1 //===-- ProcessWindows.cpp --------------------------------------*- C++ -*-===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "ProcessWindows.h" 11 12 // Windows includes 13 #include "lldb/Host/windows/windows.h" 14 #include <psapi.h> 15 16 // Other libraries and framework includes 17 #include "lldb/Core/Module.h" 18 #include "lldb/Core/ModuleSpec.h" 19 #include "lldb/Core/PluginManager.h" 20 #include "lldb/Core/Section.h" 21 #include "lldb/Core/State.h" 22 #include "lldb/Host/HostNativeProcessBase.h" 23 #include "lldb/Host/HostProcess.h" 24 #include "lldb/Host/windows/HostThreadWindows.h" 25 #include "lldb/Host/windows/windows.h" 26 #include "lldb/Symbol/ObjectFile.h" 27 #include "lldb/Target/DynamicLoader.h" 28 #include "lldb/Target/MemoryRegionInfo.h" 29 #include "lldb/Target/StopInfo.h" 30 #include "lldb/Target/Target.h" 31 32 #include "llvm/Support/ConvertUTF.h" 33 #include "llvm/Support/Format.h" 34 #include "llvm/Support/Threading.h" 35 #include "llvm/Support/raw_ostream.h" 36 37 #include "DebuggerThread.h" 38 #include "ExceptionRecord.h" 39 #include "ForwardDecl.h" 40 #include "LocalDebugDelegate.h" 41 #include "ProcessWindowsLog.h" 42 #include "TargetThreadWindows.h" 43 44 using namespace lldb; 45 using namespace lldb_private; 46 47 namespace { 48 std::string GetProcessExecutableName(HANDLE process_handle) { 49 std::vector<wchar_t> file_name; 50 DWORD file_name_size = MAX_PATH; // first guess, not an absolute limit 51 DWORD copied = 0; 52 do { 53 file_name_size *= 2; 54 file_name.resize(file_name_size); 55 copied = ::GetModuleFileNameExW(process_handle, NULL, file_name.data(), 56 file_name_size); 57 } while (copied >= file_name_size); 58 file_name.resize(copied); 59 std::string result; 60 llvm::convertWideToUTF8(file_name.data(), result); 61 return result; 62 } 63 64 std::string GetProcessExecutableName(DWORD pid) { 65 std::string file_name; 66 HANDLE process_handle = 67 ::OpenProcess(PROCESS_QUERY_INFORMATION | PROCESS_VM_READ, FALSE, pid); 68 if (process_handle != NULL) { 69 file_name = GetProcessExecutableName(process_handle); 70 ::CloseHandle(process_handle); 71 } 72 return file_name; 73 } 74 75 } // anonymous namespace 76 77 namespace lldb_private { 78 79 // We store a pointer to this class in the ProcessWindows, so that we don't 80 // expose Windows-specific types and implementation details from a public header 81 // file. 82 class ProcessWindowsData { 83 public: 84 ProcessWindowsData(bool stop_at_entry) : m_stop_at_entry(stop_at_entry) { 85 m_initial_stop_event = ::CreateEvent(nullptr, TRUE, FALSE, nullptr); 86 } 87 88 ~ProcessWindowsData() { ::CloseHandle(m_initial_stop_event); } 89 90 Error m_launch_error; 91 DebuggerThreadSP m_debugger; 92 StopInfoSP m_pending_stop_info; 93 HANDLE m_initial_stop_event = nullptr; 94 bool m_initial_stop_received = false; 95 bool m_stop_at_entry; 96 std::map<lldb::tid_t, HostThread> m_new_threads; 97 std::set<lldb::tid_t> m_exited_threads; 98 }; 99 100 ProcessSP ProcessWindows::CreateInstance(lldb::TargetSP target_sp, 101 lldb::ListenerSP listener_sp, 102 const FileSpec *) { 103 return ProcessSP(new ProcessWindows(target_sp, listener_sp)); 104 } 105 106 void ProcessWindows::Initialize() { 107 static llvm::once_flag g_once_flag; 108 109 llvm::call_once(g_once_flag, []() { 110 PluginManager::RegisterPlugin(GetPluginNameStatic(), 111 GetPluginDescriptionStatic(), CreateInstance); 112 }); 113 } 114 115 void ProcessWindows::Terminate() {} 116 117 lldb_private::ConstString ProcessWindows::GetPluginNameStatic() { 118 static ConstString g_name("windows"); 119 return g_name; 120 } 121 122 const char *ProcessWindows::GetPluginDescriptionStatic() { 123 return "Process plugin for Windows"; 124 } 125 126 //------------------------------------------------------------------------------ 127 // Constructors and destructors. 128 129 ProcessWindows::ProcessWindows(lldb::TargetSP target_sp, 130 lldb::ListenerSP listener_sp) 131 : lldb_private::Process(target_sp, listener_sp) {} 132 133 ProcessWindows::~ProcessWindows() {} 134 135 size_t ProcessWindows::GetSTDOUT(char *buf, size_t buf_size, Error &error) { 136 error.SetErrorString("GetSTDOUT unsupported on Windows"); 137 return 0; 138 } 139 140 size_t ProcessWindows::GetSTDERR(char *buf, size_t buf_size, Error &error) { 141 error.SetErrorString("GetSTDERR unsupported on Windows"); 142 return 0; 143 } 144 145 size_t ProcessWindows::PutSTDIN(const char *buf, size_t buf_size, 146 Error &error) { 147 error.SetErrorString("PutSTDIN unsupported on Windows"); 148 return 0; 149 } 150 151 //------------------------------------------------------------------------------ 152 // ProcessInterface protocol. 153 154 lldb_private::ConstString ProcessWindows::GetPluginName() { 155 return GetPluginNameStatic(); 156 } 157 158 uint32_t ProcessWindows::GetPluginVersion() { return 1; } 159 160 Error ProcessWindows::EnableBreakpointSite(BreakpointSite *bp_site) { 161 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_BREAKPOINTS); 162 LLDB_LOG(log, "bp_site = {0:x}, id={1}, addr={2:x}", bp_site, 163 bp_site->GetID(), bp_site->GetLoadAddress()); 164 165 Error error = EnableSoftwareBreakpoint(bp_site); 166 if (!error.Success()) 167 LLDB_LOG(log, "error: {0}", error); 168 return error; 169 } 170 171 Error ProcessWindows::DisableBreakpointSite(BreakpointSite *bp_site) { 172 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_BREAKPOINTS); 173 LLDB_LOG(log, "bp_site = {0:x}, id={1}, addr={2:x}", bp_site, 174 bp_site->GetID(), bp_site->GetLoadAddress()); 175 176 Error error = DisableSoftwareBreakpoint(bp_site); 177 178 if (!error.Success()) 179 LLDB_LOG(log, "error: {0}", error); 180 return error; 181 } 182 183 Error ProcessWindows::DoDetach(bool keep_stopped) { 184 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 185 DebuggerThreadSP debugger_thread; 186 StateType private_state; 187 { 188 // Acquire the lock only long enough to get the DebuggerThread. 189 // StopDebugging() will trigger a call back into ProcessWindows which 190 // will also acquire the lock. Thus we have to release the lock before 191 // calling StopDebugging(). 192 llvm::sys::ScopedLock lock(m_mutex); 193 194 private_state = GetPrivateState(); 195 196 if (!m_session_data) { 197 LLDB_LOG(log, "state = {0}, but there is no active session.", 198 private_state); 199 return Error(); 200 } 201 202 debugger_thread = m_session_data->m_debugger; 203 } 204 205 Error error; 206 if (private_state != eStateExited && private_state != eStateDetached) { 207 LLDB_LOG(log, "detaching from process {0} while state = {1}.", 208 debugger_thread->GetProcess().GetNativeProcess().GetSystemHandle(), 209 private_state); 210 error = debugger_thread->StopDebugging(false); 211 if (error.Success()) { 212 SetPrivateState(eStateDetached); 213 } 214 215 // By the time StopDebugging returns, there is no more debugger thread, so 216 // we can be assured that no other thread will race for the session data. 217 m_session_data.reset(); 218 } else { 219 LLDB_LOG( 220 log, 221 "error: process {0} in state = {1}, but cannot destroy in this state.", 222 debugger_thread->GetProcess().GetNativeProcess().GetSystemHandle(), 223 private_state); 224 } 225 226 return error; 227 } 228 229 Error ProcessWindows::DoLaunch(Module *exe_module, 230 ProcessLaunchInfo &launch_info) { 231 // Even though m_session_data is accessed here, it is before a debugger thread 232 // has been 233 // kicked off. So there's no race conditions, and it shouldn't be necessary 234 // to acquire 235 // the mutex. 236 237 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 238 Error result; 239 if (!launch_info.GetFlags().Test(eLaunchFlagDebug)) { 240 StreamString stream; 241 stream.Printf("ProcessWindows unable to launch '%s'. ProcessWindows can " 242 "only be used for debug launches.", 243 launch_info.GetExecutableFile().GetPath().c_str()); 244 std::string message = stream.GetString(); 245 result.SetErrorString(message.c_str()); 246 247 LLDB_LOG(log, "error: {0}", message); 248 return result; 249 } 250 251 bool stop_at_entry = launch_info.GetFlags().Test(eLaunchFlagStopAtEntry); 252 m_session_data.reset(new ProcessWindowsData(stop_at_entry)); 253 254 SetPrivateState(eStateLaunching); 255 DebugDelegateSP delegate(new LocalDebugDelegate(shared_from_this())); 256 m_session_data->m_debugger.reset(new DebuggerThread(delegate)); 257 DebuggerThreadSP debugger = m_session_data->m_debugger; 258 259 // Kick off the DebugLaunch asynchronously and wait for it to complete. 260 result = debugger->DebugLaunch(launch_info); 261 if (result.Fail()) { 262 LLDB_LOG(log, "failed launching '{0}'. {1}", 263 launch_info.GetExecutableFile().GetPath(), result); 264 return result; 265 } 266 267 HostProcess process; 268 Error error = WaitForDebuggerConnection(debugger, process); 269 if (error.Fail()) { 270 LLDB_LOG(log, "failed launching '{0}'. {1}", 271 launch_info.GetExecutableFile().GetPath(), error); 272 return error; 273 } 274 275 LLDB_LOG(log, "successfully launched '{0}'", 276 launch_info.GetExecutableFile().GetPath()); 277 278 // We've hit the initial stop. If eLaunchFlagsStopAtEntry was specified, the 279 // private state 280 // should already be set to eStateStopped as a result of hitting the initial 281 // breakpoint. If 282 // it was not set, the breakpoint should have already been resumed from and 283 // the private state 284 // should already be eStateRunning. 285 launch_info.SetProcessID(process.GetProcessId()); 286 SetID(process.GetProcessId()); 287 288 return result; 289 } 290 291 Error ProcessWindows::DoAttachToProcessWithID( 292 lldb::pid_t pid, const ProcessAttachInfo &attach_info) { 293 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 294 m_session_data.reset( 295 new ProcessWindowsData(!attach_info.GetContinueOnceAttached())); 296 297 DebugDelegateSP delegate(new LocalDebugDelegate(shared_from_this())); 298 DebuggerThreadSP debugger(new DebuggerThread(delegate)); 299 300 m_session_data->m_debugger = debugger; 301 302 DWORD process_id = static_cast<DWORD>(pid); 303 Error error = debugger->DebugAttach(process_id, attach_info); 304 if (error.Fail()) { 305 LLDB_LOG( 306 log, 307 "encountered an error occurred initiating the asynchronous attach. {0}", 308 error); 309 return error; 310 } 311 312 HostProcess process; 313 error = WaitForDebuggerConnection(debugger, process); 314 if (error.Fail()) { 315 LLDB_LOG(log, 316 "encountered an error waiting for the debugger to connect. {0}", 317 error); 318 return error; 319 } 320 321 LLDB_LOG(log, "successfully attached to process with pid={0}", process_id); 322 323 // We've hit the initial stop. If eLaunchFlagsStopAtEntry was specified, the 324 // private state 325 // should already be set to eStateStopped as a result of hitting the initial 326 // breakpoint. If 327 // it was not set, the breakpoint should have already been resumed from and 328 // the private state 329 // should already be eStateRunning. 330 SetID(process.GetProcessId()); 331 return error; 332 } 333 334 Error ProcessWindows::DoResume() { 335 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 336 llvm::sys::ScopedLock lock(m_mutex); 337 Error error; 338 339 StateType private_state = GetPrivateState(); 340 if (private_state == eStateStopped || private_state == eStateCrashed) { 341 LLDB_LOG(log, "process {0} is in state {1}. Resuming...", 342 m_session_data->m_debugger->GetProcess().GetProcessId(), 343 GetPrivateState()); 344 345 ExceptionRecordSP active_exception = 346 m_session_data->m_debugger->GetActiveException().lock(); 347 if (active_exception) { 348 // Resume the process and continue processing debug events. Mask 349 // the exception so that from the process's view, there is no 350 // indication that anything happened. 351 m_session_data->m_debugger->ContinueAsyncException( 352 ExceptionResult::MaskException); 353 } 354 355 LLDB_LOG(log, "resuming {0} threads.", m_thread_list.GetSize()); 356 357 for (uint32_t i = 0; i < m_thread_list.GetSize(); ++i) { 358 auto thread = std::static_pointer_cast<TargetThreadWindows>( 359 m_thread_list.GetThreadAtIndex(i)); 360 thread->DoResume(); 361 } 362 363 SetPrivateState(eStateRunning); 364 } else { 365 LLDB_LOG(log, "error: process %I64u is in state %u. Returning...", 366 m_session_data->m_debugger->GetProcess().GetProcessId(), 367 GetPrivateState()); 368 } 369 return error; 370 } 371 372 Error ProcessWindows::DoDestroy() { 373 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 374 DebuggerThreadSP debugger_thread; 375 StateType private_state; 376 { 377 // Acquire this lock inside an inner scope, only long enough to get the 378 // DebuggerThread. 379 // StopDebugging() will trigger a call back into ProcessWindows which will 380 // acquire the lock 381 // again, so we need to not deadlock. 382 llvm::sys::ScopedLock lock(m_mutex); 383 384 private_state = GetPrivateState(); 385 386 if (!m_session_data) { 387 LLDB_LOG(log, "warning: state = {0}, but there is no active session.", 388 private_state); 389 return Error(); 390 } 391 392 debugger_thread = m_session_data->m_debugger; 393 } 394 395 Error error; 396 if (private_state != eStateExited && private_state != eStateDetached) { 397 LLDB_LOG(log, "Shutting down process {0} while state = {1}.", 398 debugger_thread->GetProcess().GetNativeProcess().GetSystemHandle(), 399 private_state); 400 error = debugger_thread->StopDebugging(true); 401 402 // By the time StopDebugging returns, there is no more debugger thread, so 403 // we can be assured that no other thread will race for the session data. 404 m_session_data.reset(); 405 } else { 406 LLDB_LOG(log, "cannot destroy process {0} while state = {1}", 407 debugger_thread->GetProcess().GetNativeProcess().GetSystemHandle(), 408 private_state); 409 } 410 411 return error; 412 } 413 414 Error ProcessWindows::DoHalt(bool &caused_stop) { 415 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 416 Error error; 417 StateType state = GetPrivateState(); 418 if (state == eStateStopped) 419 caused_stop = false; 420 else { 421 llvm::sys::ScopedLock lock(m_mutex); 422 caused_stop = ::DebugBreakProcess(m_session_data->m_debugger->GetProcess() 423 .GetNativeProcess() 424 .GetSystemHandle()); 425 if (!caused_stop) { 426 error.SetError(::GetLastError(), eErrorTypeWin32); 427 LLDB_LOG(log, "DebugBreakProcess failed with error {0}", error); 428 } 429 } 430 return error; 431 } 432 433 void ProcessWindows::DidLaunch() { 434 ArchSpec arch_spec; 435 DidAttach(arch_spec); 436 } 437 438 void ProcessWindows::DidAttach(ArchSpec &arch_spec) { 439 llvm::sys::ScopedLock lock(m_mutex); 440 441 // The initial stop won't broadcast the state change event, so account for 442 // that here. 443 if (m_session_data && GetPrivateState() == eStateStopped && 444 m_session_data->m_stop_at_entry) 445 RefreshStateAfterStop(); 446 } 447 448 void ProcessWindows::RefreshStateAfterStop() { 449 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_EXCEPTION); 450 llvm::sys::ScopedLock lock(m_mutex); 451 452 if (!m_session_data) { 453 LLDB_LOG(log, "no active session. Returning..."); 454 return; 455 } 456 457 m_thread_list.RefreshStateAfterStop(); 458 459 std::weak_ptr<ExceptionRecord> exception_record = 460 m_session_data->m_debugger->GetActiveException(); 461 ExceptionRecordSP active_exception = exception_record.lock(); 462 if (!active_exception) { 463 LLDB_LOG(log, "there is no active exception in process {0}. Why is the " 464 "process stopped?", 465 m_session_data->m_debugger->GetProcess().GetProcessId()); 466 return; 467 } 468 469 StopInfoSP stop_info; 470 m_thread_list.SetSelectedThreadByID(active_exception->GetThreadID()); 471 ThreadSP stop_thread = m_thread_list.GetSelectedThread(); 472 if (!stop_thread) 473 return; 474 475 switch (active_exception->GetExceptionCode()) { 476 case EXCEPTION_SINGLE_STEP: { 477 RegisterContextSP register_context = stop_thread->GetRegisterContext(); 478 const uint64_t pc = register_context->GetPC(); 479 BreakpointSiteSP site(GetBreakpointSiteList().FindByAddress(pc)); 480 if (site && site->ValidForThisThread(stop_thread.get())) { 481 LLDB_LOG(log, "Single-stepped onto a breakpoint in process {0} at " 482 "address {1:x} with breakpoint site {2}", 483 m_session_data->m_debugger->GetProcess().GetProcessId(), pc, 484 site->GetID()); 485 stop_info = StopInfo::CreateStopReasonWithBreakpointSiteID(*stop_thread, 486 site->GetID()); 487 stop_thread->SetStopInfo(stop_info); 488 } else { 489 LLDB_LOG(log, "single stepping thread {0}", stop_thread->GetID()); 490 stop_info = StopInfo::CreateStopReasonToTrace(*stop_thread); 491 stop_thread->SetStopInfo(stop_info); 492 } 493 return; 494 } 495 496 case EXCEPTION_BREAKPOINT: { 497 RegisterContextSP register_context = stop_thread->GetRegisterContext(); 498 499 // The current EIP is AFTER the BP opcode, which is one byte. 500 uint64_t pc = register_context->GetPC() - 1; 501 502 BreakpointSiteSP site(GetBreakpointSiteList().FindByAddress(pc)); 503 if (site) { 504 LLDB_LOG(log, "detected breakpoint in process {0} at address {1:x} with " 505 "breakpoint site {2}", 506 m_session_data->m_debugger->GetProcess().GetProcessId(), pc, 507 site->GetID()); 508 509 if (site->ValidForThisThread(stop_thread.get())) { 510 LLDB_LOG(log, "Breakpoint site {0} is valid for this thread ({1:x}), " 511 "creating stop info.", 512 site->GetID(), stop_thread->GetID()); 513 514 stop_info = StopInfo::CreateStopReasonWithBreakpointSiteID( 515 *stop_thread, site->GetID()); 516 register_context->SetPC(pc); 517 } else { 518 LLDB_LOG(log, "Breakpoint site {0} is not valid for this thread, " 519 "creating empty stop info.", 520 site->GetID()); 521 } 522 stop_thread->SetStopInfo(stop_info); 523 return; 524 } else { 525 // The thread hit a hard-coded breakpoint like an `int 3` or 526 // `__debugbreak()`. 527 LLDB_LOG(log, 528 "No breakpoint site matches for this thread. __debugbreak()? " 529 "Creating stop info with the exception."); 530 // FALLTHROUGH: We'll treat this as a generic exception record in the 531 // default case. 532 } 533 } 534 535 default: { 536 std::string desc; 537 llvm::raw_string_ostream desc_stream(desc); 538 desc_stream << "Exception " 539 << llvm::format_hex(active_exception->GetExceptionCode(), 8) 540 << " encountered at address " 541 << llvm::format_hex(active_exception->GetExceptionAddress(), 8); 542 stop_info = StopInfo::CreateStopReasonWithException( 543 *stop_thread, desc_stream.str().c_str()); 544 stop_thread->SetStopInfo(stop_info); 545 LLDB_LOG(log, "{0}", desc_stream.str()); 546 return; 547 } 548 } 549 } 550 551 bool ProcessWindows::CanDebug(lldb::TargetSP target_sp, 552 bool plugin_specified_by_name) { 553 if (plugin_specified_by_name) 554 return true; 555 556 // For now we are just making sure the file exists for a given module 557 ModuleSP exe_module_sp(target_sp->GetExecutableModule()); 558 if (exe_module_sp.get()) 559 return exe_module_sp->GetFileSpec().Exists(); 560 // However, if there is no executable module, we return true since we might be 561 // preparing to attach. 562 return true; 563 } 564 565 bool ProcessWindows::UpdateThreadList(ThreadList &old_thread_list, 566 ThreadList &new_thread_list) { 567 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_THREAD); 568 // Add all the threads that were previously running and for which we did not 569 // detect a thread exited event. 570 int new_size = 0; 571 int continued_threads = 0; 572 int exited_threads = 0; 573 int new_threads = 0; 574 575 for (ThreadSP old_thread : old_thread_list.Threads()) { 576 lldb::tid_t old_thread_id = old_thread->GetID(); 577 auto exited_thread_iter = 578 m_session_data->m_exited_threads.find(old_thread_id); 579 if (exited_thread_iter == m_session_data->m_exited_threads.end()) { 580 new_thread_list.AddThread(old_thread); 581 ++new_size; 582 ++continued_threads; 583 LLDB_LOGV(log, "Thread {0} was running and is still running.", 584 old_thread_id); 585 } else { 586 LLDB_LOGV(log, "Thread {0} was running and has exited.", old_thread_id); 587 ++exited_threads; 588 } 589 } 590 591 // Also add all the threads that are new since the last time we broke into the 592 // debugger. 593 for (const auto &thread_info : m_session_data->m_new_threads) { 594 ThreadSP thread(new TargetThreadWindows(*this, thread_info.second)); 595 thread->SetID(thread_info.first); 596 new_thread_list.AddThread(thread); 597 ++new_size; 598 ++new_threads; 599 LLDB_LOGV(log, "Thread {0} is new since last update.", thread_info.first); 600 } 601 602 LLDB_LOG(log, "{0} new threads, {1} old threads, {2} exited threads.", 603 new_threads, continued_threads, exited_threads); 604 605 m_session_data->m_new_threads.clear(); 606 m_session_data->m_exited_threads.clear(); 607 608 return new_size > 0; 609 } 610 611 bool ProcessWindows::IsAlive() { 612 StateType state = GetPrivateState(); 613 switch (state) { 614 case eStateCrashed: 615 case eStateDetached: 616 case eStateUnloaded: 617 case eStateExited: 618 case eStateInvalid: 619 return false; 620 default: 621 return true; 622 } 623 } 624 625 size_t ProcessWindows::DoReadMemory(lldb::addr_t vm_addr, void *buf, 626 size_t size, Error &error) { 627 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_MEMORY); 628 llvm::sys::ScopedLock lock(m_mutex); 629 630 if (!m_session_data) 631 return 0; 632 633 LLDB_LOG(log, "attempting to read {0} bytes from address {1:x}", size, 634 vm_addr); 635 636 HostProcess process = m_session_data->m_debugger->GetProcess(); 637 void *addr = reinterpret_cast<void *>(vm_addr); 638 SIZE_T bytes_read = 0; 639 if (!ReadProcessMemory(process.GetNativeProcess().GetSystemHandle(), addr, 640 buf, size, &bytes_read)) { 641 error.SetError(GetLastError(), eErrorTypeWin32); 642 LLDB_LOG(log, "reading failed with error: {0}", error); 643 } 644 return bytes_read; 645 } 646 647 size_t ProcessWindows::DoWriteMemory(lldb::addr_t vm_addr, const void *buf, 648 size_t size, Error &error) { 649 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_MEMORY); 650 llvm::sys::ScopedLock lock(m_mutex); 651 LLDB_LOG(log, "attempting to write {0} bytes into address {1:x}", size, 652 vm_addr); 653 654 if (!m_session_data) { 655 LLDB_LOG(log, "cannot write, there is no active debugger connection."); 656 return 0; 657 } 658 659 HostProcess process = m_session_data->m_debugger->GetProcess(); 660 void *addr = reinterpret_cast<void *>(vm_addr); 661 SIZE_T bytes_written = 0; 662 lldb::process_t handle = process.GetNativeProcess().GetSystemHandle(); 663 if (WriteProcessMemory(handle, addr, buf, size, &bytes_written)) 664 FlushInstructionCache(handle, addr, bytes_written); 665 else { 666 error.SetError(GetLastError(), eErrorTypeWin32); 667 LLDB_LOG(log, "writing failed with error: {0}", error); 668 } 669 return bytes_written; 670 } 671 672 Error ProcessWindows::GetMemoryRegionInfo(lldb::addr_t vm_addr, 673 MemoryRegionInfo &info) { 674 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_MEMORY); 675 Error error; 676 llvm::sys::ScopedLock lock(m_mutex); 677 info.Clear(); 678 679 if (!m_session_data) { 680 error.SetErrorString( 681 "GetMemoryRegionInfo called with no debugging session."); 682 LLDB_LOG(log, "error: {0}", error); 683 return error; 684 } 685 HostProcess process = m_session_data->m_debugger->GetProcess(); 686 lldb::process_t handle = process.GetNativeProcess().GetSystemHandle(); 687 if (handle == nullptr || handle == LLDB_INVALID_PROCESS) { 688 error.SetErrorString( 689 "GetMemoryRegionInfo called with an invalid target process."); 690 LLDB_LOG(log, "error: {0}", error); 691 return error; 692 } 693 694 LLDB_LOG(log, "getting info for address {0:x}", vm_addr); 695 696 void *addr = reinterpret_cast<void *>(vm_addr); 697 MEMORY_BASIC_INFORMATION mem_info = {}; 698 SIZE_T result = ::VirtualQueryEx(handle, addr, &mem_info, sizeof(mem_info)); 699 if (result == 0) { 700 if (::GetLastError() == ERROR_INVALID_PARAMETER) { 701 // ERROR_INVALID_PARAMETER is returned if VirtualQueryEx is called with an 702 // address 703 // past the highest accessible address. We should return a range from the 704 // vm_addr 705 // to LLDB_INVALID_ADDRESS 706 info.GetRange().SetRangeBase(vm_addr); 707 info.GetRange().SetRangeEnd(LLDB_INVALID_ADDRESS); 708 info.SetReadable(MemoryRegionInfo::eNo); 709 info.SetExecutable(MemoryRegionInfo::eNo); 710 info.SetWritable(MemoryRegionInfo::eNo); 711 info.SetMapped(MemoryRegionInfo::eNo); 712 return error; 713 } else { 714 error.SetError(::GetLastError(), eErrorTypeWin32); 715 LLDB_LOG(log, "VirtualQueryEx returned error {0} while getting memory " 716 "region info for address {1:x}", 717 error, vm_addr); 718 return error; 719 } 720 } 721 722 // Protect bits are only valid for MEM_COMMIT regions. 723 if (mem_info.State == MEM_COMMIT) { 724 const bool readable = IsPageReadable(mem_info.Protect); 725 const bool executable = IsPageExecutable(mem_info.Protect); 726 const bool writable = IsPageWritable(mem_info.Protect); 727 info.SetReadable(readable ? MemoryRegionInfo::eYes : MemoryRegionInfo::eNo); 728 info.SetExecutable(executable ? MemoryRegionInfo::eYes 729 : MemoryRegionInfo::eNo); 730 info.SetWritable(writable ? MemoryRegionInfo::eYes : MemoryRegionInfo::eNo); 731 } else { 732 info.SetReadable(MemoryRegionInfo::eNo); 733 info.SetExecutable(MemoryRegionInfo::eNo); 734 info.SetWritable(MemoryRegionInfo::eNo); 735 } 736 737 // AllocationBase is defined for MEM_COMMIT and MEM_RESERVE but not MEM_FREE. 738 if (mem_info.State != MEM_FREE) { 739 info.GetRange().SetRangeBase( 740 reinterpret_cast<addr_t>(mem_info.AllocationBase)); 741 info.GetRange().SetRangeEnd(reinterpret_cast<addr_t>(mem_info.BaseAddress) + 742 mem_info.RegionSize); 743 info.SetMapped(MemoryRegionInfo::eYes); 744 } else { 745 // In the unmapped case we need to return the distance to the next block of 746 // memory. 747 // VirtualQueryEx nearly does that except that it gives the distance from 748 // the start 749 // of the page containing vm_addr. 750 SYSTEM_INFO data; 751 GetSystemInfo(&data); 752 DWORD page_offset = vm_addr % data.dwPageSize; 753 info.GetRange().SetRangeBase(vm_addr); 754 info.GetRange().SetByteSize(mem_info.RegionSize - page_offset); 755 info.SetMapped(MemoryRegionInfo::eNo); 756 } 757 758 error.SetError(::GetLastError(), eErrorTypeWin32); 759 LLDB_LOGV(log, "Memory region info for address {0}: readable={1}, " 760 "executable={2}, writable={3}", 761 vm_addr, info.GetReadable(), info.GetExecutable(), 762 info.GetWritable()); 763 return error; 764 } 765 766 lldb::addr_t ProcessWindows::GetImageInfoAddress() { 767 Target &target = GetTarget(); 768 ObjectFile *obj_file = target.GetExecutableModule()->GetObjectFile(); 769 Address addr = obj_file->GetImageInfoAddress(&target); 770 if (addr.IsValid()) 771 return addr.GetLoadAddress(&target); 772 else 773 return LLDB_INVALID_ADDRESS; 774 } 775 776 void ProcessWindows::OnExitProcess(uint32_t exit_code) { 777 // No need to acquire the lock since m_session_data isn't accessed. 778 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 779 LLDB_LOG(log, "Process {0} exited with code {1}", GetID(), exit_code); 780 781 TargetSP target = m_target_sp.lock(); 782 if (target) { 783 ModuleSP executable_module = target->GetExecutableModule(); 784 ModuleList unloaded_modules; 785 unloaded_modules.Append(executable_module); 786 target->ModulesDidUnload(unloaded_modules, true); 787 } 788 789 SetProcessExitStatus(GetID(), true, 0, exit_code); 790 SetPrivateState(eStateExited); 791 } 792 793 void ProcessWindows::OnDebuggerConnected(lldb::addr_t image_base) { 794 DebuggerThreadSP debugger = m_session_data->m_debugger; 795 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 796 LLDB_LOG(log, "Debugger connected to process {0}. Image base = {1:x}", 797 debugger->GetProcess().GetProcessId(), image_base); 798 799 ModuleSP module = GetTarget().GetExecutableModule(); 800 if (!module) { 801 // During attach, we won't have the executable module, so find it now. 802 const DWORD pid = debugger->GetProcess().GetProcessId(); 803 const std::string file_name = GetProcessExecutableName(pid); 804 if (file_name.empty()) { 805 return; 806 } 807 808 FileSpec executable_file(file_name, true); 809 ModuleSpec module_spec(executable_file); 810 Error error; 811 module = GetTarget().GetSharedModule(module_spec, &error); 812 if (!module) { 813 return; 814 } 815 816 GetTarget().SetExecutableModule(module, false); 817 } 818 819 bool load_addr_changed; 820 module->SetLoadAddress(GetTarget(), image_base, false, load_addr_changed); 821 822 ModuleList loaded_modules; 823 loaded_modules.Append(module); 824 GetTarget().ModulesDidLoad(loaded_modules); 825 826 // Add the main executable module to the list of pending module loads. We 827 // can't call 828 // GetTarget().ModulesDidLoad() here because we still haven't returned from 829 // DoLaunch() / DoAttach() yet 830 // so the target may not have set the process instance to `this` yet. 831 llvm::sys::ScopedLock lock(m_mutex); 832 const HostThreadWindows &wmain_thread = 833 debugger->GetMainThread().GetNativeThread(); 834 m_session_data->m_new_threads[wmain_thread.GetThreadId()] = 835 debugger->GetMainThread(); 836 } 837 838 ExceptionResult 839 ProcessWindows::OnDebugException(bool first_chance, 840 const ExceptionRecord &record) { 841 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_EXCEPTION); 842 llvm::sys::ScopedLock lock(m_mutex); 843 844 // FIXME: Without this check, occasionally when running the test suite there 845 // is 846 // an issue where m_session_data can be null. It's not clear how this could 847 // happen 848 // but it only surfaces while running the test suite. In order to properly 849 // diagnose 850 // this, we probably need to first figure allow the test suite to print out 851 // full 852 // lldb logs, and then add logging to the process plugin. 853 if (!m_session_data) { 854 LLDB_LOG(log, "Debugger thread reported exception {0:x} at address {1:x}, " 855 "but there is no session.", 856 record.GetExceptionCode(), record.GetExceptionAddress()); 857 return ExceptionResult::SendToApplication; 858 } 859 860 if (!first_chance) { 861 // Any second chance exception is an application crash by definition. 862 SetPrivateState(eStateCrashed); 863 } 864 865 ExceptionResult result = ExceptionResult::SendToApplication; 866 switch (record.GetExceptionCode()) { 867 case EXCEPTION_BREAKPOINT: 868 // Handle breakpoints at the first chance. 869 result = ExceptionResult::BreakInDebugger; 870 871 if (!m_session_data->m_initial_stop_received) { 872 LLDB_LOG( 873 log, 874 "Hit loader breakpoint at address {0:x}, setting initial stop event.", 875 record.GetExceptionAddress()); 876 m_session_data->m_initial_stop_received = true; 877 ::SetEvent(m_session_data->m_initial_stop_event); 878 } else { 879 LLDB_LOG(log, "Hit non-loader breakpoint at address {0:x}.", 880 record.GetExceptionAddress()); 881 } 882 SetPrivateState(eStateStopped); 883 break; 884 case EXCEPTION_SINGLE_STEP: 885 result = ExceptionResult::BreakInDebugger; 886 SetPrivateState(eStateStopped); 887 break; 888 default: 889 LLDB_LOG(log, "Debugger thread reported exception {0:x} at address {1:x} " 890 "(first_chance={2})", 891 record.GetExceptionCode(), record.GetExceptionAddress(), 892 first_chance); 893 // For non-breakpoints, give the application a chance to handle the 894 // exception first. 895 if (first_chance) 896 result = ExceptionResult::SendToApplication; 897 else 898 result = ExceptionResult::BreakInDebugger; 899 } 900 901 return result; 902 } 903 904 void ProcessWindows::OnCreateThread(const HostThread &new_thread) { 905 llvm::sys::ScopedLock lock(m_mutex); 906 const HostThreadWindows &wnew_thread = new_thread.GetNativeThread(); 907 m_session_data->m_new_threads[wnew_thread.GetThreadId()] = new_thread; 908 } 909 910 void ProcessWindows::OnExitThread(lldb::tid_t thread_id, uint32_t exit_code) { 911 llvm::sys::ScopedLock lock(m_mutex); 912 913 // On a forced termination, we may get exit thread events after the session 914 // data has been cleaned up. 915 if (!m_session_data) 916 return; 917 918 // A thread may have started and exited before the debugger stopped allowing a 919 // refresh. 920 // Just remove it from the new threads list in that case. 921 auto iter = m_session_data->m_new_threads.find(thread_id); 922 if (iter != m_session_data->m_new_threads.end()) 923 m_session_data->m_new_threads.erase(iter); 924 else 925 m_session_data->m_exited_threads.insert(thread_id); 926 } 927 928 void ProcessWindows::OnLoadDll(const ModuleSpec &module_spec, 929 lldb::addr_t module_addr) { 930 // Confusingly, there is no Target::AddSharedModule. Instead, calling 931 // GetSharedModule() with 932 // a new module will add it to the module list and return a corresponding 933 // ModuleSP. 934 Error error; 935 ModuleSP module = GetTarget().GetSharedModule(module_spec, &error); 936 bool load_addr_changed = false; 937 module->SetLoadAddress(GetTarget(), module_addr, false, load_addr_changed); 938 939 ModuleList loaded_modules; 940 loaded_modules.Append(module); 941 GetTarget().ModulesDidLoad(loaded_modules); 942 } 943 944 void ProcessWindows::OnUnloadDll(lldb::addr_t module_addr) { 945 Address resolved_addr; 946 if (GetTarget().ResolveLoadAddress(module_addr, resolved_addr)) { 947 ModuleSP module = resolved_addr.GetModule(); 948 if (module) { 949 ModuleList unloaded_modules; 950 unloaded_modules.Append(module); 951 GetTarget().ModulesDidUnload(unloaded_modules, false); 952 } 953 } 954 } 955 956 void ProcessWindows::OnDebugString(const std::string &string) {} 957 958 void ProcessWindows::OnDebuggerError(const Error &error, uint32_t type) { 959 llvm::sys::ScopedLock lock(m_mutex); 960 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS); 961 962 if (m_session_data->m_initial_stop_received) { 963 // This happened while debugging. Do we shutdown the debugging session, try 964 // to continue, or do something else? 965 LLDB_LOG(log, "Error {0} occurred during debugging. Unexpected behavior " 966 "may result. {1}", 967 error.GetError(), error); 968 } else { 969 // If we haven't actually launched the process yet, this was an error 970 // launching the 971 // process. Set the internal error and signal the initial stop event so 972 // that the DoLaunch 973 // method wakes up and returns a failure. 974 m_session_data->m_launch_error = error; 975 ::SetEvent(m_session_data->m_initial_stop_event); 976 LLDB_LOG( 977 log, 978 "Error {0} occurred launching the process before the initial stop. {1}", 979 error.GetError(), error); 980 return; 981 } 982 } 983 984 Error ProcessWindows::WaitForDebuggerConnection(DebuggerThreadSP debugger, 985 HostProcess &process) { 986 Error result; 987 Log *log = ProcessWindowsLog::GetLogIfAny(WINDOWS_LOG_PROCESS | 988 WINDOWS_LOG_BREAKPOINTS); 989 LLDB_LOG(log, "Waiting for loader breakpoint."); 990 991 // Block this function until we receive the initial stop from the process. 992 if (::WaitForSingleObject(m_session_data->m_initial_stop_event, INFINITE) == 993 WAIT_OBJECT_0) { 994 LLDB_LOG(log, "hit loader breakpoint, returning."); 995 996 process = debugger->GetProcess(); 997 return m_session_data->m_launch_error; 998 } else 999 return Error(::GetLastError(), eErrorTypeWin32); 1000 } 1001 1002 // The Windows page protection bits are NOT independent masks that can be 1003 // bitwise-ORed together. For example, PAGE_EXECUTE_READ is not 1004 // (PAGE_EXECUTE | PAGE_READ). To test for an access type, it's necessary to 1005 // test for any of the bits that provide that access type. 1006 bool ProcessWindows::IsPageReadable(uint32_t protect) { 1007 return (protect & PAGE_NOACCESS) == 0; 1008 } 1009 1010 bool ProcessWindows::IsPageWritable(uint32_t protect) { 1011 return (protect & (PAGE_EXECUTE_READWRITE | PAGE_EXECUTE_WRITECOPY | 1012 PAGE_READWRITE | PAGE_WRITECOPY)) != 0; 1013 } 1014 1015 bool ProcessWindows::IsPageExecutable(uint32_t protect) { 1016 return (protect & (PAGE_EXECUTE | PAGE_EXECUTE_READ | PAGE_EXECUTE_READWRITE | 1017 PAGE_EXECUTE_WRITECOPY)) != 0; 1018 } 1019 1020 } // namespace lldb_private 1021