1 //===-- DynamicLoaderDarwin.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 #include "DynamicLoaderDarwin.h" 10 11 #include "lldb/Breakpoint/StoppointCallbackContext.h" 12 #include "lldb/Core/Debugger.h" 13 #include "lldb/Core/Module.h" 14 #include "lldb/Core/ModuleSpec.h" 15 #include "lldb/Core/PluginManager.h" 16 #include "lldb/Core/Section.h" 17 #include "lldb/Expression/DiagnosticManager.h" 18 #include "lldb/Host/FileSystem.h" 19 #include "lldb/Host/HostInfo.h" 20 #include "lldb/Symbol/Function.h" 21 #include "lldb/Symbol/ObjectFile.h" 22 #include "lldb/Target/ABI.h" 23 #include "lldb/Target/RegisterContext.h" 24 #include "lldb/Target/StackFrame.h" 25 #include "lldb/Target/Target.h" 26 #include "lldb/Target/Thread.h" 27 #include "lldb/Target/ThreadPlanCallFunction.h" 28 #include "lldb/Target/ThreadPlanRunToAddress.h" 29 #include "lldb/Utility/DataBuffer.h" 30 #include "lldb/Utility/DataBufferHeap.h" 31 #include "lldb/Utility/Log.h" 32 #include "lldb/Utility/State.h" 33 34 #include "Plugins/LanguageRuntime/ObjC/ObjCLanguageRuntime.h" 35 #include "Plugins/TypeSystem/Clang/TypeSystemClang.h" 36 37 //#define ENABLE_DEBUG_PRINTF // COMMENT THIS LINE OUT PRIOR TO CHECKIN 38 #ifdef ENABLE_DEBUG_PRINTF 39 #include <stdio.h> 40 #define DEBUG_PRINTF(fmt, ...) printf(fmt, ##__VA_ARGS__) 41 #else 42 #define DEBUG_PRINTF(fmt, ...) 43 #endif 44 45 #ifndef __APPLE__ 46 #include "Utility/UuidCompatibility.h" 47 #else 48 #include <uuid/uuid.h> 49 #endif 50 51 #include <memory> 52 53 using namespace lldb; 54 using namespace lldb_private; 55 56 // Constructor 57 DynamicLoaderDarwin::DynamicLoaderDarwin(Process *process) 58 : DynamicLoader(process), m_dyld_module_wp(), m_libpthread_module_wp(), 59 m_pthread_getspecific_addr(), m_tid_to_tls_map(), m_dyld_image_infos(), 60 m_dyld_image_infos_stop_id(UINT32_MAX), m_dyld(), m_mutex() {} 61 62 // Destructor 63 DynamicLoaderDarwin::~DynamicLoaderDarwin() {} 64 65 /// Called after attaching a process. 66 /// 67 /// Allow DynamicLoader plug-ins to execute some code after 68 /// attaching to a process. 69 void DynamicLoaderDarwin::DidAttach() { 70 PrivateInitialize(m_process); 71 DoInitialImageFetch(); 72 SetNotificationBreakpoint(); 73 } 74 75 /// Called after attaching a process. 76 /// 77 /// Allow DynamicLoader plug-ins to execute some code after 78 /// attaching to a process. 79 void DynamicLoaderDarwin::DidLaunch() { 80 PrivateInitialize(m_process); 81 DoInitialImageFetch(); 82 SetNotificationBreakpoint(); 83 } 84 85 // Clear out the state of this class. 86 void DynamicLoaderDarwin::Clear(bool clear_process) { 87 std::lock_guard<std::recursive_mutex> guard(m_mutex); 88 if (clear_process) 89 m_process = nullptr; 90 m_dyld_image_infos.clear(); 91 m_dyld_image_infos_stop_id = UINT32_MAX; 92 m_dyld.Clear(false); 93 } 94 95 ModuleSP DynamicLoaderDarwin::FindTargetModuleForImageInfo( 96 ImageInfo &image_info, bool can_create, bool *did_create_ptr) { 97 if (did_create_ptr) 98 *did_create_ptr = false; 99 100 Target &target = m_process->GetTarget(); 101 const ModuleList &target_images = target.GetImages(); 102 ModuleSpec module_spec(image_info.file_spec); 103 module_spec.GetUUID() = image_info.uuid; 104 105 // macCatalyst support: Request matching os/environment. 106 { 107 auto &target_triple = target.GetArchitecture().GetTriple(); 108 if (target_triple.getOS() == llvm::Triple::IOS && 109 target_triple.getEnvironment() == llvm::Triple::MacABI) { 110 // Request the macCatalyst variant of frameworks that have both 111 // a PLATFORM_MACOS and a PLATFORM_MACCATALYST load command. 112 module_spec.GetArchitecture() = ArchSpec(target_triple); 113 } 114 } 115 116 ModuleSP module_sp(target_images.FindFirstModule(module_spec)); 117 118 if (module_sp && !module_spec.GetUUID().IsValid() && 119 !module_sp->GetUUID().IsValid()) { 120 // No UUID, we must rely upon the cached module modification time and the 121 // modification time of the file on disk 122 if (module_sp->GetModificationTime() != 123 FileSystem::Instance().GetModificationTime(module_sp->GetFileSpec())) 124 module_sp.reset(); 125 } 126 127 if (module_sp || !can_create) 128 return module_sp; 129 130 if (HostInfo::GetArchitecture().IsCompatibleMatch(target.GetArchitecture())) { 131 // When debugging on the host, we are most likely using the same shared 132 // cache as our inferior. The dylibs from the shared cache might not 133 // exist on the filesystem, so let's use the images in our own memory 134 // to create the modules. 135 // Check if the requested image is in our shared cache. 136 SharedCacheImageInfo image_info = 137 HostInfo::GetSharedCacheImageInfo(module_spec.GetFileSpec().GetPath()); 138 139 // If we found it and it has the correct UUID, let's proceed with 140 // creating a module from the memory contents. 141 if (image_info.uuid && 142 (!module_spec.GetUUID() || module_spec.GetUUID() == image_info.uuid)) { 143 ModuleSpec shared_cache_spec(module_spec.GetFileSpec(), image_info.uuid, 144 image_info.data_sp); 145 module_sp = 146 target.GetOrCreateModule(shared_cache_spec, false /* notify */); 147 } 148 } 149 // We'll call Target::ModulesDidLoad after all the modules have been 150 // added to the target, don't let it be called for every one. 151 if (!module_sp) 152 module_sp = target.GetOrCreateModule(module_spec, false /* notify */); 153 if (!module_sp || module_sp->GetObjectFile() == nullptr) 154 module_sp = m_process->ReadModuleFromMemory(image_info.file_spec, 155 image_info.address); 156 157 if (did_create_ptr) 158 *did_create_ptr = (bool)module_sp; 159 160 return module_sp; 161 } 162 163 void DynamicLoaderDarwin::UnloadImages( 164 const std::vector<lldb::addr_t> &solib_addresses) { 165 std::lock_guard<std::recursive_mutex> guard(m_mutex); 166 if (m_process->GetStopID() == m_dyld_image_infos_stop_id) 167 return; 168 169 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 170 Target &target = m_process->GetTarget(); 171 LLDB_LOGF(log, "Removing %" PRId64 " modules.", 172 (uint64_t)solib_addresses.size()); 173 174 ModuleList unloaded_module_list; 175 176 for (addr_t solib_addr : solib_addresses) { 177 Address header; 178 if (header.SetLoadAddress(solib_addr, &target)) { 179 if (header.GetOffset() == 0) { 180 ModuleSP module_to_remove(header.GetModule()); 181 if (module_to_remove.get()) { 182 LLDB_LOGF(log, "Removing module at address 0x%" PRIx64, solib_addr); 183 // remove the sections from the Target 184 UnloadSections(module_to_remove); 185 // add this to the list of modules to remove 186 unloaded_module_list.AppendIfNeeded(module_to_remove); 187 // remove the entry from the m_dyld_image_infos 188 ImageInfo::collection::iterator pos, end = m_dyld_image_infos.end(); 189 for (pos = m_dyld_image_infos.begin(); pos != end; pos++) { 190 if (solib_addr == (*pos).address) { 191 m_dyld_image_infos.erase(pos); 192 break; 193 } 194 } 195 } 196 } 197 } 198 } 199 200 if (unloaded_module_list.GetSize() > 0) { 201 if (log) { 202 log->PutCString("Unloaded:"); 203 unloaded_module_list.LogUUIDAndPaths( 204 log, "DynamicLoaderDarwin::UnloadModules"); 205 } 206 m_process->GetTarget().GetImages().Remove(unloaded_module_list); 207 m_dyld_image_infos_stop_id = m_process->GetStopID(); 208 } 209 } 210 211 void DynamicLoaderDarwin::UnloadAllImages() { 212 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 213 ModuleList unloaded_modules_list; 214 215 Target &target = m_process->GetTarget(); 216 const ModuleList &target_modules = target.GetImages(); 217 std::lock_guard<std::recursive_mutex> guard(target_modules.GetMutex()); 218 219 size_t num_modules = target_modules.GetSize(); 220 ModuleSP dyld_sp(GetDYLDModule()); 221 222 for (size_t i = 0; i < num_modules; i++) { 223 ModuleSP module_sp = target_modules.GetModuleAtIndexUnlocked(i); 224 225 // Don't remove dyld - else we'll lose our breakpoint notifying us about 226 // libraries being re-loaded... 227 if (module_sp.get() != nullptr && module_sp.get() != dyld_sp.get()) { 228 UnloadSections(module_sp); 229 unloaded_modules_list.Append(module_sp); 230 } 231 } 232 233 if (unloaded_modules_list.GetSize() != 0) { 234 if (log) { 235 log->PutCString("Unloaded:"); 236 unloaded_modules_list.LogUUIDAndPaths( 237 log, "DynamicLoaderDarwin::UnloadAllImages"); 238 } 239 target.GetImages().Remove(unloaded_modules_list); 240 m_dyld_image_infos.clear(); 241 m_dyld_image_infos_stop_id = m_process->GetStopID(); 242 } 243 } 244 245 // Update the load addresses for all segments in MODULE using the updated INFO 246 // that is passed in. 247 bool DynamicLoaderDarwin::UpdateImageLoadAddress(Module *module, 248 ImageInfo &info) { 249 bool changed = false; 250 if (module) { 251 ObjectFile *image_object_file = module->GetObjectFile(); 252 if (image_object_file) { 253 SectionList *section_list = image_object_file->GetSectionList(); 254 if (section_list) { 255 std::vector<uint32_t> inaccessible_segment_indexes; 256 // We now know the slide amount, so go through all sections and update 257 // the load addresses with the correct values. 258 const size_t num_segments = info.segments.size(); 259 for (size_t i = 0; i < num_segments; ++i) { 260 // Only load a segment if it has protections. Things like __PAGEZERO 261 // don't have any protections, and they shouldn't be slid 262 SectionSP section_sp( 263 section_list->FindSectionByName(info.segments[i].name)); 264 265 if (info.segments[i].maxprot == 0) { 266 inaccessible_segment_indexes.push_back(i); 267 } else { 268 const addr_t new_section_load_addr = 269 info.segments[i].vmaddr + info.slide; 270 static ConstString g_section_name_LINKEDIT("__LINKEDIT"); 271 272 if (section_sp) { 273 // __LINKEDIT sections from files in the shared cache can overlap 274 // so check to see what the segment name is and pass "false" so 275 // we don't warn of overlapping "Section" objects, and "true" for 276 // all other sections. 277 const bool warn_multiple = 278 section_sp->GetName() != g_section_name_LINKEDIT; 279 280 changed = m_process->GetTarget().SetSectionLoadAddress( 281 section_sp, new_section_load_addr, warn_multiple); 282 } 283 } 284 } 285 286 // If the loaded the file (it changed) and we have segments that are 287 // not readable or writeable, add them to the invalid memory region 288 // cache for the process. This will typically only be the __PAGEZERO 289 // segment in the main executable. We might be able to apply this more 290 // generally to more sections that have no protections in the future, 291 // but for now we are going to just do __PAGEZERO. 292 if (changed && !inaccessible_segment_indexes.empty()) { 293 for (uint32_t i = 0; i < inaccessible_segment_indexes.size(); ++i) { 294 const uint32_t seg_idx = inaccessible_segment_indexes[i]; 295 SectionSP section_sp( 296 section_list->FindSectionByName(info.segments[seg_idx].name)); 297 298 if (section_sp) { 299 static ConstString g_pagezero_section_name("__PAGEZERO"); 300 if (g_pagezero_section_name == section_sp->GetName()) { 301 // __PAGEZERO never slides... 302 const lldb::addr_t vmaddr = info.segments[seg_idx].vmaddr; 303 const lldb::addr_t vmsize = info.segments[seg_idx].vmsize; 304 Process::LoadRange pagezero_range(vmaddr, vmsize); 305 m_process->AddInvalidMemoryRegion(pagezero_range); 306 } 307 } 308 } 309 } 310 } 311 } 312 } 313 // We might have an in memory image that was loaded as soon as it was created 314 if (info.load_stop_id == m_process->GetStopID()) 315 changed = true; 316 else if (changed) { 317 // Update the stop ID when this library was updated 318 info.load_stop_id = m_process->GetStopID(); 319 } 320 return changed; 321 } 322 323 // Unload the segments in MODULE using the INFO that is passed in. 324 bool DynamicLoaderDarwin::UnloadModuleSections(Module *module, 325 ImageInfo &info) { 326 bool changed = false; 327 if (module) { 328 ObjectFile *image_object_file = module->GetObjectFile(); 329 if (image_object_file) { 330 SectionList *section_list = image_object_file->GetSectionList(); 331 if (section_list) { 332 const size_t num_segments = info.segments.size(); 333 for (size_t i = 0; i < num_segments; ++i) { 334 SectionSP section_sp( 335 section_list->FindSectionByName(info.segments[i].name)); 336 if (section_sp) { 337 const addr_t old_section_load_addr = 338 info.segments[i].vmaddr + info.slide; 339 if (m_process->GetTarget().SetSectionUnloaded( 340 section_sp, old_section_load_addr)) 341 changed = true; 342 } else { 343 Host::SystemLog(Host::eSystemLogWarning, 344 "warning: unable to find and unload segment named " 345 "'%s' in '%s' in macosx dynamic loader plug-in.\n", 346 info.segments[i].name.AsCString("<invalid>"), 347 image_object_file->GetFileSpec().GetPath().c_str()); 348 } 349 } 350 } 351 } 352 } 353 return changed; 354 } 355 356 // Given a JSON dictionary (from debugserver, most likely) of binary images 357 // loaded in the inferior process, add the images to the ImageInfo collection. 358 359 bool DynamicLoaderDarwin::JSONImageInformationIntoImageInfo( 360 StructuredData::ObjectSP image_details, 361 ImageInfo::collection &image_infos) { 362 StructuredData::ObjectSP images_sp = 363 image_details->GetAsDictionary()->GetValueForKey("images"); 364 if (images_sp.get() == nullptr) 365 return false; 366 367 image_infos.resize(images_sp->GetAsArray()->GetSize()); 368 369 for (size_t i = 0; i < image_infos.size(); i++) { 370 StructuredData::ObjectSP image_sp = 371 images_sp->GetAsArray()->GetItemAtIndex(i); 372 if (image_sp.get() == nullptr || image_sp->GetAsDictionary() == nullptr) 373 return false; 374 StructuredData::Dictionary *image = image_sp->GetAsDictionary(); 375 // clang-format off 376 if (!image->HasKey("load_address") || 377 !image->HasKey("pathname") || 378 !image->HasKey("mod_date") || 379 !image->HasKey("mach_header") || 380 image->GetValueForKey("mach_header")->GetAsDictionary() == nullptr || 381 !image->HasKey("segments") || 382 image->GetValueForKey("segments")->GetAsArray() == nullptr || 383 !image->HasKey("uuid")) { 384 return false; 385 } 386 // clang-format on 387 image_infos[i].address = 388 image->GetValueForKey("load_address")->GetAsInteger()->GetValue(); 389 image_infos[i].mod_date = 390 image->GetValueForKey("mod_date")->GetAsInteger()->GetValue(); 391 image_infos[i].file_spec.SetFile( 392 image->GetValueForKey("pathname")->GetAsString()->GetValue(), 393 FileSpec::Style::native); 394 395 StructuredData::Dictionary *mh = 396 image->GetValueForKey("mach_header")->GetAsDictionary(); 397 image_infos[i].header.magic = 398 mh->GetValueForKey("magic")->GetAsInteger()->GetValue(); 399 image_infos[i].header.cputype = 400 mh->GetValueForKey("cputype")->GetAsInteger()->GetValue(); 401 image_infos[i].header.cpusubtype = 402 mh->GetValueForKey("cpusubtype")->GetAsInteger()->GetValue(); 403 image_infos[i].header.filetype = 404 mh->GetValueForKey("filetype")->GetAsInteger()->GetValue(); 405 406 if (image->HasKey("min_version_os_name")) { 407 std::string os_name = 408 std::string(image->GetValueForKey("min_version_os_name") 409 ->GetAsString() 410 ->GetValue()); 411 if (os_name == "macosx") 412 image_infos[i].os_type = llvm::Triple::MacOSX; 413 else if (os_name == "ios" || os_name == "iphoneos") 414 image_infos[i].os_type = llvm::Triple::IOS; 415 else if (os_name == "tvos") 416 image_infos[i].os_type = llvm::Triple::TvOS; 417 else if (os_name == "watchos") 418 image_infos[i].os_type = llvm::Triple::WatchOS; 419 // NEED_BRIDGEOS_TRIPLE else if (os_name == "bridgeos") 420 // NEED_BRIDGEOS_TRIPLE image_infos[i].os_type = llvm::Triple::BridgeOS; 421 else if (os_name == "maccatalyst") { 422 image_infos[i].os_type = llvm::Triple::IOS; 423 image_infos[i].os_env = llvm::Triple::MacABI; 424 } else if (os_name == "iossimulator") { 425 image_infos[i].os_type = llvm::Triple::IOS; 426 image_infos[i].os_env = llvm::Triple::Simulator; 427 } else if (os_name == "tvossimulator") { 428 image_infos[i].os_type = llvm::Triple::TvOS; 429 image_infos[i].os_env = llvm::Triple::Simulator; 430 } else if (os_name == "watchossimulator") { 431 image_infos[i].os_type = llvm::Triple::WatchOS; 432 image_infos[i].os_env = llvm::Triple::Simulator; 433 } 434 } 435 if (image->HasKey("min_version_os_sdk")) { 436 image_infos[i].min_version_os_sdk = 437 std::string(image->GetValueForKey("min_version_os_sdk") 438 ->GetAsString() 439 ->GetValue()); 440 } 441 442 // Fields that aren't used by DynamicLoaderDarwin so debugserver doesn't 443 // currently send them in the reply. 444 445 if (mh->HasKey("flags")) 446 image_infos[i].header.flags = 447 mh->GetValueForKey("flags")->GetAsInteger()->GetValue(); 448 else 449 image_infos[i].header.flags = 0; 450 451 if (mh->HasKey("ncmds")) 452 image_infos[i].header.ncmds = 453 mh->GetValueForKey("ncmds")->GetAsInteger()->GetValue(); 454 else 455 image_infos[i].header.ncmds = 0; 456 457 if (mh->HasKey("sizeofcmds")) 458 image_infos[i].header.sizeofcmds = 459 mh->GetValueForKey("sizeofcmds")->GetAsInteger()->GetValue(); 460 else 461 image_infos[i].header.sizeofcmds = 0; 462 463 StructuredData::Array *segments = 464 image->GetValueForKey("segments")->GetAsArray(); 465 uint32_t segcount = segments->GetSize(); 466 for (size_t j = 0; j < segcount; j++) { 467 Segment segment; 468 StructuredData::Dictionary *seg = 469 segments->GetItemAtIndex(j)->GetAsDictionary(); 470 segment.name = 471 ConstString(seg->GetValueForKey("name")->GetAsString()->GetValue()); 472 segment.vmaddr = 473 seg->GetValueForKey("vmaddr")->GetAsInteger()->GetValue(); 474 segment.vmsize = 475 seg->GetValueForKey("vmsize")->GetAsInteger()->GetValue(); 476 segment.fileoff = 477 seg->GetValueForKey("fileoff")->GetAsInteger()->GetValue(); 478 segment.filesize = 479 seg->GetValueForKey("filesize")->GetAsInteger()->GetValue(); 480 segment.maxprot = 481 seg->GetValueForKey("maxprot")->GetAsInteger()->GetValue(); 482 483 // Fields that aren't used by DynamicLoaderDarwin so debugserver doesn't 484 // currently send them in the reply. 485 486 if (seg->HasKey("initprot")) 487 segment.initprot = 488 seg->GetValueForKey("initprot")->GetAsInteger()->GetValue(); 489 else 490 segment.initprot = 0; 491 492 if (seg->HasKey("flags")) 493 segment.flags = 494 seg->GetValueForKey("flags")->GetAsInteger()->GetValue(); 495 else 496 segment.flags = 0; 497 498 if (seg->HasKey("nsects")) 499 segment.nsects = 500 seg->GetValueForKey("nsects")->GetAsInteger()->GetValue(); 501 else 502 segment.nsects = 0; 503 504 image_infos[i].segments.push_back(segment); 505 } 506 507 image_infos[i].uuid.SetFromOptionalStringRef( 508 image->GetValueForKey("uuid")->GetAsString()->GetValue()); 509 510 // All sections listed in the dyld image info structure will all either be 511 // fixed up already, or they will all be off by a single slide amount that 512 // is determined by finding the first segment that is at file offset zero 513 // which also has bytes (a file size that is greater than zero) in the 514 // object file. 515 516 // Determine the slide amount (if any) 517 const size_t num_sections = image_infos[i].segments.size(); 518 for (size_t k = 0; k < num_sections; ++k) { 519 // Iterate through the object file sections to find the first section 520 // that starts of file offset zero and that has bytes in the file... 521 if ((image_infos[i].segments[k].fileoff == 0 && 522 image_infos[i].segments[k].filesize > 0) || 523 (image_infos[i].segments[k].name == "__TEXT")) { 524 image_infos[i].slide = 525 image_infos[i].address - image_infos[i].segments[k].vmaddr; 526 // We have found the slide amount, so we can exit this for loop. 527 break; 528 } 529 } 530 } 531 532 return true; 533 } 534 535 void DynamicLoaderDarwin::UpdateSpecialBinariesFromNewImageInfos( 536 ImageInfo::collection &image_infos) { 537 uint32_t exe_idx = UINT32_MAX; 538 uint32_t dyld_idx = UINT32_MAX; 539 Target &target = m_process->GetTarget(); 540 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 541 ConstString g_dyld_sim_filename("dyld_sim"); 542 543 ArchSpec target_arch = target.GetArchitecture(); 544 const size_t image_infos_size = image_infos.size(); 545 for (size_t i = 0; i < image_infos_size; i++) { 546 if (image_infos[i].header.filetype == llvm::MachO::MH_DYLINKER) { 547 // In a "simulator" process (an x86 process that is 548 // ios/tvos/watchos/bridgeos) we will have two dyld modules -- 549 // a "dyld" that we want to keep track of, and a "dyld_sim" which 550 // we don't need to keep track of here. If the target is an x86 551 // system and the OS of the dyld binary is ios/tvos/watchos/bridgeos, 552 // then we are looking at dyld_sym. 553 554 // debugserver has only recently (late 2016) started sending up the os 555 // type for each binary it sees -- so if we don't have an os type, use a 556 // filename check as our next best guess. 557 if (image_infos[i].os_type == llvm::Triple::OSType::UnknownOS) { 558 if (image_infos[i].file_spec.GetFilename() != g_dyld_sim_filename) { 559 dyld_idx = i; 560 } 561 } else if (target_arch.GetTriple().getArch() == llvm::Triple::x86 || 562 target_arch.GetTriple().getArch() == llvm::Triple::x86_64) { 563 if (image_infos[i].os_type != llvm::Triple::OSType::IOS && 564 image_infos[i].os_type != llvm::Triple::TvOS && 565 image_infos[i].os_type != llvm::Triple::WatchOS) { 566 // NEED_BRIDGEOS_TRIPLE image_infos[i].os_type != llvm::Triple::BridgeOS) { 567 dyld_idx = i; 568 } 569 } 570 else { 571 // catch-all for any other environment -- trust that dyld is actually 572 // dyld 573 dyld_idx = i; 574 } 575 } else if (image_infos[i].header.filetype == llvm::MachO::MH_EXECUTE) { 576 exe_idx = i; 577 } 578 } 579 580 // Set the target executable if we haven't found one so far. 581 if (exe_idx != UINT32_MAX && !target.GetExecutableModule()) { 582 const bool can_create = true; 583 ModuleSP exe_module_sp(FindTargetModuleForImageInfo(image_infos[exe_idx], 584 can_create, nullptr)); 585 if (exe_module_sp) { 586 LLDB_LOGF(log, "Found executable module: %s", 587 exe_module_sp->GetFileSpec().GetPath().c_str()); 588 target.GetImages().AppendIfNeeded(exe_module_sp); 589 UpdateImageLoadAddress(exe_module_sp.get(), image_infos[exe_idx]); 590 if (exe_module_sp.get() != target.GetExecutableModulePointer()) { 591 target.SetExecutableModule(exe_module_sp, eLoadDependentsNo); 592 } 593 } 594 } 595 596 if (dyld_idx != UINT32_MAX) { 597 const bool can_create = true; 598 ModuleSP dyld_sp = FindTargetModuleForImageInfo(image_infos[dyld_idx], 599 can_create, nullptr); 600 if (dyld_sp.get()) { 601 LLDB_LOGF(log, "Found dyld module: %s", 602 dyld_sp->GetFileSpec().GetPath().c_str()); 603 target.GetImages().AppendIfNeeded(dyld_sp); 604 UpdateImageLoadAddress(dyld_sp.get(), image_infos[dyld_idx]); 605 SetDYLDModule(dyld_sp); 606 } 607 } 608 } 609 610 void DynamicLoaderDarwin::UpdateDYLDImageInfoFromNewImageInfo( 611 ImageInfo &image_info) { 612 if (image_info.header.filetype == llvm::MachO::MH_DYLINKER) { 613 const bool can_create = true; 614 ModuleSP dyld_sp = 615 FindTargetModuleForImageInfo(image_info, can_create, nullptr); 616 if (dyld_sp.get()) { 617 Target &target = m_process->GetTarget(); 618 target.GetImages().AppendIfNeeded(dyld_sp); 619 UpdateImageLoadAddress(dyld_sp.get(), image_info); 620 SetDYLDModule(dyld_sp); 621 } 622 } 623 } 624 625 void DynamicLoaderDarwin::SetDYLDModule(lldb::ModuleSP &dyld_module_sp) { 626 m_dyld_module_wp = dyld_module_sp; 627 } 628 629 ModuleSP DynamicLoaderDarwin::GetDYLDModule() { 630 ModuleSP dyld_sp(m_dyld_module_wp.lock()); 631 return dyld_sp; 632 } 633 634 bool DynamicLoaderDarwin::AddModulesUsingImageInfos( 635 ImageInfo::collection &image_infos) { 636 std::lock_guard<std::recursive_mutex> guard(m_mutex); 637 // Now add these images to the main list. 638 ModuleList loaded_module_list; 639 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 640 Target &target = m_process->GetTarget(); 641 ModuleList &target_images = target.GetImages(); 642 643 for (uint32_t idx = 0; idx < image_infos.size(); ++idx) { 644 if (log) { 645 LLDB_LOGF(log, "Adding new image at address=0x%16.16" PRIx64 ".", 646 image_infos[idx].address); 647 image_infos[idx].PutToLog(log); 648 } 649 650 m_dyld_image_infos.push_back(image_infos[idx]); 651 652 ModuleSP image_module_sp( 653 FindTargetModuleForImageInfo(image_infos[idx], true, nullptr)); 654 655 if (image_module_sp) { 656 ObjectFile *objfile = image_module_sp->GetObjectFile(); 657 if (objfile) { 658 SectionList *sections = objfile->GetSectionList(); 659 if (sections) { 660 ConstString commpage_dbstr("__commpage"); 661 Section *commpage_section = 662 sections->FindSectionByName(commpage_dbstr).get(); 663 if (commpage_section) { 664 ModuleSpec module_spec(objfile->GetFileSpec(), 665 image_infos[idx].GetArchitecture()); 666 module_spec.GetObjectName() = commpage_dbstr; 667 ModuleSP commpage_image_module_sp( 668 target_images.FindFirstModule(module_spec)); 669 if (!commpage_image_module_sp) { 670 module_spec.SetObjectOffset(objfile->GetFileOffset() + 671 commpage_section->GetFileOffset()); 672 module_spec.SetObjectSize(objfile->GetByteSize()); 673 commpage_image_module_sp = target.GetOrCreateModule(module_spec, 674 true /* notify */); 675 if (!commpage_image_module_sp || 676 commpage_image_module_sp->GetObjectFile() == nullptr) { 677 commpage_image_module_sp = m_process->ReadModuleFromMemory( 678 image_infos[idx].file_spec, image_infos[idx].address); 679 // Always load a memory image right away in the target in case 680 // we end up trying to read the symbol table from memory... The 681 // __LINKEDIT will need to be mapped so we can figure out where 682 // the symbol table bits are... 683 bool changed = false; 684 UpdateImageLoadAddress(commpage_image_module_sp.get(), 685 image_infos[idx]); 686 target.GetImages().Append(commpage_image_module_sp); 687 if (changed) { 688 image_infos[idx].load_stop_id = m_process->GetStopID(); 689 loaded_module_list.AppendIfNeeded(commpage_image_module_sp); 690 } 691 } 692 } 693 } 694 } 695 } 696 697 // UpdateImageLoadAddress will return true if any segments change load 698 // address. We need to check this so we don't mention that all loaded 699 // shared libraries are newly loaded each time we hit out dyld breakpoint 700 // since dyld will list all shared libraries each time. 701 if (UpdateImageLoadAddress(image_module_sp.get(), image_infos[idx])) { 702 target_images.AppendIfNeeded(image_module_sp); 703 loaded_module_list.AppendIfNeeded(image_module_sp); 704 } 705 706 // To support macCatalyst and legacy iOS simulator, 707 // update the module's platform with the DYLD info. 708 ArchSpec dyld_spec = image_infos[idx].GetArchitecture(); 709 auto &dyld_triple = dyld_spec.GetTriple(); 710 if ((dyld_triple.getEnvironment() == llvm::Triple::MacABI && 711 dyld_triple.getOS() == llvm::Triple::IOS) || 712 (dyld_triple.getEnvironment() == llvm::Triple::Simulator && 713 (dyld_triple.getOS() == llvm::Triple::IOS || 714 dyld_triple.getOS() == llvm::Triple::TvOS || 715 dyld_triple.getOS() == llvm::Triple::WatchOS))) 716 image_module_sp->MergeArchitecture(dyld_spec); 717 } 718 } 719 720 if (loaded_module_list.GetSize() > 0) { 721 if (log) 722 loaded_module_list.LogUUIDAndPaths(log, 723 "DynamicLoaderDarwin::ModulesDidLoad"); 724 m_process->GetTarget().ModulesDidLoad(loaded_module_list); 725 } 726 return true; 727 } 728 729 // On Mac OS X libobjc (the Objective-C runtime) has several critical dispatch 730 // functions written in hand-written assembly, and also have hand-written 731 // unwind information in the eh_frame section. Normally we prefer analyzing 732 // the assembly instructions of a currently executing frame to unwind from that 733 // frame -- but on hand-written functions this profiling can fail. We should 734 // use the eh_frame instructions for these functions all the time. 735 // 736 // As an aside, it would be better if the eh_frame entries had a flag (or were 737 // extensible so they could have an Apple-specific flag) which indicates that 738 // the instructions are asynchronous -- accurate at every instruction, instead 739 // of our normal default assumption that they are not. 740 741 bool DynamicLoaderDarwin::AlwaysRelyOnEHUnwindInfo(SymbolContext &sym_ctx) { 742 ModuleSP module_sp; 743 if (sym_ctx.symbol) { 744 module_sp = sym_ctx.symbol->GetAddressRef().GetModule(); 745 } 746 if (module_sp.get() == nullptr && sym_ctx.function) { 747 module_sp = 748 sym_ctx.function->GetAddressRange().GetBaseAddress().GetModule(); 749 } 750 if (module_sp.get() == nullptr) 751 return false; 752 753 ObjCLanguageRuntime *objc_runtime = ObjCLanguageRuntime::Get(*m_process); 754 return objc_runtime != nullptr && 755 objc_runtime->IsModuleObjCLibrary(module_sp); 756 } 757 758 // Dump a Segment to the file handle provided. 759 void DynamicLoaderDarwin::Segment::PutToLog(Log *log, 760 lldb::addr_t slide) const { 761 if (log) { 762 if (slide == 0) 763 LLDB_LOGF(log, "\t\t%16s [0x%16.16" PRIx64 " - 0x%16.16" PRIx64 ")", 764 name.AsCString(""), vmaddr + slide, vmaddr + slide + vmsize); 765 else 766 LLDB_LOGF(log, 767 "\t\t%16s [0x%16.16" PRIx64 " - 0x%16.16" PRIx64 768 ") slide = 0x%" PRIx64, 769 name.AsCString(""), vmaddr + slide, vmaddr + slide + vmsize, 770 slide); 771 } 772 } 773 774 lldb_private::ArchSpec DynamicLoaderDarwin::ImageInfo::GetArchitecture() const { 775 // Update the module's platform with the DYLD info. 776 lldb_private::ArchSpec arch_spec(lldb_private::eArchTypeMachO, header.cputype, 777 header.cpusubtype); 778 if (os_env == llvm::Triple::MacABI && os_type == llvm::Triple::IOS) { 779 llvm::Triple triple(llvm::Twine(arch_spec.GetArchitectureName()) + 780 "-apple-ios" + min_version_os_sdk + "-macabi"); 781 ArchSpec maccatalyst_spec(triple); 782 if (arch_spec.IsCompatibleMatch(maccatalyst_spec)) 783 arch_spec.MergeFrom(maccatalyst_spec); 784 } 785 if (os_env == llvm::Triple::Simulator && 786 (os_type == llvm::Triple::IOS || os_type == llvm::Triple::TvOS || 787 os_type == llvm::Triple::WatchOS)) { 788 llvm::Triple triple(llvm::Twine(arch_spec.GetArchitectureName()) + 789 "-apple-" + llvm::Triple::getOSTypeName(os_type) + 790 min_version_os_sdk + "-simulator"); 791 ArchSpec sim_spec(triple); 792 if (arch_spec.IsCompatibleMatch(sim_spec)) 793 arch_spec.MergeFrom(sim_spec); 794 } 795 return arch_spec; 796 } 797 798 const DynamicLoaderDarwin::Segment * 799 DynamicLoaderDarwin::ImageInfo::FindSegment(ConstString name) const { 800 const size_t num_segments = segments.size(); 801 for (size_t i = 0; i < num_segments; ++i) { 802 if (segments[i].name == name) 803 return &segments[i]; 804 } 805 return nullptr; 806 } 807 808 // Dump an image info structure to the file handle provided. 809 void DynamicLoaderDarwin::ImageInfo::PutToLog(Log *log) const { 810 if (!log) 811 return; 812 if (address == LLDB_INVALID_ADDRESS) { 813 LLDB_LOG(log, "modtime={0:x+8} uuid={1} path='{2}' (UNLOADED)", mod_date, 814 uuid.GetAsString(), file_spec.GetPath()); 815 } else { 816 LLDB_LOG(log, "address={0:x+16} modtime={1:x+8} uuid={2} path='{3}'", 817 address, mod_date, uuid.GetAsString(), file_spec.GetPath()); 818 for (uint32_t i = 0; i < segments.size(); ++i) 819 segments[i].PutToLog(log, slide); 820 } 821 } 822 823 void DynamicLoaderDarwin::PrivateInitialize(Process *process) { 824 DEBUG_PRINTF("DynamicLoaderDarwin::%s() process state = %s\n", __FUNCTION__, 825 StateAsCString(m_process->GetState())); 826 Clear(true); 827 m_process = process; 828 m_process->GetTarget().ClearAllLoadedSections(); 829 } 830 831 // Member function that gets called when the process state changes. 832 void DynamicLoaderDarwin::PrivateProcessStateChanged(Process *process, 833 StateType state) { 834 DEBUG_PRINTF("DynamicLoaderDarwin::%s(%s)\n", __FUNCTION__, 835 StateAsCString(state)); 836 switch (state) { 837 case eStateConnected: 838 case eStateAttaching: 839 case eStateLaunching: 840 case eStateInvalid: 841 case eStateUnloaded: 842 case eStateExited: 843 case eStateDetached: 844 Clear(false); 845 break; 846 847 case eStateStopped: 848 // Keep trying find dyld and set our notification breakpoint each time we 849 // stop until we succeed 850 if (!DidSetNotificationBreakpoint() && m_process->IsAlive()) { 851 if (NeedToDoInitialImageFetch()) 852 DoInitialImageFetch(); 853 854 SetNotificationBreakpoint(); 855 } 856 break; 857 858 case eStateRunning: 859 case eStateStepping: 860 case eStateCrashed: 861 case eStateSuspended: 862 break; 863 } 864 } 865 866 ThreadPlanSP 867 DynamicLoaderDarwin::GetStepThroughTrampolinePlan(Thread &thread, 868 bool stop_others) { 869 ThreadPlanSP thread_plan_sp; 870 StackFrame *current_frame = thread.GetStackFrameAtIndex(0).get(); 871 const SymbolContext ¤t_context = 872 current_frame->GetSymbolContext(eSymbolContextSymbol); 873 Symbol *current_symbol = current_context.symbol; 874 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 875 TargetSP target_sp(thread.CalculateTarget()); 876 877 if (current_symbol != nullptr) { 878 std::vector<Address> addresses; 879 880 if (current_symbol->IsTrampoline()) { 881 ConstString trampoline_name = 882 current_symbol->GetMangled().GetName(Mangled::ePreferMangled); 883 884 if (trampoline_name) { 885 const ModuleList &images = target_sp->GetImages(); 886 887 SymbolContextList code_symbols; 888 images.FindSymbolsWithNameAndType(trampoline_name, eSymbolTypeCode, 889 code_symbols); 890 size_t num_code_symbols = code_symbols.GetSize(); 891 892 if (num_code_symbols > 0) { 893 for (uint32_t i = 0; i < num_code_symbols; i++) { 894 SymbolContext context; 895 AddressRange addr_range; 896 if (code_symbols.GetContextAtIndex(i, context)) { 897 context.GetAddressRange(eSymbolContextEverything, 0, false, 898 addr_range); 899 addresses.push_back(addr_range.GetBaseAddress()); 900 if (log) { 901 addr_t load_addr = 902 addr_range.GetBaseAddress().GetLoadAddress(target_sp.get()); 903 904 LLDB_LOGF(log, 905 "Found a trampoline target symbol at 0x%" PRIx64 ".", 906 load_addr); 907 } 908 } 909 } 910 } 911 912 SymbolContextList reexported_symbols; 913 images.FindSymbolsWithNameAndType( 914 trampoline_name, eSymbolTypeReExported, reexported_symbols); 915 size_t num_reexported_symbols = reexported_symbols.GetSize(); 916 if (num_reexported_symbols > 0) { 917 for (uint32_t i = 0; i < num_reexported_symbols; i++) { 918 SymbolContext context; 919 if (reexported_symbols.GetContextAtIndex(i, context)) { 920 if (context.symbol) { 921 Symbol *actual_symbol = 922 context.symbol->ResolveReExportedSymbol(*target_sp.get()); 923 if (actual_symbol) { 924 const Address actual_symbol_addr = 925 actual_symbol->GetAddress(); 926 if (actual_symbol_addr.IsValid()) { 927 addresses.push_back(actual_symbol_addr); 928 if (log) { 929 lldb::addr_t load_addr = 930 actual_symbol_addr.GetLoadAddress(target_sp.get()); 931 LLDB_LOGF( 932 log, 933 "Found a re-exported symbol: %s at 0x%" PRIx64 ".", 934 actual_symbol->GetName().GetCString(), load_addr); 935 } 936 } 937 } 938 } 939 } 940 } 941 } 942 943 SymbolContextList indirect_symbols; 944 images.FindSymbolsWithNameAndType(trampoline_name, eSymbolTypeResolver, 945 indirect_symbols); 946 size_t num_indirect_symbols = indirect_symbols.GetSize(); 947 if (num_indirect_symbols > 0) { 948 for (uint32_t i = 0; i < num_indirect_symbols; i++) { 949 SymbolContext context; 950 AddressRange addr_range; 951 if (indirect_symbols.GetContextAtIndex(i, context)) { 952 context.GetAddressRange(eSymbolContextEverything, 0, false, 953 addr_range); 954 addresses.push_back(addr_range.GetBaseAddress()); 955 if (log) { 956 addr_t load_addr = 957 addr_range.GetBaseAddress().GetLoadAddress(target_sp.get()); 958 959 LLDB_LOGF(log, 960 "Found an indirect target symbol at 0x%" PRIx64 ".", 961 load_addr); 962 } 963 } 964 } 965 } 966 } 967 } else if (current_symbol->GetType() == eSymbolTypeReExported) { 968 // I am not sure we could ever end up stopped AT a re-exported symbol. 969 // But just in case: 970 971 const Symbol *actual_symbol = 972 current_symbol->ResolveReExportedSymbol(*(target_sp.get())); 973 if (actual_symbol) { 974 Address target_addr(actual_symbol->GetAddress()); 975 if (target_addr.IsValid()) { 976 LLDB_LOGF( 977 log, 978 "Found a re-exported symbol: %s pointing to: %s at 0x%" PRIx64 979 ".", 980 current_symbol->GetName().GetCString(), 981 actual_symbol->GetName().GetCString(), 982 target_addr.GetLoadAddress(target_sp.get())); 983 addresses.push_back(target_addr.GetLoadAddress(target_sp.get())); 984 } 985 } 986 } 987 988 if (addresses.size() > 0) { 989 // First check whether any of the addresses point to Indirect symbols, 990 // and if they do, resolve them: 991 std::vector<lldb::addr_t> load_addrs; 992 for (Address address : addresses) { 993 Symbol *symbol = address.CalculateSymbolContextSymbol(); 994 if (symbol && symbol->IsIndirect()) { 995 Status error; 996 Address symbol_address = symbol->GetAddress(); 997 addr_t resolved_addr = thread.GetProcess()->ResolveIndirectFunction( 998 &symbol_address, error); 999 if (error.Success()) { 1000 load_addrs.push_back(resolved_addr); 1001 LLDB_LOGF(log, 1002 "ResolveIndirectFunction found resolved target for " 1003 "%s at 0x%" PRIx64 ".", 1004 symbol->GetName().GetCString(), resolved_addr); 1005 } 1006 } else { 1007 load_addrs.push_back(address.GetLoadAddress(target_sp.get())); 1008 } 1009 } 1010 thread_plan_sp = std::make_shared<ThreadPlanRunToAddress>( 1011 thread, load_addrs, stop_others); 1012 } 1013 } else { 1014 LLDB_LOGF(log, "Could not find symbol for step through."); 1015 } 1016 1017 return thread_plan_sp; 1018 } 1019 1020 void DynamicLoaderDarwin::FindEquivalentSymbols( 1021 lldb_private::Symbol *original_symbol, lldb_private::ModuleList &images, 1022 lldb_private::SymbolContextList &equivalent_symbols) { 1023 ConstString trampoline_name = 1024 original_symbol->GetMangled().GetName(Mangled::ePreferMangled); 1025 if (!trampoline_name) 1026 return; 1027 1028 static const char *resolver_name_regex = "(_gc|_non_gc|\\$[A-Za-z0-9\\$]+)$"; 1029 std::string equivalent_regex_buf("^"); 1030 equivalent_regex_buf.append(trampoline_name.GetCString()); 1031 equivalent_regex_buf.append(resolver_name_regex); 1032 1033 RegularExpression equivalent_name_regex(equivalent_regex_buf); 1034 images.FindSymbolsMatchingRegExAndType(equivalent_name_regex, eSymbolTypeCode, 1035 equivalent_symbols); 1036 1037 } 1038 1039 lldb::ModuleSP DynamicLoaderDarwin::GetPThreadLibraryModule() { 1040 ModuleSP module_sp = m_libpthread_module_wp.lock(); 1041 if (!module_sp) { 1042 SymbolContextList sc_list; 1043 ModuleSpec module_spec; 1044 module_spec.GetFileSpec().GetFilename().SetCString( 1045 "libsystem_pthread.dylib"); 1046 ModuleList module_list; 1047 m_process->GetTarget().GetImages().FindModules(module_spec, module_list); 1048 if (!module_list.IsEmpty()) { 1049 if (module_list.GetSize() == 1) { 1050 module_sp = module_list.GetModuleAtIndex(0); 1051 if (module_sp) 1052 m_libpthread_module_wp = module_sp; 1053 } 1054 } 1055 } 1056 return module_sp; 1057 } 1058 1059 Address DynamicLoaderDarwin::GetPthreadSetSpecificAddress() { 1060 if (!m_pthread_getspecific_addr.IsValid()) { 1061 ModuleSP module_sp = GetPThreadLibraryModule(); 1062 if (module_sp) { 1063 lldb_private::SymbolContextList sc_list; 1064 module_sp->FindSymbolsWithNameAndType(ConstString("pthread_getspecific"), 1065 eSymbolTypeCode, sc_list); 1066 SymbolContext sc; 1067 if (sc_list.GetContextAtIndex(0, sc)) { 1068 if (sc.symbol) 1069 m_pthread_getspecific_addr = sc.symbol->GetAddress(); 1070 } 1071 } 1072 } 1073 return m_pthread_getspecific_addr; 1074 } 1075 1076 lldb::addr_t 1077 DynamicLoaderDarwin::GetThreadLocalData(const lldb::ModuleSP module_sp, 1078 const lldb::ThreadSP thread_sp, 1079 lldb::addr_t tls_file_addr) { 1080 if (!thread_sp || !module_sp) 1081 return LLDB_INVALID_ADDRESS; 1082 1083 std::lock_guard<std::recursive_mutex> guard(m_mutex); 1084 1085 const uint32_t addr_size = m_process->GetAddressByteSize(); 1086 uint8_t buf[sizeof(lldb::addr_t) * 3]; 1087 1088 lldb_private::Address tls_addr; 1089 if (module_sp->ResolveFileAddress(tls_file_addr, tls_addr)) { 1090 Status error; 1091 const size_t tsl_data_size = addr_size * 3; 1092 Target &target = m_process->GetTarget(); 1093 if (target.ReadMemory(tls_addr, false, buf, tsl_data_size, error) == 1094 tsl_data_size) { 1095 const ByteOrder byte_order = m_process->GetByteOrder(); 1096 DataExtractor data(buf, sizeof(buf), byte_order, addr_size); 1097 lldb::offset_t offset = addr_size; // Skip the first pointer 1098 const lldb::addr_t pthread_key = data.GetAddress(&offset); 1099 const lldb::addr_t tls_offset = data.GetAddress(&offset); 1100 if (pthread_key != 0) { 1101 // First check to see if we have already figured out the location of 1102 // TLS data for the pthread_key on a specific thread yet. If we have we 1103 // can re-use it since its location will not change unless the process 1104 // execs. 1105 const tid_t tid = thread_sp->GetID(); 1106 auto tid_pos = m_tid_to_tls_map.find(tid); 1107 if (tid_pos != m_tid_to_tls_map.end()) { 1108 auto tls_pos = tid_pos->second.find(pthread_key); 1109 if (tls_pos != tid_pos->second.end()) { 1110 return tls_pos->second + tls_offset; 1111 } 1112 } 1113 StackFrameSP frame_sp = thread_sp->GetStackFrameAtIndex(0); 1114 if (frame_sp) { 1115 TypeSystemClang *clang_ast_context = 1116 TypeSystemClang::GetScratch(target); 1117 1118 if (!clang_ast_context) 1119 return LLDB_INVALID_ADDRESS; 1120 1121 CompilerType clang_void_ptr_type = 1122 clang_ast_context->GetBasicType(eBasicTypeVoid).GetPointerType(); 1123 Address pthread_getspecific_addr = GetPthreadSetSpecificAddress(); 1124 if (pthread_getspecific_addr.IsValid()) { 1125 EvaluateExpressionOptions options; 1126 1127 lldb::ThreadPlanSP thread_plan_sp(new ThreadPlanCallFunction( 1128 *thread_sp, pthread_getspecific_addr, clang_void_ptr_type, 1129 llvm::ArrayRef<lldb::addr_t>(pthread_key), options)); 1130 1131 DiagnosticManager execution_errors; 1132 ExecutionContext exe_ctx(thread_sp); 1133 lldb::ExpressionResults results = m_process->RunThreadPlan( 1134 exe_ctx, thread_plan_sp, options, execution_errors); 1135 1136 if (results == lldb::eExpressionCompleted) { 1137 lldb::ValueObjectSP result_valobj_sp = 1138 thread_plan_sp->GetReturnValueObject(); 1139 if (result_valobj_sp) { 1140 const lldb::addr_t pthread_key_data = 1141 result_valobj_sp->GetValueAsUnsigned(0); 1142 if (pthread_key_data) { 1143 m_tid_to_tls_map[tid].insert( 1144 std::make_pair(pthread_key, pthread_key_data)); 1145 return pthread_key_data + tls_offset; 1146 } 1147 } 1148 } 1149 } 1150 } 1151 } 1152 } 1153 } 1154 return LLDB_INVALID_ADDRESS; 1155 } 1156 1157 bool DynamicLoaderDarwin::UseDYLDSPI(Process *process) { 1158 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 1159 bool use_new_spi_interface = false; 1160 1161 llvm::VersionTuple version = process->GetHostOSVersion(); 1162 if (!version.empty()) { 1163 const llvm::Triple::OSType os_type = 1164 process->GetTarget().GetArchitecture().GetTriple().getOS(); 1165 1166 // macOS 10.12 and newer 1167 if (os_type == llvm::Triple::MacOSX && 1168 version >= llvm::VersionTuple(10, 12)) 1169 use_new_spi_interface = true; 1170 1171 // iOS 10 and newer 1172 if (os_type == llvm::Triple::IOS && version >= llvm::VersionTuple(10)) 1173 use_new_spi_interface = true; 1174 1175 // tvOS 10 and newer 1176 if (os_type == llvm::Triple::TvOS && version >= llvm::VersionTuple(10)) 1177 use_new_spi_interface = true; 1178 1179 // watchOS 3 and newer 1180 if (os_type == llvm::Triple::WatchOS && version >= llvm::VersionTuple(3)) 1181 use_new_spi_interface = true; 1182 1183 // NEED_BRIDGEOS_TRIPLE // Any BridgeOS 1184 // NEED_BRIDGEOS_TRIPLE if (os_type == llvm::Triple::BridgeOS) 1185 // NEED_BRIDGEOS_TRIPLE use_new_spi_interface = true; 1186 } 1187 1188 if (log) { 1189 if (use_new_spi_interface) 1190 LLDB_LOGF( 1191 log, "DynamicLoaderDarwin::UseDYLDSPI: Use new DynamicLoader plugin"); 1192 else 1193 LLDB_LOGF( 1194 log, "DynamicLoaderDarwin::UseDYLDSPI: Use old DynamicLoader plugin"); 1195 } 1196 return use_new_spi_interface; 1197 } 1198