1 //===-- DynamicLoaderDarwinKernel.cpp -----------------------------*- C++ 2 //-*-===// 3 // 4 // The LLVM Compiler Infrastructure 5 // 6 // This file is distributed under the University of Illinois Open Source 7 // License. See LICENSE.TXT for details. 8 // 9 //===----------------------------------------------------------------------===// 10 11 #include "Plugins/Platform/MacOSX/PlatformDarwinKernel.h" 12 #include "lldb/Breakpoint/StoppointCallbackContext.h" 13 #include "lldb/Core/Debugger.h" 14 #include "lldb/Core/Module.h" 15 #include "lldb/Core/ModuleSpec.h" 16 #include "lldb/Core/PluginManager.h" 17 #include "lldb/Core/Section.h" 18 #include "lldb/Core/StreamFile.h" 19 #include "lldb/Host/Symbols.h" 20 #include "lldb/Interpreter/OptionValueProperties.h" 21 #include "lldb/Symbol/ObjectFile.h" 22 #include "lldb/Target/OperatingSystem.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/ThreadPlanRunToAddress.h" 28 #include "lldb/Utility/DataBuffer.h" 29 #include "lldb/Utility/DataBufferHeap.h" 30 #include "lldb/Utility/Log.h" 31 #include "lldb/Utility/State.h" 32 33 #include "DynamicLoaderDarwinKernel.h" 34 35 //#define ENABLE_DEBUG_PRINTF // COMMENT THIS LINE OUT PRIOR TO CHECKIN 36 #ifdef ENABLE_DEBUG_PRINTF 37 #include <stdio.h> 38 #define DEBUG_PRINTF(fmt, ...) printf(fmt, ##__VA_ARGS__) 39 #else 40 #define DEBUG_PRINTF(fmt, ...) 41 #endif 42 43 using namespace lldb; 44 using namespace lldb_private; 45 46 // Progressively greater amounts of scanning we will allow For some targets 47 // very early in startup, we can't do any random reads of memory or we can 48 // crash the device so a setting is needed that can completely disable the 49 // KASLR scans. 50 51 enum KASLRScanType { 52 eKASLRScanNone = 0, // No reading into the inferior at all 53 eKASLRScanLowgloAddresses, // Check one word of memory for a possible kernel 54 // addr, then see if a kernel is there 55 eKASLRScanNearPC, // Scan backwards from the current $pc looking for kernel; 56 // checking at 96 locations total 57 eKASLRScanExhaustiveScan // Scan through the entire possible kernel address 58 // range looking for a kernel 59 }; 60 61 static constexpr OptionEnumValueElement g_kaslr_kernel_scan_enum_values[] = { 62 {eKASLRScanNone, "none", 63 "Do not read memory looking for a Darwin kernel when attaching."}, 64 {eKASLRScanLowgloAddresses, "basic", "Check for the Darwin kernel's load " 65 "addr in the lowglo page " 66 "(boot-args=debug) only."}, 67 {eKASLRScanNearPC, "fast-scan", "Scan near the pc value on attach to find " 68 "the Darwin kernel's load address."}, 69 {eKASLRScanExhaustiveScan, "exhaustive-scan", 70 "Scan through the entire potential address range of Darwin kernel (only " 71 "on 32-bit targets)."}}; 72 73 static constexpr PropertyDefinition g_properties[] = { 74 {"load-kexts", OptionValue::eTypeBoolean, true, true, NULL, {}, 75 "Automatically loads kext images when attaching to a kernel."}, 76 {"scan-type", OptionValue::eTypeEnum, true, eKASLRScanNearPC, NULL, 77 OptionEnumValues(g_kaslr_kernel_scan_enum_values), 78 "Control how many reads lldb will make while searching for a Darwin " 79 "kernel on attach."}}; 80 81 enum { ePropertyLoadKexts, ePropertyScanType }; 82 83 class DynamicLoaderDarwinKernelProperties : public Properties { 84 public: 85 static ConstString &GetSettingName() { 86 static ConstString g_setting_name("darwin-kernel"); 87 return g_setting_name; 88 } 89 90 DynamicLoaderDarwinKernelProperties() : Properties() { 91 m_collection_sp.reset(new OptionValueProperties(GetSettingName())); 92 m_collection_sp->Initialize(g_properties); 93 } 94 95 virtual ~DynamicLoaderDarwinKernelProperties() {} 96 97 bool GetLoadKexts() const { 98 const uint32_t idx = ePropertyLoadKexts; 99 return m_collection_sp->GetPropertyAtIndexAsBoolean( 100 NULL, idx, g_properties[idx].default_uint_value != 0); 101 } 102 103 KASLRScanType GetScanType() const { 104 const uint32_t idx = ePropertyScanType; 105 return (KASLRScanType)m_collection_sp->GetPropertyAtIndexAsEnumeration( 106 NULL, idx, g_properties[idx].default_uint_value); 107 } 108 }; 109 110 typedef std::shared_ptr<DynamicLoaderDarwinKernelProperties> 111 DynamicLoaderDarwinKernelPropertiesSP; 112 113 static const DynamicLoaderDarwinKernelPropertiesSP &GetGlobalProperties() { 114 static DynamicLoaderDarwinKernelPropertiesSP g_settings_sp; 115 if (!g_settings_sp) 116 g_settings_sp.reset(new DynamicLoaderDarwinKernelProperties()); 117 return g_settings_sp; 118 } 119 120 //---------------------------------------------------------------------- 121 // Create an instance of this class. This function is filled into the plugin 122 // info class that gets handed out by the plugin factory and allows the lldb to 123 // instantiate an instance of this class. 124 //---------------------------------------------------------------------- 125 DynamicLoader *DynamicLoaderDarwinKernel::CreateInstance(Process *process, 126 bool force) { 127 if (!force) { 128 // If the user provided an executable binary and it is not a kernel, this 129 // plugin should not create an instance. 130 Module *exe_module = process->GetTarget().GetExecutableModulePointer(); 131 if (exe_module) { 132 ObjectFile *object_file = exe_module->GetObjectFile(); 133 if (object_file) { 134 if (object_file->GetStrata() != ObjectFile::eStrataKernel) { 135 return NULL; 136 } 137 } 138 } 139 140 // If the target's architecture does not look like an Apple environment, 141 // this plugin should not create an instance. 142 const llvm::Triple &triple_ref = 143 process->GetTarget().GetArchitecture().GetTriple(); 144 switch (triple_ref.getOS()) { 145 case llvm::Triple::Darwin: 146 case llvm::Triple::MacOSX: 147 case llvm::Triple::IOS: 148 case llvm::Triple::TvOS: 149 case llvm::Triple::WatchOS: 150 // NEED_BRIDGEOS_TRIPLE case llvm::Triple::BridgeOS: 151 if (triple_ref.getVendor() != llvm::Triple::Apple) { 152 return NULL; 153 } 154 break; 155 // If we have triple like armv7-unknown-unknown, we should try looking for 156 // a Darwin kernel. 157 case llvm::Triple::UnknownOS: 158 break; 159 default: 160 return NULL; 161 break; 162 } 163 } 164 165 // At this point if there is an ExecutableModule, it is a kernel and the 166 // Target is some variant of an Apple system. If the Process hasn't provided 167 // the kernel load address, we need to look around in memory to find it. 168 169 const addr_t kernel_load_address = SearchForDarwinKernel(process); 170 if (CheckForKernelImageAtAddress(kernel_load_address, process).IsValid()) { 171 process->SetCanRunCode(false); 172 return new DynamicLoaderDarwinKernel(process, kernel_load_address); 173 } 174 return NULL; 175 } 176 177 lldb::addr_t 178 DynamicLoaderDarwinKernel::SearchForDarwinKernel(Process *process) { 179 addr_t kernel_load_address = process->GetImageInfoAddress(); 180 if (kernel_load_address == LLDB_INVALID_ADDRESS) { 181 kernel_load_address = SearchForKernelAtSameLoadAddr(process); 182 if (kernel_load_address == LLDB_INVALID_ADDRESS) { 183 kernel_load_address = SearchForKernelWithDebugHints(process); 184 if (kernel_load_address == LLDB_INVALID_ADDRESS) { 185 kernel_load_address = SearchForKernelNearPC(process); 186 if (kernel_load_address == LLDB_INVALID_ADDRESS) { 187 kernel_load_address = SearchForKernelViaExhaustiveSearch(process); 188 } 189 } 190 } 191 } 192 return kernel_load_address; 193 } 194 195 //---------------------------------------------------------------------- 196 // Check if the kernel binary is loaded in memory without a slide. First verify 197 // that the ExecutableModule is a kernel before we proceed. Returns the address 198 // of the kernel if one was found, else LLDB_INVALID_ADDRESS. 199 //---------------------------------------------------------------------- 200 lldb::addr_t 201 DynamicLoaderDarwinKernel::SearchForKernelAtSameLoadAddr(Process *process) { 202 Module *exe_module = process->GetTarget().GetExecutableModulePointer(); 203 if (exe_module == NULL) 204 return LLDB_INVALID_ADDRESS; 205 206 ObjectFile *exe_objfile = exe_module->GetObjectFile(); 207 if (exe_objfile == NULL) 208 return LLDB_INVALID_ADDRESS; 209 210 if (exe_objfile->GetType() != ObjectFile::eTypeExecutable || 211 exe_objfile->GetStrata() != ObjectFile::eStrataKernel) 212 return LLDB_INVALID_ADDRESS; 213 214 if (!exe_objfile->GetHeaderAddress().IsValid()) 215 return LLDB_INVALID_ADDRESS; 216 217 if (CheckForKernelImageAtAddress( 218 exe_objfile->GetHeaderAddress().GetFileAddress(), process) == 219 exe_module->GetUUID()) 220 return exe_objfile->GetHeaderAddress().GetFileAddress(); 221 222 return LLDB_INVALID_ADDRESS; 223 } 224 225 //---------------------------------------------------------------------- 226 // If the debug flag is included in the boot-args nvram setting, the kernel's 227 // load address will be noted in the lowglo page at a fixed address Returns the 228 // address of the kernel if one was found, else LLDB_INVALID_ADDRESS. 229 //---------------------------------------------------------------------- 230 lldb::addr_t 231 DynamicLoaderDarwinKernel::SearchForKernelWithDebugHints(Process *process) { 232 if (GetGlobalProperties()->GetScanType() == eKASLRScanNone) 233 return LLDB_INVALID_ADDRESS; 234 235 Status read_err; 236 addr_t kernel_addresses_64[] = { 237 0xfffffff000004010ULL, // newest arm64 devices 238 0xffffff8000004010ULL, // 2014-2015-ish arm64 devices 239 0xffffff8000002010ULL, // oldest arm64 devices 240 LLDB_INVALID_ADDRESS}; 241 addr_t kernel_addresses_32[] = {0xffff0110, // 2016 and earlier armv7 devices 242 0xffff1010, 243 LLDB_INVALID_ADDRESS}; 244 245 uint8_t uval[8]; 246 if (process->GetAddressByteSize() == 8) { 247 for (size_t i = 0; kernel_addresses_64[i] != LLDB_INVALID_ADDRESS; i++) { 248 if (process->ReadMemoryFromInferior (kernel_addresses_64[i], uval, 8, read_err) == 8) 249 { 250 DataExtractor data (&uval, 8, process->GetByteOrder(), process->GetAddressByteSize()); 251 offset_t offset = 0; 252 uint64_t addr = data.GetU64 (&offset); 253 if (CheckForKernelImageAtAddress(addr, process).IsValid()) { 254 return addr; 255 } 256 } 257 } 258 } 259 260 if (process->GetAddressByteSize() == 4) { 261 for (size_t i = 0; kernel_addresses_32[i] != LLDB_INVALID_ADDRESS; i++) { 262 if (process->ReadMemoryFromInferior (kernel_addresses_32[i], uval, 4, read_err) == 4) 263 { 264 DataExtractor data (&uval, 4, process->GetByteOrder(), process->GetAddressByteSize()); 265 offset_t offset = 0; 266 uint32_t addr = data.GetU32 (&offset); 267 if (CheckForKernelImageAtAddress(addr, process).IsValid()) { 268 return addr; 269 } 270 } 271 } 272 } 273 274 return LLDB_INVALID_ADDRESS; 275 } 276 277 //---------------------------------------------------------------------- 278 // If the kernel is currently executing when lldb attaches, and we don't have a 279 // better way of finding the kernel's load address, try searching backwards 280 // from the current pc value looking for the kernel's Mach header in memory. 281 // Returns the address of the kernel if one was found, else 282 // LLDB_INVALID_ADDRESS. 283 //---------------------------------------------------------------------- 284 lldb::addr_t 285 DynamicLoaderDarwinKernel::SearchForKernelNearPC(Process *process) { 286 if (GetGlobalProperties()->GetScanType() == eKASLRScanNone || 287 GetGlobalProperties()->GetScanType() == eKASLRScanLowgloAddresses) { 288 return LLDB_INVALID_ADDRESS; 289 } 290 291 ThreadSP thread = process->GetThreadList().GetSelectedThread(); 292 if (thread.get() == NULL) 293 return LLDB_INVALID_ADDRESS; 294 addr_t pc = thread->GetRegisterContext()->GetPC(LLDB_INVALID_ADDRESS); 295 296 if (pc == LLDB_INVALID_ADDRESS) 297 return LLDB_INVALID_ADDRESS; 298 299 // The kernel will load at at one megabyte boundary (0x100000), or at that 300 // boundary plus an offset of one page (0x1000) or two, or four (0x4000), 301 // depending on the device. 302 303 // Round the current pc down to the nearest one megabyte boundary - the place 304 // where we will start searching. 305 addr_t addr = pc & ~0xfffff; 306 307 // Search backwards 32 megabytes, looking for the start of the kernel at each 308 // one-megabyte boundary. 309 for (int i = 0; i < 32; i++, addr -= 0x100000) { 310 if (CheckForKernelImageAtAddress(addr, process).IsValid()) 311 return addr; 312 if (CheckForKernelImageAtAddress(addr + 0x1000, process).IsValid()) 313 return addr + 0x1000; 314 if (CheckForKernelImageAtAddress(addr + 0x2000, process).IsValid()) 315 return addr + 0x2000; 316 if (CheckForKernelImageAtAddress(addr + 0x4000, process).IsValid()) 317 return addr + 0x4000; 318 } 319 320 return LLDB_INVALID_ADDRESS; 321 } 322 323 //---------------------------------------------------------------------- 324 // Scan through the valid address range for a kernel binary. This is uselessly 325 // slow in 64-bit environments so we don't even try it. This scan is not 326 // enabled by default even for 32-bit targets. Returns the address of the 327 // kernel if one was found, else LLDB_INVALID_ADDRESS. 328 //---------------------------------------------------------------------- 329 lldb::addr_t DynamicLoaderDarwinKernel::SearchForKernelViaExhaustiveSearch( 330 Process *process) { 331 if (GetGlobalProperties()->GetScanType() != eKASLRScanExhaustiveScan) { 332 return LLDB_INVALID_ADDRESS; 333 } 334 335 addr_t kernel_range_low, kernel_range_high; 336 if (process->GetTarget().GetArchitecture().GetAddressByteSize() == 8) { 337 kernel_range_low = 1ULL << 63; 338 kernel_range_high = UINT64_MAX; 339 } else { 340 kernel_range_low = 1ULL << 31; 341 kernel_range_high = UINT32_MAX; 342 } 343 344 // Stepping through memory at one-megabyte resolution looking for a kernel 345 // rarely works (fast enough) with a 64-bit address space -- for now, let's 346 // not even bother. We may be attaching to something which *isn't* a kernel 347 // and we don't want to spin for minutes on-end looking for a kernel. 348 if (process->GetTarget().GetArchitecture().GetAddressByteSize() == 8) 349 return LLDB_INVALID_ADDRESS; 350 351 addr_t addr = kernel_range_low; 352 353 while (addr >= kernel_range_low && addr < kernel_range_high) { 354 if (CheckForKernelImageAtAddress(addr, process).IsValid()) 355 return addr; 356 if (CheckForKernelImageAtAddress(addr + 0x1000, process).IsValid()) 357 return addr + 0x1000; 358 if (CheckForKernelImageAtAddress(addr + 0x2000, process).IsValid()) 359 return addr + 0x2000; 360 if (CheckForKernelImageAtAddress(addr + 0x4000, process).IsValid()) 361 return addr + 0x4000; 362 addr += 0x100000; 363 } 364 return LLDB_INVALID_ADDRESS; 365 } 366 367 //---------------------------------------------------------------------- 368 // Read the mach_header struct out of memory and return it. 369 // Returns true if the mach_header was successfully read, 370 // Returns false if there was a problem reading the header, or it was not 371 // a Mach-O header. 372 //---------------------------------------------------------------------- 373 374 bool 375 DynamicLoaderDarwinKernel::ReadMachHeader(addr_t addr, Process *process, llvm::MachO::mach_header &header) { 376 Status read_error; 377 378 // Read the mach header and see whether it looks like a kernel 379 if (process->DoReadMemory (addr, &header, sizeof(header), read_error) != 380 sizeof(header)) 381 return false; 382 383 const uint32_t magicks[] = { llvm::MachO::MH_MAGIC_64, llvm::MachO::MH_MAGIC, llvm::MachO::MH_CIGAM, llvm::MachO::MH_CIGAM_64}; 384 385 bool found_matching_pattern = false; 386 for (size_t i = 0; i < llvm::array_lengthof (magicks); i++) 387 if (::memcmp (&header.magic, &magicks[i], sizeof (uint32_t)) == 0) 388 found_matching_pattern = true; 389 390 if (found_matching_pattern == false) 391 return false; 392 393 if (header.magic == llvm::MachO::MH_CIGAM || 394 header.magic == llvm::MachO::MH_CIGAM_64) { 395 header.magic = llvm::ByteSwap_32(header.magic); 396 header.cputype = llvm::ByteSwap_32(header.cputype); 397 header.cpusubtype = llvm::ByteSwap_32(header.cpusubtype); 398 header.filetype = llvm::ByteSwap_32(header.filetype); 399 header.ncmds = llvm::ByteSwap_32(header.ncmds); 400 header.sizeofcmds = llvm::ByteSwap_32(header.sizeofcmds); 401 header.flags = llvm::ByteSwap_32(header.flags); 402 } 403 404 return true; 405 } 406 407 //---------------------------------------------------------------------- 408 // Given an address in memory, look to see if there is a kernel image at that 409 // address. 410 // Returns a UUID; if a kernel was not found at that address, UUID.IsValid() 411 // will be false. 412 //---------------------------------------------------------------------- 413 lldb_private::UUID 414 DynamicLoaderDarwinKernel::CheckForKernelImageAtAddress(lldb::addr_t addr, 415 Process *process) { 416 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 417 if (addr == LLDB_INVALID_ADDRESS) 418 return UUID(); 419 420 if (log) 421 log->Printf("DynamicLoaderDarwinKernel::CheckForKernelImageAtAddress: " 422 "looking for kernel binary at 0x%" PRIx64, 423 addr); 424 425 llvm::MachO::mach_header header; 426 427 if (ReadMachHeader (addr, process, header) == false) 428 return UUID(); 429 430 // First try a quick test -- read the first 4 bytes and see if there is a 431 // valid Mach-O magic field there 432 // (the first field of the mach_header/mach_header_64 struct). 433 // A kernel is an executable which does not have the dynamic link object flag 434 // set. 435 if (header.filetype == llvm::MachO::MH_EXECUTE && 436 (header.flags & llvm::MachO::MH_DYLDLINK) == 0) { 437 // Create a full module to get the UUID 438 ModuleSP memory_module_sp = 439 process->ReadModuleFromMemory(FileSpec("temp_mach_kernel"), addr); 440 if (!memory_module_sp.get()) 441 return UUID(); 442 443 ObjectFile *exe_objfile = memory_module_sp->GetObjectFile(); 444 if (exe_objfile == NULL) { 445 if (log) 446 log->Printf("DynamicLoaderDarwinKernel::CheckForKernelImageAtAddress " 447 "found a binary at 0x%" PRIx64 448 " but could not create an object file from memory", 449 addr); 450 return UUID(); 451 } 452 453 if (exe_objfile->GetType() == ObjectFile::eTypeExecutable && 454 exe_objfile->GetStrata() == ObjectFile::eStrataKernel) { 455 ArchSpec kernel_arch(eArchTypeMachO, header.cputype, header.cpusubtype); 456 if (!process->GetTarget().GetArchitecture().IsCompatibleMatch( 457 kernel_arch)) { 458 process->GetTarget().SetArchitecture(kernel_arch); 459 } 460 if (log) { 461 std::string uuid_str; 462 if (memory_module_sp->GetUUID().IsValid()) { 463 uuid_str = "with UUID "; 464 uuid_str += memory_module_sp->GetUUID().GetAsString(); 465 } else { 466 uuid_str = "and no LC_UUID found in load commands "; 467 } 468 log->Printf( 469 "DynamicLoaderDarwinKernel::CheckForKernelImageAtAddress: " 470 "kernel binary image found at 0x%" PRIx64 " with arch '%s' %s", 471 addr, kernel_arch.GetTriple().str().c_str(), uuid_str.c_str()); 472 } 473 return memory_module_sp->GetUUID(); 474 } 475 } 476 477 return UUID(); 478 } 479 480 //---------------------------------------------------------------------- 481 // Constructor 482 //---------------------------------------------------------------------- 483 DynamicLoaderDarwinKernel::DynamicLoaderDarwinKernel(Process *process, 484 lldb::addr_t kernel_addr) 485 : DynamicLoader(process), m_kernel_load_address(kernel_addr), m_kernel(), 486 m_kext_summary_header_ptr_addr(), m_kext_summary_header_addr(), 487 m_kext_summary_header(), m_known_kexts(), m_mutex(), 488 m_break_id(LLDB_INVALID_BREAK_ID) { 489 Status error; 490 PlatformSP platform_sp( 491 Platform::Create(PlatformDarwinKernel::GetPluginNameStatic(), error)); 492 // Only select the darwin-kernel Platform if we've been asked to load kexts. 493 // It can take some time to scan over all of the kext info.plists and that 494 // shouldn't be done if kext loading is explicitly disabled. 495 if (platform_sp.get() && GetGlobalProperties()->GetLoadKexts()) { 496 process->GetTarget().SetPlatform(platform_sp); 497 } 498 } 499 500 //---------------------------------------------------------------------- 501 // Destructor 502 //---------------------------------------------------------------------- 503 DynamicLoaderDarwinKernel::~DynamicLoaderDarwinKernel() { Clear(true); } 504 505 void DynamicLoaderDarwinKernel::UpdateIfNeeded() { 506 LoadKernelModuleIfNeeded(); 507 SetNotificationBreakpointIfNeeded(); 508 } 509 //------------------------------------------------------------------ 510 /// Called after attaching a process. 511 /// 512 /// Allow DynamicLoader plug-ins to execute some code after 513 /// attaching to a process. 514 //------------------------------------------------------------------ 515 void DynamicLoaderDarwinKernel::DidAttach() { 516 PrivateInitialize(m_process); 517 UpdateIfNeeded(); 518 } 519 520 //------------------------------------------------------------------ 521 /// Called after attaching a process. 522 /// 523 /// Allow DynamicLoader plug-ins to execute some code after 524 /// attaching to a process. 525 //------------------------------------------------------------------ 526 void DynamicLoaderDarwinKernel::DidLaunch() { 527 PrivateInitialize(m_process); 528 UpdateIfNeeded(); 529 } 530 531 //---------------------------------------------------------------------- 532 // Clear out the state of this class. 533 //---------------------------------------------------------------------- 534 void DynamicLoaderDarwinKernel::Clear(bool clear_process) { 535 std::lock_guard<std::recursive_mutex> guard(m_mutex); 536 537 if (m_process->IsAlive() && LLDB_BREAK_ID_IS_VALID(m_break_id)) 538 m_process->ClearBreakpointSiteByID(m_break_id); 539 540 if (clear_process) 541 m_process = NULL; 542 m_kernel.Clear(); 543 m_known_kexts.clear(); 544 m_kext_summary_header_ptr_addr.Clear(); 545 m_kext_summary_header_addr.Clear(); 546 m_break_id = LLDB_INVALID_BREAK_ID; 547 } 548 549 bool DynamicLoaderDarwinKernel::KextImageInfo::LoadImageAtFileAddress( 550 Process *process) { 551 if (IsLoaded()) 552 return true; 553 554 if (m_module_sp) { 555 bool changed = false; 556 if (m_module_sp->SetLoadAddress(process->GetTarget(), 0, true, changed)) 557 m_load_process_stop_id = process->GetStopID(); 558 } 559 return false; 560 } 561 562 void DynamicLoaderDarwinKernel::KextImageInfo::SetModule(ModuleSP module_sp) { 563 m_module_sp = module_sp; 564 if (module_sp.get() && module_sp->GetObjectFile()) { 565 if (module_sp->GetObjectFile()->GetType() == ObjectFile::eTypeExecutable && 566 module_sp->GetObjectFile()->GetStrata() == ObjectFile::eStrataKernel) { 567 m_kernel_image = true; 568 } else { 569 m_kernel_image = false; 570 } 571 } 572 } 573 574 ModuleSP DynamicLoaderDarwinKernel::KextImageInfo::GetModule() { 575 return m_module_sp; 576 } 577 578 void DynamicLoaderDarwinKernel::KextImageInfo::SetLoadAddress( 579 addr_t load_addr) { 580 m_load_address = load_addr; 581 } 582 583 addr_t DynamicLoaderDarwinKernel::KextImageInfo::GetLoadAddress() const { 584 return m_load_address; 585 } 586 587 uint64_t DynamicLoaderDarwinKernel::KextImageInfo::GetSize() const { 588 return m_size; 589 } 590 591 void DynamicLoaderDarwinKernel::KextImageInfo::SetSize(uint64_t size) { 592 m_size = size; 593 } 594 595 uint32_t DynamicLoaderDarwinKernel::KextImageInfo::GetProcessStopId() const { 596 return m_load_process_stop_id; 597 } 598 599 void DynamicLoaderDarwinKernel::KextImageInfo::SetProcessStopId( 600 uint32_t stop_id) { 601 m_load_process_stop_id = stop_id; 602 } 603 604 bool DynamicLoaderDarwinKernel::KextImageInfo:: 605 operator==(const KextImageInfo &rhs) { 606 if (m_uuid.IsValid() || rhs.GetUUID().IsValid()) { 607 if (m_uuid == rhs.GetUUID()) { 608 return true; 609 } 610 return false; 611 } 612 613 if (m_name == rhs.GetName() && m_load_address == rhs.GetLoadAddress()) 614 return true; 615 616 return false; 617 } 618 619 void DynamicLoaderDarwinKernel::KextImageInfo::SetName(const char *name) { 620 m_name = name; 621 } 622 623 std::string DynamicLoaderDarwinKernel::KextImageInfo::GetName() const { 624 return m_name; 625 } 626 627 void DynamicLoaderDarwinKernel::KextImageInfo::SetUUID(const UUID &uuid) { 628 m_uuid = uuid; 629 } 630 631 UUID DynamicLoaderDarwinKernel::KextImageInfo::GetUUID() const { 632 return m_uuid; 633 } 634 635 // Given the m_load_address from the kext summaries, and a UUID, try to create 636 // an in-memory Module at that address. Require that the MemoryModule have a 637 // matching UUID and detect if this MemoryModule is a kernel or a kext. 638 // 639 // Returns true if m_memory_module_sp is now set to a valid Module. 640 641 bool DynamicLoaderDarwinKernel::KextImageInfo::ReadMemoryModule( 642 Process *process) { 643 Log *log = lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_HOST); 644 if (m_memory_module_sp.get() != NULL) 645 return true; 646 if (m_load_address == LLDB_INVALID_ADDRESS) 647 return false; 648 649 FileSpec file_spec(m_name.c_str()); 650 651 llvm::MachO::mach_header mh; 652 size_t size_to_read = 512; 653 if (ReadMachHeader(m_load_address, process, mh)) { 654 if (mh.magic == llvm::MachO::MH_CIGAM || mh.magic == llvm::MachO::MH_MAGIC) 655 size_to_read = sizeof(llvm::MachO::mach_header) + mh.sizeofcmds; 656 if (mh.magic == llvm::MachO::MH_CIGAM_64 || 657 mh.magic == llvm::MachO::MH_MAGIC_64) 658 size_to_read = sizeof(llvm::MachO::mach_header_64) + mh.sizeofcmds; 659 } 660 661 ModuleSP memory_module_sp = 662 process->ReadModuleFromMemory(file_spec, m_load_address, size_to_read); 663 664 if (memory_module_sp.get() == NULL) 665 return false; 666 667 bool is_kernel = false; 668 if (memory_module_sp->GetObjectFile()) { 669 if (memory_module_sp->GetObjectFile()->GetType() == 670 ObjectFile::eTypeExecutable && 671 memory_module_sp->GetObjectFile()->GetStrata() == 672 ObjectFile::eStrataKernel) { 673 is_kernel = true; 674 } else if (memory_module_sp->GetObjectFile()->GetType() == 675 ObjectFile::eTypeSharedLibrary) { 676 is_kernel = false; 677 } 678 } 679 680 // If this is a kext, and the kernel specified what UUID we should find at 681 // this load address, require that the memory module have a matching UUID or 682 // something has gone wrong and we should discard it. 683 if (m_uuid.IsValid()) { 684 if (m_uuid != memory_module_sp->GetUUID()) { 685 if (log) { 686 log->Printf("KextImageInfo::ReadMemoryModule the kernel said to find " 687 "uuid %s at 0x%" PRIx64 688 " but instead we found uuid %s, throwing it away", 689 m_uuid.GetAsString().c_str(), m_load_address, 690 memory_module_sp->GetUUID().GetAsString().c_str()); 691 } 692 return false; 693 } 694 } 695 696 // If the in-memory Module has a UUID, let's use that. 697 if (!m_uuid.IsValid() && memory_module_sp->GetUUID().IsValid()) { 698 m_uuid = memory_module_sp->GetUUID(); 699 } 700 701 m_memory_module_sp = memory_module_sp; 702 m_kernel_image = is_kernel; 703 if (is_kernel) { 704 if (log) { 705 // This is unusual and probably not intended 706 log->Printf("KextImageInfo::ReadMemoryModule read the kernel binary out " 707 "of memory"); 708 } 709 if (memory_module_sp->GetArchitecture().IsValid()) { 710 process->GetTarget().SetArchitecture(memory_module_sp->GetArchitecture()); 711 } 712 if (m_uuid.IsValid()) { 713 ModuleSP exe_module_sp = process->GetTarget().GetExecutableModule(); 714 if (exe_module_sp.get() && exe_module_sp->GetUUID().IsValid()) { 715 if (m_uuid != exe_module_sp->GetUUID()) { 716 // The user specified a kernel binary that has a different UUID than 717 // the kernel actually running in memory. This never ends well; 718 // clear the user specified kernel binary from the Target. 719 720 m_module_sp.reset(); 721 722 ModuleList user_specified_kernel_list; 723 user_specified_kernel_list.Append(exe_module_sp); 724 process->GetTarget().GetImages().Remove(user_specified_kernel_list); 725 } 726 } 727 } 728 } 729 730 return true; 731 } 732 733 bool DynamicLoaderDarwinKernel::KextImageInfo::IsKernel() const { 734 return m_kernel_image == true; 735 } 736 737 void DynamicLoaderDarwinKernel::KextImageInfo::SetIsKernel(bool is_kernel) { 738 m_kernel_image = is_kernel; 739 } 740 741 bool DynamicLoaderDarwinKernel::KextImageInfo::LoadImageUsingMemoryModule( 742 Process *process) { 743 if (IsLoaded()) 744 return true; 745 746 Target &target = process->GetTarget(); 747 748 // If we don't have / can't create a memory module for this kext, don't try 749 // to load it - we won't have the correct segment load addresses. 750 if (!ReadMemoryModule(process)) { 751 Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 752 if (log) 753 log->Printf("Unable to read '%s' from memory at address 0x%" PRIx64 754 " to get the segment load addresses.", 755 m_name.c_str(), m_load_address); 756 return false; 757 } 758 759 bool uuid_is_valid = m_uuid.IsValid(); 760 761 if (IsKernel() && uuid_is_valid && m_memory_module_sp.get()) { 762 Stream *s = target.GetDebugger().GetOutputFile().get(); 763 if (s) { 764 s->Printf("Kernel UUID: %s\n", 765 m_memory_module_sp->GetUUID().GetAsString().c_str()); 766 s->Printf("Load Address: 0x%" PRIx64 "\n", m_load_address); 767 } 768 } 769 770 if (!m_module_sp) { 771 // See if the kext has already been loaded into the target, probably by the 772 // user doing target modules add. 773 const ModuleList &target_images = target.GetImages(); 774 m_module_sp = target_images.FindModule(m_uuid); 775 776 // Search for the kext on the local filesystem via the UUID 777 if (!m_module_sp && uuid_is_valid) { 778 ModuleSpec module_spec; 779 module_spec.GetUUID() = m_uuid; 780 module_spec.GetArchitecture() = target.GetArchitecture(); 781 782 // For the kernel, we really do need an on-disk file copy of the binary 783 // to do anything useful. This will force a clal to 784 if (IsKernel()) { 785 if (Symbols::DownloadObjectAndSymbolFile(module_spec, true)) { 786 if (FileSystem::Instance().Exists(module_spec.GetFileSpec())) { 787 m_module_sp.reset(new Module(module_spec.GetFileSpec(), 788 target.GetArchitecture())); 789 if (m_module_sp.get() && 790 m_module_sp->MatchesModuleSpec(module_spec)) { 791 ModuleList loaded_module_list; 792 loaded_module_list.Append(m_module_sp); 793 target.ModulesDidLoad(loaded_module_list); 794 } 795 } 796 } 797 } 798 799 // If the current platform is PlatformDarwinKernel, create a ModuleSpec 800 // with the filename set to be the bundle ID for this kext, e.g. 801 // "com.apple.filesystems.msdosfs", and ask the platform to find it. 802 PlatformSP platform_sp(target.GetPlatform()); 803 if (!m_module_sp && platform_sp) { 804 ConstString platform_name(platform_sp->GetPluginName()); 805 static ConstString g_platform_name( 806 PlatformDarwinKernel::GetPluginNameStatic()); 807 if (platform_name == g_platform_name) { 808 ModuleSpec kext_bundle_module_spec(module_spec); 809 FileSpec kext_filespec(m_name.c_str()); 810 kext_bundle_module_spec.GetFileSpec() = kext_filespec; 811 platform_sp->GetSharedModule( 812 kext_bundle_module_spec, process, m_module_sp, 813 &target.GetExecutableSearchPaths(), NULL, NULL); 814 } 815 } 816 817 // Ask the Target to find this file on the local system, if possible. 818 // This will search in the list of currently-loaded files, look in the 819 // standard search paths on the system, and on a Mac it will try calling 820 // the DebugSymbols framework with the UUID to find the binary via its 821 // search methods. 822 if (!m_module_sp) { 823 m_module_sp = target.GetSharedModule(module_spec); 824 } 825 826 if (IsKernel() && !m_module_sp) { 827 Stream *s = target.GetDebugger().GetOutputFile().get(); 828 if (s) { 829 s->Printf("WARNING: Unable to locate kernel binary on the debugger " 830 "system.\n"); 831 } 832 } 833 } 834 835 // If we managed to find a module, append it to the target's list of 836 // images. If we also have a memory module, require that they have matching 837 // UUIDs 838 if (m_module_sp) { 839 bool uuid_match_ok = true; 840 if (m_memory_module_sp) { 841 if (m_module_sp->GetUUID() != m_memory_module_sp->GetUUID()) { 842 uuid_match_ok = false; 843 } 844 } 845 if (uuid_match_ok) { 846 target.GetImages().AppendIfNeeded(m_module_sp); 847 if (IsKernel() && 848 target.GetExecutableModulePointer() != m_module_sp.get()) { 849 target.SetExecutableModule(m_module_sp, eLoadDependentsNo); 850 } 851 } 852 } 853 } 854 855 if (!m_module_sp && !IsKernel() && m_uuid.IsValid() && !m_name.empty()) { 856 Stream *s = target.GetDebugger().GetOutputFile().get(); 857 if (s) { 858 s->Printf("warning: Can't find binary/dSYM for %s (%s)\n", m_name.c_str(), 859 m_uuid.GetAsString().c_str()); 860 } 861 } 862 863 static ConstString g_section_name_LINKEDIT("__LINKEDIT"); 864 865 if (m_memory_module_sp && m_module_sp) { 866 if (m_module_sp->GetUUID() == m_memory_module_sp->GetUUID()) { 867 ObjectFile *ondisk_object_file = m_module_sp->GetObjectFile(); 868 ObjectFile *memory_object_file = m_memory_module_sp->GetObjectFile(); 869 870 if (memory_object_file && ondisk_object_file) { 871 // The memory_module for kexts may have an invalid __LINKEDIT seg; skip 872 // it. 873 const bool ignore_linkedit = !IsKernel(); 874 875 SectionList *ondisk_section_list = ondisk_object_file->GetSectionList(); 876 SectionList *memory_section_list = memory_object_file->GetSectionList(); 877 if (memory_section_list && ondisk_section_list) { 878 const uint32_t num_ondisk_sections = ondisk_section_list->GetSize(); 879 // There may be CTF sections in the memory image so we can't always 880 // just compare the number of sections (which are actually segments 881 // in mach-o parlance) 882 uint32_t sect_idx = 0; 883 884 // Use the memory_module's addresses for each section to set the file 885 // module's load address as appropriate. We don't want to use a 886 // single slide value for the entire kext - different segments may be 887 // slid different amounts by the kext loader. 888 889 uint32_t num_sections_loaded = 0; 890 for (sect_idx = 0; sect_idx < num_ondisk_sections; ++sect_idx) { 891 SectionSP ondisk_section_sp( 892 ondisk_section_list->GetSectionAtIndex(sect_idx)); 893 if (ondisk_section_sp) { 894 // Don't ever load __LINKEDIT as it may or may not be actually 895 // mapped into memory and there is no current way to tell. 896 // I filed rdar://problem/12851706 to track being able to tell 897 // if the __LINKEDIT is actually mapped, but until then, we need 898 // to not load the __LINKEDIT 899 if (ignore_linkedit && 900 ondisk_section_sp->GetName() == g_section_name_LINKEDIT) 901 continue; 902 903 const Section *memory_section = 904 memory_section_list 905 ->FindSectionByName(ondisk_section_sp->GetName()) 906 .get(); 907 if (memory_section) { 908 target.SetSectionLoadAddress(ondisk_section_sp, 909 memory_section->GetFileAddress()); 910 ++num_sections_loaded; 911 } 912 } 913 } 914 if (num_sections_loaded > 0) 915 m_load_process_stop_id = process->GetStopID(); 916 else 917 m_module_sp.reset(); // No sections were loaded 918 } else 919 m_module_sp.reset(); // One or both section lists 920 } else 921 m_module_sp.reset(); // One or both object files missing 922 } else 923 m_module_sp.reset(); // UUID mismatch 924 } 925 926 bool is_loaded = IsLoaded(); 927 928 if (is_loaded && m_module_sp && IsKernel()) { 929 Stream *s = target.GetDebugger().GetOutputFile().get(); 930 if (s) { 931 ObjectFile *kernel_object_file = m_module_sp->GetObjectFile(); 932 if (kernel_object_file) { 933 addr_t file_address = 934 kernel_object_file->GetHeaderAddress().GetFileAddress(); 935 if (m_load_address != LLDB_INVALID_ADDRESS && 936 file_address != LLDB_INVALID_ADDRESS) { 937 s->Printf("Kernel slid 0x%" PRIx64 " in memory.\n", 938 m_load_address - file_address); 939 } 940 } 941 { 942 s->Printf("Loaded kernel file %s\n", 943 m_module_sp->GetFileSpec().GetPath().c_str()); 944 } 945 s->Flush(); 946 } 947 } 948 return is_loaded; 949 } 950 951 uint32_t DynamicLoaderDarwinKernel::KextImageInfo::GetAddressByteSize() { 952 if (m_memory_module_sp) 953 return m_memory_module_sp->GetArchitecture().GetAddressByteSize(); 954 if (m_module_sp) 955 return m_module_sp->GetArchitecture().GetAddressByteSize(); 956 return 0; 957 } 958 959 lldb::ByteOrder DynamicLoaderDarwinKernel::KextImageInfo::GetByteOrder() { 960 if (m_memory_module_sp) 961 return m_memory_module_sp->GetArchitecture().GetByteOrder(); 962 if (m_module_sp) 963 return m_module_sp->GetArchitecture().GetByteOrder(); 964 return endian::InlHostByteOrder(); 965 } 966 967 lldb_private::ArchSpec 968 DynamicLoaderDarwinKernel::KextImageInfo::GetArchitecture() const { 969 if (m_memory_module_sp) 970 return m_memory_module_sp->GetArchitecture(); 971 if (m_module_sp) 972 return m_module_sp->GetArchitecture(); 973 return lldb_private::ArchSpec(); 974 } 975 976 //---------------------------------------------------------------------- 977 // Load the kernel module and initialize the "m_kernel" member. Return true 978 // _only_ if the kernel is loaded the first time through (subsequent calls to 979 // this function should return false after the kernel has been already loaded). 980 //---------------------------------------------------------------------- 981 void DynamicLoaderDarwinKernel::LoadKernelModuleIfNeeded() { 982 if (!m_kext_summary_header_ptr_addr.IsValid()) { 983 m_kernel.Clear(); 984 m_kernel.SetModule(m_process->GetTarget().GetExecutableModule()); 985 m_kernel.SetIsKernel(true); 986 987 ConstString kernel_name("mach_kernel"); 988 if (m_kernel.GetModule().get() && m_kernel.GetModule()->GetObjectFile() && 989 !m_kernel.GetModule() 990 ->GetObjectFile() 991 ->GetFileSpec() 992 .GetFilename() 993 .IsEmpty()) { 994 kernel_name = 995 m_kernel.GetModule()->GetObjectFile()->GetFileSpec().GetFilename(); 996 } 997 m_kernel.SetName(kernel_name.AsCString()); 998 999 if (m_kernel.GetLoadAddress() == LLDB_INVALID_ADDRESS) { 1000 m_kernel.SetLoadAddress(m_kernel_load_address); 1001 if (m_kernel.GetLoadAddress() == LLDB_INVALID_ADDRESS && 1002 m_kernel.GetModule()) { 1003 // We didn't get a hint from the process, so we will try the kernel at 1004 // the address that it exists at in the file if we have one 1005 ObjectFile *kernel_object_file = m_kernel.GetModule()->GetObjectFile(); 1006 if (kernel_object_file) { 1007 addr_t load_address = 1008 kernel_object_file->GetHeaderAddress().GetLoadAddress( 1009 &m_process->GetTarget()); 1010 addr_t file_address = 1011 kernel_object_file->GetHeaderAddress().GetFileAddress(); 1012 if (load_address != LLDB_INVALID_ADDRESS && load_address != 0) { 1013 m_kernel.SetLoadAddress(load_address); 1014 if (load_address != file_address) { 1015 // Don't accidentally relocate the kernel to the File address -- 1016 // the Load address has already been set to its actual in-memory 1017 // address. Mark it as IsLoaded. 1018 m_kernel.SetProcessStopId(m_process->GetStopID()); 1019 } 1020 } else { 1021 m_kernel.SetLoadAddress(file_address); 1022 } 1023 } 1024 } 1025 } 1026 1027 if (m_kernel.GetLoadAddress() != LLDB_INVALID_ADDRESS) { 1028 if (!m_kernel.LoadImageUsingMemoryModule(m_process)) { 1029 m_kernel.LoadImageAtFileAddress(m_process); 1030 } 1031 } 1032 1033 // The operating system plugin gets loaded and initialized in 1034 // LoadImageUsingMemoryModule when we discover the kernel dSYM. For a core 1035 // file in particular, that's the wrong place to do this, since we haven't 1036 // fixed up the section addresses yet. So let's redo it here. 1037 LoadOperatingSystemPlugin(false); 1038 1039 if (m_kernel.IsLoaded() && m_kernel.GetModule()) { 1040 static ConstString kext_summary_symbol("gLoadedKextSummaries"); 1041 const Symbol *symbol = 1042 m_kernel.GetModule()->FindFirstSymbolWithNameAndType( 1043 kext_summary_symbol, eSymbolTypeData); 1044 if (symbol) { 1045 m_kext_summary_header_ptr_addr = symbol->GetAddress(); 1046 // Update all image infos 1047 ReadAllKextSummaries(); 1048 } 1049 } else { 1050 m_kernel.Clear(); 1051 } 1052 } 1053 } 1054 1055 //---------------------------------------------------------------------- 1056 // Static callback function that gets called when our DYLD notification 1057 // breakpoint gets hit. We update all of our image infos and then let our super 1058 // class DynamicLoader class decide if we should stop or not (based on global 1059 // preference). 1060 //---------------------------------------------------------------------- 1061 bool DynamicLoaderDarwinKernel::BreakpointHitCallback( 1062 void *baton, StoppointCallbackContext *context, user_id_t break_id, 1063 user_id_t break_loc_id) { 1064 return static_cast<DynamicLoaderDarwinKernel *>(baton)->BreakpointHit( 1065 context, break_id, break_loc_id); 1066 } 1067 1068 bool DynamicLoaderDarwinKernel::BreakpointHit(StoppointCallbackContext *context, 1069 user_id_t break_id, 1070 user_id_t break_loc_id) { 1071 Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 1072 if (log) 1073 log->Printf("DynamicLoaderDarwinKernel::BreakpointHit (...)\n"); 1074 1075 ReadAllKextSummaries(); 1076 1077 if (log) 1078 PutToLog(log); 1079 1080 return GetStopWhenImagesChange(); 1081 } 1082 1083 bool DynamicLoaderDarwinKernel::ReadKextSummaryHeader() { 1084 std::lock_guard<std::recursive_mutex> guard(m_mutex); 1085 1086 // the all image infos is already valid for this process stop ID 1087 1088 if (m_kext_summary_header_ptr_addr.IsValid()) { 1089 const uint32_t addr_size = m_kernel.GetAddressByteSize(); 1090 const ByteOrder byte_order = m_kernel.GetByteOrder(); 1091 Status error; 1092 // Read enough bytes for a "OSKextLoadedKextSummaryHeader" structure which 1093 // is currently 4 uint32_t and a pointer. 1094 uint8_t buf[24]; 1095 DataExtractor data(buf, sizeof(buf), byte_order, addr_size); 1096 const size_t count = 4 * sizeof(uint32_t) + addr_size; 1097 const bool prefer_file_cache = false; 1098 if (m_process->GetTarget().ReadPointerFromMemory( 1099 m_kext_summary_header_ptr_addr, prefer_file_cache, error, 1100 m_kext_summary_header_addr)) { 1101 // We got a valid address for our kext summary header and make sure it 1102 // isn't NULL 1103 if (m_kext_summary_header_addr.IsValid() && 1104 m_kext_summary_header_addr.GetFileAddress() != 0) { 1105 const size_t bytes_read = m_process->GetTarget().ReadMemory( 1106 m_kext_summary_header_addr, prefer_file_cache, buf, count, error); 1107 if (bytes_read == count) { 1108 lldb::offset_t offset = 0; 1109 m_kext_summary_header.version = data.GetU32(&offset); 1110 if (m_kext_summary_header.version > 128) { 1111 Stream *s = 1112 m_process->GetTarget().GetDebugger().GetOutputFile().get(); 1113 s->Printf("WARNING: Unable to read kext summary header, got " 1114 "improbable version number %u\n", 1115 m_kext_summary_header.version); 1116 // If we get an improbably large version number, we're probably 1117 // getting bad memory. 1118 m_kext_summary_header_addr.Clear(); 1119 return false; 1120 } 1121 if (m_kext_summary_header.version >= 2) { 1122 m_kext_summary_header.entry_size = data.GetU32(&offset); 1123 if (m_kext_summary_header.entry_size > 4096) { 1124 // If we get an improbably large entry_size, we're probably 1125 // getting bad memory. 1126 Stream *s = 1127 m_process->GetTarget().GetDebugger().GetOutputFile().get(); 1128 s->Printf("WARNING: Unable to read kext summary header, got " 1129 "improbable entry_size %u\n", 1130 m_kext_summary_header.entry_size); 1131 m_kext_summary_header_addr.Clear(); 1132 return false; 1133 } 1134 } else { 1135 // Versions less than 2 didn't have an entry size, it was hard 1136 // coded 1137 m_kext_summary_header.entry_size = 1138 KERNEL_MODULE_ENTRY_SIZE_VERSION_1; 1139 } 1140 m_kext_summary_header.entry_count = data.GetU32(&offset); 1141 if (m_kext_summary_header.entry_count > 10000) { 1142 // If we get an improbably large number of kexts, we're probably 1143 // getting bad memory. 1144 Stream *s = 1145 m_process->GetTarget().GetDebugger().GetOutputFile().get(); 1146 s->Printf("WARNING: Unable to read kext summary header, got " 1147 "improbable number of kexts %u\n", 1148 m_kext_summary_header.entry_count); 1149 m_kext_summary_header_addr.Clear(); 1150 return false; 1151 } 1152 return true; 1153 } 1154 } 1155 } 1156 } 1157 m_kext_summary_header_addr.Clear(); 1158 return false; 1159 } 1160 1161 // We've either (a) just attached to a new kernel, or (b) the kexts-changed 1162 // breakpoint was hit and we need to figure out what kexts have been added or 1163 // removed. Read the kext summaries from the inferior kernel memory, compare 1164 // them against the m_known_kexts vector and update the m_known_kexts vector as 1165 // needed to keep in sync with the inferior. 1166 1167 bool DynamicLoaderDarwinKernel::ParseKextSummaries( 1168 const Address &kext_summary_addr, uint32_t count) { 1169 KextImageInfo::collection kext_summaries; 1170 Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_DYNAMIC_LOADER)); 1171 if (log) 1172 log->Printf("Kexts-changed breakpoint hit, there are %d kexts currently.\n", 1173 count); 1174 1175 std::lock_guard<std::recursive_mutex> guard(m_mutex); 1176 1177 if (!ReadKextSummaries(kext_summary_addr, count, kext_summaries)) 1178 return false; 1179 1180 // read the plugin.dynamic-loader.darwin-kernel.load-kexts setting -- if the 1181 // user requested no kext loading, don't print any messages about kexts & 1182 // don't try to read them. 1183 const bool load_kexts = GetGlobalProperties()->GetLoadKexts(); 1184 1185 // By default, all kexts we've loaded in the past are marked as "remove" and 1186 // all of the kexts we just found out about from ReadKextSummaries are marked 1187 // as "add". 1188 std::vector<bool> to_be_removed(m_known_kexts.size(), true); 1189 std::vector<bool> to_be_added(count, true); 1190 1191 int number_of_new_kexts_being_added = 0; 1192 int number_of_old_kexts_being_removed = m_known_kexts.size(); 1193 1194 const uint32_t new_kexts_size = kext_summaries.size(); 1195 const uint32_t old_kexts_size = m_known_kexts.size(); 1196 1197 // The m_known_kexts vector may have entries that have been Cleared, or are a 1198 // kernel. 1199 for (uint32_t old_kext = 0; old_kext < old_kexts_size; old_kext++) { 1200 bool ignore = false; 1201 KextImageInfo &image_info = m_known_kexts[old_kext]; 1202 if (image_info.IsKernel()) { 1203 ignore = true; 1204 } else if (image_info.GetLoadAddress() == LLDB_INVALID_ADDRESS && 1205 !image_info.GetModule()) { 1206 ignore = true; 1207 } 1208 1209 if (ignore) { 1210 number_of_old_kexts_being_removed--; 1211 to_be_removed[old_kext] = false; 1212 } 1213 } 1214 1215 // Scan over the list of kexts we just read from the kernel, note those that 1216 // need to be added and those already loaded. 1217 for (uint32_t new_kext = 0; new_kext < new_kexts_size; new_kext++) { 1218 bool add_this_one = true; 1219 for (uint32_t old_kext = 0; old_kext < old_kexts_size; old_kext++) { 1220 if (m_known_kexts[old_kext] == kext_summaries[new_kext]) { 1221 // We already have this kext, don't re-load it. 1222 to_be_added[new_kext] = false; 1223 // This kext is still present, do not remove it. 1224 to_be_removed[old_kext] = false; 1225 1226 number_of_old_kexts_being_removed--; 1227 add_this_one = false; 1228 break; 1229 } 1230 } 1231 // If this "kext" entry is actually an alias for the kernel -- the kext was 1232 // compiled into the kernel or something -- then we don't want to load the 1233 // kernel's text section at a different address. Ignore this kext entry. 1234 if (kext_summaries[new_kext].GetUUID().IsValid() 1235 && m_kernel.GetUUID().IsValid() 1236 && kext_summaries[new_kext].GetUUID() == m_kernel.GetUUID()) { 1237 to_be_added[new_kext] = false; 1238 break; 1239 } 1240 if (add_this_one) { 1241 number_of_new_kexts_being_added++; 1242 } 1243 } 1244 1245 if (number_of_new_kexts_being_added == 0 && 1246 number_of_old_kexts_being_removed == 0) 1247 return true; 1248 1249 Stream *s = m_process->GetTarget().GetDebugger().GetOutputFile().get(); 1250 if (s && load_kexts) { 1251 if (number_of_new_kexts_being_added > 0 && 1252 number_of_old_kexts_being_removed > 0) { 1253 s->Printf("Loading %d kext modules and unloading %d kext modules ", 1254 number_of_new_kexts_being_added, 1255 number_of_old_kexts_being_removed); 1256 } else if (number_of_new_kexts_being_added > 0) { 1257 s->Printf("Loading %d kext modules ", number_of_new_kexts_being_added); 1258 } else if (number_of_old_kexts_being_removed > 0) { 1259 s->Printf("Unloading %d kext modules ", 1260 number_of_old_kexts_being_removed); 1261 } 1262 } 1263 1264 if (log) { 1265 if (load_kexts) { 1266 log->Printf("DynamicLoaderDarwinKernel::ParseKextSummaries: %d kexts " 1267 "added, %d kexts removed", 1268 number_of_new_kexts_being_added, 1269 number_of_old_kexts_being_removed); 1270 } else { 1271 log->Printf( 1272 "DynamicLoaderDarwinKernel::ParseKextSummaries kext loading is " 1273 "disabled, else would have %d kexts added, %d kexts removed", 1274 number_of_new_kexts_being_added, number_of_old_kexts_being_removed); 1275 } 1276 } 1277 1278 if (number_of_new_kexts_being_added > 0) { 1279 ModuleList loaded_module_list; 1280 1281 const uint32_t num_of_new_kexts = kext_summaries.size(); 1282 for (uint32_t new_kext = 0; new_kext < num_of_new_kexts; new_kext++) { 1283 if (to_be_added[new_kext] == true) { 1284 KextImageInfo &image_info = kext_summaries[new_kext]; 1285 if (load_kexts) { 1286 if (!image_info.LoadImageUsingMemoryModule(m_process)) { 1287 image_info.LoadImageAtFileAddress(m_process); 1288 } 1289 } 1290 1291 m_known_kexts.push_back(image_info); 1292 1293 if (image_info.GetModule() && 1294 m_process->GetStopID() == image_info.GetProcessStopId()) 1295 loaded_module_list.AppendIfNeeded(image_info.GetModule()); 1296 1297 if (s && load_kexts) 1298 s->Printf("."); 1299 1300 if (log) 1301 kext_summaries[new_kext].PutToLog(log); 1302 } 1303 } 1304 m_process->GetTarget().ModulesDidLoad(loaded_module_list); 1305 } 1306 1307 if (number_of_old_kexts_being_removed > 0) { 1308 ModuleList loaded_module_list; 1309 const uint32_t num_of_old_kexts = m_known_kexts.size(); 1310 for (uint32_t old_kext = 0; old_kext < num_of_old_kexts; old_kext++) { 1311 ModuleList unloaded_module_list; 1312 if (to_be_removed[old_kext]) { 1313 KextImageInfo &image_info = m_known_kexts[old_kext]; 1314 // You can't unload the kernel. 1315 if (!image_info.IsKernel()) { 1316 if (image_info.GetModule()) { 1317 unloaded_module_list.AppendIfNeeded(image_info.GetModule()); 1318 } 1319 if (s) 1320 s->Printf("."); 1321 image_info.Clear(); 1322 // should pull it out of the KextImageInfos vector but that would 1323 // mutate the list and invalidate the to_be_removed bool vector; 1324 // leaving it in place once Cleared() is relatively harmless. 1325 } 1326 } 1327 m_process->GetTarget().ModulesDidUnload(unloaded_module_list, false); 1328 } 1329 } 1330 1331 if (s && load_kexts) { 1332 s->Printf(" done.\n"); 1333 s->Flush(); 1334 } 1335 1336 return true; 1337 } 1338 1339 uint32_t DynamicLoaderDarwinKernel::ReadKextSummaries( 1340 const Address &kext_summary_addr, uint32_t image_infos_count, 1341 KextImageInfo::collection &image_infos) { 1342 const ByteOrder endian = m_kernel.GetByteOrder(); 1343 const uint32_t addr_size = m_kernel.GetAddressByteSize(); 1344 1345 image_infos.resize(image_infos_count); 1346 const size_t count = image_infos.size() * m_kext_summary_header.entry_size; 1347 DataBufferHeap data(count, 0); 1348 Status error; 1349 1350 const bool prefer_file_cache = false; 1351 const size_t bytes_read = m_process->GetTarget().ReadMemory( 1352 kext_summary_addr, prefer_file_cache, data.GetBytes(), data.GetByteSize(), 1353 error); 1354 if (bytes_read == count) { 1355 1356 DataExtractor extractor(data.GetBytes(), data.GetByteSize(), endian, 1357 addr_size); 1358 uint32_t i = 0; 1359 for (uint32_t kext_summary_offset = 0; 1360 i < image_infos.size() && 1361 extractor.ValidOffsetForDataOfSize(kext_summary_offset, 1362 m_kext_summary_header.entry_size); 1363 ++i, kext_summary_offset += m_kext_summary_header.entry_size) { 1364 lldb::offset_t offset = kext_summary_offset; 1365 const void *name_data = 1366 extractor.GetData(&offset, KERNEL_MODULE_MAX_NAME); 1367 if (name_data == NULL) 1368 break; 1369 image_infos[i].SetName((const char *)name_data); 1370 UUID uuid = UUID::fromOptionalData(extractor.GetData(&offset, 16), 16); 1371 image_infos[i].SetUUID(uuid); 1372 image_infos[i].SetLoadAddress(extractor.GetU64(&offset)); 1373 image_infos[i].SetSize(extractor.GetU64(&offset)); 1374 } 1375 if (i < image_infos.size()) 1376 image_infos.resize(i); 1377 } else { 1378 image_infos.clear(); 1379 } 1380 return image_infos.size(); 1381 } 1382 1383 bool DynamicLoaderDarwinKernel::ReadAllKextSummaries() { 1384 std::lock_guard<std::recursive_mutex> guard(m_mutex); 1385 1386 if (ReadKextSummaryHeader()) { 1387 if (m_kext_summary_header.entry_count > 0 && 1388 m_kext_summary_header_addr.IsValid()) { 1389 Address summary_addr(m_kext_summary_header_addr); 1390 summary_addr.Slide(m_kext_summary_header.GetSize()); 1391 if (!ParseKextSummaries(summary_addr, 1392 m_kext_summary_header.entry_count)) { 1393 m_known_kexts.clear(); 1394 } 1395 return true; 1396 } 1397 } 1398 return false; 1399 } 1400 1401 //---------------------------------------------------------------------- 1402 // Dump an image info structure to the file handle provided. 1403 //---------------------------------------------------------------------- 1404 void DynamicLoaderDarwinKernel::KextImageInfo::PutToLog(Log *log) const { 1405 if (m_load_address == LLDB_INVALID_ADDRESS) { 1406 LLDB_LOG(log, "uuid={0} name=\"{1}\" (UNLOADED)", m_uuid.GetAsString(), 1407 m_name); 1408 } else { 1409 LLDB_LOG(log, "addr={0:x+16} size={1:x+16} uuid={2} name=\"{3}\"", 1410 m_load_address, m_size, m_uuid.GetAsString(), m_name); 1411 } 1412 } 1413 1414 //---------------------------------------------------------------------- 1415 // Dump the _dyld_all_image_infos members and all current image infos that we 1416 // have parsed to the file handle provided. 1417 //---------------------------------------------------------------------- 1418 void DynamicLoaderDarwinKernel::PutToLog(Log *log) const { 1419 if (log == NULL) 1420 return; 1421 1422 std::lock_guard<std::recursive_mutex> guard(m_mutex); 1423 log->Printf("gLoadedKextSummaries = 0x%16.16" PRIx64 1424 " { version=%u, entry_size=%u, entry_count=%u }", 1425 m_kext_summary_header_addr.GetFileAddress(), 1426 m_kext_summary_header.version, m_kext_summary_header.entry_size, 1427 m_kext_summary_header.entry_count); 1428 1429 size_t i; 1430 const size_t count = m_known_kexts.size(); 1431 if (count > 0) { 1432 log->PutCString("Loaded:"); 1433 for (i = 0; i < count; i++) 1434 m_known_kexts[i].PutToLog(log); 1435 } 1436 } 1437 1438 void DynamicLoaderDarwinKernel::PrivateInitialize(Process *process) { 1439 DEBUG_PRINTF("DynamicLoaderDarwinKernel::%s() process state = %s\n", 1440 __FUNCTION__, StateAsCString(m_process->GetState())); 1441 Clear(true); 1442 m_process = process; 1443 } 1444 1445 void DynamicLoaderDarwinKernel::SetNotificationBreakpointIfNeeded() { 1446 if (m_break_id == LLDB_INVALID_BREAK_ID && m_kernel.GetModule()) { 1447 DEBUG_PRINTF("DynamicLoaderDarwinKernel::%s() process state = %s\n", 1448 __FUNCTION__, StateAsCString(m_process->GetState())); 1449 1450 const bool internal_bp = true; 1451 const bool hardware = false; 1452 const LazyBool skip_prologue = eLazyBoolNo; 1453 FileSpecList module_spec_list; 1454 module_spec_list.Append(m_kernel.GetModule()->GetFileSpec()); 1455 Breakpoint *bp = 1456 m_process->GetTarget() 1457 .CreateBreakpoint(&module_spec_list, NULL, 1458 "OSKextLoadedKextSummariesUpdated", 1459 eFunctionNameTypeFull, eLanguageTypeUnknown, 0, 1460 skip_prologue, internal_bp, hardware) 1461 .get(); 1462 1463 bp->SetCallback(DynamicLoaderDarwinKernel::BreakpointHitCallback, this, 1464 true); 1465 m_break_id = bp->GetID(); 1466 } 1467 } 1468 1469 //---------------------------------------------------------------------- 1470 // Member function that gets called when the process state changes. 1471 //---------------------------------------------------------------------- 1472 void DynamicLoaderDarwinKernel::PrivateProcessStateChanged(Process *process, 1473 StateType state) { 1474 DEBUG_PRINTF("DynamicLoaderDarwinKernel::%s(%s)\n", __FUNCTION__, 1475 StateAsCString(state)); 1476 switch (state) { 1477 case eStateConnected: 1478 case eStateAttaching: 1479 case eStateLaunching: 1480 case eStateInvalid: 1481 case eStateUnloaded: 1482 case eStateExited: 1483 case eStateDetached: 1484 Clear(false); 1485 break; 1486 1487 case eStateStopped: 1488 UpdateIfNeeded(); 1489 break; 1490 1491 case eStateRunning: 1492 case eStateStepping: 1493 case eStateCrashed: 1494 case eStateSuspended: 1495 break; 1496 } 1497 } 1498 1499 ThreadPlanSP 1500 DynamicLoaderDarwinKernel::GetStepThroughTrampolinePlan(Thread &thread, 1501 bool stop_others) { 1502 ThreadPlanSP thread_plan_sp; 1503 Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1504 if (log) 1505 log->Printf("Could not find symbol for step through."); 1506 return thread_plan_sp; 1507 } 1508 1509 Status DynamicLoaderDarwinKernel::CanLoadImage() { 1510 Status error; 1511 error.SetErrorString( 1512 "always unsafe to load or unload shared libraries in the darwin kernel"); 1513 return error; 1514 } 1515 1516 void DynamicLoaderDarwinKernel::Initialize() { 1517 PluginManager::RegisterPlugin(GetPluginNameStatic(), 1518 GetPluginDescriptionStatic(), CreateInstance, 1519 DebuggerInitialize); 1520 } 1521 1522 void DynamicLoaderDarwinKernel::Terminate() { 1523 PluginManager::UnregisterPlugin(CreateInstance); 1524 } 1525 1526 void DynamicLoaderDarwinKernel::DebuggerInitialize( 1527 lldb_private::Debugger &debugger) { 1528 if (!PluginManager::GetSettingForDynamicLoaderPlugin( 1529 debugger, DynamicLoaderDarwinKernelProperties::GetSettingName())) { 1530 const bool is_global_setting = true; 1531 PluginManager::CreateSettingForDynamicLoaderPlugin( 1532 debugger, GetGlobalProperties()->GetValueProperties(), 1533 ConstString("Properties for the DynamicLoaderDarwinKernel plug-in."), 1534 is_global_setting); 1535 } 1536 } 1537 1538 lldb_private::ConstString DynamicLoaderDarwinKernel::GetPluginNameStatic() { 1539 static ConstString g_name("darwin-kernel"); 1540 return g_name; 1541 } 1542 1543 const char *DynamicLoaderDarwinKernel::GetPluginDescriptionStatic() { 1544 return "Dynamic loader plug-in that watches for shared library loads/unloads " 1545 "in the MacOSX kernel."; 1546 } 1547 1548 //------------------------------------------------------------------ 1549 // PluginInterface protocol 1550 //------------------------------------------------------------------ 1551 lldb_private::ConstString DynamicLoaderDarwinKernel::GetPluginName() { 1552 return GetPluginNameStatic(); 1553 } 1554 1555 uint32_t DynamicLoaderDarwinKernel::GetPluginVersion() { return 1; } 1556 1557 lldb::ByteOrder 1558 DynamicLoaderDarwinKernel::GetByteOrderFromMagic(uint32_t magic) { 1559 switch (magic) { 1560 case llvm::MachO::MH_MAGIC: 1561 case llvm::MachO::MH_MAGIC_64: 1562 return endian::InlHostByteOrder(); 1563 1564 case llvm::MachO::MH_CIGAM: 1565 case llvm::MachO::MH_CIGAM_64: 1566 if (endian::InlHostByteOrder() == lldb::eByteOrderBig) 1567 return lldb::eByteOrderLittle; 1568 else 1569 return lldb::eByteOrderBig; 1570 1571 default: 1572 break; 1573 } 1574 return lldb::eByteOrderInvalid; 1575 } 1576