1 //===-- sanitizer_linux_libcdep.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 shared between AddressSanitizer and ThreadSanitizer 10 // run-time libraries and implements linux-specific functions from 11 // sanitizer_libc.h. 12 //===----------------------------------------------------------------------===// 13 14 #include "sanitizer_platform.h" 15 16 #if SANITIZER_FREEBSD || SANITIZER_LINUX || SANITIZER_NETBSD || \ 17 SANITIZER_SOLARIS 18 19 #include "sanitizer_allocator_internal.h" 20 #include "sanitizer_atomic.h" 21 #include "sanitizer_common.h" 22 #include "sanitizer_file.h" 23 #include "sanitizer_flags.h" 24 #include "sanitizer_freebsd.h" 25 #include "sanitizer_getauxval.h" 26 #include "sanitizer_glibc_version.h" 27 #include "sanitizer_linux.h" 28 #include "sanitizer_placement_new.h" 29 #include "sanitizer_procmaps.h" 30 31 #if SANITIZER_NETBSD 32 #define _RTLD_SOURCE // for __lwp_gettcb_fast() / __lwp_getprivate_fast() 33 #endif 34 35 #include <dlfcn.h> // for dlsym() 36 #include <link.h> 37 #include <pthread.h> 38 #include <signal.h> 39 #include <sys/mman.h> 40 #include <sys/resource.h> 41 #include <syslog.h> 42 43 #if !defined(ElfW) 44 #define ElfW(type) Elf_##type 45 #endif 46 47 #if SANITIZER_FREEBSD 48 #include <pthread_np.h> 49 #include <osreldate.h> 50 #include <sys/sysctl.h> 51 #define pthread_getattr_np pthread_attr_get_np 52 // The MAP_NORESERVE define has been removed in FreeBSD 11.x, and even before 53 // that, it was never implemented. So just define it to zero. 54 #undef MAP_NORESERVE 55 #define MAP_NORESERVE 0 56 #endif 57 58 #if SANITIZER_NETBSD 59 #include <sys/sysctl.h> 60 #include <sys/tls.h> 61 #include <lwp.h> 62 #endif 63 64 #if SANITIZER_SOLARIS 65 #include <stdlib.h> 66 #include <thread.h> 67 #endif 68 69 #if SANITIZER_ANDROID 70 #include <android/api-level.h> 71 #if !defined(CPU_COUNT) && !defined(__aarch64__) 72 #include <dirent.h> 73 #include <fcntl.h> 74 struct __sanitizer::linux_dirent { 75 long d_ino; 76 off_t d_off; 77 unsigned short d_reclen; 78 char d_name[]; 79 }; 80 #endif 81 #endif 82 83 #if !SANITIZER_ANDROID 84 #include <elf.h> 85 #include <unistd.h> 86 #endif 87 88 namespace __sanitizer { 89 90 SANITIZER_WEAK_ATTRIBUTE int 91 real_sigaction(int signum, const void *act, void *oldact); 92 93 int internal_sigaction(int signum, const void *act, void *oldact) { 94 #if !SANITIZER_GO 95 if (&real_sigaction) 96 return real_sigaction(signum, act, oldact); 97 #endif 98 return sigaction(signum, (const struct sigaction *)act, 99 (struct sigaction *)oldact); 100 } 101 102 void GetThreadStackTopAndBottom(bool at_initialization, uptr *stack_top, 103 uptr *stack_bottom) { 104 CHECK(stack_top); 105 CHECK(stack_bottom); 106 if (at_initialization) { 107 // This is the main thread. Libpthread may not be initialized yet. 108 struct rlimit rl; 109 CHECK_EQ(getrlimit(RLIMIT_STACK, &rl), 0); 110 111 // Find the mapping that contains a stack variable. 112 MemoryMappingLayout proc_maps(/*cache_enabled*/true); 113 if (proc_maps.Error()) { 114 *stack_top = *stack_bottom = 0; 115 return; 116 } 117 MemoryMappedSegment segment; 118 uptr prev_end = 0; 119 while (proc_maps.Next(&segment)) { 120 if ((uptr)&rl < segment.end) break; 121 prev_end = segment.end; 122 } 123 CHECK((uptr)&rl >= segment.start && (uptr)&rl < segment.end); 124 125 // Get stacksize from rlimit, but clip it so that it does not overlap 126 // with other mappings. 127 uptr stacksize = rl.rlim_cur; 128 if (stacksize > segment.end - prev_end) stacksize = segment.end - prev_end; 129 // When running with unlimited stack size, we still want to set some limit. 130 // The unlimited stack size is caused by 'ulimit -s unlimited'. 131 // Also, for some reason, GNU make spawns subprocesses with unlimited stack. 132 if (stacksize > kMaxThreadStackSize) 133 stacksize = kMaxThreadStackSize; 134 *stack_top = segment.end; 135 *stack_bottom = segment.end - stacksize; 136 return; 137 } 138 uptr stacksize = 0; 139 void *stackaddr = nullptr; 140 #if SANITIZER_SOLARIS 141 stack_t ss; 142 CHECK_EQ(thr_stksegment(&ss), 0); 143 stacksize = ss.ss_size; 144 stackaddr = (char *)ss.ss_sp - stacksize; 145 #else // !SANITIZER_SOLARIS 146 pthread_attr_t attr; 147 pthread_attr_init(&attr); 148 CHECK_EQ(pthread_getattr_np(pthread_self(), &attr), 0); 149 my_pthread_attr_getstack(&attr, &stackaddr, &stacksize); 150 pthread_attr_destroy(&attr); 151 #endif // SANITIZER_SOLARIS 152 153 *stack_top = (uptr)stackaddr + stacksize; 154 *stack_bottom = (uptr)stackaddr; 155 } 156 157 #if !SANITIZER_GO 158 bool SetEnv(const char *name, const char *value) { 159 void *f = dlsym(RTLD_NEXT, "setenv"); 160 if (!f) 161 return false; 162 typedef int(*setenv_ft)(const char *name, const char *value, int overwrite); 163 setenv_ft setenv_f; 164 CHECK_EQ(sizeof(setenv_f), sizeof(f)); 165 internal_memcpy(&setenv_f, &f, sizeof(f)); 166 return setenv_f(name, value, 1) == 0; 167 } 168 #endif 169 170 __attribute__((unused)) static bool GetLibcVersion(int *major, int *minor, 171 int *patch) { 172 #ifdef _CS_GNU_LIBC_VERSION 173 char buf[64]; 174 uptr len = confstr(_CS_GNU_LIBC_VERSION, buf, sizeof(buf)); 175 if (len >= sizeof(buf)) 176 return false; 177 buf[len] = 0; 178 static const char kGLibC[] = "glibc "; 179 if (internal_strncmp(buf, kGLibC, sizeof(kGLibC) - 1) != 0) 180 return false; 181 const char *p = buf + sizeof(kGLibC) - 1; 182 *major = internal_simple_strtoll(p, &p, 10); 183 *minor = (*p == '.') ? internal_simple_strtoll(p + 1, &p, 10) : 0; 184 *patch = (*p == '.') ? internal_simple_strtoll(p + 1, &p, 10) : 0; 185 return true; 186 #else 187 return false; 188 #endif 189 } 190 191 // True if we can use dlpi_tls_data. glibc before 2.25 may leave NULL (BZ 192 // #19826) so dlpi_tls_data cannot be used. 193 // 194 // musl before 1.2.3 and FreeBSD as of 12.2 incorrectly set dlpi_tls_data to 195 // the TLS initialization image 196 // https://bugs.freebsd.org/bugzilla/show_bug.cgi?id=254774 197 __attribute__((unused)) static int g_use_dlpi_tls_data; 198 199 #if SANITIZER_GLIBC && !SANITIZER_GO 200 __attribute__((unused)) static uptr g_tls_size; 201 void InitTlsSize() { 202 int major, minor, patch; 203 g_use_dlpi_tls_data = 204 GetLibcVersion(&major, &minor, &patch) && major == 2 && minor >= 25; 205 206 #if defined(__x86_64__) || defined(__powerpc64__) 207 void *get_tls_static_info = dlsym(RTLD_NEXT, "_dl_get_tls_static_info"); 208 size_t tls_align; 209 ((void (*)(size_t *, size_t *))get_tls_static_info)(&g_tls_size, &tls_align); 210 #endif 211 } 212 #else 213 void InitTlsSize() { } 214 #endif // SANITIZER_GLIBC && !SANITIZER_GO 215 216 // On glibc x86_64, ThreadDescriptorSize() needs to be precise due to the usage 217 // of g_tls_size. On other targets, ThreadDescriptorSize() is only used by lsan 218 // to get the pointer to thread-specific data keys in the thread control block. 219 #if (defined(__x86_64__) || defined(__i386__) || defined(__mips__) || \ 220 defined(__aarch64__) || defined(__powerpc64__) || defined(__s390__) || \ 221 defined(__arm__) || SANITIZER_RISCV64) && \ 222 (SANITIZER_FREEBSD || SANITIZER_LINUX) && !SANITIZER_ANDROID 223 // sizeof(struct pthread) from glibc. 224 static atomic_uintptr_t thread_descriptor_size; 225 226 uptr ThreadDescriptorSize() { 227 uptr val = atomic_load_relaxed(&thread_descriptor_size); 228 if (val) 229 return val; 230 #if defined(__x86_64__) || defined(__i386__) || defined(__arm__) 231 int major; 232 int minor; 233 int patch; 234 if (GetLibcVersion(&major, &minor, &patch) && major == 2) { 235 /* sizeof(struct pthread) values from various glibc versions. */ 236 if (SANITIZER_X32) 237 val = 1728; // Assume only one particular version for x32. 238 // For ARM sizeof(struct pthread) changed in Glibc 2.23. 239 else if (SANITIZER_ARM) 240 val = minor <= 22 ? 1120 : 1216; 241 else if (minor <= 3) 242 val = FIRST_32_SECOND_64(1104, 1696); 243 else if (minor == 4) 244 val = FIRST_32_SECOND_64(1120, 1728); 245 else if (minor == 5) 246 val = FIRST_32_SECOND_64(1136, 1728); 247 else if (minor <= 9) 248 val = FIRST_32_SECOND_64(1136, 1712); 249 else if (minor == 10) 250 val = FIRST_32_SECOND_64(1168, 1776); 251 else if (minor == 11 || (minor == 12 && patch == 1)) 252 val = FIRST_32_SECOND_64(1168, 2288); 253 else if (minor <= 14) 254 val = FIRST_32_SECOND_64(1168, 2304); 255 else if (minor < 32) // Unknown version 256 val = FIRST_32_SECOND_64(1216, 2304); 257 else // minor == 32 258 val = FIRST_32_SECOND_64(1344, 2496); 259 } 260 #elif defined(__mips__) 261 // TODO(sagarthakur): add more values as per different glibc versions. 262 val = FIRST_32_SECOND_64(1152, 1776); 263 #elif SANITIZER_RISCV64 264 int major; 265 int minor; 266 int patch; 267 if (GetLibcVersion(&major, &minor, &patch) && major == 2) { 268 // TODO: consider adding an optional runtime check for an unknown (untested) 269 // glibc version 270 if (minor <= 28) // WARNING: the highest tested version is 2.29 271 val = 1772; // no guarantees for this one 272 else if (minor <= 31) 273 val = 1772; // tested against glibc 2.29, 2.31 274 else 275 val = 1936; // tested against glibc 2.32 276 } 277 278 #elif defined(__aarch64__) 279 // The sizeof (struct pthread) is the same from GLIBC 2.17 to 2.22. 280 val = 1776; 281 #elif defined(__powerpc64__) 282 val = 1776; // from glibc.ppc64le 2.20-8.fc21 283 #elif defined(__s390__) 284 val = FIRST_32_SECOND_64(1152, 1776); // valid for glibc 2.22 285 #endif 286 if (val) 287 atomic_store_relaxed(&thread_descriptor_size, val); 288 return val; 289 } 290 291 #if defined(__mips__) || defined(__powerpc64__) || SANITIZER_RISCV64 292 // TlsPreTcbSize includes size of struct pthread_descr and size of tcb 293 // head structure. It lies before the static tls blocks. 294 static uptr TlsPreTcbSize() { 295 #if defined(__mips__) 296 const uptr kTcbHead = 16; // sizeof (tcbhead_t) 297 #elif defined(__powerpc64__) 298 const uptr kTcbHead = 88; // sizeof (tcbhead_t) 299 #elif SANITIZER_RISCV64 300 const uptr kTcbHead = 16; // sizeof (tcbhead_t) 301 #endif 302 const uptr kTlsAlign = 16; 303 const uptr kTlsPreTcbSize = 304 RoundUpTo(ThreadDescriptorSize() + kTcbHead, kTlsAlign); 305 return kTlsPreTcbSize; 306 } 307 #endif 308 309 #if !SANITIZER_GO 310 namespace { 311 struct TlsBlock { 312 uptr begin, end, align; 313 size_t tls_modid; 314 bool operator<(const TlsBlock &rhs) const { return begin < rhs.begin; } 315 }; 316 } // namespace 317 318 extern "C" void *__tls_get_addr(size_t *); 319 320 static int CollectStaticTlsBlocks(struct dl_phdr_info *info, size_t size, 321 void *data) { 322 if (!info->dlpi_tls_modid) 323 return 0; 324 uptr begin = (uptr)info->dlpi_tls_data; 325 if (!g_use_dlpi_tls_data) { 326 // Call __tls_get_addr as a fallback. This forces TLS allocation on glibc 327 // and FreeBSD. 328 size_t mod_and_off[2] = {info->dlpi_tls_modid, 0}; 329 begin = (uptr)__tls_get_addr(mod_and_off); 330 } 331 for (unsigned i = 0; i != info->dlpi_phnum; ++i) 332 if (info->dlpi_phdr[i].p_type == PT_TLS) { 333 static_cast<InternalMmapVector<TlsBlock> *>(data)->push_back( 334 TlsBlock{begin, begin + info->dlpi_phdr[i].p_memsz, 335 info->dlpi_phdr[i].p_align, info->dlpi_tls_modid}); 336 break; 337 } 338 return 0; 339 } 340 341 __attribute__((unused)) static void GetStaticTlsBoundary(uptr *addr, uptr *size, 342 uptr *align) { 343 InternalMmapVector<TlsBlock> ranges; 344 dl_iterate_phdr(CollectStaticTlsBlocks, &ranges); 345 uptr len = ranges.size(); 346 Sort(ranges.begin(), len); 347 // Find the range with tls_modid=1. For glibc, because libc.so uses PT_TLS, 348 // this module is guaranteed to exist and is one of the initially loaded 349 // modules. 350 uptr one = 0; 351 while (one != len && ranges[one].tls_modid != 1) ++one; 352 if (one == len) { 353 // This may happen with musl if no module uses PT_TLS. 354 *addr = 0; 355 *size = 0; 356 *align = 1; 357 return; 358 } 359 // Find the maximum consecutive ranges. We consider two modules consecutive if 360 // the gap is smaller than the alignment. The dynamic loader places static TLS 361 // blocks this way not to waste space. 362 uptr l = one; 363 *align = ranges[l].align; 364 while (l != 0 && ranges[l].begin < ranges[l - 1].end + ranges[l - 1].align) 365 *align = Max(*align, ranges[--l].align); 366 uptr r = one + 1; 367 while (r != len && ranges[r].begin < ranges[r - 1].end + ranges[r - 1].align) 368 *align = Max(*align, ranges[r++].align); 369 *addr = ranges[l].begin; 370 *size = ranges[r - 1].end - ranges[l].begin; 371 } 372 #endif // !SANITIZER_GO 373 #endif // (x86_64 || i386 || mips || ...) && (SANITIZER_FREEBSD || 374 // SANITIZER_LINUX) && !SANITIZER_ANDROID 375 376 #if SANITIZER_NETBSD 377 static struct tls_tcb * ThreadSelfTlsTcb() { 378 struct tls_tcb *tcb = nullptr; 379 #ifdef __HAVE___LWP_GETTCB_FAST 380 tcb = (struct tls_tcb *)__lwp_gettcb_fast(); 381 #elif defined(__HAVE___LWP_GETPRIVATE_FAST) 382 tcb = (struct tls_tcb *)__lwp_getprivate_fast(); 383 #endif 384 return tcb; 385 } 386 387 uptr ThreadSelf() { 388 return (uptr)ThreadSelfTlsTcb()->tcb_pthread; 389 } 390 391 int GetSizeFromHdr(struct dl_phdr_info *info, size_t size, void *data) { 392 const Elf_Phdr *hdr = info->dlpi_phdr; 393 const Elf_Phdr *last_hdr = hdr + info->dlpi_phnum; 394 395 for (; hdr != last_hdr; ++hdr) { 396 if (hdr->p_type == PT_TLS && info->dlpi_tls_modid == 1) { 397 *(uptr*)data = hdr->p_memsz; 398 break; 399 } 400 } 401 return 0; 402 } 403 #endif // SANITIZER_NETBSD 404 405 #if SANITIZER_ANDROID 406 // Bionic provides this API since S. 407 extern "C" SANITIZER_WEAK_ATTRIBUTE void __libc_get_static_tls_bounds(void **, 408 void **); 409 #endif 410 411 #if !SANITIZER_GO 412 static void GetTls(uptr *addr, uptr *size) { 413 #if SANITIZER_ANDROID 414 if (&__libc_get_static_tls_bounds) { 415 void *start_addr; 416 void *end_addr; 417 __libc_get_static_tls_bounds(&start_addr, &end_addr); 418 *addr = reinterpret_cast<uptr>(start_addr); 419 *size = 420 reinterpret_cast<uptr>(end_addr) - reinterpret_cast<uptr>(start_addr); 421 } else { 422 *addr = 0; 423 *size = 0; 424 } 425 #elif SANITIZER_GLIBC && defined(__x86_64__) 426 // For x86-64, use an O(1) approach which requires precise 427 // ThreadDescriptorSize. g_tls_size was initialized in InitTlsSize. 428 asm("mov %%fs:16,%0" : "=r"(*addr)); 429 *size = g_tls_size; 430 *addr -= *size; 431 *addr += ThreadDescriptorSize(); 432 #elif SANITIZER_GLIBC && defined(__powerpc64__) 433 // Workaround for glibc<2.25(?). 2.27 is known to not need this. 434 uptr tp; 435 asm("addi %0,13,-0x7000" : "=r"(tp)); 436 const uptr pre_tcb_size = TlsPreTcbSize(); 437 *addr = tp - pre_tcb_size; 438 *size = g_tls_size + pre_tcb_size; 439 #elif SANITIZER_FREEBSD || SANITIZER_LINUX 440 uptr align; 441 GetStaticTlsBoundary(addr, size, &align); 442 #if defined(__x86_64__) || defined(__i386__) || defined(__s390__) 443 if (SANITIZER_GLIBC) { 444 #if defined(__s390__) 445 align = Max<uptr>(align, 16); 446 #else 447 align = Max<uptr>(align, 64); 448 #endif 449 } 450 const uptr tp = RoundUpTo(*addr + *size, align); 451 452 // lsan requires the range to additionally cover the static TLS surplus 453 // (elf/dl-tls.c defines 1664). Otherwise there may be false positives for 454 // allocations only referenced by tls in dynamically loaded modules. 455 if (SANITIZER_GLIBC) 456 *size += 1644; 457 else if (SANITIZER_FREEBSD) 458 *size += 128; // RTLD_STATIC_TLS_EXTRA 459 460 // Extend the range to include the thread control block. On glibc, lsan needs 461 // the range to include pthread::{specific_1stblock,specific} so that 462 // allocations only referenced by pthread_setspecific can be scanned. This may 463 // underestimate by at most TLS_TCB_ALIGN-1 bytes but it should be fine 464 // because the number of bytes after pthread::specific is larger. 465 *addr = tp - RoundUpTo(*size, align); 466 *size = tp - *addr + ThreadDescriptorSize(); 467 #else 468 if (SANITIZER_GLIBC) 469 *size += 1664; 470 else if (SANITIZER_FREEBSD) 471 *size += 128; // RTLD_STATIC_TLS_EXTRA 472 #if defined(__mips__) || defined(__powerpc64__) || SANITIZER_RISCV64 473 const uptr pre_tcb_size = TlsPreTcbSize(); 474 *addr -= pre_tcb_size; 475 *size += pre_tcb_size; 476 #else 477 // arm and aarch64 reserve two words at TP, so this underestimates the range. 478 // However, this is sufficient for the purpose of finding the pointers to 479 // thread-specific data keys. 480 const uptr tcb_size = ThreadDescriptorSize(); 481 *addr -= tcb_size; 482 *size += tcb_size; 483 #endif 484 #endif 485 #elif SANITIZER_NETBSD 486 struct tls_tcb * const tcb = ThreadSelfTlsTcb(); 487 *addr = 0; 488 *size = 0; 489 if (tcb != 0) { 490 // Find size (p_memsz) of dlpi_tls_modid 1 (TLS block of the main program). 491 // ld.elf_so hardcodes the index 1. 492 dl_iterate_phdr(GetSizeFromHdr, size); 493 494 if (*size != 0) { 495 // The block has been found and tcb_dtv[1] contains the base address 496 *addr = (uptr)tcb->tcb_dtv[1]; 497 } 498 } 499 #elif SANITIZER_SOLARIS 500 // FIXME 501 *addr = 0; 502 *size = 0; 503 #else 504 #error "Unknown OS" 505 #endif 506 } 507 #endif 508 509 #if !SANITIZER_GO 510 uptr GetTlsSize() { 511 #if SANITIZER_FREEBSD || SANITIZER_LINUX || SANITIZER_NETBSD || \ 512 SANITIZER_SOLARIS 513 uptr addr, size; 514 GetTls(&addr, &size); 515 return size; 516 #else 517 return 0; 518 #endif 519 } 520 #endif 521 522 void GetThreadStackAndTls(bool main, uptr *stk_addr, uptr *stk_size, 523 uptr *tls_addr, uptr *tls_size) { 524 #if SANITIZER_GO 525 // Stub implementation for Go. 526 *stk_addr = *stk_size = *tls_addr = *tls_size = 0; 527 #else 528 GetTls(tls_addr, tls_size); 529 530 uptr stack_top, stack_bottom; 531 GetThreadStackTopAndBottom(main, &stack_top, &stack_bottom); 532 *stk_addr = stack_bottom; 533 *stk_size = stack_top - stack_bottom; 534 535 if (!main) { 536 // If stack and tls intersect, make them non-intersecting. 537 if (*tls_addr > *stk_addr && *tls_addr < *stk_addr + *stk_size) { 538 if (*stk_addr + *stk_size < *tls_addr + *tls_size) 539 *tls_size = *stk_addr + *stk_size - *tls_addr; 540 *stk_size = *tls_addr - *stk_addr; 541 } 542 } 543 #endif 544 } 545 546 #if !SANITIZER_FREEBSD 547 typedef ElfW(Phdr) Elf_Phdr; 548 #elif SANITIZER_WORDSIZE == 32 && __FreeBSD_version <= 902001 // v9.2 549 #define Elf_Phdr XElf32_Phdr 550 #define dl_phdr_info xdl_phdr_info 551 #define dl_iterate_phdr(c, b) xdl_iterate_phdr((c), (b)) 552 #endif // !SANITIZER_FREEBSD 553 554 struct DlIteratePhdrData { 555 InternalMmapVectorNoCtor<LoadedModule> *modules; 556 bool first; 557 }; 558 559 static int AddModuleSegments(const char *module_name, dl_phdr_info *info, 560 InternalMmapVectorNoCtor<LoadedModule> *modules) { 561 if (module_name[0] == '\0') 562 return 0; 563 LoadedModule cur_module; 564 cur_module.set(module_name, info->dlpi_addr); 565 for (int i = 0; i < (int)info->dlpi_phnum; i++) { 566 const Elf_Phdr *phdr = &info->dlpi_phdr[i]; 567 if (phdr->p_type == PT_LOAD) { 568 uptr cur_beg = info->dlpi_addr + phdr->p_vaddr; 569 uptr cur_end = cur_beg + phdr->p_memsz; 570 bool executable = phdr->p_flags & PF_X; 571 bool writable = phdr->p_flags & PF_W; 572 cur_module.addAddressRange(cur_beg, cur_end, executable, 573 writable); 574 } 575 } 576 modules->push_back(cur_module); 577 return 0; 578 } 579 580 static int dl_iterate_phdr_cb(dl_phdr_info *info, size_t size, void *arg) { 581 DlIteratePhdrData *data = (DlIteratePhdrData *)arg; 582 if (data->first) { 583 InternalMmapVector<char> module_name(kMaxPathLength); 584 data->first = false; 585 // First module is the binary itself. 586 ReadBinaryNameCached(module_name.data(), module_name.size()); 587 return AddModuleSegments(module_name.data(), info, data->modules); 588 } 589 590 if (info->dlpi_name) { 591 InternalScopedString module_name; 592 module_name.append("%s", info->dlpi_name); 593 return AddModuleSegments(module_name.data(), info, data->modules); 594 } 595 596 return 0; 597 } 598 599 #if SANITIZER_ANDROID && __ANDROID_API__ < 21 600 extern "C" __attribute__((weak)) int dl_iterate_phdr( 601 int (*)(struct dl_phdr_info *, size_t, void *), void *); 602 #endif 603 604 static bool requiresProcmaps() { 605 #if SANITIZER_ANDROID && __ANDROID_API__ <= 22 606 // Fall back to /proc/maps if dl_iterate_phdr is unavailable or broken. 607 // The runtime check allows the same library to work with 608 // both K and L (and future) Android releases. 609 return AndroidGetApiLevel() <= ANDROID_LOLLIPOP_MR1; 610 #else 611 return false; 612 #endif 613 } 614 615 static void procmapsInit(InternalMmapVectorNoCtor<LoadedModule> *modules) { 616 MemoryMappingLayout memory_mapping(/*cache_enabled*/true); 617 memory_mapping.DumpListOfModules(modules); 618 } 619 620 void ListOfModules::init() { 621 clearOrInit(); 622 if (requiresProcmaps()) { 623 procmapsInit(&modules_); 624 } else { 625 DlIteratePhdrData data = {&modules_, true}; 626 dl_iterate_phdr(dl_iterate_phdr_cb, &data); 627 } 628 } 629 630 // When a custom loader is used, dl_iterate_phdr may not contain the full 631 // list of modules. Allow callers to fall back to using procmaps. 632 void ListOfModules::fallbackInit() { 633 if (!requiresProcmaps()) { 634 clearOrInit(); 635 procmapsInit(&modules_); 636 } else { 637 clear(); 638 } 639 } 640 641 // getrusage does not give us the current RSS, only the max RSS. 642 // Still, this is better than nothing if /proc/self/statm is not available 643 // for some reason, e.g. due to a sandbox. 644 static uptr GetRSSFromGetrusage() { 645 struct rusage usage; 646 if (getrusage(RUSAGE_SELF, &usage)) // Failed, probably due to a sandbox. 647 return 0; 648 return usage.ru_maxrss << 10; // ru_maxrss is in Kb. 649 } 650 651 uptr GetRSS() { 652 if (!common_flags()->can_use_proc_maps_statm) 653 return GetRSSFromGetrusage(); 654 fd_t fd = OpenFile("/proc/self/statm", RdOnly); 655 if (fd == kInvalidFd) 656 return GetRSSFromGetrusage(); 657 char buf[64]; 658 uptr len = internal_read(fd, buf, sizeof(buf) - 1); 659 internal_close(fd); 660 if ((sptr)len <= 0) 661 return 0; 662 buf[len] = 0; 663 // The format of the file is: 664 // 1084 89 69 11 0 79 0 665 // We need the second number which is RSS in pages. 666 char *pos = buf; 667 // Skip the first number. 668 while (*pos >= '0' && *pos <= '9') 669 pos++; 670 // Skip whitespaces. 671 while (!(*pos >= '0' && *pos <= '9') && *pos != 0) 672 pos++; 673 // Read the number. 674 uptr rss = 0; 675 while (*pos >= '0' && *pos <= '9') 676 rss = rss * 10 + *pos++ - '0'; 677 return rss * GetPageSizeCached(); 678 } 679 680 // sysconf(_SC_NPROCESSORS_{CONF,ONLN}) cannot be used on most platforms as 681 // they allocate memory. 682 u32 GetNumberOfCPUs() { 683 #if SANITIZER_FREEBSD || SANITIZER_NETBSD 684 u32 ncpu; 685 int req[2]; 686 uptr len = sizeof(ncpu); 687 req[0] = CTL_HW; 688 req[1] = HW_NCPU; 689 CHECK_EQ(internal_sysctl(req, 2, &ncpu, &len, NULL, 0), 0); 690 return ncpu; 691 #elif SANITIZER_ANDROID && !defined(CPU_COUNT) && !defined(__aarch64__) 692 // Fall back to /sys/devices/system/cpu on Android when cpu_set_t doesn't 693 // exist in sched.h. That is the case for toolchains generated with older 694 // NDKs. 695 // This code doesn't work on AArch64 because internal_getdents makes use of 696 // the 64bit getdents syscall, but cpu_set_t seems to always exist on AArch64. 697 uptr fd = internal_open("/sys/devices/system/cpu", O_RDONLY | O_DIRECTORY); 698 if (internal_iserror(fd)) 699 return 0; 700 InternalMmapVector<u8> buffer(4096); 701 uptr bytes_read = buffer.size(); 702 uptr n_cpus = 0; 703 u8 *d_type; 704 struct linux_dirent *entry = (struct linux_dirent *)&buffer[bytes_read]; 705 while (true) { 706 if ((u8 *)entry >= &buffer[bytes_read]) { 707 bytes_read = internal_getdents(fd, (struct linux_dirent *)buffer.data(), 708 buffer.size()); 709 if (internal_iserror(bytes_read) || !bytes_read) 710 break; 711 entry = (struct linux_dirent *)buffer.data(); 712 } 713 d_type = (u8 *)entry + entry->d_reclen - 1; 714 if (d_type >= &buffer[bytes_read] || 715 (u8 *)&entry->d_name[3] >= &buffer[bytes_read]) 716 break; 717 if (entry->d_ino != 0 && *d_type == DT_DIR) { 718 if (entry->d_name[0] == 'c' && entry->d_name[1] == 'p' && 719 entry->d_name[2] == 'u' && 720 entry->d_name[3] >= '0' && entry->d_name[3] <= '9') 721 n_cpus++; 722 } 723 entry = (struct linux_dirent *)(((u8 *)entry) + entry->d_reclen); 724 } 725 internal_close(fd); 726 return n_cpus; 727 #elif SANITIZER_SOLARIS 728 return sysconf(_SC_NPROCESSORS_ONLN); 729 #else 730 cpu_set_t CPUs; 731 CHECK_EQ(sched_getaffinity(0, sizeof(cpu_set_t), &CPUs), 0); 732 return CPU_COUNT(&CPUs); 733 #endif 734 } 735 736 #if SANITIZER_LINUX 737 738 #if SANITIZER_ANDROID 739 static atomic_uint8_t android_log_initialized; 740 741 void AndroidLogInit() { 742 openlog(GetProcessName(), 0, LOG_USER); 743 atomic_store(&android_log_initialized, 1, memory_order_release); 744 } 745 746 static bool ShouldLogAfterPrintf() { 747 return atomic_load(&android_log_initialized, memory_order_acquire); 748 } 749 750 extern "C" SANITIZER_WEAK_ATTRIBUTE 751 int async_safe_write_log(int pri, const char* tag, const char* msg); 752 extern "C" SANITIZER_WEAK_ATTRIBUTE 753 int __android_log_write(int prio, const char* tag, const char* msg); 754 755 // ANDROID_LOG_INFO is 4, but can't be resolved at runtime. 756 #define SANITIZER_ANDROID_LOG_INFO 4 757 758 // async_safe_write_log is a new public version of __libc_write_log that is 759 // used behind syslog. It is preferable to syslog as it will not do any dynamic 760 // memory allocation or formatting. 761 // If the function is not available, syslog is preferred for L+ (it was broken 762 // pre-L) as __android_log_write triggers a racey behavior with the strncpy 763 // interceptor. Fallback to __android_log_write pre-L. 764 void WriteOneLineToSyslog(const char *s) { 765 if (&async_safe_write_log) { 766 async_safe_write_log(SANITIZER_ANDROID_LOG_INFO, GetProcessName(), s); 767 } else if (AndroidGetApiLevel() > ANDROID_KITKAT) { 768 syslog(LOG_INFO, "%s", s); 769 } else { 770 CHECK(&__android_log_write); 771 __android_log_write(SANITIZER_ANDROID_LOG_INFO, nullptr, s); 772 } 773 } 774 775 extern "C" SANITIZER_WEAK_ATTRIBUTE 776 void android_set_abort_message(const char *); 777 778 void SetAbortMessage(const char *str) { 779 if (&android_set_abort_message) 780 android_set_abort_message(str); 781 } 782 #else 783 void AndroidLogInit() {} 784 785 static bool ShouldLogAfterPrintf() { return true; } 786 787 void WriteOneLineToSyslog(const char *s) { syslog(LOG_INFO, "%s", s); } 788 789 void SetAbortMessage(const char *str) {} 790 #endif // SANITIZER_ANDROID 791 792 void LogMessageOnPrintf(const char *str) { 793 if (common_flags()->log_to_syslog && ShouldLogAfterPrintf()) 794 WriteToSyslog(str); 795 } 796 797 #endif // SANITIZER_LINUX 798 799 #if SANITIZER_GLIBC && !SANITIZER_GO 800 // glibc crashes when using clock_gettime from a preinit_array function as the 801 // vDSO function pointers haven't been initialized yet. __progname is 802 // initialized after the vDSO function pointers, so if it exists, is not null 803 // and is not empty, we can use clock_gettime. 804 extern "C" SANITIZER_WEAK_ATTRIBUTE char *__progname; 805 inline bool CanUseVDSO() { return &__progname && __progname && *__progname; } 806 807 // MonotonicNanoTime is a timing function that can leverage the vDSO by calling 808 // clock_gettime. real_clock_gettime only exists if clock_gettime is 809 // intercepted, so define it weakly and use it if available. 810 extern "C" SANITIZER_WEAK_ATTRIBUTE 811 int real_clock_gettime(u32 clk_id, void *tp); 812 u64 MonotonicNanoTime() { 813 timespec ts; 814 if (CanUseVDSO()) { 815 if (&real_clock_gettime) 816 real_clock_gettime(CLOCK_MONOTONIC, &ts); 817 else 818 clock_gettime(CLOCK_MONOTONIC, &ts); 819 } else { 820 internal_clock_gettime(CLOCK_MONOTONIC, &ts); 821 } 822 return (u64)ts.tv_sec * (1000ULL * 1000 * 1000) + ts.tv_nsec; 823 } 824 #else 825 // Non-glibc & Go always use the regular function. 826 u64 MonotonicNanoTime() { 827 timespec ts; 828 clock_gettime(CLOCK_MONOTONIC, &ts); 829 return (u64)ts.tv_sec * (1000ULL * 1000 * 1000) + ts.tv_nsec; 830 } 831 #endif // SANITIZER_GLIBC && !SANITIZER_GO 832 833 void ReExec() { 834 const char *pathname = "/proc/self/exe"; 835 836 #if SANITIZER_NETBSD 837 static const int name[] = { 838 CTL_KERN, 839 KERN_PROC_ARGS, 840 -1, 841 KERN_PROC_PATHNAME, 842 }; 843 char path[400]; 844 uptr len; 845 846 len = sizeof(path); 847 if (internal_sysctl(name, ARRAY_SIZE(name), path, &len, NULL, 0) != -1) 848 pathname = path; 849 #elif SANITIZER_SOLARIS 850 pathname = getexecname(); 851 CHECK_NE(pathname, NULL); 852 #elif SANITIZER_USE_GETAUXVAL 853 // Calling execve with /proc/self/exe sets that as $EXEC_ORIGIN. Binaries that 854 // rely on that will fail to load shared libraries. Query AT_EXECFN instead. 855 pathname = reinterpret_cast<const char *>(getauxval(AT_EXECFN)); 856 #endif 857 858 uptr rv = internal_execve(pathname, GetArgv(), GetEnviron()); 859 int rverrno; 860 CHECK_EQ(internal_iserror(rv, &rverrno), true); 861 Printf("execve failed, errno %d\n", rverrno); 862 Die(); 863 } 864 865 void UnmapFromTo(uptr from, uptr to) { 866 if (to == from) 867 return; 868 CHECK(to >= from); 869 uptr res = internal_munmap(reinterpret_cast<void *>(from), to - from); 870 if (UNLIKELY(internal_iserror(res))) { 871 Report("ERROR: %s failed to unmap 0x%zx (%zd) bytes at address %p\n", 872 SanitizerToolName, to - from, to - from, (void *)from); 873 CHECK("unable to unmap" && 0); 874 } 875 } 876 877 uptr MapDynamicShadow(uptr shadow_size_bytes, uptr shadow_scale, 878 uptr min_shadow_base_alignment, 879 UNUSED uptr &high_mem_end) { 880 const uptr granularity = GetMmapGranularity(); 881 const uptr alignment = 882 Max<uptr>(granularity << shadow_scale, 1ULL << min_shadow_base_alignment); 883 const uptr left_padding = 884 Max<uptr>(granularity, 1ULL << min_shadow_base_alignment); 885 886 const uptr shadow_size = RoundUpTo(shadow_size_bytes, granularity); 887 const uptr map_size = shadow_size + left_padding + alignment; 888 889 const uptr map_start = (uptr)MmapNoAccess(map_size); 890 CHECK_NE(map_start, ~(uptr)0); 891 892 const uptr shadow_start = RoundUpTo(map_start + left_padding, alignment); 893 894 UnmapFromTo(map_start, shadow_start - left_padding); 895 UnmapFromTo(shadow_start + shadow_size, map_start + map_size); 896 897 return shadow_start; 898 } 899 900 static uptr MmapSharedNoReserve(uptr addr, uptr size) { 901 return internal_mmap( 902 reinterpret_cast<void *>(addr), size, PROT_READ | PROT_WRITE, 903 MAP_FIXED | MAP_SHARED | MAP_ANONYMOUS | MAP_NORESERVE, -1, 0); 904 } 905 906 static uptr MremapCreateAlias(uptr base_addr, uptr alias_addr, 907 uptr alias_size) { 908 #if SANITIZER_LINUX 909 return internal_mremap(reinterpret_cast<void *>(base_addr), 0, alias_size, 910 MREMAP_MAYMOVE | MREMAP_FIXED, 911 reinterpret_cast<void *>(alias_addr)); 912 #else 913 CHECK(false && "mremap is not supported outside of Linux"); 914 return 0; 915 #endif 916 } 917 918 static void CreateAliases(uptr start_addr, uptr alias_size, uptr num_aliases) { 919 uptr total_size = alias_size * num_aliases; 920 uptr mapped = MmapSharedNoReserve(start_addr, total_size); 921 CHECK_EQ(mapped, start_addr); 922 923 for (uptr i = 1; i < num_aliases; ++i) { 924 uptr alias_addr = start_addr + i * alias_size; 925 CHECK_EQ(MremapCreateAlias(start_addr, alias_addr, alias_size), alias_addr); 926 } 927 } 928 929 uptr MapDynamicShadowAndAliases(uptr shadow_size, uptr alias_size, 930 uptr num_aliases, uptr ring_buffer_size) { 931 CHECK_EQ(alias_size & (alias_size - 1), 0); 932 CHECK_EQ(num_aliases & (num_aliases - 1), 0); 933 CHECK_EQ(ring_buffer_size & (ring_buffer_size - 1), 0); 934 935 const uptr granularity = GetMmapGranularity(); 936 shadow_size = RoundUpTo(shadow_size, granularity); 937 CHECK_EQ(shadow_size & (shadow_size - 1), 0); 938 939 const uptr alias_region_size = alias_size * num_aliases; 940 const uptr alignment = 941 2 * Max(Max(shadow_size, alias_region_size), ring_buffer_size); 942 const uptr left_padding = ring_buffer_size; 943 944 const uptr right_size = alignment; 945 const uptr map_size = left_padding + 2 * alignment; 946 947 const uptr map_start = reinterpret_cast<uptr>(MmapNoAccess(map_size)); 948 CHECK_NE(map_start, static_cast<uptr>(-1)); 949 const uptr right_start = RoundUpTo(map_start + left_padding, alignment); 950 951 UnmapFromTo(map_start, right_start - left_padding); 952 UnmapFromTo(right_start + right_size, map_start + map_size); 953 954 CreateAliases(right_start + right_size / 2, alias_size, num_aliases); 955 956 return right_start; 957 } 958 959 void InitializePlatformCommonFlags(CommonFlags *cf) { 960 #if SANITIZER_ANDROID 961 if (&__libc_get_static_tls_bounds == nullptr) 962 cf->detect_leaks = false; 963 #endif 964 } 965 966 } // namespace __sanitizer 967 968 #endif 969