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Eugene Zelenkobff0ef02017-10-19 22:07:16 +00001//===- AddressSanitizer.cpp - memory error detector -----------------------===//
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002//
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 file is a part of AddressSanitizer, an address sanity checker.
11// Details of the algorithm:
Hans Wennborg08b34a02017-11-13 23:47:58 +000012// https://github.com/google/sanitizers/wiki/AddressSanitizerAlgorithm
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000013//
14//===----------------------------------------------------------------------===//
15
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000016#include "llvm/ADT/ArrayRef.h"
Alexey Samsonov29dd7f22012-12-27 08:50:58 +000017#include "llvm/ADT/DenseMap.h"
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +000018#include "llvm/ADT/DepthFirstIterator.h"
Florian Hahna1cc8482018-06-12 11:16:56 +000019#include "llvm/ADT/SmallPtrSet.h"
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000020#include "llvm/ADT/SmallVector.h"
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +000021#include "llvm/ADT/Statistic.h"
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000022#include "llvm/ADT/StringExtras.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000023#include "llvm/ADT/StringRef.h"
Evgeniy Stepanov617232f2012-05-23 11:52:12 +000024#include "llvm/ADT/Triple.h"
Vitaly Buka74443f02017-07-18 22:28:03 +000025#include "llvm/ADT/Twine.h"
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +000026#include "llvm/Analysis/MemoryBuiltins.h"
27#include "llvm/Analysis/TargetLibraryInfo.h"
David Blaikie31b98d22018-06-04 21:23:21 +000028#include "llvm/Transforms/Utils/Local.h"
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +000029#include "llvm/Analysis/ValueTracking.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000030#include "llvm/BinaryFormat/MachO.h"
Vitaly Buka74443f02017-07-18 22:28:03 +000031#include "llvm/IR/Argument.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000032#include "llvm/IR/Attributes.h"
33#include "llvm/IR/BasicBlock.h"
Chandler Carruth219b89b2014-03-04 11:01:28 +000034#include "llvm/IR/CallSite.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000035#include "llvm/IR/Comdat.h"
36#include "llvm/IR/Constant.h"
37#include "llvm/IR/Constants.h"
Chandler Carruth12664a02014-03-06 00:22:06 +000038#include "llvm/IR/DIBuilder.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000039#include "llvm/IR/DataLayout.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000040#include "llvm/IR/DebugInfoMetadata.h"
41#include "llvm/IR/DebugLoc.h"
42#include "llvm/IR/DerivedTypes.h"
Yury Gribov3ae427d2014-12-01 08:47:58 +000043#include "llvm/IR/Dominators.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000044#include "llvm/IR/Function.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000045#include "llvm/IR/GlobalAlias.h"
46#include "llvm/IR/GlobalValue.h"
47#include "llvm/IR/GlobalVariable.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000048#include "llvm/IR/IRBuilder.h"
49#include "llvm/IR/InlineAsm.h"
Chandler Carruth7da14f12014-03-06 03:23:41 +000050#include "llvm/IR/InstVisitor.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000051#include "llvm/IR/InstrTypes.h"
52#include "llvm/IR/Instruction.h"
53#include "llvm/IR/Instructions.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000054#include "llvm/IR/IntrinsicInst.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000055#include "llvm/IR/Intrinsics.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000056#include "llvm/IR/LLVMContext.h"
Kostya Serebryany714c67c2014-01-17 11:00:30 +000057#include "llvm/IR/MDBuilder.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000058#include "llvm/IR/Metadata.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000059#include "llvm/IR/Module.h"
60#include "llvm/IR/Type.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000061#include "llvm/IR/Use.h"
62#include "llvm/IR/Value.h"
Kuba Brecka1001bb52014-12-05 22:19:18 +000063#include "llvm/MC/MCSectionMachO.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000064#include "llvm/Pass.h"
65#include "llvm/Support/Casting.h"
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000066#include "llvm/Support/CommandLine.h"
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000067#include "llvm/Support/Debug.h"
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000068#include "llvm/Support/ErrorHandling.h"
69#include "llvm/Support/MathExtras.h"
Vitaly Buka74443f02017-07-18 22:28:03 +000070#include "llvm/Support/ScopedPrinter.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000071#include "llvm/Support/raw_ostream.h"
Mehdi Aminib550cb12016-04-18 09:17:29 +000072#include "llvm/Transforms/Instrumentation.h"
Kostya Serebryany4fb78012013-12-06 09:00:17 +000073#include "llvm/Transforms/Utils/ASanStackFrameLayout.h"
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000074#include "llvm/Transforms/Utils/BasicBlockUtils.h"
75#include "llvm/Transforms/Utils/ModuleUtils.h"
Anna Zaks8ed1d812015-02-27 03:12:36 +000076#include "llvm/Transforms/Utils/PromoteMemToReg.h"
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000077#include <algorithm>
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000078#include <cassert>
79#include <cstddef>
80#include <cstdint>
Vitaly Buka3455b9b2016-08-20 18:34:39 +000081#include <iomanip>
Vitaly Buka793913c2016-08-29 18:17:21 +000082#include <limits>
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000083#include <memory>
Vitaly Buka3455b9b2016-08-20 18:34:39 +000084#include <sstream>
Chandler Carruthed0881b2012-12-03 16:50:05 +000085#include <string>
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000086#include <tuple>
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000087
88using namespace llvm;
89
Chandler Carruth964daaa2014-04-22 02:55:47 +000090#define DEBUG_TYPE "asan"
91
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +000092static const uint64_t kDefaultShadowScale = 3;
93static const uint64_t kDefaultShadowOffset32 = 1ULL << 29;
94static const uint64_t kDefaultShadowOffset64 = 1ULL << 44;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +000095static const uint64_t kDynamicShadowSentinel =
96 std::numeric_limits<uint64_t>::max();
Anna Zaks3b50e702016-02-02 22:05:07 +000097static const uint64_t kIOSShadowOffset32 = 1ULL << 30;
Anna Zaks3b50e702016-02-02 22:05:07 +000098static const uint64_t kIOSSimShadowOffset32 = 1ULL << 30;
99static const uint64_t kIOSSimShadowOffset64 = kDefaultShadowOffset64;
Walter Lee8f1545c2017-11-16 17:03:00 +0000100static const uint64_t kSmallX86_64ShadowOffsetBase = 0x7FFFFFFF; // < 2G.
101static const uint64_t kSmallX86_64ShadowOffsetAlignMask = ~0xFFFULL;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000102static const uint64_t kLinuxKasan_ShadowOffset64 = 0xdffffc0000000000;
Bill Seurer957a0762017-12-07 22:53:33 +0000103static const uint64_t kPPC64_ShadowOffset64 = 1ULL << 44;
Marcin Koscielnicki57290f92016-04-30 09:57:34 +0000104static const uint64_t kSystemZ_ShadowOffset64 = 1ULL << 52;
Kostya Serebryanyc5bd9812014-11-04 19:46:15 +0000105static const uint64_t kMIPS32_ShadowOffset32 = 0x0aaa0000;
Kumar Sukhani9559a5c2015-01-31 10:43:18 +0000106static const uint64_t kMIPS64_ShadowOffset64 = 1ULL << 37;
Renato Golinaf213722015-02-03 11:20:45 +0000107static const uint64_t kAArch64_ShadowOffset64 = 1ULL << 36;
Kostya Serebryany8baa3862014-02-10 07:37:04 +0000108static const uint64_t kFreeBSD_ShadowOffset32 = 1ULL << 30;
109static const uint64_t kFreeBSD_ShadowOffset64 = 1ULL << 46;
Kamil Rytarowski02c432a2018-05-11 00:58:01 +0000110static const uint64_t kNetBSD_ShadowOffset32 = 1ULL << 30;
Kamil Rytarowskia9f404f82017-08-28 22:13:52 +0000111static const uint64_t kNetBSD_ShadowOffset64 = 1ULL << 46;
Filipe Cabecinhas33dd4862017-02-23 17:10:28 +0000112static const uint64_t kPS4CPU_ShadowOffset64 = 1ULL << 40;
Timur Iskhodzhanovb4b6b742015-01-22 12:24:21 +0000113static const uint64_t kWindowsShadowOffset32 = 3ULL << 28;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000114
Walter Leecdbb2072018-05-18 04:10:38 +0000115static const uint64_t kMyriadShadowScale = 5;
116static const uint64_t kMyriadMemoryOffset32 = 0x80000000ULL;
117static const uint64_t kMyriadMemorySize32 = 0x20000000ULL;
118static const uint64_t kMyriadTagShift = 29;
119static const uint64_t kMyriadDDRTag = 4;
120static const uint64_t kMyriadCacheBitMask32 = 0x40000000ULL;
121
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000122// The shadow memory space is dynamically allocated.
123static const uint64_t kWindowsShadowOffset64 = kDynamicShadowSentinel;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000124
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000125static const size_t kMinStackMallocSize = 1 << 6; // 64B
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000126static const size_t kMaxStackMallocSize = 1 << 16; // 64K
127static const uintptr_t kCurrentStackFrameMagic = 0x41B58AB3;
128static const uintptr_t kRetiredStackFrameMagic = 0x45E0360E;
129
Craig Topperd3a34f82013-07-16 01:17:10 +0000130static const char *const kAsanModuleCtorName = "asan.module_ctor";
131static const char *const kAsanModuleDtorName = "asan.module_dtor";
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000132static const uint64_t kAsanCtorAndDtorPriority = 1;
Craig Topperd3a34f82013-07-16 01:17:10 +0000133static const char *const kAsanReportErrorTemplate = "__asan_report_";
Craig Topperd3a34f82013-07-16 01:17:10 +0000134static const char *const kAsanRegisterGlobalsName = "__asan_register_globals";
Alexey Samsonovf52b7172013-08-05 13:19:49 +0000135static const char *const kAsanUnregisterGlobalsName =
136 "__asan_unregister_globals";
Ryan Govostes653f9d02016-03-28 20:28:57 +0000137static const char *const kAsanRegisterImageGlobalsName =
138 "__asan_register_image_globals";
139static const char *const kAsanUnregisterImageGlobalsName =
140 "__asan_unregister_image_globals";
Evgeniy Stepanov964f4662017-04-27 20:27:27 +0000141static const char *const kAsanRegisterElfGlobalsName =
142 "__asan_register_elf_globals";
143static const char *const kAsanUnregisterElfGlobalsName =
144 "__asan_unregister_elf_globals";
Craig Topperd3a34f82013-07-16 01:17:10 +0000145static const char *const kAsanPoisonGlobalsName = "__asan_before_dynamic_init";
146static const char *const kAsanUnpoisonGlobalsName = "__asan_after_dynamic_init";
Kuba Brecka45dbffd2015-07-23 10:54:06 +0000147static const char *const kAsanInitName = "__asan_init";
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000148static const char *const kAsanVersionCheckNamePrefix =
149 "__asan_version_mismatch_check_v";
Kostya Serebryany796f6552014-02-27 12:45:36 +0000150static const char *const kAsanPtrCmp = "__sanitizer_ptr_cmp";
151static const char *const kAsanPtrSub = "__sanitizer_ptr_sub";
Craig Topperd3a34f82013-07-16 01:17:10 +0000152static const char *const kAsanHandleNoReturnName = "__asan_handle_no_return";
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000153static const int kMaxAsanStackMallocSizeClass = 10;
Kostya Serebryany6805de52013-09-10 13:16:56 +0000154static const char *const kAsanStackMallocNameTemplate = "__asan_stack_malloc_";
155static const char *const kAsanStackFreeNameTemplate = "__asan_stack_free_";
Peter Collingbourne4a653fa2018-07-18 22:23:14 +0000156static const char *const kAsanGenPrefix = "___asan_gen_";
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +0000157static const char *const kODRGenPrefix = "__odr_asan_gen_";
Kostya Serebryanycb45b122014-11-19 00:22:58 +0000158static const char *const kSanCovGenPrefix = "__sancov_gen_";
Vitaly Buka3455b9b2016-08-20 18:34:39 +0000159static const char *const kAsanSetShadowPrefix = "__asan_set_shadow_";
Craig Topperd3a34f82013-07-16 01:17:10 +0000160static const char *const kAsanPoisonStackMemoryName =
161 "__asan_poison_stack_memory";
162static const char *const kAsanUnpoisonStackMemoryName =
Alexey Samsonov261177a2012-12-04 01:34:23 +0000163 "__asan_unpoison_stack_memory";
Evgeniy Stepanov964f4662017-04-27 20:27:27 +0000164
165// ASan version script has __asan_* wildcard. Triple underscore prevents a
166// linker (gold) warning about attempting to export a local symbol.
Ryan Govostes653f9d02016-03-28 20:28:57 +0000167static const char *const kAsanGlobalsRegisteredFlagName =
Evgeniy Stepanov964f4662017-04-27 20:27:27 +0000168 "___asan_globals_registered";
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000169
Vitaly Buka7b8ed4f2016-06-02 00:06:42 +0000170static const char *const kAsanOptionDetectUseAfterReturn =
Kostya Serebryanyf3223822013-09-18 14:07:14 +0000171 "__asan_option_detect_stack_use_after_return";
172
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000173static const char *const kAsanShadowMemoryDynamicAddress =
174 "__asan_shadow_memory_dynamic_address";
175
Alexander Potapenkof90556e2015-06-12 11:27:06 +0000176static const char *const kAsanAllocaPoison = "__asan_alloca_poison";
177static const char *const kAsanAllocasUnpoison = "__asan_allocas_unpoison";
Yury Gribov98b18592015-05-28 07:51:49 +0000178
Kostya Serebryany874dae62012-07-16 16:15:40 +0000179// Accesses sizes are powers of two: 1, 2, 4, 8, 16.
180static const size_t kNumberOfAccessSizes = 5;
181
Yury Gribov55441bb2014-11-21 10:29:50 +0000182static const unsigned kAllocaRzSize = 32;
Yury Gribov55441bb2014-11-21 10:29:50 +0000183
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000184// Command-line flags.
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000185
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000186static cl::opt<bool> ClEnableKasan(
187 "asan-kernel", cl::desc("Enable KernelAddressSanitizer instrumentation"),
188 cl::Hidden, cl::init(false));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000189
Yury Gribovd7731982015-11-11 10:36:49 +0000190static cl::opt<bool> ClRecover(
191 "asan-recover",
192 cl::desc("Enable recovery mode (continue-after-error)."),
193 cl::Hidden, cl::init(false));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000194
195// This flag may need to be replaced with -f[no-]asan-reads.
196static cl::opt<bool> ClInstrumentReads("asan-instrument-reads",
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000197 cl::desc("instrument read instructions"),
198 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000199
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000200static cl::opt<bool> ClInstrumentWrites(
201 "asan-instrument-writes", cl::desc("instrument write instructions"),
202 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000203
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000204static cl::opt<bool> ClInstrumentAtomics(
205 "asan-instrument-atomics",
206 cl::desc("instrument atomic instructions (rmw, cmpxchg)"), cl::Hidden,
207 cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000208
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000209static cl::opt<bool> ClAlwaysSlowPath(
210 "asan-always-slow-path",
211 cl::desc("use instrumentation with slow path for all accesses"), cl::Hidden,
212 cl::init(false));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000213
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000214static cl::opt<bool> ClForceDynamicShadow(
215 "asan-force-dynamic-shadow",
216 cl::desc("Load shadow address into a local variable for each function"),
217 cl::Hidden, cl::init(false));
218
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000219static cl::opt<bool>
220 ClWithIfunc("asan-with-ifunc",
221 cl::desc("Access dynamic shadow through an ifunc global on "
222 "platforms that support this"),
223 cl::Hidden, cl::init(true));
224
225static cl::opt<bool> ClWithIfuncSuppressRemat(
226 "asan-with-ifunc-suppress-remat",
227 cl::desc("Suppress rematerialization of dynamic shadow address by passing "
228 "it through inline asm in prologue."),
229 cl::Hidden, cl::init(true));
230
Kostya Serebryany874dae62012-07-16 16:15:40 +0000231// This flag limits the number of instructions to be instrumented
Kostya Serebryanyc387ca72012-06-28 09:34:41 +0000232// in any given BB. Normally, this should be set to unlimited (INT_MAX),
233// but due to http://llvm.org/bugs/show_bug.cgi?id=12652 we temporary
234// set it to 10000.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000235static cl::opt<int> ClMaxInsnsToInstrumentPerBB(
236 "asan-max-ins-per-bb", cl::init(10000),
237 cl::desc("maximal number of instructions to instrument in any given BB"),
238 cl::Hidden);
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000239
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000240// This flag may need to be replaced with -f[no]asan-stack.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000241static cl::opt<bool> ClStack("asan-stack", cl::desc("Handle stack memory"),
242 cl::Hidden, cl::init(true));
Vitaly Buka1f9e1352016-08-20 20:23:50 +0000243static cl::opt<uint32_t> ClMaxInlinePoisoningSize(
244 "asan-max-inline-poisoning-size",
245 cl::desc(
246 "Inline shadow poisoning for blocks up to the given size in bytes."),
247 cl::Hidden, cl::init(64));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000248
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000249static cl::opt<bool> ClUseAfterReturn("asan-use-after-return",
Mike Aizatsky243b71f2016-04-21 22:00:13 +0000250 cl::desc("Check stack-use-after-return"),
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000251 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000252
Vitaly Buka74443f02017-07-18 22:28:03 +0000253static cl::opt<bool> ClRedzoneByvalArgs("asan-redzone-byval-args",
254 cl::desc("Create redzones for byval "
255 "arguments (extra copy "
256 "required)"), cl::Hidden,
257 cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000258
Kostya Serebryanya83bfea2016-04-20 20:02:58 +0000259static cl::opt<bool> ClUseAfterScope("asan-use-after-scope",
260 cl::desc("Check stack-use-after-scope"),
261 cl::Hidden, cl::init(false));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000262
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000263// This flag may need to be replaced with -f[no]asan-globals.
264static cl::opt<bool> ClGlobals("asan-globals",
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000265 cl::desc("Handle global objects"), cl::Hidden,
266 cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000267
Kostya Serebryanyf4be0192012-08-21 08:24:25 +0000268static cl::opt<bool> ClInitializers("asan-initialization-order",
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000269 cl::desc("Handle C++ initializer order"),
270 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000271
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000272static cl::opt<bool> ClInvalidPointerPairs(
273 "asan-detect-invalid-pointer-pair",
274 cl::desc("Instrument <, <=, >, >=, - with pointer operands"), cl::Hidden,
275 cl::init(false));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000276
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000277static cl::opt<unsigned> ClRealignStack(
278 "asan-realign-stack",
279 cl::desc("Realign stack to the value of this flag (power of two)"),
280 cl::Hidden, cl::init(32));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000281
Kostya Serebryany0c02d262014-04-16 12:12:19 +0000282static cl::opt<int> ClInstrumentationWithCallsThreshold(
283 "asan-instrumentation-with-call-threshold",
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000284 cl::desc(
285 "If the function being instrumented contains more than "
286 "this number of memory accesses, use callbacks instead of "
287 "inline checks (-1 means never use callbacks)."),
288 cl::Hidden, cl::init(7000));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000289
Kostya Serebryany0c02d262014-04-16 12:12:19 +0000290static cl::opt<std::string> ClMemoryAccessCallbackPrefix(
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000291 "asan-memory-access-callback-prefix",
292 cl::desc("Prefix for memory access callbacks"), cl::Hidden,
293 cl::init("__asan_"));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000294
Vitaly Buka5b4f1212016-08-20 17:22:27 +0000295static cl::opt<bool>
296 ClInstrumentDynamicAllocas("asan-instrument-dynamic-allocas",
297 cl::desc("instrument dynamic allocas"),
298 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000299
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000300static cl::opt<bool> ClSkipPromotableAllocas(
301 "asan-skip-promotable-allocas",
302 cl::desc("Do not instrument promotable allocas"), cl::Hidden,
303 cl::init(true));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000304
305// These flags allow to change the shadow mapping.
306// The shadow mapping looks like
Ryan Govostes3f37df02016-05-06 10:25:22 +0000307// Shadow = (Mem >> scale) + offset
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000308
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000309static cl::opt<int> ClMappingScale("asan-mapping-scale",
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000310 cl::desc("scale of asan shadow mapping"),
311 cl::Hidden, cl::init(0));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000312
Ryan Govostes6194ae62016-05-06 11:22:11 +0000313static cl::opt<unsigned long long> ClMappingOffset(
314 "asan-mapping-offset",
315 cl::desc("offset of asan shadow mapping [EXPERIMENTAL]"), cl::Hidden,
316 cl::init(0));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000317
318// Optimization flags. Not user visible, used mostly for testing
319// and benchmarking the tool.
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000320
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000321static cl::opt<bool> ClOpt("asan-opt", cl::desc("Optimize instrumentation"),
322 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000323
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000324static cl::opt<bool> ClOptSameTemp(
325 "asan-opt-same-temp", cl::desc("Instrument the same temp just once"),
326 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000327
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000328static cl::opt<bool> ClOptGlobals("asan-opt-globals",
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000329 cl::desc("Don't instrument scalar globals"),
330 cl::Hidden, cl::init(true));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000331
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000332static cl::opt<bool> ClOptStack(
333 "asan-opt-stack", cl::desc("Don't instrument scalar stack variables"),
334 cl::Hidden, cl::init(false));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000335
Alexey Samsonov4b7f4132014-12-11 21:53:03 +0000336static cl::opt<bool> ClDynamicAllocaStack(
337 "asan-stack-dynamic-alloca",
338 cl::desc("Use dynamic alloca to represent stack variables"), cl::Hidden,
Alexey Samsonov19763c42015-02-05 19:39:20 +0000339 cl::init(true));
Alexey Samsonov4b7f4132014-12-11 21:53:03 +0000340
Dmitry Vyukov618d5802015-03-17 16:59:19 +0000341static cl::opt<uint32_t> ClForceExperiment(
342 "asan-force-experiment",
343 cl::desc("Force optimization experiment (for testing)"), cl::Hidden,
344 cl::init(0));
345
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +0000346static cl::opt<bool>
347 ClUsePrivateAliasForGlobals("asan-use-private-alias",
348 cl::desc("Use private aliases for global"
349 " variables"),
350 cl::Hidden, cl::init(false));
351
Ryan Govostese51401b2016-07-05 21:53:08 +0000352static cl::opt<bool>
Evgeniy Stepanov9e536082017-04-24 19:34:13 +0000353 ClUseGlobalsGC("asan-globals-live-support",
354 cl::desc("Use linker features to support dead "
355 "code stripping of globals"),
356 cl::Hidden, cl::init(true));
Ryan Govostese51401b2016-07-05 21:53:08 +0000357
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +0000358// This is on by default even though there is a bug in gold:
359// https://sourceware.org/bugzilla/show_bug.cgi?id=19002
360static cl::opt<bool>
361 ClWithComdat("asan-with-comdat",
362 cl::desc("Place ASan constructors in comdat sections"),
363 cl::Hidden, cl::init(true));
364
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000365// Debug flags.
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000366
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000367static cl::opt<int> ClDebug("asan-debug", cl::desc("debug"), cl::Hidden,
368 cl::init(0));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000369
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000370static cl::opt<int> ClDebugStack("asan-debug-stack", cl::desc("debug stack"),
371 cl::Hidden, cl::init(0));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000372
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000373static cl::opt<std::string> ClDebugFunc("asan-debug-func", cl::Hidden,
374 cl::desc("Debug func"));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000375
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000376static cl::opt<int> ClDebugMin("asan-debug-min", cl::desc("Debug min inst"),
377 cl::Hidden, cl::init(-1));
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000378
Etienne Bergeron7f0e3152016-09-22 14:57:24 +0000379static cl::opt<int> ClDebugMax("asan-debug-max", cl::desc("Debug max inst"),
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000380 cl::Hidden, cl::init(-1));
381
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +0000382STATISTIC(NumInstrumentedReads, "Number of instrumented reads");
383STATISTIC(NumInstrumentedWrites, "Number of instrumented writes");
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +0000384STATISTIC(NumOptimizedAccessesToGlobalVar,
385 "Number of optimized accesses to global vars");
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000386STATISTIC(NumOptimizedAccessesToStackVar,
387 "Number of optimized accesses to stack vars");
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +0000388
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000389namespace {
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000390
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +0000391/// Frontend-provided metadata for source location.
392struct LocationMetadata {
393 StringRef Filename;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000394 int LineNo = 0;
395 int ColumnNo = 0;
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +0000396
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000397 LocationMetadata() = default;
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +0000398
399 bool empty() const { return Filename.empty(); }
400
401 void parse(MDNode *MDN) {
402 assert(MDN->getNumOperands() == 3);
Duncan P. N. Exon Smitha9308c42015-04-29 16:38:44 +0000403 MDString *DIFilename = cast<MDString>(MDN->getOperand(0));
404 Filename = DIFilename->getString();
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000405 LineNo =
406 mdconst::extract<ConstantInt>(MDN->getOperand(1))->getLimitedValue();
407 ColumnNo =
408 mdconst::extract<ConstantInt>(MDN->getOperand(2))->getLimitedValue();
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +0000409 }
410};
411
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000412/// Frontend-provided metadata for global variables.
413class GlobalsMetadata {
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000414public:
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000415 struct Entry {
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +0000416 LocationMetadata SourceLoc;
417 StringRef Name;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000418 bool IsDynInit = false;
419 bool IsBlacklisted = false;
420
421 Entry() = default;
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000422 };
423
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000424 GlobalsMetadata() = default;
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000425
Keno Fischere03fae42015-12-05 14:42:34 +0000426 void reset() {
427 inited_ = false;
428 Entries.clear();
429 }
430
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000431 void init(Module &M) {
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000432 assert(!inited_);
433 inited_ = true;
434 NamedMDNode *Globals = M.getNamedMetadata("llvm.asan.globals");
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000435 if (!Globals) return;
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +0000436 for (auto MDN : Globals->operands()) {
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000437 // Metadata node contains the global and the fields of "Entry".
Alexey Samsonov15c96692014-07-12 00:42:52 +0000438 assert(MDN->getNumOperands() == 5);
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000439 auto *GV = mdconst::extract_or_null<GlobalVariable>(MDN->getOperand(0));
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000440 // The optimizer may optimize away a global entirely.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000441 if (!GV) continue;
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000442 // We can already have an entry for GV if it was merged with another
443 // global.
444 Entry &E = Entries[GV];
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000445 if (auto *Loc = cast_or_null<MDNode>(MDN->getOperand(1)))
446 E.SourceLoc.parse(Loc);
447 if (auto *Name = cast_or_null<MDString>(MDN->getOperand(2)))
448 E.Name = Name->getString();
449 ConstantInt *IsDynInit =
450 mdconst::extract<ConstantInt>(MDN->getOperand(3));
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000451 E.IsDynInit |= IsDynInit->isOne();
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000452 ConstantInt *IsBlacklisted =
453 mdconst::extract<ConstantInt>(MDN->getOperand(4));
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000454 E.IsBlacklisted |= IsBlacklisted->isOne();
Kostya Serebryanyb3bd6052012-11-20 13:00:01 +0000455 }
456 }
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000457
Alexey Samsonov08f022a2014-07-11 22:36:02 +0000458 /// Returns metadata entry for a given global.
459 Entry get(GlobalVariable *G) const {
460 auto Pos = Entries.find(G);
461 return (Pos != Entries.end()) ? Pos->second : Entry();
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000462 }
463
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000464private:
465 bool inited_ = false;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000466 DenseMap<GlobalVariable *, Entry> Entries;
Kostya Serebryanyb3bd6052012-11-20 13:00:01 +0000467};
468
Alexey Samsonov1345d352013-01-16 13:23:28 +0000469/// This struct defines the shadow mapping using the rule:
Kostya Serebryany4766fe62013-01-23 12:54:55 +0000470/// shadow = (mem >> Scale) ADD-or-OR Offset.
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000471/// If InGlobal is true, then
472/// extern char __asan_shadow[];
473/// shadow = (mem >> Scale) + &__asan_shadow
Alexey Samsonov1345d352013-01-16 13:23:28 +0000474struct ShadowMapping {
475 int Scale;
476 uint64_t Offset;
Kostya Serebryany4766fe62013-01-23 12:54:55 +0000477 bool OrShadowOffset;
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000478 bool InGlobal;
Alexey Samsonov1345d352013-01-16 13:23:28 +0000479};
480
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000481} // end anonymous namespace
482
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000483static ShadowMapping getShadowMapping(Triple &TargetTriple, int LongSize,
484 bool IsKasan) {
Evgeniy Stepanov5fe279e2015-10-08 21:21:24 +0000485 bool IsAndroid = TargetTriple.isAndroid();
Anna Zaks3b50e702016-02-02 22:05:07 +0000486 bool IsIOS = TargetTriple.isiOS() || TargetTriple.isWatchOS();
Simon Pilgrima2794102014-11-22 19:12:10 +0000487 bool IsFreeBSD = TargetTriple.isOSFreeBSD();
Kamil Rytarowskia9f404f82017-08-28 22:13:52 +0000488 bool IsNetBSD = TargetTriple.isOSNetBSD();
Filipe Cabecinhas33dd4862017-02-23 17:10:28 +0000489 bool IsPS4CPU = TargetTriple.isPS4CPU();
Simon Pilgrima2794102014-11-22 19:12:10 +0000490 bool IsLinux = TargetTriple.isOSLinux();
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000491 bool IsPPC64 = TargetTriple.getArch() == Triple::ppc64 ||
492 TargetTriple.getArch() == Triple::ppc64le;
493 bool IsSystemZ = TargetTriple.getArch() == Triple::systemz;
494 bool IsX86 = TargetTriple.getArch() == Triple::x86;
495 bool IsX86_64 = TargetTriple.getArch() == Triple::x86_64;
Alexander Richardson85e200e2018-06-25 16:49:20 +0000496 bool IsMIPS32 = TargetTriple.isMIPS32();
497 bool IsMIPS64 = TargetTriple.isMIPS64();
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000498 bool IsArmOrThumb = TargetTriple.isARM() || TargetTriple.isThumb();
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000499 bool IsAArch64 = TargetTriple.getArch() == Triple::aarch64;
Timur Iskhodzhanov00ede842015-01-12 17:38:58 +0000500 bool IsWindows = TargetTriple.isOSWindows();
Petr Hosek6f168572017-02-27 22:49:37 +0000501 bool IsFuchsia = TargetTriple.isOSFuchsia();
Walter Leecdbb2072018-05-18 04:10:38 +0000502 bool IsMyriad = TargetTriple.getVendor() == llvm::Triple::Myriad;
Alexey Samsonov1345d352013-01-16 13:23:28 +0000503
504 ShadowMapping Mapping;
505
Walter Leecdbb2072018-05-18 04:10:38 +0000506 Mapping.Scale = IsMyriad ? kMyriadShadowScale : kDefaultShadowScale;
Walter Lee8f1545c2017-11-16 17:03:00 +0000507 if (ClMappingScale.getNumOccurrences() > 0) {
508 Mapping.Scale = ClMappingScale;
509 }
510
Evgeniy Stepanov4d81f862015-07-29 18:22:25 +0000511 if (LongSize == 32) {
Evgeniy Stepanov4d81f862015-07-29 18:22:25 +0000512 if (IsAndroid)
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000513 Mapping.Offset = kDynamicShadowSentinel;
Evgeniy Stepanov4d81f862015-07-29 18:22:25 +0000514 else if (IsMIPS32)
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000515 Mapping.Offset = kMIPS32_ShadowOffset32;
516 else if (IsFreeBSD)
517 Mapping.Offset = kFreeBSD_ShadowOffset32;
Kamil Rytarowski02c432a2018-05-11 00:58:01 +0000518 else if (IsNetBSD)
519 Mapping.Offset = kNetBSD_ShadowOffset32;
Alexander Potapenkoa51e4832014-04-23 17:14:45 +0000520 else if (IsIOS)
Anna Zaks3b50e702016-02-02 22:05:07 +0000521 // If we're targeting iOS and x86, the binary is built for iOS simulator.
522 Mapping.Offset = IsX86 ? kIOSSimShadowOffset32 : kIOSShadowOffset32;
Timur Iskhodzhanov00ede842015-01-12 17:38:58 +0000523 else if (IsWindows)
524 Mapping.Offset = kWindowsShadowOffset32;
Walter Leecdbb2072018-05-18 04:10:38 +0000525 else if (IsMyriad) {
526 uint64_t ShadowOffset = (kMyriadMemoryOffset32 + kMyriadMemorySize32 -
527 (kMyriadMemorySize32 >> Mapping.Scale));
528 Mapping.Offset = ShadowOffset - (kMyriadMemoryOffset32 >> Mapping.Scale);
529 }
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000530 else
531 Mapping.Offset = kDefaultShadowOffset32;
532 } else { // LongSize == 64
Petr Hosek6f168572017-02-27 22:49:37 +0000533 // Fuchsia is always PIE, which means that the beginning of the address
534 // space is always available.
535 if (IsFuchsia)
536 Mapping.Offset = 0;
537 else if (IsPPC64)
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000538 Mapping.Offset = kPPC64_ShadowOffset64;
Marcin Koscielnicki57290f92016-04-30 09:57:34 +0000539 else if (IsSystemZ)
540 Mapping.Offset = kSystemZ_ShadowOffset64;
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000541 else if (IsFreeBSD)
542 Mapping.Offset = kFreeBSD_ShadowOffset64;
Kamil Rytarowskia9f404f82017-08-28 22:13:52 +0000543 else if (IsNetBSD)
544 Mapping.Offset = kNetBSD_ShadowOffset64;
Filipe Cabecinhas33dd4862017-02-23 17:10:28 +0000545 else if (IsPS4CPU)
546 Mapping.Offset = kPS4CPU_ShadowOffset64;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000547 else if (IsLinux && IsX86_64) {
548 if (IsKasan)
549 Mapping.Offset = kLinuxKasan_ShadowOffset64;
550 else
Walter Lee8f1545c2017-11-16 17:03:00 +0000551 Mapping.Offset = (kSmallX86_64ShadowOffsetBase &
552 (kSmallX86_64ShadowOffsetAlignMask << Mapping.Scale));
Etienne Bergeron70684f92016-06-21 15:07:29 +0000553 } else if (IsWindows && IsX86_64) {
554 Mapping.Offset = kWindowsShadowOffset64;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000555 } else if (IsMIPS64)
Kostya Serebryany231bd082014-11-11 23:02:57 +0000556 Mapping.Offset = kMIPS64_ShadowOffset64;
Anna Zaks3b50e702016-02-02 22:05:07 +0000557 else if (IsIOS)
558 // If we're targeting iOS and x86, the binary is built for iOS simulator.
Anna Zaks9a6a6ef2016-10-05 20:34:13 +0000559 // We are using dynamic shadow offset on the 64-bit devices.
560 Mapping.Offset =
561 IsX86_64 ? kIOSSimShadowOffset64 : kDynamicShadowSentinel;
Renato Golinaf213722015-02-03 11:20:45 +0000562 else if (IsAArch64)
563 Mapping.Offset = kAArch64_ShadowOffset64;
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000564 else
565 Mapping.Offset = kDefaultShadowOffset64;
Alexey Samsonov1345d352013-01-16 13:23:28 +0000566 }
567
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000568 if (ClForceDynamicShadow) {
569 Mapping.Offset = kDynamicShadowSentinel;
570 }
571
Ryan Govostes3f37df02016-05-06 10:25:22 +0000572 if (ClMappingOffset.getNumOccurrences() > 0) {
573 Mapping.Offset = ClMappingOffset;
574 }
575
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000576 // OR-ing shadow offset if more efficient (at least on x86) if the offset
577 // is a power of two, but on ppc64 we have to use add since the shadow
Marcin Koscielnicki57290f92016-04-30 09:57:34 +0000578 // offset is not necessary 1/8-th of the address space. On SystemZ,
579 // we could OR the constant in a single instruction, but it's more
580 // efficient to load it once and use indexed addressing.
Filipe Cabecinhas33dd4862017-02-23 17:10:28 +0000581 Mapping.OrShadowOffset = !IsAArch64 && !IsPPC64 && !IsSystemZ && !IsPS4CPU &&
582 !(Mapping.Offset & (Mapping.Offset - 1)) &&
583 Mapping.Offset != kDynamicShadowSentinel;
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000584 bool IsAndroidWithIfuncSupport =
585 IsAndroid && !TargetTriple.isAndroidVersionLT(21);
586 Mapping.InGlobal = ClWithIfunc && IsAndroidWithIfuncSupport && IsArmOrThumb;
Kostya Serebryanycc92c792014-02-24 13:40:24 +0000587
Alexey Samsonov1345d352013-01-16 13:23:28 +0000588 return Mapping;
Kostya Serebryany20a79972012-11-22 03:18:50 +0000589}
590
Alexey Samsonov1345d352013-01-16 13:23:28 +0000591static size_t RedzoneSizeForScale(int MappingScale) {
Kostya Serebryany20a79972012-11-22 03:18:50 +0000592 // Redzone used for stack and globals is at least 32 bytes.
593 // For scales 6 and 7, the redzone has to be 64 and 128 bytes respectively.
Alexey Samsonov1345d352013-01-16 13:23:28 +0000594 return std::max(32U, 1U << MappingScale);
Kostya Serebryany20a79972012-11-22 03:18:50 +0000595}
Kostya Serebryanyb3bd6052012-11-20 13:00:01 +0000596
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000597namespace {
598
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000599/// AddressSanitizer: instrument the code in module to find memory bugs.
Kostya Serebryanyb0e25062012-10-15 14:20:06 +0000600struct AddressSanitizer : public FunctionPass {
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000601 // Pass identification, replacement for typeid
602 static char ID;
603
Vitaly Buka1e75fa42016-05-27 22:55:10 +0000604 explicit AddressSanitizer(bool CompileKernel = false, bool Recover = false,
605 bool UseAfterScope = false)
Andrey Konovalov1ba9d9c2018-04-13 18:05:21 +0000606 : FunctionPass(ID), UseAfterScope(UseAfterScope || ClUseAfterScope) {
607 this->Recover = ClRecover.getNumOccurrences() > 0 ? ClRecover : Recover;
608 this->CompileKernel = ClEnableKasan.getNumOccurrences() > 0 ?
609 ClEnableKasan : CompileKernel;
Yury Gribov3ae427d2014-12-01 08:47:58 +0000610 initializeAddressSanitizerPass(*PassRegistry::getPassRegistry());
611 }
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000612
Mehdi Amini117296c2016-10-01 02:56:57 +0000613 StringRef getPassName() const override {
Kostya Serebryanydfe9e792012-11-28 10:31:36 +0000614 return "AddressSanitizerFunctionPass";
615 }
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000616
Yury Gribov3ae427d2014-12-01 08:47:58 +0000617 void getAnalysisUsage(AnalysisUsage &AU) const override {
618 AU.addRequired<DominatorTreeWrapperPass>();
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000619 AU.addRequired<TargetLibraryInfoWrapperPass>();
Yury Gribov3ae427d2014-12-01 08:47:58 +0000620 }
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000621
Vitaly Buka21a9e572016-07-28 22:50:50 +0000622 uint64_t getAllocaSizeInBytes(const AllocaInst &AI) const {
Kuba Brecka7d03ce42016-06-27 15:57:08 +0000623 uint64_t ArraySize = 1;
Vitaly Buka21a9e572016-07-28 22:50:50 +0000624 if (AI.isArrayAllocation()) {
625 const ConstantInt *CI = dyn_cast<ConstantInt>(AI.getArraySize());
Kuba Brecka7d03ce42016-06-27 15:57:08 +0000626 assert(CI && "non-constant array size");
627 ArraySize = CI->getZExtValue();
628 }
Vitaly Buka21a9e572016-07-28 22:50:50 +0000629 Type *Ty = AI.getAllocatedType();
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000630 uint64_t SizeInBytes =
Vitaly Buka21a9e572016-07-28 22:50:50 +0000631 AI.getModule()->getDataLayout().getTypeAllocSize(Ty);
Kuba Brecka7d03ce42016-06-27 15:57:08 +0000632 return SizeInBytes * ArraySize;
Anna Zaks8ed1d812015-02-27 03:12:36 +0000633 }
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000634
Anna Zaks8ed1d812015-02-27 03:12:36 +0000635 /// Check if we want (and can) handle this alloca.
Vitaly Buka21a9e572016-07-28 22:50:50 +0000636 bool isInterestingAlloca(const AllocaInst &AI);
Yury Gribov98b18592015-05-28 07:51:49 +0000637
Anna Zaks8ed1d812015-02-27 03:12:36 +0000638 /// If it is an interesting memory access, return the PointerOperand
639 /// and set IsWrite/Alignment. Otherwise return nullptr.
Filipe Cabecinhasec350b72016-11-15 22:37:30 +0000640 /// MaybeMask is an output parameter for the mask Value, if we're looking at a
641 /// masked load/store.
Anna Zaks8ed1d812015-02-27 03:12:36 +0000642 Value *isInterestingMemoryAccess(Instruction *I, bool *IsWrite,
Filipe Cabecinhasec350b72016-11-15 22:37:30 +0000643 uint64_t *TypeSize, unsigned *Alignment,
644 Value **MaybeMask = nullptr);
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000645
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000646 void instrumentMop(ObjectSizeOffsetVisitor &ObjSizeVis, Instruction *I,
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000647 bool UseCalls, const DataLayout &DL);
Kostya Serebryany796f6552014-02-27 12:45:36 +0000648 void instrumentPointerComparisonOrSubtraction(Instruction *I);
Kostya Serebryany3ece9bea2013-02-19 11:29:21 +0000649 void instrumentAddress(Instruction *OrigIns, Instruction *InsertBefore,
650 Value *Addr, uint32_t TypeSize, bool IsWrite,
Dmitry Vyukov618d5802015-03-17 16:59:19 +0000651 Value *SizeArgument, bool UseCalls, uint32_t Exp);
Filipe Cabecinhas4647b742017-01-06 15:24:51 +0000652 void instrumentUnusualSizeOrAlignment(Instruction *I,
653 Instruction *InsertBefore, Value *Addr,
Dmitry Vyukov618d5802015-03-17 16:59:19 +0000654 uint32_t TypeSize, bool IsWrite,
655 Value *SizeArgument, bool UseCalls,
656 uint32_t Exp);
Kostya Serebryany874dae62012-07-16 16:15:40 +0000657 Value *createSlowPathCmp(IRBuilder<> &IRB, Value *AddrLong,
658 Value *ShadowValue, uint32_t TypeSize);
Kostya Serebryanyfda7a132012-08-14 14:04:51 +0000659 Instruction *generateCrashCode(Instruction *InsertBefore, Value *Addr,
Kostya Serebryany3ece9bea2013-02-19 11:29:21 +0000660 bool IsWrite, size_t AccessSizeIndex,
Dmitry Vyukov618d5802015-03-17 16:59:19 +0000661 Value *SizeArgument, uint32_t Exp);
Kostya Serebryany94c81ca2014-04-21 11:50:42 +0000662 void instrumentMemIntrinsic(MemIntrinsic *MI);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000663 Value *memToShadow(Value *Shadow, IRBuilder<> &IRB);
Craig Topper3e4c6972014-03-05 09:10:37 +0000664 bool runOnFunction(Function &F) override;
Kostya Serebryany22ddcfd2012-01-30 23:50:10 +0000665 bool maybeInsertAsanInitAtFunctionEntry(Function &F);
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000666 void maybeInsertDynamicShadowAtFunctionEntry(Function &F);
Reid Kleckner2f907552015-07-21 17:40:14 +0000667 void markEscapedLocalAllocas(Function &F);
Craig Topper3e4c6972014-03-05 09:10:37 +0000668 bool doInitialization(Module &M) override;
Keno Fischere03fae42015-12-05 14:42:34 +0000669 bool doFinalization(Module &M) override;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000670
Yury Gribov3ae427d2014-12-01 08:47:58 +0000671 DominatorTree &getDominatorTree() const { return *DT; }
672
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000673private:
674 friend struct FunctionStackPoisoner;
675
Kostya Serebryany4b929da2012-11-29 09:54:21 +0000676 void initializeCallbacks(Module &M);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000677
Kostya Serebryany1cdc6e92011-11-18 01:41:06 +0000678 bool LooksLikeCodeInBug11395(Instruction *I);
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +0000679 bool GlobalIsLinkerInitialized(GlobalVariable *G);
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000680 bool isSafeAccess(ObjectSizeOffsetVisitor &ObjSizeVis, Value *Addr,
681 uint64_t TypeSize) const;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000682
Reid Kleckner2f907552015-07-21 17:40:14 +0000683 /// Helper to cleanup per-function state.
684 struct FunctionStateRAII {
685 AddressSanitizer *Pass;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000686
Reid Kleckner2f907552015-07-21 17:40:14 +0000687 FunctionStateRAII(AddressSanitizer *Pass) : Pass(Pass) {
688 assert(Pass->ProcessedAllocas.empty() &&
689 "last pass forgot to clear cache");
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000690 assert(!Pass->LocalDynamicShadow);
Reid Kleckner2f907552015-07-21 17:40:14 +0000691 }
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000692
Etienne Bergeron0ca05682016-09-30 17:46:32 +0000693 ~FunctionStateRAII() {
694 Pass->LocalDynamicShadow = nullptr;
695 Pass->ProcessedAllocas.clear();
696 }
Reid Kleckner2f907552015-07-21 17:40:14 +0000697 };
698
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000699 LLVMContext *C;
Kuba Brecka1001bb52014-12-05 22:19:18 +0000700 Triple TargetTriple;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000701 int LongSize;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000702 bool CompileKernel;
Yury Gribovd7731982015-11-11 10:36:49 +0000703 bool Recover;
Vitaly Buka1e75fa42016-05-27 22:55:10 +0000704 bool UseAfterScope;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000705 Type *IntptrTy;
Alexey Samsonov1345d352013-01-16 13:23:28 +0000706 ShadowMapping Mapping;
Yury Gribov3ae427d2014-12-01 08:47:58 +0000707 DominatorTree *DT;
Kostya Serebryanyb0e25062012-10-15 14:20:06 +0000708 Function *AsanHandleNoReturnFunc;
Kostya Serebryany796f6552014-02-27 12:45:36 +0000709 Function *AsanPtrCmpFunction, *AsanPtrSubFunction;
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000710 Constant *AsanShadowGlobal;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000711
712 // These arrays is indexed by AccessIsWrite, Experiment and log2(AccessSize).
Dmitry Vyukov618d5802015-03-17 16:59:19 +0000713 Function *AsanErrorCallback[2][2][kNumberOfAccessSizes];
714 Function *AsanMemoryAccessCallback[2][2][kNumberOfAccessSizes];
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000715
716 // These arrays is indexed by AccessIsWrite and Experiment.
Dmitry Vyukov618d5802015-03-17 16:59:19 +0000717 Function *AsanErrorCallbackSized[2][2];
718 Function *AsanMemoryAccessCallbackSized[2][2];
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000719
Kostya Serebryany94c81ca2014-04-21 11:50:42 +0000720 Function *AsanMemmove, *AsanMemcpy, *AsanMemset;
Kostya Serebryanyf02c6062012-07-20 09:54:50 +0000721 InlineAsm *EmptyAsm;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000722 Value *LocalDynamicShadow = nullptr;
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000723 GlobalsMetadata GlobalsMD;
Vitaly Buka21a9e572016-07-28 22:50:50 +0000724 DenseMap<const AllocaInst *, bool> ProcessedAllocas;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +0000725};
Kostya Serebryany874dae62012-07-16 16:15:40 +0000726
Kostya Serebryanydfe9e792012-11-28 10:31:36 +0000727class AddressSanitizerModule : public ModulePass {
Evgeniy Stepanov9e536082017-04-24 19:34:13 +0000728public:
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000729 // Pass identification, replacement for typeid
730 static char ID;
731
Yury Gribovd7731982015-11-11 10:36:49 +0000732 explicit AddressSanitizerModule(bool CompileKernel = false,
Evgeniy Stepanov9e536082017-04-24 19:34:13 +0000733 bool Recover = false,
734 bool UseGlobalsGC = true)
Andrey Konovalov1ba9d9c2018-04-13 18:05:21 +0000735 : ModulePass(ID),
Evgeniy Stepanovb56012b2017-05-15 20:43:42 +0000736 UseGlobalsGC(UseGlobalsGC && ClUseGlobalsGC),
737 // Not a typo: ClWithComdat is almost completely pointless without
738 // ClUseGlobalsGC (because then it only works on modules without
739 // globals, which are rare); it is a prerequisite for ClUseGlobalsGC;
740 // and both suffer from gold PR19002 for which UseGlobalsGC constructor
741 // argument is designed as workaround. Therefore, disable both
742 // ClWithComdat and ClUseGlobalsGC unless the frontend says it's ok to
743 // do globals-gc.
Andrey Konovalov1ba9d9c2018-04-13 18:05:21 +0000744 UseCtorComdat(UseGlobalsGC && ClWithComdat) {
745 this->Recover = ClRecover.getNumOccurrences() > 0 ?
746 ClRecover : Recover;
747 this->CompileKernel = ClEnableKasan.getNumOccurrences() > 0 ?
748 ClEnableKasan : CompileKernel;
749 }
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000750
Craig Topper3e4c6972014-03-05 09:10:37 +0000751 bool runOnModule(Module &M) override;
Mehdi Amini117296c2016-10-01 02:56:57 +0000752 StringRef getPassName() const override { return "AddressSanitizerModule"; }
Alexey Samsonov261177a2012-12-04 01:34:23 +0000753
Mehdi Amini117296c2016-10-01 02:56:57 +0000754private:
Alexey Samsonov788381b2012-12-25 12:28:20 +0000755 void initializeCallbacks(Module &M);
756
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +0000757 bool InstrumentGlobals(IRBuilder<> &IRB, Module &M, bool *CtorComdat);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +0000758 void InstrumentGlobalsCOFF(IRBuilder<> &IRB, Module &M,
759 ArrayRef<GlobalVariable *> ExtendedGlobals,
760 ArrayRef<Constant *> MetadataInitializers);
Evgeniy Stepanov964f4662017-04-27 20:27:27 +0000761 void InstrumentGlobalsELF(IRBuilder<> &IRB, Module &M,
762 ArrayRef<GlobalVariable *> ExtendedGlobals,
763 ArrayRef<Constant *> MetadataInitializers,
764 const std::string &UniqueModuleId);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +0000765 void InstrumentGlobalsMachO(IRBuilder<> &IRB, Module &M,
766 ArrayRef<GlobalVariable *> ExtendedGlobals,
767 ArrayRef<Constant *> MetadataInitializers);
768 void
769 InstrumentGlobalsWithMetadataArray(IRBuilder<> &IRB, Module &M,
770 ArrayRef<GlobalVariable *> ExtendedGlobals,
771 ArrayRef<Constant *> MetadataInitializers);
772
773 GlobalVariable *CreateMetadataGlobal(Module &M, Constant *Initializer,
774 StringRef OriginalName);
Evgeniy Stepanov964f4662017-04-27 20:27:27 +0000775 void SetComdatForGlobalMetadata(GlobalVariable *G, GlobalVariable *Metadata,
776 StringRef InternalSuffix);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +0000777 IRBuilder<> CreateAsanModuleDtor(Module &M);
778
Kostya Serebryany20a79972012-11-22 03:18:50 +0000779 bool ShouldInstrumentGlobal(GlobalVariable *G);
Ryan Govostes653f9d02016-03-28 20:28:57 +0000780 bool ShouldUseMachOGlobalsSection() const;
Reid Kleckner01660a32016-11-21 20:40:37 +0000781 StringRef getGlobalMetadataSection() const;
Alexey Samsonov96e239f2014-05-29 00:51:15 +0000782 void poisonOneInitializer(Function &GlobalInit, GlobalValue *ModuleName);
Alexey Samsonove1e26bf2013-03-26 13:05:41 +0000783 void createInitializerPoisonCalls(Module &M, GlobalValue *ModuleName);
Kostya Serebryany4fb78012013-12-06 09:00:17 +0000784 size_t MinRedzoneSizeForGlobal() const {
Alexey Samsonov1345d352013-01-16 13:23:28 +0000785 return RedzoneSizeForScale(Mapping.Scale);
786 }
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +0000787 int GetAsanVersion(const Module &M) const;
Kostya Serebryany20a79972012-11-22 03:18:50 +0000788
Alexey Samsonov4f319cc2014-07-02 16:54:41 +0000789 GlobalsMetadata GlobalsMD;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +0000790 bool CompileKernel;
Yury Gribovd7731982015-11-11 10:36:49 +0000791 bool Recover;
Evgeniy Stepanov9e536082017-04-24 19:34:13 +0000792 bool UseGlobalsGC;
Evgeniy Stepanovb56012b2017-05-15 20:43:42 +0000793 bool UseCtorComdat;
Kostya Serebryany20a79972012-11-22 03:18:50 +0000794 Type *IntptrTy;
795 LLVMContext *C;
Kuba Brecka1001bb52014-12-05 22:19:18 +0000796 Triple TargetTriple;
Alexey Samsonov1345d352013-01-16 13:23:28 +0000797 ShadowMapping Mapping;
Alexey Samsonov788381b2012-12-25 12:28:20 +0000798 Function *AsanPoisonGlobals;
799 Function *AsanUnpoisonGlobals;
800 Function *AsanRegisterGlobals;
801 Function *AsanUnregisterGlobals;
Ryan Govostes653f9d02016-03-28 20:28:57 +0000802 Function *AsanRegisterImageGlobals;
803 Function *AsanUnregisterImageGlobals;
Evgeniy Stepanov964f4662017-04-27 20:27:27 +0000804 Function *AsanRegisterElfGlobals;
805 Function *AsanUnregisterElfGlobals;
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +0000806
807 Function *AsanCtorFunction = nullptr;
808 Function *AsanDtorFunction = nullptr;
Kostya Serebryany20a79972012-11-22 03:18:50 +0000809};
810
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000811// Stack poisoning does not play well with exception handling.
812// When an exception is thrown, we essentially bypass the code
813// that unpoisones the stack. This is why the run-time library has
814// to intercept __cxa_throw (as well as longjmp, etc) and unpoison the entire
815// stack in the interceptor. This however does not work inside the
816// actual function which catches the exception. Most likely because the
817// compiler hoists the load of the shadow value somewhere too high.
818// This causes asan to report a non-existing bug on 453.povray.
819// It sounds like an LLVM bug.
820struct FunctionStackPoisoner : public InstVisitor<FunctionStackPoisoner> {
821 Function &F;
822 AddressSanitizer &ASan;
823 DIBuilder DIB;
824 LLVMContext *C;
825 Type *IntptrTy;
826 Type *IntptrPtrTy;
Alexey Samsonov1345d352013-01-16 13:23:28 +0000827 ShadowMapping Mapping;
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000828
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000829 SmallVector<AllocaInst *, 16> AllocaVec;
Kuba Breckaa49dcbb2016-11-08 21:30:41 +0000830 SmallVector<AllocaInst *, 16> StaticAllocasToMoveUp;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000831 SmallVector<Instruction *, 8> RetVec;
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000832 unsigned StackAlignment;
833
Kostya Serebryany6805de52013-09-10 13:16:56 +0000834 Function *AsanStackMallocFunc[kMaxAsanStackMallocSizeClass + 1],
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000835 *AsanStackFreeFunc[kMaxAsanStackMallocSizeClass + 1];
Vitaly Buka3455b9b2016-08-20 18:34:39 +0000836 Function *AsanSetShadowFunc[0x100] = {};
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000837 Function *AsanPoisonStackMemoryFunc, *AsanUnpoisonStackMemoryFunc;
Yury Gribov98b18592015-05-28 07:51:49 +0000838 Function *AsanAllocaPoisonFunc, *AsanAllocasUnpoisonFunc;
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000839
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000840 // Stores a place and arguments of poisoning/unpoisoning call for alloca.
841 struct AllocaPoisonCall {
842 IntrinsicInst *InsBefore;
Alexey Samsonova788b942013-11-18 14:53:55 +0000843 AllocaInst *AI;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000844 uint64_t Size;
845 bool DoPoison;
846 };
Vitaly Buka5b4f1212016-08-20 17:22:27 +0000847 SmallVector<AllocaPoisonCall, 8> DynamicAllocaPoisonCallVec;
848 SmallVector<AllocaPoisonCall, 8> StaticAllocaPoisonCallVec;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000849
Yury Gribov98b18592015-05-28 07:51:49 +0000850 SmallVector<AllocaInst *, 1> DynamicAllocaVec;
851 SmallVector<IntrinsicInst *, 1> StackRestoreVec;
852 AllocaInst *DynamicAllocaLayout = nullptr;
Reid Kleckner2f907552015-07-21 17:40:14 +0000853 IntrinsicInst *LocalEscapeCall = nullptr;
Yury Gribov55441bb2014-11-21 10:29:50 +0000854
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000855 // Maps Value to an AllocaInst from which the Value is originated.
Eugene Zelenkobff0ef02017-10-19 22:07:16 +0000856 using AllocaForValueMapTy = DenseMap<Value *, AllocaInst *>;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000857 AllocaForValueMapTy AllocaForValue;
858
Alexey Samsonov869a5ff2015-07-29 19:36:08 +0000859 bool HasNonEmptyInlineAsm = false;
860 bool HasReturnsTwiceCall = false;
Alexey Samsonov4b7f4132014-12-11 21:53:03 +0000861 std::unique_ptr<CallInst> EmptyInlineAsm;
862
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000863 FunctionStackPoisoner(Function &F, AddressSanitizer &ASan)
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000864 : F(F),
865 ASan(ASan),
866 DIB(*F.getParent(), /*AllowUnresolved*/ false),
867 C(ASan.C),
868 IntptrTy(ASan.IntptrTy),
869 IntptrPtrTy(PointerType::get(IntptrTy, 0)),
870 Mapping(ASan.Mapping),
871 StackAlignment(1 << Mapping.Scale),
Alexey Samsonov4b7f4132014-12-11 21:53:03 +0000872 EmptyInlineAsm(CallInst::Create(ASan.EmptyAsm)) {}
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000873
874 bool runOnFunction() {
875 if (!ClStack) return false;
Vitaly Buka74443f02017-07-18 22:28:03 +0000876
Matt Morehouse49e5aca2017-08-09 17:59:43 +0000877 if (ClRedzoneByvalArgs)
Vitaly Buka629047de2017-08-07 07:12:34 +0000878 copyArgsPassedByValToAllocas();
Vitaly Buka74443f02017-07-18 22:28:03 +0000879
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000880 // Collect alloca, ret, lifetime instructions etc.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000881 for (BasicBlock *BB : depth_first(&F.getEntryBlock())) visit(*BB);
David Blaikieceec2bd2014-04-11 01:50:01 +0000882
Yury Gribov55441bb2014-11-21 10:29:50 +0000883 if (AllocaVec.empty() && DynamicAllocaVec.empty()) return false;
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000884
885 initializeCallbacks(*F.getParent());
886
Vitaly Buka5b4f1212016-08-20 17:22:27 +0000887 processDynamicAllocas();
888 processStaticAllocas();
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000889
890 if (ClDebugStack) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000891 LLVM_DEBUG(dbgs() << F);
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000892 }
893 return true;
894 }
895
Vitaly Buka74443f02017-07-18 22:28:03 +0000896 // Arguments marked with the "byval" attribute are implicitly copied without
897 // using an alloca instruction. To produce redzones for those arguments, we
898 // copy them a second time into memory allocated with an alloca instruction.
899 void copyArgsPassedByValToAllocas();
900
Yury Gribov55441bb2014-11-21 10:29:50 +0000901 // Finds all Alloca instructions and puts
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000902 // poisoned red zones around all of them.
903 // Then unpoison everything back before the function returns.
Vitaly Buka5b4f1212016-08-20 17:22:27 +0000904 void processStaticAllocas();
905 void processDynamicAllocas();
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000906
Yury Gribov98b18592015-05-28 07:51:49 +0000907 void createDynamicAllocasInitStorage();
908
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000909 // ----------------------- Visitors.
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000910 /// Collect all Ret instructions.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000911 void visitReturnInst(ReturnInst &RI) { RetVec.push_back(&RI); }
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000912
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000913 /// Collect all Resume instructions.
Vitaly Bukae3a032a2016-07-22 22:04:38 +0000914 void visitResumeInst(ResumeInst &RI) { RetVec.push_back(&RI); }
915
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000916 /// Collect all CatchReturnInst instructions.
Vitaly Bukae3a032a2016-07-22 22:04:38 +0000917 void visitCleanupReturnInst(CleanupReturnInst &CRI) { RetVec.push_back(&CRI); }
918
Yury Gribov98b18592015-05-28 07:51:49 +0000919 void unpoisonDynamicAllocasBeforeInst(Instruction *InstBefore,
920 Value *SavedStack) {
921 IRBuilder<> IRB(InstBefore);
Yury Gribov6ff0a662015-12-04 09:19:14 +0000922 Value *DynamicAreaPtr = IRB.CreatePtrToInt(SavedStack, IntptrTy);
923 // When we insert _asan_allocas_unpoison before @llvm.stackrestore, we
924 // need to adjust extracted SP to compute the address of the most recent
925 // alloca. We have a special @llvm.get.dynamic.area.offset intrinsic for
926 // this purpose.
927 if (!isa<ReturnInst>(InstBefore)) {
928 Function *DynamicAreaOffsetFunc = Intrinsic::getDeclaration(
929 InstBefore->getModule(), Intrinsic::get_dynamic_area_offset,
930 {IntptrTy});
931
932 Value *DynamicAreaOffset = IRB.CreateCall(DynamicAreaOffsetFunc, {});
933
934 DynamicAreaPtr = IRB.CreateAdd(IRB.CreatePtrToInt(SavedStack, IntptrTy),
935 DynamicAreaOffset);
936 }
937
Yury Gribov781bce22015-05-28 08:03:28 +0000938 IRB.CreateCall(AsanAllocasUnpoisonFunc,
Yury Gribov6ff0a662015-12-04 09:19:14 +0000939 {IRB.CreateLoad(DynamicAllocaLayout), DynamicAreaPtr});
Yury Gribov98b18592015-05-28 07:51:49 +0000940 }
941
Yury Gribov55441bb2014-11-21 10:29:50 +0000942 // Unpoison dynamic allocas redzones.
Yury Gribov98b18592015-05-28 07:51:49 +0000943 void unpoisonDynamicAllocas() {
944 for (auto &Ret : RetVec)
945 unpoisonDynamicAllocasBeforeInst(Ret, DynamicAllocaLayout);
Yury Gribov55441bb2014-11-21 10:29:50 +0000946
Yury Gribov98b18592015-05-28 07:51:49 +0000947 for (auto &StackRestoreInst : StackRestoreVec)
948 unpoisonDynamicAllocasBeforeInst(StackRestoreInst,
949 StackRestoreInst->getOperand(0));
Yury Gribov55441bb2014-11-21 10:29:50 +0000950 }
951
Yury Gribov55441bb2014-11-21 10:29:50 +0000952 // Deploy and poison redzones around dynamic alloca call. To do this, we
953 // should replace this call with another one with changed parameters and
954 // replace all its uses with new address, so
955 // addr = alloca type, old_size, align
956 // is replaced by
957 // new_size = (old_size + additional_size) * sizeof(type)
958 // tmp = alloca i8, new_size, max(align, 32)
959 // addr = tmp + 32 (first 32 bytes are for the left redzone).
960 // Additional_size is added to make new memory allocation contain not only
961 // requested memory, but also left, partial and right redzones.
Yury Gribov98b18592015-05-28 07:51:49 +0000962 void handleDynamicAllocaCall(AllocaInst *AI);
Yury Gribov55441bb2014-11-21 10:29:50 +0000963
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000964 /// Collect Alloca instructions we want (and can) handle.
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000965 void visitAllocaInst(AllocaInst &AI) {
Kuba Brecka37a5ffa2015-07-17 06:29:57 +0000966 if (!ASan.isInterestingAlloca(AI)) {
Kuba Breckaa49dcbb2016-11-08 21:30:41 +0000967 if (AI.isStaticAlloca()) {
968 // Skip over allocas that are present *before* the first instrumented
969 // alloca, we don't want to move those around.
970 if (AllocaVec.empty())
971 return;
972
973 StaticAllocasToMoveUp.push_back(&AI);
974 }
Kuba Brecka37a5ffa2015-07-17 06:29:57 +0000975 return;
976 }
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000977
978 StackAlignment = std::max(StackAlignment, AI.getAlignment());
Kuba Brecka7d03ce42016-06-27 15:57:08 +0000979 if (!AI.isStaticAlloca())
Yury Gribov98b18592015-05-28 07:51:49 +0000980 DynamicAllocaVec.push_back(&AI);
Yury Gribov55441bb2014-11-21 10:29:50 +0000981 else
982 AllocaVec.push_back(&AI);
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +0000983 }
984
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000985 /// Collect lifetime intrinsic calls to check for use-after-scope
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000986 /// errors.
987 void visitIntrinsicInst(IntrinsicInst &II) {
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000988 Intrinsic::ID ID = II.getIntrinsicID();
Yury Gribov98b18592015-05-28 07:51:49 +0000989 if (ID == Intrinsic::stackrestore) StackRestoreVec.push_back(&II);
Reid Kleckner2f907552015-07-21 17:40:14 +0000990 if (ID == Intrinsic::localescape) LocalEscapeCall = &II;
Vitaly Buka1e75fa42016-05-27 22:55:10 +0000991 if (!ASan.UseAfterScope)
992 return;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +0000993 if (ID != Intrinsic::lifetime_start && ID != Intrinsic::lifetime_end)
Alexey Samsonov29dd7f22012-12-27 08:50:58 +0000994 return;
995 // Found lifetime intrinsic, add ASan instrumentation if necessary.
996 ConstantInt *Size = dyn_cast<ConstantInt>(II.getArgOperand(0));
997 // If size argument is undefined, don't do anything.
998 if (Size->isMinusOne()) return;
999 // Check that size doesn't saturate uint64_t and can
1000 // be stored in IntptrTy.
1001 const uint64_t SizeValue = Size->getValue().getLimitedValue();
1002 if (SizeValue == ~0ULL ||
1003 !ConstantInt::isValueValidForType(IntptrTy, SizeValue))
1004 return;
1005 // Find alloca instruction that corresponds to llvm.lifetime argument.
1006 AllocaInst *AI = findAllocaForValue(II.getArgOperand(1));
Vitaly Bukab451f1b2016-06-09 23:31:59 +00001007 if (!AI || !ASan.isInterestingAlloca(*AI))
1008 return;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00001009 bool DoPoison = (ID == Intrinsic::lifetime_end);
Alexey Samsonova788b942013-11-18 14:53:55 +00001010 AllocaPoisonCall APC = {&II, AI, SizeValue, DoPoison};
Vitaly Buka5b4f1212016-08-20 17:22:27 +00001011 if (AI->isStaticAlloca())
1012 StaticAllocaPoisonCallVec.push_back(APC);
1013 else if (ClInstrumentDynamicAllocas)
1014 DynamicAllocaPoisonCallVec.push_back(APC);
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00001015 }
1016
Alexey Samsonov869a5ff2015-07-29 19:36:08 +00001017 void visitCallSite(CallSite CS) {
1018 Instruction *I = CS.getInstruction();
1019 if (CallInst *CI = dyn_cast<CallInst>(I)) {
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +00001020 HasNonEmptyInlineAsm |= CI->isInlineAsm() &&
1021 !CI->isIdenticalTo(EmptyInlineAsm.get()) &&
1022 I != ASan.LocalDynamicShadow;
Alexey Samsonov869a5ff2015-07-29 19:36:08 +00001023 HasReturnsTwiceCall |= CI->canReturnTwice();
1024 }
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00001025 }
1026
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00001027 // ---------------------- Helpers.
1028 void initializeCallbacks(Module &M);
1029
Yury Gribov3ae427d2014-12-01 08:47:58 +00001030 bool doesDominateAllExits(const Instruction *I) const {
1031 for (auto Ret : RetVec) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001032 if (!ASan.getDominatorTree().dominates(I, Ret)) return false;
Yury Gribov3ae427d2014-12-01 08:47:58 +00001033 }
1034 return true;
1035 }
1036
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00001037 /// Finds alloca where the value comes from.
1038 AllocaInst *findAllocaForValue(Value *V);
Vitaly Buka793913c2016-08-29 18:17:21 +00001039
1040 // Copies bytes from ShadowBytes into shadow memory for indexes where
1041 // ShadowMask is not zero. If ShadowMask[i] is zero, we assume that
1042 // ShadowBytes[i] is constantly zero and doesn't need to be overwritten.
1043 void copyToShadow(ArrayRef<uint8_t> ShadowMask, ArrayRef<uint8_t> ShadowBytes,
1044 IRBuilder<> &IRB, Value *ShadowBase);
1045 void copyToShadow(ArrayRef<uint8_t> ShadowMask, ArrayRef<uint8_t> ShadowBytes,
1046 size_t Begin, size_t End, IRBuilder<> &IRB,
1047 Value *ShadowBase);
1048 void copyToShadowInline(ArrayRef<uint8_t> ShadowMask,
1049 ArrayRef<uint8_t> ShadowBytes, size_t Begin,
1050 size_t End, IRBuilder<> &IRB, Value *ShadowBase);
1051
Jakub Staszak23ec6a92013-08-09 20:53:48 +00001052 void poisonAlloca(Value *V, uint64_t Size, IRBuilder<> &IRB, bool DoPoison);
Kostya Serebryanybc86efb2013-09-17 12:14:50 +00001053
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00001054 Value *createAllocaForLayout(IRBuilder<> &IRB, const ASanStackFrameLayout &L,
1055 bool Dynamic);
1056 PHINode *createPHI(IRBuilder<> &IRB, Value *Cond, Value *ValueIfTrue,
1057 Instruction *ThenTerm, Value *ValueIfFalse);
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00001058};
1059
Eugene Zelenkobff0ef02017-10-19 22:07:16 +00001060} // end anonymous namespace
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001061
1062char AddressSanitizer::ID = 0;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +00001063
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001064INITIALIZE_PASS_BEGIN(
1065 AddressSanitizer, "asan",
1066 "AddressSanitizer: detects use-after-free and out-of-bounds bugs.", false,
1067 false)
Yury Gribov3ae427d2014-12-01 08:47:58 +00001068INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
Keno Fischera010cfa2015-10-20 10:13:55 +00001069INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfoWrapperPass)
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001070INITIALIZE_PASS_END(
1071 AddressSanitizer, "asan",
1072 "AddressSanitizer: detects use-after-free and out-of-bounds bugs.", false,
1073 false)
Eugene Zelenkobff0ef02017-10-19 22:07:16 +00001074
Yury Gribovd7731982015-11-11 10:36:49 +00001075FunctionPass *llvm::createAddressSanitizerFunctionPass(bool CompileKernel,
Vitaly Buka1e75fa42016-05-27 22:55:10 +00001076 bool Recover,
1077 bool UseAfterScope) {
Yury Gribovd7731982015-11-11 10:36:49 +00001078 assert(!CompileKernel || Recover);
Vitaly Buka1e75fa42016-05-27 22:55:10 +00001079 return new AddressSanitizer(CompileKernel, Recover, UseAfterScope);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001080}
1081
Kostya Serebryanydfe9e792012-11-28 10:31:36 +00001082char AddressSanitizerModule::ID = 0;
Eugene Zelenkobff0ef02017-10-19 22:07:16 +00001083
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001084INITIALIZE_PASS(
1085 AddressSanitizerModule, "asan-module",
Kostya Serebryanydfe9e792012-11-28 10:31:36 +00001086 "AddressSanitizer: detects use-after-free and out-of-bounds bugs."
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001087 "ModulePass",
1088 false, false)
Eugene Zelenkobff0ef02017-10-19 22:07:16 +00001089
Yury Gribovd7731982015-11-11 10:36:49 +00001090ModulePass *llvm::createAddressSanitizerModulePass(bool CompileKernel,
Evgeniy Stepanov9e536082017-04-24 19:34:13 +00001091 bool Recover,
1092 bool UseGlobalsGC) {
Yury Gribovd7731982015-11-11 10:36:49 +00001093 assert(!CompileKernel || Recover);
Evgeniy Stepanov9e536082017-04-24 19:34:13 +00001094 return new AddressSanitizerModule(CompileKernel, Recover, UseGlobalsGC);
Alexander Potapenkoc94cf8f2012-01-23 11:22:43 +00001095}
1096
Kostya Serebryanyc4ce5df2012-07-16 17:12:07 +00001097static size_t TypeSizeToSizeIndex(uint32_t TypeSize) {
Michael J. Spencerdf1ecbd72013-05-24 22:23:49 +00001098 size_t Res = countTrailingZeros(TypeSize / 8);
Kostya Serebryanyc4ce5df2012-07-16 17:12:07 +00001099 assert(Res < kNumberOfAccessSizes);
1100 return Res;
1101}
1102
Adrian Prantl5f8f34e42018-05-01 15:54:18 +00001103// Create a constant for Str so that we can pass it to the run-time lib.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001104static GlobalVariable *createPrivateGlobalForString(Module &M, StringRef Str,
1105 bool AllowMerging) {
Chris Lattnercf9e8f62012-02-05 02:29:43 +00001106 Constant *StrConst = ConstantDataArray::getString(M.getContext(), Str);
Rafael Espindoladaeafb42014-02-19 17:23:20 +00001107 // We use private linkage for module-local strings. If they can be merged
1108 // with another one, we set the unnamed_addr attribute.
Alexander Potapenkodaf96ae2013-12-25 14:22:15 +00001109 GlobalVariable *GV =
1110 new GlobalVariable(M, StrConst->getType(), true,
Rafael Espindoladaeafb42014-02-19 17:23:20 +00001111 GlobalValue::PrivateLinkage, StrConst, kAsanGenPrefix);
Peter Collingbourne96efdd62016-06-14 21:01:22 +00001112 if (AllowMerging) GV->setUnnamedAddr(GlobalValue::UnnamedAddr::Global);
Kostya Serebryany10cc12f2013-03-18 09:38:39 +00001113 GV->setAlignment(1); // Strings may not be merged w/o setting align 1.
1114 return GV;
Kostya Serebryany139a9372012-11-20 14:16:08 +00001115}
1116
Adrian Prantl5f8f34e42018-05-01 15:54:18 +00001117/// Create a global describing a source location.
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +00001118static GlobalVariable *createPrivateGlobalForSourceLoc(Module &M,
1119 LocationMetadata MD) {
1120 Constant *LocData[] = {
1121 createPrivateGlobalForString(M, MD.Filename, true),
1122 ConstantInt::get(Type::getInt32Ty(M.getContext()), MD.LineNo),
1123 ConstantInt::get(Type::getInt32Ty(M.getContext()), MD.ColumnNo),
1124 };
1125 auto LocStruct = ConstantStruct::getAnon(LocData);
1126 auto GV = new GlobalVariable(M, LocStruct->getType(), true,
1127 GlobalValue::PrivateLinkage, LocStruct,
1128 kAsanGenPrefix);
Peter Collingbourne96efdd62016-06-14 21:01:22 +00001129 GV->setUnnamedAddr(GlobalValue::UnnamedAddr::Global);
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +00001130 return GV;
1131}
1132
Adrian Prantl5f8f34e42018-05-01 15:54:18 +00001133/// Check if \p G has been created by a trusted compiler pass.
Vedant Kumarf5ac6d42016-06-22 17:30:58 +00001134static bool GlobalWasGeneratedByCompiler(GlobalVariable *G) {
1135 // Do not instrument asan globals.
1136 if (G->getName().startswith(kAsanGenPrefix) ||
1137 G->getName().startswith(kSanCovGenPrefix) ||
1138 G->getName().startswith(kODRGenPrefix))
1139 return true;
1140
1141 // Do not instrument gcov counter arrays.
1142 if (G->getName() == "__llvm_gcov_ctr")
1143 return true;
1144
1145 return false;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001146}
1147
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001148Value *AddressSanitizer::memToShadow(Value *Shadow, IRBuilder<> &IRB) {
1149 // Shadow >> scale
Alexey Samsonov1345d352013-01-16 13:23:28 +00001150 Shadow = IRB.CreateLShr(Shadow, Mapping.Scale);
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001151 if (Mapping.Offset == 0) return Shadow;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001152 // (Shadow >> scale) | offset
Etienne Bergeron0ca05682016-09-30 17:46:32 +00001153 Value *ShadowBase;
1154 if (LocalDynamicShadow)
1155 ShadowBase = LocalDynamicShadow;
Etienne Bergeron6ba51762016-09-19 15:58:38 +00001156 else
Etienne Bergeron0ca05682016-09-30 17:46:32 +00001157 ShadowBase = ConstantInt::get(IntptrTy, Mapping.Offset);
1158 if (Mapping.OrShadowOffset)
1159 return IRB.CreateOr(Shadow, ShadowBase);
1160 else
1161 return IRB.CreateAdd(Shadow, ShadowBase);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001162}
1163
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001164// Instrument memset/memmove/memcpy
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00001165void AddressSanitizer::instrumentMemIntrinsic(MemIntrinsic *MI) {
1166 IRBuilder<> IRB(MI);
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00001167 if (isa<MemTransferInst>(MI)) {
David Blaikieff6409d2015-05-18 22:13:54 +00001168 IRB.CreateCall(
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00001169 isa<MemMoveInst>(MI) ? AsanMemmove : AsanMemcpy,
David Blaikieff6409d2015-05-18 22:13:54 +00001170 {IRB.CreatePointerCast(MI->getOperand(0), IRB.getInt8PtrTy()),
1171 IRB.CreatePointerCast(MI->getOperand(1), IRB.getInt8PtrTy()),
1172 IRB.CreateIntCast(MI->getOperand(2), IntptrTy, false)});
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00001173 } else if (isa<MemSetInst>(MI)) {
David Blaikieff6409d2015-05-18 22:13:54 +00001174 IRB.CreateCall(
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00001175 AsanMemset,
David Blaikieff6409d2015-05-18 22:13:54 +00001176 {IRB.CreatePointerCast(MI->getOperand(0), IRB.getInt8PtrTy()),
1177 IRB.CreateIntCast(MI->getOperand(1), IRB.getInt32Ty(), false),
1178 IRB.CreateIntCast(MI->getOperand(2), IntptrTy, false)});
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001179 }
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00001180 MI->eraseFromParent();
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001181}
1182
Anna Zaks8ed1d812015-02-27 03:12:36 +00001183/// Check if we want (and can) handle this alloca.
Vitaly Buka21a9e572016-07-28 22:50:50 +00001184bool AddressSanitizer::isInterestingAlloca(const AllocaInst &AI) {
Anna Zaksbf28d3a2015-03-27 18:52:01 +00001185 auto PreviouslySeenAllocaInfo = ProcessedAllocas.find(&AI);
1186
1187 if (PreviouslySeenAllocaInfo != ProcessedAllocas.end())
1188 return PreviouslySeenAllocaInfo->getSecond();
1189
Yury Gribov98b18592015-05-28 07:51:49 +00001190 bool IsInteresting =
1191 (AI.getAllocatedType()->isSized() &&
1192 // alloca() may be called with 0 size, ignore it.
Vitaly Buka21a9e572016-07-28 22:50:50 +00001193 ((!AI.isStaticAlloca()) || getAllocaSizeInBytes(AI) > 0) &&
Yury Gribov98b18592015-05-28 07:51:49 +00001194 // We are only interested in allocas not promotable to registers.
1195 // Promotable allocas are common under -O0.
Alexey Samsonov55fda1b2015-11-05 21:18:41 +00001196 (!ClSkipPromotableAllocas || !isAllocaPromotable(&AI)) &&
1197 // inalloca allocas are not treated as static, and we don't want
1198 // dynamic alloca instrumentation for them as well.
Arnold Schwaighofer8d61e002017-02-15 20:43:43 +00001199 !AI.isUsedWithInAlloca() &&
1200 // swifterror allocas are register promoted by ISel
1201 !AI.isSwiftError());
Anna Zaksbf28d3a2015-03-27 18:52:01 +00001202
1203 ProcessedAllocas[&AI] = IsInteresting;
1204 return IsInteresting;
Anna Zaks8ed1d812015-02-27 03:12:36 +00001205}
1206
Anna Zaks8ed1d812015-02-27 03:12:36 +00001207Value *AddressSanitizer::isInterestingMemoryAccess(Instruction *I,
1208 bool *IsWrite,
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001209 uint64_t *TypeSize,
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001210 unsigned *Alignment,
1211 Value **MaybeMask) {
Alexey Samsonov535b6f92014-07-17 18:48:12 +00001212 // Skip memory accesses inserted by another instrumentation.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001213 if (I->getMetadata("nosanitize")) return nullptr;
Anna Zaks8ed1d812015-02-27 03:12:36 +00001214
Etienne Bergeron0ca05682016-09-30 17:46:32 +00001215 // Do not instrument the load fetching the dynamic shadow address.
1216 if (LocalDynamicShadow == I)
1217 return nullptr;
1218
Anna Zaks8ed1d812015-02-27 03:12:36 +00001219 Value *PtrOperand = nullptr;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001220 const DataLayout &DL = I->getModule()->getDataLayout();
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001221 if (LoadInst *LI = dyn_cast<LoadInst>(I)) {
Craig Topperf40110f2014-04-25 05:29:35 +00001222 if (!ClInstrumentReads) return nullptr;
Kostya Serebryany90241602012-05-30 09:04:06 +00001223 *IsWrite = false;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001224 *TypeSize = DL.getTypeStoreSizeInBits(LI->getType());
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00001225 *Alignment = LI->getAlignment();
Anna Zaks8ed1d812015-02-27 03:12:36 +00001226 PtrOperand = LI->getPointerOperand();
1227 } else if (StoreInst *SI = dyn_cast<StoreInst>(I)) {
Craig Topperf40110f2014-04-25 05:29:35 +00001228 if (!ClInstrumentWrites) return nullptr;
Kostya Serebryany90241602012-05-30 09:04:06 +00001229 *IsWrite = true;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001230 *TypeSize = DL.getTypeStoreSizeInBits(SI->getValueOperand()->getType());
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00001231 *Alignment = SI->getAlignment();
Anna Zaks8ed1d812015-02-27 03:12:36 +00001232 PtrOperand = SI->getPointerOperand();
1233 } else if (AtomicRMWInst *RMW = dyn_cast<AtomicRMWInst>(I)) {
Craig Topperf40110f2014-04-25 05:29:35 +00001234 if (!ClInstrumentAtomics) return nullptr;
Kostya Serebryany90241602012-05-30 09:04:06 +00001235 *IsWrite = true;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001236 *TypeSize = DL.getTypeStoreSizeInBits(RMW->getValOperand()->getType());
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00001237 *Alignment = 0;
Anna Zaks8ed1d812015-02-27 03:12:36 +00001238 PtrOperand = RMW->getPointerOperand();
1239 } else if (AtomicCmpXchgInst *XCHG = dyn_cast<AtomicCmpXchgInst>(I)) {
Craig Topperf40110f2014-04-25 05:29:35 +00001240 if (!ClInstrumentAtomics) return nullptr;
Kostya Serebryany90241602012-05-30 09:04:06 +00001241 *IsWrite = true;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001242 *TypeSize = DL.getTypeStoreSizeInBits(XCHG->getCompareOperand()->getType());
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00001243 *Alignment = 0;
Anna Zaks8ed1d812015-02-27 03:12:36 +00001244 PtrOperand = XCHG->getPointerOperand();
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001245 } else if (auto CI = dyn_cast<CallInst>(I)) {
1246 auto *F = dyn_cast<Function>(CI->getCalledValue());
1247 if (F && (F->getName().startswith("llvm.masked.load.") ||
1248 F->getName().startswith("llvm.masked.store."))) {
1249 unsigned OpOffset = 0;
1250 if (F->getName().startswith("llvm.masked.store.")) {
Filipe Cabecinhas1e690172016-12-14 21:56:59 +00001251 if (!ClInstrumentWrites)
1252 return nullptr;
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001253 // Masked store has an initial operand for the value.
1254 OpOffset = 1;
1255 *IsWrite = true;
1256 } else {
Filipe Cabecinhas1e690172016-12-14 21:56:59 +00001257 if (!ClInstrumentReads)
1258 return nullptr;
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001259 *IsWrite = false;
1260 }
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001261
1262 auto BasePtr = CI->getOperand(0 + OpOffset);
1263 auto Ty = cast<PointerType>(BasePtr->getType())->getElementType();
1264 *TypeSize = DL.getTypeStoreSizeInBits(Ty);
1265 if (auto AlignmentConstant =
1266 dyn_cast<ConstantInt>(CI->getOperand(1 + OpOffset)))
1267 *Alignment = (unsigned)AlignmentConstant->getZExtValue();
1268 else
1269 *Alignment = 1; // No alignment guarantees. We probably got Undef
1270 if (MaybeMask)
1271 *MaybeMask = CI->getOperand(2 + OpOffset);
1272 PtrOperand = BasePtr;
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001273 }
Kostya Serebryany90241602012-05-30 09:04:06 +00001274 }
Anna Zaks8ed1d812015-02-27 03:12:36 +00001275
Anna Zaks644d9d32016-06-22 00:15:52 +00001276 if (PtrOperand) {
Arnold Schwaighofer8d61e002017-02-15 20:43:43 +00001277 // Do not instrument acesses from different address spaces; we cannot deal
1278 // with them.
Anna Zaks644d9d32016-06-22 00:15:52 +00001279 Type *PtrTy = cast<PointerType>(PtrOperand->getType()->getScalarType());
1280 if (PtrTy->getPointerAddressSpace() != 0)
1281 return nullptr;
Arnold Schwaighofer8d61e002017-02-15 20:43:43 +00001282
1283 // Ignore swifterror addresses.
1284 // swifterror memory addresses are mem2reg promoted by instruction
1285 // selection. As such they cannot have regular uses like an instrumentation
1286 // function and it makes no sense to track them as memory.
1287 if (PtrOperand->isSwiftError())
1288 return nullptr;
Anna Zaks644d9d32016-06-22 00:15:52 +00001289 }
1290
Anna Zaks8ed1d812015-02-27 03:12:36 +00001291 // Treat memory accesses to promotable allocas as non-interesting since they
1292 // will not cause memory violations. This greatly speeds up the instrumented
1293 // executable at -O0.
1294 if (ClSkipPromotableAllocas)
1295 if (auto AI = dyn_cast_or_null<AllocaInst>(PtrOperand))
1296 return isInterestingAlloca(*AI) ? AI : nullptr;
1297
1298 return PtrOperand;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001299}
1300
Kostya Serebryany796f6552014-02-27 12:45:36 +00001301static bool isPointerOperand(Value *V) {
1302 return V->getType()->isPointerTy() || isa<PtrToIntInst>(V);
1303}
1304
1305// This is a rough heuristic; it may cause both false positives and
1306// false negatives. The proper implementation requires cooperation with
1307// the frontend.
1308static bool isInterestingPointerComparisonOrSubtraction(Instruction *I) {
1309 if (ICmpInst *Cmp = dyn_cast<ICmpInst>(I)) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001310 if (!Cmp->isRelational()) return false;
Kostya Serebryany796f6552014-02-27 12:45:36 +00001311 } else if (BinaryOperator *BO = dyn_cast<BinaryOperator>(I)) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001312 if (BO->getOpcode() != Instruction::Sub) return false;
Kostya Serebryany796f6552014-02-27 12:45:36 +00001313 } else {
1314 return false;
1315 }
Alexey Samsonov145b0fd2015-10-26 18:06:40 +00001316 return isPointerOperand(I->getOperand(0)) &&
1317 isPointerOperand(I->getOperand(1));
Kostya Serebryany796f6552014-02-27 12:45:36 +00001318}
1319
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +00001320bool AddressSanitizer::GlobalIsLinkerInitialized(GlobalVariable *G) {
1321 // If a global variable does not have dynamic initialization we don't
1322 // have to instrument it. However, if a global does not have initializer
1323 // at all, we assume it has dynamic initializer (in other TU).
Alexey Samsonov08f022a2014-07-11 22:36:02 +00001324 return G->hasInitializer() && !GlobalsMD.get(G).IsDynInit;
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +00001325}
1326
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001327void AddressSanitizer::instrumentPointerComparisonOrSubtraction(
1328 Instruction *I) {
Kostya Serebryany796f6552014-02-27 12:45:36 +00001329 IRBuilder<> IRB(I);
1330 Function *F = isa<ICmpInst>(I) ? AsanPtrCmpFunction : AsanPtrSubFunction;
1331 Value *Param[2] = {I->getOperand(0), I->getOperand(1)};
Benjamin Kramer135f7352016-06-26 12:28:59 +00001332 for (Value *&i : Param) {
1333 if (i->getType()->isPointerTy())
1334 i = IRB.CreatePointerCast(i, IntptrTy);
Kostya Serebryany796f6552014-02-27 12:45:36 +00001335 }
David Blaikieff6409d2015-05-18 22:13:54 +00001336 IRB.CreateCall(F, Param);
Kostya Serebryany796f6552014-02-27 12:45:36 +00001337}
1338
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001339static void doInstrumentAddress(AddressSanitizer *Pass, Instruction *I,
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001340 Instruction *InsertBefore, Value *Addr,
1341 unsigned Alignment, unsigned Granularity,
1342 uint32_t TypeSize, bool IsWrite,
1343 Value *SizeArgument, bool UseCalls,
1344 uint32_t Exp) {
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001345 // Instrument a 1-, 2-, 4-, 8-, or 16- byte access with one check
1346 // if the data is properly aligned.
1347 if ((TypeSize == 8 || TypeSize == 16 || TypeSize == 32 || TypeSize == 64 ||
1348 TypeSize == 128) &&
1349 (Alignment >= Granularity || Alignment == 0 || Alignment >= TypeSize / 8))
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001350 return Pass->instrumentAddress(I, InsertBefore, Addr, TypeSize, IsWrite,
1351 nullptr, UseCalls, Exp);
1352 Pass->instrumentUnusualSizeOrAlignment(I, InsertBefore, Addr, TypeSize,
1353 IsWrite, nullptr, UseCalls, Exp);
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001354}
1355
1356static void instrumentMaskedLoadOrStore(AddressSanitizer *Pass,
1357 const DataLayout &DL, Type *IntptrTy,
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001358 Value *Mask, Instruction *I,
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001359 Value *Addr, unsigned Alignment,
1360 unsigned Granularity, uint32_t TypeSize,
1361 bool IsWrite, Value *SizeArgument,
1362 bool UseCalls, uint32_t Exp) {
1363 auto *VTy = cast<PointerType>(Addr->getType())->getElementType();
1364 uint64_t ElemTypeSize = DL.getTypeStoreSizeInBits(VTy->getScalarType());
1365 unsigned Num = VTy->getVectorNumElements();
1366 auto Zero = ConstantInt::get(IntptrTy, 0);
1367 for (unsigned Idx = 0; Idx < Num; ++Idx) {
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001368 Value *InstrumentedAddress = nullptr;
1369 Instruction *InsertBefore = I;
1370 if (auto *Vector = dyn_cast<ConstantVector>(Mask)) {
1371 // dyn_cast as we might get UndefValue
1372 if (auto *Masked = dyn_cast<ConstantInt>(Vector->getOperand(Idx))) {
Craig Topper79ab6432017-07-06 18:39:47 +00001373 if (Masked->isZero())
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001374 // Mask is constant false, so no instrumentation needed.
1375 continue;
1376 // If we have a true or undef value, fall through to doInstrumentAddress
1377 // with InsertBefore == I
1378 }
1379 } else {
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001380 IRBuilder<> IRB(I);
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001381 Value *MaskElem = IRB.CreateExtractElement(Mask, Idx);
1382 TerminatorInst *ThenTerm = SplitBlockAndInsertIfThen(MaskElem, I, false);
1383 InsertBefore = ThenTerm;
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001384 }
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001385
1386 IRBuilder<> IRB(InsertBefore);
1387 InstrumentedAddress =
1388 IRB.CreateGEP(Addr, {Zero, ConstantInt::get(IntptrTy, Idx)});
1389 doInstrumentAddress(Pass, I, InsertBefore, InstrumentedAddress, Alignment,
1390 Granularity, ElemTypeSize, IsWrite, SizeArgument,
1391 UseCalls, Exp);
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001392 }
1393}
1394
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001395void AddressSanitizer::instrumentMop(ObjectSizeOffsetVisitor &ObjSizeVis,
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001396 Instruction *I, bool UseCalls,
1397 const DataLayout &DL) {
Axel Naumann4a127062012-09-17 14:20:57 +00001398 bool IsWrite = false;
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00001399 unsigned Alignment = 0;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001400 uint64_t TypeSize = 0;
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001401 Value *MaybeMask = nullptr;
1402 Value *Addr =
1403 isInterestingMemoryAccess(I, &IsWrite, &TypeSize, &Alignment, &MaybeMask);
Kostya Serebryany90241602012-05-30 09:04:06 +00001404 assert(Addr);
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001405
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001406 // Optimization experiments.
1407 // The experiments can be used to evaluate potential optimizations that remove
1408 // instrumentation (assess false negatives). Instead of completely removing
1409 // some instrumentation, you set Exp to a non-zero value (mask of optimization
1410 // experiments that want to remove instrumentation of this instruction).
1411 // If Exp is non-zero, this pass will emit special calls into runtime
1412 // (e.g. __asan_report_exp_load1 instead of __asan_report_load1). These calls
1413 // make runtime terminate the program in a special way (with a different
1414 // exit status). Then you run the new compiler on a buggy corpus, collect
1415 // the special terminations (ideally, you don't see them at all -- no false
1416 // negatives) and make the decision on the optimization.
1417 uint32_t Exp = ClForceExperiment;
1418
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001419 if (ClOpt && ClOptGlobals) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001420 // If initialization order checking is disabled, a simple access to a
1421 // dynamically initialized global is always valid.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001422 GlobalVariable *G = dyn_cast<GlobalVariable>(GetUnderlyingObject(Addr, DL));
Hans Wennborg083ca9b2015-10-06 23:24:35 +00001423 if (G && (!ClInitializers || GlobalIsLinkerInitialized(G)) &&
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001424 isSafeAccess(ObjSizeVis, Addr, TypeSize)) {
1425 NumOptimizedAccessesToGlobalVar++;
1426 return;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001427 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001428 }
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001429
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001430 if (ClOpt && ClOptStack) {
1431 // A direct inbounds access to a stack variable is always valid.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001432 if (isa<AllocaInst>(GetUnderlyingObject(Addr, DL)) &&
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001433 isSafeAccess(ObjSizeVis, Addr, TypeSize)) {
1434 NumOptimizedAccessesToStackVar++;
1435 return;
1436 }
1437 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001438
Kostya Serebryanyd3d23be2013-10-16 14:06:14 +00001439 if (IsWrite)
1440 NumInstrumentedWrites++;
1441 else
1442 NumInstrumentedReads++;
1443
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00001444 unsigned Granularity = 1 << Mapping.Scale;
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001445 if (MaybeMask) {
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001446 instrumentMaskedLoadOrStore(this, DL, IntptrTy, MaybeMask, I, Addr,
1447 Alignment, Granularity, TypeSize, IsWrite,
1448 nullptr, UseCalls, Exp);
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001449 } else {
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001450 doInstrumentAddress(this, I, I, Addr, Alignment, Granularity, TypeSize,
Filipe Cabecinhasec350b72016-11-15 22:37:30 +00001451 IsWrite, nullptr, UseCalls, Exp);
1452 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001453}
1454
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001455Instruction *AddressSanitizer::generateCrashCode(Instruction *InsertBefore,
1456 Value *Addr, bool IsWrite,
1457 size_t AccessSizeIndex,
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001458 Value *SizeArgument,
1459 uint32_t Exp) {
Kostya Serebryanyfda7a132012-08-14 14:04:51 +00001460 IRBuilder<> IRB(InsertBefore);
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001461 Value *ExpVal = Exp == 0 ? nullptr : ConstantInt::get(IRB.getInt32Ty(), Exp);
1462 CallInst *Call = nullptr;
1463 if (SizeArgument) {
1464 if (Exp == 0)
David Blaikieff6409d2015-05-18 22:13:54 +00001465 Call = IRB.CreateCall(AsanErrorCallbackSized[IsWrite][0],
1466 {Addr, SizeArgument});
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001467 else
David Blaikieff6409d2015-05-18 22:13:54 +00001468 Call = IRB.CreateCall(AsanErrorCallbackSized[IsWrite][1],
1469 {Addr, SizeArgument, ExpVal});
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001470 } else {
1471 if (Exp == 0)
1472 Call =
1473 IRB.CreateCall(AsanErrorCallback[IsWrite][0][AccessSizeIndex], Addr);
1474 else
David Blaikieff6409d2015-05-18 22:13:54 +00001475 Call = IRB.CreateCall(AsanErrorCallback[IsWrite][1][AccessSizeIndex],
1476 {Addr, ExpVal});
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001477 }
Kostya Serebryany3ece9bea2013-02-19 11:29:21 +00001478
Kostya Serebryanyf02c6062012-07-20 09:54:50 +00001479 // We don't do Call->setDoesNotReturn() because the BB already has
1480 // UnreachableInst at the end.
1481 // This EmptyAsm is required to avoid callback merge.
David Blaikieff6409d2015-05-18 22:13:54 +00001482 IRB.CreateCall(EmptyAsm, {});
Kostya Serebryany3411f2e2012-01-06 18:09:21 +00001483 return Call;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001484}
1485
Kostya Serebryanyc4ce5df2012-07-16 17:12:07 +00001486Value *AddressSanitizer::createSlowPathCmp(IRBuilder<> &IRB, Value *AddrLong,
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001487 Value *ShadowValue,
1488 uint32_t TypeSize) {
Aaron Ballmanef0fe1e2016-03-30 21:30:00 +00001489 size_t Granularity = static_cast<size_t>(1) << Mapping.Scale;
Kostya Serebryany874dae62012-07-16 16:15:40 +00001490 // Addr & (Granularity - 1)
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001491 Value *LastAccessedByte =
1492 IRB.CreateAnd(AddrLong, ConstantInt::get(IntptrTy, Granularity - 1));
Kostya Serebryany874dae62012-07-16 16:15:40 +00001493 // (Addr & (Granularity - 1)) + size - 1
1494 if (TypeSize / 8 > 1)
1495 LastAccessedByte = IRB.CreateAdd(
1496 LastAccessedByte, ConstantInt::get(IntptrTy, TypeSize / 8 - 1));
1497 // (uint8_t) ((Addr & (Granularity-1)) + size - 1)
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001498 LastAccessedByte =
1499 IRB.CreateIntCast(LastAccessedByte, ShadowValue->getType(), false);
Kostya Serebryany874dae62012-07-16 16:15:40 +00001500 // ((uint8_t) ((Addr & (Granularity-1)) + size - 1)) >= ShadowValue
1501 return IRB.CreateICmpSGE(LastAccessedByte, ShadowValue);
1502}
1503
Kostya Serebryanyb0e25062012-10-15 14:20:06 +00001504void AddressSanitizer::instrumentAddress(Instruction *OrigIns,
Kostya Serebryany0c02d262014-04-16 12:12:19 +00001505 Instruction *InsertBefore, Value *Addr,
1506 uint32_t TypeSize, bool IsWrite,
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001507 Value *SizeArgument, bool UseCalls,
1508 uint32_t Exp) {
Walter Leecdbb2072018-05-18 04:10:38 +00001509 bool IsMyriad = TargetTriple.getVendor() == llvm::Triple::Myriad;
1510
Kostya Serebryany3ece9bea2013-02-19 11:29:21 +00001511 IRBuilder<> IRB(InsertBefore);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001512 Value *AddrLong = IRB.CreatePointerCast(Addr, IntptrTy);
Kostya Serebryany0c02d262014-04-16 12:12:19 +00001513 size_t AccessSizeIndex = TypeSizeToSizeIndex(TypeSize);
1514
1515 if (UseCalls) {
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001516 if (Exp == 0)
1517 IRB.CreateCall(AsanMemoryAccessCallback[IsWrite][0][AccessSizeIndex],
1518 AddrLong);
1519 else
David Blaikieff6409d2015-05-18 22:13:54 +00001520 IRB.CreateCall(AsanMemoryAccessCallback[IsWrite][1][AccessSizeIndex],
1521 {AddrLong, ConstantInt::get(IRB.getInt32Ty(), Exp)});
Kostya Serebryany0c02d262014-04-16 12:12:19 +00001522 return;
1523 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001524
Walter Leecdbb2072018-05-18 04:10:38 +00001525 if (IsMyriad) {
1526 // Strip the cache bit and do range check.
1527 // AddrLong &= ~kMyriadCacheBitMask32
1528 AddrLong = IRB.CreateAnd(AddrLong, ~kMyriadCacheBitMask32);
1529 // Tag = AddrLong >> kMyriadTagShift
1530 Value *Tag = IRB.CreateLShr(AddrLong, kMyriadTagShift);
1531 // Tag == kMyriadDDRTag
1532 Value *TagCheck =
1533 IRB.CreateICmpEQ(Tag, ConstantInt::get(IntptrTy, kMyriadDDRTag));
1534
1535 TerminatorInst *TagCheckTerm = SplitBlockAndInsertIfThen(
1536 TagCheck, InsertBefore, false, MDBuilder(*C).createBranchWeights(1, 100000));
1537 assert(cast<BranchInst>(TagCheckTerm)->isUnconditional());
1538 IRB.SetInsertPoint(TagCheckTerm);
1539 InsertBefore = TagCheckTerm;
1540 }
1541
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001542 Type *ShadowTy =
1543 IntegerType::get(*C, std::max(8U, TypeSize >> Mapping.Scale));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001544 Type *ShadowPtrTy = PointerType::get(ShadowTy, 0);
1545 Value *ShadowPtr = memToShadow(AddrLong, IRB);
1546 Value *CmpVal = Constant::getNullValue(ShadowTy);
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001547 Value *ShadowValue =
1548 IRB.CreateLoad(IRB.CreateIntToPtr(ShadowPtr, ShadowPtrTy));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001549
1550 Value *Cmp = IRB.CreateICmpNE(ShadowValue, CmpVal);
Aaron Ballmanef0fe1e2016-03-30 21:30:00 +00001551 size_t Granularity = 1ULL << Mapping.Scale;
Craig Topperf40110f2014-04-25 05:29:35 +00001552 TerminatorInst *CrashTerm = nullptr;
Kostya Serebryanyfda7a132012-08-14 14:04:51 +00001553
Kostya Serebryany1e575ab2012-08-15 08:58:58 +00001554 if (ClAlwaysSlowPath || (TypeSize < 8 * Granularity)) {
Kostya Serebryanyad238522014-09-02 21:46:51 +00001555 // We use branch weights for the slow path check, to indicate that the slow
1556 // path is rarely taken. This seems to be the case for SPEC benchmarks.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001557 TerminatorInst *CheckTerm = SplitBlockAndInsertIfThen(
1558 Cmp, InsertBefore, false, MDBuilder(*C).createBranchWeights(1, 100000));
Benjamin Kramer619c4e52015-04-10 11:24:51 +00001559 assert(cast<BranchInst>(CheckTerm)->isUnconditional());
Kostya Serebryanyf02c6062012-07-20 09:54:50 +00001560 BasicBlock *NextBB = CheckTerm->getSuccessor(0);
Kostya Serebryany874dae62012-07-16 16:15:40 +00001561 IRB.SetInsertPoint(CheckTerm);
1562 Value *Cmp2 = createSlowPathCmp(IRB, AddrLong, ShadowValue, TypeSize);
Yury Gribovd7731982015-11-11 10:36:49 +00001563 if (Recover) {
1564 CrashTerm = SplitBlockAndInsertIfThen(Cmp2, CheckTerm, false);
1565 } else {
1566 BasicBlock *CrashBlock =
Kostya Serebryanyb0e25062012-10-15 14:20:06 +00001567 BasicBlock::Create(*C, "", NextBB->getParent(), NextBB);
Yury Gribovd7731982015-11-11 10:36:49 +00001568 CrashTerm = new UnreachableInst(*C, CrashBlock);
1569 BranchInst *NewTerm = BranchInst::Create(CrashBlock, NextBB, Cmp2);
1570 ReplaceInstWithInst(CheckTerm, NewTerm);
1571 }
Kostya Serebryany874dae62012-07-16 16:15:40 +00001572 } else {
Yury Gribovd7731982015-11-11 10:36:49 +00001573 CrashTerm = SplitBlockAndInsertIfThen(Cmp, InsertBefore, !Recover);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001574 }
Kostya Serebryanyfda7a132012-08-14 14:04:51 +00001575
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001576 Instruction *Crash = generateCrashCode(CrashTerm, AddrLong, IsWrite,
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001577 AccessSizeIndex, SizeArgument, Exp);
Kostya Serebryanyfda7a132012-08-14 14:04:51 +00001578 Crash->setDebugLoc(OrigIns->getDebugLoc());
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00001579}
1580
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001581// Instrument unusual size or unusual alignment.
1582// We can not do it with a single check, so we do 1-byte check for the first
1583// and the last bytes. We call __asan_report_*_n(addr, real_size) to be able
1584// to report the actual access size.
1585void AddressSanitizer::instrumentUnusualSizeOrAlignment(
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001586 Instruction *I, Instruction *InsertBefore, Value *Addr, uint32_t TypeSize,
1587 bool IsWrite, Value *SizeArgument, bool UseCalls, uint32_t Exp) {
1588 IRBuilder<> IRB(InsertBefore);
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001589 Value *Size = ConstantInt::get(IntptrTy, TypeSize / 8);
1590 Value *AddrLong = IRB.CreatePointerCast(Addr, IntptrTy);
1591 if (UseCalls) {
1592 if (Exp == 0)
David Blaikieff6409d2015-05-18 22:13:54 +00001593 IRB.CreateCall(AsanMemoryAccessCallbackSized[IsWrite][0],
1594 {AddrLong, Size});
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001595 else
David Blaikieff6409d2015-05-18 22:13:54 +00001596 IRB.CreateCall(AsanMemoryAccessCallbackSized[IsWrite][1],
1597 {AddrLong, Size, ConstantInt::get(IRB.getInt32Ty(), Exp)});
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001598 } else {
1599 Value *LastByte = IRB.CreateIntToPtr(
1600 IRB.CreateAdd(AddrLong, ConstantInt::get(IntptrTy, TypeSize / 8 - 1)),
1601 Addr->getType());
Filipe Cabecinhas4647b742017-01-06 15:24:51 +00001602 instrumentAddress(I, InsertBefore, Addr, 8, IsWrite, Size, false, Exp);
1603 instrumentAddress(I, InsertBefore, LastByte, 8, IsWrite, Size, false, Exp);
Dmitry Vyukov618d5802015-03-17 16:59:19 +00001604 }
1605}
1606
Alexey Samsonov96e239f2014-05-29 00:51:15 +00001607void AddressSanitizerModule::poisonOneInitializer(Function &GlobalInit,
1608 GlobalValue *ModuleName) {
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001609 // Set up the arguments to our poison/unpoison functions.
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00001610 IRBuilder<> IRB(&GlobalInit.front(),
1611 GlobalInit.front().getFirstInsertionPt());
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001612
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001613 // Add a call to poison all external globals before the given function starts.
Alexey Samsonove1e26bf2013-03-26 13:05:41 +00001614 Value *ModuleNameAddr = ConstantExpr::getPointerCast(ModuleName, IntptrTy);
1615 IRB.CreateCall(AsanPoisonGlobals, ModuleNameAddr);
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001616
1617 // Add calls to unpoison all globals before each return instruction.
Alexey Samsonov96e239f2014-05-29 00:51:15 +00001618 for (auto &BB : GlobalInit.getBasicBlockList())
1619 if (ReturnInst *RI = dyn_cast<ReturnInst>(BB.getTerminator()))
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001620 CallInst::Create(AsanUnpoisonGlobals, "", RI);
Alexey Samsonov96e239f2014-05-29 00:51:15 +00001621}
1622
1623void AddressSanitizerModule::createInitializerPoisonCalls(
1624 Module &M, GlobalValue *ModuleName) {
1625 GlobalVariable *GV = M.getGlobalVariable("llvm.global_ctors");
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00001626 if (!GV)
1627 return;
Alexey Samsonov96e239f2014-05-29 00:51:15 +00001628
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00001629 ConstantArray *CA = dyn_cast<ConstantArray>(GV->getInitializer());
1630 if (!CA)
1631 return;
1632
Alexey Samsonov96e239f2014-05-29 00:51:15 +00001633 for (Use &OP : CA->operands()) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001634 if (isa<ConstantAggregateZero>(OP)) continue;
Alexey Samsonov96e239f2014-05-29 00:51:15 +00001635 ConstantStruct *CS = cast<ConstantStruct>(OP);
1636
1637 // Must have a function or null ptr.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001638 if (Function *F = dyn_cast<Function>(CS->getOperand(1))) {
Kostya Serebryany34ddf872014-09-24 22:41:55 +00001639 if (F->getName() == kAsanModuleCtorName) continue;
1640 ConstantInt *Priority = dyn_cast<ConstantInt>(CS->getOperand(0));
1641 // Don't instrument CTORs that will run before asan.module_ctor.
1642 if (Priority->getLimitedValue() <= kAsanCtorAndDtorPriority) continue;
1643 poisonOneInitializer(*F, ModuleName);
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001644 }
1645 }
1646}
1647
Kostya Serebryanydfe9e792012-11-28 10:31:36 +00001648bool AddressSanitizerModule::ShouldInstrumentGlobal(GlobalVariable *G) {
Manuel Jacob5f6eaac2016-01-16 20:30:46 +00001649 Type *Ty = G->getValueType();
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001650 LLVM_DEBUG(dbgs() << "GLOBAL: " << *G << "\n");
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001651
Alexey Samsonov08f022a2014-07-11 22:36:02 +00001652 if (GlobalsMD.get(G).IsBlacklisted) return false;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001653 if (!Ty->isSized()) return false;
1654 if (!G->hasInitializer()) return false;
Vedant Kumarf5ac6d42016-06-22 17:30:58 +00001655 if (GlobalWasGeneratedByCompiler(G)) return false; // Our own globals.
Evgeniy Stepanov289a7d42018-06-26 22:43:48 +00001656 // Touch only those globals that will not be defined in other modules.
1657 // Don't handle ODR linkage types and COMDATs since other modules may be built
1658 // without ASan.
1659 if (G->getLinkage() != GlobalVariable::ExternalLinkage &&
1660 G->getLinkage() != GlobalVariable::PrivateLinkage &&
1661 G->getLinkage() != GlobalVariable::InternalLinkage)
1662 return false;
1663 if (G->hasComdat()) return false;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001664 // Two problems with thread-locals:
1665 // - The address of the main thread's copy can't be computed at link-time.
1666 // - Need to poison all copies, not just the main thread's one.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001667 if (G->isThreadLocal()) return false;
Kostya Serebryany4fb78012013-12-06 09:00:17 +00001668 // For now, just ignore this Global if the alignment is large.
1669 if (G->getAlignment() > MinRedzoneSizeForGlobal()) return false;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001670
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001671 if (G->hasSection()) {
Rafael Espindola83658d62016-05-11 18:21:59 +00001672 StringRef Section = G->getSection();
Kuba Brecka086e34b2014-12-05 21:32:46 +00001673
Anna Zaks11904602015-06-09 00:58:08 +00001674 // Globals from llvm.metadata aren't emitted, do not instrument them.
1675 if (Section == "llvm.metadata") return false;
Anna Zaks785c0752015-06-25 23:35:48 +00001676 // Do not instrument globals from special LLVM sections.
Anna Zaks40148f12016-02-24 22:12:18 +00001677 if (Section.find("__llvm") != StringRef::npos || Section.find("__LLVM") != StringRef::npos) return false;
Anna Zaks11904602015-06-09 00:58:08 +00001678
Alexey Samsonovc1603b62015-09-15 23:05:48 +00001679 // Do not instrument function pointers to initialization and termination
1680 // routines: dynamic linker will not properly handle redzones.
1681 if (Section.startswith(".preinit_array") ||
1682 Section.startswith(".init_array") ||
1683 Section.startswith(".fini_array")) {
1684 return false;
1685 }
1686
Reid Kleckner12395b72018-06-13 20:47:21 +00001687 // On COFF, if the section name contains '$', it is highly likely that the
1688 // user is using section sorting to create an array of globals similar to
1689 // the way initialization callbacks are registered in .init_array and
1690 // .CRT$XCU. The ATL also registers things in .ATL$__[azm]. Adding redzones
1691 // to such globals is counterproductive, because the intent is that they
1692 // will form an array, and out-of-bounds accesses are expected.
Hans Wennborg08b34a02017-11-13 23:47:58 +00001693 // See https://github.com/google/sanitizers/issues/305
Anna Zaks11904602015-06-09 00:58:08 +00001694 // and http://msdn.microsoft.com/en-US/en-en/library/bb918180(v=vs.120).aspx
Reid Kleckner12395b72018-06-13 20:47:21 +00001695 if (TargetTriple.isOSBinFormatCOFF() && Section.contains('$')) {
1696 LLVM_DEBUG(dbgs() << "Ignoring global in sorted section (contains '$'): "
1697 << *G << "\n");
Anna Zaks11904602015-06-09 00:58:08 +00001698 return false;
1699 }
1700
Kuba Brecka1001bb52014-12-05 22:19:18 +00001701 if (TargetTriple.isOSBinFormatMachO()) {
1702 StringRef ParsedSegment, ParsedSection;
1703 unsigned TAA = 0, StubSize = 0;
1704 bool TAAParsed;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00001705 std::string ErrorCode = MCSectionMachO::ParseSectionSpecifier(
1706 Section, ParsedSegment, ParsedSection, TAA, TAAParsed, StubSize);
Davide Italianoc807f482015-11-19 21:50:08 +00001707 assert(ErrorCode.empty() && "Invalid section specifier.");
Kuba Brecka1001bb52014-12-05 22:19:18 +00001708
1709 // Ignore the globals from the __OBJC section. The ObjC runtime assumes
1710 // those conform to /usr/lib/objc/runtime.h, so we can't add redzones to
1711 // them.
1712 if (ParsedSegment == "__OBJC" ||
1713 (ParsedSegment == "__DATA" && ParsedSection.startswith("__objc_"))) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001714 LLVM_DEBUG(dbgs() << "Ignoring ObjC runtime global: " << *G << "\n");
Kuba Brecka1001bb52014-12-05 22:19:18 +00001715 return false;
1716 }
Hans Wennborg08b34a02017-11-13 23:47:58 +00001717 // See https://github.com/google/sanitizers/issues/32
Kuba Brecka1001bb52014-12-05 22:19:18 +00001718 // Constant CFString instances are compiled in the following way:
1719 // -- the string buffer is emitted into
1720 // __TEXT,__cstring,cstring_literals
1721 // -- the constant NSConstantString structure referencing that buffer
1722 // is placed into __DATA,__cfstring
1723 // Therefore there's no point in placing redzones into __DATA,__cfstring.
1724 // Moreover, it causes the linker to crash on OS X 10.7
1725 if (ParsedSegment == "__DATA" && ParsedSection == "__cfstring") {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001726 LLVM_DEBUG(dbgs() << "Ignoring CFString: " << *G << "\n");
Kuba Brecka1001bb52014-12-05 22:19:18 +00001727 return false;
1728 }
1729 // The linker merges the contents of cstring_literals and removes the
1730 // trailing zeroes.
1731 if (ParsedSegment == "__TEXT" && (TAA & MachO::S_CSTRING_LITERALS)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001732 LLVM_DEBUG(dbgs() << "Ignoring a cstring literal: " << *G << "\n");
Kuba Brecka1001bb52014-12-05 22:19:18 +00001733 return false;
1734 }
1735 }
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00001736 }
1737
1738 return true;
1739}
1740
Ryan Govostes653f9d02016-03-28 20:28:57 +00001741// On Mach-O platforms, we emit global metadata in a separate section of the
1742// binary in order to allow the linker to properly dead strip. This is only
1743// supported on recent versions of ld64.
1744bool AddressSanitizerModule::ShouldUseMachOGlobalsSection() const {
1745 if (!TargetTriple.isOSBinFormatMachO())
1746 return false;
1747
1748 if (TargetTriple.isMacOSX() && !TargetTriple.isMacOSXVersionLT(10, 11))
1749 return true;
1750 if (TargetTriple.isiOS() /* or tvOS */ && !TargetTriple.isOSVersionLT(9))
Mike Aizatsky243b71f2016-04-21 22:00:13 +00001751 return true;
Ryan Govostes653f9d02016-03-28 20:28:57 +00001752 if (TargetTriple.isWatchOS() && !TargetTriple.isOSVersionLT(2))
1753 return true;
1754
1755 return false;
1756}
1757
Reid Kleckner01660a32016-11-21 20:40:37 +00001758StringRef AddressSanitizerModule::getGlobalMetadataSection() const {
1759 switch (TargetTriple.getObjectFormat()) {
1760 case Triple::COFF: return ".ASAN$GL";
1761 case Triple::ELF: return "asan_globals";
1762 case Triple::MachO: return "__DATA,__asan_globals,regular";
1763 default: break;
1764 }
1765 llvm_unreachable("unsupported object format");
1766}
1767
Alexey Samsonov788381b2012-12-25 12:28:20 +00001768void AddressSanitizerModule::initializeCallbacks(Module &M) {
1769 IRBuilder<> IRB(*C);
Ryan Govostes653f9d02016-03-28 20:28:57 +00001770
Alexey Samsonov788381b2012-12-25 12:28:20 +00001771 // Declare our poisoning and unpoisoning functions.
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00001772 AsanPoisonGlobals = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001773 kAsanPoisonGlobalsName, IRB.getVoidTy(), IntptrTy));
Alexey Samsonov788381b2012-12-25 12:28:20 +00001774 AsanPoisonGlobals->setLinkage(Function::ExternalLinkage);
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00001775 AsanUnpoisonGlobals = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001776 kAsanUnpoisonGlobalsName, IRB.getVoidTy()));
Alexey Samsonov788381b2012-12-25 12:28:20 +00001777 AsanUnpoisonGlobals->setLinkage(Function::ExternalLinkage);
Ryan Govostes653f9d02016-03-28 20:28:57 +00001778
Alexey Samsonov788381b2012-12-25 12:28:20 +00001779 // Declare functions that register/unregister globals.
Ismail Pazarbasi198d6d52015-04-06 21:09:08 +00001780 AsanRegisterGlobals = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001781 kAsanRegisterGlobalsName, IRB.getVoidTy(), IntptrTy, IntptrTy));
Alexey Samsonov788381b2012-12-25 12:28:20 +00001782 AsanRegisterGlobals->setLinkage(Function::ExternalLinkage);
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00001783 AsanUnregisterGlobals = checkSanitizerInterfaceFunction(
1784 M.getOrInsertFunction(kAsanUnregisterGlobalsName, IRB.getVoidTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001785 IntptrTy, IntptrTy));
Alexey Samsonov788381b2012-12-25 12:28:20 +00001786 AsanUnregisterGlobals->setLinkage(Function::ExternalLinkage);
Ryan Govostes653f9d02016-03-28 20:28:57 +00001787
1788 // Declare the functions that find globals in a shared object and then invoke
1789 // the (un)register function on them.
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001790 AsanRegisterImageGlobals =
1791 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001792 kAsanRegisterImageGlobalsName, IRB.getVoidTy(), IntptrTy));
Ryan Govostes653f9d02016-03-28 20:28:57 +00001793 AsanRegisterImageGlobals->setLinkage(Function::ExternalLinkage);
Mike Aizatsky243b71f2016-04-21 22:00:13 +00001794
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001795 AsanUnregisterImageGlobals =
1796 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001797 kAsanUnregisterImageGlobalsName, IRB.getVoidTy(), IntptrTy));
Ryan Govostes653f9d02016-03-28 20:28:57 +00001798 AsanUnregisterImageGlobals->setLinkage(Function::ExternalLinkage);
Evgeniy Stepanov964f4662017-04-27 20:27:27 +00001799
1800 AsanRegisterElfGlobals = checkSanitizerInterfaceFunction(
1801 M.getOrInsertFunction(kAsanRegisterElfGlobalsName, IRB.getVoidTy(),
1802 IntptrTy, IntptrTy, IntptrTy));
1803 AsanRegisterElfGlobals->setLinkage(Function::ExternalLinkage);
1804
1805 AsanUnregisterElfGlobals = checkSanitizerInterfaceFunction(
1806 M.getOrInsertFunction(kAsanUnregisterElfGlobalsName, IRB.getVoidTy(),
1807 IntptrTy, IntptrTy, IntptrTy));
1808 AsanUnregisterElfGlobals->setLinkage(Function::ExternalLinkage);
Alexey Samsonov788381b2012-12-25 12:28:20 +00001809}
1810
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001811// Put the metadata and the instrumented global in the same group. This ensures
1812// that the metadata is discarded if the instrumented global is discarded.
1813void AddressSanitizerModule::SetComdatForGlobalMetadata(
Evgeniy Stepanov964f4662017-04-27 20:27:27 +00001814 GlobalVariable *G, GlobalVariable *Metadata, StringRef InternalSuffix) {
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001815 Module &M = *G->getParent();
1816 Comdat *C = G->getComdat();
1817 if (!C) {
1818 if (!G->hasName()) {
1819 // If G is unnamed, it must be internal. Give it an artificial name
1820 // so we can put it in a comdat.
1821 assert(G->hasLocalLinkage());
1822 G->setName(Twine(kAsanGenPrefix) + "_anon_global");
1823 }
Evgeniy Stepanov964f4662017-04-27 20:27:27 +00001824
1825 if (!InternalSuffix.empty() && G->hasLocalLinkage()) {
1826 std::string Name = G->getName();
1827 Name += InternalSuffix;
1828 C = M.getOrInsertComdat(Name);
1829 } else {
1830 C = M.getOrInsertComdat(G->getName());
1831 }
1832
Reid Klecknerc212cc82017-10-31 16:16:08 +00001833 // Make this IMAGE_COMDAT_SELECT_NODUPLICATES on COFF. Also upgrade private
1834 // linkage to internal linkage so that a symbol table entry is emitted. This
1835 // is necessary in order to create the comdat group.
1836 if (TargetTriple.isOSBinFormatCOFF()) {
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001837 C->setSelectionKind(Comdat::NoDuplicates);
Reid Klecknerc212cc82017-10-31 16:16:08 +00001838 if (G->hasPrivateLinkage())
1839 G->setLinkage(GlobalValue::InternalLinkage);
1840 }
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001841 G->setComdat(C);
1842 }
1843
1844 assert(G->hasComdat());
1845 Metadata->setComdat(G->getComdat());
1846}
1847
1848// Create a separate metadata global and put it in the appropriate ASan
1849// global registration section.
1850GlobalVariable *
1851AddressSanitizerModule::CreateMetadataGlobal(Module &M, Constant *Initializer,
1852 StringRef OriginalName) {
Evgeniy Stepanov90fd8732017-04-11 22:28:13 +00001853 auto Linkage = TargetTriple.isOSBinFormatMachO()
1854 ? GlobalVariable::InternalLinkage
1855 : GlobalVariable::PrivateLinkage;
1856 GlobalVariable *Metadata = new GlobalVariable(
1857 M, Initializer->getType(), false, Linkage, Initializer,
Peter Collingbourne6f0ecca2017-05-16 00:39:01 +00001858 Twine("__asan_global_") + GlobalValue::dropLLVMManglingEscape(OriginalName));
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001859 Metadata->setSection(getGlobalMetadataSection());
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001860 return Metadata;
1861}
1862
1863IRBuilder<> AddressSanitizerModule::CreateAsanModuleDtor(Module &M) {
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00001864 AsanDtorFunction =
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001865 Function::Create(FunctionType::get(Type::getVoidTy(*C), false),
1866 GlobalValue::InternalLinkage, kAsanModuleDtorName, &M);
1867 BasicBlock *AsanDtorBB = BasicBlock::Create(*C, "", AsanDtorFunction);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001868
1869 return IRBuilder<>(ReturnInst::Create(*C, AsanDtorBB));
1870}
1871
1872void AddressSanitizerModule::InstrumentGlobalsCOFF(
1873 IRBuilder<> &IRB, Module &M, ArrayRef<GlobalVariable *> ExtendedGlobals,
1874 ArrayRef<Constant *> MetadataInitializers) {
1875 assert(ExtendedGlobals.size() == MetadataInitializers.size());
Evgeniy Stepanovf01c70f2017-01-12 23:26:20 +00001876 auto &DL = M.getDataLayout();
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001877
1878 for (size_t i = 0; i < ExtendedGlobals.size(); i++) {
Evgeniy Stepanovf01c70f2017-01-12 23:26:20 +00001879 Constant *Initializer = MetadataInitializers[i];
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001880 GlobalVariable *G = ExtendedGlobals[i];
1881 GlobalVariable *Metadata =
Evgeniy Stepanovf01c70f2017-01-12 23:26:20 +00001882 CreateMetadataGlobal(M, Initializer, G->getName());
1883
1884 // The MSVC linker always inserts padding when linking incrementally. We
1885 // cope with that by aligning each struct to its size, which must be a power
1886 // of two.
1887 unsigned SizeOfGlobalStruct = DL.getTypeAllocSize(Initializer->getType());
1888 assert(isPowerOf2_32(SizeOfGlobalStruct) &&
1889 "global metadata will not be padded appropriately");
1890 Metadata->setAlignment(SizeOfGlobalStruct);
1891
Evgeniy Stepanov964f4662017-04-27 20:27:27 +00001892 SetComdatForGlobalMetadata(G, Metadata, "");
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001893 }
1894}
1895
Evgeniy Stepanov964f4662017-04-27 20:27:27 +00001896void AddressSanitizerModule::InstrumentGlobalsELF(
1897 IRBuilder<> &IRB, Module &M, ArrayRef<GlobalVariable *> ExtendedGlobals,
1898 ArrayRef<Constant *> MetadataInitializers,
1899 const std::string &UniqueModuleId) {
1900 assert(ExtendedGlobals.size() == MetadataInitializers.size());
1901
1902 SmallVector<GlobalValue *, 16> MetadataGlobals(ExtendedGlobals.size());
1903 for (size_t i = 0; i < ExtendedGlobals.size(); i++) {
1904 GlobalVariable *G = ExtendedGlobals[i];
1905 GlobalVariable *Metadata =
1906 CreateMetadataGlobal(M, MetadataInitializers[i], G->getName());
1907 MDNode *MD = MDNode::get(M.getContext(), ValueAsMetadata::get(G));
1908 Metadata->setMetadata(LLVMContext::MD_associated, MD);
1909 MetadataGlobals[i] = Metadata;
1910
1911 SetComdatForGlobalMetadata(G, Metadata, UniqueModuleId);
1912 }
1913
1914 // Update llvm.compiler.used, adding the new metadata globals. This is
1915 // needed so that during LTO these variables stay alive.
1916 if (!MetadataGlobals.empty())
1917 appendToCompilerUsed(M, MetadataGlobals);
1918
1919 // RegisteredFlag serves two purposes. First, we can pass it to dladdr()
1920 // to look up the loaded image that contains it. Second, we can store in it
1921 // whether registration has already occurred, to prevent duplicate
1922 // registration.
1923 //
1924 // Common linkage ensures that there is only one global per shared library.
1925 GlobalVariable *RegisteredFlag = new GlobalVariable(
1926 M, IntptrTy, false, GlobalVariable::CommonLinkage,
1927 ConstantInt::get(IntptrTy, 0), kAsanGlobalsRegisteredFlagName);
1928 RegisteredFlag->setVisibility(GlobalVariable::HiddenVisibility);
1929
1930 // Create start and stop symbols.
1931 GlobalVariable *StartELFMetadata = new GlobalVariable(
1932 M, IntptrTy, false, GlobalVariable::ExternalWeakLinkage, nullptr,
1933 "__start_" + getGlobalMetadataSection());
1934 StartELFMetadata->setVisibility(GlobalVariable::HiddenVisibility);
1935 GlobalVariable *StopELFMetadata = new GlobalVariable(
1936 M, IntptrTy, false, GlobalVariable::ExternalWeakLinkage, nullptr,
1937 "__stop_" + getGlobalMetadataSection());
1938 StopELFMetadata->setVisibility(GlobalVariable::HiddenVisibility);
1939
1940 // Create a call to register the globals with the runtime.
1941 IRB.CreateCall(AsanRegisterElfGlobals,
1942 {IRB.CreatePointerCast(RegisteredFlag, IntptrTy),
1943 IRB.CreatePointerCast(StartELFMetadata, IntptrTy),
1944 IRB.CreatePointerCast(StopELFMetadata, IntptrTy)});
1945
1946 // We also need to unregister globals at the end, e.g., when a shared library
1947 // gets closed.
1948 IRBuilder<> IRB_Dtor = CreateAsanModuleDtor(M);
1949 IRB_Dtor.CreateCall(AsanUnregisterElfGlobals,
1950 {IRB.CreatePointerCast(RegisteredFlag, IntptrTy),
1951 IRB.CreatePointerCast(StartELFMetadata, IntptrTy),
1952 IRB.CreatePointerCast(StopELFMetadata, IntptrTy)});
1953}
1954
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001955void AddressSanitizerModule::InstrumentGlobalsMachO(
1956 IRBuilder<> &IRB, Module &M, ArrayRef<GlobalVariable *> ExtendedGlobals,
1957 ArrayRef<Constant *> MetadataInitializers) {
1958 assert(ExtendedGlobals.size() == MetadataInitializers.size());
1959
1960 // On recent Mach-O platforms, use a structure which binds the liveness of
1961 // the global variable to the metadata struct. Keep the list of "Liveness" GV
1962 // created to be added to llvm.compiler.used
Serge Gueltone38003f2017-05-09 19:31:13 +00001963 StructType *LivenessTy = StructType::get(IntptrTy, IntptrTy);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001964 SmallVector<GlobalValue *, 16> LivenessGlobals(ExtendedGlobals.size());
1965
1966 for (size_t i = 0; i < ExtendedGlobals.size(); i++) {
1967 Constant *Initializer = MetadataInitializers[i];
1968 GlobalVariable *G = ExtendedGlobals[i];
1969 GlobalVariable *Metadata =
1970 CreateMetadataGlobal(M, Initializer, G->getName());
1971
1972 // On recent Mach-O platforms, we emit the global metadata in a way that
1973 // allows the linker to properly strip dead globals.
Serge Gueltone38003f2017-05-09 19:31:13 +00001974 auto LivenessBinder =
1975 ConstantStruct::get(LivenessTy, Initializer->getAggregateElement(0u),
1976 ConstantExpr::getPointerCast(Metadata, IntptrTy));
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00001977 GlobalVariable *Liveness = new GlobalVariable(
1978 M, LivenessTy, false, GlobalVariable::InternalLinkage, LivenessBinder,
1979 Twine("__asan_binder_") + G->getName());
1980 Liveness->setSection("__DATA,__asan_liveness,regular,live_support");
1981 LivenessGlobals[i] = Liveness;
1982 }
1983
1984 // Update llvm.compiler.used, adding the new liveness globals. This is
1985 // needed so that during LTO these variables stay alive. The alternative
1986 // would be to have the linker handling the LTO symbols, but libLTO
1987 // current API does not expose access to the section for each symbol.
1988 if (!LivenessGlobals.empty())
1989 appendToCompilerUsed(M, LivenessGlobals);
1990
1991 // RegisteredFlag serves two purposes. First, we can pass it to dladdr()
1992 // to look up the loaded image that contains it. Second, we can store in it
1993 // whether registration has already occurred, to prevent duplicate
1994 // registration.
1995 //
1996 // common linkage ensures that there is only one global per shared library.
1997 GlobalVariable *RegisteredFlag = new GlobalVariable(
1998 M, IntptrTy, false, GlobalVariable::CommonLinkage,
1999 ConstantInt::get(IntptrTy, 0), kAsanGlobalsRegisteredFlagName);
2000 RegisteredFlag->setVisibility(GlobalVariable::HiddenVisibility);
2001
2002 IRB.CreateCall(AsanRegisterImageGlobals,
2003 {IRB.CreatePointerCast(RegisteredFlag, IntptrTy)});
2004
2005 // We also need to unregister globals at the end, e.g., when a shared library
2006 // gets closed.
2007 IRBuilder<> IRB_Dtor = CreateAsanModuleDtor(M);
2008 IRB_Dtor.CreateCall(AsanUnregisterImageGlobals,
2009 {IRB.CreatePointerCast(RegisteredFlag, IntptrTy)});
2010}
2011
2012void AddressSanitizerModule::InstrumentGlobalsWithMetadataArray(
2013 IRBuilder<> &IRB, Module &M, ArrayRef<GlobalVariable *> ExtendedGlobals,
2014 ArrayRef<Constant *> MetadataInitializers) {
2015 assert(ExtendedGlobals.size() == MetadataInitializers.size());
2016 unsigned N = ExtendedGlobals.size();
2017 assert(N > 0);
2018
2019 // On platforms that don't have a custom metadata section, we emit an array
2020 // of global metadata structures.
2021 ArrayType *ArrayOfGlobalStructTy =
2022 ArrayType::get(MetadataInitializers[0]->getType(), N);
2023 auto AllGlobals = new GlobalVariable(
2024 M, ArrayOfGlobalStructTy, false, GlobalVariable::InternalLinkage,
2025 ConstantArray::get(ArrayOfGlobalStructTy, MetadataInitializers), "");
Walter Lee2a2b69e2017-11-16 12:57:19 +00002026 if (Mapping.Scale > 3)
2027 AllGlobals->setAlignment(1ULL << Mapping.Scale);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00002028
2029 IRB.CreateCall(AsanRegisterGlobals,
2030 {IRB.CreatePointerCast(AllGlobals, IntptrTy),
2031 ConstantInt::get(IntptrTy, N)});
2032
2033 // We also need to unregister globals at the end, e.g., when a shared library
2034 // gets closed.
2035 IRBuilder<> IRB_Dtor = CreateAsanModuleDtor(M);
2036 IRB_Dtor.CreateCall(AsanUnregisterGlobals,
2037 {IRB.CreatePointerCast(AllGlobals, IntptrTy),
2038 ConstantInt::get(IntptrTy, N)});
2039}
2040
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002041// This function replaces all global variables with new variables that have
2042// trailing redzones. It also creates a function that poisons
2043// redzones and inserts this function into llvm.global_ctors.
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00002044// Sets *CtorComdat to true if the global registration code emitted into the
2045// asan constructor is comdat-compatible.
2046bool AddressSanitizerModule::InstrumentGlobals(IRBuilder<> &IRB, Module &M, bool *CtorComdat) {
2047 *CtorComdat = false;
Alexey Samsonov4f319cc2014-07-02 16:54:41 +00002048 GlobalsMD.init(M);
Kostya Serebryany20a79972012-11-22 03:18:50 +00002049
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002050 SmallVector<GlobalVariable *, 16> GlobalsToChange;
2051
Alexey Samsonova02e6642014-05-29 18:40:48 +00002052 for (auto &G : M.globals()) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002053 if (ShouldInstrumentGlobal(&G)) GlobalsToChange.push_back(&G);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002054 }
2055
2056 size_t n = GlobalsToChange.size();
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00002057 if (n == 0) {
2058 *CtorComdat = true;
2059 return false;
2060 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002061
Reid Kleckner78565832016-11-29 01:32:21 +00002062 auto &DL = M.getDataLayout();
Reid Kleckner01660a32016-11-21 20:40:37 +00002063
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002064 // A global is described by a structure
2065 // size_t beg;
2066 // size_t size;
2067 // size_t size_with_redzone;
2068 // const char *name;
Kostya Serebryanybd016bb2013-03-18 08:05:29 +00002069 // const char *module_name;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00002070 // size_t has_dynamic_init;
Alexey Samsonov4f319cc2014-07-02 16:54:41 +00002071 // void *source_location;
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002072 // size_t odr_indicator;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002073 // We initialize an array of such structures and pass it to a run-time call.
Alexey Samsonov4f319cc2014-07-02 16:54:41 +00002074 StructType *GlobalStructTy =
2075 StructType::get(IntptrTy, IntptrTy, IntptrTy, IntptrTy, IntptrTy,
Serge Gueltone38003f2017-05-09 19:31:13 +00002076 IntptrTy, IntptrTy, IntptrTy);
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00002077 SmallVector<GlobalVariable *, 16> NewGlobals(n);
2078 SmallVector<Constant *, 16> Initializers(n);
Kostya Serebryany20a79972012-11-22 03:18:50 +00002079
Alexey Samsonove1e26bf2013-03-26 13:05:41 +00002080 bool HasDynamicallyInitializedGlobals = false;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00002081
Alexey Samsonove1e26bf2013-03-26 13:05:41 +00002082 // We shouldn't merge same module names, as this string serves as unique
2083 // module ID in runtime.
Alexander Potapenkodaf96ae2013-12-25 14:22:15 +00002084 GlobalVariable *ModuleName = createPrivateGlobalForString(
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002085 M, M.getModuleIdentifier(), /*AllowMerging*/ false);
Kostya Serebryanybd016bb2013-03-18 08:05:29 +00002086
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002087 for (size_t i = 0; i < n; i++) {
Kostya Serebryanye35d59a2013-01-24 10:43:50 +00002088 static const uint64_t kMaxGlobalRedzone = 1 << 18;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002089 GlobalVariable *G = GlobalsToChange[i];
Alexey Samsonov15c96692014-07-12 00:42:52 +00002090
2091 auto MD = GlobalsMD.get(G);
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002092 StringRef NameForGlobal = G->getName();
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +00002093 // Create string holding the global name (use global name from metadata
2094 // if it's available, otherwise just write the name of global variable).
2095 GlobalVariable *Name = createPrivateGlobalForString(
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002096 M, MD.Name.empty() ? NameForGlobal : MD.Name,
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +00002097 /*AllowMerging*/ true);
Alexey Samsonov15c96692014-07-12 00:42:52 +00002098
Manuel Jacob5f6eaac2016-01-16 20:30:46 +00002099 Type *Ty = G->getValueType();
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002100 uint64_t SizeInBytes = DL.getTypeAllocSize(Ty);
Kostya Serebryany4fb78012013-12-06 09:00:17 +00002101 uint64_t MinRZ = MinRedzoneSizeForGlobal();
Kostya Serebryany87191f62013-01-24 10:35:40 +00002102 // MinRZ <= RZ <= kMaxGlobalRedzone
2103 // and trying to make RZ to be ~ 1/4 of SizeInBytes.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002104 uint64_t RZ = std::max(
2105 MinRZ, std::min(kMaxGlobalRedzone, (SizeInBytes / MinRZ / 4) * MinRZ));
Kostya Serebryany87191f62013-01-24 10:35:40 +00002106 uint64_t RightRedzoneSize = RZ;
2107 // Round up to MinRZ
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002108 if (SizeInBytes % MinRZ) RightRedzoneSize += MinRZ - (SizeInBytes % MinRZ);
Kostya Serebryany87191f62013-01-24 10:35:40 +00002109 assert(((RightRedzoneSize + SizeInBytes) % MinRZ) == 0);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002110 Type *RightRedZoneTy = ArrayType::get(IRB.getInt8Ty(), RightRedzoneSize);
2111
Serge Gueltone38003f2017-05-09 19:31:13 +00002112 StructType *NewTy = StructType::get(Ty, RightRedZoneTy);
2113 Constant *NewInitializer = ConstantStruct::get(
2114 NewTy, G->getInitializer(), Constant::getNullValue(RightRedZoneTy));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002115
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002116 // Create a new global variable with enough space for a redzone.
Bill Wendling58f8cef2013-08-06 22:52:42 +00002117 GlobalValue::LinkageTypes Linkage = G->getLinkage();
2118 if (G->isConstant() && Linkage == GlobalValue::PrivateLinkage)
2119 Linkage = GlobalValue::InternalLinkage;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002120 GlobalVariable *NewGlobal =
2121 new GlobalVariable(M, NewTy, G->isConstant(), Linkage, NewInitializer,
2122 "", G, G->getThreadLocalMode());
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002123 NewGlobal->copyAttributesFrom(G);
Kostya Serebryany87191f62013-01-24 10:35:40 +00002124 NewGlobal->setAlignment(MinRZ);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002125
Kuba Breckaa28c9e82016-10-31 18:51:58 +00002126 // Move null-terminated C strings to "__asan_cstring" section on Darwin.
2127 if (TargetTriple.isOSBinFormatMachO() && !G->hasSection() &&
2128 G->isConstant()) {
2129 auto Seq = dyn_cast<ConstantDataSequential>(G->getInitializer());
2130 if (Seq && Seq->isCString())
2131 NewGlobal->setSection("__TEXT,__asan_cstring,regular");
2132 }
2133
Adrian Prantl12fa3b32016-09-20 18:28:42 +00002134 // Transfer the debug info. The payload starts at offset zero so we can
2135 // copy the debug info over as is.
Adrian Prantlbceaaa92016-12-20 02:09:43 +00002136 SmallVector<DIGlobalVariableExpression *, 1> GVs;
Adrian Prantl12fa3b32016-09-20 18:28:42 +00002137 G->getDebugInfo(GVs);
2138 for (auto *GV : GVs)
2139 NewGlobal->addDebugInfo(GV);
2140
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002141 Value *Indices2[2];
2142 Indices2[0] = IRB.getInt32(0);
2143 Indices2[1] = IRB.getInt32(0);
2144
2145 G->replaceAllUsesWith(
David Blaikie4a2e73b2015-04-02 18:55:32 +00002146 ConstantExpr::getGetElementPtr(NewTy, NewGlobal, Indices2, true));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002147 NewGlobal->takeName(G);
2148 G->eraseFromParent();
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00002149 NewGlobals[i] = NewGlobal;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002150
Alexey Samsonovd9ad5ce2014-08-02 00:35:50 +00002151 Constant *SourceLoc;
2152 if (!MD.SourceLoc.empty()) {
2153 auto SourceLocGlobal = createPrivateGlobalForSourceLoc(M, MD.SourceLoc);
2154 SourceLoc = ConstantExpr::getPointerCast(SourceLocGlobal, IntptrTy);
2155 } else {
2156 SourceLoc = ConstantInt::get(IntptrTy, 0);
2157 }
2158
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002159 Constant *ODRIndicator = ConstantExpr::getNullValue(IRB.getInt8PtrTy());
2160 GlobalValue *InstrumentedGlobal = NewGlobal;
2161
Kuba Breckaa1ea64a2016-09-14 14:06:33 +00002162 bool CanUsePrivateAliases =
Dan Gohman1209c7a2017-01-17 20:34:09 +00002163 TargetTriple.isOSBinFormatELF() || TargetTriple.isOSBinFormatMachO() ||
2164 TargetTriple.isOSBinFormatWasm();
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002165 if (CanUsePrivateAliases && ClUsePrivateAliasForGlobals) {
2166 // Create local alias for NewGlobal to avoid crash on ODR between
2167 // instrumented and non-instrumented libraries.
2168 auto *GA = GlobalAlias::create(GlobalValue::InternalLinkage,
2169 NameForGlobal + M.getName(), NewGlobal);
2170
2171 // With local aliases, we need to provide another externally visible
2172 // symbol __odr_asan_XXX to detect ODR violation.
2173 auto *ODRIndicatorSym =
2174 new GlobalVariable(M, IRB.getInt8Ty(), false, Linkage,
2175 Constant::getNullValue(IRB.getInt8Ty()),
2176 kODRGenPrefix + NameForGlobal, nullptr,
2177 NewGlobal->getThreadLocalMode());
2178
2179 // Set meaningful attributes for indicator symbol.
2180 ODRIndicatorSym->setVisibility(NewGlobal->getVisibility());
2181 ODRIndicatorSym->setDLLStorageClass(NewGlobal->getDLLStorageClass());
2182 ODRIndicatorSym->setAlignment(1);
2183 ODRIndicator = ODRIndicatorSym;
2184 InstrumentedGlobal = GA;
2185 }
2186
Reid Kleckner01660a32016-11-21 20:40:37 +00002187 Constant *Initializer = ConstantStruct::get(
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002188 GlobalStructTy,
2189 ConstantExpr::getPointerCast(InstrumentedGlobal, IntptrTy),
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002190 ConstantInt::get(IntptrTy, SizeInBytes),
2191 ConstantInt::get(IntptrTy, SizeInBytes + RightRedzoneSize),
2192 ConstantExpr::getPointerCast(Name, IntptrTy),
Kostya Serebryanybd016bb2013-03-18 08:05:29 +00002193 ConstantExpr::getPointerCast(ModuleName, IntptrTy),
Maxim Ostapenkob1e3f602016-02-08 08:30:57 +00002194 ConstantInt::get(IntptrTy, MD.IsDynInit), SourceLoc,
Serge Gueltone38003f2017-05-09 19:31:13 +00002195 ConstantExpr::getPointerCast(ODRIndicator, IntptrTy));
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00002196
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002197 if (ClInitializers && MD.IsDynInit) HasDynamicallyInitializedGlobals = true;
Kostya Serebryanyf4be0192012-08-21 08:24:25 +00002198
Nicola Zaghend34e60c2018-05-14 12:53:11 +00002199 LLVM_DEBUG(dbgs() << "NEW GLOBAL: " << *NewGlobal << "\n");
Reid Kleckner01660a32016-11-21 20:40:37 +00002200
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00002201 Initializers[i] = Initializer;
2202 }
Reid Kleckner01660a32016-11-21 20:40:37 +00002203
Kuba Mracek8842da82018-03-08 21:02:18 +00002204 // Add instrumented globals to llvm.compiler.used list to avoid LTO from
2205 // ConstantMerge'ing them.
2206 SmallVector<GlobalValue *, 16> GlobalsToAddToUsedList;
2207 for (size_t i = 0; i < n; i++) {
2208 GlobalVariable *G = NewGlobals[i];
2209 if (G->getName().empty()) continue;
2210 GlobalsToAddToUsedList.push_back(G);
2211 }
2212 appendToCompilerUsed(M, ArrayRef<GlobalValue *>(GlobalsToAddToUsedList));
2213
Evgeniy Stepanov964f4662017-04-27 20:27:27 +00002214 std::string ELFUniqueModuleId =
2215 (UseGlobalsGC && TargetTriple.isOSBinFormatELF()) ? getUniqueModuleId(&M)
2216 : "";
2217
2218 if (!ELFUniqueModuleId.empty()) {
2219 InstrumentGlobalsELF(IRB, M, NewGlobals, Initializers, ELFUniqueModuleId);
2220 *CtorComdat = true;
2221 } else if (UseGlobalsGC && TargetTriple.isOSBinFormatCOFF()) {
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00002222 InstrumentGlobalsCOFF(IRB, M, NewGlobals, Initializers);
Evgeniy Stepanov9e536082017-04-24 19:34:13 +00002223 } else if (UseGlobalsGC && ShouldUseMachOGlobalsSection()) {
Evgeniy Stepanov5d31d082017-01-12 23:03:03 +00002224 InstrumentGlobalsMachO(IRB, M, NewGlobals, Initializers);
2225 } else {
2226 InstrumentGlobalsWithMetadataArray(IRB, M, NewGlobals, Initializers);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002227 }
2228
Reid Kleckner01660a32016-11-21 20:40:37 +00002229 // Create calls for poisoning before initializers run and unpoisoning after.
2230 if (HasDynamicallyInitializedGlobals)
2231 createInitializerPoisonCalls(M, ModuleName);
2232
Nicola Zaghend34e60c2018-05-14 12:53:11 +00002233 LLVM_DEBUG(dbgs() << M);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002234 return true;
2235}
2236
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +00002237int AddressSanitizerModule::GetAsanVersion(const Module &M) const {
2238 int LongSize = M.getDataLayout().getPointerSizeInBits();
2239 bool isAndroid = Triple(M.getTargetTriple()).isAndroid();
2240 int Version = 8;
2241 // 32-bit Android is one version ahead because of the switch to dynamic
2242 // shadow.
2243 Version += (LongSize == 32 && isAndroid);
2244 return Version;
2245}
2246
Evgeniy Stepanov19f75fc2014-06-03 14:16:00 +00002247bool AddressSanitizerModule::runOnModule(Module &M) {
Evgeniy Stepanov19f75fc2014-06-03 14:16:00 +00002248 C = &(M.getContext());
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002249 int LongSize = M.getDataLayout().getPointerSizeInBits();
Evgeniy Stepanov19f75fc2014-06-03 14:16:00 +00002250 IntptrTy = Type::getIntNTy(*C, LongSize);
Kuba Brecka1001bb52014-12-05 22:19:18 +00002251 TargetTriple = Triple(M.getTargetTriple());
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002252 Mapping = getShadowMapping(TargetTriple, LongSize, CompileKernel);
Evgeniy Stepanov19f75fc2014-06-03 14:16:00 +00002253 initializeCallbacks(M);
2254
Evgeniy Stepanov039af602017-04-06 19:55:09 +00002255 if (CompileKernel)
2256 return false;
Alex Shlyapnikovbbd5cc62017-03-27 23:11:50 +00002257
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00002258 // Create a module constructor. A destructor is created lazily because not all
2259 // platforms, and not all modules need it.
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +00002260 std::string VersionCheckName =
2261 kAsanVersionCheckNamePrefix + std::to_string(GetAsanVersion(M));
Evgeniy Stepanov039af602017-04-06 19:55:09 +00002262 std::tie(AsanCtorFunction, std::ignore) = createSanitizerCtorAndInitFunctions(
2263 M, kAsanModuleCtorName, kAsanInitName, /*InitArgTypes=*/{},
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +00002264 /*InitArgs=*/{}, VersionCheckName);
Evgeniy Stepanov039af602017-04-06 19:55:09 +00002265
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00002266 bool CtorComdat = true;
Evgeniy Stepanov039af602017-04-06 19:55:09 +00002267 bool Changed = false;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002268 // TODO(glider): temporarily disabled globals instrumentation for KASan.
Evgeniy Stepanov039af602017-04-06 19:55:09 +00002269 if (ClGlobals) {
2270 IRBuilder<> IRB(AsanCtorFunction->getEntryBlock().getTerminator());
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00002271 Changed |= InstrumentGlobals(IRB, M, &CtorComdat);
2272 }
2273
2274 // Put the constructor and destructor in comdat if both
2275 // (1) global instrumentation is not TU-specific
2276 // (2) target is ELF.
Evgeniy Stepanovb56012b2017-05-15 20:43:42 +00002277 if (UseCtorComdat && TargetTriple.isOSBinFormatELF() && CtorComdat) {
Evgeniy Stepanov716f0ff222017-04-27 20:27:23 +00002278 AsanCtorFunction->setComdat(M.getOrInsertComdat(kAsanModuleCtorName));
2279 appendToGlobalCtors(M, AsanCtorFunction, kAsanCtorAndDtorPriority,
2280 AsanCtorFunction);
2281 if (AsanDtorFunction) {
2282 AsanDtorFunction->setComdat(M.getOrInsertComdat(kAsanModuleDtorName));
2283 appendToGlobalDtors(M, AsanDtorFunction, kAsanCtorAndDtorPriority,
2284 AsanDtorFunction);
2285 }
2286 } else {
2287 appendToGlobalCtors(M, AsanCtorFunction, kAsanCtorAndDtorPriority);
2288 if (AsanDtorFunction)
2289 appendToGlobalDtors(M, AsanDtorFunction, kAsanCtorAndDtorPriority);
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002290 }
Evgeniy Stepanov19f75fc2014-06-03 14:16:00 +00002291
2292 return Changed;
2293}
2294
Kostya Serebryany4b929da2012-11-29 09:54:21 +00002295void AddressSanitizer::initializeCallbacks(Module &M) {
2296 IRBuilder<> IRB(*C);
Kostya Serebryany4273bb02012-07-16 14:09:42 +00002297 // Create __asan_report* callbacks.
Dmitry Vyukov618d5802015-03-17 16:59:19 +00002298 // IsWrite, TypeSize and Exp are encoded in the function name.
2299 for (int Exp = 0; Exp < 2; Exp++) {
2300 for (size_t AccessIsWrite = 0; AccessIsWrite <= 1; AccessIsWrite++) {
2301 const std::string TypeStr = AccessIsWrite ? "store" : "load";
2302 const std::string ExpStr = Exp ? "exp_" : "";
Yury Gribovd7731982015-11-11 10:36:49 +00002303 const std::string EndingStr = Recover ? "_noabort" : "";
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002304
2305 SmallVector<Type *, 3> Args2 = {IntptrTy, IntptrTy};
2306 SmallVector<Type *, 2> Args1{1, IntptrTy};
2307 if (Exp) {
2308 Type *ExpType = Type::getInt32Ty(*C);
2309 Args2.push_back(ExpType);
2310 Args1.push_back(ExpType);
Dmitry Vyukov618d5802015-03-17 16:59:19 +00002311 }
NAKAMURA Takumia1e97a72017-08-28 06:47:47 +00002312 AsanErrorCallbackSized[AccessIsWrite][Exp] =
2313 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Evgeniy Stepanov31475a02018-01-25 21:28:51 +00002314 kAsanReportErrorTemplate + ExpStr + TypeStr + "_n" + EndingStr,
NAKAMURA Takumia1e97a72017-08-28 06:47:47 +00002315 FunctionType::get(IRB.getVoidTy(), Args2, false)));
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002316
NAKAMURA Takumia1e97a72017-08-28 06:47:47 +00002317 AsanMemoryAccessCallbackSized[AccessIsWrite][Exp] =
2318 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
2319 ClMemoryAccessCallbackPrefix + ExpStr + TypeStr + "N" + EndingStr,
2320 FunctionType::get(IRB.getVoidTy(), Args2, false)));
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002321
NAKAMURA Takumia1e97a72017-08-28 06:47:47 +00002322 for (size_t AccessSizeIndex = 0; AccessSizeIndex < kNumberOfAccessSizes;
2323 AccessSizeIndex++) {
2324 const std::string Suffix = TypeStr + itostr(1ULL << AccessSizeIndex);
2325 AsanErrorCallback[AccessIsWrite][Exp][AccessSizeIndex] =
2326 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
2327 kAsanReportErrorTemplate + ExpStr + Suffix + EndingStr,
2328 FunctionType::get(IRB.getVoidTy(), Args1, false)));
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002329
NAKAMURA Takumia1e97a72017-08-28 06:47:47 +00002330 AsanMemoryAccessCallback[AccessIsWrite][Exp][AccessSizeIndex] =
2331 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
2332 ClMemoryAccessCallbackPrefix + ExpStr + Suffix + EndingStr,
2333 FunctionType::get(IRB.getVoidTy(), Args1, false)));
2334 }
2335 }
Kostya Serebryany4273bb02012-07-16 14:09:42 +00002336 }
Kostya Serebryany86332c02014-04-21 07:10:43 +00002337
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002338 const std::string MemIntrinCallbackPrefix =
2339 CompileKernel ? std::string("") : ClMemoryAccessCallbackPrefix;
Ismail Pazarbasi198d6d52015-04-06 21:09:08 +00002340 AsanMemmove = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002341 MemIntrinCallbackPrefix + "memmove", IRB.getInt8PtrTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002342 IRB.getInt8PtrTy(), IRB.getInt8PtrTy(), IntptrTy));
Ismail Pazarbasi198d6d52015-04-06 21:09:08 +00002343 AsanMemcpy = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002344 MemIntrinCallbackPrefix + "memcpy", IRB.getInt8PtrTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002345 IRB.getInt8PtrTy(), IRB.getInt8PtrTy(), IntptrTy));
Ismail Pazarbasi198d6d52015-04-06 21:09:08 +00002346 AsanMemset = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002347 MemIntrinCallbackPrefix + "memset", IRB.getInt8PtrTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002348 IRB.getInt8PtrTy(), IRB.getInt32Ty(), IntptrTy));
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00002349
Ismail Pazarbasi198d6d52015-04-06 21:09:08 +00002350 AsanHandleNoReturnFunc = checkSanitizerInterfaceFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002351 M.getOrInsertFunction(kAsanHandleNoReturnName, IRB.getVoidTy()));
Kostya Serebryany4f8f0c52014-10-27 18:13:56 +00002352
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00002353 AsanPtrCmpFunction = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002354 kAsanPtrCmp, IRB.getVoidTy(), IntptrTy, IntptrTy));
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00002355 AsanPtrSubFunction = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002356 kAsanPtrSub, IRB.getVoidTy(), IntptrTy, IntptrTy));
Kostya Serebryanyf02c6062012-07-20 09:54:50 +00002357 // We insert an empty inline asm after __asan_report* to avoid callback merge.
2358 EmptyAsm = InlineAsm::get(FunctionType::get(IRB.getVoidTy(), false),
2359 StringRef(""), StringRef(""),
2360 /*hasSideEffects=*/true);
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +00002361 if (Mapping.InGlobal)
2362 AsanShadowGlobal = M.getOrInsertGlobal("__asan_shadow",
2363 ArrayType::get(IRB.getInt8Ty(), 0));
Kostya Serebryany4b929da2012-11-29 09:54:21 +00002364}
2365
2366// virtual
2367bool AddressSanitizer::doInitialization(Module &M) {
2368 // Initialize the private fields. No one has accessed them before.
Alexey Samsonov4f319cc2014-07-02 16:54:41 +00002369 GlobalsMD.init(M);
Kostya Serebryany4b929da2012-11-29 09:54:21 +00002370
2371 C = &(M.getContext());
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002372 LongSize = M.getDataLayout().getPointerSizeInBits();
Kostya Serebryany4b929da2012-11-29 09:54:21 +00002373 IntptrTy = Type::getIntNTy(*C, LongSize);
Kuba Brecka1001bb52014-12-05 22:19:18 +00002374 TargetTriple = Triple(M.getTargetTriple());
Kostya Serebryany4b929da2012-11-29 09:54:21 +00002375
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002376 Mapping = getShadowMapping(TargetTriple, LongSize, CompileKernel);
Kostya Serebryanyb0e25062012-10-15 14:20:06 +00002377 return true;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002378}
2379
Keno Fischere03fae42015-12-05 14:42:34 +00002380bool AddressSanitizer::doFinalization(Module &M) {
2381 GlobalsMD.reset();
2382 return false;
2383}
2384
Kostya Serebryany22ddcfd2012-01-30 23:50:10 +00002385bool AddressSanitizer::maybeInsertAsanInitAtFunctionEntry(Function &F) {
2386 // For each NSObject descendant having a +load method, this method is invoked
2387 // by the ObjC runtime before any of the static constructors is called.
2388 // Therefore we need to instrument such methods with a call to __asan_init
2389 // at the beginning in order to initialize our runtime before any access to
2390 // the shadow memory.
2391 // We cannot just ignore these methods, because they may call other
2392 // instrumented functions.
2393 if (F.getName().find(" load]") != std::string::npos) {
Evgeniy Stepanov039af602017-04-06 19:55:09 +00002394 Function *AsanInitFunction =
2395 declareSanitizerInitFunction(*F.getParent(), kAsanInitName, {});
Duncan P. N. Exon Smithe82c2862015-10-13 17:39:10 +00002396 IRBuilder<> IRB(&F.front(), F.front().begin());
David Blaikieff6409d2015-05-18 22:13:54 +00002397 IRB.CreateCall(AsanInitFunction, {});
Kostya Serebryany22ddcfd2012-01-30 23:50:10 +00002398 return true;
2399 }
2400 return false;
2401}
2402
Etienne Bergeron0ca05682016-09-30 17:46:32 +00002403void AddressSanitizer::maybeInsertDynamicShadowAtFunctionEntry(Function &F) {
2404 // Generate code only when dynamic addressing is needed.
Evgeniy Stepanovcff19ee2017-11-15 00:11:51 +00002405 if (Mapping.Offset != kDynamicShadowSentinel)
Etienne Bergeron0ca05682016-09-30 17:46:32 +00002406 return;
2407
2408 IRBuilder<> IRB(&F.front().front());
Evgeniy Stepanov8e7018d2017-11-20 17:41:57 +00002409 if (Mapping.InGlobal) {
2410 if (ClWithIfuncSuppressRemat) {
2411 // An empty inline asm with input reg == output reg.
2412 // An opaque pointer-to-int cast, basically.
2413 InlineAsm *Asm = InlineAsm::get(
2414 FunctionType::get(IntptrTy, {AsanShadowGlobal->getType()}, false),
2415 StringRef(""), StringRef("=r,0"),
2416 /*hasSideEffects=*/false);
2417 LocalDynamicShadow =
2418 IRB.CreateCall(Asm, {AsanShadowGlobal}, ".asan.shadow");
2419 } else {
2420 LocalDynamicShadow =
2421 IRB.CreatePointerCast(AsanShadowGlobal, IntptrTy, ".asan.shadow");
2422 }
2423 } else {
2424 Value *GlobalDynamicAddress = F.getParent()->getOrInsertGlobal(
2425 kAsanShadowMemoryDynamicAddress, IntptrTy);
2426 LocalDynamicShadow = IRB.CreateLoad(GlobalDynamicAddress);
2427 }
Etienne Bergeron0ca05682016-09-30 17:46:32 +00002428}
2429
Reid Kleckner2f907552015-07-21 17:40:14 +00002430void AddressSanitizer::markEscapedLocalAllocas(Function &F) {
2431 // Find the one possible call to llvm.localescape and pre-mark allocas passed
2432 // to it as uninteresting. This assumes we haven't started processing allocas
2433 // yet. This check is done up front because iterating the use list in
2434 // isInterestingAlloca would be algorithmically slower.
2435 assert(ProcessedAllocas.empty() && "must process localescape before allocas");
2436
2437 // Try to get the declaration of llvm.localescape. If it's not in the module,
2438 // we can exit early.
2439 if (!F.getParent()->getFunction("llvm.localescape")) return;
2440
2441 // Look for a call to llvm.localescape call in the entry block. It can't be in
2442 // any other block.
2443 for (Instruction &I : F.getEntryBlock()) {
2444 IntrinsicInst *II = dyn_cast<IntrinsicInst>(&I);
2445 if (II && II->getIntrinsicID() == Intrinsic::localescape) {
2446 // We found a call. Mark all the allocas passed in as uninteresting.
2447 for (Value *Arg : II->arg_operands()) {
2448 AllocaInst *AI = dyn_cast<AllocaInst>(Arg->stripPointerCasts());
2449 assert(AI && AI->isStaticAlloca() &&
2450 "non-static alloca arg to localescape");
2451 ProcessedAllocas[AI] = false;
2452 }
2453 break;
2454 }
2455 }
2456}
2457
Kostya Serebryanyb0e25062012-10-15 14:20:06 +00002458bool AddressSanitizer::runOnFunction(Function &F) {
Kostya Serebryany6b5b58d2013-03-18 07:33:49 +00002459 if (F.getLinkage() == GlobalValue::AvailableExternallyLinkage) return false;
Etienne Bergeron752f8832016-09-14 17:18:37 +00002460 if (!ClDebugFunc.empty() && ClDebugFunc == F.getName()) return false;
Etienne Bergeron52e47432016-09-15 15:35:59 +00002461 if (F.getName().startswith("__asan_")) return false;
Yury Gribov3ae427d2014-12-01 08:47:58 +00002462
Etienne Bergeron78582b22016-09-15 15:45:05 +00002463 bool FunctionModified = false;
2464
Kostya Serebryanycf880b92013-02-26 06:58:09 +00002465 // If needed, insert __asan_init before checking for SanitizeAddress attr.
Etienne Bergeron752f8832016-09-14 17:18:37 +00002466 // This function needs to be called even if the function body is not
2467 // instrumented.
Etienne Bergeron78582b22016-09-15 15:45:05 +00002468 if (maybeInsertAsanInitAtFunctionEntry(F))
2469 FunctionModified = true;
Etienne Bergeron752f8832016-09-14 17:18:37 +00002470
2471 // Leave if the function doesn't need instrumentation.
Etienne Bergeron78582b22016-09-15 15:45:05 +00002472 if (!F.hasFnAttribute(Attribute::SanitizeAddress)) return FunctionModified;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002473
Nicola Zaghend34e60c2018-05-14 12:53:11 +00002474 LLVM_DEBUG(dbgs() << "ASAN instrumenting:\n" << F << "\n");
Etienne Bergeron752f8832016-09-14 17:18:37 +00002475
2476 initializeCallbacks(*F.getParent());
2477 DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree();
Bill Wendlingc9b22d72012-10-09 07:45:08 +00002478
Reid Kleckner2f907552015-07-21 17:40:14 +00002479 FunctionStateRAII CleanupObj(this);
2480
Etienne Bergeron0ca05682016-09-30 17:46:32 +00002481 maybeInsertDynamicShadowAtFunctionEntry(F);
2482
Reid Kleckner2f907552015-07-21 17:40:14 +00002483 // We can't instrument allocas used with llvm.localescape. Only static allocas
2484 // can be passed to that intrinsic.
2485 markEscapedLocalAllocas(F);
2486
Bill Wendlingc9b22d72012-10-09 07:45:08 +00002487 // We want to instrument every address only once per basic block (unless there
2488 // are calls between uses).
Florian Hahna1cc8482018-06-12 11:16:56 +00002489 SmallPtrSet<Value *, 16> TempsToInstrument;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002490 SmallVector<Instruction *, 16> ToInstrument;
2491 SmallVector<Instruction *, 8> NoReturnCalls;
2492 SmallVector<BasicBlock *, 16> AllBlocks;
2493 SmallVector<Instruction *, 16> PointerComparisonsOrSubtracts;
Kostya Serebryany9f5213f2013-06-26 09:18:17 +00002494 int NumAllocas = 0;
Kostya Serebryany90241602012-05-30 09:04:06 +00002495 bool IsWrite;
Kostya Serebryanyc7895a82014-05-23 11:52:07 +00002496 unsigned Alignment;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002497 uint64_t TypeSize;
Marcin Koscielnicki3feda222016-06-18 10:10:37 +00002498 const TargetLibraryInfo *TLI =
2499 &getAnalysis<TargetLibraryInfoWrapperPass>().getTLI();
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002500
2501 // Fill the set of memory operations to instrument.
Alexey Samsonova02e6642014-05-29 18:40:48 +00002502 for (auto &BB : F) {
2503 AllBlocks.push_back(&BB);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002504 TempsToInstrument.clear();
Kostya Serebryanyc387ca72012-06-28 09:34:41 +00002505 int NumInsnsPerBB = 0;
Alexey Samsonova02e6642014-05-29 18:40:48 +00002506 for (auto &Inst : BB) {
2507 if (LooksLikeCodeInBug11395(&Inst)) return false;
Filipe Cabecinhasdd968872016-12-14 21:57:04 +00002508 Value *MaybeMask = nullptr;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002509 if (Value *Addr = isInterestingMemoryAccess(&Inst, &IsWrite, &TypeSize,
Filipe Cabecinhasdd968872016-12-14 21:57:04 +00002510 &Alignment, &MaybeMask)) {
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002511 if (ClOpt && ClOptSameTemp) {
Filipe Cabecinhasdd968872016-12-14 21:57:04 +00002512 // If we have a mask, skip instrumentation if we've already
2513 // instrumented the full object. But don't add to TempsToInstrument
2514 // because we might get another load/store with a different mask.
2515 if (MaybeMask) {
2516 if (TempsToInstrument.count(Addr))
2517 continue; // We've seen this (whole) temp in the current BB.
2518 } else {
2519 if (!TempsToInstrument.insert(Addr).second)
2520 continue; // We've seen this temp in the current BB.
2521 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002522 }
Kostya Serebryanycb3f6e12014-02-27 13:13:59 +00002523 } else if (ClInvalidPointerPairs &&
Alexey Samsonova02e6642014-05-29 18:40:48 +00002524 isInterestingPointerComparisonOrSubtraction(&Inst)) {
2525 PointerComparisonsOrSubtracts.push_back(&Inst);
Kostya Serebryany796f6552014-02-27 12:45:36 +00002526 continue;
Alexey Samsonova02e6642014-05-29 18:40:48 +00002527 } else if (isa<MemIntrinsic>(Inst)) {
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002528 // ok, take it.
2529 } else {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002530 if (isa<AllocaInst>(Inst)) NumAllocas++;
Alexey Samsonova02e6642014-05-29 18:40:48 +00002531 CallSite CS(&Inst);
Kostya Serebryany699ac282013-02-20 12:35:15 +00002532 if (CS) {
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002533 // A call inside BB.
2534 TempsToInstrument.clear();
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002535 if (CS.doesNotReturn()) NoReturnCalls.push_back(CS.getInstruction());
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002536 }
Marcin Koscielnicki3feda222016-06-18 10:10:37 +00002537 if (CallInst *CI = dyn_cast<CallInst>(&Inst))
2538 maybeMarkSanitizerLibraryCallNoBuiltin(CI, TLI);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002539 continue;
2540 }
Alexey Samsonova02e6642014-05-29 18:40:48 +00002541 ToInstrument.push_back(&Inst);
Kostya Serebryanyc387ca72012-06-28 09:34:41 +00002542 NumInsnsPerBB++;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002543 if (NumInsnsPerBB >= ClMaxInsnsToInstrumentPerBB) break;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002544 }
2545 }
2546
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002547 bool UseCalls =
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002548 (ClInstrumentationWithCallsThreshold >= 0 &&
2549 ToInstrument.size() > (unsigned)ClInstrumentationWithCallsThreshold);
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002550 const DataLayout &DL = F.getParent()->getDataLayout();
George Burgess IV56c7e882017-03-21 20:08:59 +00002551 ObjectSizeOpts ObjSizeOpts;
2552 ObjSizeOpts.RoundToAlign = true;
2553 ObjectSizeOffsetVisitor ObjSizeVis(DL, TLI, F.getContext(), ObjSizeOpts);
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002554
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002555 // Instrument.
2556 int NumInstrumented = 0;
Alexey Samsonova02e6642014-05-29 18:40:48 +00002557 for (auto Inst : ToInstrument) {
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002558 if (ClDebugMin < 0 || ClDebugMax < 0 ||
2559 (NumInstrumented >= ClDebugMin && NumInstrumented <= ClDebugMax)) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002560 if (isInterestingMemoryAccess(Inst, &IsWrite, &TypeSize, &Alignment))
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002561 instrumentMop(ObjSizeVis, Inst, UseCalls,
2562 F.getParent()->getDataLayout());
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002563 else
Kostya Serebryany94c81ca2014-04-21 11:50:42 +00002564 instrumentMemIntrinsic(cast<MemIntrinsic>(Inst));
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002565 }
2566 NumInstrumented++;
2567 }
2568
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00002569 FunctionStackPoisoner FSP(F, *this);
2570 bool ChangedStack = FSP.runOnFunction();
Kostya Serebryany154a54d2012-02-08 21:36:17 +00002571
2572 // We must unpoison the stack before every NoReturn call (throw, _exit, etc).
Hans Wennborg08b34a02017-11-13 23:47:58 +00002573 // See e.g. https://github.com/google/sanitizers/issues/37
Alexey Samsonova02e6642014-05-29 18:40:48 +00002574 for (auto CI : NoReturnCalls) {
Kostya Serebryany154a54d2012-02-08 21:36:17 +00002575 IRBuilder<> IRB(CI);
David Blaikieff6409d2015-05-18 22:13:54 +00002576 IRB.CreateCall(AsanHandleNoReturnFunc, {});
Kostya Serebryany154a54d2012-02-08 21:36:17 +00002577 }
2578
Alexey Samsonova02e6642014-05-29 18:40:48 +00002579 for (auto Inst : PointerComparisonsOrSubtracts) {
2580 instrumentPointerComparisonOrSubtraction(Inst);
Kostya Serebryany796f6552014-02-27 12:45:36 +00002581 NumInstrumented++;
2582 }
2583
Etienne Bergeron78582b22016-09-15 15:45:05 +00002584 if (NumInstrumented > 0 || ChangedStack || !NoReturnCalls.empty())
2585 FunctionModified = true;
Bob Wilsonda4147c2013-11-15 07:16:09 +00002586
Nicola Zaghend34e60c2018-05-14 12:53:11 +00002587 LLVM_DEBUG(dbgs() << "ASAN done instrumenting: " << FunctionModified << " "
2588 << F << "\n");
Kostya Serebryany9f5213f2013-06-26 09:18:17 +00002589
Etienne Bergeron78582b22016-09-15 15:45:05 +00002590 return FunctionModified;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002591}
2592
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00002593// Workaround for bug 11395: we don't want to instrument stack in functions
2594// with large assembly blobs (32-bit only), otherwise reg alloc may crash.
2595// FIXME: remove once the bug 11395 is fixed.
2596bool AddressSanitizer::LooksLikeCodeInBug11395(Instruction *I) {
2597 if (LongSize != 32) return false;
2598 CallInst *CI = dyn_cast<CallInst>(I);
2599 if (!CI || !CI->isInlineAsm()) return false;
2600 if (CI->getNumArgOperands() <= 5) return false;
2601 // We have inline assembly with quite a few arguments.
2602 return true;
2603}
2604
2605void FunctionStackPoisoner::initializeCallbacks(Module &M) {
2606 IRBuilder<> IRB(*C);
Kostya Serebryany6805de52013-09-10 13:16:56 +00002607 for (int i = 0; i <= kMaxAsanStackMallocSizeClass; i++) {
2608 std::string Suffix = itostr(i);
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00002609 AsanStackMallocFunc[i] = checkSanitizerInterfaceFunction(
2610 M.getOrInsertFunction(kAsanStackMallocNameTemplate + Suffix, IntptrTy,
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002611 IntptrTy));
Ismail Pazarbasi198d6d52015-04-06 21:09:08 +00002612 AsanStackFreeFunc[i] = checkSanitizerInterfaceFunction(
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002613 M.getOrInsertFunction(kAsanStackFreeNameTemplate + Suffix,
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002614 IRB.getVoidTy(), IntptrTy, IntptrTy));
Kostya Serebryany6805de52013-09-10 13:16:56 +00002615 }
Vitaly Buka79b75d32016-06-09 23:05:35 +00002616 if (ASan.UseAfterScope) {
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00002617 AsanPoisonStackMemoryFunc = checkSanitizerInterfaceFunction(
2618 M.getOrInsertFunction(kAsanPoisonStackMemoryName, IRB.getVoidTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002619 IntptrTy, IntptrTy));
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00002620 AsanUnpoisonStackMemoryFunc = checkSanitizerInterfaceFunction(
2621 M.getOrInsertFunction(kAsanUnpoisonStackMemoryName, IRB.getVoidTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002622 IntptrTy, IntptrTy));
Vitaly Buka79b75d32016-06-09 23:05:35 +00002623 }
2624
Vitaly Buka8e1906e2016-10-18 18:04:59 +00002625 for (size_t Val : {0x00, 0xf1, 0xf2, 0xf3, 0xf5, 0xf8}) {
2626 std::ostringstream Name;
2627 Name << kAsanSetShadowPrefix;
2628 Name << std::setw(2) << std::setfill('0') << std::hex << Val;
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00002629 AsanSetShadowFunc[Val] =
2630 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002631 Name.str(), IRB.getVoidTy(), IntptrTy, IntptrTy));
Vitaly Buka3455b9b2016-08-20 18:34:39 +00002632 }
2633
Yury Gribov98b18592015-05-28 07:51:49 +00002634 AsanAllocaPoisonFunc = checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002635 kAsanAllocaPoison, IRB.getVoidTy(), IntptrTy, IntptrTy));
Yury Gribov98b18592015-05-28 07:51:49 +00002636 AsanAllocasUnpoisonFunc =
2637 checkSanitizerInterfaceFunction(M.getOrInsertFunction(
Serge Guelton59a2d7b2017-04-11 15:01:18 +00002638 kAsanAllocasUnpoison, IRB.getVoidTy(), IntptrTy, IntptrTy));
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00002639}
2640
Vitaly Buka793913c2016-08-29 18:17:21 +00002641void FunctionStackPoisoner::copyToShadowInline(ArrayRef<uint8_t> ShadowMask,
2642 ArrayRef<uint8_t> ShadowBytes,
2643 size_t Begin, size_t End,
2644 IRBuilder<> &IRB,
2645 Value *ShadowBase) {
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002646 if (Begin >= End)
2647 return;
Vitaly Buka186280d2016-08-20 18:34:36 +00002648
2649 const size_t LargestStoreSizeInBytes =
2650 std::min<size_t>(sizeof(uint64_t), ASan.LongSize / 8);
2651
2652 const bool IsLittleEndian = F.getParent()->getDataLayout().isLittleEndian();
2653
2654 // Poison given range in shadow using larges store size with out leading and
Vitaly Buka793913c2016-08-29 18:17:21 +00002655 // trailing zeros in ShadowMask. Zeros never change, so they need neither
2656 // poisoning nor up-poisoning. Still we don't mind if some of them get into a
2657 // middle of a store.
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002658 for (size_t i = Begin; i < End;) {
Vitaly Buka793913c2016-08-29 18:17:21 +00002659 if (!ShadowMask[i]) {
2660 assert(!ShadowBytes[i]);
Vitaly Buka186280d2016-08-20 18:34:36 +00002661 ++i;
2662 continue;
2663 }
2664
2665 size_t StoreSizeInBytes = LargestStoreSizeInBytes;
2666 // Fit store size into the range.
2667 while (StoreSizeInBytes > End - i)
2668 StoreSizeInBytes /= 2;
2669
2670 // Minimize store size by trimming trailing zeros.
Vitaly Buka793913c2016-08-29 18:17:21 +00002671 for (size_t j = StoreSizeInBytes - 1; j && !ShadowMask[i + j]; --j) {
Vitaly Buka186280d2016-08-20 18:34:36 +00002672 while (j <= StoreSizeInBytes / 2)
2673 StoreSizeInBytes /= 2;
2674 }
2675
2676 uint64_t Val = 0;
Vitaly Buka793913c2016-08-29 18:17:21 +00002677 for (size_t j = 0; j < StoreSizeInBytes; j++) {
2678 if (IsLittleEndian)
2679 Val |= (uint64_t)ShadowBytes[i + j] << (8 * j);
2680 else
2681 Val = (Val << 8) | ShadowBytes[i + j];
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002682 }
Vitaly Buka186280d2016-08-20 18:34:36 +00002683
2684 Value *Ptr = IRB.CreateAdd(ShadowBase, ConstantInt::get(IntptrTy, i));
2685 Value *Poison = IRB.getIntN(StoreSizeInBytes * 8, Val);
Vitaly Buka0672a272016-08-22 04:16:14 +00002686 IRB.CreateAlignedStore(
2687 Poison, IRB.CreateIntToPtr(Ptr, Poison->getType()->getPointerTo()), 1);
Vitaly Buka186280d2016-08-20 18:34:36 +00002688
2689 i += StoreSizeInBytes;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002690 }
2691}
2692
Vitaly Buka793913c2016-08-29 18:17:21 +00002693void FunctionStackPoisoner::copyToShadow(ArrayRef<uint8_t> ShadowMask,
2694 ArrayRef<uint8_t> ShadowBytes,
2695 IRBuilder<> &IRB, Value *ShadowBase) {
2696 copyToShadow(ShadowMask, ShadowBytes, 0, ShadowMask.size(), IRB, ShadowBase);
2697}
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002698
Vitaly Buka793913c2016-08-29 18:17:21 +00002699void FunctionStackPoisoner::copyToShadow(ArrayRef<uint8_t> ShadowMask,
2700 ArrayRef<uint8_t> ShadowBytes,
2701 size_t Begin, size_t End,
2702 IRBuilder<> &IRB, Value *ShadowBase) {
2703 assert(ShadowMask.size() == ShadowBytes.size());
2704 size_t Done = Begin;
2705 for (size_t i = Begin, j = Begin + 1; i < End; i = j++) {
2706 if (!ShadowMask[i]) {
2707 assert(!ShadowBytes[i]);
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002708 continue;
Vitaly Buka793913c2016-08-29 18:17:21 +00002709 }
2710 uint8_t Val = ShadowBytes[i];
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002711 if (!AsanSetShadowFunc[Val])
2712 continue;
2713
2714 // Skip same values.
Vitaly Buka793913c2016-08-29 18:17:21 +00002715 for (; j < End && ShadowMask[j] && Val == ShadowBytes[j]; ++j) {
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002716 }
2717
2718 if (j - i >= ClMaxInlinePoisoningSize) {
Vitaly Buka793913c2016-08-29 18:17:21 +00002719 copyToShadowInline(ShadowMask, ShadowBytes, Done, i, IRB, ShadowBase);
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002720 IRB.CreateCall(AsanSetShadowFunc[Val],
2721 {IRB.CreateAdd(ShadowBase, ConstantInt::get(IntptrTy, i)),
2722 ConstantInt::get(IntptrTy, j - i)});
2723 Done = j;
2724 }
2725 }
2726
Vitaly Buka793913c2016-08-29 18:17:21 +00002727 copyToShadowInline(ShadowMask, ShadowBytes, Done, End, IRB, ShadowBase);
Vitaly Buka1f9e1352016-08-20 20:23:50 +00002728}
2729
Kostya Serebryany6805de52013-09-10 13:16:56 +00002730// Fake stack allocator (asan_fake_stack.h) has 11 size classes
2731// for every power of 2 from kMinStackMallocSize to kMaxAsanStackMallocSizeClass
2732static int StackMallocSizeClass(uint64_t LocalStackSize) {
2733 assert(LocalStackSize <= kMaxStackMallocSize);
2734 uint64_t MaxSize = kMinStackMallocSize;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002735 for (int i = 0;; i++, MaxSize *= 2)
2736 if (LocalStackSize <= MaxSize) return i;
Kostya Serebryany6805de52013-09-10 13:16:56 +00002737 llvm_unreachable("impossible LocalStackSize");
2738}
2739
Vitaly Buka74443f02017-07-18 22:28:03 +00002740void FunctionStackPoisoner::copyArgsPassedByValToAllocas() {
Matt Morehouse49e5aca2017-08-09 17:59:43 +00002741 Instruction *CopyInsertPoint = &F.front().front();
2742 if (CopyInsertPoint == ASan.LocalDynamicShadow) {
2743 // Insert after the dynamic shadow location is determined
2744 CopyInsertPoint = CopyInsertPoint->getNextNode();
2745 assert(CopyInsertPoint);
2746 }
2747 IRBuilder<> IRB(CopyInsertPoint);
Vitaly Buka74443f02017-07-18 22:28:03 +00002748 const DataLayout &DL = F.getParent()->getDataLayout();
2749 for (Argument &Arg : F.args()) {
2750 if (Arg.hasByValAttr()) {
2751 Type *Ty = Arg.getType()->getPointerElementType();
2752 unsigned Align = Arg.getParamAlignment();
2753 if (Align == 0) Align = DL.getABITypeAlignment(Ty);
2754
Benjamin Kramer3a13ed62017-12-28 16:58:54 +00002755 AllocaInst *AI = IRB.CreateAlloca(
2756 Ty, nullptr,
2757 (Arg.hasName() ? Arg.getName() : "Arg" + Twine(Arg.getArgNo())) +
2758 ".byval");
Vitaly Buka74443f02017-07-18 22:28:03 +00002759 AI->setAlignment(Align);
2760 Arg.replaceAllUsesWith(AI);
2761
2762 uint64_t AllocSize = DL.getTypeAllocSize(Ty);
Daniel Neilsona98d9d92018-02-08 21:26:12 +00002763 IRB.CreateMemCpy(AI, Align, &Arg, Align, AllocSize);
Vitaly Buka74443f02017-07-18 22:28:03 +00002764 }
2765 }
2766}
2767
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002768PHINode *FunctionStackPoisoner::createPHI(IRBuilder<> &IRB, Value *Cond,
2769 Value *ValueIfTrue,
2770 Instruction *ThenTerm,
2771 Value *ValueIfFalse) {
2772 PHINode *PHI = IRB.CreatePHI(IntptrTy, 2);
2773 BasicBlock *CondBlock = cast<Instruction>(Cond)->getParent();
2774 PHI->addIncoming(ValueIfFalse, CondBlock);
2775 BasicBlock *ThenBlock = ThenTerm->getParent();
2776 PHI->addIncoming(ValueIfTrue, ThenBlock);
2777 return PHI;
2778}
2779
2780Value *FunctionStackPoisoner::createAllocaForLayout(
2781 IRBuilder<> &IRB, const ASanStackFrameLayout &L, bool Dynamic) {
2782 AllocaInst *Alloca;
2783 if (Dynamic) {
2784 Alloca = IRB.CreateAlloca(IRB.getInt8Ty(),
2785 ConstantInt::get(IRB.getInt64Ty(), L.FrameSize),
2786 "MyAlloca");
2787 } else {
2788 Alloca = IRB.CreateAlloca(ArrayType::get(IRB.getInt8Ty(), L.FrameSize),
2789 nullptr, "MyAlloca");
2790 assert(Alloca->isStaticAlloca());
2791 }
2792 assert((ClRealignStack & (ClRealignStack - 1)) == 0);
2793 size_t FrameAlignment = std::max(L.FrameAlignment, (size_t)ClRealignStack);
2794 Alloca->setAlignment(FrameAlignment);
2795 return IRB.CreatePointerCast(Alloca, IntptrTy);
2796}
2797
Yury Gribov98b18592015-05-28 07:51:49 +00002798void FunctionStackPoisoner::createDynamicAllocasInitStorage() {
2799 BasicBlock &FirstBB = *F.begin();
2800 IRBuilder<> IRB(dyn_cast<Instruction>(FirstBB.begin()));
2801 DynamicAllocaLayout = IRB.CreateAlloca(IntptrTy, nullptr);
2802 IRB.CreateStore(Constant::getNullValue(IntptrTy), DynamicAllocaLayout);
2803 DynamicAllocaLayout->setAlignment(32);
2804}
2805
Vitaly Buka5b4f1212016-08-20 17:22:27 +00002806void FunctionStackPoisoner::processDynamicAllocas() {
2807 if (!ClInstrumentDynamicAllocas || DynamicAllocaVec.empty()) {
2808 assert(DynamicAllocaPoisonCallVec.empty());
2809 return;
2810 }
Yury Gribov55441bb2014-11-21 10:29:50 +00002811
Vitaly Buka5b4f1212016-08-20 17:22:27 +00002812 // Insert poison calls for lifetime intrinsics for dynamic allocas.
2813 for (const auto &APC : DynamicAllocaPoisonCallVec) {
Alexey Samsonov8daaf8b2015-10-22 19:51:59 +00002814 assert(APC.InsBefore);
2815 assert(APC.AI);
Vitaly Bukab451f1b2016-06-09 23:31:59 +00002816 assert(ASan.isInterestingAlloca(*APC.AI));
Vitaly Buka5b4f1212016-08-20 17:22:27 +00002817 assert(!APC.AI->isStaticAlloca());
Vitaly Bukab451f1b2016-06-09 23:31:59 +00002818
Alexey Samsonov8daaf8b2015-10-22 19:51:59 +00002819 IRBuilder<> IRB(APC.InsBefore);
2820 poisonAlloca(APC.AI, APC.Size, IRB, APC.DoPoison);
Vitaly Bukab451f1b2016-06-09 23:31:59 +00002821 // Dynamic allocas will be unpoisoned unconditionally below in
2822 // unpoisonDynamicAllocas.
2823 // Flag that we need unpoison static allocas.
Alexey Samsonov8daaf8b2015-10-22 19:51:59 +00002824 }
2825
Vitaly Buka5b4f1212016-08-20 17:22:27 +00002826 // Handle dynamic allocas.
2827 createDynamicAllocasInitStorage();
2828 for (auto &AI : DynamicAllocaVec)
2829 handleDynamicAllocaCall(AI);
2830 unpoisonDynamicAllocas();
2831}
Yury Gribov98b18592015-05-28 07:51:49 +00002832
Vitaly Buka5b4f1212016-08-20 17:22:27 +00002833void FunctionStackPoisoner::processStaticAllocas() {
2834 if (AllocaVec.empty()) {
2835 assert(StaticAllocaPoisonCallVec.empty());
2836 return;
Kuba Breckaf5875d32015-02-24 09:47:05 +00002837 }
Yury Gribov55441bb2014-11-21 10:29:50 +00002838
Kostya Serebryany6805de52013-09-10 13:16:56 +00002839 int StackMallocIdx = -1;
Alexey Samsonov773e8c32015-06-26 00:00:47 +00002840 DebugLoc EntryDebugLocation;
Pete Cooperadebb932016-03-11 02:14:16 +00002841 if (auto SP = F.getSubprogram())
Alexey Samsonov773e8c32015-06-26 00:00:47 +00002842 EntryDebugLocation = DebugLoc::get(SP->getScopeLine(), 0, SP);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002843
2844 Instruction *InsBefore = AllocaVec[0];
2845 IRBuilder<> IRB(InsBefore);
Evgeniy Stepanovaaf4bb22014-05-14 10:30:15 +00002846 IRB.SetCurrentDebugLocation(EntryDebugLocation);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002847
Kuba Brecka8ec94ea2015-07-22 10:25:38 +00002848 // Make sure non-instrumented allocas stay in the entry block. Otherwise,
2849 // debug info is broken, because only entry-block allocas are treated as
2850 // regular stack slots.
2851 auto InsBeforeB = InsBefore->getParent();
2852 assert(InsBeforeB == &F.getEntryBlock());
Kuba Breckaa49dcbb2016-11-08 21:30:41 +00002853 for (auto *AI : StaticAllocasToMoveUp)
2854 if (AI->getParent() == InsBeforeB)
2855 AI->moveBefore(InsBefore);
Kuba Brecka37a5ffa2015-07-17 06:29:57 +00002856
Reid Kleckner2f907552015-07-21 17:40:14 +00002857 // If we have a call to llvm.localescape, keep it in the entry block.
2858 if (LocalEscapeCall) LocalEscapeCall->moveBefore(InsBefore);
2859
Kostya Serebryany4fb78012013-12-06 09:00:17 +00002860 SmallVector<ASanStackVariableDescription, 16> SVD;
2861 SVD.reserve(AllocaVec.size());
Alexey Samsonova02e6642014-05-29 18:40:48 +00002862 for (AllocaInst *AI : AllocaVec) {
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002863 ASanStackVariableDescription D = {AI->getName().data(),
Vitaly Buka21a9e572016-07-28 22:50:50 +00002864 ASan.getAllocaSizeInBytes(*AI),
Vitaly Bukad88e5202016-10-18 23:29:41 +00002865 0,
Vitaly Bukaf9fd63a2016-08-20 16:48:24 +00002866 AI->getAlignment(),
2867 AI,
Vitaly Bukad88e5202016-10-18 23:29:41 +00002868 0,
Vitaly Bukaf9fd63a2016-08-20 16:48:24 +00002869 0};
Kostya Serebryany4fb78012013-12-06 09:00:17 +00002870 SVD.push_back(D);
2871 }
Vitaly Buka5910a922016-10-18 23:29:52 +00002872
Kostya Serebryany4fb78012013-12-06 09:00:17 +00002873 // Minimal header size (left redzone) is 4 pointers,
2874 // i.e. 32 bytes on 64-bit platforms and 16 bytes in 32-bit platforms.
Walter Lee2a2b69e2017-11-16 12:57:19 +00002875 size_t Granularity = 1ULL << Mapping.Scale;
2876 size_t MinHeaderSize = std::max((size_t)ASan.LongSize / 2, Granularity);
Vitaly Bukadb331d82016-08-29 17:41:29 +00002877 const ASanStackFrameLayout &L =
Walter Lee2a2b69e2017-11-16 12:57:19 +00002878 ComputeASanStackFrameLayout(SVD, Granularity, MinHeaderSize);
Vitaly Buka793913c2016-08-29 18:17:21 +00002879
Vitaly Buka5910a922016-10-18 23:29:52 +00002880 // Build AllocaToSVDMap for ASanStackVariableDescription lookup.
2881 DenseMap<const AllocaInst *, ASanStackVariableDescription *> AllocaToSVDMap;
2882 for (auto &Desc : SVD)
2883 AllocaToSVDMap[Desc.AI] = &Desc;
2884
2885 // Update SVD with information from lifetime intrinsics.
2886 for (const auto &APC : StaticAllocaPoisonCallVec) {
2887 assert(APC.InsBefore);
2888 assert(APC.AI);
2889 assert(ASan.isInterestingAlloca(*APC.AI));
2890 assert(APC.AI->isStaticAlloca());
2891
2892 ASanStackVariableDescription &Desc = *AllocaToSVDMap[APC.AI];
2893 Desc.LifetimeSize = Desc.Size;
2894 if (const DILocation *FnLoc = EntryDebugLocation.get()) {
2895 if (const DILocation *LifetimeLoc = APC.InsBefore->getDebugLoc().get()) {
2896 if (LifetimeLoc->getFile() == FnLoc->getFile())
2897 if (unsigned Line = LifetimeLoc->getLine())
2898 Desc.Line = std::min(Desc.Line ? Desc.Line : Line, Line);
2899 }
2900 }
2901 }
2902
2903 auto DescriptionString = ComputeASanStackFrameDescription(SVD);
Nicola Zaghend34e60c2018-05-14 12:53:11 +00002904 LLVM_DEBUG(dbgs() << DescriptionString << " --- " << L.FrameSize << "\n");
Kostya Serebryany4fb78012013-12-06 09:00:17 +00002905 uint64_t LocalStackSize = L.FrameSize;
Alexander Potapenkob9b73ef2015-06-19 12:19:07 +00002906 bool DoStackMalloc = ClUseAfterReturn && !ASan.CompileKernel &&
2907 LocalStackSize <= kMaxStackMallocSize;
Alexey Samsonov869a5ff2015-07-29 19:36:08 +00002908 bool DoDynamicAlloca = ClDynamicAllocaStack;
2909 // Don't do dynamic alloca or stack malloc if:
2910 // 1) There is inline asm: too often it makes assumptions on which registers
2911 // are available.
2912 // 2) There is a returns_twice call (typically setjmp), which is
2913 // optimization-hostile, and doesn't play well with introduced indirect
2914 // register-relative calculation of local variable addresses.
2915 DoDynamicAlloca &= !HasNonEmptyInlineAsm && !HasReturnsTwiceCall;
2916 DoStackMalloc &= !HasNonEmptyInlineAsm && !HasReturnsTwiceCall;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002917
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002918 Value *StaticAlloca =
2919 DoDynamicAlloca ? nullptr : createAllocaForLayout(IRB, L, false);
2920
2921 Value *FakeStack;
2922 Value *LocalStackBase;
Adrian Prantl3c6c14d2017-12-11 20:43:21 +00002923 Value *LocalStackBaseAlloca;
2924 bool Deref;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002925
2926 if (DoStackMalloc) {
Adrian Prantl3c6c14d2017-12-11 20:43:21 +00002927 LocalStackBaseAlloca =
2928 IRB.CreateAlloca(IntptrTy, nullptr, "asan_local_stack_base");
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002929 // void *FakeStack = __asan_option_detect_stack_use_after_return
2930 // ? __asan_stack_malloc_N(LocalStackSize)
2931 // : nullptr;
2932 // void *LocalStackBase = (FakeStack) ? FakeStack : alloca(LocalStackSize);
Vitaly Buka7b8ed4f2016-06-02 00:06:42 +00002933 Constant *OptionDetectUseAfterReturn = F.getParent()->getOrInsertGlobal(
2934 kAsanOptionDetectUseAfterReturn, IRB.getInt32Ty());
2935 Value *UseAfterReturnIsEnabled =
2936 IRB.CreateICmpNE(IRB.CreateLoad(OptionDetectUseAfterReturn),
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002937 Constant::getNullValue(IRB.getInt32Ty()));
2938 Instruction *Term =
Vitaly Buka7b8ed4f2016-06-02 00:06:42 +00002939 SplitBlockAndInsertIfThen(UseAfterReturnIsEnabled, InsBefore, false);
Kostya Serebryanyf3223822013-09-18 14:07:14 +00002940 IRBuilder<> IRBIf(Term);
Evgeniy Stepanovaaf4bb22014-05-14 10:30:15 +00002941 IRBIf.SetCurrentDebugLocation(EntryDebugLocation);
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002942 StackMallocIdx = StackMallocSizeClass(LocalStackSize);
2943 assert(StackMallocIdx <= kMaxAsanStackMallocSizeClass);
2944 Value *FakeStackValue =
2945 IRBIf.CreateCall(AsanStackMallocFunc[StackMallocIdx],
2946 ConstantInt::get(IntptrTy, LocalStackSize));
Kostya Serebryanyf3223822013-09-18 14:07:14 +00002947 IRB.SetInsertPoint(InsBefore);
Evgeniy Stepanovaaf4bb22014-05-14 10:30:15 +00002948 IRB.SetCurrentDebugLocation(EntryDebugLocation);
Vitaly Buka7b8ed4f2016-06-02 00:06:42 +00002949 FakeStack = createPHI(IRB, UseAfterReturnIsEnabled, FakeStackValue, Term,
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002950 ConstantInt::get(IntptrTy, 0));
2951
2952 Value *NoFakeStack =
2953 IRB.CreateICmpEQ(FakeStack, Constant::getNullValue(IntptrTy));
2954 Term = SplitBlockAndInsertIfThen(NoFakeStack, InsBefore, false);
2955 IRBIf.SetInsertPoint(Term);
2956 IRBIf.SetCurrentDebugLocation(EntryDebugLocation);
2957 Value *AllocaValue =
2958 DoDynamicAlloca ? createAllocaForLayout(IRBIf, L, true) : StaticAlloca;
Adrian Prantl3c6c14d2017-12-11 20:43:21 +00002959
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002960 IRB.SetInsertPoint(InsBefore);
2961 IRB.SetCurrentDebugLocation(EntryDebugLocation);
2962 LocalStackBase = createPHI(IRB, NoFakeStack, AllocaValue, Term, FakeStack);
Adrian Prantl3c6c14d2017-12-11 20:43:21 +00002963 IRB.SetCurrentDebugLocation(EntryDebugLocation);
2964 IRB.CreateStore(LocalStackBase, LocalStackBaseAlloca);
2965 Deref = true;
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00002966 } else {
2967 // void *FakeStack = nullptr;
2968 // void *LocalStackBase = alloca(LocalStackSize);
2969 FakeStack = ConstantInt::get(IntptrTy, 0);
2970 LocalStackBase =
2971 DoDynamicAlloca ? createAllocaForLayout(IRB, L, true) : StaticAlloca;
Adrian Prantl3c6c14d2017-12-11 20:43:21 +00002972 LocalStackBaseAlloca = LocalStackBase;
2973 Deref = false;
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002974 }
2975
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002976 // Replace Alloca instructions with base+offset.
Alexey Samsonova02e6642014-05-29 18:40:48 +00002977 for (const auto &Desc : SVD) {
2978 AllocaInst *AI = Desc.AI;
Adrian Prantl3c6c14d2017-12-11 20:43:21 +00002979 replaceDbgDeclareForAlloca(AI, LocalStackBaseAlloca, DIB, Deref,
2980 Desc.Offset, DIExpression::NoDeref);
Alexey Samsonov261177a2012-12-04 01:34:23 +00002981 Value *NewAllocaPtr = IRB.CreateIntToPtr(
Alexey Samsonova02e6642014-05-29 18:40:48 +00002982 IRB.CreateAdd(LocalStackBase, ConstantInt::get(IntptrTy, Desc.Offset)),
Kostya Serebryany4fb78012013-12-06 09:00:17 +00002983 AI->getType());
Alexey Samsonov261177a2012-12-04 01:34:23 +00002984 AI->replaceAllUsesWith(NewAllocaPtr);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002985 }
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002986
Kostya Serebryanycdd35a92013-03-22 10:37:20 +00002987 // The left-most redzone has enough space for at least 4 pointers.
2988 // Write the Magic value to redzone[0].
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00002989 Value *BasePlus0 = IRB.CreateIntToPtr(LocalStackBase, IntptrPtrTy);
2990 IRB.CreateStore(ConstantInt::get(IntptrTy, kCurrentStackFrameMagic),
2991 BasePlus0);
Kostya Serebryanycdd35a92013-03-22 10:37:20 +00002992 // Write the frame description constant to redzone[1].
2993 Value *BasePlus1 = IRB.CreateIntToPtr(
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002994 IRB.CreateAdd(LocalStackBase,
2995 ConstantInt::get(IntptrTy, ASan.LongSize / 8)),
2996 IntptrPtrTy);
Alexey Samsonov9bdb63a2012-11-02 12:20:34 +00002997 GlobalVariable *StackDescriptionGlobal =
Vitaly Buka5910a922016-10-18 23:29:52 +00002998 createPrivateGlobalForString(*F.getParent(), DescriptionString,
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00002999 /*AllowMerging*/ true);
3000 Value *Description = IRB.CreatePointerCast(StackDescriptionGlobal, IntptrTy);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003001 IRB.CreateStore(Description, BasePlus1);
Kostya Serebryanycdd35a92013-03-22 10:37:20 +00003002 // Write the PC to redzone[2].
3003 Value *BasePlus2 = IRB.CreateIntToPtr(
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003004 IRB.CreateAdd(LocalStackBase,
3005 ConstantInt::get(IntptrTy, 2 * ASan.LongSize / 8)),
3006 IntptrPtrTy);
Kostya Serebryanycdd35a92013-03-22 10:37:20 +00003007 IRB.CreateStore(IRB.CreatePointerCast(&F, IntptrTy), BasePlus2);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003008
Vitaly Buka793913c2016-08-29 18:17:21 +00003009 const auto &ShadowAfterScope = GetShadowBytesAfterScope(SVD, L);
3010
3011 // Poison the stack red zones at the entry.
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003012 Value *ShadowBase = ASan.memToShadow(LocalStackBase, IRB);
Vitaly Buka793913c2016-08-29 18:17:21 +00003013 // As mask we must use most poisoned case: red zones and after scope.
3014 // As bytes we can use either the same or just red zones only.
3015 copyToShadow(ShadowAfterScope, ShadowAfterScope, IRB, ShadowBase);
3016
Vitaly Buka8e1906e2016-10-18 18:04:59 +00003017 if (!StaticAllocaPoisonCallVec.empty()) {
Vitaly Buka793913c2016-08-29 18:17:21 +00003018 const auto &ShadowInScope = GetShadowBytes(SVD, L);
3019
3020 // Poison static allocas near lifetime intrinsics.
3021 for (const auto &APC : StaticAllocaPoisonCallVec) {
Vitaly Buka5910a922016-10-18 23:29:52 +00003022 const ASanStackVariableDescription &Desc = *AllocaToSVDMap[APC.AI];
Vitaly Buka793913c2016-08-29 18:17:21 +00003023 assert(Desc.Offset % L.Granularity == 0);
3024 size_t Begin = Desc.Offset / L.Granularity;
3025 size_t End = Begin + (APC.Size + L.Granularity - 1) / L.Granularity;
3026
3027 IRBuilder<> IRB(APC.InsBefore);
3028 copyToShadow(ShadowAfterScope,
3029 APC.DoPoison ? ShadowAfterScope : ShadowInScope, Begin, End,
3030 IRB, ShadowBase);
3031 }
3032 }
3033
3034 SmallVector<uint8_t, 64> ShadowClean(ShadowAfterScope.size(), 0);
Vitaly Buka793913c2016-08-29 18:17:21 +00003035 SmallVector<uint8_t, 64> ShadowAfterReturn;
Vitaly Buka186280d2016-08-20 18:34:36 +00003036
Kostya Serebryany530e2072013-12-23 14:15:08 +00003037 // (Un)poison the stack before all ret instructions.
Alexey Samsonova02e6642014-05-29 18:40:48 +00003038 for (auto Ret : RetVec) {
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003039 IRBuilder<> IRBRet(Ret);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003040 // Mark the current frame as retired.
3041 IRBRet.CreateStore(ConstantInt::get(IntptrTy, kRetiredStackFrameMagic),
3042 BasePlus0);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003043 if (DoStackMalloc) {
Kostya Serebryany6805de52013-09-10 13:16:56 +00003044 assert(StackMallocIdx >= 0);
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00003045 // if FakeStack != 0 // LocalStackBase == FakeStack
Kostya Serebryany530e2072013-12-23 14:15:08 +00003046 // // In use-after-return mode, poison the whole stack frame.
3047 // if StackMallocIdx <= 4
3048 // // For small sizes inline the whole thing:
3049 // memset(ShadowBase, kAsanStackAfterReturnMagic, ShadowSize);
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00003050 // **SavedFlagPtr(FakeStack) = 0
Kostya Serebryany530e2072013-12-23 14:15:08 +00003051 // else
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00003052 // __asan_stack_free_N(FakeStack, LocalStackSize)
Kostya Serebryany530e2072013-12-23 14:15:08 +00003053 // else
3054 // <This is not a fake stack; unpoison the redzones>
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00003055 Value *Cmp =
3056 IRBRet.CreateICmpNE(FakeStack, Constant::getNullValue(IntptrTy));
Kostya Serebryany530e2072013-12-23 14:15:08 +00003057 TerminatorInst *ThenTerm, *ElseTerm;
3058 SplitBlockAndInsertIfThenElse(Cmp, Ret, &ThenTerm, &ElseTerm);
3059
3060 IRBuilder<> IRBPoison(ThenTerm);
Kostya Serebryanybc86efb2013-09-17 12:14:50 +00003061 if (StackMallocIdx <= 4) {
Kostya Serebryanybc86efb2013-09-17 12:14:50 +00003062 int ClassSize = kMinStackMallocSize << StackMallocIdx;
Vitaly Buka793913c2016-08-29 18:17:21 +00003063 ShadowAfterReturn.resize(ClassSize / L.Granularity,
3064 kAsanStackUseAfterReturnMagic);
3065 copyToShadow(ShadowAfterReturn, ShadowAfterReturn, IRBPoison,
3066 ShadowBase);
Kostya Serebryanybc86efb2013-09-17 12:14:50 +00003067 Value *SavedFlagPtrPtr = IRBPoison.CreateAdd(
Alexey Samsonov4b7f4132014-12-11 21:53:03 +00003068 FakeStack,
Kostya Serebryanybc86efb2013-09-17 12:14:50 +00003069 ConstantInt::get(IntptrTy, ClassSize - ASan.LongSize / 8));
3070 Value *SavedFlagPtr = IRBPoison.CreateLoad(
3071 IRBPoison.CreateIntToPtr(SavedFlagPtrPtr, IntptrPtrTy));
3072 IRBPoison.CreateStore(
3073 Constant::getNullValue(IRBPoison.getInt8Ty()),
3074 IRBPoison.CreateIntToPtr(SavedFlagPtr, IRBPoison.getInt8PtrTy()));
3075 } else {
3076 // For larger frames call __asan_stack_free_*.
David Blaikieff6409d2015-05-18 22:13:54 +00003077 IRBPoison.CreateCall(
3078 AsanStackFreeFunc[StackMallocIdx],
3079 {FakeStack, ConstantInt::get(IntptrTy, LocalStackSize)});
Kostya Serebryanybc86efb2013-09-17 12:14:50 +00003080 }
Kostya Serebryany530e2072013-12-23 14:15:08 +00003081
3082 IRBuilder<> IRBElse(ElseTerm);
Vitaly Buka8e1906e2016-10-18 18:04:59 +00003083 copyToShadow(ShadowAfterScope, ShadowClean, IRBElse, ShadowBase);
Kostya Serebryany530e2072013-12-23 14:15:08 +00003084 } else {
Vitaly Buka8e1906e2016-10-18 18:04:59 +00003085 copyToShadow(ShadowAfterScope, ShadowClean, IRBRet, ShadowBase);
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003086 }
3087 }
3088
Kostya Serebryany09959942012-10-19 06:20:53 +00003089 // We are done. Remove the old unused alloca instructions.
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003090 for (auto AI : AllocaVec) AI->eraseFromParent();
Kostya Serebryany6e6b03e2011-11-16 01:35:23 +00003091}
Alexey Samsonov261177a2012-12-04 01:34:23 +00003092
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003093void FunctionStackPoisoner::poisonAlloca(Value *V, uint64_t Size,
Jakub Staszak23ec6a92013-08-09 20:53:48 +00003094 IRBuilder<> &IRB, bool DoPoison) {
Alexey Samsonov261177a2012-12-04 01:34:23 +00003095 // For now just insert the call to ASan runtime.
3096 Value *AddrArg = IRB.CreatePointerCast(V, IntptrTy);
3097 Value *SizeArg = ConstantInt::get(IntptrTy, Size);
Alexander Potapenkof90556e2015-06-12 11:27:06 +00003098 IRB.CreateCall(
3099 DoPoison ? AsanPoisonStackMemoryFunc : AsanUnpoisonStackMemoryFunc,
3100 {AddrArg, SizeArg});
Alexey Samsonov261177a2012-12-04 01:34:23 +00003101}
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003102
3103// Handling llvm.lifetime intrinsics for a given %alloca:
3104// (1) collect all llvm.lifetime.xxx(%size, %value) describing the alloca.
3105// (2) if %size is constant, poison memory for llvm.lifetime.end (to detect
3106// invalid accesses) and unpoison it for llvm.lifetime.start (the memory
3107// could be poisoned by previous llvm.lifetime.end instruction, as the
3108// variable may go in and out of scope several times, e.g. in loops).
3109// (3) if we poisoned at least one %alloca in a function,
3110// unpoison the whole stack frame at function exit.
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003111
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00003112AllocaInst *FunctionStackPoisoner::findAllocaForValue(Value *V) {
3113 if (AllocaInst *AI = dyn_cast<AllocaInst>(V))
Etienne Bergeron9bd42812016-09-14 15:59:32 +00003114 // We're interested only in allocas we can handle.
Anna Zaks8ed1d812015-02-27 03:12:36 +00003115 return ASan.isInterestingAlloca(*AI) ? AI : nullptr;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00003116 // See if we've already calculated (or started to calculate) alloca for a
3117 // given value.
3118 AllocaForValueMapTy::iterator I = AllocaForValue.find(V);
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003119 if (I != AllocaForValue.end()) return I->second;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00003120 // Store 0 while we're calculating alloca for value V to avoid
3121 // infinite recursion if the value references itself.
Craig Topperf40110f2014-04-25 05:29:35 +00003122 AllocaForValue[V] = nullptr;
3123 AllocaInst *Res = nullptr;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00003124 if (CastInst *CI = dyn_cast<CastInst>(V))
3125 Res = findAllocaForValue(CI->getOperand(0));
3126 else if (PHINode *PN = dyn_cast<PHINode>(V)) {
Pete Cooper833f34d2015-05-12 20:05:31 +00003127 for (Value *IncValue : PN->incoming_values()) {
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00003128 // Allow self-referencing phi-nodes.
3129 if (IncValue == PN) continue;
3130 AllocaInst *IncValueAI = findAllocaForValue(IncValue);
3131 // AI for incoming values should exist and should all be equal.
Craig Topperf40110f2014-04-25 05:29:35 +00003132 if (IncValueAI == nullptr || (Res != nullptr && IncValueAI != Res))
3133 return nullptr;
Alexey Samsonov29dd7f22012-12-27 08:50:58 +00003134 Res = IncValueAI;
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003135 }
Vitaly Buka53054a72016-07-22 00:56:17 +00003136 } else if (GetElementPtrInst *EP = dyn_cast<GetElementPtrInst>(V)) {
3137 Res = findAllocaForValue(EP->getPointerOperand());
3138 } else {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00003139 LLVM_DEBUG(dbgs() << "Alloca search canceled on unknown instruction: " << *V
3140 << "\n");
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003141 }
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003142 if (Res) AllocaForValue[V] = Res;
Alexey Samsonov1e3f7ba2012-12-25 12:04:36 +00003143 return Res;
3144}
Yury Gribov55441bb2014-11-21 10:29:50 +00003145
Yury Gribov98b18592015-05-28 07:51:49 +00003146void FunctionStackPoisoner::handleDynamicAllocaCall(AllocaInst *AI) {
Yury Gribov55441bb2014-11-21 10:29:50 +00003147 IRBuilder<> IRB(AI);
3148
Yury Gribov55441bb2014-11-21 10:29:50 +00003149 const unsigned Align = std::max(kAllocaRzSize, AI->getAlignment());
3150 const uint64_t AllocaRedzoneMask = kAllocaRzSize - 1;
3151
3152 Value *Zero = Constant::getNullValue(IntptrTy);
3153 Value *AllocaRzSize = ConstantInt::get(IntptrTy, kAllocaRzSize);
3154 Value *AllocaRzMask = ConstantInt::get(IntptrTy, AllocaRedzoneMask);
Yury Gribov55441bb2014-11-21 10:29:50 +00003155
3156 // Since we need to extend alloca with additional memory to locate
3157 // redzones, and OldSize is number of allocated blocks with
3158 // ElementSize size, get allocated memory size in bytes by
3159 // OldSize * ElementSize.
Yury Gribov98b18592015-05-28 07:51:49 +00003160 const unsigned ElementSize =
Mehdi Aminia28d91d2015-03-10 02:37:25 +00003161 F.getParent()->getDataLayout().getTypeAllocSize(AI->getAllocatedType());
Yury Gribov98b18592015-05-28 07:51:49 +00003162 Value *OldSize =
3163 IRB.CreateMul(IRB.CreateIntCast(AI->getArraySize(), IntptrTy, false),
3164 ConstantInt::get(IntptrTy, ElementSize));
Yury Gribov55441bb2014-11-21 10:29:50 +00003165
3166 // PartialSize = OldSize % 32
3167 Value *PartialSize = IRB.CreateAnd(OldSize, AllocaRzMask);
3168
3169 // Misalign = kAllocaRzSize - PartialSize;
3170 Value *Misalign = IRB.CreateSub(AllocaRzSize, PartialSize);
3171
3172 // PartialPadding = Misalign != kAllocaRzSize ? Misalign : 0;
3173 Value *Cond = IRB.CreateICmpNE(Misalign, AllocaRzSize);
3174 Value *PartialPadding = IRB.CreateSelect(Cond, Misalign, Zero);
3175
3176 // AdditionalChunkSize = Align + PartialPadding + kAllocaRzSize
3177 // Align is added to locate left redzone, PartialPadding for possible
3178 // partial redzone and kAllocaRzSize for right redzone respectively.
3179 Value *AdditionalChunkSize = IRB.CreateAdd(
3180 ConstantInt::get(IntptrTy, Align + kAllocaRzSize), PartialPadding);
3181
3182 Value *NewSize = IRB.CreateAdd(OldSize, AdditionalChunkSize);
3183
3184 // Insert new alloca with new NewSize and Align params.
3185 AllocaInst *NewAlloca = IRB.CreateAlloca(IRB.getInt8Ty(), NewSize);
3186 NewAlloca->setAlignment(Align);
3187
3188 // NewAddress = Address + Align
3189 Value *NewAddress = IRB.CreateAdd(IRB.CreatePtrToInt(NewAlloca, IntptrTy),
3190 ConstantInt::get(IntptrTy, Align));
3191
Yury Gribov98b18592015-05-28 07:51:49 +00003192 // Insert __asan_alloca_poison call for new created alloca.
Yury Gribov781bce22015-05-28 08:03:28 +00003193 IRB.CreateCall(AsanAllocaPoisonFunc, {NewAddress, OldSize});
Yury Gribov98b18592015-05-28 07:51:49 +00003194
3195 // Store the last alloca's address to DynamicAllocaLayout. We'll need this
3196 // for unpoisoning stuff.
3197 IRB.CreateStore(IRB.CreatePtrToInt(NewAlloca, IntptrTy), DynamicAllocaLayout);
3198
Yury Gribov55441bb2014-11-21 10:29:50 +00003199 Value *NewAddressPtr = IRB.CreateIntToPtr(NewAddress, AI->getType());
3200
Yury Gribov98b18592015-05-28 07:51:49 +00003201 // Replace all uses of AddessReturnedByAlloca with NewAddressPtr.
Yury Gribov55441bb2014-11-21 10:29:50 +00003202 AI->replaceAllUsesWith(NewAddressPtr);
3203
Yury Gribov98b18592015-05-28 07:51:49 +00003204 // We are done. Erase old alloca from parent.
Yury Gribov55441bb2014-11-21 10:29:50 +00003205 AI->eraseFromParent();
3206}
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003207
3208// isSafeAccess returns true if Addr is always inbounds with respect to its
3209// base object. For example, it is a field access or an array access with
3210// constant inbounds index.
3211bool AddressSanitizer::isSafeAccess(ObjectSizeOffsetVisitor &ObjSizeVis,
3212 Value *Addr, uint64_t TypeSize) const {
3213 SizeOffsetType SizeOffset = ObjSizeVis.compute(Addr);
3214 if (!ObjSizeVis.bothKnown(SizeOffset)) return false;
Dmitry Vyukovee842382015-03-16 08:04:26 +00003215 uint64_t Size = SizeOffset.first.getZExtValue();
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003216 int64_t Offset = SizeOffset.second.getSExtValue();
3217 // Three checks are required to ensure safety:
3218 // . Offset >= 0 (since the offset is given from the base ptr)
3219 // . Size >= Offset (unsigned)
3220 // . Size - Offset >= NeededSize (unsigned)
Dmitry Vyukovee842382015-03-16 08:04:26 +00003221 return Offset >= 0 && Size >= uint64_t(Offset) &&
3222 Size - uint64_t(Offset) >= TypeSize / 8;
Dmitry Vyukovb37b95e2015-03-04 13:27:53 +00003223}