1 //===-- asan_globals.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 // Handle globals. 12 //===----------------------------------------------------------------------===// 13 14 #include "asan_interceptors.h" 15 #include "asan_internal.h" 16 #include "asan_mapping.h" 17 #include "asan_poisoning.h" 18 #include "asan_report.h" 19 #include "asan_stack.h" 20 #include "asan_stats.h" 21 #include "asan_suppressions.h" 22 #include "asan_thread.h" 23 #include "sanitizer_common/sanitizer_common.h" 24 #include "sanitizer_common/sanitizer_mutex.h" 25 #include "sanitizer_common/sanitizer_placement_new.h" 26 #include "sanitizer_common/sanitizer_stackdepot.h" 27 #include "sanitizer_common/sanitizer_symbolizer.h" 28 29 namespace __asan { 30 31 typedef __asan_global Global; 32 33 struct ListOfGlobals { 34 const Global *g; 35 ListOfGlobals *next; 36 }; 37 38 static Mutex mu_for_globals; 39 static LowLevelAllocator allocator_for_globals; 40 static ListOfGlobals *list_of_all_globals; 41 42 static const int kDynamicInitGlobalsInitialCapacity = 512; 43 struct DynInitGlobal { 44 Global g; 45 bool initialized; 46 }; 47 typedef InternalMmapVector<DynInitGlobal> VectorOfGlobals; 48 // Lazy-initialized and never deleted. 49 static VectorOfGlobals *dynamic_init_globals; 50 51 // We want to remember where a certain range of globals was registered. 52 struct GlobalRegistrationSite { 53 u32 stack_id; 54 Global *g_first, *g_last; 55 }; 56 typedef InternalMmapVector<GlobalRegistrationSite> GlobalRegistrationSiteVector; 57 static GlobalRegistrationSiteVector *global_registration_site_vector; 58 59 ALWAYS_INLINE void PoisonShadowForGlobal(const Global *g, u8 value) { 60 FastPoisonShadow(g->beg, g->size_with_redzone, value); 61 } 62 63 ALWAYS_INLINE void PoisonRedZones(const Global &g) { 64 uptr aligned_size = RoundUpTo(g.size, ASAN_SHADOW_GRANULARITY); 65 FastPoisonShadow(g.beg + aligned_size, g.size_with_redzone - aligned_size, 66 kAsanGlobalRedzoneMagic); 67 if (g.size != aligned_size) { 68 FastPoisonShadowPartialRightRedzone( 69 g.beg + RoundDownTo(g.size, ASAN_SHADOW_GRANULARITY), 70 g.size % ASAN_SHADOW_GRANULARITY, ASAN_SHADOW_GRANULARITY, 71 kAsanGlobalRedzoneMagic); 72 } 73 } 74 75 const uptr kMinimalDistanceFromAnotherGlobal = 64; 76 77 static bool IsAddressNearGlobal(uptr addr, const __asan_global &g) { 78 if (addr <= g.beg - kMinimalDistanceFromAnotherGlobal) return false; 79 if (addr >= g.beg + g.size_with_redzone) return false; 80 return true; 81 } 82 83 static void ReportGlobal(const Global &g, const char *prefix) { 84 Report( 85 "%s Global[%p]: beg=%p size=%zu/%zu name=%s module=%s dyn_init=%zu " 86 "odr_indicator=%p\n", 87 prefix, (void *)&g, (void *)g.beg, g.size, g.size_with_redzone, g.name, 88 g.module_name, g.has_dynamic_init, (void *)g.odr_indicator); 89 90 DataInfo info; 91 Symbolizer::GetOrInit()->SymbolizeData(g.beg, &info); 92 if (info.line != 0) { 93 Report(" location: name=%s, %d\n", info.file, static_cast<int>(info.line)); 94 } 95 } 96 97 static u32 FindRegistrationSite(const Global *g) { 98 mu_for_globals.CheckLocked(); 99 CHECK(global_registration_site_vector); 100 for (uptr i = 0, n = global_registration_site_vector->size(); i < n; i++) { 101 GlobalRegistrationSite &grs = (*global_registration_site_vector)[i]; 102 if (g >= grs.g_first && g <= grs.g_last) 103 return grs.stack_id; 104 } 105 return 0; 106 } 107 108 int GetGlobalsForAddress(uptr addr, Global *globals, u32 *reg_sites, 109 int max_globals) { 110 if (!flags()->report_globals) return 0; 111 Lock lock(&mu_for_globals); 112 int res = 0; 113 for (ListOfGlobals *l = list_of_all_globals; l; l = l->next) { 114 const Global &g = *l->g; 115 if (flags()->report_globals >= 2) 116 ReportGlobal(g, "Search"); 117 if (IsAddressNearGlobal(addr, g)) { 118 internal_memcpy(&globals[res], &g, sizeof(g)); 119 if (reg_sites) 120 reg_sites[res] = FindRegistrationSite(&g); 121 res++; 122 if (res == max_globals) 123 break; 124 } 125 } 126 return res; 127 } 128 129 enum GlobalSymbolState { 130 UNREGISTERED = 0, 131 REGISTERED = 1 132 }; 133 134 // Check ODR violation for given global G via special ODR indicator. We use 135 // this method in case compiler instruments global variables through their 136 // local aliases. 137 static void CheckODRViolationViaIndicator(const Global *g) { 138 // Instrumentation requests to skip ODR check. 139 if (g->odr_indicator == UINTPTR_MAX) 140 return; 141 u8 *odr_indicator = reinterpret_cast<u8 *>(g->odr_indicator); 142 if (*odr_indicator == UNREGISTERED) { 143 *odr_indicator = REGISTERED; 144 return; 145 } 146 // If *odr_indicator is DEFINED, some module have already registered 147 // externally visible symbol with the same name. This is an ODR violation. 148 for (ListOfGlobals *l = list_of_all_globals; l; l = l->next) { 149 if (g->odr_indicator == l->g->odr_indicator && 150 (flags()->detect_odr_violation >= 2 || g->size != l->g->size) && 151 !IsODRViolationSuppressed(g->name)) 152 ReportODRViolation(g, FindRegistrationSite(g), 153 l->g, FindRegistrationSite(l->g)); 154 } 155 } 156 157 // Check ODR violation for given global G by checking if it's already poisoned. 158 // We use this method in case compiler doesn't use private aliases for global 159 // variables. 160 static void CheckODRViolationViaPoisoning(const Global *g) { 161 if (__asan_region_is_poisoned(g->beg, g->size_with_redzone)) { 162 // This check may not be enough: if the first global is much larger 163 // the entire redzone of the second global may be within the first global. 164 for (ListOfGlobals *l = list_of_all_globals; l; l = l->next) { 165 if (g->beg == l->g->beg && 166 (flags()->detect_odr_violation >= 2 || g->size != l->g->size) && 167 !IsODRViolationSuppressed(g->name)) 168 ReportODRViolation(g, FindRegistrationSite(g), 169 l->g, FindRegistrationSite(l->g)); 170 } 171 } 172 } 173 174 // Clang provides two different ways for global variables protection: 175 // it can poison the global itself or its private alias. In former 176 // case we may poison same symbol multiple times, that can help us to 177 // cheaply detect ODR violation: if we try to poison an already poisoned 178 // global, we have ODR violation error. 179 // In latter case, we poison each symbol exactly once, so we use special 180 // indicator symbol to perform similar check. 181 // In either case, compiler provides a special odr_indicator field to Global 182 // structure, that can contain two kinds of values: 183 // 1) Non-zero value. In this case, odr_indicator is an address of 184 // corresponding indicator variable for given global. 185 // 2) Zero. This means that we don't use private aliases for global variables 186 // and can freely check ODR violation with the first method. 187 // 188 // This routine chooses between two different methods of ODR violation 189 // detection. 190 static inline bool UseODRIndicator(const Global *g) { 191 return g->odr_indicator > 0; 192 } 193 194 // Register a global variable. 195 // This function may be called more than once for every global 196 // so we store the globals in a map. 197 static void RegisterGlobal(const Global *g) { 198 CHECK(asan_inited); 199 if (flags()->report_globals >= 2) 200 ReportGlobal(*g, "Added"); 201 CHECK(flags()->report_globals); 202 CHECK(AddrIsInMem(g->beg)); 203 if (!AddrIsAlignedByGranularity(g->beg)) { 204 Report("The following global variable is not properly aligned.\n"); 205 Report("This may happen if another global with the same name\n"); 206 Report("resides in another non-instrumented module.\n"); 207 Report("Or the global comes from a C file built w/o -fno-common.\n"); 208 Report("In either case this is likely an ODR violation bug,\n"); 209 Report("but AddressSanitizer can not provide more details.\n"); 210 ReportODRViolation(g, FindRegistrationSite(g), g, FindRegistrationSite(g)); 211 CHECK(AddrIsAlignedByGranularity(g->beg)); 212 } 213 CHECK(AddrIsAlignedByGranularity(g->size_with_redzone)); 214 if (flags()->detect_odr_violation) { 215 // Try detecting ODR (One Definition Rule) violation, i.e. the situation 216 // where two globals with the same name are defined in different modules. 217 if (UseODRIndicator(g)) 218 CheckODRViolationViaIndicator(g); 219 else 220 CheckODRViolationViaPoisoning(g); 221 } 222 if (CanPoisonMemory()) 223 PoisonRedZones(*g); 224 ListOfGlobals *l = new(allocator_for_globals) ListOfGlobals; 225 l->g = g; 226 l->next = list_of_all_globals; 227 list_of_all_globals = l; 228 if (g->has_dynamic_init) { 229 if (!dynamic_init_globals) { 230 dynamic_init_globals = new (allocator_for_globals) VectorOfGlobals; 231 dynamic_init_globals->reserve(kDynamicInitGlobalsInitialCapacity); 232 } 233 DynInitGlobal dyn_global = { *g, false }; 234 dynamic_init_globals->push_back(dyn_global); 235 } 236 } 237 238 static void UnregisterGlobal(const Global *g) { 239 CHECK(asan_inited); 240 if (flags()->report_globals >= 2) 241 ReportGlobal(*g, "Removed"); 242 CHECK(flags()->report_globals); 243 CHECK(AddrIsInMem(g->beg)); 244 CHECK(AddrIsAlignedByGranularity(g->beg)); 245 CHECK(AddrIsAlignedByGranularity(g->size_with_redzone)); 246 if (CanPoisonMemory()) 247 PoisonShadowForGlobal(g, 0); 248 // We unpoison the shadow memory for the global but we do not remove it from 249 // the list because that would require O(n^2) time with the current list 250 // implementation. It might not be worth doing anyway. 251 252 // Release ODR indicator. 253 if (UseODRIndicator(g) && g->odr_indicator != UINTPTR_MAX) { 254 u8 *odr_indicator = reinterpret_cast<u8 *>(g->odr_indicator); 255 *odr_indicator = UNREGISTERED; 256 } 257 } 258 259 void StopInitOrderChecking() { 260 Lock lock(&mu_for_globals); 261 if (!flags()->check_initialization_order || !dynamic_init_globals) 262 return; 263 flags()->check_initialization_order = false; 264 for (uptr i = 0, n = dynamic_init_globals->size(); i < n; ++i) { 265 DynInitGlobal &dyn_g = (*dynamic_init_globals)[i]; 266 const Global *g = &dyn_g.g; 267 // Unpoison the whole global. 268 PoisonShadowForGlobal(g, 0); 269 // Poison redzones back. 270 PoisonRedZones(*g); 271 } 272 } 273 274 static bool IsASCII(unsigned char c) { return /*0x00 <= c &&*/ c <= 0x7F; } 275 276 const char *MaybeDemangleGlobalName(const char *name) { 277 // We can spoil names of globals with C linkage, so use an heuristic 278 // approach to check if the name should be demangled. 279 bool should_demangle = false; 280 if (name[0] == '_' && name[1] == 'Z') 281 should_demangle = true; 282 else if (SANITIZER_WINDOWS && name[0] == '\01' && name[1] == '?') 283 should_demangle = true; 284 285 return should_demangle ? Symbolizer::GetOrInit()->Demangle(name) : name; 286 } 287 288 // Check if the global is a zero-terminated ASCII string. If so, print it. 289 void PrintGlobalNameIfASCII(InternalScopedString *str, const __asan_global &g) { 290 for (uptr p = g.beg; p < g.beg + g.size - 1; p++) { 291 unsigned char c = *(unsigned char *)p; 292 if (c == '\0' || !IsASCII(c)) return; 293 } 294 if (*(char *)(g.beg + g.size - 1) != '\0') return; 295 str->append(" '%s' is ascii string '%s'\n", MaybeDemangleGlobalName(g.name), 296 (char *)g.beg); 297 } 298 299 void PrintGlobalLocation(InternalScopedString *str, const __asan_global &g) { 300 DataInfo info; 301 Symbolizer::GetOrInit()->SymbolizeData(g.beg, &info); 302 303 if (info.line != 0) { 304 str->append("%s:%d", info.file, static_cast<int>(info.line)); 305 } else { 306 str->append("%s", g.module_name); 307 } 308 } 309 310 } // namespace __asan 311 312 // ---------------------- Interface ---------------- {{{1 313 using namespace __asan; 314 315 // Apply __asan_register_globals to all globals found in the same loaded 316 // executable or shared library as `flag'. The flag tracks whether globals have 317 // already been registered or not for this image. 318 void __asan_register_image_globals(uptr *flag) { 319 if (*flag) 320 return; 321 AsanApplyToGlobals(__asan_register_globals, flag); 322 *flag = 1; 323 } 324 325 // This mirrors __asan_register_image_globals. 326 void __asan_unregister_image_globals(uptr *flag) { 327 if (!*flag) 328 return; 329 AsanApplyToGlobals(__asan_unregister_globals, flag); 330 *flag = 0; 331 } 332 333 void __asan_register_elf_globals(uptr *flag, void *start, void *stop) { 334 if (*flag) return; 335 if (!start) return; 336 CHECK_EQ(0, ((uptr)stop - (uptr)start) % sizeof(__asan_global)); 337 __asan_global *globals_start = (__asan_global*)start; 338 __asan_global *globals_stop = (__asan_global*)stop; 339 __asan_register_globals(globals_start, globals_stop - globals_start); 340 *flag = 1; 341 } 342 343 void __asan_unregister_elf_globals(uptr *flag, void *start, void *stop) { 344 if (!*flag) return; 345 if (!start) return; 346 CHECK_EQ(0, ((uptr)stop - (uptr)start) % sizeof(__asan_global)); 347 __asan_global *globals_start = (__asan_global*)start; 348 __asan_global *globals_stop = (__asan_global*)stop; 349 __asan_unregister_globals(globals_start, globals_stop - globals_start); 350 *flag = 0; 351 } 352 353 // Register an array of globals. 354 void __asan_register_globals(__asan_global *globals, uptr n) { 355 if (!flags()->report_globals) return; 356 GET_STACK_TRACE_MALLOC; 357 u32 stack_id = StackDepotPut(stack); 358 Lock lock(&mu_for_globals); 359 if (!global_registration_site_vector) { 360 global_registration_site_vector = 361 new (allocator_for_globals) GlobalRegistrationSiteVector; 362 global_registration_site_vector->reserve(128); 363 } 364 GlobalRegistrationSite site = {stack_id, &globals[0], &globals[n - 1]}; 365 global_registration_site_vector->push_back(site); 366 if (flags()->report_globals >= 2) { 367 PRINT_CURRENT_STACK(); 368 Printf("=== ID %d; %p %p\n", stack_id, (void *)&globals[0], 369 (void *)&globals[n - 1]); 370 } 371 for (uptr i = 0; i < n; i++) { 372 if (SANITIZER_WINDOWS && globals[i].beg == 0) { 373 // The MSVC incremental linker may pad globals out to 256 bytes. As long 374 // as __asan_global is less than 256 bytes large and its size is a power 375 // of two, we can skip over the padding. 376 static_assert( 377 sizeof(__asan_global) < 256 && 378 (sizeof(__asan_global) & (sizeof(__asan_global) - 1)) == 0, 379 "sizeof(__asan_global) incompatible with incremental linker padding"); 380 // If these are padding bytes, the rest of the global should be zero. 381 CHECK(globals[i].size == 0 && globals[i].size_with_redzone == 0 && 382 globals[i].name == nullptr && globals[i].module_name == nullptr && 383 globals[i].odr_indicator == 0); 384 continue; 385 } 386 RegisterGlobal(&globals[i]); 387 } 388 389 // Poison the metadata. It should not be accessible to user code. 390 PoisonShadow(reinterpret_cast<uptr>(globals), n * sizeof(__asan_global), 391 kAsanGlobalRedzoneMagic); 392 } 393 394 // Unregister an array of globals. 395 // We must do this when a shared objects gets dlclosed. 396 void __asan_unregister_globals(__asan_global *globals, uptr n) { 397 if (!flags()->report_globals) return; 398 Lock lock(&mu_for_globals); 399 for (uptr i = 0; i < n; i++) { 400 if (SANITIZER_WINDOWS && globals[i].beg == 0) { 401 // Skip globals that look like padding from the MSVC incremental linker. 402 // See comment in __asan_register_globals. 403 continue; 404 } 405 UnregisterGlobal(&globals[i]); 406 } 407 408 // Unpoison the metadata. 409 PoisonShadow(reinterpret_cast<uptr>(globals), n * sizeof(__asan_global), 0); 410 } 411 412 // This method runs immediately prior to dynamic initialization in each TU, 413 // when all dynamically initialized globals are unpoisoned. This method 414 // poisons all global variables not defined in this TU, so that a dynamic 415 // initializer can only touch global variables in the same TU. 416 void __asan_before_dynamic_init(const char *module_name) { 417 if (!flags()->check_initialization_order || 418 !CanPoisonMemory() || 419 !dynamic_init_globals) 420 return; 421 bool strict_init_order = flags()->strict_init_order; 422 CHECK(module_name); 423 CHECK(asan_inited); 424 Lock lock(&mu_for_globals); 425 if (flags()->report_globals >= 3) 426 Printf("DynInitPoison module: %s\n", module_name); 427 for (uptr i = 0, n = dynamic_init_globals->size(); i < n; ++i) { 428 DynInitGlobal &dyn_g = (*dynamic_init_globals)[i]; 429 const Global *g = &dyn_g.g; 430 if (dyn_g.initialized) 431 continue; 432 if (g->module_name != module_name) 433 PoisonShadowForGlobal(g, kAsanInitializationOrderMagic); 434 else if (!strict_init_order) 435 dyn_g.initialized = true; 436 } 437 } 438 439 // This method runs immediately after dynamic initialization in each TU, when 440 // all dynamically initialized globals except for those defined in the current 441 // TU are poisoned. It simply unpoisons all dynamically initialized globals. 442 void __asan_after_dynamic_init() { 443 if (!flags()->check_initialization_order || 444 !CanPoisonMemory() || 445 !dynamic_init_globals) 446 return; 447 CHECK(asan_inited); 448 Lock lock(&mu_for_globals); 449 // FIXME: Optionally report that we're unpoisoning globals from a module. 450 for (uptr i = 0, n = dynamic_init_globals->size(); i < n; ++i) { 451 DynInitGlobal &dyn_g = (*dynamic_init_globals)[i]; 452 const Global *g = &dyn_g.g; 453 if (!dyn_g.initialized) { 454 // Unpoison the whole global. 455 PoisonShadowForGlobal(g, 0); 456 // Poison redzones back. 457 PoisonRedZones(*g); 458 } 459 } 460 } 461