IR/Type.h"
62#include "llvm/IR/Value.h"
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000063#include "llvm/Pass.h"
64#include "llvm/Support/CommandLine.h"
Alexey Samsonovb7dd3292014-07-09 19:40:08 +000065#include "llvm/Support/SpecialCaseList.h"
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000066#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Peter Collingbourneae66d572013-08-09 21:42:53 +000067#include "llvm/Transforms/Utils/Local.h"
Peter Collingbourne9947c492014-07-15 22:13:19 +000068#include <algorithm>
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000069#include <iterator>
Peter Collingbourne9947c492014-07-15 22:13:19 +000070#include <set>
71#include <utility>
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000072
73using namespace llvm;
74
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +000075// External symbol to be used when generating the shadow address for
76// architectures with multiple VMAs. Instead of using a constant integer
77// the runtime will set the external mask based on the VMA range.
78static const char *const kDFSanExternShadowPtrMask = "__dfsan_shadow_ptr_mask";
Adhemerval Zanella4754e2d2015-08-24 13:48:10 +000079
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +000080// The -dfsan-preserve-alignment flag controls whether this pass assumes that
81// alignment requirements provided by the input IR are correct. For example,
82// if the input IR contains a load with alignment 8, this flag will cause
83// the shadow load to have alignment 16. This flag is disabled by default as
84// we have unfortunately encountered too much code (including Clang itself;
85// see PR14291) which performs misaligned access.
86static cl::opt<bool> ClPreserveAlignment(
87 "dfsan-preserve-alignment",
88 cl::desc("respect alignment requirements provided by input IR"), cl::Hidden,
89 cl::init(false));
90
Alexey Samsonovb9b80272015-02-04 17:39:48 +000091// The ABI list files control how shadow parameters are passed. The pass treats
Peter Collingbourne68162e72013-08-14 18:54:12 +000092// every function labelled "uninstrumented" in the ABI list file as conforming
93// to the "native" (i.e. unsanitized) ABI. Unless the ABI list contains
94// additional annotations for those functions, a call to one of those functions
95// will produce a warning message, as the labelling behaviour of the function is
96// unknown. The other supported annotations are "functional" and "discard",
97// which are described below under DataFlowSanitizer::WrapperKind.
Alexey Samsonovb9b80272015-02-04 17:39:48 +000098static cl::list<std::string> ClABIListFiles(
Peter Collingbourne68162e72013-08-14 18:54:12 +000099 "dfsan-abilist",
100 cl::desc("File listing native ABI functions and how the pass treats them"),
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000101 cl::Hidden);
102
Peter Collingbourne68162e72013-08-14 18:54:12 +0000103// Controls whether the pass uses IA_Args or IA_TLS as the ABI for instrumented
104// functions (see DataFlowSanitizer::InstrumentedABI below).
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000105static cl::opt<bool> ClArgsABI(
106 "dfsan-args-abi",
107 cl::desc("Use the argument ABI rather than the TLS ABI"),
108 cl::Hidden);
109
Peter Collingbourne0be79e12013-11-21 23:20:54 +0000110// Controls whether the pass includes or ignores the labels of pointers in load
111// instructions.
112static cl::opt<bool> ClCombinePointerLabelsOnLoad(
113 "dfsan-combine-pointer-labels-on-load",
114 cl::desc("Combine the label of the pointer with the label of the data when "
115 "loading from memory."),
116 cl::Hidden, cl::init(true));
117
118// Controls whether the pass includes or ignores the labels of pointers in
119// stores instructions.
120static cl::opt<bool> ClCombinePointerLabelsOnStore(
121 "dfsan-combine-pointer-labels-on-store",
122 cl::desc("Combine the label of the pointer with the label of the data when "
123 "storing in memory."),
124 cl::Hidden, cl::init(false));
125
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000126static cl::opt<bool> ClDebugNonzeroLabels(
127 "dfsan-debug-nonzero-labels",
128 cl::desc("Insert calls to __dfsan_nonzero_label on observing a parameter, "
129 "load or return with a nonzero label"),
130 cl::Hidden);
131
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000132
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000133namespace {
134
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000135StringRef GetGlobalTypeString(const GlobalValue &G) {
136 // Types of GlobalVariables are always pointer types.
Manuel Jacob5f6eaac2016-01-16 20:30:46 +0000137 Type *GType = G.getValueType();
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000138 // For now we support blacklisting struct types only.
139 if (StructType *SGType = dyn_cast<StructType>(GType)) {
140 if (!SGType->isLiteral())
141 return SGType->getName();
142 }
143 return "<unknown type>";
144}
145
146class DFSanABIList {
147 std::unique_ptr<SpecialCaseList> SCL;
148
149 public:
Alexey Samsonovb9b80272015-02-04 17:39:48 +0000150 DFSanABIList() {}
151
152 void set(std::unique_ptr<SpecialCaseList> List) { SCL = std::move(List); }
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000153
154 /// Returns whether either this function or its source file are listed in the
155 /// given category.
Craig Topper6dc4a8bc2014-08-30 16:48:02 +0000156 bool isIn(const Function &F, StringRef Category) const {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000157 return isIn(*F.getParent(), Category) ||
158 SCL->inSection("fun", F.getName(), Category);
159 }
160
161 /// Returns whether this global alias is listed in the given category.
162 ///
163 /// If GA aliases a function, the alias's name is matched as a function name
164 /// would be. Similarly, aliases of globals are matched like globals.
Craig Topper6dc4a8bc2014-08-30 16:48:02 +0000165 bool isIn(const GlobalAlias &GA, StringRef Category) const {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000166 if (isIn(*GA.getParent(), Category))
167 return true;
168
Manuel Jacob5f6eaac2016-01-16 20:30:46 +0000169 if (isa<FunctionType>(GA.getValueType()))
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000170 return SCL->inSection("fun", GA.getName(), Category);
171
172 return SCL->inSection("global", GA.getName(), Category) ||
173 SCL->inSection("type", GetGlobalTypeString(GA), Category);
174 }
175
176 /// Returns whether this module is listed in the given category.
Craig Topper6dc4a8bc2014-08-30 16:48:02 +0000177 bool isIn(const Module &M, StringRef Category) const {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000178 return SCL->inSection("src", M.getModuleIdentifier(), Category);
179 }
180};
181
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000182class DataFlowSanitizer : public ModulePass {
183 friend struct DFSanFunction;
184 friend class DFSanVisitor;
185
186 enum {
187 ShadowWidth = 16
188 };
189
Peter Collingbourne68162e72013-08-14 18:54:12 +0000190 /// Which ABI should be used for instrumented functions?
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000191 enum InstrumentedABI {
Peter Collingbourne68162e72013-08-14 18:54:12 +0000192 /// Argument and return value labels are passed through additional
193 /// arguments and by modifying the return type.
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000194 IA_Args,
Peter Collingbourne68162e72013-08-14 18:54:12 +0000195
196 /// Argument and return value labels are passed through TLS variables
197 /// __dfsan_arg_tls and __dfsan_retval_tls.
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000198 IA_TLS
199 };
200
Peter Collingbourne68162e72013-08-14 18:54:12 +0000201 /// How should calls to uninstrumented functions be handled?
202 enum WrapperKind {
203 /// This function is present in an uninstrumented form but we don't know
204 /// how it should be handled. Print a warning and call the function anyway.
205 /// Don't label the return value.
206 WK_Warning,
207
208 /// This function does not write to (user-accessible) memory, and its return
209 /// value is unlabelled.
210 WK_Discard,
211
212 /// This function does not write to (user-accessible) memory, and the label
213 /// of its return value is the union of the label of its arguments.
214 WK_Functional,
215
216 /// Instead of calling the function, a custom wrapper __dfsw_F is called,
217 /// where F is the name of the function. This function may wrap the
218 /// original function or provide its own implementation. This is similar to
219 /// the IA_Args ABI, except that IA_Args uses a struct return type to
220 /// pass the return value shadow in a register, while WK_Custom uses an
221 /// extra pointer argument to return the shadow. This allows the wrapped
222 /// form of the function type to be expressed in C.
223 WK_Custom
224 };
225
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000226 Module *Mod;
227 LLVMContext *Ctx;
228 IntegerType *ShadowTy;
229 PointerType *ShadowPtrTy;
230 IntegerType *IntptrTy;
231 ConstantInt *ZeroShadow;
232 ConstantInt *ShadowPtrMask;
233 ConstantInt *ShadowPtrMul;
234 Constant *ArgTLS;
235 Constant *RetvalTLS;
236 void *(*GetArgTLSPtr)();
237 void *(*GetRetvalTLSPtr)();
238 Constant *GetArgTLS;
239 Constant *GetRetvalTLS;
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000240 Constant *ExternalShadowMask;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000241 FunctionType *DFSanUnionFnTy;
242 FunctionType *DFSanUnionLoadFnTy;
Peter Collingbourne68162e72013-08-14 18:54:12 +0000243 FunctionType *DFSanUnimplementedFnTy;
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +0000244 FunctionType *DFSanSetLabelFnTy;
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000245 FunctionType *DFSanNonzeroLabelFnTy;
Peter Collingbournea1099842014-11-05 17:21:00 +0000246 FunctionType *DFSanVarargWrapperFnTy;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000247 Constant *DFSanUnionFn;
Peter Collingbournedf240b22014-08-06 00:33:40 +0000248 Constant *DFSanCheckedUnionFn;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000249 Constant *DFSanUnionLoadFn;
Peter Collingbourne68162e72013-08-14 18:54:12 +0000250 Constant *DFSanUnimplementedFn;
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +0000251 Constant *DFSanSetLabelFn;
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000252 Constant *DFSanNonzeroLabelFn;
Peter Collingbournea1099842014-11-05 17:21:00 +0000253 Constant *DFSanVarargWrapperFn;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000254 MDNode *ColdCallWeights;
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000255 DFSanABIList ABIList;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000256 DenseMap<Value *, Function *> UnwrappedFnMap;
Reid Klecknerb5180542017-03-21 16:57:19 +0000257 AttributeList ReadOnlyNoneAttrs;
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000258 bool DFSanRuntimeShadowMask;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000259
260 Value *getShadowAddress(Value *Addr, Instruction *Pos);
Peter Collingbourne59b12622013-08-22 20:08:08 +0000261 bool isInstrumented(const Function *F);
262 bool isInstrumented(const GlobalAlias *GA);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000263 FunctionType *getArgsFunctionType(FunctionType *T);
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000264 FunctionType *getTrampolineFunctionType(FunctionType *T);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000265 FunctionType *getCustomFunctionType(FunctionType *T);
266 InstrumentedABI getInstrumentedABI();
267 WrapperKind getWrapperKind(Function *F);
Peter Collingbourne59b12622013-08-22 20:08:08 +0000268 void addGlobalNamePrefix(GlobalValue *GV);
Peter Collingbourne761a4fc2013-08-22 20:08:11 +0000269 Function *buildWrapperFunction(Function *F, StringRef NewFName,
270 GlobalValue::LinkageTypes NewFLink,
271 FunctionType *NewFT);
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000272 Constant *getOrBuildTrampolineFunction(FunctionType *FT, StringRef FName);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000273
Dmitry Vyukov96a70842013-08-13 16:52:41 +0000274 public:
Alexey Samsonovb9b80272015-02-04 17:39:48 +0000275 DataFlowSanitizer(
276 const std::vector<std::string> &ABIListFiles = std::vector<std::string>(),
277 void *(*getArgTLS)() = nullptr, void *(*getRetValTLS)() = nullptr);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000278 static char ID;
Craig Topper3e4c6972014-03-05 09:10:37 +0000279 bool doInitialization(Module &M) override;
280 bool runOnModule(Module &M) override;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000281};
282
283struct DFSanFunction {
284 DataFlowSanitizer &DFS;
285 Function *F;
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000286 DominatorTree DT;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000287 DataFlowSanitizer::InstrumentedABI IA;
Peter Collingbourne68162e72013-08-14 18:54:12 +0000288 bool IsNativeABI;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000289 Value *ArgTLSPtr;
290 Value *RetvalTLSPtr;
Peter Collingbourne68162e72013-08-14 18:54:12 +0000291 AllocaInst *LabelReturnAlloca;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000292 DenseMap<Value *, Value *> ValShadowMap;
293 DenseMap<AllocaInst *, AllocaInst *> AllocaShadowMap;
294 std::vector<std::pair<PHINode *, PHINode *> > PHIFixups;
295 DenseSet<Instruction *> SkipInsts;
Peter Collingbournefab565a2014-08-22 01:18:18 +0000296 std::vector<Value *> NonZeroChecks;
Peter Collingbournedf240b22014-08-06 00:33:40 +0000297 bool AvoidNewBlocks;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000298
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000299 struct CachedCombinedShadow {
300 BasicBlock *Block;
301 Value *Shadow;
302 };
303 DenseMap<std::pair<Value *, Value *>, CachedCombinedShadow>
304 CachedCombinedShadows;
Peter Collingbourne9947c492014-07-15 22:13:19 +0000305 DenseMap<Value *, std::set<Value *>> ShadowElements;
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000306
Peter Collingbourne68162e72013-08-14 18:54:12 +0000307 DFSanFunction(DataFlowSanitizer &DFS, Function *F, bool IsNativeABI)
308 : DFS(DFS), F(F), IA(DFS.getInstrumentedABI()),
Craig Topperf40110f2014-04-25 05:29:35 +0000309 IsNativeABI(IsNativeABI), ArgTLSPtr(nullptr), RetvalTLSPtr(nullptr),
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000310 LabelReturnAlloca(nullptr) {
311 DT.recalculate(*F);
Peter Collingbournedf240b22014-08-06 00:33:40 +0000312 // FIXME: Need to track down the register allocator issue which causes poor
313 // performance in pathological cases with large numbers of basic blocks.
314 AvoidNewBlocks = F->size() > 1000;
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000315 }
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000316 Value *getArgTLSPtr();
317 Value *getArgTLS(unsigned Index, Instruction *Pos);
318 Value *getRetvalTLS();
319 Value *getShadow(Value *V);
320 void setShadow(Instruction *I, Value *Shadow);
Peter Collingbourne83def1c2014-07-15 04:41:14 +0000321 Value *combineShadows(Value *V1, Value *V2, Instruction *Pos);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000322 Value *combineOperandShadows(Instruction *Inst);
323 Value *loadShadow(Value *ShadowAddr, uint64_t Size, uint64_t Align,
324 Instruction *Pos);
325 void storeShadow(Value *Addr, uint64_t Size, uint64_t Align, Value *Shadow,
326 Instruction *Pos);
327};
328
329class DFSanVisitor : public InstVisitor<DFSanVisitor> {
Dmitry Vyukov96a70842013-08-13 16:52:41 +0000330 public:
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000331 DFSanFunction &DFSF;
332 DFSanVisitor(DFSanFunction &DFSF) : DFSF(DFSF) {}
333
334 void visitOperandShadowInst(Instruction &I);
335
336 void visitBinaryOperator(BinaryOperator &BO);
337 void visitCastInst(CastInst &CI);
338 void visitCmpInst(CmpInst &CI);
339 void visitGetElementPtrInst(GetElementPtrInst &GEPI);
340 void visitLoadInst(LoadInst &LI);
341 void visitStoreInst(StoreInst &SI);
342 void visitReturnInst(ReturnInst &RI);
343 void visitCallSite(CallSite CS);
344 void visitPHINode(PHINode &PN);
345 void visitExtractElementInst(ExtractElementInst &I);
346 void visitInsertElementInst(InsertElementInst &I);
347 void visitShuffleVectorInst(ShuffleVectorInst &I);
348 void visitExtractValueInst(ExtractValueInst &I);
349 void visitInsertValueInst(InsertValueInst &I);
350 void visitAllocaInst(AllocaInst &I);
351 void visitSelectInst(SelectInst &I);
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +0000352 void visitMemSetInst(MemSetInst &I);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000353 void visitMemTransferInst(MemTransferInst &I);
354};
355
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000356}
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000357
358char DataFlowSanitizer::ID;
359INITIALIZE_PASS(DataFlowSanitizer, "dfsan",
360 "DataFlowSanitizer: dynamic data flow analysis.", false, false)
361
Alexey Samsonovb9b80272015-02-04 17:39:48 +0000362ModulePass *
363llvm::createDataFlowSanitizerPass(const std::vector<std::string> &ABIListFiles,
364 void *(*getArgTLS)(),
365 void *(*getRetValTLS)()) {
366 return new DataFlowSanitizer(ABIListFiles, getArgTLS, getRetValTLS);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000367}
368
Alexey Samsonovb9b80272015-02-04 17:39:48 +0000369DataFlowSanitizer::DataFlowSanitizer(
370 const std::vector<std::string> &ABIListFiles, void *(*getArgTLS)(),
371 void *(*getRetValTLS)())
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000372 : ModulePass(ID), GetArgTLSPtr(getArgTLS), GetRetvalTLSPtr(getRetValTLS),
373 DFSanRuntimeShadowMask(false) {
Alexey Samsonovb9b80272015-02-04 17:39:48 +0000374 std::vector<std::string> AllABIListFiles(std::move(ABIListFiles));
375 AllABIListFiles.insert(AllABIListFiles.end(), ClABIListFiles.begin(),
376 ClABIListFiles.end());
377 ABIList.set(SpecialCaseList::createOrDie(AllABIListFiles));
Peter Collingbourne68162e72013-08-14 18:54:12 +0000378}
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000379
Peter Collingbourne68162e72013-08-14 18:54:12 +0000380FunctionType *DataFlowSanitizer::getArgsFunctionType(FunctionType *T) {
Benjamin Kramer6cd780f2015-02-17 15:29:18 +0000381 llvm::SmallVector<Type *, 4> ArgTypes(T->param_begin(), T->param_end());
382 ArgTypes.append(T->getNumParams(), ShadowTy);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000383 if (T->isVarArg())
384 ArgTypes.push_back(ShadowPtrTy);
385 Type *RetType = T->getReturnType();
386 if (!RetType->isVoidTy())
Craig Topperf40110f2014-04-25 05:29:35 +0000387 RetType = StructType::get(RetType, ShadowTy, (Type *)nullptr);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000388 return FunctionType::get(RetType, ArgTypes, T->isVarArg());
389}
390
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000391FunctionType *DataFlowSanitizer::getTrampolineFunctionType(FunctionType *T) {
392 assert(!T->isVarArg());
393 llvm::SmallVector<Type *, 4> ArgTypes;
394 ArgTypes.push_back(T->getPointerTo());
Benjamin Kramer6cd780f2015-02-17 15:29:18 +0000395 ArgTypes.append(T->param_begin(), T->param_end());
396 ArgTypes.append(T->getNumParams(), ShadowTy);
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000397 Type *RetType = T->getReturnType();
398 if (!RetType->isVoidTy())
399 ArgTypes.push_back(ShadowPtrTy);
400 return FunctionType::get(T->getReturnType(), ArgTypes, false);
401}
402
Peter Collingbourne68162e72013-08-14 18:54:12 +0000403FunctionType *DataFlowSanitizer::getCustomFunctionType(FunctionType *T) {
Peter Collingbourne68162e72013-08-14 18:54:12 +0000404 llvm::SmallVector<Type *, 4> ArgTypes;
Alexey Samsonov9b7e2b52013-08-28 11:25:12 +0000405 for (FunctionType::param_iterator i = T->param_begin(), e = T->param_end();
406 i != e; ++i) {
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000407 FunctionType *FT;
Alexey Samsonov9b7e2b52013-08-28 11:25:12 +0000408 if (isa<PointerType>(*i) && (FT = dyn_cast<FunctionType>(cast<PointerType>(
409 *i)->getElementType()))) {
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000410 ArgTypes.push_back(getTrampolineFunctionType(FT)->getPointerTo());
411 ArgTypes.push_back(Type::getInt8PtrTy(*Ctx));
412 } else {
413 ArgTypes.push_back(*i);
414 }
415 }
Peter Collingbourne68162e72013-08-14 18:54:12 +0000416 for (unsigned i = 0, e = T->getNumParams(); i != e; ++i)
417 ArgTypes.push_back(ShadowTy);
Peter Collingbournedd3486e2014-10-30 13:22:57 +0000418 if (T->isVarArg())
419 ArgTypes.push_back(ShadowPtrTy);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000420 Type *RetType = T->getReturnType();
421 if (!RetType->isVoidTy())
422 ArgTypes.push_back(ShadowPtrTy);
Peter Collingbournedd3486e2014-10-30 13:22:57 +0000423 return FunctionType::get(T->getReturnType(), ArgTypes, T->isVarArg());
Peter Collingbourne68162e72013-08-14 18:54:12 +0000424}
425
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000426bool DataFlowSanitizer::doInitialization(Module &M) {
Peter Collingbourne0826e602014-12-05 21:22:32 +0000427 llvm::Triple TargetTriple(M.getTargetTriple());
428 bool IsX86_64 = TargetTriple.getArch() == llvm::Triple::x86_64;
429 bool IsMIPS64 = TargetTriple.getArch() == llvm::Triple::mips64 ||
430 TargetTriple.getArch() == llvm::Triple::mips64el;
Adhemerval Zanellabfe1eaf2015-07-30 20:49:35 +0000431 bool IsAArch64 = TargetTriple.getArch() == llvm::Triple::aarch64 ||
432 TargetTriple.getArch() == llvm::Triple::aarch64_be;
Peter Collingbourne0826e602014-12-05 21:22:32 +0000433
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000434 const DataLayout &DL = M.getDataLayout();
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000435
436 Mod = &M;
437 Ctx = &M.getContext();
438 ShadowTy = IntegerType::get(*Ctx, ShadowWidth);
439 ShadowPtrTy = PointerType::getUnqual(ShadowTy);
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000440 IntptrTy = DL.getIntPtrType(*Ctx);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000441 ZeroShadow = ConstantInt::getSigned(ShadowTy, 0);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000442 ShadowPtrMul = ConstantInt::getSigned(IntptrTy, ShadowWidth / 8);
Peter Collingbourne0826e602014-12-05 21:22:32 +0000443 if (IsX86_64)
444 ShadowPtrMask = ConstantInt::getSigned(IntptrTy, ~0x700000000000LL);
445 else if (IsMIPS64)
446 ShadowPtrMask = ConstantInt::getSigned(IntptrTy, ~0xF000000000LL);
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000447 // AArch64 supports multiple VMAs and the shadow mask is set at runtime.
Adhemerval Zanellabfe1eaf2015-07-30 20:49:35 +0000448 else if (IsAArch64)
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000449 DFSanRuntimeShadowMask = true;
Peter Collingbourne0826e602014-12-05 21:22:32 +0000450 else
451 report_fatal_error("unsupported triple");
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000452
453 Type *DFSanUnionArgs[2] = { ShadowTy, ShadowTy };
454 DFSanUnionFnTy =
455 FunctionType::get(ShadowTy, DFSanUnionArgs, /*isVarArg=*/ false);
456 Type *DFSanUnionLoadArgs[2] = { ShadowPtrTy, IntptrTy };
457 DFSanUnionLoadFnTy =
458 FunctionType::get(ShadowTy, DFSanUnionLoadArgs, /*isVarArg=*/ false);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000459 DFSanUnimplementedFnTy = FunctionType::get(
460 Type::getVoidTy(*Ctx), Type::getInt8PtrTy(*Ctx), /*isVarArg=*/false);
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +0000461 Type *DFSanSetLabelArgs[3] = { ShadowTy, Type::getInt8PtrTy(*Ctx), IntptrTy };
462 DFSanSetLabelFnTy = FunctionType::get(Type::getVoidTy(*Ctx),
463 DFSanSetLabelArgs, /*isVarArg=*/false);
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000464 DFSanNonzeroLabelFnTy = FunctionType::get(
Craig Toppere1d12942014-08-27 05:25:25 +0000465 Type::getVoidTy(*Ctx), None, /*isVarArg=*/false);
Peter Collingbournea1099842014-11-05 17:21:00 +0000466 DFSanVarargWrapperFnTy = FunctionType::get(
467 Type::getVoidTy(*Ctx), Type::getInt8PtrTy(*Ctx), /*isVarArg=*/false);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000468
469 if (GetArgTLSPtr) {
470 Type *ArgTLSTy = ArrayType::get(ShadowTy, 64);
Craig Topperf40110f2014-04-25 05:29:35 +0000471 ArgTLS = nullptr;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000472 GetArgTLS = ConstantExpr::getIntToPtr(
473 ConstantInt::get(IntptrTy, uintptr_t(GetArgTLSPtr)),
474 PointerType::getUnqual(
Craig Topperf40110f2014-04-25 05:29:35 +0000475 FunctionType::get(PointerType::getUnqual(ArgTLSTy),
476 (Type *)nullptr)));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000477 }
478 if (GetRetvalTLSPtr) {
Craig Topperf40110f2014-04-25 05:29:35 +0000479 RetvalTLS = nullptr;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000480 GetRetvalTLS = ConstantExpr::getIntToPtr(
481 ConstantInt::get(IntptrTy, uintptr_t(GetRetvalTLSPtr)),
482 PointerType::getUnqual(
Craig Topperf40110f2014-04-25 05:29:35 +0000483 FunctionType::get(PointerType::getUnqual(ShadowTy),
484 (Type *)nullptr)));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000485 }
486
487 ColdCallWeights = MDBuilder(*Ctx).createBranchWeights(1, 1000);
488 return true;
489}
490
Peter Collingbourne59b12622013-08-22 20:08:08 +0000491bool DataFlowSanitizer::isInstrumented(const Function *F) {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000492 return !ABIList.isIn(*F, "uninstrumented");
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000493}
494
Peter Collingbourne59b12622013-08-22 20:08:08 +0000495bool DataFlowSanitizer::isInstrumented(const GlobalAlias *GA) {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000496 return !ABIList.isIn(*GA, "uninstrumented");
Peter Collingbourne59b12622013-08-22 20:08:08 +0000497}
498
Peter Collingbourne68162e72013-08-14 18:54:12 +0000499DataFlowSanitizer::InstrumentedABI DataFlowSanitizer::getInstrumentedABI() {
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000500 return ClArgsABI ? IA_Args : IA_TLS;
501}
502
Peter Collingbourne68162e72013-08-14 18:54:12 +0000503DataFlowSanitizer::WrapperKind DataFlowSanitizer::getWrapperKind(Function *F) {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000504 if (ABIList.isIn(*F, "functional"))
Peter Collingbourne68162e72013-08-14 18:54:12 +0000505 return WK_Functional;
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000506 if (ABIList.isIn(*F, "discard"))
Peter Collingbourne68162e72013-08-14 18:54:12 +0000507 return WK_Discard;
Lorenzo Martignoni40d3dee2014-09-30 12:33:16 +0000508 if (ABIList.isIn(*F, "custom"))
Peter Collingbourne68162e72013-08-14 18:54:12 +0000509 return WK_Custom;
510
511 return WK_Warning;
512}
513
Peter Collingbourne59b12622013-08-22 20:08:08 +0000514void DataFlowSanitizer::addGlobalNamePrefix(GlobalValue *GV) {
515 std::string GVName = GV->getName(), Prefix = "dfs$";
516 GV->setName(Prefix + GVName);
517
518 // Try to change the name of the function in module inline asm. We only do
519 // this for specific asm directives, currently only ".symver", to try to avoid
520 // corrupting asm which happens to contain the symbol name as a substring.
521 // Note that the substitution for .symver assumes that the versioned symbol
522 // also has an instrumented name.
523 std::string Asm = GV->getParent()->getModuleInlineAsm();
524 std::string SearchStr = ".symver " + GVName + ",";
525 size_t Pos = Asm.find(SearchStr);
526 if (Pos != std::string::npos) {
527 Asm.replace(Pos, SearchStr.size(),
528 ".symver " + Prefix + GVName + "," + Prefix);
529 GV->getParent()->setModuleInlineAsm(Asm);
530 }
531}
532
Peter Collingbourne761a4fc2013-08-22 20:08:11 +0000533Function *
534DataFlowSanitizer::buildWrapperFunction(Function *F, StringRef NewFName,
535 GlobalValue::LinkageTypes NewFLink,
536 FunctionType *NewFT) {
537 FunctionType *FT = F->getFunctionType();
538 Function *NewF = Function::Create(NewFT, NewFLink, NewFName,
539 F->getParent());
540 NewF->copyAttributesFrom(F);
541 NewF->removeAttributes(
Reid Klecknerb5180542017-03-21 16:57:19 +0000542 AttributeList::ReturnIndex,
543 AttributeList::get(
544 F->getContext(), AttributeList::ReturnIndex,
545 AttributeFuncs::typeIncompatible(NewFT->getReturnType())));
Peter Collingbourne761a4fc2013-08-22 20:08:11 +0000546
547 BasicBlock *BB = BasicBlock::Create(*Ctx, "entry", NewF);
Peter Collingbournea1099842014-11-05 17:21:00 +0000548 if (F->isVarArg()) {
549 NewF->removeAttributes(
Reid Klecknerb5180542017-03-21 16:57:19 +0000550 AttributeList::FunctionIndex,
551 AttributeList().addAttribute(*Ctx, AttributeList::FunctionIndex,
552 "split-stack"));
Peter Collingbournea1099842014-11-05 17:21:00 +0000553 CallInst::Create(DFSanVarargWrapperFn,
554 IRBuilder<>(BB).CreateGlobalStringPtr(F->getName()), "",
555 BB);
556 new UnreachableInst(*Ctx, BB);
557 } else {
558 std::vector<Value *> Args;
559 unsigned n = FT->getNumParams();
560 for (Function::arg_iterator ai = NewF->arg_begin(); n != 0; ++ai, --n)
561 Args.push_back(&*ai);
562 CallInst *CI = CallInst::Create(F, Args, "", BB);
563 if (FT->getReturnType()->isVoidTy())
564 ReturnInst::Create(*Ctx, BB);
565 else
566 ReturnInst::Create(*Ctx, CI, BB);
567 }
Peter Collingbourne761a4fc2013-08-22 20:08:11 +0000568
569 return NewF;
570}
571
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000572Constant *DataFlowSanitizer::getOrBuildTrampolineFunction(FunctionType *FT,
573 StringRef FName) {
574 FunctionType *FTT = getTrampolineFunctionType(FT);
575 Constant *C = Mod->getOrInsertFunction(FName, FTT);
576 Function *F = dyn_cast<Function>(C);
577 if (F && F->isDeclaration()) {
578 F->setLinkage(GlobalValue::LinkOnceODRLinkage);
579 BasicBlock *BB = BasicBlock::Create(*Ctx, "entry", F);
580 std::vector<Value *> Args;
581 Function::arg_iterator AI = F->arg_begin(); ++AI;
582 for (unsigned N = FT->getNumParams(); N != 0; ++AI, --N)
583 Args.push_back(&*AI);
Reid Kleckner45707d42017-03-16 22:59:15 +0000584 CallInst *CI = CallInst::Create(&*F->arg_begin(), Args, "", BB);
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000585 ReturnInst *RI;
586 if (FT->getReturnType()->isVoidTy())
587 RI = ReturnInst::Create(*Ctx, BB);
588 else
589 RI = ReturnInst::Create(*Ctx, CI, BB);
590
591 DFSanFunction DFSF(*this, F, /*IsNativeABI=*/true);
592 Function::arg_iterator ValAI = F->arg_begin(), ShadowAI = AI; ++ValAI;
593 for (unsigned N = FT->getNumParams(); N != 0; ++ValAI, ++ShadowAI, --N)
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000594 DFSF.ValShadowMap[&*ValAI] = &*ShadowAI;
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000595 DFSanVisitor(DFSF).visitCallInst(*CI);
596 if (!FT->getReturnType()->isVoidTy())
597 new StoreInst(DFSF.getShadow(RI->getReturnValue()),
Reid Kleckner45707d42017-03-16 22:59:15 +0000598 &*std::prev(F->arg_end()), RI);
Peter Collingbourne28a10af2013-08-27 22:09:06 +0000599 }
600
601 return C;
602}
603
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000604bool DataFlowSanitizer::runOnModule(Module &M) {
Alexey Samsonovb7dd3292014-07-09 19:40:08 +0000605 if (ABIList.isIn(M, "skip"))
Peter Collingbourne68162e72013-08-14 18:54:12 +0000606 return false;
607
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000608 if (!GetArgTLSPtr) {
609 Type *ArgTLSTy = ArrayType::get(ShadowTy, 64);
610 ArgTLS = Mod->getOrInsertGlobal("__dfsan_arg_tls", ArgTLSTy);
611 if (GlobalVariable *G = dyn_cast<GlobalVariable>(ArgTLS))
612 G->setThreadLocalMode(GlobalVariable::InitialExecTLSModel);
613 }
614 if (!GetRetvalTLSPtr) {
615 RetvalTLS = Mod->getOrInsertGlobal("__dfsan_retval_tls", ShadowTy);
616 if (GlobalVariable *G = dyn_cast<GlobalVariable>(RetvalTLS))
617 G->setThreadLocalMode(GlobalVariable::InitialExecTLSModel);
618 }
619
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000620 ExternalShadowMask =
621 Mod->getOrInsertGlobal(kDFSanExternShadowPtrMask, IntptrTy);
622
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000623 DFSanUnionFn = Mod->getOrInsertFunction("__dfsan_union", DFSanUnionFnTy);
624 if (Function *F = dyn_cast<Function>(DFSanUnionFn)) {
Reid Klecknerb5180542017-03-21 16:57:19 +0000625 F->addAttribute(AttributeList::FunctionIndex, Attribute::NoUnwind);
626 F->addAttribute(AttributeList::FunctionIndex, Attribute::ReadNone);
627 F->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournedf240b22014-08-06 00:33:40 +0000628 F->addAttribute(1, Attribute::ZExt);
629 F->addAttribute(2, Attribute::ZExt);
630 }
631 DFSanCheckedUnionFn = Mod->getOrInsertFunction("dfsan_union", DFSanUnionFnTy);
632 if (Function *F = dyn_cast<Function>(DFSanCheckedUnionFn)) {
Reid Klecknerb5180542017-03-21 16:57:19 +0000633 F->addAttribute(AttributeList::FunctionIndex, Attribute::NoUnwind);
634 F->addAttribute(AttributeList::FunctionIndex, Attribute::ReadNone);
635 F->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000636 F->addAttribute(1, Attribute::ZExt);
637 F->addAttribute(2, Attribute::ZExt);
638 }
639 DFSanUnionLoadFn =
640 Mod->getOrInsertFunction("__dfsan_union_load", DFSanUnionLoadFnTy);
641 if (Function *F = dyn_cast<Function>(DFSanUnionLoadFn)) {
Reid Klecknerb5180542017-03-21 16:57:19 +0000642 F->addAttribute(AttributeList::FunctionIndex, Attribute::NoUnwind);
643 F->addAttribute(AttributeList::FunctionIndex, Attribute::ReadOnly);
644 F->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000645 }
Peter Collingbourne68162e72013-08-14 18:54:12 +0000646 DFSanUnimplementedFn =
647 Mod->getOrInsertFunction("__dfsan_unimplemented", DFSanUnimplementedFnTy);
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +0000648 DFSanSetLabelFn =
649 Mod->getOrInsertFunction("__dfsan_set_label", DFSanSetLabelFnTy);
650 if (Function *F = dyn_cast<Function>(DFSanSetLabelFn)) {
651 F->addAttribute(1, Attribute::ZExt);
652 }
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000653 DFSanNonzeroLabelFn =
654 Mod->getOrInsertFunction("__dfsan_nonzero_label", DFSanNonzeroLabelFnTy);
Peter Collingbournea1099842014-11-05 17:21:00 +0000655 DFSanVarargWrapperFn = Mod->getOrInsertFunction("__dfsan_vararg_wrapper",
656 DFSanVarargWrapperFnTy);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000657
658 std::vector<Function *> FnsToInstrument;
Peter Collingbourne68162e72013-08-14 18:54:12 +0000659 llvm::SmallPtrSet<Function *, 2> FnsWithNativeABI;
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000660 for (Function &i : M) {
661 if (!i.isIntrinsic() &&
662 &i != DFSanUnionFn &&
663 &i != DFSanCheckedUnionFn &&
664 &i != DFSanUnionLoadFn &&
665 &i != DFSanUnimplementedFn &&
666 &i != DFSanSetLabelFn &&
667 &i != DFSanNonzeroLabelFn &&
668 &i != DFSanVarargWrapperFn)
669 FnsToInstrument.push_back(&i);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000670 }
671
Peter Collingbourne34f0c312013-08-22 20:08:15 +0000672 // Give function aliases prefixes when necessary, and build wrappers where the
673 // instrumentedness is inconsistent.
Peter Collingbourne59b12622013-08-22 20:08:08 +0000674 for (Module::alias_iterator i = M.alias_begin(), e = M.alias_end(); i != e;) {
675 GlobalAlias *GA = &*i;
676 ++i;
677 // Don't stop on weak. We assume people aren't playing games with the
678 // instrumentedness of overridden weak aliases.
Peter Collingbourne2e28edf2014-07-10 01:30:39 +0000679 if (auto F = dyn_cast<Function>(GA->getBaseObject())) {
Peter Collingbourne59b12622013-08-22 20:08:08 +0000680 bool GAInst = isInstrumented(GA), FInst = isInstrumented(F);
681 if (GAInst && FInst) {
682 addGlobalNamePrefix(GA);
Peter Collingbourne34f0c312013-08-22 20:08:15 +0000683 } else if (GAInst != FInst) {
684 // Non-instrumented alias of an instrumented function, or vice versa.
685 // Replace the alias with a native-ABI wrapper of the aliasee. The pass
686 // below will take care of instrumenting it.
687 Function *NewF =
688 buildWrapperFunction(F, "", GA->getLinkage(), F->getFunctionType());
Peter Collingbourne2e28edf2014-07-10 01:30:39 +0000689 GA->replaceAllUsesWith(ConstantExpr::getBitCast(NewF, GA->getType()));
Peter Collingbourne34f0c312013-08-22 20:08:15 +0000690 NewF->takeName(GA);
691 GA->eraseFromParent();
692 FnsToInstrument.push_back(NewF);
Peter Collingbourne59b12622013-08-22 20:08:08 +0000693 }
694 }
695 }
696
Peter Collingbourne68162e72013-08-14 18:54:12 +0000697 AttrBuilder B;
698 B.addAttribute(Attribute::ReadOnly).addAttribute(Attribute::ReadNone);
Reid Klecknerb5180542017-03-21 16:57:19 +0000699 ReadOnlyNoneAttrs = AttributeList::get(*Ctx, AttributeList::FunctionIndex, B);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000700
701 // First, change the ABI of every function in the module. ABI-listed
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000702 // functions keep their original ABI and get a wrapper function.
703 for (std::vector<Function *>::iterator i = FnsToInstrument.begin(),
704 e = FnsToInstrument.end();
705 i != e; ++i) {
706 Function &F = **i;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000707 FunctionType *FT = F.getFunctionType();
Peter Collingbourne68162e72013-08-14 18:54:12 +0000708
Peter Collingbourne59b12622013-08-22 20:08:08 +0000709 bool IsZeroArgsVoidRet = (FT->getNumParams() == 0 && !FT->isVarArg() &&
710 FT->getReturnType()->isVoidTy());
Peter Collingbourne68162e72013-08-14 18:54:12 +0000711
712 if (isInstrumented(&F)) {
Peter Collingbourne59b12622013-08-22 20:08:08 +0000713 // Instrumented functions get a 'dfs$' prefix. This allows us to more
714 // easily identify cases of mismatching ABIs.
715 if (getInstrumentedABI() == IA_Args && !IsZeroArgsVoidRet) {
Peter Collingbourne68162e72013-08-14 18:54:12 +0000716 FunctionType *NewFT = getArgsFunctionType(FT);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000717 Function *NewF = Function::Create(NewFT, F.getLinkage(), "", &M);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000718 NewF->copyAttributesFrom(&F);
719 NewF->removeAttributes(
Reid Klecknerb5180542017-03-21 16:57:19 +0000720 AttributeList::ReturnIndex,
721 AttributeList::get(
722 NewF->getContext(), AttributeList::ReturnIndex,
723 AttributeFuncs::typeIncompatible(NewFT->getReturnType())));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000724 for (Function::arg_iterator FArg = F.arg_begin(),
725 NewFArg = NewF->arg_begin(),
726 FArgEnd = F.arg_end();
727 FArg != FArgEnd; ++FArg, ++NewFArg) {
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000728 FArg->replaceAllUsesWith(&*NewFArg);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000729 }
730 NewF->getBasicBlockList().splice(NewF->begin(), F.getBasicBlockList());
731
Chandler Carruthcdf47882014-03-09 03:16:01 +0000732 for (Function::user_iterator UI = F.user_begin(), UE = F.user_end();
733 UI != UE;) {
734 BlockAddress *BA = dyn_cast<BlockAddress>(*UI);
735 ++UI;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000736 if (BA) {
737 BA->replaceAllUsesWith(
738 BlockAddress::get(NewF, BA->getBasicBlock()));
739 delete BA;
740 }
741 }
742 F.replaceAllUsesWith(
743 ConstantExpr::getBitCast(NewF, PointerType::getUnqual(FT)));
744 NewF->takeName(&F);
745 F.eraseFromParent();
746 *i = NewF;
Peter Collingbourne59b12622013-08-22 20:08:08 +0000747 addGlobalNamePrefix(NewF);
748 } else {
749 addGlobalNamePrefix(&F);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000750 }
Peter Collingbourne59b12622013-08-22 20:08:08 +0000751 } else if (!IsZeroArgsVoidRet || getWrapperKind(&F) == WK_Custom) {
Peter Collingbourne68162e72013-08-14 18:54:12 +0000752 // Build a wrapper function for F. The wrapper simply calls F, and is
753 // added to FnsToInstrument so that any instrumentation according to its
754 // WrapperKind is done in the second pass below.
755 FunctionType *NewFT = getInstrumentedABI() == IA_Args
756 ? getArgsFunctionType(FT)
757 : FT;
Alexey Samsonov6dae24d2013-08-23 07:42:51 +0000758 Function *NewF = buildWrapperFunction(
759 &F, std::string("dfsw$") + std::string(F.getName()),
760 GlobalValue::LinkOnceODRLinkage, NewFT);
Peter Collingbourne68162e72013-08-14 18:54:12 +0000761 if (getInstrumentedABI() == IA_TLS)
Reid Klecknerb5180542017-03-21 16:57:19 +0000762 NewF->removeAttributes(AttributeList::FunctionIndex, ReadOnlyNoneAttrs);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000763
Peter Collingbourne68162e72013-08-14 18:54:12 +0000764 Value *WrappedFnCst =
765 ConstantExpr::getBitCast(NewF, PointerType::getUnqual(FT));
766 F.replaceAllUsesWith(WrappedFnCst);
David Blaikiec6c6c7b2014-10-07 22:59:46 +0000767
Peter Collingbourne68162e72013-08-14 18:54:12 +0000768 UnwrappedFnMap[WrappedFnCst] = &F;
769 *i = NewF;
770
771 if (!F.isDeclaration()) {
772 // This function is probably defining an interposition of an
773 // uninstrumented function and hence needs to keep the original ABI.
774 // But any functions it may call need to use the instrumented ABI, so
775 // we instrument it in a mode which preserves the original ABI.
776 FnsWithNativeABI.insert(&F);
777
778 // This code needs to rebuild the iterators, as they may be invalidated
779 // by the push_back, taking care that the new range does not include
780 // any functions added by this code.
781 size_t N = i - FnsToInstrument.begin(),
782 Count = e - FnsToInstrument.begin();
783 FnsToInstrument.push_back(&F);
784 i = FnsToInstrument.begin() + N;
785 e = FnsToInstrument.begin() + Count;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000786 }
Lorenzo Martignoni40d3dee2014-09-30 12:33:16 +0000787 // Hopefully, nobody will try to indirectly call a vararg
788 // function... yet.
789 } else if (FT->isVarArg()) {
790 UnwrappedFnMap[&F] = &F;
791 *i = nullptr;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000792 }
793 }
794
Benjamin Kramer135f7352016-06-26 12:28:59 +0000795 for (Function *i : FnsToInstrument) {
796 if (!i || i->isDeclaration())
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000797 continue;
798
Benjamin Kramer135f7352016-06-26 12:28:59 +0000799 removeUnreachableBlocks(*i);
Peter Collingbourneae66d572013-08-09 21:42:53 +0000800
Benjamin Kramer135f7352016-06-26 12:28:59 +0000801 DFSanFunction DFSF(*this, i, FnsWithNativeABI.count(i));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000802
803 // DFSanVisitor may create new basic blocks, which confuses df_iterator.
804 // Build a copy of the list before iterating over it.
Benjamin Kramer135f7352016-06-26 12:28:59 +0000805 llvm::SmallVector<BasicBlock *, 4> BBList(depth_first(&i->getEntryBlock()));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000806
Benjamin Kramer135f7352016-06-26 12:28:59 +0000807 for (BasicBlock *i : BBList) {
808 Instruction *Inst = &i->front();
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000809 while (1) {
810 // DFSanVisitor may split the current basic block, changing the current
811 // instruction's next pointer and moving the next instruction to the
812 // tail block from which we should continue.
813 Instruction *Next = Inst->getNextNode();
Peter Collingbournefb3a2b42013-08-12 22:38:39 +0000814 // DFSanVisitor may delete Inst, so keep track of whether it was a
815 // terminator.
816 bool IsTerminator = isa<TerminatorInst>(Inst);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000817 if (!DFSF.SkipInsts.count(Inst))
818 DFSanVisitor(DFSF).visit(Inst);
Peter Collingbournefb3a2b42013-08-12 22:38:39 +0000819 if (IsTerminator)
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000820 break;
821 Inst = Next;
822 }
823 }
824
Peter Collingbourne68162e72013-08-14 18:54:12 +0000825 // We will not necessarily be able to compute the shadow for every phi node
826 // until we have visited every block. Therefore, the code that handles phi
827 // nodes adds them to the PHIFixups list so that they can be properly
828 // handled here.
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000829 for (std::vector<std::pair<PHINode *, PHINode *> >::iterator
830 i = DFSF.PHIFixups.begin(),
831 e = DFSF.PHIFixups.end();
832 i != e; ++i) {
833 for (unsigned val = 0, n = i->first->getNumIncomingValues(); val != n;
834 ++val) {
835 i->second->setIncomingValue(
836 val, DFSF.getShadow(i->first->getIncomingValue(val)));
837 }
838 }
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000839
840 // -dfsan-debug-nonzero-labels will split the CFG in all kinds of crazy
841 // places (i.e. instructions in basic blocks we haven't even begun visiting
842 // yet). To make our life easier, do this work in a pass after the main
843 // instrumentation.
844 if (ClDebugNonzeroLabels) {
Peter Collingbournefab565a2014-08-22 01:18:18 +0000845 for (Value *V : DFSF.NonZeroChecks) {
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000846 Instruction *Pos;
Peter Collingbournefab565a2014-08-22 01:18:18 +0000847 if (Instruction *I = dyn_cast<Instruction>(V))
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000848 Pos = I->getNextNode();
849 else
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000850 Pos = &DFSF.F->getEntryBlock().front();
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000851 while (isa<PHINode>(Pos) || isa<AllocaInst>(Pos))
852 Pos = Pos->getNextNode();
853 IRBuilder<> IRB(Pos);
Peter Collingbournefab565a2014-08-22 01:18:18 +0000854 Value *Ne = IRB.CreateICmpNE(V, DFSF.DFS.ZeroShadow);
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000855 BranchInst *BI = cast<BranchInst>(SplitBlockAndInsertIfThen(
Evgeniy Stepanova9164e92013-12-19 13:29:56 +0000856 Ne, Pos, /*Unreachable=*/false, ColdCallWeights));
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000857 IRBuilder<> ThenIRB(BI);
David Blaikieff6409d2015-05-18 22:13:54 +0000858 ThenIRB.CreateCall(DFSF.DFS.DFSanNonzeroLabelFn, {});
Peter Collingbourne444c59e2013-08-15 18:51:12 +0000859 }
860 }
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000861 }
862
863 return false;
864}
865
866Value *DFSanFunction::getArgTLSPtr() {
867 if (ArgTLSPtr)
868 return ArgTLSPtr;
869 if (DFS.ArgTLS)
870 return ArgTLSPtr = DFS.ArgTLS;
871
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000872 IRBuilder<> IRB(&F->getEntryBlock().front());
David Blaikieff6409d2015-05-18 22:13:54 +0000873 return ArgTLSPtr = IRB.CreateCall(DFS.GetArgTLS, {});
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000874}
875
876Value *DFSanFunction::getRetvalTLS() {
877 if (RetvalTLSPtr)
878 return RetvalTLSPtr;
879 if (DFS.RetvalTLS)
880 return RetvalTLSPtr = DFS.RetvalTLS;
881
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000882 IRBuilder<> IRB(&F->getEntryBlock().front());
David Blaikieff6409d2015-05-18 22:13:54 +0000883 return RetvalTLSPtr = IRB.CreateCall(DFS.GetRetvalTLS, {});
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000884}
885
886Value *DFSanFunction::getArgTLS(unsigned Idx, Instruction *Pos) {
887 IRBuilder<> IRB(Pos);
888 return IRB.CreateConstGEP2_64(getArgTLSPtr(), 0, Idx);
889}
890
891Value *DFSanFunction::getShadow(Value *V) {
892 if (!isa<Argument>(V) && !isa<Instruction>(V))
893 return DFS.ZeroShadow;
894 Value *&Shadow = ValShadowMap[V];
895 if (!Shadow) {
896 if (Argument *A = dyn_cast<Argument>(V)) {
Peter Collingbourne68162e72013-08-14 18:54:12 +0000897 if (IsNativeABI)
898 return DFS.ZeroShadow;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000899 switch (IA) {
900 case DataFlowSanitizer::IA_TLS: {
901 Value *ArgTLSPtr = getArgTLSPtr();
902 Instruction *ArgTLSPos =
903 DFS.ArgTLS ? &*F->getEntryBlock().begin()
904 : cast<Instruction>(ArgTLSPtr)->getNextNode();
905 IRBuilder<> IRB(ArgTLSPos);
906 Shadow = IRB.CreateLoad(getArgTLS(A->getArgNo(), ArgTLSPos));
907 break;
908 }
909 case DataFlowSanitizer::IA_Args: {
Reid Kleckner45707d42017-03-16 22:59:15 +0000910 unsigned ArgIdx = A->getArgNo() + F->arg_size() / 2;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000911 Function::arg_iterator i = F->arg_begin();
912 while (ArgIdx--)
913 ++i;
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +0000914 Shadow = &*i;
Peter Collingbourne68162e72013-08-14 18:54:12 +0000915 assert(Shadow->getType() == DFS.ShadowTy);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000916 break;
917 }
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000918 }
Peter Collingbournefab565a2014-08-22 01:18:18 +0000919 NonZeroChecks.push_back(Shadow);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000920 } else {
921 Shadow = DFS.ZeroShadow;
922 }
923 }
924 return Shadow;
925}
926
927void DFSanFunction::setShadow(Instruction *I, Value *Shadow) {
928 assert(!ValShadowMap.count(I));
929 assert(Shadow->getType() == DFS.ShadowTy);
930 ValShadowMap[I] = Shadow;
931}
932
933Value *DataFlowSanitizer::getShadowAddress(Value *Addr, Instruction *Pos) {
934 assert(Addr != RetvalTLS && "Reinstrumenting?");
935 IRBuilder<> IRB(Pos);
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000936 Value *ShadowPtrMaskValue;
937 if (DFSanRuntimeShadowMask)
938 ShadowPtrMaskValue = IRB.CreateLoad(IntptrTy, ExternalShadowMask);
939 else
940 ShadowPtrMaskValue = ShadowPtrMask;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000941 return IRB.CreateIntToPtr(
942 IRB.CreateMul(
Adhemerval Zanellad93c0c42015-11-27 12:42:39 +0000943 IRB.CreateAnd(IRB.CreatePtrToInt(Addr, IntptrTy),
944 IRB.CreatePtrToInt(ShadowPtrMaskValue, IntptrTy)),
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000945 ShadowPtrMul),
946 ShadowPtrTy);
947}
948
949// Generates IR to compute the union of the two given shadows, inserting it
950// before Pos. Returns the computed union Value.
Peter Collingbourne83def1c2014-07-15 04:41:14 +0000951Value *DFSanFunction::combineShadows(Value *V1, Value *V2, Instruction *Pos) {
952 if (V1 == DFS.ZeroShadow)
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000953 return V2;
Peter Collingbourne83def1c2014-07-15 04:41:14 +0000954 if (V2 == DFS.ZeroShadow)
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000955 return V1;
956 if (V1 == V2)
957 return V1;
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000958
Peter Collingbourne9947c492014-07-15 22:13:19 +0000959 auto V1Elems = ShadowElements.find(V1);
960 auto V2Elems = ShadowElements.find(V2);
961 if (V1Elems != ShadowElements.end() && V2Elems != ShadowElements.end()) {
962 if (std::includes(V1Elems->second.begin(), V1Elems->second.end(),
963 V2Elems->second.begin(), V2Elems->second.end())) {
964 return V1;
965 } else if (std::includes(V2Elems->second.begin(), V2Elems->second.end(),
966 V1Elems->second.begin(), V1Elems->second.end())) {
967 return V2;
968 }
969 } else if (V1Elems != ShadowElements.end()) {
970 if (V1Elems->second.count(V2))
971 return V1;
972 } else if (V2Elems != ShadowElements.end()) {
973 if (V2Elems->second.count(V1))
974 return V2;
975 }
976
Peter Collingbourne705a1ae2014-07-15 04:41:17 +0000977 auto Key = std::make_pair(V1, V2);
978 if (V1 > V2)
979 std::swap(Key.first, Key.second);
980 CachedCombinedShadow &CCS = CachedCombinedShadows[Key];
981 if (CCS.Block && DT.dominates(CCS.Block, Pos->getParent()))
982 return CCS.Shadow;
983
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000984 IRBuilder<> IRB(Pos);
Peter Collingbournedf240b22014-08-06 00:33:40 +0000985 if (AvoidNewBlocks) {
David Blaikieff6409d2015-05-18 22:13:54 +0000986 CallInst *Call = IRB.CreateCall(DFS.DFSanCheckedUnionFn, {V1, V2});
Reid Klecknerb5180542017-03-21 16:57:19 +0000987 Call->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournedf240b22014-08-06 00:33:40 +0000988 Call->addAttribute(1, Attribute::ZExt);
989 Call->addAttribute(2, Attribute::ZExt);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +0000990
Peter Collingbournedf240b22014-08-06 00:33:40 +0000991 CCS.Block = Pos->getParent();
992 CCS.Shadow = Call;
993 } else {
994 BasicBlock *Head = Pos->getParent();
995 Value *Ne = IRB.CreateICmpNE(V1, V2);
996 BranchInst *BI = cast<BranchInst>(SplitBlockAndInsertIfThen(
997 Ne, Pos, /*Unreachable=*/false, DFS.ColdCallWeights, &DT));
998 IRBuilder<> ThenIRB(BI);
David Blaikieff6409d2015-05-18 22:13:54 +0000999 CallInst *Call = ThenIRB.CreateCall(DFS.DFSanUnionFn, {V1, V2});
Reid Klecknerb5180542017-03-21 16:57:19 +00001000 Call->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournedf240b22014-08-06 00:33:40 +00001001 Call->addAttribute(1, Attribute::ZExt);
1002 Call->addAttribute(2, Attribute::ZExt);
Peter Collingbourne705a1ae2014-07-15 04:41:17 +00001003
Peter Collingbournedf240b22014-08-06 00:33:40 +00001004 BasicBlock *Tail = BI->getSuccessor(0);
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001005 PHINode *Phi = PHINode::Create(DFS.ShadowTy, 2, "", &Tail->front());
Peter Collingbournedf240b22014-08-06 00:33:40 +00001006 Phi->addIncoming(Call, Call->getParent());
1007 Phi->addIncoming(V1, Head);
1008
1009 CCS.Block = Tail;
1010 CCS.Shadow = Phi;
1011 }
Peter Collingbourne9947c492014-07-15 22:13:19 +00001012
1013 std::set<Value *> UnionElems;
1014 if (V1Elems != ShadowElements.end()) {
1015 UnionElems = V1Elems->second;
1016 } else {
1017 UnionElems.insert(V1);
1018 }
1019 if (V2Elems != ShadowElements.end()) {
1020 UnionElems.insert(V2Elems->second.begin(), V2Elems->second.end());
1021 } else {
1022 UnionElems.insert(V2);
1023 }
Peter Collingbournedf240b22014-08-06 00:33:40 +00001024 ShadowElements[CCS.Shadow] = std::move(UnionElems);
Peter Collingbourne9947c492014-07-15 22:13:19 +00001025
Peter Collingbournedf240b22014-08-06 00:33:40 +00001026 return CCS.Shadow;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001027}
1028
1029// A convenience function which folds the shadows of each of the operands
1030// of the provided instruction Inst, inserting the IR before Inst. Returns
1031// the computed union Value.
1032Value *DFSanFunction::combineOperandShadows(Instruction *Inst) {
1033 if (Inst->getNumOperands() == 0)
1034 return DFS.ZeroShadow;
1035
1036 Value *Shadow = getShadow(Inst->getOperand(0));
1037 for (unsigned i = 1, n = Inst->getNumOperands(); i != n; ++i) {
Peter Collingbourne83def1c2014-07-15 04:41:14 +00001038 Shadow = combineShadows(Shadow, getShadow(Inst->getOperand(i)), Inst);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001039 }
1040 return Shadow;
1041}
1042
1043void DFSanVisitor::visitOperandShadowInst(Instruction &I) {
1044 Value *CombinedShadow = DFSF.combineOperandShadows(&I);
1045 DFSF.setShadow(&I, CombinedShadow);
1046}
1047
1048// Generates IR to load shadow corresponding to bytes [Addr, Addr+Size), where
1049// Addr has alignment Align, and take the union of each of those shadows.
1050Value *DFSanFunction::loadShadow(Value *Addr, uint64_t Size, uint64_t Align,
1051 Instruction *Pos) {
1052 if (AllocaInst *AI = dyn_cast<AllocaInst>(Addr)) {
1053 llvm::DenseMap<AllocaInst *, AllocaInst *>::iterator i =
1054 AllocaShadowMap.find(AI);
1055 if (i != AllocaShadowMap.end()) {
1056 IRBuilder<> IRB(Pos);
1057 return IRB.CreateLoad(i->second);
1058 }
1059 }
1060
1061 uint64_t ShadowAlign = Align * DFS.ShadowWidth / 8;
1062 SmallVector<Value *, 2> Objs;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001063 GetUnderlyingObjects(Addr, Objs, Pos->getModule()->getDataLayout());
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001064 bool AllConstants = true;
Benjamin Kramer135f7352016-06-26 12:28:59 +00001065 for (Value *Obj : Objs) {
1066 if (isa<Function>(Obj) || isa<BlockAddress>(Obj))
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001067 continue;
Benjamin Kramer135f7352016-06-26 12:28:59 +00001068 if (isa<GlobalVariable>(Obj) && cast<GlobalVariable>(Obj)->isConstant())
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001069 continue;
1070
1071 AllConstants = false;
1072 break;
1073 }
1074 if (AllConstants)
1075 return DFS.ZeroShadow;
1076
1077 Value *ShadowAddr = DFS.getShadowAddress(Addr, Pos);
1078 switch (Size) {
1079 case 0:
1080 return DFS.ZeroShadow;
1081 case 1: {
1082 LoadInst *LI = new LoadInst(ShadowAddr, "", Pos);
1083 LI->setAlignment(ShadowAlign);
1084 return LI;
1085 }
1086 case 2: {
1087 IRBuilder<> IRB(Pos);
David Blaikie93c54442015-04-03 19:41:44 +00001088 Value *ShadowAddr1 = IRB.CreateGEP(DFS.ShadowTy, ShadowAddr,
1089 ConstantInt::get(DFS.IntptrTy, 1));
Peter Collingbourne83def1c2014-07-15 04:41:14 +00001090 return combineShadows(IRB.CreateAlignedLoad(ShadowAddr, ShadowAlign),
1091 IRB.CreateAlignedLoad(ShadowAddr1, ShadowAlign), Pos);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001092 }
1093 }
Peter Collingbournedf240b22014-08-06 00:33:40 +00001094 if (!AvoidNewBlocks && Size % (64 / DFS.ShadowWidth) == 0) {
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001095 // Fast path for the common case where each byte has identical shadow: load
1096 // shadow 64 bits at a time, fall out to a __dfsan_union_load call if any
1097 // shadow is non-equal.
1098 BasicBlock *FallbackBB = BasicBlock::Create(*DFS.Ctx, "", F);
1099 IRBuilder<> FallbackIRB(FallbackBB);
David Blaikieff6409d2015-05-18 22:13:54 +00001100 CallInst *FallbackCall = FallbackIRB.CreateCall(
1101 DFS.DFSanUnionLoadFn,
1102 {ShadowAddr, ConstantInt::get(DFS.IntptrTy, Size)});
Reid Klecknerb5180542017-03-21 16:57:19 +00001103 FallbackCall->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001104
1105 // Compare each of the shadows stored in the loaded 64 bits to each other,
1106 // by computing (WideShadow rotl ShadowWidth) == WideShadow.
1107 IRBuilder<> IRB(Pos);
1108 Value *WideAddr =
1109 IRB.CreateBitCast(ShadowAddr, Type::getInt64PtrTy(*DFS.Ctx));
1110 Value *WideShadow = IRB.CreateAlignedLoad(WideAddr, ShadowAlign);
1111 Value *TruncShadow = IRB.CreateTrunc(WideShadow, DFS.ShadowTy);
1112 Value *ShlShadow = IRB.CreateShl(WideShadow, DFS.ShadowWidth);
1113 Value *ShrShadow = IRB.CreateLShr(WideShadow, 64 - DFS.ShadowWidth);
1114 Value *RotShadow = IRB.CreateOr(ShlShadow, ShrShadow);
1115 Value *ShadowsEq = IRB.CreateICmpEQ(WideShadow, RotShadow);
1116
1117 BasicBlock *Head = Pos->getParent();
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001118 BasicBlock *Tail = Head->splitBasicBlock(Pos->getIterator());
Peter Collingbourne705a1ae2014-07-15 04:41:17 +00001119
1120 if (DomTreeNode *OldNode = DT.getNode(Head)) {
1121 std::vector<DomTreeNode *> Children(OldNode->begin(), OldNode->end());
1122
1123 DomTreeNode *NewNode = DT.addNewBlock(Tail, Head);
1124 for (auto Child : Children)
1125 DT.changeImmediateDominator(Child, NewNode);
1126 }
1127
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001128 // In the following code LastBr will refer to the previous basic block's
1129 // conditional branch instruction, whose true successor is fixed up to point
1130 // to the next block during the loop below or to the tail after the final
1131 // iteration.
1132 BranchInst *LastBr = BranchInst::Create(FallbackBB, FallbackBB, ShadowsEq);
1133 ReplaceInstWithInst(Head->getTerminator(), LastBr);
Peter Collingbourne705a1ae2014-07-15 04:41:17 +00001134 DT.addNewBlock(FallbackBB, Head);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001135
1136 for (uint64_t Ofs = 64 / DFS.ShadowWidth; Ofs != Size;
1137 Ofs += 64 / DFS.ShadowWidth) {
1138 BasicBlock *NextBB = BasicBlock::Create(*DFS.Ctx, "", F);
Peter Collingbourne705a1ae2014-07-15 04:41:17 +00001139 DT.addNewBlock(NextBB, LastBr->getParent());
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001140 IRBuilder<> NextIRB(NextBB);
David Blaikie93c54442015-04-03 19:41:44 +00001141 WideAddr = NextIRB.CreateGEP(Type::getInt64Ty(*DFS.Ctx), WideAddr,
1142 ConstantInt::get(DFS.IntptrTy, 1));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001143 Value *NextWideShadow = NextIRB.CreateAlignedLoad(WideAddr, ShadowAlign);
1144 ShadowsEq = NextIRB.CreateICmpEQ(WideShadow, NextWideShadow);
1145 LastBr->setSuccessor(0, NextBB);
1146 LastBr = NextIRB.CreateCondBr(ShadowsEq, FallbackBB, FallbackBB);
1147 }
1148
1149 LastBr->setSuccessor(0, Tail);
1150 FallbackIRB.CreateBr(Tail);
1151 PHINode *Shadow = PHINode::Create(DFS.ShadowTy, 2, "", &Tail->front());
1152 Shadow->addIncoming(FallbackCall, FallbackBB);
1153 Shadow->addIncoming(TruncShadow, LastBr->getParent());
1154 return Shadow;
1155 }
1156
1157 IRBuilder<> IRB(Pos);
David Blaikieff6409d2015-05-18 22:13:54 +00001158 CallInst *FallbackCall = IRB.CreateCall(
1159 DFS.DFSanUnionLoadFn, {ShadowAddr, ConstantInt::get(DFS.IntptrTy, Size)});
Reid Klecknerb5180542017-03-21 16:57:19 +00001160 FallbackCall->addAttribute(AttributeList::ReturnIndex, Attribute::ZExt);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001161 return FallbackCall;
1162}
1163
1164void DFSanVisitor::visitLoadInst(LoadInst &LI) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001165 auto &DL = LI.getModule()->getDataLayout();
1166 uint64_t Size = DL.getTypeStoreSize(LI.getType());
Peter Collingbourne142fdff2014-08-01 21:18:18 +00001167 if (Size == 0) {
1168 DFSF.setShadow(&LI, DFSF.DFS.ZeroShadow);
1169 return;
1170 }
1171
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001172 uint64_t Align;
1173 if (ClPreserveAlignment) {
1174 Align = LI.getAlignment();
1175 if (Align == 0)
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001176 Align = DL.getABITypeAlignment(LI.getType());
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001177 } else {
1178 Align = 1;
1179 }
1180 IRBuilder<> IRB(&LI);
Peter Collingbourne0be79e12013-11-21 23:20:54 +00001181 Value *Shadow = DFSF.loadShadow(LI.getPointerOperand(), Size, Align, &LI);
1182 if (ClCombinePointerLabelsOnLoad) {
1183 Value *PtrShadow = DFSF.getShadow(LI.getPointerOperand());
Peter Collingbourne83def1c2014-07-15 04:41:14 +00001184 Shadow = DFSF.combineShadows(Shadow, PtrShadow, &LI);
Peter Collingbourne0be79e12013-11-21 23:20:54 +00001185 }
1186 if (Shadow != DFSF.DFS.ZeroShadow)
Peter Collingbournefab565a2014-08-22 01:18:18 +00001187 DFSF.NonZeroChecks.push_back(Shadow);
Peter Collingbourne444c59e2013-08-15 18:51:12 +00001188
Peter Collingbourne0be79e12013-11-21 23:20:54 +00001189 DFSF.setShadow(&LI, Shadow);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001190}
1191
1192void DFSanFunction::storeShadow(Value *Addr, uint64_t Size, uint64_t Align,
1193 Value *Shadow, Instruction *Pos) {
1194 if (AllocaInst *AI = dyn_cast<AllocaInst>(Addr)) {
1195 llvm::DenseMap<AllocaInst *, AllocaInst *>::iterator i =
1196 AllocaShadowMap.find(AI);
1197 if (i != AllocaShadowMap.end()) {
1198 IRBuilder<> IRB(Pos);
1199 IRB.CreateStore(Shadow, i->second);
1200 return;
1201 }
1202 }
1203
1204 uint64_t ShadowAlign = Align * DFS.ShadowWidth / 8;
1205 IRBuilder<> IRB(Pos);
1206 Value *ShadowAddr = DFS.getShadowAddress(Addr, Pos);
1207 if (Shadow == DFS.ZeroShadow) {
1208 IntegerType *ShadowTy = IntegerType::get(*DFS.Ctx, Size * DFS.ShadowWidth);
1209 Value *ExtZeroShadow = ConstantInt::get(ShadowTy, 0);
1210 Value *ExtShadowAddr =
1211 IRB.CreateBitCast(ShadowAddr, PointerType::getUnqual(ShadowTy));
1212 IRB.CreateAlignedStore(ExtZeroShadow, ExtShadowAddr, ShadowAlign);
1213 return;
1214 }
1215
1216 const unsigned ShadowVecSize = 128 / DFS.ShadowWidth;
1217 uint64_t Offset = 0;
1218 if (Size >= ShadowVecSize) {
1219 VectorType *ShadowVecTy = VectorType::get(DFS.ShadowTy, ShadowVecSize);
1220 Value *ShadowVec = UndefValue::get(ShadowVecTy);
1221 for (unsigned i = 0; i != ShadowVecSize; ++i) {
1222 ShadowVec = IRB.CreateInsertElement(
1223 ShadowVec, Shadow, ConstantInt::get(Type::getInt32Ty(*DFS.Ctx), i));
1224 }
1225 Value *ShadowVecAddr =
1226 IRB.CreateBitCast(ShadowAddr, PointerType::getUnqual(ShadowVecTy));
1227 do {
David Blaikie95d3e532015-04-03 23:03:54 +00001228 Value *CurShadowVecAddr =
1229 IRB.CreateConstGEP1_32(ShadowVecTy, ShadowVecAddr, Offset);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001230 IRB.CreateAlignedStore(ShadowVec, CurShadowVecAddr, ShadowAlign);
1231 Size -= ShadowVecSize;
1232 ++Offset;
1233 } while (Size >= ShadowVecSize);
1234 Offset *= ShadowVecSize;
1235 }
1236 while (Size > 0) {
David Blaikie95d3e532015-04-03 23:03:54 +00001237 Value *CurShadowAddr =
1238 IRB.CreateConstGEP1_32(DFS.ShadowTy, ShadowAddr, Offset);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001239 IRB.CreateAlignedStore(Shadow, CurShadowAddr, ShadowAlign);
1240 --Size;
1241 ++Offset;
1242 }
1243}
1244
1245void DFSanVisitor::visitStoreInst(StoreInst &SI) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001246 auto &DL = SI.getModule()->getDataLayout();
1247 uint64_t Size = DL.getTypeStoreSize(SI.getValueOperand()->getType());
Peter Collingbourne142fdff2014-08-01 21:18:18 +00001248 if (Size == 0)
1249 return;
1250
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001251 uint64_t Align;
1252 if (ClPreserveAlignment) {
1253 Align = SI.getAlignment();
1254 if (Align == 0)
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001255 Align = DL.getABITypeAlignment(SI.getValueOperand()->getType());
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001256 } else {
1257 Align = 1;
1258 }
Peter Collingbourne0be79e12013-11-21 23:20:54 +00001259
1260 Value* Shadow = DFSF.getShadow(SI.getValueOperand());
1261 if (ClCombinePointerLabelsOnStore) {
1262 Value *PtrShadow = DFSF.getShadow(SI.getPointerOperand());
Peter Collingbourne83def1c2014-07-15 04:41:14 +00001263 Shadow = DFSF.combineShadows(Shadow, PtrShadow, &SI);
Peter Collingbourne0be79e12013-11-21 23:20:54 +00001264 }
1265 DFSF.storeShadow(SI.getPointerOperand(), Size, Align, Shadow, &SI);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001266}
1267
1268void DFSanVisitor::visitBinaryOperator(BinaryOperator &BO) {
1269 visitOperandShadowInst(BO);
1270}
1271
1272void DFSanVisitor::visitCastInst(CastInst &CI) { visitOperandShadowInst(CI); }
1273
1274void DFSanVisitor::visitCmpInst(CmpInst &CI) { visitOperandShadowInst(CI); }
1275
1276void DFSanVisitor::visitGetElementPtrInst(GetElementPtrInst &GEPI) {
1277 visitOperandShadowInst(GEPI);
1278}
1279
1280void DFSanVisitor::visitExtractElementInst(ExtractElementInst &I) {
1281 visitOperandShadowInst(I);
1282}
1283
1284void DFSanVisitor::visitInsertElementInst(InsertElementInst &I) {
1285 visitOperandShadowInst(I);
1286}
1287
1288void DFSanVisitor::visitShuffleVectorInst(ShuffleVectorInst &I) {
1289 visitOperandShadowInst(I);
1290}
1291
1292void DFSanVisitor::visitExtractValueInst(ExtractValueInst &I) {
1293 visitOperandShadowInst(I);
1294}
1295
1296void DFSanVisitor::visitInsertValueInst(InsertValueInst &I) {
1297 visitOperandShadowInst(I);
1298}
1299
1300void DFSanVisitor::visitAllocaInst(AllocaInst &I) {
1301 bool AllLoadsStores = true;
Chandler Carruthcdf47882014-03-09 03:16:01 +00001302 for (User *U : I.users()) {
1303 if (isa<LoadInst>(U))
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001304 continue;
1305
Chandler Carruthcdf47882014-03-09 03:16:01 +00001306 if (StoreInst *SI = dyn_cast<StoreInst>(U)) {
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001307 if (SI->getPointerOperand() == &I)
1308 continue;
1309 }
1310
1311 AllLoadsStores = false;
1312 break;
1313 }
1314 if (AllLoadsStores) {
1315 IRBuilder<> IRB(&I);
1316 DFSF.AllocaShadowMap[&I] = IRB.CreateAlloca(DFSF.DFS.ShadowTy);
1317 }
1318 DFSF.setShadow(&I, DFSF.DFS.ZeroShadow);
1319}
1320
1321void DFSanVisitor::visitSelectInst(SelectInst &I) {
1322 Value *CondShadow = DFSF.getShadow(I.getCondition());
1323 Value *TrueShadow = DFSF.getShadow(I.getTrueValue());
1324 Value *FalseShadow = DFSF.getShadow(I.getFalseValue());
1325
1326 if (isa<VectorType>(I.getCondition()->getType())) {
1327 DFSF.setShadow(
Peter Collingbourne83def1c2014-07-15 04:41:14 +00001328 &I,
1329 DFSF.combineShadows(
1330 CondShadow, DFSF.combineShadows(TrueShadow, FalseShadow, &I), &I));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001331 } else {
1332 Value *ShadowSel;
1333 if (TrueShadow == FalseShadow) {
1334 ShadowSel = TrueShadow;
1335 } else {
1336 ShadowSel =
1337 SelectInst::Create(I.getCondition(), TrueShadow, FalseShadow, "", &I);
1338 }
Peter Collingbourne83def1c2014-07-15 04:41:14 +00001339 DFSF.setShadow(&I, DFSF.combineShadows(CondShadow, ShadowSel, &I));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001340 }
1341}
1342
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +00001343void DFSanVisitor::visitMemSetInst(MemSetInst &I) {
1344 IRBuilder<> IRB(&I);
1345 Value *ValShadow = DFSF.getShadow(I.getValue());
David Blaikieff6409d2015-05-18 22:13:54 +00001346 IRB.CreateCall(DFSF.DFS.DFSanSetLabelFn,
1347 {ValShadow, IRB.CreateBitCast(I.getDest(), Type::getInt8PtrTy(
1348 *DFSF.DFS.Ctx)),
1349 IRB.CreateZExtOrTrunc(I.getLength(), DFSF.DFS.IntptrTy)});
Peter Collingbourne9d31d6f2013-08-14 20:51:38 +00001350}
1351
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001352void DFSanVisitor::visitMemTransferInst(MemTransferInst &I) {
1353 IRBuilder<> IRB(&I);
1354 Value *DestShadow = DFSF.DFS.getShadowAddress(I.getDest(), &I);
1355 Value *SrcShadow = DFSF.DFS.getShadowAddress(I.getSource(), &I);
1356 Value *LenShadow = IRB.CreateMul(
1357 I.getLength(),
1358 ConstantInt::get(I.getLength()->getType(), DFSF.DFS.ShadowWidth / 8));
Pete Cooper67cf9a72015-11-19 05:56:52 +00001359 Value *AlignShadow;
1360 if (ClPreserveAlignment) {
1361 AlignShadow = IRB.CreateMul(I.getAlignmentCst(),
1362 ConstantInt::get(I.getAlignmentCst()->getType(),
1363 DFSF.DFS.ShadowWidth / 8));
1364 } else {
1365 AlignShadow = ConstantInt::get(I.getAlignmentCst()->getType(),
1366 DFSF.DFS.ShadowWidth / 8);
1367 }
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001368 Type *Int8Ptr = Type::getInt8PtrTy(*DFSF.DFS.Ctx);
1369 DestShadow = IRB.CreateBitCast(DestShadow, Int8Ptr);
1370 SrcShadow = IRB.CreateBitCast(SrcShadow, Int8Ptr);
Pete Cooper67cf9a72015-11-19 05:56:52 +00001371 IRB.CreateCall(I.getCalledValue(), {DestShadow, SrcShadow, LenShadow,
1372 AlignShadow, I.getVolatileCst()});
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001373}
1374
1375void DFSanVisitor::visitReturnInst(ReturnInst &RI) {
Peter Collingbourne68162e72013-08-14 18:54:12 +00001376 if (!DFSF.IsNativeABI && RI.getReturnValue()) {
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001377 switch (DFSF.IA) {
1378 case DataFlowSanitizer::IA_TLS: {
1379 Value *S = DFSF.getShadow(RI.getReturnValue());
1380 IRBuilder<> IRB(&RI);
1381 IRB.CreateStore(S, DFSF.getRetvalTLS());
1382 break;
1383 }
1384 case DataFlowSanitizer::IA_Args: {
1385 IRBuilder<> IRB(&RI);
1386 Type *RT = DFSF.F->getFunctionType()->getReturnType();
1387 Value *InsVal =
1388 IRB.CreateInsertValue(UndefValue::get(RT), RI.getReturnValue(), 0);
1389 Value *InsShadow =
1390 IRB.CreateInsertValue(InsVal, DFSF.getShadow(RI.getReturnValue()), 1);
1391 RI.setOperand(0, InsShadow);
1392 break;
1393 }
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001394 }
1395 }
1396}
1397
1398void DFSanVisitor::visitCallSite(CallSite CS) {
1399 Function *F = CS.getCalledFunction();
1400 if ((F && F->isIntrinsic()) || isa<InlineAsm>(CS.getCalledValue())) {
1401 visitOperandShadowInst(*CS.getInstruction());
1402 return;
1403 }
1404
Peter Collingbournea1099842014-11-05 17:21:00 +00001405 // Calls to this function are synthesized in wrappers, and we shouldn't
1406 // instrument them.
1407 if (F == DFSF.DFS.DFSanVarargWrapperFn)
1408 return;
1409
Peter Collingbourne68162e72013-08-14 18:54:12 +00001410 IRBuilder<> IRB(CS.getInstruction());
1411
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001412 DenseMap<Value *, Function *>::iterator i =
1413 DFSF.DFS.UnwrappedFnMap.find(CS.getCalledValue());
1414 if (i != DFSF.DFS.UnwrappedFnMap.end()) {
Peter Collingbourne68162e72013-08-14 18:54:12 +00001415 Function *F = i->second;
1416 switch (DFSF.DFS.getWrapperKind(F)) {
1417 case DataFlowSanitizer::WK_Warning: {
1418 CS.setCalledFunction(F);
1419 IRB.CreateCall(DFSF.DFS.DFSanUnimplementedFn,
1420 IRB.CreateGlobalStringPtr(F->getName()));
1421 DFSF.setShadow(CS.getInstruction(), DFSF.DFS.ZeroShadow);
1422 return;
1423 }
1424 case DataFlowSanitizer::WK_Discard: {
1425 CS.setCalledFunction(F);
1426 DFSF.setShadow(CS.getInstruction(), DFSF.DFS.ZeroShadow);
1427 return;
1428 }
1429 case DataFlowSanitizer::WK_Functional: {
1430 CS.setCalledFunction(F);
1431 visitOperandShadowInst(*CS.getInstruction());
1432 return;
1433 }
1434 case DataFlowSanitizer::WK_Custom: {
1435 // Don't try to handle invokes of custom functions, it's too complicated.
1436 // Instead, invoke the dfsw$ wrapper, which will in turn call the __dfsw_
1437 // wrapper.
1438 if (CallInst *CI = dyn_cast<CallInst>(CS.getInstruction())) {
1439 FunctionType *FT = F->getFunctionType();
1440 FunctionType *CustomFT = DFSF.DFS.getCustomFunctionType(FT);
1441 std::string CustomFName = "__dfsw_";
1442 CustomFName += F->getName();
1443 Constant *CustomF =
1444 DFSF.DFS.Mod->getOrInsertFunction(CustomFName, CustomFT);
1445 if (Function *CustomFn = dyn_cast<Function>(CustomF)) {
1446 CustomFn->copyAttributesFrom(F);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001447
Peter Collingbourne68162e72013-08-14 18:54:12 +00001448 // Custom functions returning non-void will write to the return label.
1449 if (!FT->getReturnType()->isVoidTy()) {
Reid Klecknerb5180542017-03-21 16:57:19 +00001450 CustomFn->removeAttributes(AttributeList::FunctionIndex,
Peter Collingbourne68162e72013-08-14 18:54:12 +00001451 DFSF.DFS.ReadOnlyNoneAttrs);
1452 }
1453 }
1454
1455 std::vector<Value *> Args;
1456
1457 CallSite::arg_iterator i = CS.arg_begin();
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001458 for (unsigned n = FT->getNumParams(); n != 0; ++i, --n) {
Peter Collingbourne28a10af2013-08-27 22:09:06 +00001459 Type *T = (*i)->getType();
1460 FunctionType *ParamFT;
1461 if (isa<PointerType>(T) &&
1462 (ParamFT = dyn_cast<FunctionType>(
1463 cast<PointerType>(T)->getElementType()))) {
1464 std::string TName = "dfst";
1465 TName += utostr(FT->getNumParams() - n);
1466 TName += "$";
1467 TName += F->getName();
1468 Constant *T = DFSF.DFS.getOrBuildTrampolineFunction(ParamFT, TName);
1469 Args.push_back(T);
1470 Args.push_back(
1471 IRB.CreateBitCast(*i, Type::getInt8PtrTy(*DFSF.DFS.Ctx)));
1472 } else {
1473 Args.push_back(*i);
1474 }
1475 }
Peter Collingbourne68162e72013-08-14 18:54:12 +00001476
1477 i = CS.arg_begin();
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001478 for (unsigned n = FT->getNumParams(); n != 0; ++i, --n)
Peter Collingbourne68162e72013-08-14 18:54:12 +00001479 Args.push_back(DFSF.getShadow(*i));
1480
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001481 if (FT->isVarArg()) {
David Blaikie1b01e7e2015-04-05 22:44:57 +00001482 auto *LabelVATy = ArrayType::get(DFSF.DFS.ShadowTy,
1483 CS.arg_size() - FT->getNumParams());
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001484 auto *LabelVAAlloca = new AllocaInst(
1485 LabelVATy, "labelva", &DFSF.F->getEntryBlock().front());
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001486
1487 for (unsigned n = 0; i != CS.arg_end(); ++i, ++n) {
David Blaikie64646022015-04-05 22:41:44 +00001488 auto LabelVAPtr = IRB.CreateStructGEP(LabelVATy, LabelVAAlloca, n);
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001489 IRB.CreateStore(DFSF.getShadow(*i), LabelVAPtr);
1490 }
1491
David Blaikie64646022015-04-05 22:41:44 +00001492 Args.push_back(IRB.CreateStructGEP(LabelVATy, LabelVAAlloca, 0));
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001493 }
1494
Peter Collingbourne68162e72013-08-14 18:54:12 +00001495 if (!FT->getReturnType()->isVoidTy()) {
1496 if (!DFSF.LabelReturnAlloca) {
1497 DFSF.LabelReturnAlloca =
1498 new AllocaInst(DFSF.DFS.ShadowTy, "labelreturn",
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001499 &DFSF.F->getEntryBlock().front());
Peter Collingbourne68162e72013-08-14 18:54:12 +00001500 }
1501 Args.push_back(DFSF.LabelReturnAlloca);
1502 }
1503
Peter Collingbournedd3486e2014-10-30 13:22:57 +00001504 for (i = CS.arg_begin() + FT->getNumParams(); i != CS.arg_end(); ++i)
1505 Args.push_back(*i);
1506
Peter Collingbourne68162e72013-08-14 18:54:12 +00001507 CallInst *CustomCI = IRB.CreateCall(CustomF, Args);
1508 CustomCI->setCallingConv(CI->getCallingConv());
1509 CustomCI->setAttributes(CI->getAttributes());
1510
1511 if (!FT->getReturnType()->isVoidTy()) {
1512 LoadInst *LabelLoad = IRB.CreateLoad(DFSF.LabelReturnAlloca);
1513 DFSF.setShadow(CustomCI, LabelLoad);
1514 }
1515
1516 CI->replaceAllUsesWith(CustomCI);
1517 CI->eraseFromParent();
1518 return;
1519 }
1520 break;
1521 }
1522 }
1523 }
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001524
1525 FunctionType *FT = cast<FunctionType>(
1526 CS.getCalledValue()->getType()->getPointerElementType());
Peter Collingbourne68162e72013-08-14 18:54:12 +00001527 if (DFSF.DFS.getInstrumentedABI() == DataFlowSanitizer::IA_TLS) {
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001528 for (unsigned i = 0, n = FT->getNumParams(); i != n; ++i) {
1529 IRB.CreateStore(DFSF.getShadow(CS.getArgument(i)),
1530 DFSF.getArgTLS(i, CS.getInstruction()));
1531 }
1532 }
1533
Craig Topperf40110f2014-04-25 05:29:35 +00001534 Instruction *Next = nullptr;
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001535 if (!CS.getType()->isVoidTy()) {
1536 if (InvokeInst *II = dyn_cast<InvokeInst>(CS.getInstruction())) {
1537 if (II->getNormalDest()->getSinglePredecessor()) {
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001538 Next = &II->getNormalDest()->front();
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001539 } else {
1540 BasicBlock *NewBB =
Chandler Carruthd4500562015-01-19 12:36:53 +00001541 SplitEdge(II->getParent(), II->getNormalDest(), &DFSF.DT);
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001542 Next = &NewBB->front();
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001543 }
1544 } else {
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001545 assert(CS->getIterator() != CS->getParent()->end());
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001546 Next = CS->getNextNode();
1547 }
1548
Peter Collingbourne68162e72013-08-14 18:54:12 +00001549 if (DFSF.DFS.getInstrumentedABI() == DataFlowSanitizer::IA_TLS) {
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001550 IRBuilder<> NextIRB(Next);
1551 LoadInst *LI = NextIRB.CreateLoad(DFSF.getRetvalTLS());
1552 DFSF.SkipInsts.insert(LI);
1553 DFSF.setShadow(CS.getInstruction(), LI);
Peter Collingbournefab565a2014-08-22 01:18:18 +00001554 DFSF.NonZeroChecks.push_back(LI);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001555 }
1556 }
1557
1558 // Do all instrumentation for IA_Args down here to defer tampering with the
1559 // CFG in a way that SplitEdge may be able to detect.
Peter Collingbourne68162e72013-08-14 18:54:12 +00001560 if (DFSF.DFS.getInstrumentedABI() == DataFlowSanitizer::IA_Args) {
1561 FunctionType *NewFT = DFSF.DFS.getArgsFunctionType(FT);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001562 Value *Func =
1563 IRB.CreateBitCast(CS.getCalledValue(), PointerType::getUnqual(NewFT));
1564 std::vector<Value *> Args;
1565
1566 CallSite::arg_iterator i = CS.arg_begin(), e = CS.arg_end();
1567 for (unsigned n = FT->getNumParams(); n != 0; ++i, --n)
1568 Args.push_back(*i);
1569
1570 i = CS.arg_begin();
1571 for (unsigned n = FT->getNumParams(); n != 0; ++i, --n)
1572 Args.push_back(DFSF.getShadow(*i));
1573
1574 if (FT->isVarArg()) {
1575 unsigned VarArgSize = CS.arg_size() - FT->getNumParams();
1576 ArrayType *VarArgArrayTy = ArrayType::get(DFSF.DFS.ShadowTy, VarArgSize);
1577 AllocaInst *VarArgShadow =
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001578 new AllocaInst(VarArgArrayTy, "", &DFSF.F->getEntryBlock().front());
David Blaikie4e5d47f42015-04-04 21:07:10 +00001579 Args.push_back(IRB.CreateConstGEP2_32(VarArgArrayTy, VarArgShadow, 0, 0));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001580 for (unsigned n = 0; i != e; ++i, ++n) {
David Blaikie4e5d47f42015-04-04 21:07:10 +00001581 IRB.CreateStore(
1582 DFSF.getShadow(*i),
1583 IRB.CreateConstGEP2_32(VarArgArrayTy, VarArgShadow, 0, n));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001584 Args.push_back(*i);
1585 }
1586 }
1587
1588 CallSite NewCS;
1589 if (InvokeInst *II = dyn_cast<InvokeInst>(CS.getInstruction())) {
1590 NewCS = IRB.CreateInvoke(Func, II->getNormalDest(), II->getUnwindDest(),
1591 Args);
1592 } else {
1593 NewCS = IRB.CreateCall(Func, Args);
1594 }
1595 NewCS.setCallingConv(CS.getCallingConv());
1596 NewCS.setAttributes(CS.getAttributes().removeAttributes(
Reid Klecknerb5180542017-03-21 16:57:19 +00001597 *DFSF.DFS.Ctx, AttributeList::ReturnIndex,
Pete Cooper2777d8872015-05-06 23:19:56 +00001598 AttributeFuncs::typeIncompatible(NewCS.getInstruction()->getType())));
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001599
1600 if (Next) {
1601 ExtractValueInst *ExVal =
1602 ExtractValueInst::Create(NewCS.getInstruction(), 0, "", Next);
1603 DFSF.SkipInsts.insert(ExVal);
1604 ExtractValueInst *ExShadow =
1605 ExtractValueInst::Create(NewCS.getInstruction(), 1, "", Next);
1606 DFSF.SkipInsts.insert(ExShadow);
1607 DFSF.setShadow(ExVal, ExShadow);
Peter Collingbournefab565a2014-08-22 01:18:18 +00001608 DFSF.NonZeroChecks.push_back(ExShadow);
Peter Collingbournee5d5b0c2013-08-07 22:47:18 +00001609
1610 CS.getInstruction()->replaceAllUsesWith(ExVal);
1611 }
1612
1613 CS.getInstruction()->eraseFromParent();
1614 }
1615}
1616
1617void DFSanVisitor::visitPHINode(PHINode &PN) {
1618 PHINode *ShadowPN =
1619 PHINode::Create(DFSF.DFS.ShadowTy, PN.getNumIncomingValues(), "", &PN);
1620
1621 // Give the shadow phi node valid predecessors to fool SplitEdge into working.
1622 Value *UndefShadow = UndefValue::get(DFSF.DFS.ShadowTy);
1623 for (PHINode::block_iterator i = PN.block_begin(), e = PN.block_end(); i != e;
1624 ++i) {
1625 ShadowPN->addIncoming(UndefShadow, *i);
1626 }
1627
1628 DFSF.PHIFixups.push_back(std::make_pair(&PN, ShadowPN));
1629 DFSF.setShadow(&PN, ShadowPN);
1630}