1 //===-- asan_test.cpp -----------------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file is a part of AddressSanitizer, an address sanity checker. 10 // 11 //===----------------------------------------------------------------------===// 12 #include "asan_test_utils.h" 13 14 #include <errno.h> 15 #include <stdarg.h> 16 17 #ifdef _LIBCPP_GET_C_LOCALE 18 #define SANITIZER_GET_C_LOCALE _LIBCPP_GET_C_LOCALE 19 #else 20 #if defined(__FreeBSD__) 21 #define SANITIZER_GET_C_LOCALE 0 22 #elif defined(__NetBSD__) 23 #define SANITIZER_GET_C_LOCALE LC_C_LOCALE 24 #endif 25 #endif 26 27 #if defined(__sun__) && defined(__svr4__) 28 using std::_setjmp; 29 using std::_longjmp; 30 #endif 31 32 NOINLINE void *malloc_fff(size_t size) { 33 void *res = malloc/**/(size); break_optimization(0); return res;} 34 NOINLINE void *malloc_eee(size_t size) { 35 void *res = malloc_fff(size); break_optimization(0); return res;} 36 NOINLINE void *malloc_ddd(size_t size) { 37 void *res = malloc_eee(size); break_optimization(0); return res;} 38 NOINLINE void *malloc_ccc(size_t size) { 39 void *res = malloc_ddd(size); break_optimization(0); return res;} 40 NOINLINE void *malloc_bbb(size_t size) { 41 void *res = malloc_ccc(size); break_optimization(0); return res;} 42 NOINLINE void *malloc_aaa(size_t size) { 43 void *res = malloc_bbb(size); break_optimization(0); return res;} 44 45 NOINLINE void free_ccc(void *p) { free(p); break_optimization(0);} 46 NOINLINE void free_bbb(void *p) { free_ccc(p); break_optimization(0);} 47 NOINLINE void free_aaa(void *p) { free_bbb(p); break_optimization(0);} 48 49 template<typename T> 50 NOINLINE void uaf_test(int size, int off) { 51 void *p = malloc_aaa(size); 52 free_aaa(p); 53 for (int i = 1; i < 100; i++) 54 free_aaa(malloc_aaa(i)); 55 fprintf(stderr, "writing %ld byte(s) at %p with offset %d\n", 56 (long)sizeof(T), p, off); 57 asan_write((T *)((char *)p + off)); 58 } 59 60 TEST(AddressSanitizer, HasFeatureAddressSanitizerTest) { 61 #if defined(__has_feature) && __has_feature(address_sanitizer) 62 bool asan = 1; 63 #elif defined(__SANITIZE_ADDRESS__) 64 bool asan = 1; 65 #else 66 bool asan = 0; 67 #endif 68 EXPECT_EQ(true, asan); 69 } 70 71 TEST(AddressSanitizer, SimpleDeathTest) { 72 EXPECT_DEATH(exit(1), ""); 73 } 74 75 TEST(AddressSanitizer, VariousMallocsTest) { 76 int *a = (int*)malloc(100 * sizeof(int)); 77 a[50] = 0; 78 free(a); 79 80 int *r = (int*)malloc(10); 81 r = (int*)realloc(r, 2000 * sizeof(int)); 82 r[1000] = 0; 83 free(r); 84 85 int *b = new int[100]; 86 b[50] = 0; 87 delete [] b; 88 89 int *c = new int; 90 *c = 0; 91 delete c; 92 93 #if SANITIZER_TEST_HAS_POSIX_MEMALIGN 94 void *pm = 0; 95 // Valid allocation. 96 int pm_res = posix_memalign(&pm, kPageSize, kPageSize); 97 EXPECT_EQ(0, pm_res); 98 EXPECT_NE(nullptr, pm); 99 free(pm); 100 #endif // SANITIZER_TEST_HAS_POSIX_MEMALIGN 101 102 #if SANITIZER_TEST_HAS_MEMALIGN 103 int *ma = (int*)memalign(kPageSize, kPageSize); 104 EXPECT_EQ(0U, (uintptr_t)ma % kPageSize); 105 ma[123] = 0; 106 free(ma); 107 #endif // SANITIZER_TEST_HAS_MEMALIGN 108 } 109 110 TEST(AddressSanitizer, CallocTest) { 111 int *a = (int*)calloc(100, sizeof(int)); 112 EXPECT_EQ(0, a[10]); 113 free(a); 114 } 115 116 TEST(AddressSanitizer, CallocReturnsZeroMem) { 117 size_t sizes[] = {16, 1000, 10000, 100000, 2100000}; 118 for (size_t s = 0; s < sizeof(sizes)/sizeof(sizes[0]); s++) { 119 size_t size = sizes[s]; 120 for (size_t iter = 0; iter < 5; iter++) { 121 char *x = Ident((char*)calloc(1, size)); 122 EXPECT_EQ(x[0], 0); 123 EXPECT_EQ(x[size - 1], 0); 124 EXPECT_EQ(x[size / 2], 0); 125 EXPECT_EQ(x[size / 3], 0); 126 EXPECT_EQ(x[size / 4], 0); 127 memset(x, 0x42, size); 128 free(Ident(x)); 129 #if !defined(_WIN32) 130 // FIXME: OOM on Windows. We should just make this a lit test 131 // with quarantine size set to 1. 132 free(Ident(malloc(Ident(1 << 27)))); // Try to drain the quarantine. 133 #endif 134 } 135 } 136 } 137 138 // No valloc on Windows or Android. 139 #if !defined(_WIN32) && !defined(__ANDROID__) 140 TEST(AddressSanitizer, VallocTest) { 141 void *a = valloc(100); 142 EXPECT_EQ(0U, (uintptr_t)a % kPageSize); 143 free(a); 144 } 145 #endif 146 147 #if SANITIZER_TEST_HAS_PVALLOC 148 TEST(AddressSanitizer, PvallocTest) { 149 char *a = (char*)pvalloc(kPageSize + 100); 150 EXPECT_EQ(0U, (uintptr_t)a % kPageSize); 151 a[kPageSize + 101] = 1; // we should not report an error here. 152 free(a); 153 154 a = (char*)pvalloc(0); // pvalloc(0) should allocate at least one page. 155 EXPECT_EQ(0U, (uintptr_t)a % kPageSize); 156 a[101] = 1; // we should not report an error here. 157 free(a); 158 } 159 #endif // SANITIZER_TEST_HAS_PVALLOC 160 161 #if !defined(_WIN32) 162 // FIXME: Use an equivalent of pthread_setspecific on Windows. 163 void *TSDWorker(void *test_key) { 164 if (test_key) { 165 pthread_setspecific(*(pthread_key_t*)test_key, (void*)0xfeedface); 166 } 167 return NULL; 168 } 169 170 void TSDDestructor(void *tsd) { 171 // Spawning a thread will check that the current thread id is not -1. 172 pthread_t th; 173 PTHREAD_CREATE(&th, NULL, TSDWorker, NULL); 174 PTHREAD_JOIN(th, NULL); 175 } 176 177 // This tests triggers the thread-specific data destruction fiasco which occurs 178 // if we don't manage the TSD destructors ourselves. We create a new pthread 179 // key with a non-NULL destructor which is likely to be put after the destructor 180 // of AsanThread in the list of destructors. 181 // In this case the TSD for AsanThread will be destroyed before TSDDestructor 182 // is called for the child thread, and a CHECK will fail when we call 183 // pthread_create() to spawn the grandchild. 184 TEST(AddressSanitizer, DISABLED_TSDTest) { 185 pthread_t th; 186 pthread_key_t test_key; 187 pthread_key_create(&test_key, TSDDestructor); 188 PTHREAD_CREATE(&th, NULL, TSDWorker, &test_key); 189 PTHREAD_JOIN(th, NULL); 190 pthread_key_delete(test_key); 191 } 192 #endif 193 194 TEST(AddressSanitizer, UAF_char) { 195 const char *uaf_string = "AddressSanitizer:.*heap-use-after-free"; 196 EXPECT_DEATH(uaf_test<U1>(1, 0), uaf_string); 197 EXPECT_DEATH(uaf_test<U1>(10, 0), uaf_string); 198 EXPECT_DEATH(uaf_test<U1>(10, 10), uaf_string); 199 EXPECT_DEATH(uaf_test<U1>(kLargeMalloc, 0), uaf_string); 200 EXPECT_DEATH(uaf_test<U1>(kLargeMalloc, kLargeMalloc / 2), uaf_string); 201 } 202 203 TEST(AddressSanitizer, UAF_long_double) { 204 if (sizeof(long double) == sizeof(double)) return; 205 long double *p = Ident(new long double[10]); 206 EXPECT_DEATH(Ident(p)[12] = 0, "WRITE of size 1[026]"); 207 EXPECT_DEATH(Ident(p)[0] = Ident(p)[12], "READ of size 1[026]"); 208 delete [] Ident(p); 209 } 210 211 #if !defined(_WIN32) 212 struct Packed5 { 213 int x; 214 char c; 215 } __attribute__((packed)); 216 #else 217 # pragma pack(push, 1) 218 struct Packed5 { 219 int x; 220 char c; 221 }; 222 # pragma pack(pop) 223 #endif 224 225 TEST(AddressSanitizer, UAF_Packed5) { 226 static_assert(sizeof(Packed5) == 5, "Please check the keywords used"); 227 Packed5 *p = Ident(new Packed5[2]); 228 EXPECT_DEATH(p[0] = p[3], "READ of size 5"); 229 EXPECT_DEATH(p[3] = p[0], "WRITE of size 5"); 230 delete [] Ident(p); 231 } 232 233 #if ASAN_HAS_IGNORELIST 234 TEST(AddressSanitizer, IgnoreTest) { 235 int *x = Ident(new int); 236 delete Ident(x); 237 *x = 0; 238 } 239 #endif // ASAN_HAS_IGNORELIST 240 241 struct StructWithBitField { 242 int bf1:1; 243 int bf2:1; 244 int bf3:1; 245 int bf4:29; 246 }; 247 248 TEST(AddressSanitizer, BitFieldPositiveTest) { 249 StructWithBitField *x = new StructWithBitField; 250 delete Ident(x); 251 EXPECT_DEATH(x->bf1 = 0, "use-after-free"); 252 EXPECT_DEATH(x->bf2 = 0, "use-after-free"); 253 EXPECT_DEATH(x->bf3 = 0, "use-after-free"); 254 EXPECT_DEATH(x->bf4 = 0, "use-after-free"); 255 } 256 257 struct StructWithBitFields_8_24 { 258 int a:8; 259 int b:24; 260 }; 261 262 TEST(AddressSanitizer, BitFieldNegativeTest) { 263 StructWithBitFields_8_24 *x = Ident(new StructWithBitFields_8_24); 264 x->a = 0; 265 x->b = 0; 266 delete Ident(x); 267 } 268 269 #if ASAN_NEEDS_SEGV 270 namespace { 271 272 const char kSEGVCrash[] = "AddressSanitizer: SEGV on unknown address"; 273 const char kOverriddenSigactionHandler[] = "Test sigaction handler\n"; 274 const char kOverriddenSignalHandler[] = "Test signal handler\n"; 275 276 TEST(AddressSanitizer, WildAddressTest) { 277 char *c = (char*)0x123; 278 EXPECT_DEATH(*c = 0, kSEGVCrash); 279 } 280 281 void my_sigaction_sighandler(int, siginfo_t*, void*) { 282 fprintf(stderr, kOverriddenSigactionHandler); 283 exit(1); 284 } 285 286 void my_signal_sighandler(int signum) { 287 fprintf(stderr, kOverriddenSignalHandler); 288 exit(1); 289 } 290 291 TEST(AddressSanitizer, SignalTest) { 292 struct sigaction sigact; 293 memset(&sigact, 0, sizeof(sigact)); 294 sigact.sa_sigaction = my_sigaction_sighandler; 295 sigact.sa_flags = SA_SIGINFO; 296 char *c = (char *)0x123; 297 298 EXPECT_DEATH(*c = 0, kSEGVCrash); 299 300 // ASan should allow to set sigaction()... 301 EXPECT_EQ(0, sigaction(SIGSEGV, &sigact, 0)); 302 #ifdef __APPLE__ 303 EXPECT_EQ(0, sigaction(SIGBUS, &sigact, 0)); 304 #endif 305 EXPECT_DEATH(*c = 0, kOverriddenSigactionHandler); 306 307 // ... and signal(). 308 EXPECT_NE(SIG_ERR, signal(SIGSEGV, my_signal_sighandler)); 309 EXPECT_DEATH(*c = 0, kOverriddenSignalHandler); 310 } 311 } // namespace 312 #endif 313 314 static void TestLargeMalloc(size_t size) { 315 char buff[1024]; 316 sprintf(buff, "is located 1 bytes to the left of %lu-byte", (long)size); 317 EXPECT_DEATH(Ident((char*)malloc(size))[-1] = 0, buff); 318 } 319 320 TEST(AddressSanitizer, LargeMallocTest) { 321 const int max_size = (SANITIZER_WORDSIZE == 32) ? 1 << 26 : 1 << 28; 322 for (int i = 113; i < max_size; i = i * 2 + 13) { 323 TestLargeMalloc(i); 324 } 325 } 326 327 #if !GTEST_USES_SIMPLE_RE 328 TEST(AddressSanitizer, HugeMallocTest) { 329 if (SANITIZER_WORDSIZE != 64 || ASAN_AVOID_EXPENSIVE_TESTS) return; 330 size_t n_megs = 4100; 331 EXPECT_DEATH(Ident((char*)malloc(n_megs << 20))[-1] = 0, 332 "is located 1 bytes to the left|" 333 "AddressSanitizer failed to allocate"); 334 } 335 #endif 336 337 #if SANITIZER_TEST_HAS_MEMALIGN 338 void MemalignRun(size_t align, size_t size, int idx) { 339 char *p = (char *)memalign(align, size); 340 Ident(p)[idx] = 0; 341 free(p); 342 } 343 344 TEST(AddressSanitizer, memalign) { 345 for (int align = 16; align <= (1 << 23); align *= 2) { 346 size_t size = align * 5; 347 EXPECT_DEATH(MemalignRun(align, size, -1), 348 "is located 1 bytes to the left"); 349 EXPECT_DEATH(MemalignRun(align, size, size + 1), 350 "is located 1 bytes to the right"); 351 } 352 } 353 #endif // SANITIZER_TEST_HAS_MEMALIGN 354 355 void *ManyThreadsWorker(void *a) { 356 for (int iter = 0; iter < 100; iter++) { 357 for (size_t size = 100; size < 2000; size *= 2) { 358 free(Ident(malloc(size))); 359 } 360 } 361 return 0; 362 } 363 364 #if !defined(__aarch64__) && !defined(__powerpc64__) 365 // FIXME: Infinite loop in AArch64 (PR24389). 366 // FIXME: Also occasional hang on powerpc. Maybe same problem as on AArch64? 367 TEST(AddressSanitizer, ManyThreadsTest) { 368 const size_t kNumThreads = 369 (SANITIZER_WORDSIZE == 32 || ASAN_AVOID_EXPENSIVE_TESTS) ? 30 : 1000; 370 pthread_t t[kNumThreads]; 371 for (size_t i = 0; i < kNumThreads; i++) { 372 PTHREAD_CREATE(&t[i], 0, ManyThreadsWorker, (void*)i); 373 } 374 for (size_t i = 0; i < kNumThreads; i++) { 375 PTHREAD_JOIN(t[i], 0); 376 } 377 } 378 #endif 379 380 TEST(AddressSanitizer, ReallocTest) { 381 const int kMinElem = 5; 382 int *ptr = (int*)malloc(sizeof(int) * kMinElem); 383 ptr[3] = 3; 384 for (int i = 0; i < 10000; i++) { 385 ptr = (int*)realloc(ptr, 386 (my_rand() % 1000 + kMinElem) * sizeof(int)); 387 EXPECT_EQ(3, ptr[3]); 388 } 389 free(ptr); 390 // Realloc pointer returned by malloc(0). 391 int *ptr2 = Ident((int*)malloc(0)); 392 ptr2 = Ident((int*)realloc(ptr2, sizeof(*ptr2))); 393 *ptr2 = 42; 394 EXPECT_EQ(42, *ptr2); 395 free(ptr2); 396 } 397 398 TEST(AddressSanitizer, ReallocFreedPointerTest) { 399 void *ptr = Ident(malloc(42)); 400 ASSERT_TRUE(NULL != ptr); 401 free(ptr); 402 EXPECT_DEATH(ptr = realloc(ptr, 77), "attempting double-free"); 403 } 404 405 TEST(AddressSanitizer, ReallocInvalidPointerTest) { 406 void *ptr = Ident(malloc(42)); 407 EXPECT_DEATH(ptr = realloc((int*)ptr + 1, 77), "attempting free.*not malloc"); 408 free(ptr); 409 } 410 411 TEST(AddressSanitizer, ZeroSizeMallocTest) { 412 // Test that malloc(0) and similar functions don't return NULL. 413 void *ptr = Ident(malloc(0)); 414 EXPECT_TRUE(NULL != ptr); 415 free(ptr); 416 #if SANITIZER_TEST_HAS_POSIX_MEMALIGN 417 int pm_res = posix_memalign(&ptr, 1<<20, 0); 418 EXPECT_EQ(0, pm_res); 419 EXPECT_TRUE(NULL != ptr); 420 free(ptr); 421 #endif // SANITIZER_TEST_HAS_POSIX_MEMALIGN 422 int *int_ptr = new int[0]; 423 int *int_ptr2 = new int[0]; 424 EXPECT_TRUE(NULL != int_ptr); 425 EXPECT_TRUE(NULL != int_ptr2); 426 EXPECT_NE(int_ptr, int_ptr2); 427 delete[] int_ptr; 428 delete[] int_ptr2; 429 } 430 431 #if SANITIZER_TEST_HAS_MALLOC_USABLE_SIZE 432 static const char *kMallocUsableSizeErrorMsg = 433 "AddressSanitizer: attempting to call malloc_usable_size()"; 434 435 TEST(AddressSanitizer, MallocUsableSizeTest) { 436 const size_t kArraySize = 100; 437 char *array = Ident((char*)malloc(kArraySize)); 438 int *int_ptr = Ident(new int); 439 EXPECT_EQ(0U, malloc_usable_size(NULL)); 440 EXPECT_EQ(kArraySize, malloc_usable_size(array)); 441 EXPECT_EQ(sizeof(int), malloc_usable_size(int_ptr)); 442 EXPECT_DEATH(malloc_usable_size((void*)0x123), kMallocUsableSizeErrorMsg); 443 EXPECT_DEATH(malloc_usable_size(array + kArraySize / 2), 444 kMallocUsableSizeErrorMsg); 445 free(array); 446 EXPECT_DEATH(malloc_usable_size(array), kMallocUsableSizeErrorMsg); 447 delete int_ptr; 448 } 449 #endif // SANITIZER_TEST_HAS_MALLOC_USABLE_SIZE 450 451 void WrongFree() { 452 int *x = (int*)malloc(100 * sizeof(int)); 453 // Use the allocated memory, otherwise Clang will optimize it out. 454 Ident(x); 455 free(x + 1); 456 } 457 458 #if !defined(_WIN32) // FIXME: This should be a lit test. 459 TEST(AddressSanitizer, WrongFreeTest) { 460 EXPECT_DEATH(WrongFree(), ASAN_PCRE_DOTALL 461 "ERROR: AddressSanitizer: attempting free.*not malloc" 462 ".*is located 4 bytes inside of 400-byte region" 463 ".*allocated by thread"); 464 } 465 #endif 466 467 void DoubleFree() { 468 int *x = (int*)malloc(100 * sizeof(int)); 469 fprintf(stderr, "DoubleFree: x=%p\n", (void *)x); 470 free(x); 471 free(x); 472 fprintf(stderr, "should have failed in the second free(%p)\n", (void *)x); 473 abort(); 474 } 475 476 #if !defined(_WIN32) // FIXME: This should be a lit test. 477 TEST(AddressSanitizer, DoubleFreeTest) { 478 EXPECT_DEATH(DoubleFree(), ASAN_PCRE_DOTALL 479 "ERROR: AddressSanitizer: attempting double-free" 480 ".*is located 0 bytes inside of 400-byte region" 481 ".*freed by thread T0 here" 482 ".*previously allocated by thread T0 here"); 483 } 484 #endif 485 486 template<int kSize> 487 NOINLINE void SizedStackTest() { 488 char a[kSize]; 489 char *A = Ident((char*)&a); 490 const char *expected_death = "AddressSanitizer: stack-buffer-"; 491 for (size_t i = 0; i < kSize; i++) 492 A[i] = i; 493 EXPECT_DEATH(A[-1] = 0, expected_death); 494 EXPECT_DEATH(A[-5] = 0, expected_death); 495 EXPECT_DEATH(A[kSize] = 0, expected_death); 496 EXPECT_DEATH(A[kSize + 1] = 0, expected_death); 497 EXPECT_DEATH(A[kSize + 5] = 0, expected_death); 498 if (kSize > 16) 499 EXPECT_DEATH(A[kSize + 31] = 0, expected_death); 500 } 501 502 TEST(AddressSanitizer, SimpleStackTest) { 503 SizedStackTest<1>(); 504 SizedStackTest<2>(); 505 SizedStackTest<3>(); 506 SizedStackTest<4>(); 507 SizedStackTest<5>(); 508 SizedStackTest<6>(); 509 SizedStackTest<7>(); 510 SizedStackTest<16>(); 511 SizedStackTest<25>(); 512 SizedStackTest<34>(); 513 SizedStackTest<43>(); 514 SizedStackTest<51>(); 515 SizedStackTest<62>(); 516 SizedStackTest<64>(); 517 SizedStackTest<128>(); 518 } 519 520 #if !defined(_WIN32) 521 // FIXME: It's a bit hard to write multi-line death test expectations 522 // in a portable way. Anyways, this should just be turned into a lit test. 523 TEST(AddressSanitizer, ManyStackObjectsTest) { 524 char XXX[10]; 525 char YYY[20]; 526 char ZZZ[30]; 527 Ident(XXX); 528 Ident(YYY); 529 EXPECT_DEATH(Ident(ZZZ)[-1] = 0, ASAN_PCRE_DOTALL "XXX.*YYY.*ZZZ"); 530 } 531 #endif 532 533 #if 0 // This test requires online symbolizer. 534 // Moved to lit_tests/stack-oob-frames.cpp. 535 // Reenable here once we have online symbolizer by default. 536 NOINLINE static void Frame0(int frame, char *a, char *b, char *c) { 537 char d[4] = {0}; 538 char *D = Ident(d); 539 switch (frame) { 540 case 3: a[5]++; break; 541 case 2: b[5]++; break; 542 case 1: c[5]++; break; 543 case 0: D[5]++; break; 544 } 545 } 546 NOINLINE static void Frame1(int frame, char *a, char *b) { 547 char c[4] = {0}; Frame0(frame, a, b, c); 548 break_optimization(0); 549 } 550 NOINLINE static void Frame2(int frame, char *a) { 551 char b[4] = {0}; Frame1(frame, a, b); 552 break_optimization(0); 553 } 554 NOINLINE static void Frame3(int frame) { 555 char a[4] = {0}; Frame2(frame, a); 556 break_optimization(0); 557 } 558 559 TEST(AddressSanitizer, GuiltyStackFrame0Test) { 560 EXPECT_DEATH(Frame3(0), "located .*in frame <.*Frame0"); 561 } 562 TEST(AddressSanitizer, GuiltyStackFrame1Test) { 563 EXPECT_DEATH(Frame3(1), "located .*in frame <.*Frame1"); 564 } 565 TEST(AddressSanitizer, GuiltyStackFrame2Test) { 566 EXPECT_DEATH(Frame3(2), "located .*in frame <.*Frame2"); 567 } 568 TEST(AddressSanitizer, GuiltyStackFrame3Test) { 569 EXPECT_DEATH(Frame3(3), "located .*in frame <.*Frame3"); 570 } 571 #endif 572 573 NOINLINE void LongJmpFunc1(jmp_buf buf) { 574 // create three red zones for these two stack objects. 575 int a; 576 int b; 577 578 int *A = Ident(&a); 579 int *B = Ident(&b); 580 *A = *B; 581 longjmp(buf, 1); 582 } 583 584 NOINLINE void TouchStackFunc() { 585 int a[100]; // long array will intersect with redzones from LongJmpFunc1. 586 int *A = Ident(a); 587 for (int i = 0; i < 100; i++) 588 A[i] = i*i; 589 } 590 591 // Test that we handle longjmp and do not report false positives on stack. 592 TEST(AddressSanitizer, LongJmpTest) { 593 static jmp_buf buf; 594 if (!setjmp(buf)) { 595 LongJmpFunc1(buf); 596 } else { 597 TouchStackFunc(); 598 } 599 } 600 601 #if !defined(_WIN32) // Only basic longjmp is available on Windows. 602 NOINLINE void UnderscopeLongJmpFunc1(jmp_buf buf) { 603 // create three red zones for these two stack objects. 604 int a; 605 int b; 606 607 int *A = Ident(&a); 608 int *B = Ident(&b); 609 *A = *B; 610 _longjmp(buf, 1); 611 } 612 613 NOINLINE void SigLongJmpFunc1(sigjmp_buf buf) { 614 // create three red zones for these two stack objects. 615 int a; 616 int b; 617 618 int *A = Ident(&a); 619 int *B = Ident(&b); 620 *A = *B; 621 siglongjmp(buf, 1); 622 } 623 624 #if !defined(__ANDROID__) && !defined(__arm__) && !defined(__aarch64__) && \ 625 !defined(__mips__) && !defined(__mips64) && !defined(__s390__) && \ 626 !defined(__riscv) 627 NOINLINE void BuiltinLongJmpFunc1(jmp_buf buf) { 628 // create three red zones for these two stack objects. 629 int a; 630 int b; 631 632 int *A = Ident(&a); 633 int *B = Ident(&b); 634 *A = *B; 635 __builtin_longjmp((void**)buf, 1); 636 } 637 638 // Does not work on ARM: 639 // https://github.com/google/sanitizers/issues/185 640 TEST(AddressSanitizer, BuiltinLongJmpTest) { 641 static jmp_buf buf; 642 if (!__builtin_setjmp((void**)buf)) { 643 BuiltinLongJmpFunc1(buf); 644 } else { 645 TouchStackFunc(); 646 } 647 } 648 #endif // !defined(__ANDROID__) && !defined(__arm__) && 649 // !defined(__aarch64__) && !defined(__mips__) 650 // !defined(__mips64) && !defined(__s390__) 651 // !defined(__riscv) 652 653 TEST(AddressSanitizer, UnderscopeLongJmpTest) { 654 static jmp_buf buf; 655 if (!_setjmp(buf)) { 656 UnderscopeLongJmpFunc1(buf); 657 } else { 658 TouchStackFunc(); 659 } 660 } 661 662 TEST(AddressSanitizer, SigLongJmpTest) { 663 static sigjmp_buf buf; 664 if (!sigsetjmp(buf, 1)) { 665 SigLongJmpFunc1(buf); 666 } else { 667 TouchStackFunc(); 668 } 669 } 670 #endif 671 672 // FIXME: Why does clang-cl define __EXCEPTIONS? 673 #if defined(__EXCEPTIONS) && !defined(_WIN32) 674 NOINLINE void ThrowFunc() { 675 // create three red zones for these two stack objects. 676 int a; 677 int b; 678 679 int *A = Ident(&a); 680 int *B = Ident(&b); 681 *A = *B; 682 ASAN_THROW(1); 683 } 684 685 TEST(AddressSanitizer, CxxExceptionTest) { 686 if (ASAN_UAR) return; 687 // TODO(kcc): this test crashes on 32-bit for some reason... 688 if (SANITIZER_WORDSIZE == 32) return; 689 try { 690 ThrowFunc(); 691 } catch(...) {} 692 TouchStackFunc(); 693 } 694 #endif 695 696 void *ThreadStackReuseFunc1(void *unused) { 697 // create three red zones for these two stack objects. 698 int a; 699 int b; 700 701 int *A = Ident(&a); 702 int *B = Ident(&b); 703 *A = *B; 704 pthread_exit(0); 705 return 0; 706 } 707 708 void *ThreadStackReuseFunc2(void *unused) { 709 TouchStackFunc(); 710 return 0; 711 } 712 713 #if !defined(__thumb__) 714 TEST(AddressSanitizer, ThreadStackReuseTest) { 715 pthread_t t; 716 PTHREAD_CREATE(&t, 0, ThreadStackReuseFunc1, 0); 717 PTHREAD_JOIN(t, 0); 718 PTHREAD_CREATE(&t, 0, ThreadStackReuseFunc2, 0); 719 PTHREAD_JOIN(t, 0); 720 } 721 #endif 722 723 #if defined(__SSE2__) 724 #include <emmintrin.h> 725 TEST(AddressSanitizer, Store128Test) { 726 char *a = Ident((char*)malloc(Ident(12))); 727 char *p = a; 728 if (((uintptr_t)a % 16) != 0) 729 p = a + 8; 730 assert(((uintptr_t)p % 16) == 0); 731 __m128i value_wide = _mm_set1_epi16(0x1234); 732 EXPECT_DEATH(_mm_store_si128((__m128i*)p, value_wide), 733 "AddressSanitizer: heap-buffer-overflow"); 734 EXPECT_DEATH(_mm_store_si128((__m128i*)p, value_wide), 735 "WRITE of size 16"); 736 EXPECT_DEATH(_mm_store_si128((__m128i*)p, value_wide), 737 "located 0 bytes to the right of 12-byte"); 738 free(a); 739 } 740 #endif 741 742 // FIXME: All tests that use this function should be turned into lit tests. 743 std::string RightOOBErrorMessage(int oob_distance, bool is_write) { 744 assert(oob_distance >= 0); 745 char expected_str[100]; 746 sprintf(expected_str, ASAN_PCRE_DOTALL 747 #if !GTEST_USES_SIMPLE_RE 748 "buffer-overflow.*%s.*" 749 #endif 750 "located %d bytes to the right", 751 #if !GTEST_USES_SIMPLE_RE 752 is_write ? "WRITE" : "READ", 753 #endif 754 oob_distance); 755 return std::string(expected_str); 756 } 757 758 std::string RightOOBWriteMessage(int oob_distance) { 759 return RightOOBErrorMessage(oob_distance, /*is_write*/true); 760 } 761 762 std::string RightOOBReadMessage(int oob_distance) { 763 return RightOOBErrorMessage(oob_distance, /*is_write*/false); 764 } 765 766 // FIXME: All tests that use this function should be turned into lit tests. 767 std::string LeftOOBErrorMessage(int oob_distance, bool is_write) { 768 assert(oob_distance > 0); 769 char expected_str[100]; 770 sprintf(expected_str, 771 #if !GTEST_USES_SIMPLE_RE 772 ASAN_PCRE_DOTALL "%s.*" 773 #endif 774 "located %d bytes to the left", 775 #if !GTEST_USES_SIMPLE_RE 776 is_write ? "WRITE" : "READ", 777 #endif 778 oob_distance); 779 return std::string(expected_str); 780 } 781 782 std::string LeftOOBWriteMessage(int oob_distance) { 783 return LeftOOBErrorMessage(oob_distance, /*is_write*/true); 784 } 785 786 std::string LeftOOBReadMessage(int oob_distance) { 787 return LeftOOBErrorMessage(oob_distance, /*is_write*/false); 788 } 789 790 std::string LeftOOBAccessMessage(int oob_distance) { 791 assert(oob_distance > 0); 792 char expected_str[100]; 793 sprintf(expected_str, "located %d bytes to the left", oob_distance); 794 return std::string(expected_str); 795 } 796 797 char* MallocAndMemsetString(size_t size, char ch) { 798 char *s = Ident((char*)malloc(size)); 799 memset(s, ch, size); 800 return s; 801 } 802 803 char* MallocAndMemsetString(size_t size) { 804 return MallocAndMemsetString(size, 'z'); 805 } 806 807 #if SANITIZER_GLIBC 808 #define READ_TEST(READ_N_BYTES) \ 809 char *x = new char[10]; \ 810 int fd = open("/proc/self/stat", O_RDONLY); \ 811 ASSERT_GT(fd, 0); \ 812 EXPECT_DEATH(READ_N_BYTES, \ 813 ASAN_PCRE_DOTALL \ 814 "AddressSanitizer: heap-buffer-overflow" \ 815 ".* is located 0 bytes to the right of 10-byte region"); \ 816 close(fd); \ 817 delete [] x; \ 818 819 TEST(AddressSanitizer, pread) { 820 READ_TEST(pread(fd, x, 15, 0)); 821 } 822 823 TEST(AddressSanitizer, pread64) { 824 READ_TEST(pread64(fd, x, 15, 0)); 825 } 826 827 TEST(AddressSanitizer, read) { 828 READ_TEST(read(fd, x, 15)); 829 } 830 #endif // SANITIZER_GLIBC 831 832 // This test case fails 833 // Clang optimizes memcpy/memset calls which lead to unaligned access 834 TEST(AddressSanitizer, DISABLED_MemIntrinsicUnalignedAccessTest) { 835 int size = Ident(4096); 836 char *s = Ident((char*)malloc(size)); 837 EXPECT_DEATH(memset(s + size - 1, 0, 2), RightOOBWriteMessage(0)); 838 free(s); 839 } 840 841 NOINLINE static int LargeFunction(bool do_bad_access) { 842 int *x = new int[100]; 843 x[0]++; 844 x[1]++; 845 x[2]++; 846 x[3]++; 847 x[4]++; 848 x[5]++; 849 x[6]++; 850 x[7]++; 851 x[8]++; 852 x[9]++; 853 854 x[do_bad_access ? 100 : 0]++; int res = __LINE__; 855 856 x[10]++; 857 x[11]++; 858 x[12]++; 859 x[13]++; 860 x[14]++; 861 x[15]++; 862 x[16]++; 863 x[17]++; 864 x[18]++; 865 x[19]++; 866 867 delete[] x; 868 return res; 869 } 870 871 // Test the we have correct debug info for the failing instruction. 872 // This test requires the in-process symbolizer to be enabled by default. 873 TEST(AddressSanitizer, DISABLED_LargeFunctionSymbolizeTest) { 874 int failing_line = LargeFunction(false); 875 char expected_warning[128]; 876 sprintf(expected_warning, "LargeFunction.*asan_test.*:%d", failing_line); 877 EXPECT_DEATH(LargeFunction(true), expected_warning); 878 } 879 880 // Check that we unwind and symbolize correctly. 881 TEST(AddressSanitizer, DISABLED_MallocFreeUnwindAndSymbolizeTest) { 882 int *a = (int*)malloc_aaa(sizeof(int)); 883 *a = 1; 884 free_aaa(a); 885 EXPECT_DEATH(*a = 1, "free_ccc.*free_bbb.*free_aaa.*" 886 "malloc_fff.*malloc_eee.*malloc_ddd"); 887 } 888 889 static bool TryToSetThreadName(const char *name) { 890 #if defined(__linux__) && defined(PR_SET_NAME) 891 return 0 == prctl(PR_SET_NAME, (unsigned long)name, 0, 0, 0); 892 #else 893 return false; 894 #endif 895 } 896 897 void *ThreadedTestAlloc(void *a) { 898 EXPECT_EQ(true, TryToSetThreadName("AllocThr")); 899 int **p = (int**)a; 900 *p = new int; 901 return 0; 902 } 903 904 void *ThreadedTestFree(void *a) { 905 EXPECT_EQ(true, TryToSetThreadName("FreeThr")); 906 int **p = (int**)a; 907 delete *p; 908 return 0; 909 } 910 911 void *ThreadedTestUse(void *a) { 912 EXPECT_EQ(true, TryToSetThreadName("UseThr")); 913 int **p = (int**)a; 914 **p = 1; 915 return 0; 916 } 917 918 void ThreadedTestSpawn() { 919 pthread_t t; 920 int *x; 921 PTHREAD_CREATE(&t, 0, ThreadedTestAlloc, &x); 922 PTHREAD_JOIN(t, 0); 923 PTHREAD_CREATE(&t, 0, ThreadedTestFree, &x); 924 PTHREAD_JOIN(t, 0); 925 PTHREAD_CREATE(&t, 0, ThreadedTestUse, &x); 926 PTHREAD_JOIN(t, 0); 927 } 928 929 #if !defined(_WIN32) // FIXME: This should be a lit test. 930 TEST(AddressSanitizer, ThreadedTest) { 931 EXPECT_DEATH(ThreadedTestSpawn(), 932 ASAN_PCRE_DOTALL 933 "Thread T.*created" 934 ".*Thread T.*created" 935 ".*Thread T.*created"); 936 } 937 #endif 938 939 void *ThreadedTestFunc(void *unused) { 940 // Check if prctl(PR_SET_NAME) is supported. Return if not. 941 if (!TryToSetThreadName("TestFunc")) 942 return 0; 943 EXPECT_DEATH(ThreadedTestSpawn(), 944 ASAN_PCRE_DOTALL 945 "WRITE .*thread T. .UseThr." 946 ".*freed by thread T. .FreeThr. here:" 947 ".*previously allocated by thread T. .AllocThr. here:" 948 ".*Thread T. .UseThr. created by T.*TestFunc" 949 ".*Thread T. .FreeThr. created by T" 950 ".*Thread T. .AllocThr. created by T" 951 ""); 952 return 0; 953 } 954 955 TEST(AddressSanitizer, ThreadNamesTest) { 956 // Run ThreadedTestFunc in a separate thread because it tries to set a 957 // thread name and we don't want to change the main thread's name. 958 pthread_t t; 959 PTHREAD_CREATE(&t, 0, ThreadedTestFunc, 0); 960 PTHREAD_JOIN(t, 0); 961 } 962 963 #if ASAN_NEEDS_SEGV 964 TEST(AddressSanitizer, ShadowGapTest) { 965 #if SANITIZER_WORDSIZE == 32 966 char *addr = (char*)0x23000000; 967 #else 968 # if defined(__powerpc64__) 969 char *addr = (char*)0x024000800000; 970 # elif defined(__s390x__) 971 char *addr = (char*)0x11000000000000; 972 # else 973 char *addr = (char*)0x0000100000080000; 974 # endif 975 #endif 976 EXPECT_DEATH(*addr = 1, "AddressSanitizer: (SEGV|BUS) on unknown"); 977 } 978 #endif // ASAN_NEEDS_SEGV 979 980 extern "C" { 981 NOINLINE static void UseThenFreeThenUse() { 982 char *x = Ident((char*)malloc(8)); 983 *x = 1; 984 free_aaa(x); 985 *x = 2; 986 } 987 } 988 989 TEST(AddressSanitizer, UseThenFreeThenUseTest) { 990 EXPECT_DEATH(UseThenFreeThenUse(), "freed by thread"); 991 } 992 993 TEST(AddressSanitizer, StrDupTest) { 994 free(strdup(Ident("123"))); 995 } 996 997 // Currently we create and poison redzone at right of global variables. 998 static char static110[110]; 999 const char ConstGlob[7] = {1, 2, 3, 4, 5, 6, 7}; 1000 static const char StaticConstGlob[3] = {9, 8, 7}; 1001 1002 TEST(AddressSanitizer, GlobalTest) { 1003 static char func_static15[15]; 1004 1005 static char fs1[10]; 1006 static char fs2[10]; 1007 static char fs3[10]; 1008 1009 glob5[Ident(0)] = 0; 1010 glob5[Ident(1)] = 0; 1011 glob5[Ident(2)] = 0; 1012 glob5[Ident(3)] = 0; 1013 glob5[Ident(4)] = 0; 1014 1015 EXPECT_DEATH(glob5[Ident(5)] = 0, 1016 "0 bytes to the right of global variable.*glob5.* size 5"); 1017 EXPECT_DEATH(glob5[Ident(5+6)] = 0, 1018 "6 bytes to the right of global variable.*glob5.* size 5"); 1019 Ident(static110); // avoid optimizations 1020 static110[Ident(0)] = 0; 1021 static110[Ident(109)] = 0; 1022 EXPECT_DEATH(static110[Ident(110)] = 0, 1023 "0 bytes to the right of global variable"); 1024 EXPECT_DEATH(static110[Ident(110+7)] = 0, 1025 "7 bytes to the right of global variable"); 1026 1027 Ident(func_static15); // avoid optimizations 1028 func_static15[Ident(0)] = 0; 1029 EXPECT_DEATH(func_static15[Ident(15)] = 0, 1030 "0 bytes to the right of global variable"); 1031 EXPECT_DEATH(func_static15[Ident(15 + 9)] = 0, 1032 "9 bytes to the right of global variable"); 1033 1034 Ident(fs1); 1035 Ident(fs2); 1036 Ident(fs3); 1037 1038 // We don't create left redzones, so this is not 100% guaranteed to fail. 1039 // But most likely will. 1040 EXPECT_DEATH(fs2[Ident(-1)] = 0, "is located.*of global variable"); 1041 1042 EXPECT_DEATH(Ident(Ident(ConstGlob)[8]), 1043 "is located 1 bytes to the right of .*ConstGlob"); 1044 EXPECT_DEATH(Ident(Ident(StaticConstGlob)[5]), 1045 "is located 2 bytes to the right of .*StaticConstGlob"); 1046 1047 // call stuff from another file. 1048 GlobalsTest(0); 1049 } 1050 1051 TEST(AddressSanitizer, GlobalStringConstTest) { 1052 static const char *zoo = "FOOBAR123"; 1053 const char *p = Ident(zoo); 1054 EXPECT_DEATH(Ident(p[15]), "is ascii string 'FOOBAR123'"); 1055 } 1056 1057 TEST(AddressSanitizer, FileNameInGlobalReportTest) { 1058 static char zoo[10]; 1059 const char *p = Ident(zoo); 1060 // The file name should be present in the report. 1061 EXPECT_DEATH(Ident(p[15]), "zoo.*asan_test."); 1062 } 1063 1064 int *ReturnsPointerToALocalObject() { 1065 int a = 0; 1066 return Ident(&a); 1067 } 1068 1069 #if ASAN_UAR == 1 1070 TEST(AddressSanitizer, LocalReferenceReturnTest) { 1071 int *(*f)() = Ident(ReturnsPointerToALocalObject); 1072 int *p = f(); 1073 // Call 'f' a few more times, 'p' should still be poisoned. 1074 for (int i = 0; i < 32; i++) 1075 f(); 1076 EXPECT_DEATH(*p = 1, "AddressSanitizer: stack-use-after-return"); 1077 EXPECT_DEATH(*p = 1, "is located.*in frame .*ReturnsPointerToALocal"); 1078 } 1079 #endif 1080 1081 template <int kSize> 1082 NOINLINE static void FuncWithStack() { 1083 char x[kSize]; 1084 Ident(x)[0] = 0; 1085 Ident(x)[kSize-1] = 0; 1086 } 1087 1088 static void LotsOfStackReuse() { 1089 int LargeStack[10000]; 1090 Ident(LargeStack)[0] = 0; 1091 for (int i = 0; i < 10000; i++) { 1092 FuncWithStack<128 * 1>(); 1093 FuncWithStack<128 * 2>(); 1094 FuncWithStack<128 * 4>(); 1095 FuncWithStack<128 * 8>(); 1096 FuncWithStack<128 * 16>(); 1097 FuncWithStack<128 * 32>(); 1098 FuncWithStack<128 * 64>(); 1099 FuncWithStack<128 * 128>(); 1100 FuncWithStack<128 * 256>(); 1101 FuncWithStack<128 * 512>(); 1102 Ident(LargeStack)[0] = 0; 1103 } 1104 } 1105 1106 TEST(AddressSanitizer, StressStackReuseTest) { 1107 LotsOfStackReuse(); 1108 } 1109 1110 TEST(AddressSanitizer, ThreadedStressStackReuseTest) { 1111 const int kNumThreads = 20; 1112 pthread_t t[kNumThreads]; 1113 for (int i = 0; i < kNumThreads; i++) { 1114 PTHREAD_CREATE(&t[i], 0, (void* (*)(void *x))LotsOfStackReuse, 0); 1115 } 1116 for (int i = 0; i < kNumThreads; i++) { 1117 PTHREAD_JOIN(t[i], 0); 1118 } 1119 } 1120 1121 // pthread_exit tries to perform unwinding stuff that leads to dlopen'ing 1122 // libgcc_s.so. dlopen in its turn calls malloc to store "libgcc_s.so" string 1123 // that confuses LSan on Thumb because it fails to understand that this 1124 // allocation happens in dynamic linker and should be ignored. 1125 #if !defined(__thumb__) 1126 static void *PthreadExit(void *a) { 1127 pthread_exit(0); 1128 return 0; 1129 } 1130 1131 TEST(AddressSanitizer, PthreadExitTest) { 1132 pthread_t t; 1133 for (int i = 0; i < 1000; i++) { 1134 PTHREAD_CREATE(&t, 0, PthreadExit, 0); 1135 PTHREAD_JOIN(t, 0); 1136 } 1137 } 1138 #endif 1139 1140 // FIXME: Why does clang-cl define __EXCEPTIONS? 1141 #if defined(__EXCEPTIONS) && !defined(_WIN32) 1142 NOINLINE static void StackReuseAndException() { 1143 int large_stack[1000]; 1144 Ident(large_stack); 1145 ASAN_THROW(1); 1146 } 1147 1148 // TODO(kcc): support exceptions with use-after-return. 1149 TEST(AddressSanitizer, DISABLED_StressStackReuseAndExceptionsTest) { 1150 for (int i = 0; i < 10000; i++) { 1151 try { 1152 StackReuseAndException(); 1153 } catch(...) { 1154 } 1155 } 1156 } 1157 #endif 1158 1159 #if !defined(_WIN32) 1160 TEST(AddressSanitizer, MlockTest) { 1161 #if !defined(__ANDROID__) || __ANDROID_API__ >= 17 1162 EXPECT_EQ(0, mlockall(MCL_CURRENT)); 1163 #endif 1164 EXPECT_EQ(0, mlock((void*)0x12345, 0x5678)); 1165 #if !defined(__ANDROID__) || __ANDROID_API__ >= 17 1166 EXPECT_EQ(0, munlockall()); 1167 #endif 1168 EXPECT_EQ(0, munlock((void*)0x987, 0x654)); 1169 } 1170 #endif 1171 1172 struct LargeStruct { 1173 int foo[100]; 1174 }; 1175 1176 // Test for bug http://llvm.org/bugs/show_bug.cgi?id=11763. 1177 // Struct copy should not cause asan warning even if lhs == rhs. 1178 TEST(AddressSanitizer, LargeStructCopyTest) { 1179 LargeStruct a; 1180 *Ident(&a) = *Ident(&a); 1181 } 1182 1183 ATTRIBUTE_NO_SANITIZE_ADDRESS 1184 static void NoSanitizeAddress() { 1185 char *foo = new char[10]; 1186 Ident(foo)[10] = 0; 1187 delete [] foo; 1188 } 1189 1190 TEST(AddressSanitizer, AttributeNoSanitizeAddressTest) { 1191 Ident(NoSanitizeAddress)(); 1192 } 1193 1194 // The new/delete/etc mismatch checks don't work on Android, 1195 // as calls to new/delete go through malloc/free. 1196 // OS X support is tracked here: 1197 // https://github.com/google/sanitizers/issues/131 1198 // Windows support is tracked here: 1199 // https://github.com/google/sanitizers/issues/309 1200 #if !defined(__ANDROID__) && \ 1201 !defined(__APPLE__) && \ 1202 !defined(_WIN32) 1203 static std::string MismatchStr(const std::string &str) { 1204 return std::string("AddressSanitizer: alloc-dealloc-mismatch \\(") + str; 1205 } 1206 1207 static std::string MismatchOrNewDeleteTypeStr(const std::string &mismatch_str) { 1208 return "(" + MismatchStr(mismatch_str) + 1209 ")|(AddressSanitizer: new-delete-type-mismatch)"; 1210 } 1211 1212 TEST(AddressSanitizer, AllocDeallocMismatch) { 1213 EXPECT_DEATH(free(Ident(new int)), 1214 MismatchStr("operator new vs free")); 1215 EXPECT_DEATH(free(Ident(new int[2])), 1216 MismatchStr("operator new \\[\\] vs free")); 1217 EXPECT_DEATH( 1218 delete (Ident(new int[2])), 1219 MismatchOrNewDeleteTypeStr("operator new \\[\\] vs operator delete")); 1220 EXPECT_DEATH(delete (Ident((int *)malloc(2 * sizeof(int)))), 1221 MismatchOrNewDeleteTypeStr("malloc vs operator delete")); 1222 EXPECT_DEATH(delete [] (Ident(new int)), 1223 MismatchStr("operator new vs operator delete \\[\\]")); 1224 EXPECT_DEATH(delete [] (Ident((int*)malloc(2 * sizeof(int)))), 1225 MismatchStr("malloc vs operator delete \\[\\]")); 1226 } 1227 #endif 1228 1229 // ------------------ demo tests; run each one-by-one ------------- 1230 // e.g. --gtest_filter=*DemoOOBLeftHigh --gtest_also_run_disabled_tests 1231 TEST(AddressSanitizer, DISABLED_DemoThreadedTest) { 1232 ThreadedTestSpawn(); 1233 } 1234 1235 void *SimpleBugOnSTack(void *x = 0) { 1236 char a[20]; 1237 Ident(a)[20] = 0; 1238 return 0; 1239 } 1240 1241 TEST(AddressSanitizer, DISABLED_DemoStackTest) { 1242 SimpleBugOnSTack(); 1243 } 1244 1245 TEST(AddressSanitizer, DISABLED_DemoThreadStackTest) { 1246 pthread_t t; 1247 PTHREAD_CREATE(&t, 0, SimpleBugOnSTack, 0); 1248 PTHREAD_JOIN(t, 0); 1249 } 1250 1251 TEST(AddressSanitizer, DISABLED_DemoUAFLowIn) { 1252 uaf_test<U1>(10, 0); 1253 } 1254 TEST(AddressSanitizer, DISABLED_DemoUAFLowLeft) { 1255 uaf_test<U1>(10, -2); 1256 } 1257 TEST(AddressSanitizer, DISABLED_DemoUAFLowRight) { 1258 uaf_test<U1>(10, 10); 1259 } 1260 1261 TEST(AddressSanitizer, DISABLED_DemoUAFHigh) { 1262 uaf_test<U1>(kLargeMalloc, 0); 1263 } 1264 1265 TEST(AddressSanitizer, DISABLED_DemoOOM) { 1266 size_t size = SANITIZER_WORDSIZE == 64 ? (size_t)(1ULL << 40) : (0xf0000000); 1267 printf("%p\n", malloc(size)); 1268 } 1269 1270 TEST(AddressSanitizer, DISABLED_DemoDoubleFreeTest) { 1271 DoubleFree(); 1272 } 1273 1274 TEST(AddressSanitizer, DISABLED_DemoNullDerefTest) { 1275 int *a = 0; 1276 Ident(a)[10] = 0; 1277 } 1278 1279 TEST(AddressSanitizer, DISABLED_DemoFunctionStaticTest) { 1280 static char a[100]; 1281 static char b[100]; 1282 static char c[100]; 1283 Ident(a); 1284 Ident(b); 1285 Ident(c); 1286 Ident(a)[5] = 0; 1287 Ident(b)[105] = 0; 1288 Ident(a)[5] = 0; 1289 } 1290 1291 TEST(AddressSanitizer, DISABLED_DemoTooMuchMemoryTest) { 1292 const size_t kAllocSize = (1 << 28) - 1024; 1293 size_t total_size = 0; 1294 while (true) { 1295 void *x = malloc(kAllocSize); 1296 memset(x, 0, kAllocSize); 1297 total_size += kAllocSize; 1298 fprintf(stderr, "total: %ldM %p\n", (long)total_size >> 20, x); 1299 } 1300 } 1301 1302 #if !defined(__NetBSD__) && !defined(__i386__) 1303 // https://github.com/google/sanitizers/issues/66 1304 TEST(AddressSanitizer, BufferOverflowAfterManyFrees) { 1305 for (int i = 0; i < 1000000; i++) { 1306 delete [] (Ident(new char [8644])); 1307 } 1308 char *x = new char[8192]; 1309 EXPECT_DEATH(x[Ident(8192)] = 0, "AddressSanitizer: heap-buffer-overflow"); 1310 delete [] Ident(x); 1311 } 1312 #endif 1313 1314 1315 // Test that instrumentation of stack allocations takes into account 1316 // AllocSize of a type, and not its StoreSize (16 vs 10 bytes for long double). 1317 // See http://llvm.org/bugs/show_bug.cgi?id=12047 for more details. 1318 TEST(AddressSanitizer, LongDoubleNegativeTest) { 1319 long double a, b; 1320 static long double c; 1321 memcpy(Ident(&a), Ident(&b), sizeof(long double)); 1322 memcpy(Ident(&c), Ident(&b), sizeof(long double)); 1323 } 1324 1325 #if !defined(_WIN32) 1326 TEST(AddressSanitizer, pthread_getschedparam) { 1327 int policy; 1328 struct sched_param param; 1329 EXPECT_DEATH( 1330 pthread_getschedparam(pthread_self(), &policy, Ident(¶m) + 2), 1331 "AddressSanitizer: stack-buffer-.*flow"); 1332 EXPECT_DEATH( 1333 pthread_getschedparam(pthread_self(), Ident(&policy) - 1, ¶m), 1334 "AddressSanitizer: stack-buffer-.*flow"); 1335 int res = pthread_getschedparam(pthread_self(), &policy, ¶m); 1336 ASSERT_EQ(0, res); 1337 } 1338 #endif 1339 1340 #if SANITIZER_TEST_HAS_PRINTF_L 1341 static int vsnprintf_l_wrapper(char *s, size_t n, 1342 locale_t l, const char *format, ...) { 1343 va_list va; 1344 va_start(va, format); 1345 int res = vsnprintf_l(s, n , l, format, va); 1346 va_end(va); 1347 return res; 1348 } 1349 1350 TEST(AddressSanitizer, snprintf_l) { 1351 char buff[5]; 1352 // Check that snprintf_l() works fine with Asan. 1353 int res = snprintf_l(buff, 5, SANITIZER_GET_C_LOCALE, "%s", "snprintf_l()"); 1354 EXPECT_EQ(12, res); 1355 // Check that vsnprintf_l() works fine with Asan. 1356 res = vsnprintf_l_wrapper(buff, 5, SANITIZER_GET_C_LOCALE, "%s", 1357 "vsnprintf_l()"); 1358 EXPECT_EQ(13, res); 1359 1360 EXPECT_DEATH( 1361 snprintf_l(buff, 10, SANITIZER_GET_C_LOCALE, "%s", "snprintf_l()"), 1362 "AddressSanitizer: stack-buffer-overflow"); 1363 EXPECT_DEATH(vsnprintf_l_wrapper(buff, 10, SANITIZER_GET_C_LOCALE, "%s", 1364 "vsnprintf_l()"), 1365 "AddressSanitizer: stack-buffer-overflow"); 1366 } 1367 #endif 1368