1 //===-- Thread.cpp ----------------------------------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "lldb/Target/Thread.h" 10 #include "Plugins/Process/Utility/UnwindLLDB.h" 11 #include "Plugins/Process/Utility/UnwindMacOSXFrameBackchain.h" 12 #include "lldb/Breakpoint/BreakpointLocation.h" 13 #include "lldb/Core/Debugger.h" 14 #include "lldb/Core/FormatEntity.h" 15 #include "lldb/Core/Module.h" 16 #include "lldb/Core/ValueObject.h" 17 #include "lldb/Host/Host.h" 18 #include "lldb/Interpreter/OptionValueFileSpecList.h" 19 #include "lldb/Interpreter/OptionValueProperties.h" 20 #include "lldb/Interpreter/Property.h" 21 #include "lldb/Symbol/Function.h" 22 #include "lldb/Target/ABI.h" 23 #include "lldb/Target/DynamicLoader.h" 24 #include "lldb/Target/ExecutionContext.h" 25 #include "lldb/Target/ObjCLanguageRuntime.h" 26 #include "lldb/Target/Process.h" 27 #include "lldb/Target/RegisterContext.h" 28 #include "lldb/Target/StackFrameRecognizer.h" 29 #include "lldb/Target/StopInfo.h" 30 #include "lldb/Target/SystemRuntime.h" 31 #include "lldb/Target/Target.h" 32 #include "lldb/Target/ThreadPlan.h" 33 #include "lldb/Target/ThreadPlanBase.h" 34 #include "lldb/Target/ThreadPlanCallFunction.h" 35 #include "lldb/Target/ThreadPlanPython.h" 36 #include "lldb/Target/ThreadPlanRunToAddress.h" 37 #include "lldb/Target/ThreadPlanStepInRange.h" 38 #include "lldb/Target/ThreadPlanStepInstruction.h" 39 #include "lldb/Target/ThreadPlanStepOut.h" 40 #include "lldb/Target/ThreadPlanStepOverBreakpoint.h" 41 #include "lldb/Target/ThreadPlanStepOverRange.h" 42 #include "lldb/Target/ThreadPlanStepThrough.h" 43 #include "lldb/Target/ThreadPlanStepUntil.h" 44 #include "lldb/Target/ThreadSpec.h" 45 #include "lldb/Target/Unwind.h" 46 #include "lldb/Utility/Log.h" 47 #include "lldb/Utility/RegularExpression.h" 48 #include "lldb/Utility/State.h" 49 #include "lldb/Utility/Stream.h" 50 #include "lldb/Utility/StreamString.h" 51 #include "lldb/lldb-enumerations.h" 52 53 #include <memory> 54 55 using namespace lldb; 56 using namespace lldb_private; 57 58 const ThreadPropertiesSP &Thread::GetGlobalProperties() { 59 // NOTE: intentional leak so we don't crash if global destructor chain gets 60 // called as other threads still use the result of this function 61 static ThreadPropertiesSP *g_settings_sp_ptr = 62 new ThreadPropertiesSP(new ThreadProperties(true)); 63 return *g_settings_sp_ptr; 64 } 65 66 static constexpr PropertyDefinition g_properties[] = { 67 {"step-in-avoid-nodebug", OptionValue::eTypeBoolean, true, true, nullptr, 68 {}, 69 "If true, step-in will not stop in functions with no debug information."}, 70 {"step-out-avoid-nodebug", OptionValue::eTypeBoolean, true, false, nullptr, 71 {}, "If true, when step-in/step-out/step-over leave the current frame, " 72 "they will continue to step out till they come to a function with " 73 "debug information. Passing a frame argument to step-out will " 74 "override this option."}, 75 {"step-avoid-regexp", OptionValue::eTypeRegex, true, 0, "^std::", {}, 76 "A regular expression defining functions step-in won't stop in."}, 77 {"step-avoid-libraries", OptionValue::eTypeFileSpecList, true, 0, nullptr, 78 {}, "A list of libraries that source stepping won't stop in."}, 79 {"trace-thread", OptionValue::eTypeBoolean, false, false, nullptr, {}, 80 "If true, this thread will single-step and log execution."}, 81 {"max-backtrace-depth", OptionValue::eTypeUInt64, false, 300000, nullptr, 82 {}, "Maximum number of frames to backtrace."}}; 83 84 enum { 85 ePropertyStepInAvoidsNoDebug, 86 ePropertyStepOutAvoidsNoDebug, 87 ePropertyStepAvoidRegex, 88 ePropertyStepAvoidLibraries, 89 ePropertyEnableThreadTrace, 90 ePropertyMaxBacktraceDepth 91 }; 92 93 class ThreadOptionValueProperties : public OptionValueProperties { 94 public: 95 ThreadOptionValueProperties(ConstString name) 96 : OptionValueProperties(name) {} 97 98 // This constructor is used when creating ThreadOptionValueProperties when it 99 // is part of a new lldb_private::Thread instance. It will copy all current 100 // global property values as needed 101 ThreadOptionValueProperties(ThreadProperties *global_properties) 102 : OptionValueProperties(*global_properties->GetValueProperties()) {} 103 104 const Property *GetPropertyAtIndex(const ExecutionContext *exe_ctx, 105 bool will_modify, 106 uint32_t idx) const override { 107 // When getting the value for a key from the thread options, we will always 108 // try and grab the setting from the current thread if there is one. Else 109 // we just use the one from this instance. 110 if (exe_ctx) { 111 Thread *thread = exe_ctx->GetThreadPtr(); 112 if (thread) { 113 ThreadOptionValueProperties *instance_properties = 114 static_cast<ThreadOptionValueProperties *>( 115 thread->GetValueProperties().get()); 116 if (this != instance_properties) 117 return instance_properties->ProtectedGetPropertyAtIndex(idx); 118 } 119 } 120 return ProtectedGetPropertyAtIndex(idx); 121 } 122 }; 123 124 ThreadProperties::ThreadProperties(bool is_global) : Properties() { 125 if (is_global) { 126 m_collection_sp = 127 std::make_shared<ThreadOptionValueProperties>(ConstString("thread")); 128 m_collection_sp->Initialize(g_properties); 129 } else 130 m_collection_sp = std::make_shared<ThreadOptionValueProperties>( 131 Thread::GetGlobalProperties().get()); 132 } 133 134 ThreadProperties::~ThreadProperties() = default; 135 136 const RegularExpression *ThreadProperties::GetSymbolsToAvoidRegexp() { 137 const uint32_t idx = ePropertyStepAvoidRegex; 138 return m_collection_sp->GetPropertyAtIndexAsOptionValueRegex(nullptr, idx); 139 } 140 141 FileSpecList &ThreadProperties::GetLibrariesToAvoid() const { 142 const uint32_t idx = ePropertyStepAvoidLibraries; 143 OptionValueFileSpecList *option_value = 144 m_collection_sp->GetPropertyAtIndexAsOptionValueFileSpecList(nullptr, 145 false, idx); 146 assert(option_value); 147 return option_value->GetCurrentValue(); 148 } 149 150 bool ThreadProperties::GetTraceEnabledState() const { 151 const uint32_t idx = ePropertyEnableThreadTrace; 152 return m_collection_sp->GetPropertyAtIndexAsBoolean( 153 nullptr, idx, g_properties[idx].default_uint_value != 0); 154 } 155 156 bool ThreadProperties::GetStepInAvoidsNoDebug() const { 157 const uint32_t idx = ePropertyStepInAvoidsNoDebug; 158 return m_collection_sp->GetPropertyAtIndexAsBoolean( 159 nullptr, idx, g_properties[idx].default_uint_value != 0); 160 } 161 162 bool ThreadProperties::GetStepOutAvoidsNoDebug() const { 163 const uint32_t idx = ePropertyStepOutAvoidsNoDebug; 164 return m_collection_sp->GetPropertyAtIndexAsBoolean( 165 nullptr, idx, g_properties[idx].default_uint_value != 0); 166 } 167 168 uint64_t ThreadProperties::GetMaxBacktraceDepth() const { 169 const uint32_t idx = ePropertyMaxBacktraceDepth; 170 return m_collection_sp->GetPropertyAtIndexAsUInt64( 171 nullptr, idx, g_properties[idx].default_uint_value != 0); 172 } 173 174 //------------------------------------------------------------------ 175 // Thread Event Data 176 //------------------------------------------------------------------ 177 178 ConstString Thread::ThreadEventData::GetFlavorString() { 179 static ConstString g_flavor("Thread::ThreadEventData"); 180 return g_flavor; 181 } 182 183 Thread::ThreadEventData::ThreadEventData(const lldb::ThreadSP thread_sp) 184 : m_thread_sp(thread_sp), m_stack_id() {} 185 186 Thread::ThreadEventData::ThreadEventData(const lldb::ThreadSP thread_sp, 187 const StackID &stack_id) 188 : m_thread_sp(thread_sp), m_stack_id(stack_id) {} 189 190 Thread::ThreadEventData::ThreadEventData() : m_thread_sp(), m_stack_id() {} 191 192 Thread::ThreadEventData::~ThreadEventData() = default; 193 194 void Thread::ThreadEventData::Dump(Stream *s) const {} 195 196 const Thread::ThreadEventData * 197 Thread::ThreadEventData::GetEventDataFromEvent(const Event *event_ptr) { 198 if (event_ptr) { 199 const EventData *event_data = event_ptr->GetData(); 200 if (event_data && 201 event_data->GetFlavor() == ThreadEventData::GetFlavorString()) 202 return static_cast<const ThreadEventData *>(event_ptr->GetData()); 203 } 204 return nullptr; 205 } 206 207 ThreadSP Thread::ThreadEventData::GetThreadFromEvent(const Event *event_ptr) { 208 ThreadSP thread_sp; 209 const ThreadEventData *event_data = GetEventDataFromEvent(event_ptr); 210 if (event_data) 211 thread_sp = event_data->GetThread(); 212 return thread_sp; 213 } 214 215 StackID Thread::ThreadEventData::GetStackIDFromEvent(const Event *event_ptr) { 216 StackID stack_id; 217 const ThreadEventData *event_data = GetEventDataFromEvent(event_ptr); 218 if (event_data) 219 stack_id = event_data->GetStackID(); 220 return stack_id; 221 } 222 223 StackFrameSP 224 Thread::ThreadEventData::GetStackFrameFromEvent(const Event *event_ptr) { 225 const ThreadEventData *event_data = GetEventDataFromEvent(event_ptr); 226 StackFrameSP frame_sp; 227 if (event_data) { 228 ThreadSP thread_sp = event_data->GetThread(); 229 if (thread_sp) { 230 frame_sp = thread_sp->GetStackFrameList()->GetFrameWithStackID( 231 event_data->GetStackID()); 232 } 233 } 234 return frame_sp; 235 } 236 237 //------------------------------------------------------------------ 238 // Thread class 239 //------------------------------------------------------------------ 240 241 ConstString &Thread::GetStaticBroadcasterClass() { 242 static ConstString class_name("lldb.thread"); 243 return class_name; 244 } 245 246 Thread::Thread(Process &process, lldb::tid_t tid, bool use_invalid_index_id) 247 : ThreadProperties(false), UserID(tid), 248 Broadcaster(process.GetTarget().GetDebugger().GetBroadcasterManager(), 249 Thread::GetStaticBroadcasterClass().AsCString()), 250 m_process_wp(process.shared_from_this()), m_stop_info_sp(), 251 m_stop_info_stop_id(0), m_stop_info_override_stop_id(0), 252 m_index_id(use_invalid_index_id ? LLDB_INVALID_INDEX32 253 : process.GetNextThreadIndexID(tid)), 254 m_reg_context_sp(), m_state(eStateUnloaded), m_state_mutex(), 255 m_plan_stack(), m_completed_plan_stack(), m_frame_mutex(), 256 m_curr_frames_sp(), m_prev_frames_sp(), 257 m_resume_signal(LLDB_INVALID_SIGNAL_NUMBER), 258 m_resume_state(eStateRunning), m_temporary_resume_state(eStateRunning), 259 m_unwinder_up(), m_destroy_called(false), 260 m_override_should_notify(eLazyBoolCalculate), 261 m_extended_info_fetched(false), m_extended_info() { 262 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT)); 263 if (log) 264 log->Printf("%p Thread::Thread(tid = 0x%4.4" PRIx64 ")", 265 static_cast<void *>(this), GetID()); 266 267 CheckInWithManager(); 268 269 QueueFundamentalPlan(true); 270 } 271 272 Thread::~Thread() { 273 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT)); 274 if (log) 275 log->Printf("%p Thread::~Thread(tid = 0x%4.4" PRIx64 ")", 276 static_cast<void *>(this), GetID()); 277 /// If you hit this assert, it means your derived class forgot to call 278 /// DoDestroy in its destructor. 279 assert(m_destroy_called); 280 } 281 282 void Thread::DestroyThread() { 283 // Tell any plans on the plan stacks that the thread is being destroyed since 284 // any plans that have a thread go away in the middle of might need to do 285 // cleanup, or in some cases NOT do cleanup... 286 for (auto plan : m_plan_stack) 287 plan->ThreadDestroyed(); 288 289 for (auto plan : m_discarded_plan_stack) 290 plan->ThreadDestroyed(); 291 292 for (auto plan : m_completed_plan_stack) 293 plan->ThreadDestroyed(); 294 295 m_destroy_called = true; 296 m_plan_stack.clear(); 297 m_discarded_plan_stack.clear(); 298 m_completed_plan_stack.clear(); 299 300 // Push a ThreadPlanNull on the plan stack. That way we can continue 301 // assuming that the plan stack is never empty, but if somebody errantly asks 302 // questions of a destroyed thread without checking first whether it is 303 // destroyed, they won't crash. 304 ThreadPlanSP null_plan_sp(new ThreadPlanNull(*this)); 305 m_plan_stack.push_back(null_plan_sp); 306 307 m_stop_info_sp.reset(); 308 m_reg_context_sp.reset(); 309 m_unwinder_up.reset(); 310 std::lock_guard<std::recursive_mutex> guard(m_frame_mutex); 311 m_curr_frames_sp.reset(); 312 m_prev_frames_sp.reset(); 313 } 314 315 void Thread::BroadcastSelectedFrameChange(StackID &new_frame_id) { 316 if (EventTypeHasListeners(eBroadcastBitSelectedFrameChanged)) 317 BroadcastEvent(eBroadcastBitSelectedFrameChanged, 318 new ThreadEventData(this->shared_from_this(), new_frame_id)); 319 } 320 321 lldb::StackFrameSP Thread::GetSelectedFrame() { 322 StackFrameListSP stack_frame_list_sp(GetStackFrameList()); 323 StackFrameSP frame_sp = stack_frame_list_sp->GetFrameAtIndex( 324 stack_frame_list_sp->GetSelectedFrameIndex()); 325 FunctionOptimizationWarning(frame_sp.get()); 326 return frame_sp; 327 } 328 329 uint32_t Thread::SetSelectedFrame(lldb_private::StackFrame *frame, 330 bool broadcast) { 331 uint32_t ret_value = GetStackFrameList()->SetSelectedFrame(frame); 332 if (broadcast) 333 BroadcastSelectedFrameChange(frame->GetStackID()); 334 FunctionOptimizationWarning(frame); 335 return ret_value; 336 } 337 338 bool Thread::SetSelectedFrameByIndex(uint32_t frame_idx, bool broadcast) { 339 StackFrameSP frame_sp(GetStackFrameList()->GetFrameAtIndex(frame_idx)); 340 if (frame_sp) { 341 GetStackFrameList()->SetSelectedFrame(frame_sp.get()); 342 if (broadcast) 343 BroadcastSelectedFrameChange(frame_sp->GetStackID()); 344 FunctionOptimizationWarning(frame_sp.get()); 345 return true; 346 } else 347 return false; 348 } 349 350 bool Thread::SetSelectedFrameByIndexNoisily(uint32_t frame_idx, 351 Stream &output_stream) { 352 const bool broadcast = true; 353 bool success = SetSelectedFrameByIndex(frame_idx, broadcast); 354 if (success) { 355 StackFrameSP frame_sp = GetSelectedFrame(); 356 if (frame_sp) { 357 bool already_shown = false; 358 SymbolContext frame_sc( 359 frame_sp->GetSymbolContext(eSymbolContextLineEntry)); 360 if (GetProcess()->GetTarget().GetDebugger().GetUseExternalEditor() && 361 frame_sc.line_entry.file && frame_sc.line_entry.line != 0) { 362 already_shown = Host::OpenFileInExternalEditor( 363 frame_sc.line_entry.file, frame_sc.line_entry.line); 364 } 365 366 bool show_frame_info = true; 367 bool show_source = !already_shown; 368 FunctionOptimizationWarning(frame_sp.get()); 369 return frame_sp->GetStatus(output_stream, show_frame_info, show_source); 370 } 371 return false; 372 } else 373 return false; 374 } 375 376 void Thread::FunctionOptimizationWarning(StackFrame *frame) { 377 if (frame && frame->HasDebugInformation() && 378 GetProcess()->GetWarningsOptimization()) { 379 SymbolContext sc = 380 frame->GetSymbolContext(eSymbolContextFunction | eSymbolContextModule); 381 GetProcess()->PrintWarningOptimization(sc); 382 } 383 } 384 385 lldb::StopInfoSP Thread::GetStopInfo() { 386 if (m_destroy_called) 387 return m_stop_info_sp; 388 389 ThreadPlanSP completed_plan_sp(GetCompletedPlan()); 390 ProcessSP process_sp(GetProcess()); 391 const uint32_t stop_id = process_sp ? process_sp->GetStopID() : UINT32_MAX; 392 393 // Here we select the stop info according to priorirty: - m_stop_info_sp (if 394 // not trace) - preset value - completed plan stop info - new value with plan 395 // from completed plan stack - m_stop_info_sp (trace stop reason is OK now) - 396 // ask GetPrivateStopInfo to set stop info 397 398 bool have_valid_stop_info = m_stop_info_sp && 399 m_stop_info_sp ->IsValid() && 400 m_stop_info_stop_id == stop_id; 401 bool have_valid_completed_plan = completed_plan_sp && completed_plan_sp->PlanSucceeded(); 402 bool plan_failed = completed_plan_sp && !completed_plan_sp->PlanSucceeded(); 403 bool plan_overrides_trace = 404 have_valid_stop_info && have_valid_completed_plan 405 && (m_stop_info_sp->GetStopReason() == eStopReasonTrace); 406 407 if (have_valid_stop_info && !plan_overrides_trace && !plan_failed) { 408 return m_stop_info_sp; 409 } else if (completed_plan_sp) { 410 return StopInfo::CreateStopReasonWithPlan( 411 completed_plan_sp, GetReturnValueObject(), GetExpressionVariable()); 412 } else { 413 GetPrivateStopInfo(); 414 return m_stop_info_sp; 415 } 416 } 417 418 lldb::StopInfoSP Thread::GetPrivateStopInfo() { 419 if (m_destroy_called) 420 return m_stop_info_sp; 421 422 ProcessSP process_sp(GetProcess()); 423 if (process_sp) { 424 const uint32_t process_stop_id = process_sp->GetStopID(); 425 if (m_stop_info_stop_id != process_stop_id) { 426 if (m_stop_info_sp) { 427 if (m_stop_info_sp->IsValid() || IsStillAtLastBreakpointHit() || 428 GetCurrentPlan()->IsVirtualStep()) 429 SetStopInfo(m_stop_info_sp); 430 else 431 m_stop_info_sp.reset(); 432 } 433 434 if (!m_stop_info_sp) { 435 if (!CalculateStopInfo()) 436 SetStopInfo(StopInfoSP()); 437 } 438 } 439 440 // The stop info can be manually set by calling Thread::SetStopInfo() prior 441 // to this function ever getting called, so we can't rely on 442 // "m_stop_info_stop_id != process_stop_id" as the condition for the if 443 // statement below, we must also check the stop info to see if we need to 444 // override it. See the header documentation in 445 // Process::GetStopInfoOverrideCallback() for more information on the stop 446 // info override callback. 447 if (m_stop_info_override_stop_id != process_stop_id) { 448 m_stop_info_override_stop_id = process_stop_id; 449 if (m_stop_info_sp) { 450 if (const Architecture *arch = 451 process_sp->GetTarget().GetArchitecturePlugin()) 452 arch->OverrideStopInfo(*this); 453 } 454 } 455 } 456 return m_stop_info_sp; 457 } 458 459 lldb::StopReason Thread::GetStopReason() { 460 lldb::StopInfoSP stop_info_sp(GetStopInfo()); 461 if (stop_info_sp) 462 return stop_info_sp->GetStopReason(); 463 return eStopReasonNone; 464 } 465 466 bool Thread::StopInfoIsUpToDate() const { 467 ProcessSP process_sp(GetProcess()); 468 if (process_sp) 469 return m_stop_info_stop_id == process_sp->GetStopID(); 470 else 471 return true; // Process is no longer around so stop info is always up to 472 // date... 473 } 474 475 void Thread::ResetStopInfo() { 476 if (m_stop_info_sp) { 477 m_stop_info_sp.reset(); 478 } 479 } 480 481 void Thread::SetStopInfo(const lldb::StopInfoSP &stop_info_sp) { 482 m_stop_info_sp = stop_info_sp; 483 if (m_stop_info_sp) { 484 m_stop_info_sp->MakeStopInfoValid(); 485 // If we are overriding the ShouldReportStop, do that here: 486 if (m_override_should_notify != eLazyBoolCalculate) 487 m_stop_info_sp->OverrideShouldNotify(m_override_should_notify == 488 eLazyBoolYes); 489 } 490 491 ProcessSP process_sp(GetProcess()); 492 if (process_sp) 493 m_stop_info_stop_id = process_sp->GetStopID(); 494 else 495 m_stop_info_stop_id = UINT32_MAX; 496 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD)); 497 if (log) 498 log->Printf("%p: tid = 0x%" PRIx64 ": stop info = %s (stop_id = %u)", 499 static_cast<void *>(this), GetID(), 500 stop_info_sp ? stop_info_sp->GetDescription() : "<NULL>", 501 m_stop_info_stop_id); 502 } 503 504 void Thread::SetShouldReportStop(Vote vote) { 505 if (vote == eVoteNoOpinion) 506 return; 507 else { 508 m_override_should_notify = (vote == eVoteYes ? eLazyBoolYes : eLazyBoolNo); 509 if (m_stop_info_sp) 510 m_stop_info_sp->OverrideShouldNotify(m_override_should_notify == 511 eLazyBoolYes); 512 } 513 } 514 515 void Thread::SetStopInfoToNothing() { 516 // Note, we can't just NULL out the private reason, or the native thread 517 // implementation will try to go calculate it again. For now, just set it to 518 // a Unix Signal with an invalid signal number. 519 SetStopInfo( 520 StopInfo::CreateStopReasonWithSignal(*this, LLDB_INVALID_SIGNAL_NUMBER)); 521 } 522 523 bool Thread::ThreadStoppedForAReason(void) { 524 return (bool)GetPrivateStopInfo(); 525 } 526 527 bool Thread::CheckpointThreadState(ThreadStateCheckpoint &saved_state) { 528 saved_state.register_backup_sp.reset(); 529 lldb::StackFrameSP frame_sp(GetStackFrameAtIndex(0)); 530 if (frame_sp) { 531 lldb::RegisterCheckpointSP reg_checkpoint_sp( 532 new RegisterCheckpoint(RegisterCheckpoint::Reason::eExpression)); 533 if (reg_checkpoint_sp) { 534 lldb::RegisterContextSP reg_ctx_sp(frame_sp->GetRegisterContext()); 535 if (reg_ctx_sp && reg_ctx_sp->ReadAllRegisterValues(*reg_checkpoint_sp)) 536 saved_state.register_backup_sp = reg_checkpoint_sp; 537 } 538 } 539 if (!saved_state.register_backup_sp) 540 return false; 541 542 saved_state.stop_info_sp = GetStopInfo(); 543 ProcessSP process_sp(GetProcess()); 544 if (process_sp) 545 saved_state.orig_stop_id = process_sp->GetStopID(); 546 saved_state.current_inlined_depth = GetCurrentInlinedDepth(); 547 saved_state.m_completed_plan_stack = m_completed_plan_stack; 548 549 return true; 550 } 551 552 bool Thread::RestoreRegisterStateFromCheckpoint( 553 ThreadStateCheckpoint &saved_state) { 554 if (saved_state.register_backup_sp) { 555 lldb::StackFrameSP frame_sp(GetStackFrameAtIndex(0)); 556 if (frame_sp) { 557 lldb::RegisterContextSP reg_ctx_sp(frame_sp->GetRegisterContext()); 558 if (reg_ctx_sp) { 559 bool ret = 560 reg_ctx_sp->WriteAllRegisterValues(*saved_state.register_backup_sp); 561 562 // Clear out all stack frames as our world just changed. 563 ClearStackFrames(); 564 reg_ctx_sp->InvalidateIfNeeded(true); 565 if (m_unwinder_up) 566 m_unwinder_up->Clear(); 567 return ret; 568 } 569 } 570 } 571 return false; 572 } 573 574 bool Thread::RestoreThreadStateFromCheckpoint( 575 ThreadStateCheckpoint &saved_state) { 576 if (saved_state.stop_info_sp) 577 saved_state.stop_info_sp->MakeStopInfoValid(); 578 SetStopInfo(saved_state.stop_info_sp); 579 GetStackFrameList()->SetCurrentInlinedDepth( 580 saved_state.current_inlined_depth); 581 m_completed_plan_stack = saved_state.m_completed_plan_stack; 582 return true; 583 } 584 585 StateType Thread::GetState() const { 586 // If any other threads access this we will need a mutex for it 587 std::lock_guard<std::recursive_mutex> guard(m_state_mutex); 588 return m_state; 589 } 590 591 void Thread::SetState(StateType state) { 592 std::lock_guard<std::recursive_mutex> guard(m_state_mutex); 593 m_state = state; 594 } 595 596 void Thread::WillStop() { 597 ThreadPlan *current_plan = GetCurrentPlan(); 598 599 // FIXME: I may decide to disallow threads with no plans. In which 600 // case this should go to an assert. 601 602 if (!current_plan) 603 return; 604 605 current_plan->WillStop(); 606 } 607 608 void Thread::SetupForResume() { 609 if (GetResumeState() != eStateSuspended) { 610 // If we're at a breakpoint push the step-over breakpoint plan. Do this 611 // before telling the current plan it will resume, since we might change 612 // what the current plan is. 613 614 lldb::RegisterContextSP reg_ctx_sp(GetRegisterContext()); 615 if (reg_ctx_sp) { 616 const addr_t thread_pc = reg_ctx_sp->GetPC(); 617 BreakpointSiteSP bp_site_sp = 618 GetProcess()->GetBreakpointSiteList().FindByAddress(thread_pc); 619 if (bp_site_sp) { 620 // Note, don't assume there's a ThreadPlanStepOverBreakpoint, the 621 // target may not require anything special to step over a breakpoint. 622 623 ThreadPlan *cur_plan = GetCurrentPlan(); 624 625 bool push_step_over_bp_plan = false; 626 if (cur_plan->GetKind() == ThreadPlan::eKindStepOverBreakpoint) { 627 ThreadPlanStepOverBreakpoint *bp_plan = 628 (ThreadPlanStepOverBreakpoint *)cur_plan; 629 if (bp_plan->GetBreakpointLoadAddress() != thread_pc) 630 push_step_over_bp_plan = true; 631 } else 632 push_step_over_bp_plan = true; 633 634 if (push_step_over_bp_plan) { 635 ThreadPlanSP step_bp_plan_sp(new ThreadPlanStepOverBreakpoint(*this)); 636 if (step_bp_plan_sp) { 637 step_bp_plan_sp->SetPrivate(true); 638 639 if (GetCurrentPlan()->RunState() != eStateStepping) { 640 ThreadPlanStepOverBreakpoint *step_bp_plan = 641 static_cast<ThreadPlanStepOverBreakpoint *>( 642 step_bp_plan_sp.get()); 643 step_bp_plan->SetAutoContinue(true); 644 } 645 QueueThreadPlan(step_bp_plan_sp, false); 646 } 647 } 648 } 649 } 650 } 651 } 652 653 bool Thread::ShouldResume(StateType resume_state) { 654 // At this point clear the completed plan stack. 655 m_completed_plan_stack.clear(); 656 m_discarded_plan_stack.clear(); 657 m_override_should_notify = eLazyBoolCalculate; 658 659 StateType prev_resume_state = GetTemporaryResumeState(); 660 661 SetTemporaryResumeState(resume_state); 662 663 lldb::ThreadSP backing_thread_sp(GetBackingThread()); 664 if (backing_thread_sp) 665 backing_thread_sp->SetTemporaryResumeState(resume_state); 666 667 // Make sure m_stop_info_sp is valid. Don't do this for threads we suspended 668 // in the previous run. 669 if (prev_resume_state != eStateSuspended) 670 GetPrivateStopInfo(); 671 672 // This is a little dubious, but we are trying to limit how often we actually 673 // fetch stop info from the target, 'cause that slows down single stepping. 674 // So assume that if we got to the point where we're about to resume, and we 675 // haven't yet had to fetch the stop reason, then it doesn't need to know 676 // about the fact that we are resuming... 677 const uint32_t process_stop_id = GetProcess()->GetStopID(); 678 if (m_stop_info_stop_id == process_stop_id && 679 (m_stop_info_sp && m_stop_info_sp->IsValid())) { 680 StopInfo *stop_info = GetPrivateStopInfo().get(); 681 if (stop_info) 682 stop_info->WillResume(resume_state); 683 } 684 685 // Tell all the plans that we are about to resume in case they need to clear 686 // any state. We distinguish between the plan on the top of the stack and the 687 // lower plans in case a plan needs to do any special business before it 688 // runs. 689 690 bool need_to_resume = false; 691 ThreadPlan *plan_ptr = GetCurrentPlan(); 692 if (plan_ptr) { 693 need_to_resume = plan_ptr->WillResume(resume_state, true); 694 695 while ((plan_ptr = GetPreviousPlan(plan_ptr)) != nullptr) { 696 plan_ptr->WillResume(resume_state, false); 697 } 698 699 // If the WillResume for the plan says we are faking a resume, then it will 700 // have set an appropriate stop info. In that case, don't reset it here. 701 702 if (need_to_resume && resume_state != eStateSuspended) { 703 m_stop_info_sp.reset(); 704 } 705 } 706 707 if (need_to_resume) { 708 ClearStackFrames(); 709 // Let Thread subclasses do any special work they need to prior to resuming 710 WillResume(resume_state); 711 } 712 713 return need_to_resume; 714 } 715 716 void Thread::DidResume() { SetResumeSignal(LLDB_INVALID_SIGNAL_NUMBER); } 717 718 void Thread::DidStop() { SetState(eStateStopped); } 719 720 bool Thread::ShouldStop(Event *event_ptr) { 721 ThreadPlan *current_plan = GetCurrentPlan(); 722 723 bool should_stop = true; 724 725 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 726 727 if (GetResumeState() == eStateSuspended) { 728 if (log) 729 log->Printf("Thread::%s for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64 730 ", should_stop = 0 (ignore since thread was suspended)", 731 __FUNCTION__, GetID(), GetProtocolID()); 732 return false; 733 } 734 735 if (GetTemporaryResumeState() == eStateSuspended) { 736 if (log) 737 log->Printf("Thread::%s for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64 738 ", should_stop = 0 (ignore since thread was suspended)", 739 __FUNCTION__, GetID(), GetProtocolID()); 740 return false; 741 } 742 743 // Based on the current thread plan and process stop info, check if this 744 // thread caused the process to stop. NOTE: this must take place before the 745 // plan is moved from the current plan stack to the completed plan stack. 746 if (!ThreadStoppedForAReason()) { 747 if (log) 748 log->Printf("Thread::%s for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64 749 ", pc = 0x%16.16" PRIx64 750 ", should_stop = 0 (ignore since no stop reason)", 751 __FUNCTION__, GetID(), GetProtocolID(), 752 GetRegisterContext() ? GetRegisterContext()->GetPC() 753 : LLDB_INVALID_ADDRESS); 754 return false; 755 } 756 757 if (log) { 758 log->Printf("Thread::%s(%p) for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64 759 ", pc = 0x%16.16" PRIx64, 760 __FUNCTION__, static_cast<void *>(this), GetID(), 761 GetProtocolID(), 762 GetRegisterContext() ? GetRegisterContext()->GetPC() 763 : LLDB_INVALID_ADDRESS); 764 log->Printf("^^^^^^^^ Thread::ShouldStop Begin ^^^^^^^^"); 765 StreamString s; 766 s.IndentMore(); 767 DumpThreadPlans(&s); 768 log->Printf("Plan stack initial state:\n%s", s.GetData()); 769 } 770 771 // The top most plan always gets to do the trace log... 772 current_plan->DoTraceLog(); 773 774 // First query the stop info's ShouldStopSynchronous. This handles 775 // "synchronous" stop reasons, for example the breakpoint command on internal 776 // breakpoints. If a synchronous stop reason says we should not stop, then 777 // we don't have to do any more work on this stop. 778 StopInfoSP private_stop_info(GetPrivateStopInfo()); 779 if (private_stop_info && 780 !private_stop_info->ShouldStopSynchronous(event_ptr)) { 781 if (log) 782 log->Printf("StopInfo::ShouldStop async callback says we should not " 783 "stop, returning ShouldStop of false."); 784 return false; 785 } 786 787 // If we've already been restarted, don't query the plans since the state 788 // they would examine is not current. 789 if (Process::ProcessEventData::GetRestartedFromEvent(event_ptr)) 790 return false; 791 792 // Before the plans see the state of the world, calculate the current inlined 793 // depth. 794 GetStackFrameList()->CalculateCurrentInlinedDepth(); 795 796 // If the base plan doesn't understand why we stopped, then we have to find a 797 // plan that does. If that plan is still working, then we don't need to do 798 // any more work. If the plan that explains the stop is done, then we should 799 // pop all the plans below it, and pop it, and then let the plans above it 800 // decide whether they still need to do more work. 801 802 bool done_processing_current_plan = false; 803 804 if (!current_plan->PlanExplainsStop(event_ptr)) { 805 if (current_plan->TracerExplainsStop()) { 806 done_processing_current_plan = true; 807 should_stop = false; 808 } else { 809 // If the current plan doesn't explain the stop, then find one that does 810 // and let it handle the situation. 811 ThreadPlan *plan_ptr = current_plan; 812 while ((plan_ptr = GetPreviousPlan(plan_ptr)) != nullptr) { 813 if (plan_ptr->PlanExplainsStop(event_ptr)) { 814 should_stop = plan_ptr->ShouldStop(event_ptr); 815 816 // plan_ptr explains the stop, next check whether plan_ptr is done, 817 // if so, then we should take it and all the plans below it off the 818 // stack. 819 820 if (plan_ptr->MischiefManaged()) { 821 // We're going to pop the plans up to and including the plan that 822 // explains the stop. 823 ThreadPlan *prev_plan_ptr = GetPreviousPlan(plan_ptr); 824 825 do { 826 if (should_stop) 827 current_plan->WillStop(); 828 PopPlan(); 829 } while ((current_plan = GetCurrentPlan()) != prev_plan_ptr); 830 // Now, if the responsible plan was not "Okay to discard" then 831 // we're done, otherwise we forward this to the next plan in the 832 // stack below. 833 done_processing_current_plan = 834 (plan_ptr->IsMasterPlan() && !plan_ptr->OkayToDiscard()); 835 } else 836 done_processing_current_plan = true; 837 838 break; 839 } 840 } 841 } 842 } 843 844 if (!done_processing_current_plan) { 845 bool over_ride_stop = current_plan->ShouldAutoContinue(event_ptr); 846 847 if (log) 848 log->Printf("Plan %s explains stop, auto-continue %i.", 849 current_plan->GetName(), over_ride_stop); 850 851 // We're starting from the base plan, so just let it decide; 852 if (PlanIsBasePlan(current_plan)) { 853 should_stop = current_plan->ShouldStop(event_ptr); 854 if (log) 855 log->Printf("Base plan says should stop: %i.", should_stop); 856 } else { 857 // Otherwise, don't let the base plan override what the other plans say 858 // to do, since presumably if there were other plans they would know what 859 // to do... 860 while (1) { 861 if (PlanIsBasePlan(current_plan)) 862 break; 863 864 should_stop = current_plan->ShouldStop(event_ptr); 865 if (log) 866 log->Printf("Plan %s should stop: %d.", current_plan->GetName(), 867 should_stop); 868 if (current_plan->MischiefManaged()) { 869 if (should_stop) 870 current_plan->WillStop(); 871 872 // If a Master Plan wants to stop, and wants to stick on the stack, 873 // we let it. Otherwise, see if the plan's parent wants to stop. 874 875 if (should_stop && current_plan->IsMasterPlan() && 876 !current_plan->OkayToDiscard()) { 877 PopPlan(); 878 break; 879 } else { 880 PopPlan(); 881 882 current_plan = GetCurrentPlan(); 883 if (current_plan == nullptr) { 884 break; 885 } 886 } 887 } else { 888 break; 889 } 890 } 891 } 892 893 if (over_ride_stop) 894 should_stop = false; 895 } 896 897 // One other potential problem is that we set up a master plan, then stop in 898 // before it is complete - for instance by hitting a breakpoint during a 899 // step-over - then do some step/finish/etc operations that wind up past the 900 // end point condition of the initial plan. We don't want to strand the 901 // original plan on the stack, This code clears stale plans off the stack. 902 903 if (should_stop) { 904 ThreadPlan *plan_ptr = GetCurrentPlan(); 905 906 // Discard the stale plans and all plans below them in the stack, plus move 907 // the completed plans to the completed plan stack 908 while (!PlanIsBasePlan(plan_ptr)) { 909 bool stale = plan_ptr->IsPlanStale(); 910 ThreadPlan *examined_plan = plan_ptr; 911 plan_ptr = GetPreviousPlan(examined_plan); 912 913 if (stale) { 914 if (log) 915 log->Printf( 916 "Plan %s being discarded in cleanup, it says it is already done.", 917 examined_plan->GetName()); 918 while (GetCurrentPlan() != examined_plan) { 919 DiscardPlan(); 920 } 921 if (examined_plan->IsPlanComplete()) { 922 // plan is complete but does not explain the stop (example: step to a 923 // line with breakpoint), let us move the plan to 924 // completed_plan_stack anyway 925 PopPlan(); 926 } else 927 DiscardPlan(); 928 } 929 } 930 } 931 932 if (log) { 933 StreamString s; 934 s.IndentMore(); 935 DumpThreadPlans(&s); 936 log->Printf("Plan stack final state:\n%s", s.GetData()); 937 log->Printf("vvvvvvvv Thread::ShouldStop End (returning %i) vvvvvvvv", 938 should_stop); 939 } 940 return should_stop; 941 } 942 943 Vote Thread::ShouldReportStop(Event *event_ptr) { 944 StateType thread_state = GetResumeState(); 945 StateType temp_thread_state = GetTemporaryResumeState(); 946 947 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 948 949 if (thread_state == eStateSuspended || thread_state == eStateInvalid) { 950 if (log) 951 log->Printf("Thread::ShouldReportStop() tid = 0x%4.4" PRIx64 952 ": returning vote %i (state was suspended or invalid)", 953 GetID(), eVoteNoOpinion); 954 return eVoteNoOpinion; 955 } 956 957 if (temp_thread_state == eStateSuspended || 958 temp_thread_state == eStateInvalid) { 959 if (log) 960 log->Printf( 961 "Thread::ShouldReportStop() tid = 0x%4.4" PRIx64 962 ": returning vote %i (temporary state was suspended or invalid)", 963 GetID(), eVoteNoOpinion); 964 return eVoteNoOpinion; 965 } 966 967 if (!ThreadStoppedForAReason()) { 968 if (log) 969 log->Printf("Thread::ShouldReportStop() tid = 0x%4.4" PRIx64 970 ": returning vote %i (thread didn't stop for a reason.)", 971 GetID(), eVoteNoOpinion); 972 return eVoteNoOpinion; 973 } 974 975 if (m_completed_plan_stack.size() > 0) { 976 // Don't use GetCompletedPlan here, since that suppresses private plans. 977 if (log) 978 log->Printf("Thread::ShouldReportStop() tid = 0x%4.4" PRIx64 979 ": returning vote for complete stack's back plan", 980 GetID()); 981 return m_completed_plan_stack.back()->ShouldReportStop(event_ptr); 982 } else { 983 Vote thread_vote = eVoteNoOpinion; 984 ThreadPlan *plan_ptr = GetCurrentPlan(); 985 while (1) { 986 if (plan_ptr->PlanExplainsStop(event_ptr)) { 987 thread_vote = plan_ptr->ShouldReportStop(event_ptr); 988 break; 989 } 990 if (PlanIsBasePlan(plan_ptr)) 991 break; 992 else 993 plan_ptr = GetPreviousPlan(plan_ptr); 994 } 995 if (log) 996 log->Printf("Thread::ShouldReportStop() tid = 0x%4.4" PRIx64 997 ": returning vote %i for current plan", 998 GetID(), thread_vote); 999 1000 return thread_vote; 1001 } 1002 } 1003 1004 Vote Thread::ShouldReportRun(Event *event_ptr) { 1005 StateType thread_state = GetResumeState(); 1006 1007 if (thread_state == eStateSuspended || thread_state == eStateInvalid) { 1008 return eVoteNoOpinion; 1009 } 1010 1011 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1012 if (m_completed_plan_stack.size() > 0) { 1013 // Don't use GetCompletedPlan here, since that suppresses private plans. 1014 if (log) 1015 log->Printf("Current Plan for thread %d(%p) (0x%4.4" PRIx64 1016 ", %s): %s being asked whether we should report run.", 1017 GetIndexID(), static_cast<void *>(this), GetID(), 1018 StateAsCString(GetTemporaryResumeState()), 1019 m_completed_plan_stack.back()->GetName()); 1020 1021 return m_completed_plan_stack.back()->ShouldReportRun(event_ptr); 1022 } else { 1023 if (log) 1024 log->Printf("Current Plan for thread %d(%p) (0x%4.4" PRIx64 1025 ", %s): %s being asked whether we should report run.", 1026 GetIndexID(), static_cast<void *>(this), GetID(), 1027 StateAsCString(GetTemporaryResumeState()), 1028 GetCurrentPlan()->GetName()); 1029 1030 return GetCurrentPlan()->ShouldReportRun(event_ptr); 1031 } 1032 } 1033 1034 bool Thread::MatchesSpec(const ThreadSpec *spec) { 1035 return (spec == nullptr) ? true : spec->ThreadPassesBasicTests(*this); 1036 } 1037 1038 void Thread::PushPlan(ThreadPlanSP &thread_plan_sp) { 1039 if (thread_plan_sp) { 1040 // If the thread plan doesn't already have a tracer, give it its parent's 1041 // tracer: 1042 if (!thread_plan_sp->GetThreadPlanTracer()) { 1043 assert(!m_plan_stack.empty()); 1044 thread_plan_sp->SetThreadPlanTracer( 1045 m_plan_stack.back()->GetThreadPlanTracer()); 1046 } 1047 m_plan_stack.push_back(thread_plan_sp); 1048 1049 thread_plan_sp->DidPush(); 1050 1051 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1052 if (log) { 1053 StreamString s; 1054 thread_plan_sp->GetDescription(&s, lldb::eDescriptionLevelFull); 1055 log->Printf("Thread::PushPlan(0x%p): \"%s\", tid = 0x%4.4" PRIx64 ".", 1056 static_cast<void *>(this), s.GetData(), 1057 thread_plan_sp->GetThread().GetID()); 1058 } 1059 } 1060 } 1061 1062 void Thread::PopPlan() { 1063 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1064 1065 if (m_plan_stack.size() <= 1) 1066 return; 1067 else { 1068 ThreadPlanSP &plan = m_plan_stack.back(); 1069 if (log) { 1070 log->Printf("Popping plan: \"%s\", tid = 0x%4.4" PRIx64 ".", 1071 plan->GetName(), plan->GetThread().GetID()); 1072 } 1073 m_completed_plan_stack.push_back(plan); 1074 plan->WillPop(); 1075 m_plan_stack.pop_back(); 1076 } 1077 } 1078 1079 void Thread::DiscardPlan() { 1080 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1081 if (m_plan_stack.size() > 1) { 1082 ThreadPlanSP &plan = m_plan_stack.back(); 1083 if (log) 1084 log->Printf("Discarding plan: \"%s\", tid = 0x%4.4" PRIx64 ".", 1085 plan->GetName(), plan->GetThread().GetID()); 1086 1087 m_discarded_plan_stack.push_back(plan); 1088 plan->WillPop(); 1089 m_plan_stack.pop_back(); 1090 } 1091 } 1092 1093 ThreadPlan *Thread::GetCurrentPlan() { 1094 // There will always be at least the base plan. If somebody is mucking with 1095 // a thread with an empty plan stack, we should assert right away. 1096 return m_plan_stack.empty() ? nullptr : m_plan_stack.back().get(); 1097 } 1098 1099 ThreadPlanSP Thread::GetCompletedPlan() { 1100 ThreadPlanSP empty_plan_sp; 1101 if (!m_completed_plan_stack.empty()) { 1102 for (int i = m_completed_plan_stack.size() - 1; i >= 0; i--) { 1103 ThreadPlanSP completed_plan_sp; 1104 completed_plan_sp = m_completed_plan_stack[i]; 1105 if (!completed_plan_sp->GetPrivate()) 1106 return completed_plan_sp; 1107 } 1108 } 1109 return empty_plan_sp; 1110 } 1111 1112 ValueObjectSP Thread::GetReturnValueObject() { 1113 if (!m_completed_plan_stack.empty()) { 1114 for (int i = m_completed_plan_stack.size() - 1; i >= 0; i--) { 1115 ValueObjectSP return_valobj_sp; 1116 return_valobj_sp = m_completed_plan_stack[i]->GetReturnValueObject(); 1117 if (return_valobj_sp) 1118 return return_valobj_sp; 1119 } 1120 } 1121 return ValueObjectSP(); 1122 } 1123 1124 ExpressionVariableSP Thread::GetExpressionVariable() { 1125 if (!m_completed_plan_stack.empty()) { 1126 for (int i = m_completed_plan_stack.size() - 1; i >= 0; i--) { 1127 ExpressionVariableSP expression_variable_sp; 1128 expression_variable_sp = 1129 m_completed_plan_stack[i]->GetExpressionVariable(); 1130 if (expression_variable_sp) 1131 return expression_variable_sp; 1132 } 1133 } 1134 return ExpressionVariableSP(); 1135 } 1136 1137 bool Thread::IsThreadPlanDone(ThreadPlan *plan) { 1138 if (!m_completed_plan_stack.empty()) { 1139 for (int i = m_completed_plan_stack.size() - 1; i >= 0; i--) { 1140 if (m_completed_plan_stack[i].get() == plan) 1141 return true; 1142 } 1143 } 1144 return false; 1145 } 1146 1147 bool Thread::WasThreadPlanDiscarded(ThreadPlan *plan) { 1148 if (!m_discarded_plan_stack.empty()) { 1149 for (int i = m_discarded_plan_stack.size() - 1; i >= 0; i--) { 1150 if (m_discarded_plan_stack[i].get() == plan) 1151 return true; 1152 } 1153 } 1154 return false; 1155 } 1156 1157 bool Thread::CompletedPlanOverridesBreakpoint() { 1158 return (!m_completed_plan_stack.empty()) ; 1159 } 1160 1161 ThreadPlan *Thread::GetPreviousPlan(ThreadPlan *current_plan) { 1162 if (current_plan == nullptr) 1163 return nullptr; 1164 1165 int stack_size = m_completed_plan_stack.size(); 1166 for (int i = stack_size - 1; i > 0; i--) { 1167 if (current_plan == m_completed_plan_stack[i].get()) 1168 return m_completed_plan_stack[i - 1].get(); 1169 } 1170 1171 if (stack_size > 0 && m_completed_plan_stack[0].get() == current_plan) { 1172 return GetCurrentPlan(); 1173 } 1174 1175 stack_size = m_plan_stack.size(); 1176 for (int i = stack_size - 1; i > 0; i--) { 1177 if (current_plan == m_plan_stack[i].get()) 1178 return m_plan_stack[i - 1].get(); 1179 } 1180 return nullptr; 1181 } 1182 1183 Status Thread::QueueThreadPlan(ThreadPlanSP &thread_plan_sp, 1184 bool abort_other_plans) { 1185 Status status; 1186 StreamString s; 1187 if (!thread_plan_sp->ValidatePlan(&s)) { 1188 DiscardThreadPlansUpToPlan(thread_plan_sp); 1189 thread_plan_sp.reset(); 1190 status.SetErrorString(s.GetString()); 1191 return status; 1192 } 1193 1194 if (abort_other_plans) 1195 DiscardThreadPlans(true); 1196 1197 PushPlan(thread_plan_sp); 1198 1199 // This seems a little funny, but I don't want to have to split up the 1200 // constructor and the DidPush in the scripted plan, that seems annoying. 1201 // That means the constructor has to be in DidPush. So I have to validate the 1202 // plan AFTER pushing it, and then take it off again... 1203 if (!thread_plan_sp->ValidatePlan(&s)) { 1204 DiscardThreadPlansUpToPlan(thread_plan_sp); 1205 thread_plan_sp.reset(); 1206 status.SetErrorString(s.GetString()); 1207 return status; 1208 } 1209 1210 return status; 1211 } 1212 1213 void Thread::EnableTracer(bool value, bool single_stepping) { 1214 int stack_size = m_plan_stack.size(); 1215 for (int i = 0; i < stack_size; i++) { 1216 if (m_plan_stack[i]->GetThreadPlanTracer()) { 1217 m_plan_stack[i]->GetThreadPlanTracer()->EnableTracing(value); 1218 m_plan_stack[i]->GetThreadPlanTracer()->EnableSingleStep(single_stepping); 1219 } 1220 } 1221 } 1222 1223 void Thread::SetTracer(lldb::ThreadPlanTracerSP &tracer_sp) { 1224 int stack_size = m_plan_stack.size(); 1225 for (int i = 0; i < stack_size; i++) 1226 m_plan_stack[i]->SetThreadPlanTracer(tracer_sp); 1227 } 1228 1229 bool Thread::DiscardUserThreadPlansUpToIndex(uint32_t thread_index) { 1230 // Count the user thread plans from the back end to get the number of the one 1231 // we want to discard: 1232 1233 uint32_t idx = 0; 1234 ThreadPlan *up_to_plan_ptr = nullptr; 1235 1236 for (ThreadPlanSP plan_sp : m_plan_stack) { 1237 if (plan_sp->GetPrivate()) 1238 continue; 1239 if (idx == thread_index) { 1240 up_to_plan_ptr = plan_sp.get(); 1241 break; 1242 } else 1243 idx++; 1244 } 1245 1246 if (up_to_plan_ptr == nullptr) 1247 return false; 1248 1249 DiscardThreadPlansUpToPlan(up_to_plan_ptr); 1250 return true; 1251 } 1252 1253 void Thread::DiscardThreadPlansUpToPlan(lldb::ThreadPlanSP &up_to_plan_sp) { 1254 DiscardThreadPlansUpToPlan(up_to_plan_sp.get()); 1255 } 1256 1257 void Thread::DiscardThreadPlansUpToPlan(ThreadPlan *up_to_plan_ptr) { 1258 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1259 if (log) 1260 log->Printf("Discarding thread plans for thread tid = 0x%4.4" PRIx64 1261 ", up to %p", 1262 GetID(), static_cast<void *>(up_to_plan_ptr)); 1263 1264 int stack_size = m_plan_stack.size(); 1265 1266 // If the input plan is nullptr, discard all plans. Otherwise make sure this 1267 // plan is in the stack, and if so discard up to and including it. 1268 1269 if (up_to_plan_ptr == nullptr) { 1270 for (int i = stack_size - 1; i > 0; i--) 1271 DiscardPlan(); 1272 } else { 1273 bool found_it = false; 1274 for (int i = stack_size - 1; i > 0; i--) { 1275 if (m_plan_stack[i].get() == up_to_plan_ptr) 1276 found_it = true; 1277 } 1278 if (found_it) { 1279 bool last_one = false; 1280 for (int i = stack_size - 1; i > 0 && !last_one; i--) { 1281 if (GetCurrentPlan() == up_to_plan_ptr) 1282 last_one = true; 1283 DiscardPlan(); 1284 } 1285 } 1286 } 1287 } 1288 1289 void Thread::DiscardThreadPlans(bool force) { 1290 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 1291 if (log) { 1292 log->Printf("Discarding thread plans for thread (tid = 0x%4.4" PRIx64 1293 ", force %d)", 1294 GetID(), force); 1295 } 1296 1297 if (force) { 1298 int stack_size = m_plan_stack.size(); 1299 for (int i = stack_size - 1; i > 0; i--) { 1300 DiscardPlan(); 1301 } 1302 return; 1303 } 1304 1305 while (1) { 1306 int master_plan_idx; 1307 bool discard = true; 1308 1309 // Find the first master plan, see if it wants discarding, and if yes 1310 // discard up to it. 1311 for (master_plan_idx = m_plan_stack.size() - 1; master_plan_idx >= 0; 1312 master_plan_idx--) { 1313 if (m_plan_stack[master_plan_idx]->IsMasterPlan()) { 1314 discard = m_plan_stack[master_plan_idx]->OkayToDiscard(); 1315 break; 1316 } 1317 } 1318 1319 if (discard) { 1320 // First pop all the dependent plans: 1321 for (int i = m_plan_stack.size() - 1; i > master_plan_idx; i--) { 1322 // FIXME: Do we need a finalize here, or is the rule that 1323 // "PrepareForStop" 1324 // for the plan leaves it in a state that it is safe to pop the plan 1325 // with no more notice? 1326 DiscardPlan(); 1327 } 1328 1329 // Now discard the master plan itself. 1330 // The bottom-most plan never gets discarded. "OkayToDiscard" for it 1331 // means discard it's dependent plans, but not it... 1332 if (master_plan_idx > 0) { 1333 DiscardPlan(); 1334 } 1335 } else { 1336 // If the master plan doesn't want to get discarded, then we're done. 1337 break; 1338 } 1339 } 1340 } 1341 1342 bool Thread::PlanIsBasePlan(ThreadPlan *plan_ptr) { 1343 if (plan_ptr->IsBasePlan()) 1344 return true; 1345 else if (m_plan_stack.size() == 0) 1346 return false; 1347 else 1348 return m_plan_stack[0].get() == plan_ptr; 1349 } 1350 1351 Status Thread::UnwindInnermostExpression() { 1352 Status error; 1353 int stack_size = m_plan_stack.size(); 1354 1355 // If the input plan is nullptr, discard all plans. Otherwise make sure this 1356 // plan is in the stack, and if so discard up to and including it. 1357 1358 for (int i = stack_size - 1; i > 0; i--) { 1359 if (m_plan_stack[i]->GetKind() == ThreadPlan::eKindCallFunction) { 1360 DiscardThreadPlansUpToPlan(m_plan_stack[i].get()); 1361 return error; 1362 } 1363 } 1364 error.SetErrorString("No expressions currently active on this thread"); 1365 return error; 1366 } 1367 1368 ThreadPlanSP Thread::QueueFundamentalPlan(bool abort_other_plans) { 1369 ThreadPlanSP thread_plan_sp(new ThreadPlanBase(*this)); 1370 QueueThreadPlan(thread_plan_sp, abort_other_plans); 1371 return thread_plan_sp; 1372 } 1373 1374 ThreadPlanSP Thread::QueueThreadPlanForStepSingleInstruction( 1375 bool step_over, bool abort_other_plans, bool stop_other_threads, 1376 Status &status) { 1377 ThreadPlanSP thread_plan_sp(new ThreadPlanStepInstruction( 1378 *this, step_over, stop_other_threads, eVoteNoOpinion, eVoteNoOpinion)); 1379 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1380 return thread_plan_sp; 1381 } 1382 1383 ThreadPlanSP Thread::QueueThreadPlanForStepOverRange( 1384 bool abort_other_plans, const AddressRange &range, 1385 const SymbolContext &addr_context, lldb::RunMode stop_other_threads, 1386 Status &status, LazyBool step_out_avoids_code_withoug_debug_info) { 1387 ThreadPlanSP thread_plan_sp; 1388 thread_plan_sp = std::make_shared<ThreadPlanStepOverRange>( 1389 *this, range, addr_context, stop_other_threads, 1390 step_out_avoids_code_withoug_debug_info); 1391 1392 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1393 return thread_plan_sp; 1394 } 1395 1396 // Call the QueueThreadPlanForStepOverRange method which takes an address 1397 // range. 1398 ThreadPlanSP Thread::QueueThreadPlanForStepOverRange( 1399 bool abort_other_plans, const LineEntry &line_entry, 1400 const SymbolContext &addr_context, lldb::RunMode stop_other_threads, 1401 Status &status, LazyBool step_out_avoids_code_withoug_debug_info) { 1402 return QueueThreadPlanForStepOverRange( 1403 abort_other_plans, line_entry.GetSameLineContiguousAddressRange(), 1404 addr_context, stop_other_threads, status, 1405 step_out_avoids_code_withoug_debug_info); 1406 } 1407 1408 ThreadPlanSP Thread::QueueThreadPlanForStepInRange( 1409 bool abort_other_plans, const AddressRange &range, 1410 const SymbolContext &addr_context, const char *step_in_target, 1411 lldb::RunMode stop_other_threads, Status &status, 1412 LazyBool step_in_avoids_code_without_debug_info, 1413 LazyBool step_out_avoids_code_without_debug_info) { 1414 ThreadPlanSP thread_plan_sp( 1415 new ThreadPlanStepInRange(*this, range, addr_context, stop_other_threads, 1416 step_in_avoids_code_without_debug_info, 1417 step_out_avoids_code_without_debug_info)); 1418 ThreadPlanStepInRange *plan = 1419 static_cast<ThreadPlanStepInRange *>(thread_plan_sp.get()); 1420 1421 if (step_in_target) 1422 plan->SetStepInTarget(step_in_target); 1423 1424 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1425 return thread_plan_sp; 1426 } 1427 1428 // Call the QueueThreadPlanForStepInRange method which takes an address range. 1429 ThreadPlanSP Thread::QueueThreadPlanForStepInRange( 1430 bool abort_other_plans, const LineEntry &line_entry, 1431 const SymbolContext &addr_context, const char *step_in_target, 1432 lldb::RunMode stop_other_threads, Status &status, 1433 LazyBool step_in_avoids_code_without_debug_info, 1434 LazyBool step_out_avoids_code_without_debug_info) { 1435 return QueueThreadPlanForStepInRange( 1436 abort_other_plans, line_entry.GetSameLineContiguousAddressRange(), 1437 addr_context, step_in_target, stop_other_threads, status, 1438 step_in_avoids_code_without_debug_info, 1439 step_out_avoids_code_without_debug_info); 1440 } 1441 1442 ThreadPlanSP Thread::QueueThreadPlanForStepOut( 1443 bool abort_other_plans, SymbolContext *addr_context, bool first_insn, 1444 bool stop_other_threads, Vote stop_vote, Vote run_vote, uint32_t frame_idx, 1445 Status &status, LazyBool step_out_avoids_code_without_debug_info) { 1446 ThreadPlanSP thread_plan_sp(new ThreadPlanStepOut( 1447 *this, addr_context, first_insn, stop_other_threads, stop_vote, run_vote, 1448 frame_idx, step_out_avoids_code_without_debug_info)); 1449 1450 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1451 return thread_plan_sp; 1452 } 1453 1454 ThreadPlanSP Thread::QueueThreadPlanForStepOutNoShouldStop( 1455 bool abort_other_plans, SymbolContext *addr_context, bool first_insn, 1456 bool stop_other_threads, Vote stop_vote, Vote run_vote, uint32_t frame_idx, 1457 Status &status, bool continue_to_next_branch) { 1458 const bool calculate_return_value = 1459 false; // No need to calculate the return value here. 1460 ThreadPlanSP thread_plan_sp(new ThreadPlanStepOut( 1461 *this, addr_context, first_insn, stop_other_threads, stop_vote, run_vote, 1462 frame_idx, eLazyBoolNo, continue_to_next_branch, calculate_return_value)); 1463 1464 ThreadPlanStepOut *new_plan = 1465 static_cast<ThreadPlanStepOut *>(thread_plan_sp.get()); 1466 new_plan->ClearShouldStopHereCallbacks(); 1467 1468 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1469 return thread_plan_sp; 1470 } 1471 1472 ThreadPlanSP Thread::QueueThreadPlanForStepThrough(StackID &return_stack_id, 1473 bool abort_other_plans, 1474 bool stop_other_threads, 1475 Status &status) { 1476 ThreadPlanSP thread_plan_sp( 1477 new ThreadPlanStepThrough(*this, return_stack_id, stop_other_threads)); 1478 if (!thread_plan_sp || !thread_plan_sp->ValidatePlan(nullptr)) 1479 return ThreadPlanSP(); 1480 1481 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1482 return thread_plan_sp; 1483 } 1484 1485 ThreadPlanSP Thread::QueueThreadPlanForRunToAddress(bool abort_other_plans, 1486 Address &target_addr, 1487 bool stop_other_threads, 1488 Status &status) { 1489 ThreadPlanSP thread_plan_sp( 1490 new ThreadPlanRunToAddress(*this, target_addr, stop_other_threads)); 1491 1492 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1493 return thread_plan_sp; 1494 } 1495 1496 ThreadPlanSP Thread::QueueThreadPlanForStepUntil( 1497 bool abort_other_plans, lldb::addr_t *address_list, size_t num_addresses, 1498 bool stop_other_threads, uint32_t frame_idx, Status &status) { 1499 ThreadPlanSP thread_plan_sp(new ThreadPlanStepUntil( 1500 *this, address_list, num_addresses, stop_other_threads, frame_idx)); 1501 1502 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1503 return thread_plan_sp; 1504 } 1505 1506 lldb::ThreadPlanSP Thread::QueueThreadPlanForStepScripted( 1507 bool abort_other_plans, const char *class_name, bool stop_other_threads, 1508 Status &status) { 1509 ThreadPlanSP thread_plan_sp(new ThreadPlanPython(*this, class_name)); 1510 1511 status = QueueThreadPlan(thread_plan_sp, abort_other_plans); 1512 return thread_plan_sp; 1513 } 1514 1515 uint32_t Thread::GetIndexID() const { return m_index_id; } 1516 1517 static void PrintPlanElement(Stream *s, const ThreadPlanSP &plan, 1518 lldb::DescriptionLevel desc_level, 1519 int32_t elem_idx) { 1520 s->IndentMore(); 1521 s->Indent(); 1522 s->Printf("Element %d: ", elem_idx); 1523 plan->GetDescription(s, desc_level); 1524 s->EOL(); 1525 s->IndentLess(); 1526 } 1527 1528 static void PrintPlanStack(Stream *s, 1529 const std::vector<lldb::ThreadPlanSP> &plan_stack, 1530 lldb::DescriptionLevel desc_level, 1531 bool include_internal) { 1532 int32_t print_idx = 0; 1533 for (ThreadPlanSP plan_sp : plan_stack) { 1534 if (include_internal || !plan_sp->GetPrivate()) { 1535 PrintPlanElement(s, plan_sp, desc_level, print_idx++); 1536 } 1537 } 1538 } 1539 1540 void Thread::DumpThreadPlans(Stream *s, lldb::DescriptionLevel desc_level, 1541 bool include_internal, 1542 bool ignore_boring_threads) const { 1543 uint32_t stack_size; 1544 1545 if (ignore_boring_threads) { 1546 uint32_t stack_size = m_plan_stack.size(); 1547 uint32_t completed_stack_size = m_completed_plan_stack.size(); 1548 uint32_t discarded_stack_size = m_discarded_plan_stack.size(); 1549 if (stack_size == 1 && completed_stack_size == 0 && 1550 discarded_stack_size == 0) { 1551 s->Printf("thread #%u: tid = 0x%4.4" PRIx64 "\n", GetIndexID(), GetID()); 1552 s->IndentMore(); 1553 s->Indent(); 1554 s->Printf("No active thread plans\n"); 1555 s->IndentLess(); 1556 return; 1557 } 1558 } 1559 1560 s->Indent(); 1561 s->Printf("thread #%u: tid = 0x%4.4" PRIx64 ":\n", GetIndexID(), GetID()); 1562 s->IndentMore(); 1563 s->Indent(); 1564 s->Printf("Active plan stack:\n"); 1565 PrintPlanStack(s, m_plan_stack, desc_level, include_internal); 1566 1567 stack_size = m_completed_plan_stack.size(); 1568 if (stack_size > 0) { 1569 s->Indent(); 1570 s->Printf("Completed Plan Stack:\n"); 1571 PrintPlanStack(s, m_completed_plan_stack, desc_level, include_internal); 1572 } 1573 1574 stack_size = m_discarded_plan_stack.size(); 1575 if (stack_size > 0) { 1576 s->Indent(); 1577 s->Printf("Discarded Plan Stack:\n"); 1578 PrintPlanStack(s, m_discarded_plan_stack, desc_level, include_internal); 1579 } 1580 1581 s->IndentLess(); 1582 } 1583 1584 TargetSP Thread::CalculateTarget() { 1585 TargetSP target_sp; 1586 ProcessSP process_sp(GetProcess()); 1587 if (process_sp) 1588 target_sp = process_sp->CalculateTarget(); 1589 return target_sp; 1590 } 1591 1592 ProcessSP Thread::CalculateProcess() { return GetProcess(); } 1593 1594 ThreadSP Thread::CalculateThread() { return shared_from_this(); } 1595 1596 StackFrameSP Thread::CalculateStackFrame() { return StackFrameSP(); } 1597 1598 void Thread::CalculateExecutionContext(ExecutionContext &exe_ctx) { 1599 exe_ctx.SetContext(shared_from_this()); 1600 } 1601 1602 StackFrameListSP Thread::GetStackFrameList() { 1603 std::lock_guard<std::recursive_mutex> guard(m_frame_mutex); 1604 1605 if (!m_curr_frames_sp) 1606 m_curr_frames_sp = 1607 std::make_shared<StackFrameList>(*this, m_prev_frames_sp, true); 1608 1609 return m_curr_frames_sp; 1610 } 1611 1612 void Thread::ClearStackFrames() { 1613 std::lock_guard<std::recursive_mutex> guard(m_frame_mutex); 1614 1615 Unwind *unwinder = GetUnwinder(); 1616 if (unwinder) 1617 unwinder->Clear(); 1618 1619 // Only store away the old "reference" StackFrameList if we got all its 1620 // frames: 1621 // FIXME: At some point we can try to splice in the frames we have fetched 1622 // into 1623 // the new frame as we make it, but let's not try that now. 1624 if (m_curr_frames_sp && m_curr_frames_sp->GetAllFramesFetched()) 1625 m_prev_frames_sp.swap(m_curr_frames_sp); 1626 m_curr_frames_sp.reset(); 1627 1628 m_extended_info.reset(); 1629 m_extended_info_fetched = false; 1630 } 1631 1632 lldb::StackFrameSP Thread::GetFrameWithConcreteFrameIndex(uint32_t unwind_idx) { 1633 return GetStackFrameList()->GetFrameWithConcreteFrameIndex(unwind_idx); 1634 } 1635 1636 Status Thread::ReturnFromFrameWithIndex(uint32_t frame_idx, 1637 lldb::ValueObjectSP return_value_sp, 1638 bool broadcast) { 1639 StackFrameSP frame_sp = GetStackFrameAtIndex(frame_idx); 1640 Status return_error; 1641 1642 if (!frame_sp) { 1643 return_error.SetErrorStringWithFormat( 1644 "Could not find frame with index %d in thread 0x%" PRIx64 ".", 1645 frame_idx, GetID()); 1646 } 1647 1648 return ReturnFromFrame(frame_sp, return_value_sp, broadcast); 1649 } 1650 1651 Status Thread::ReturnFromFrame(lldb::StackFrameSP frame_sp, 1652 lldb::ValueObjectSP return_value_sp, 1653 bool broadcast) { 1654 Status return_error; 1655 1656 if (!frame_sp) { 1657 return_error.SetErrorString("Can't return to a null frame."); 1658 return return_error; 1659 } 1660 1661 Thread *thread = frame_sp->GetThread().get(); 1662 uint32_t older_frame_idx = frame_sp->GetFrameIndex() + 1; 1663 StackFrameSP older_frame_sp = thread->GetStackFrameAtIndex(older_frame_idx); 1664 if (!older_frame_sp) { 1665 return_error.SetErrorString("No older frame to return to."); 1666 return return_error; 1667 } 1668 1669 if (return_value_sp) { 1670 lldb::ABISP abi = thread->GetProcess()->GetABI(); 1671 if (!abi) { 1672 return_error.SetErrorString("Could not find ABI to set return value."); 1673 return return_error; 1674 } 1675 SymbolContext sc = frame_sp->GetSymbolContext(eSymbolContextFunction); 1676 1677 // FIXME: ValueObject::Cast doesn't currently work correctly, at least not 1678 // for scalars. 1679 // Turn that back on when that works. 1680 if (/* DISABLES CODE */ (0) && sc.function != nullptr) { 1681 Type *function_type = sc.function->GetType(); 1682 if (function_type) { 1683 CompilerType return_type = 1684 sc.function->GetCompilerType().GetFunctionReturnType(); 1685 if (return_type) { 1686 StreamString s; 1687 return_type.DumpTypeDescription(&s); 1688 ValueObjectSP cast_value_sp = return_value_sp->Cast(return_type); 1689 if (cast_value_sp) { 1690 cast_value_sp->SetFormat(eFormatHex); 1691 return_value_sp = cast_value_sp; 1692 } 1693 } 1694 } 1695 } 1696 1697 return_error = abi->SetReturnValueObject(older_frame_sp, return_value_sp); 1698 if (!return_error.Success()) 1699 return return_error; 1700 } 1701 1702 // Now write the return registers for the chosen frame: Note, we can't use 1703 // ReadAllRegisterValues->WriteAllRegisterValues, since the read & write cook 1704 // their data 1705 1706 StackFrameSP youngest_frame_sp = thread->GetStackFrameAtIndex(0); 1707 if (youngest_frame_sp) { 1708 lldb::RegisterContextSP reg_ctx_sp(youngest_frame_sp->GetRegisterContext()); 1709 if (reg_ctx_sp) { 1710 bool copy_success = reg_ctx_sp->CopyFromRegisterContext( 1711 older_frame_sp->GetRegisterContext()); 1712 if (copy_success) { 1713 thread->DiscardThreadPlans(true); 1714 thread->ClearStackFrames(); 1715 if (broadcast && EventTypeHasListeners(eBroadcastBitStackChanged)) 1716 BroadcastEvent(eBroadcastBitStackChanged, 1717 new ThreadEventData(this->shared_from_this())); 1718 } else { 1719 return_error.SetErrorString("Could not reset register values."); 1720 } 1721 } else { 1722 return_error.SetErrorString("Frame has no register context."); 1723 } 1724 } else { 1725 return_error.SetErrorString("Returned past top frame."); 1726 } 1727 return return_error; 1728 } 1729 1730 static void DumpAddressList(Stream &s, const std::vector<Address> &list, 1731 ExecutionContextScope *exe_scope) { 1732 for (size_t n = 0; n < list.size(); n++) { 1733 s << "\t"; 1734 list[n].Dump(&s, exe_scope, Address::DumpStyleResolvedDescription, 1735 Address::DumpStyleSectionNameOffset); 1736 s << "\n"; 1737 } 1738 } 1739 1740 Status Thread::JumpToLine(const FileSpec &file, uint32_t line, 1741 bool can_leave_function, std::string *warnings) { 1742 ExecutionContext exe_ctx(GetStackFrameAtIndex(0)); 1743 Target *target = exe_ctx.GetTargetPtr(); 1744 TargetSP target_sp = exe_ctx.GetTargetSP(); 1745 RegisterContext *reg_ctx = exe_ctx.GetRegisterContext(); 1746 StackFrame *frame = exe_ctx.GetFramePtr(); 1747 const SymbolContext &sc = frame->GetSymbolContext(eSymbolContextFunction); 1748 1749 // Find candidate locations. 1750 std::vector<Address> candidates, within_function, outside_function; 1751 target->GetImages().FindAddressesForLine(target_sp, file, line, sc.function, 1752 within_function, outside_function); 1753 1754 // If possible, we try and stay within the current function. Within a 1755 // function, we accept multiple locations (optimized code may do this, 1756 // there's no solution here so we do the best we can). However if we're 1757 // trying to leave the function, we don't know how to pick the right 1758 // location, so if there's more than one then we bail. 1759 if (!within_function.empty()) 1760 candidates = within_function; 1761 else if (outside_function.size() == 1 && can_leave_function) 1762 candidates = outside_function; 1763 1764 // Check if we got anything. 1765 if (candidates.empty()) { 1766 if (outside_function.empty()) { 1767 return Status("Cannot locate an address for %s:%i.", 1768 file.GetFilename().AsCString(), line); 1769 } else if (outside_function.size() == 1) { 1770 return Status("%s:%i is outside the current function.", 1771 file.GetFilename().AsCString(), line); 1772 } else { 1773 StreamString sstr; 1774 DumpAddressList(sstr, outside_function, target); 1775 return Status("%s:%i has multiple candidate locations:\n%s", 1776 file.GetFilename().AsCString(), line, sstr.GetData()); 1777 } 1778 } 1779 1780 // Accept the first location, warn about any others. 1781 Address dest = candidates[0]; 1782 if (warnings && candidates.size() > 1) { 1783 StreamString sstr; 1784 sstr.Printf("%s:%i appears multiple times in this function, selecting the " 1785 "first location:\n", 1786 file.GetFilename().AsCString(), line); 1787 DumpAddressList(sstr, candidates, target); 1788 *warnings = sstr.GetString(); 1789 } 1790 1791 if (!reg_ctx->SetPC(dest)) 1792 return Status("Cannot change PC to target address."); 1793 1794 return Status(); 1795 } 1796 1797 void Thread::DumpUsingSettingsFormat(Stream &strm, uint32_t frame_idx, 1798 bool stop_format) { 1799 ExecutionContext exe_ctx(shared_from_this()); 1800 Process *process = exe_ctx.GetProcessPtr(); 1801 if (process == nullptr) 1802 return; 1803 1804 StackFrameSP frame_sp; 1805 SymbolContext frame_sc; 1806 if (frame_idx != LLDB_INVALID_FRAME_ID) { 1807 frame_sp = GetStackFrameAtIndex(frame_idx); 1808 if (frame_sp) { 1809 exe_ctx.SetFrameSP(frame_sp); 1810 frame_sc = frame_sp->GetSymbolContext(eSymbolContextEverything); 1811 } 1812 } 1813 1814 const FormatEntity::Entry *thread_format; 1815 if (stop_format) 1816 thread_format = exe_ctx.GetTargetRef().GetDebugger().GetThreadStopFormat(); 1817 else 1818 thread_format = exe_ctx.GetTargetRef().GetDebugger().GetThreadFormat(); 1819 1820 assert(thread_format); 1821 1822 FormatEntity::Format(*thread_format, strm, frame_sp ? &frame_sc : nullptr, 1823 &exe_ctx, nullptr, nullptr, false, false); 1824 } 1825 1826 void Thread::SettingsInitialize() {} 1827 1828 void Thread::SettingsTerminate() {} 1829 1830 lldb::addr_t Thread::GetThreadPointer() { return LLDB_INVALID_ADDRESS; } 1831 1832 addr_t Thread::GetThreadLocalData(const ModuleSP module, 1833 lldb::addr_t tls_file_addr) { 1834 // The default implementation is to ask the dynamic loader for it. This can 1835 // be overridden for specific platforms. 1836 DynamicLoader *loader = GetProcess()->GetDynamicLoader(); 1837 if (loader) 1838 return loader->GetThreadLocalData(module, shared_from_this(), 1839 tls_file_addr); 1840 else 1841 return LLDB_INVALID_ADDRESS; 1842 } 1843 1844 bool Thread::SafeToCallFunctions() { 1845 Process *process = GetProcess().get(); 1846 if (process) { 1847 SystemRuntime *runtime = process->GetSystemRuntime(); 1848 if (runtime) { 1849 return runtime->SafeToCallFunctionsOnThisThread(shared_from_this()); 1850 } 1851 } 1852 return true; 1853 } 1854 1855 lldb::StackFrameSP 1856 Thread::GetStackFrameSPForStackFramePtr(StackFrame *stack_frame_ptr) { 1857 return GetStackFrameList()->GetStackFrameSPForStackFramePtr(stack_frame_ptr); 1858 } 1859 1860 const char *Thread::StopReasonAsCString(lldb::StopReason reason) { 1861 switch (reason) { 1862 case eStopReasonInvalid: 1863 return "invalid"; 1864 case eStopReasonNone: 1865 return "none"; 1866 case eStopReasonTrace: 1867 return "trace"; 1868 case eStopReasonBreakpoint: 1869 return "breakpoint"; 1870 case eStopReasonWatchpoint: 1871 return "watchpoint"; 1872 case eStopReasonSignal: 1873 return "signal"; 1874 case eStopReasonException: 1875 return "exception"; 1876 case eStopReasonExec: 1877 return "exec"; 1878 case eStopReasonPlanComplete: 1879 return "plan complete"; 1880 case eStopReasonThreadExiting: 1881 return "thread exiting"; 1882 case eStopReasonInstrumentation: 1883 return "instrumentation break"; 1884 } 1885 1886 static char unknown_state_string[64]; 1887 snprintf(unknown_state_string, sizeof(unknown_state_string), 1888 "StopReason = %i", reason); 1889 return unknown_state_string; 1890 } 1891 1892 const char *Thread::RunModeAsCString(lldb::RunMode mode) { 1893 switch (mode) { 1894 case eOnlyThisThread: 1895 return "only this thread"; 1896 case eAllThreads: 1897 return "all threads"; 1898 case eOnlyDuringStepping: 1899 return "only during stepping"; 1900 } 1901 1902 static char unknown_state_string[64]; 1903 snprintf(unknown_state_string, sizeof(unknown_state_string), "RunMode = %i", 1904 mode); 1905 return unknown_state_string; 1906 } 1907 1908 size_t Thread::GetStatus(Stream &strm, uint32_t start_frame, 1909 uint32_t num_frames, uint32_t num_frames_with_source, 1910 bool stop_format, bool only_stacks) { 1911 1912 if (!only_stacks) { 1913 ExecutionContext exe_ctx(shared_from_this()); 1914 Target *target = exe_ctx.GetTargetPtr(); 1915 Process *process = exe_ctx.GetProcessPtr(); 1916 strm.Indent(); 1917 bool is_selected = false; 1918 if (process) { 1919 if (process->GetThreadList().GetSelectedThread().get() == this) 1920 is_selected = true; 1921 } 1922 strm.Printf("%c ", is_selected ? '*' : ' '); 1923 if (target && target->GetDebugger().GetUseExternalEditor()) { 1924 StackFrameSP frame_sp = GetStackFrameAtIndex(start_frame); 1925 if (frame_sp) { 1926 SymbolContext frame_sc( 1927 frame_sp->GetSymbolContext(eSymbolContextLineEntry)); 1928 if (frame_sc.line_entry.line != 0 && frame_sc.line_entry.file) { 1929 Host::OpenFileInExternalEditor(frame_sc.line_entry.file, 1930 frame_sc.line_entry.line); 1931 } 1932 } 1933 } 1934 1935 DumpUsingSettingsFormat(strm, start_frame, stop_format); 1936 } 1937 1938 size_t num_frames_shown = 0; 1939 if (num_frames > 0) { 1940 strm.IndentMore(); 1941 1942 const bool show_frame_info = true; 1943 const bool show_frame_unique = only_stacks; 1944 const char *selected_frame_marker = nullptr; 1945 if (num_frames == 1 || only_stacks || 1946 (GetID() != GetProcess()->GetThreadList().GetSelectedThread()->GetID())) 1947 strm.IndentMore(); 1948 else 1949 selected_frame_marker = "* "; 1950 1951 num_frames_shown = GetStackFrameList()->GetStatus( 1952 strm, start_frame, num_frames, show_frame_info, num_frames_with_source, 1953 show_frame_unique, selected_frame_marker); 1954 if (num_frames == 1) 1955 strm.IndentLess(); 1956 strm.IndentLess(); 1957 } 1958 return num_frames_shown; 1959 } 1960 1961 bool Thread::GetDescription(Stream &strm, lldb::DescriptionLevel level, 1962 bool print_json_thread, bool print_json_stopinfo) { 1963 const bool stop_format = false; 1964 DumpUsingSettingsFormat(strm, 0, stop_format); 1965 strm.Printf("\n"); 1966 1967 StructuredData::ObjectSP thread_info = GetExtendedInfo(); 1968 1969 if (print_json_thread || print_json_stopinfo) { 1970 if (thread_info && print_json_thread) { 1971 thread_info->Dump(strm); 1972 strm.Printf("\n"); 1973 } 1974 1975 if (print_json_stopinfo && m_stop_info_sp) { 1976 StructuredData::ObjectSP stop_info = m_stop_info_sp->GetExtendedInfo(); 1977 if (stop_info) { 1978 stop_info->Dump(strm); 1979 strm.Printf("\n"); 1980 } 1981 } 1982 1983 return true; 1984 } 1985 1986 if (thread_info) { 1987 StructuredData::ObjectSP activity = 1988 thread_info->GetObjectForDotSeparatedPath("activity"); 1989 StructuredData::ObjectSP breadcrumb = 1990 thread_info->GetObjectForDotSeparatedPath("breadcrumb"); 1991 StructuredData::ObjectSP messages = 1992 thread_info->GetObjectForDotSeparatedPath("trace_messages"); 1993 1994 bool printed_activity = false; 1995 if (activity && activity->GetType() == eStructuredDataTypeDictionary) { 1996 StructuredData::Dictionary *activity_dict = activity->GetAsDictionary(); 1997 StructuredData::ObjectSP id = activity_dict->GetValueForKey("id"); 1998 StructuredData::ObjectSP name = activity_dict->GetValueForKey("name"); 1999 if (name && name->GetType() == eStructuredDataTypeString && id && 2000 id->GetType() == eStructuredDataTypeInteger) { 2001 strm.Format(" Activity '{0}', {1:x}\n", 2002 name->GetAsString()->GetValue(), 2003 id->GetAsInteger()->GetValue()); 2004 } 2005 printed_activity = true; 2006 } 2007 bool printed_breadcrumb = false; 2008 if (breadcrumb && breadcrumb->GetType() == eStructuredDataTypeDictionary) { 2009 if (printed_activity) 2010 strm.Printf("\n"); 2011 StructuredData::Dictionary *breadcrumb_dict = 2012 breadcrumb->GetAsDictionary(); 2013 StructuredData::ObjectSP breadcrumb_text = 2014 breadcrumb_dict->GetValueForKey("name"); 2015 if (breadcrumb_text && 2016 breadcrumb_text->GetType() == eStructuredDataTypeString) { 2017 strm.Format(" Current Breadcrumb: {0}\n", 2018 breadcrumb_text->GetAsString()->GetValue()); 2019 } 2020 printed_breadcrumb = true; 2021 } 2022 if (messages && messages->GetType() == eStructuredDataTypeArray) { 2023 if (printed_breadcrumb) 2024 strm.Printf("\n"); 2025 StructuredData::Array *messages_array = messages->GetAsArray(); 2026 const size_t msg_count = messages_array->GetSize(); 2027 if (msg_count > 0) { 2028 strm.Printf(" %zu trace messages:\n", msg_count); 2029 for (size_t i = 0; i < msg_count; i++) { 2030 StructuredData::ObjectSP message = messages_array->GetItemAtIndex(i); 2031 if (message && message->GetType() == eStructuredDataTypeDictionary) { 2032 StructuredData::Dictionary *message_dict = 2033 message->GetAsDictionary(); 2034 StructuredData::ObjectSP message_text = 2035 message_dict->GetValueForKey("message"); 2036 if (message_text && 2037 message_text->GetType() == eStructuredDataTypeString) { 2038 strm.Format(" {0}\n", message_text->GetAsString()->GetValue()); 2039 } 2040 } 2041 } 2042 } 2043 } 2044 } 2045 2046 return true; 2047 } 2048 2049 size_t Thread::GetStackFrameStatus(Stream &strm, uint32_t first_frame, 2050 uint32_t num_frames, bool show_frame_info, 2051 uint32_t num_frames_with_source) { 2052 return GetStackFrameList()->GetStatus( 2053 strm, first_frame, num_frames, show_frame_info, num_frames_with_source); 2054 } 2055 2056 Unwind *Thread::GetUnwinder() { 2057 if (!m_unwinder_up) { 2058 const ArchSpec target_arch(CalculateTarget()->GetArchitecture()); 2059 const llvm::Triple::ArchType machine = target_arch.GetMachine(); 2060 switch (machine) { 2061 case llvm::Triple::x86_64: 2062 case llvm::Triple::x86: 2063 case llvm::Triple::arm: 2064 case llvm::Triple::aarch64: 2065 case llvm::Triple::thumb: 2066 case llvm::Triple::mips: 2067 case llvm::Triple::mipsel: 2068 case llvm::Triple::mips64: 2069 case llvm::Triple::mips64el: 2070 case llvm::Triple::ppc: 2071 case llvm::Triple::ppc64: 2072 case llvm::Triple::ppc64le: 2073 case llvm::Triple::systemz: 2074 case llvm::Triple::hexagon: 2075 m_unwinder_up.reset(new UnwindLLDB(*this)); 2076 break; 2077 2078 default: 2079 if (target_arch.GetTriple().getVendor() == llvm::Triple::Apple) 2080 m_unwinder_up.reset(new UnwindMacOSXFrameBackchain(*this)); 2081 break; 2082 } 2083 } 2084 return m_unwinder_up.get(); 2085 } 2086 2087 void Thread::Flush() { 2088 ClearStackFrames(); 2089 m_reg_context_sp.reset(); 2090 } 2091 2092 bool Thread::IsStillAtLastBreakpointHit() { 2093 // If we are currently stopped at a breakpoint, always return that stopinfo 2094 // and don't reset it. This allows threads to maintain their breakpoint 2095 // stopinfo, such as when thread-stepping in multithreaded programs. 2096 if (m_stop_info_sp) { 2097 StopReason stop_reason = m_stop_info_sp->GetStopReason(); 2098 if (stop_reason == lldb::eStopReasonBreakpoint) { 2099 uint64_t value = m_stop_info_sp->GetValue(); 2100 lldb::RegisterContextSP reg_ctx_sp(GetRegisterContext()); 2101 if (reg_ctx_sp) { 2102 lldb::addr_t pc = reg_ctx_sp->GetPC(); 2103 BreakpointSiteSP bp_site_sp = 2104 GetProcess()->GetBreakpointSiteList().FindByAddress(pc); 2105 if (bp_site_sp && static_cast<break_id_t>(value) == bp_site_sp->GetID()) 2106 return true; 2107 } 2108 } 2109 } 2110 return false; 2111 } 2112 2113 Status Thread::StepIn(bool source_step, 2114 LazyBool step_in_avoids_code_without_debug_info, 2115 LazyBool step_out_avoids_code_without_debug_info) 2116 2117 { 2118 Status error; 2119 Process *process = GetProcess().get(); 2120 if (StateIsStoppedState(process->GetState(), true)) { 2121 StackFrameSP frame_sp = GetStackFrameAtIndex(0); 2122 ThreadPlanSP new_plan_sp; 2123 const lldb::RunMode run_mode = eOnlyThisThread; 2124 const bool abort_other_plans = false; 2125 2126 if (source_step && frame_sp && frame_sp->HasDebugInformation()) { 2127 SymbolContext sc(frame_sp->GetSymbolContext(eSymbolContextEverything)); 2128 new_plan_sp = QueueThreadPlanForStepInRange( 2129 abort_other_plans, sc.line_entry, sc, nullptr, run_mode, error, 2130 step_in_avoids_code_without_debug_info, 2131 step_out_avoids_code_without_debug_info); 2132 } else { 2133 new_plan_sp = QueueThreadPlanForStepSingleInstruction( 2134 false, abort_other_plans, run_mode, error); 2135 } 2136 2137 new_plan_sp->SetIsMasterPlan(true); 2138 new_plan_sp->SetOkayToDiscard(false); 2139 2140 // Why do we need to set the current thread by ID here??? 2141 process->GetThreadList().SetSelectedThreadByID(GetID()); 2142 error = process->Resume(); 2143 } else { 2144 error.SetErrorString("process not stopped"); 2145 } 2146 return error; 2147 } 2148 2149 Status Thread::StepOver(bool source_step, 2150 LazyBool step_out_avoids_code_without_debug_info) { 2151 Status error; 2152 Process *process = GetProcess().get(); 2153 if (StateIsStoppedState(process->GetState(), true)) { 2154 StackFrameSP frame_sp = GetStackFrameAtIndex(0); 2155 ThreadPlanSP new_plan_sp; 2156 2157 const lldb::RunMode run_mode = eOnlyThisThread; 2158 const bool abort_other_plans = false; 2159 2160 if (source_step && frame_sp && frame_sp->HasDebugInformation()) { 2161 SymbolContext sc(frame_sp->GetSymbolContext(eSymbolContextEverything)); 2162 new_plan_sp = QueueThreadPlanForStepOverRange( 2163 abort_other_plans, sc.line_entry, sc, run_mode, error, 2164 step_out_avoids_code_without_debug_info); 2165 } else { 2166 new_plan_sp = QueueThreadPlanForStepSingleInstruction( 2167 true, abort_other_plans, run_mode, error); 2168 } 2169 2170 new_plan_sp->SetIsMasterPlan(true); 2171 new_plan_sp->SetOkayToDiscard(false); 2172 2173 // Why do we need to set the current thread by ID here??? 2174 process->GetThreadList().SetSelectedThreadByID(GetID()); 2175 error = process->Resume(); 2176 } else { 2177 error.SetErrorString("process not stopped"); 2178 } 2179 return error; 2180 } 2181 2182 Status Thread::StepOut() { 2183 Status error; 2184 Process *process = GetProcess().get(); 2185 if (StateIsStoppedState(process->GetState(), true)) { 2186 const bool first_instruction = false; 2187 const bool stop_other_threads = false; 2188 const bool abort_other_plans = false; 2189 2190 ThreadPlanSP new_plan_sp(QueueThreadPlanForStepOut( 2191 abort_other_plans, nullptr, first_instruction, stop_other_threads, 2192 eVoteYes, eVoteNoOpinion, 0, error)); 2193 2194 new_plan_sp->SetIsMasterPlan(true); 2195 new_plan_sp->SetOkayToDiscard(false); 2196 2197 // Why do we need to set the current thread by ID here??? 2198 process->GetThreadList().SetSelectedThreadByID(GetID()); 2199 error = process->Resume(); 2200 } else { 2201 error.SetErrorString("process not stopped"); 2202 } 2203 return error; 2204 } 2205 2206 ValueObjectSP Thread::GetCurrentException() { 2207 if (auto frame_sp = GetStackFrameAtIndex(0)) 2208 if (auto recognized_frame = frame_sp->GetRecognizedFrame()) 2209 if (auto e = recognized_frame->GetExceptionObject()) 2210 return e; 2211 2212 // FIXME: For now, only ObjC exceptions are supported. This should really 2213 // iterate over all language runtimes and ask them all to give us the current 2214 // exception. 2215 if (auto runtime = GetProcess()->GetObjCLanguageRuntime()) 2216 if (auto e = runtime->GetExceptionObjectForThread(shared_from_this())) 2217 return e; 2218 2219 return ValueObjectSP(); 2220 } 2221 2222 ThreadSP Thread::GetCurrentExceptionBacktrace() { 2223 ValueObjectSP exception = GetCurrentException(); 2224 if (!exception) return ThreadSP(); 2225 2226 // FIXME: For now, only ObjC exceptions are supported. This should really 2227 // iterate over all language runtimes and ask them all to give us the current 2228 // exception. 2229 auto runtime = GetProcess()->GetObjCLanguageRuntime(); 2230 if (!runtime) return ThreadSP(); 2231 2232 return runtime->GetBacktraceThreadFromException(exception); 2233 } 2234