xref: /openbsd-src/gnu/llvm/lldb/source/Target/Thread.cpp (revision 4e1ee0786f11cc571bd0be17d38e46f635c719fc)
1 //===-- Thread.cpp --------------------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "lldb/Target/Thread.h"
10 #include "lldb/Breakpoint/BreakpointLocation.h"
11 #include "lldb/Core/Debugger.h"
12 #include "lldb/Core/FormatEntity.h"
13 #include "lldb/Core/Module.h"
14 #include "lldb/Core/StructuredDataImpl.h"
15 #include "lldb/Core/ValueObject.h"
16 #include "lldb/Host/Host.h"
17 #include "lldb/Interpreter/OptionValueFileSpecList.h"
18 #include "lldb/Interpreter/OptionValueProperties.h"
19 #include "lldb/Interpreter/Property.h"
20 #include "lldb/Symbol/Function.h"
21 #include "lldb/Target/ABI.h"
22 #include "lldb/Target/DynamicLoader.h"
23 #include "lldb/Target/ExecutionContext.h"
24 #include "lldb/Target/LanguageRuntime.h"
25 #include "lldb/Target/Process.h"
26 #include "lldb/Target/RegisterContext.h"
27 #include "lldb/Target/StackFrameRecognizer.h"
28 #include "lldb/Target/StopInfo.h"
29 #include "lldb/Target/SystemRuntime.h"
30 #include "lldb/Target/Target.h"
31 #include "lldb/Target/ThreadPlan.h"
32 #include "lldb/Target/ThreadPlanBase.h"
33 #include "lldb/Target/ThreadPlanCallFunction.h"
34 #include "lldb/Target/ThreadPlanPython.h"
35 #include "lldb/Target/ThreadPlanRunToAddress.h"
36 #include "lldb/Target/ThreadPlanStack.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/UnwindLLDB.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 #define LLDB_PROPERTIES_thread
67 #include "TargetProperties.inc"
68 
69 enum {
70 #define LLDB_PROPERTIES_thread
71 #include "TargetPropertiesEnum.inc"
72 };
73 
74 class ThreadOptionValueProperties : public OptionValueProperties {
75 public:
76   ThreadOptionValueProperties(ConstString name)
77       : OptionValueProperties(name) {}
78 
79   // This constructor is used when creating ThreadOptionValueProperties when it
80   // is part of a new lldb_private::Thread instance. It will copy all current
81   // global property values as needed
82   ThreadOptionValueProperties(ThreadProperties *global_properties)
83       : OptionValueProperties(*global_properties->GetValueProperties()) {}
84 
85   const Property *GetPropertyAtIndex(const ExecutionContext *exe_ctx,
86                                      bool will_modify,
87                                      uint32_t idx) const override {
88     // When getting the value for a key from the thread options, we will always
89     // try and grab the setting from the current thread if there is one. Else
90     // we just use the one from this instance.
91     if (exe_ctx) {
92       Thread *thread = exe_ctx->GetThreadPtr();
93       if (thread) {
94         ThreadOptionValueProperties *instance_properties =
95             static_cast<ThreadOptionValueProperties *>(
96                 thread->GetValueProperties().get());
97         if (this != instance_properties)
98           return instance_properties->ProtectedGetPropertyAtIndex(idx);
99       }
100     }
101     return ProtectedGetPropertyAtIndex(idx);
102   }
103 };
104 
105 ThreadProperties::ThreadProperties(bool is_global) : Properties() {
106   if (is_global) {
107     m_collection_sp =
108         std::make_shared<ThreadOptionValueProperties>(ConstString("thread"));
109     m_collection_sp->Initialize(g_thread_properties);
110   } else
111     m_collection_sp = std::make_shared<ThreadOptionValueProperties>(
112         Thread::GetGlobalProperties().get());
113 }
114 
115 ThreadProperties::~ThreadProperties() = default;
116 
117 const RegularExpression *ThreadProperties::GetSymbolsToAvoidRegexp() {
118   const uint32_t idx = ePropertyStepAvoidRegex;
119   return m_collection_sp->GetPropertyAtIndexAsOptionValueRegex(nullptr, idx);
120 }
121 
122 FileSpecList ThreadProperties::GetLibrariesToAvoid() const {
123   const uint32_t idx = ePropertyStepAvoidLibraries;
124   const OptionValueFileSpecList *option_value =
125       m_collection_sp->GetPropertyAtIndexAsOptionValueFileSpecList(nullptr,
126                                                                    false, idx);
127   assert(option_value);
128   return option_value->GetCurrentValue();
129 }
130 
131 bool ThreadProperties::GetTraceEnabledState() const {
132   const uint32_t idx = ePropertyEnableThreadTrace;
133   return m_collection_sp->GetPropertyAtIndexAsBoolean(
134       nullptr, idx, g_thread_properties[idx].default_uint_value != 0);
135 }
136 
137 bool ThreadProperties::GetStepInAvoidsNoDebug() const {
138   const uint32_t idx = ePropertyStepInAvoidsNoDebug;
139   return m_collection_sp->GetPropertyAtIndexAsBoolean(
140       nullptr, idx, g_thread_properties[idx].default_uint_value != 0);
141 }
142 
143 bool ThreadProperties::GetStepOutAvoidsNoDebug() const {
144   const uint32_t idx = ePropertyStepOutAvoidsNoDebug;
145   return m_collection_sp->GetPropertyAtIndexAsBoolean(
146       nullptr, idx, g_thread_properties[idx].default_uint_value != 0);
147 }
148 
149 uint64_t ThreadProperties::GetMaxBacktraceDepth() const {
150   const uint32_t idx = ePropertyMaxBacktraceDepth;
151   return m_collection_sp->GetPropertyAtIndexAsUInt64(
152       nullptr, idx, g_thread_properties[idx].default_uint_value != 0);
153 }
154 
155 // Thread Event Data
156 
157 ConstString Thread::ThreadEventData::GetFlavorString() {
158   static ConstString g_flavor("Thread::ThreadEventData");
159   return g_flavor;
160 }
161 
162 Thread::ThreadEventData::ThreadEventData(const lldb::ThreadSP thread_sp)
163     : m_thread_sp(thread_sp), m_stack_id() {}
164 
165 Thread::ThreadEventData::ThreadEventData(const lldb::ThreadSP thread_sp,
166                                          const StackID &stack_id)
167     : m_thread_sp(thread_sp), m_stack_id(stack_id) {}
168 
169 Thread::ThreadEventData::ThreadEventData() : m_thread_sp(), m_stack_id() {}
170 
171 Thread::ThreadEventData::~ThreadEventData() = default;
172 
173 void Thread::ThreadEventData::Dump(Stream *s) const {}
174 
175 const Thread::ThreadEventData *
176 Thread::ThreadEventData::GetEventDataFromEvent(const Event *event_ptr) {
177   if (event_ptr) {
178     const EventData *event_data = event_ptr->GetData();
179     if (event_data &&
180         event_data->GetFlavor() == ThreadEventData::GetFlavorString())
181       return static_cast<const ThreadEventData *>(event_ptr->GetData());
182   }
183   return nullptr;
184 }
185 
186 ThreadSP Thread::ThreadEventData::GetThreadFromEvent(const Event *event_ptr) {
187   ThreadSP thread_sp;
188   const ThreadEventData *event_data = GetEventDataFromEvent(event_ptr);
189   if (event_data)
190     thread_sp = event_data->GetThread();
191   return thread_sp;
192 }
193 
194 StackID Thread::ThreadEventData::GetStackIDFromEvent(const Event *event_ptr) {
195   StackID stack_id;
196   const ThreadEventData *event_data = GetEventDataFromEvent(event_ptr);
197   if (event_data)
198     stack_id = event_data->GetStackID();
199   return stack_id;
200 }
201 
202 StackFrameSP
203 Thread::ThreadEventData::GetStackFrameFromEvent(const Event *event_ptr) {
204   const ThreadEventData *event_data = GetEventDataFromEvent(event_ptr);
205   StackFrameSP frame_sp;
206   if (event_data) {
207     ThreadSP thread_sp = event_data->GetThread();
208     if (thread_sp) {
209       frame_sp = thread_sp->GetStackFrameList()->GetFrameWithStackID(
210           event_data->GetStackID());
211     }
212   }
213   return frame_sp;
214 }
215 
216 // Thread class
217 
218 ConstString &Thread::GetStaticBroadcasterClass() {
219   static ConstString class_name("lldb.thread");
220   return class_name;
221 }
222 
223 Thread::Thread(Process &process, lldb::tid_t tid, bool use_invalid_index_id)
224     : ThreadProperties(false), UserID(tid),
225       Broadcaster(process.GetTarget().GetDebugger().GetBroadcasterManager(),
226                   Thread::GetStaticBroadcasterClass().AsCString()),
227       m_process_wp(process.shared_from_this()), m_stop_info_sp(),
228       m_stop_info_stop_id(0), m_stop_info_override_stop_id(0),
229       m_index_id(use_invalid_index_id ? LLDB_INVALID_INDEX32
230                                       : process.GetNextThreadIndexID(tid)),
231       m_reg_context_sp(), m_state(eStateUnloaded), m_state_mutex(),
232       m_frame_mutex(), m_curr_frames_sp(), m_prev_frames_sp(),
233       m_resume_signal(LLDB_INVALID_SIGNAL_NUMBER),
234       m_resume_state(eStateRunning), m_temporary_resume_state(eStateRunning),
235       m_unwinder_up(), m_destroy_called(false),
236       m_override_should_notify(eLazyBoolCalculate),
237       m_extended_info_fetched(false), m_extended_info() {
238   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT));
239   LLDB_LOGF(log, "%p Thread::Thread(tid = 0x%4.4" PRIx64 ")",
240             static_cast<void *>(this), GetID());
241 
242   CheckInWithManager();
243 }
244 
245 Thread::~Thread() {
246   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT));
247   LLDB_LOGF(log, "%p Thread::~Thread(tid = 0x%4.4" PRIx64 ")",
248             static_cast<void *>(this), GetID());
249   /// If you hit this assert, it means your derived class forgot to call
250   /// DoDestroy in its destructor.
251   assert(m_destroy_called);
252 }
253 
254 void Thread::DestroyThread() {
255   m_destroy_called = true;
256   m_stop_info_sp.reset();
257   m_reg_context_sp.reset();
258   m_unwinder_up.reset();
259   std::lock_guard<std::recursive_mutex> guard(m_frame_mutex);
260   m_curr_frames_sp.reset();
261   m_prev_frames_sp.reset();
262 }
263 
264 void Thread::BroadcastSelectedFrameChange(StackID &new_frame_id) {
265   if (EventTypeHasListeners(eBroadcastBitSelectedFrameChanged))
266     BroadcastEvent(eBroadcastBitSelectedFrameChanged,
267                    new ThreadEventData(this->shared_from_this(), new_frame_id));
268 }
269 
270 lldb::StackFrameSP Thread::GetSelectedFrame() {
271   StackFrameListSP stack_frame_list_sp(GetStackFrameList());
272   StackFrameSP frame_sp = stack_frame_list_sp->GetFrameAtIndex(
273       stack_frame_list_sp->GetSelectedFrameIndex());
274   FrameSelectedCallback(frame_sp.get());
275   return frame_sp;
276 }
277 
278 uint32_t Thread::SetSelectedFrame(lldb_private::StackFrame *frame,
279                                   bool broadcast) {
280   uint32_t ret_value = GetStackFrameList()->SetSelectedFrame(frame);
281   if (broadcast)
282     BroadcastSelectedFrameChange(frame->GetStackID());
283   FrameSelectedCallback(frame);
284   return ret_value;
285 }
286 
287 bool Thread::SetSelectedFrameByIndex(uint32_t frame_idx, bool broadcast) {
288   StackFrameSP frame_sp(GetStackFrameList()->GetFrameAtIndex(frame_idx));
289   if (frame_sp) {
290     GetStackFrameList()->SetSelectedFrame(frame_sp.get());
291     if (broadcast)
292       BroadcastSelectedFrameChange(frame_sp->GetStackID());
293     FrameSelectedCallback(frame_sp.get());
294     return true;
295   } else
296     return false;
297 }
298 
299 bool Thread::SetSelectedFrameByIndexNoisily(uint32_t frame_idx,
300                                             Stream &output_stream) {
301   const bool broadcast = true;
302   bool success = SetSelectedFrameByIndex(frame_idx, broadcast);
303   if (success) {
304     StackFrameSP frame_sp = GetSelectedFrame();
305     if (frame_sp) {
306       bool already_shown = false;
307       SymbolContext frame_sc(
308           frame_sp->GetSymbolContext(eSymbolContextLineEntry));
309       if (GetProcess()->GetTarget().GetDebugger().GetUseExternalEditor() &&
310           frame_sc.line_entry.file && frame_sc.line_entry.line != 0) {
311         already_shown = Host::OpenFileInExternalEditor(
312             frame_sc.line_entry.file, frame_sc.line_entry.line);
313       }
314 
315       bool show_frame_info = true;
316       bool show_source = !already_shown;
317       FrameSelectedCallback(frame_sp.get());
318       return frame_sp->GetStatus(output_stream, show_frame_info, show_source);
319     }
320     return false;
321   } else
322     return false;
323 }
324 
325 void Thread::FrameSelectedCallback(StackFrame *frame) {
326   if (!frame)
327     return;
328 
329   if (frame->HasDebugInformation() &&
330       (GetProcess()->GetWarningsOptimization() ||
331        GetProcess()->GetWarningsUnsupportedLanguage())) {
332     SymbolContext sc =
333         frame->GetSymbolContext(eSymbolContextFunction | eSymbolContextModule);
334     GetProcess()->PrintWarningOptimization(sc);
335     GetProcess()->PrintWarningUnsupportedLanguage(sc);
336   }
337 }
338 
339 lldb::StopInfoSP Thread::GetStopInfo() {
340   if (m_destroy_called)
341     return m_stop_info_sp;
342 
343   ThreadPlanSP completed_plan_sp(GetCompletedPlan());
344   ProcessSP process_sp(GetProcess());
345   const uint32_t stop_id = process_sp ? process_sp->GetStopID() : UINT32_MAX;
346 
347   // Here we select the stop info according to priorirty: - m_stop_info_sp (if
348   // not trace) - preset value - completed plan stop info - new value with plan
349   // from completed plan stack - m_stop_info_sp (trace stop reason is OK now) -
350   // ask GetPrivateStopInfo to set stop info
351 
352   bool have_valid_stop_info = m_stop_info_sp &&
353       m_stop_info_sp ->IsValid() &&
354       m_stop_info_stop_id == stop_id;
355   bool have_valid_completed_plan = completed_plan_sp && completed_plan_sp->PlanSucceeded();
356   bool plan_failed = completed_plan_sp && !completed_plan_sp->PlanSucceeded();
357   bool plan_overrides_trace =
358     have_valid_stop_info && have_valid_completed_plan
359     && (m_stop_info_sp->GetStopReason() == eStopReasonTrace);
360 
361   if (have_valid_stop_info && !plan_overrides_trace && !plan_failed) {
362     return m_stop_info_sp;
363   } else if (completed_plan_sp) {
364     return StopInfo::CreateStopReasonWithPlan(
365         completed_plan_sp, GetReturnValueObject(), GetExpressionVariable());
366   } else {
367     GetPrivateStopInfo();
368     return m_stop_info_sp;
369   }
370 }
371 
372 void Thread::CalculatePublicStopInfo() {
373   ResetStopInfo();
374   SetStopInfo(GetStopInfo());
375 }
376 
377 lldb::StopInfoSP Thread::GetPrivateStopInfo() {
378   if (m_destroy_called)
379     return m_stop_info_sp;
380 
381   ProcessSP process_sp(GetProcess());
382   if (process_sp) {
383     const uint32_t process_stop_id = process_sp->GetStopID();
384     if (m_stop_info_stop_id != process_stop_id) {
385       if (m_stop_info_sp) {
386         if (m_stop_info_sp->IsValid() || IsStillAtLastBreakpointHit() ||
387             GetCurrentPlan()->IsVirtualStep())
388           SetStopInfo(m_stop_info_sp);
389         else
390           m_stop_info_sp.reset();
391       }
392 
393       if (!m_stop_info_sp) {
394         if (!CalculateStopInfo())
395           SetStopInfo(StopInfoSP());
396       }
397     }
398 
399     // The stop info can be manually set by calling Thread::SetStopInfo() prior
400     // to this function ever getting called, so we can't rely on
401     // "m_stop_info_stop_id != process_stop_id" as the condition for the if
402     // statement below, we must also check the stop info to see if we need to
403     // override it. See the header documentation in
404     // Architecture::OverrideStopInfo() for more information on the stop
405     // info override callback.
406     if (m_stop_info_override_stop_id != process_stop_id) {
407       m_stop_info_override_stop_id = process_stop_id;
408       if (m_stop_info_sp) {
409         if (const Architecture *arch =
410                 process_sp->GetTarget().GetArchitecturePlugin())
411           arch->OverrideStopInfo(*this);
412       }
413     }
414   }
415   return m_stop_info_sp;
416 }
417 
418 lldb::StopReason Thread::GetStopReason() {
419   lldb::StopInfoSP stop_info_sp(GetStopInfo());
420   if (stop_info_sp)
421     return stop_info_sp->GetStopReason();
422   return eStopReasonNone;
423 }
424 
425 bool Thread::StopInfoIsUpToDate() const {
426   ProcessSP process_sp(GetProcess());
427   if (process_sp)
428     return m_stop_info_stop_id == process_sp->GetStopID();
429   else
430     return true; // Process is no longer around so stop info is always up to
431                  // date...
432 }
433 
434 void Thread::ResetStopInfo() {
435   if (m_stop_info_sp) {
436     m_stop_info_sp.reset();
437   }
438 }
439 
440 void Thread::SetStopInfo(const lldb::StopInfoSP &stop_info_sp) {
441   m_stop_info_sp = stop_info_sp;
442   if (m_stop_info_sp) {
443     m_stop_info_sp->MakeStopInfoValid();
444     // If we are overriding the ShouldReportStop, do that here:
445     if (m_override_should_notify != eLazyBoolCalculate)
446       m_stop_info_sp->OverrideShouldNotify(m_override_should_notify ==
447                                            eLazyBoolYes);
448   }
449 
450   ProcessSP process_sp(GetProcess());
451   if (process_sp)
452     m_stop_info_stop_id = process_sp->GetStopID();
453   else
454     m_stop_info_stop_id = UINT32_MAX;
455   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD));
456   LLDB_LOGF(log, "%p: tid = 0x%" PRIx64 ": stop info = %s (stop_id = %u)",
457             static_cast<void *>(this), GetID(),
458             stop_info_sp ? stop_info_sp->GetDescription() : "<NULL>",
459             m_stop_info_stop_id);
460 }
461 
462 void Thread::SetShouldReportStop(Vote vote) {
463   if (vote == eVoteNoOpinion)
464     return;
465   else {
466     m_override_should_notify = (vote == eVoteYes ? eLazyBoolYes : eLazyBoolNo);
467     if (m_stop_info_sp)
468       m_stop_info_sp->OverrideShouldNotify(m_override_should_notify ==
469                                            eLazyBoolYes);
470   }
471 }
472 
473 void Thread::SetStopInfoToNothing() {
474   // Note, we can't just NULL out the private reason, or the native thread
475   // implementation will try to go calculate it again.  For now, just set it to
476   // a Unix Signal with an invalid signal number.
477   SetStopInfo(
478       StopInfo::CreateStopReasonWithSignal(*this, LLDB_INVALID_SIGNAL_NUMBER));
479 }
480 
481 bool Thread::ThreadStoppedForAReason(void) {
482   return (bool)GetPrivateStopInfo();
483 }
484 
485 bool Thread::CheckpointThreadState(ThreadStateCheckpoint &saved_state) {
486   saved_state.register_backup_sp.reset();
487   lldb::StackFrameSP frame_sp(GetStackFrameAtIndex(0));
488   if (frame_sp) {
489     lldb::RegisterCheckpointSP reg_checkpoint_sp(
490         new RegisterCheckpoint(RegisterCheckpoint::Reason::eExpression));
491     if (reg_checkpoint_sp) {
492       lldb::RegisterContextSP reg_ctx_sp(frame_sp->GetRegisterContext());
493       if (reg_ctx_sp && reg_ctx_sp->ReadAllRegisterValues(*reg_checkpoint_sp))
494         saved_state.register_backup_sp = reg_checkpoint_sp;
495     }
496   }
497   if (!saved_state.register_backup_sp)
498     return false;
499 
500   saved_state.stop_info_sp = GetStopInfo();
501   ProcessSP process_sp(GetProcess());
502   if (process_sp)
503     saved_state.orig_stop_id = process_sp->GetStopID();
504   saved_state.current_inlined_depth = GetCurrentInlinedDepth();
505   saved_state.m_completed_plan_checkpoint =
506       GetPlans().CheckpointCompletedPlans();
507 
508   return true;
509 }
510 
511 bool Thread::RestoreRegisterStateFromCheckpoint(
512     ThreadStateCheckpoint &saved_state) {
513   if (saved_state.register_backup_sp) {
514     lldb::StackFrameSP frame_sp(GetStackFrameAtIndex(0));
515     if (frame_sp) {
516       lldb::RegisterContextSP reg_ctx_sp(frame_sp->GetRegisterContext());
517       if (reg_ctx_sp) {
518         bool ret =
519             reg_ctx_sp->WriteAllRegisterValues(*saved_state.register_backup_sp);
520 
521         // Clear out all stack frames as our world just changed.
522         ClearStackFrames();
523         reg_ctx_sp->InvalidateIfNeeded(true);
524         if (m_unwinder_up)
525           m_unwinder_up->Clear();
526         return ret;
527       }
528     }
529   }
530   return false;
531 }
532 
533 bool Thread::RestoreThreadStateFromCheckpoint(
534     ThreadStateCheckpoint &saved_state) {
535   if (saved_state.stop_info_sp)
536     saved_state.stop_info_sp->MakeStopInfoValid();
537   SetStopInfo(saved_state.stop_info_sp);
538   GetStackFrameList()->SetCurrentInlinedDepth(
539       saved_state.current_inlined_depth);
540   GetPlans().RestoreCompletedPlanCheckpoint(
541       saved_state.m_completed_plan_checkpoint);
542   return true;
543 }
544 
545 StateType Thread::GetState() const {
546   // If any other threads access this we will need a mutex for it
547   std::lock_guard<std::recursive_mutex> guard(m_state_mutex);
548   return m_state;
549 }
550 
551 void Thread::SetState(StateType state) {
552   std::lock_guard<std::recursive_mutex> guard(m_state_mutex);
553   m_state = state;
554 }
555 
556 std::string Thread::GetStopDescription() {
557   StackFrameSP frame_sp = GetStackFrameAtIndex(0);
558 
559   if (!frame_sp)
560     return GetStopDescriptionRaw();
561 
562   auto recognized_frame_sp = frame_sp->GetRecognizedFrame();
563 
564   if (!recognized_frame_sp)
565     return GetStopDescriptionRaw();
566 
567   std::string recognized_stop_description =
568       recognized_frame_sp->GetStopDescription();
569 
570   if (!recognized_stop_description.empty())
571     return recognized_stop_description;
572 
573   return GetStopDescriptionRaw();
574 }
575 
576 std::string Thread::GetStopDescriptionRaw() {
577   StopInfoSP stop_info_sp = GetStopInfo();
578   std::string raw_stop_description;
579   if (stop_info_sp && stop_info_sp->IsValid()) {
580     raw_stop_description = stop_info_sp->GetDescription();
581     assert((!raw_stop_description.empty() ||
582             stop_info_sp->GetStopReason() == eStopReasonNone) &&
583            "StopInfo returned an empty description.");
584   }
585   return raw_stop_description;
586 }
587 
588 void Thread::SelectMostRelevantFrame() {
589   Log *log = lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD);
590 
591   auto frames_list_sp = GetStackFrameList();
592 
593   // Only the top frame should be recognized.
594   auto frame_sp = frames_list_sp->GetFrameAtIndex(0);
595 
596   auto recognized_frame_sp = frame_sp->GetRecognizedFrame();
597 
598   if (!recognized_frame_sp) {
599     LLDB_LOG(log, "Frame #0 not recognized");
600     return;
601   }
602 
603   if (StackFrameSP most_relevant_frame_sp =
604           recognized_frame_sp->GetMostRelevantFrame()) {
605     LLDB_LOG(log, "Found most relevant frame at index {0}",
606              most_relevant_frame_sp->GetFrameIndex());
607     SetSelectedFrame(most_relevant_frame_sp.get());
608   } else {
609     LLDB_LOG(log, "No relevant frame!");
610   }
611 }
612 
613 void Thread::WillStop() {
614   ThreadPlan *current_plan = GetCurrentPlan();
615 
616   SelectMostRelevantFrame();
617 
618   // FIXME: I may decide to disallow threads with no plans.  In which
619   // case this should go to an assert.
620 
621   if (!current_plan)
622     return;
623 
624   current_plan->WillStop();
625 }
626 
627 void Thread::SetupForResume() {
628   if (GetResumeState() != eStateSuspended) {
629     // If we're at a breakpoint push the step-over breakpoint plan.  Do this
630     // before telling the current plan it will resume, since we might change
631     // what the current plan is.
632 
633     lldb::RegisterContextSP reg_ctx_sp(GetRegisterContext());
634     if (reg_ctx_sp) {
635       const addr_t thread_pc = reg_ctx_sp->GetPC();
636       BreakpointSiteSP bp_site_sp =
637           GetProcess()->GetBreakpointSiteList().FindByAddress(thread_pc);
638       if (bp_site_sp) {
639         // Note, don't assume there's a ThreadPlanStepOverBreakpoint, the
640         // target may not require anything special to step over a breakpoint.
641 
642         ThreadPlan *cur_plan = GetCurrentPlan();
643 
644         bool push_step_over_bp_plan = false;
645         if (cur_plan->GetKind() == ThreadPlan::eKindStepOverBreakpoint) {
646           ThreadPlanStepOverBreakpoint *bp_plan =
647               (ThreadPlanStepOverBreakpoint *)cur_plan;
648           if (bp_plan->GetBreakpointLoadAddress() != thread_pc)
649             push_step_over_bp_plan = true;
650         } else
651           push_step_over_bp_plan = true;
652 
653         if (push_step_over_bp_plan) {
654           ThreadPlanSP step_bp_plan_sp(new ThreadPlanStepOverBreakpoint(*this));
655           if (step_bp_plan_sp) {
656             step_bp_plan_sp->SetPrivate(true);
657 
658             if (GetCurrentPlan()->RunState() != eStateStepping) {
659               ThreadPlanStepOverBreakpoint *step_bp_plan =
660                   static_cast<ThreadPlanStepOverBreakpoint *>(
661                       step_bp_plan_sp.get());
662               step_bp_plan->SetAutoContinue(true);
663             }
664             QueueThreadPlan(step_bp_plan_sp, false);
665           }
666         }
667       }
668     }
669   }
670 }
671 
672 bool Thread::ShouldResume(StateType resume_state) {
673   // At this point clear the completed plan stack.
674   GetPlans().WillResume();
675   m_override_should_notify = eLazyBoolCalculate;
676 
677   StateType prev_resume_state = GetTemporaryResumeState();
678 
679   SetTemporaryResumeState(resume_state);
680 
681   lldb::ThreadSP backing_thread_sp(GetBackingThread());
682   if (backing_thread_sp)
683     backing_thread_sp->SetTemporaryResumeState(resume_state);
684 
685   // Make sure m_stop_info_sp is valid.  Don't do this for threads we suspended
686   // in the previous run.
687   if (prev_resume_state != eStateSuspended)
688     GetPrivateStopInfo();
689 
690   // This is a little dubious, but we are trying to limit how often we actually
691   // fetch stop info from the target, 'cause that slows down single stepping.
692   // So assume that if we got to the point where we're about to resume, and we
693   // haven't yet had to fetch the stop reason, then it doesn't need to know
694   // about the fact that we are resuming...
695   const uint32_t process_stop_id = GetProcess()->GetStopID();
696   if (m_stop_info_stop_id == process_stop_id &&
697       (m_stop_info_sp && m_stop_info_sp->IsValid())) {
698     StopInfo *stop_info = GetPrivateStopInfo().get();
699     if (stop_info)
700       stop_info->WillResume(resume_state);
701   }
702 
703   // Tell all the plans that we are about to resume in case they need to clear
704   // any state. We distinguish between the plan on the top of the stack and the
705   // lower plans in case a plan needs to do any special business before it
706   // runs.
707 
708   bool need_to_resume = false;
709   ThreadPlan *plan_ptr = GetCurrentPlan();
710   if (plan_ptr) {
711     need_to_resume = plan_ptr->WillResume(resume_state, true);
712 
713     while ((plan_ptr = GetPreviousPlan(plan_ptr)) != nullptr) {
714       plan_ptr->WillResume(resume_state, false);
715     }
716 
717     // If the WillResume for the plan says we are faking a resume, then it will
718     // have set an appropriate stop info. In that case, don't reset it here.
719 
720     if (need_to_resume && resume_state != eStateSuspended) {
721       m_stop_info_sp.reset();
722     }
723   }
724 
725   if (need_to_resume) {
726     ClearStackFrames();
727     // Let Thread subclasses do any special work they need to prior to resuming
728     WillResume(resume_state);
729   }
730 
731   return need_to_resume;
732 }
733 
734 void Thread::DidResume() { SetResumeSignal(LLDB_INVALID_SIGNAL_NUMBER); }
735 
736 void Thread::DidStop() { SetState(eStateStopped); }
737 
738 bool Thread::ShouldStop(Event *event_ptr) {
739   ThreadPlan *current_plan = GetCurrentPlan();
740 
741   bool should_stop = true;
742 
743   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
744 
745   if (GetResumeState() == eStateSuspended) {
746     LLDB_LOGF(log,
747               "Thread::%s for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64
748               ", should_stop = 0 (ignore since thread was suspended)",
749               __FUNCTION__, GetID(), GetProtocolID());
750     return false;
751   }
752 
753   if (GetTemporaryResumeState() == eStateSuspended) {
754     LLDB_LOGF(log,
755               "Thread::%s for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64
756               ", should_stop = 0 (ignore since thread was suspended)",
757               __FUNCTION__, GetID(), GetProtocolID());
758     return false;
759   }
760 
761   // Based on the current thread plan and process stop info, check if this
762   // thread caused the process to stop. NOTE: this must take place before the
763   // plan is moved from the current plan stack to the completed plan stack.
764   if (!ThreadStoppedForAReason()) {
765     LLDB_LOGF(log,
766               "Thread::%s for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64
767               ", pc = 0x%16.16" PRIx64
768               ", should_stop = 0 (ignore since no stop reason)",
769               __FUNCTION__, GetID(), GetProtocolID(),
770               GetRegisterContext() ? GetRegisterContext()->GetPC()
771                                    : LLDB_INVALID_ADDRESS);
772     return false;
773   }
774 
775   if (log) {
776     LLDB_LOGF(log,
777               "Thread::%s(%p) for tid = 0x%4.4" PRIx64 " 0x%4.4" PRIx64
778               ", pc = 0x%16.16" PRIx64,
779               __FUNCTION__, static_cast<void *>(this), GetID(), GetProtocolID(),
780               GetRegisterContext() ? GetRegisterContext()->GetPC()
781                                    : LLDB_INVALID_ADDRESS);
782     LLDB_LOGF(log, "^^^^^^^^ Thread::ShouldStop Begin ^^^^^^^^");
783     StreamString s;
784     s.IndentMore();
785     GetProcess()->DumpThreadPlansForTID(
786         s, GetID(), eDescriptionLevelVerbose, true /* internal */,
787         false /* condense_trivial */, true /* skip_unreported */);
788     LLDB_LOGF(log, "Plan stack initial state:\n%s", s.GetData());
789   }
790 
791   // The top most plan always gets to do the trace log...
792   current_plan->DoTraceLog();
793 
794   // First query the stop info's ShouldStopSynchronous.  This handles
795   // "synchronous" stop reasons, for example the breakpoint command on internal
796   // breakpoints.  If a synchronous stop reason says we should not stop, then
797   // we don't have to do any more work on this stop.
798   StopInfoSP private_stop_info(GetPrivateStopInfo());
799   if (private_stop_info &&
800       !private_stop_info->ShouldStopSynchronous(event_ptr)) {
801     LLDB_LOGF(log, "StopInfo::ShouldStop async callback says we should not "
802                    "stop, returning ShouldStop of false.");
803     return false;
804   }
805 
806   // If we've already been restarted, don't query the plans since the state
807   // they would examine is not current.
808   if (Process::ProcessEventData::GetRestartedFromEvent(event_ptr))
809     return false;
810 
811   // Before the plans see the state of the world, calculate the current inlined
812   // depth.
813   GetStackFrameList()->CalculateCurrentInlinedDepth();
814 
815   // If the base plan doesn't understand why we stopped, then we have to find a
816   // plan that does. If that plan is still working, then we don't need to do
817   // any more work.  If the plan that explains the stop is done, then we should
818   // pop all the plans below it, and pop it, and then let the plans above it
819   // decide whether they still need to do more work.
820 
821   bool done_processing_current_plan = false;
822 
823   if (!current_plan->PlanExplainsStop(event_ptr)) {
824     if (current_plan->TracerExplainsStop()) {
825       done_processing_current_plan = true;
826       should_stop = false;
827     } else {
828       // If the current plan doesn't explain the stop, then find one that does
829       // and let it handle the situation.
830       ThreadPlan *plan_ptr = current_plan;
831       while ((plan_ptr = GetPreviousPlan(plan_ptr)) != nullptr) {
832         if (plan_ptr->PlanExplainsStop(event_ptr)) {
833           should_stop = plan_ptr->ShouldStop(event_ptr);
834 
835           // plan_ptr explains the stop, next check whether plan_ptr is done,
836           // if so, then we should take it and all the plans below it off the
837           // stack.
838 
839           if (plan_ptr->MischiefManaged()) {
840             // We're going to pop the plans up to and including the plan that
841             // explains the stop.
842             ThreadPlan *prev_plan_ptr = GetPreviousPlan(plan_ptr);
843 
844             do {
845               if (should_stop)
846                 current_plan->WillStop();
847               PopPlan();
848             } while ((current_plan = GetCurrentPlan()) != prev_plan_ptr);
849             // Now, if the responsible plan was not "Okay to discard" then
850             // we're done, otherwise we forward this to the next plan in the
851             // stack below.
852             done_processing_current_plan =
853                 (plan_ptr->IsMasterPlan() && !plan_ptr->OkayToDiscard());
854           } else
855             done_processing_current_plan = true;
856 
857           break;
858         }
859       }
860     }
861   }
862 
863   if (!done_processing_current_plan) {
864     bool over_ride_stop = current_plan->ShouldAutoContinue(event_ptr);
865 
866     LLDB_LOGF(log, "Plan %s explains stop, auto-continue %i.",
867               current_plan->GetName(), over_ride_stop);
868 
869     // We're starting from the base plan, so just let it decide;
870     if (current_plan->IsBasePlan()) {
871       should_stop = current_plan->ShouldStop(event_ptr);
872       LLDB_LOGF(log, "Base plan says should stop: %i.", should_stop);
873     } else {
874       // Otherwise, don't let the base plan override what the other plans say
875       // to do, since presumably if there were other plans they would know what
876       // to do...
877       while (true) {
878         if (current_plan->IsBasePlan())
879           break;
880 
881         should_stop = current_plan->ShouldStop(event_ptr);
882         LLDB_LOGF(log, "Plan %s should stop: %d.", current_plan->GetName(),
883                   should_stop);
884         if (current_plan->MischiefManaged()) {
885           if (should_stop)
886             current_plan->WillStop();
887 
888           // If a Master Plan wants to stop, and wants to stick on the stack,
889           // we let it. Otherwise, see if the plan's parent wants to stop.
890 
891           if (should_stop && current_plan->IsMasterPlan() &&
892               !current_plan->OkayToDiscard()) {
893             PopPlan();
894             break;
895           } else {
896             PopPlan();
897 
898             current_plan = GetCurrentPlan();
899             if (current_plan == nullptr) {
900               break;
901             }
902           }
903         } else {
904           break;
905         }
906       }
907     }
908 
909     if (over_ride_stop)
910       should_stop = false;
911   }
912 
913   // One other potential problem is that we set up a master plan, then stop in
914   // before it is complete - for instance by hitting a breakpoint during a
915   // step-over - then do some step/finish/etc operations that wind up past the
916   // end point condition of the initial plan.  We don't want to strand the
917   // original plan on the stack, This code clears stale plans off the stack.
918 
919   if (should_stop) {
920     ThreadPlan *plan_ptr = GetCurrentPlan();
921 
922     // Discard the stale plans and all plans below them in the stack, plus move
923     // the completed plans to the completed plan stack
924     while (!plan_ptr->IsBasePlan()) {
925       bool stale = plan_ptr->IsPlanStale();
926       ThreadPlan *examined_plan = plan_ptr;
927       plan_ptr = GetPreviousPlan(examined_plan);
928 
929       if (stale) {
930         LLDB_LOGF(
931             log,
932             "Plan %s being discarded in cleanup, it says it is already done.",
933             examined_plan->GetName());
934         while (GetCurrentPlan() != examined_plan) {
935           DiscardPlan();
936         }
937         if (examined_plan->IsPlanComplete()) {
938           // plan is complete but does not explain the stop (example: step to a
939           // line with breakpoint), let us move the plan to
940           // completed_plan_stack anyway
941           PopPlan();
942         } else
943           DiscardPlan();
944       }
945     }
946   }
947 
948   if (log) {
949     StreamString s;
950     s.IndentMore();
951     GetProcess()->DumpThreadPlansForTID(
952         s, GetID(), eDescriptionLevelVerbose, true /* internal */,
953         false /* condense_trivial */, true /* skip_unreported */);
954     LLDB_LOGF(log, "Plan stack final state:\n%s", s.GetData());
955     LLDB_LOGF(log, "vvvvvvvv Thread::ShouldStop End (returning %i) vvvvvvvv",
956               should_stop);
957   }
958   return should_stop;
959 }
960 
961 Vote Thread::ShouldReportStop(Event *event_ptr) {
962   StateType thread_state = GetResumeState();
963   StateType temp_thread_state = GetTemporaryResumeState();
964 
965   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
966 
967   if (thread_state == eStateSuspended || thread_state == eStateInvalid) {
968     LLDB_LOGF(log,
969               "Thread::ShouldReportStop() tid = 0x%4.4" PRIx64
970               ": returning vote %i (state was suspended or invalid)",
971               GetID(), eVoteNoOpinion);
972     return eVoteNoOpinion;
973   }
974 
975   if (temp_thread_state == eStateSuspended ||
976       temp_thread_state == eStateInvalid) {
977     LLDB_LOGF(log,
978               "Thread::ShouldReportStop() tid = 0x%4.4" PRIx64
979               ": returning vote %i (temporary state was suspended or invalid)",
980               GetID(), eVoteNoOpinion);
981     return eVoteNoOpinion;
982   }
983 
984   if (!ThreadStoppedForAReason()) {
985     LLDB_LOGF(log,
986               "Thread::ShouldReportStop() tid = 0x%4.4" PRIx64
987               ": returning vote %i (thread didn't stop for a reason.)",
988               GetID(), eVoteNoOpinion);
989     return eVoteNoOpinion;
990   }
991 
992   if (GetPlans().AnyCompletedPlans()) {
993     // Pass skip_private = false to GetCompletedPlan, since we want to ask
994     // the last plan, regardless of whether it is private or not.
995     LLDB_LOGF(log,
996               "Thread::ShouldReportStop() tid = 0x%4.4" PRIx64
997               ": returning vote  for complete stack's back plan",
998               GetID());
999     return GetPlans().GetCompletedPlan(false)->ShouldReportStop(event_ptr);
1000   } else {
1001     Vote thread_vote = eVoteNoOpinion;
1002     ThreadPlan *plan_ptr = GetCurrentPlan();
1003     while (true) {
1004       if (plan_ptr->PlanExplainsStop(event_ptr)) {
1005         thread_vote = plan_ptr->ShouldReportStop(event_ptr);
1006         break;
1007       }
1008       if (plan_ptr->IsBasePlan())
1009         break;
1010       else
1011         plan_ptr = GetPreviousPlan(plan_ptr);
1012     }
1013     LLDB_LOGF(log,
1014               "Thread::ShouldReportStop() tid = 0x%4.4" PRIx64
1015               ": returning vote %i for current plan",
1016               GetID(), thread_vote);
1017 
1018     return thread_vote;
1019   }
1020 }
1021 
1022 Vote Thread::ShouldReportRun(Event *event_ptr) {
1023   StateType thread_state = GetResumeState();
1024 
1025   if (thread_state == eStateSuspended || thread_state == eStateInvalid) {
1026     return eVoteNoOpinion;
1027   }
1028 
1029   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
1030   if (GetPlans().AnyCompletedPlans()) {
1031     // Pass skip_private = false to GetCompletedPlan, since we want to ask
1032     // the last plan, regardless of whether it is private or not.
1033     LLDB_LOGF(log,
1034               "Current Plan for thread %d(%p) (0x%4.4" PRIx64
1035               ", %s): %s being asked whether we should report run.",
1036               GetIndexID(), static_cast<void *>(this), GetID(),
1037               StateAsCString(GetTemporaryResumeState()),
1038               GetCompletedPlan()->GetName());
1039 
1040     return GetPlans().GetCompletedPlan(false)->ShouldReportRun(event_ptr);
1041   } else {
1042     LLDB_LOGF(log,
1043               "Current Plan for thread %d(%p) (0x%4.4" PRIx64
1044               ", %s): %s being asked whether we should report run.",
1045               GetIndexID(), static_cast<void *>(this), GetID(),
1046               StateAsCString(GetTemporaryResumeState()),
1047               GetCurrentPlan()->GetName());
1048 
1049     return GetCurrentPlan()->ShouldReportRun(event_ptr);
1050   }
1051 }
1052 
1053 bool Thread::MatchesSpec(const ThreadSpec *spec) {
1054   return (spec == nullptr) ? true : spec->ThreadPassesBasicTests(*this);
1055 }
1056 
1057 ThreadPlanStack &Thread::GetPlans() const {
1058   ThreadPlanStack *plans = GetProcess()->FindThreadPlans(GetID());
1059   if (plans)
1060     return *plans;
1061 
1062   // History threads don't have a thread plan, but they do ask get asked to
1063   // describe themselves, which usually involves pulling out the stop reason.
1064   // That in turn will check for a completed plan on the ThreadPlanStack.
1065   // Instead of special-casing at that point, we return a Stack with a
1066   // ThreadPlanNull as its base plan.  That will give the right answers to the
1067   // queries GetDescription makes, and only assert if you try to run the thread.
1068   if (!m_null_plan_stack_up)
1069     m_null_plan_stack_up = std::make_unique<ThreadPlanStack>(*this, true);
1070   return *(m_null_plan_stack_up.get());
1071 }
1072 
1073 void Thread::PushPlan(ThreadPlanSP thread_plan_sp) {
1074   assert(thread_plan_sp && "Don't push an empty thread plan.");
1075 
1076   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
1077   if (log) {
1078     StreamString s;
1079     thread_plan_sp->GetDescription(&s, lldb::eDescriptionLevelFull);
1080     LLDB_LOGF(log, "Thread::PushPlan(0x%p): \"%s\", tid = 0x%4.4" PRIx64 ".",
1081               static_cast<void *>(this), s.GetData(),
1082               thread_plan_sp->GetThread().GetID());
1083   }
1084 
1085   GetPlans().PushPlan(std::move(thread_plan_sp));
1086 }
1087 
1088 void Thread::PopPlan() {
1089   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
1090   ThreadPlanSP popped_plan_sp = GetPlans().PopPlan();
1091   if (log) {
1092     LLDB_LOGF(log, "Popping plan: \"%s\", tid = 0x%4.4" PRIx64 ".",
1093               popped_plan_sp->GetName(), popped_plan_sp->GetThread().GetID());
1094   }
1095 }
1096 
1097 void Thread::DiscardPlan() {
1098   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
1099   ThreadPlanSP discarded_plan_sp = GetPlans().PopPlan();
1100 
1101   LLDB_LOGF(log, "Discarding plan: \"%s\", tid = 0x%4.4" PRIx64 ".",
1102             discarded_plan_sp->GetName(),
1103             discarded_plan_sp->GetThread().GetID());
1104 }
1105 
1106 ThreadPlan *Thread::GetCurrentPlan() const {
1107   return GetPlans().GetCurrentPlan().get();
1108 }
1109 
1110 ThreadPlanSP Thread::GetCompletedPlan() const {
1111   return GetPlans().GetCompletedPlan();
1112 }
1113 
1114 ValueObjectSP Thread::GetReturnValueObject() const {
1115   return GetPlans().GetReturnValueObject();
1116 }
1117 
1118 ExpressionVariableSP Thread::GetExpressionVariable() const {
1119   return GetPlans().GetExpressionVariable();
1120 }
1121 
1122 bool Thread::IsThreadPlanDone(ThreadPlan *plan) const {
1123   return GetPlans().IsPlanDone(plan);
1124 }
1125 
1126 bool Thread::WasThreadPlanDiscarded(ThreadPlan *plan) const {
1127   return GetPlans().WasPlanDiscarded(plan);
1128 }
1129 
1130 bool Thread::CompletedPlanOverridesBreakpoint() const {
1131   return GetPlans().AnyCompletedPlans();
1132 }
1133 
1134 ThreadPlan *Thread::GetPreviousPlan(ThreadPlan *current_plan) const{
1135   return GetPlans().GetPreviousPlan(current_plan);
1136 }
1137 
1138 Status Thread::QueueThreadPlan(ThreadPlanSP &thread_plan_sp,
1139                                bool abort_other_plans) {
1140   Status status;
1141   StreamString s;
1142   if (!thread_plan_sp->ValidatePlan(&s)) {
1143     DiscardThreadPlansUpToPlan(thread_plan_sp);
1144     thread_plan_sp.reset();
1145     status.SetErrorString(s.GetString());
1146     return status;
1147   }
1148 
1149   if (abort_other_plans)
1150     DiscardThreadPlans(true);
1151 
1152   PushPlan(thread_plan_sp);
1153 
1154   // This seems a little funny, but I don't want to have to split up the
1155   // constructor and the DidPush in the scripted plan, that seems annoying.
1156   // That means the constructor has to be in DidPush. So I have to validate the
1157   // plan AFTER pushing it, and then take it off again...
1158   if (!thread_plan_sp->ValidatePlan(&s)) {
1159     DiscardThreadPlansUpToPlan(thread_plan_sp);
1160     thread_plan_sp.reset();
1161     status.SetErrorString(s.GetString());
1162     return status;
1163   }
1164 
1165   return status;
1166 }
1167 
1168 void Thread::EnableTracer(bool value, bool single_stepping) {
1169   GetPlans().EnableTracer(value, single_stepping);
1170 }
1171 
1172 void Thread::SetTracer(lldb::ThreadPlanTracerSP &tracer_sp) {
1173   GetPlans().SetTracer(tracer_sp);
1174 }
1175 
1176 bool Thread::DiscardUserThreadPlansUpToIndex(uint32_t plan_index) {
1177   // Count the user thread plans from the back end to get the number of the one
1178   // we want to discard:
1179 
1180   ThreadPlan *up_to_plan_ptr = GetPlans().GetPlanByIndex(plan_index).get();
1181   if (up_to_plan_ptr == nullptr)
1182     return false;
1183 
1184   DiscardThreadPlansUpToPlan(up_to_plan_ptr);
1185   return true;
1186 }
1187 
1188 void Thread::DiscardThreadPlansUpToPlan(lldb::ThreadPlanSP &up_to_plan_sp) {
1189   DiscardThreadPlansUpToPlan(up_to_plan_sp.get());
1190 }
1191 
1192 void Thread::DiscardThreadPlansUpToPlan(ThreadPlan *up_to_plan_ptr) {
1193   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
1194   LLDB_LOGF(log,
1195             "Discarding thread plans for thread tid = 0x%4.4" PRIx64
1196             ", up to %p",
1197             GetID(), static_cast<void *>(up_to_plan_ptr));
1198   GetPlans().DiscardPlansUpToPlan(up_to_plan_ptr);
1199 }
1200 
1201 void Thread::DiscardThreadPlans(bool force) {
1202   Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
1203   if (log) {
1204     LLDB_LOGF(log,
1205               "Discarding thread plans for thread (tid = 0x%4.4" PRIx64
1206               ", force %d)",
1207               GetID(), force);
1208   }
1209 
1210   if (force) {
1211     GetPlans().DiscardAllPlans();
1212     return;
1213   }
1214   GetPlans().DiscardConsultingMasterPlans();
1215 }
1216 
1217 Status Thread::UnwindInnermostExpression() {
1218   Status error;
1219   ThreadPlan *innermost_expr_plan = GetPlans().GetInnermostExpression();
1220   if (!innermost_expr_plan) {
1221     error.SetErrorString("No expressions currently active on this thread");
1222     return error;
1223   }
1224   DiscardThreadPlansUpToPlan(innermost_expr_plan);
1225   return error;
1226 }
1227 
1228 ThreadPlanSP Thread::QueueFundamentalPlan(bool abort_other_plans) {
1229   ThreadPlanSP thread_plan_sp(new ThreadPlanBase(*this));
1230   QueueThreadPlan(thread_plan_sp, abort_other_plans);
1231   return thread_plan_sp;
1232 }
1233 
1234 ThreadPlanSP Thread::QueueThreadPlanForStepSingleInstruction(
1235     bool step_over, bool abort_other_plans, bool stop_other_threads,
1236     Status &status) {
1237   ThreadPlanSP thread_plan_sp(new ThreadPlanStepInstruction(
1238       *this, step_over, stop_other_threads, eVoteNoOpinion, eVoteNoOpinion));
1239   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1240   return thread_plan_sp;
1241 }
1242 
1243 ThreadPlanSP Thread::QueueThreadPlanForStepOverRange(
1244     bool abort_other_plans, const AddressRange &range,
1245     const SymbolContext &addr_context, lldb::RunMode stop_other_threads,
1246     Status &status, LazyBool step_out_avoids_code_withoug_debug_info) {
1247   ThreadPlanSP thread_plan_sp;
1248   thread_plan_sp = std::make_shared<ThreadPlanStepOverRange>(
1249       *this, range, addr_context, stop_other_threads,
1250       step_out_avoids_code_withoug_debug_info);
1251 
1252   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1253   return thread_plan_sp;
1254 }
1255 
1256 // Call the QueueThreadPlanForStepOverRange method which takes an address
1257 // range.
1258 ThreadPlanSP Thread::QueueThreadPlanForStepOverRange(
1259     bool abort_other_plans, const LineEntry &line_entry,
1260     const SymbolContext &addr_context, lldb::RunMode stop_other_threads,
1261     Status &status, LazyBool step_out_avoids_code_withoug_debug_info) {
1262   const bool include_inlined_functions = true;
1263   auto address_range =
1264       line_entry.GetSameLineContiguousAddressRange(include_inlined_functions);
1265   return QueueThreadPlanForStepOverRange(
1266       abort_other_plans, address_range, addr_context, stop_other_threads,
1267       status, step_out_avoids_code_withoug_debug_info);
1268 }
1269 
1270 ThreadPlanSP Thread::QueueThreadPlanForStepInRange(
1271     bool abort_other_plans, const AddressRange &range,
1272     const SymbolContext &addr_context, const char *step_in_target,
1273     lldb::RunMode stop_other_threads, Status &status,
1274     LazyBool step_in_avoids_code_without_debug_info,
1275     LazyBool step_out_avoids_code_without_debug_info) {
1276   ThreadPlanSP thread_plan_sp(
1277       new ThreadPlanStepInRange(*this, range, addr_context, stop_other_threads,
1278                                 step_in_avoids_code_without_debug_info,
1279                                 step_out_avoids_code_without_debug_info));
1280   ThreadPlanStepInRange *plan =
1281       static_cast<ThreadPlanStepInRange *>(thread_plan_sp.get());
1282 
1283   if (step_in_target)
1284     plan->SetStepInTarget(step_in_target);
1285 
1286   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1287   return thread_plan_sp;
1288 }
1289 
1290 // Call the QueueThreadPlanForStepInRange method which takes an address range.
1291 ThreadPlanSP Thread::QueueThreadPlanForStepInRange(
1292     bool abort_other_plans, const LineEntry &line_entry,
1293     const SymbolContext &addr_context, const char *step_in_target,
1294     lldb::RunMode stop_other_threads, Status &status,
1295     LazyBool step_in_avoids_code_without_debug_info,
1296     LazyBool step_out_avoids_code_without_debug_info) {
1297   const bool include_inlined_functions = false;
1298   return QueueThreadPlanForStepInRange(
1299       abort_other_plans,
1300       line_entry.GetSameLineContiguousAddressRange(include_inlined_functions),
1301       addr_context, step_in_target, stop_other_threads, status,
1302       step_in_avoids_code_without_debug_info,
1303       step_out_avoids_code_without_debug_info);
1304 }
1305 
1306 ThreadPlanSP Thread::QueueThreadPlanForStepOut(
1307     bool abort_other_plans, SymbolContext *addr_context, bool first_insn,
1308     bool stop_other_threads, Vote stop_vote, Vote run_vote, uint32_t frame_idx,
1309     Status &status, LazyBool step_out_avoids_code_without_debug_info) {
1310   ThreadPlanSP thread_plan_sp(new ThreadPlanStepOut(
1311       *this, addr_context, first_insn, stop_other_threads, stop_vote, run_vote,
1312       frame_idx, step_out_avoids_code_without_debug_info));
1313 
1314   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1315   return thread_plan_sp;
1316 }
1317 
1318 ThreadPlanSP Thread::QueueThreadPlanForStepOutNoShouldStop(
1319     bool abort_other_plans, SymbolContext *addr_context, bool first_insn,
1320     bool stop_other_threads, Vote stop_vote, Vote run_vote, uint32_t frame_idx,
1321     Status &status, bool continue_to_next_branch) {
1322   const bool calculate_return_value =
1323       false; // No need to calculate the return value here.
1324   ThreadPlanSP thread_plan_sp(new ThreadPlanStepOut(
1325       *this, addr_context, first_insn, stop_other_threads, stop_vote, run_vote,
1326       frame_idx, eLazyBoolNo, continue_to_next_branch, calculate_return_value));
1327 
1328   ThreadPlanStepOut *new_plan =
1329       static_cast<ThreadPlanStepOut *>(thread_plan_sp.get());
1330   new_plan->ClearShouldStopHereCallbacks();
1331 
1332   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1333   return thread_plan_sp;
1334 }
1335 
1336 ThreadPlanSP Thread::QueueThreadPlanForStepThrough(StackID &return_stack_id,
1337                                                    bool abort_other_plans,
1338                                                    bool stop_other_threads,
1339                                                    Status &status) {
1340   ThreadPlanSP thread_plan_sp(
1341       new ThreadPlanStepThrough(*this, return_stack_id, stop_other_threads));
1342   if (!thread_plan_sp || !thread_plan_sp->ValidatePlan(nullptr))
1343     return ThreadPlanSP();
1344 
1345   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1346   return thread_plan_sp;
1347 }
1348 
1349 ThreadPlanSP Thread::QueueThreadPlanForRunToAddress(bool abort_other_plans,
1350                                                     Address &target_addr,
1351                                                     bool stop_other_threads,
1352                                                     Status &status) {
1353   ThreadPlanSP thread_plan_sp(
1354       new ThreadPlanRunToAddress(*this, target_addr, stop_other_threads));
1355 
1356   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1357   return thread_plan_sp;
1358 }
1359 
1360 ThreadPlanSP Thread::QueueThreadPlanForStepUntil(
1361     bool abort_other_plans, lldb::addr_t *address_list, size_t num_addresses,
1362     bool stop_other_threads, uint32_t frame_idx, Status &status) {
1363   ThreadPlanSP thread_plan_sp(new ThreadPlanStepUntil(
1364       *this, address_list, num_addresses, stop_other_threads, frame_idx));
1365 
1366   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1367   return thread_plan_sp;
1368 }
1369 
1370 lldb::ThreadPlanSP Thread::QueueThreadPlanForStepScripted(
1371     bool abort_other_plans, const char *class_name,
1372     StructuredData::ObjectSP extra_args_sp,  bool stop_other_threads,
1373     Status &status) {
1374 
1375   StructuredDataImpl *extra_args_impl = nullptr;
1376   if (extra_args_sp) {
1377     extra_args_impl = new StructuredDataImpl();
1378     extra_args_impl->SetObjectSP(extra_args_sp);
1379   }
1380 
1381   ThreadPlanSP thread_plan_sp(new ThreadPlanPython(*this, class_name,
1382                                                    extra_args_impl));
1383 
1384   status = QueueThreadPlan(thread_plan_sp, abort_other_plans);
1385   return thread_plan_sp;
1386 }
1387 
1388 uint32_t Thread::GetIndexID() const { return m_index_id; }
1389 
1390 TargetSP Thread::CalculateTarget() {
1391   TargetSP target_sp;
1392   ProcessSP process_sp(GetProcess());
1393   if (process_sp)
1394     target_sp = process_sp->CalculateTarget();
1395   return target_sp;
1396 }
1397 
1398 ProcessSP Thread::CalculateProcess() { return GetProcess(); }
1399 
1400 ThreadSP Thread::CalculateThread() { return shared_from_this(); }
1401 
1402 StackFrameSP Thread::CalculateStackFrame() { return StackFrameSP(); }
1403 
1404 void Thread::CalculateExecutionContext(ExecutionContext &exe_ctx) {
1405   exe_ctx.SetContext(shared_from_this());
1406 }
1407 
1408 StackFrameListSP Thread::GetStackFrameList() {
1409   std::lock_guard<std::recursive_mutex> guard(m_frame_mutex);
1410 
1411   if (!m_curr_frames_sp)
1412     m_curr_frames_sp =
1413         std::make_shared<StackFrameList>(*this, m_prev_frames_sp, true);
1414 
1415   return m_curr_frames_sp;
1416 }
1417 
1418 void Thread::ClearStackFrames() {
1419   std::lock_guard<std::recursive_mutex> guard(m_frame_mutex);
1420 
1421   GetUnwinder().Clear();
1422 
1423   // Only store away the old "reference" StackFrameList if we got all its
1424   // frames:
1425   // FIXME: At some point we can try to splice in the frames we have fetched
1426   // into
1427   // the new frame as we make it, but let's not try that now.
1428   if (m_curr_frames_sp && m_curr_frames_sp->GetAllFramesFetched())
1429     m_prev_frames_sp.swap(m_curr_frames_sp);
1430   m_curr_frames_sp.reset();
1431 
1432   m_extended_info.reset();
1433   m_extended_info_fetched = false;
1434 }
1435 
1436 lldb::StackFrameSP Thread::GetFrameWithConcreteFrameIndex(uint32_t unwind_idx) {
1437   return GetStackFrameList()->GetFrameWithConcreteFrameIndex(unwind_idx);
1438 }
1439 
1440 Status Thread::ReturnFromFrameWithIndex(uint32_t frame_idx,
1441                                         lldb::ValueObjectSP return_value_sp,
1442                                         bool broadcast) {
1443   StackFrameSP frame_sp = GetStackFrameAtIndex(frame_idx);
1444   Status return_error;
1445 
1446   if (!frame_sp) {
1447     return_error.SetErrorStringWithFormat(
1448         "Could not find frame with index %d in thread 0x%" PRIx64 ".",
1449         frame_idx, GetID());
1450   }
1451 
1452   return ReturnFromFrame(frame_sp, return_value_sp, broadcast);
1453 }
1454 
1455 Status Thread::ReturnFromFrame(lldb::StackFrameSP frame_sp,
1456                                lldb::ValueObjectSP return_value_sp,
1457                                bool broadcast) {
1458   Status return_error;
1459 
1460   if (!frame_sp) {
1461     return_error.SetErrorString("Can't return to a null frame.");
1462     return return_error;
1463   }
1464 
1465   Thread *thread = frame_sp->GetThread().get();
1466   uint32_t older_frame_idx = frame_sp->GetFrameIndex() + 1;
1467   StackFrameSP older_frame_sp = thread->GetStackFrameAtIndex(older_frame_idx);
1468   if (!older_frame_sp) {
1469     return_error.SetErrorString("No older frame to return to.");
1470     return return_error;
1471   }
1472 
1473   if (return_value_sp) {
1474     lldb::ABISP abi = thread->GetProcess()->GetABI();
1475     if (!abi) {
1476       return_error.SetErrorString("Could not find ABI to set return value.");
1477       return return_error;
1478     }
1479     SymbolContext sc = frame_sp->GetSymbolContext(eSymbolContextFunction);
1480 
1481     // FIXME: ValueObject::Cast doesn't currently work correctly, at least not
1482     // for scalars.
1483     // Turn that back on when that works.
1484     if (/* DISABLES CODE */ (false) && sc.function != nullptr) {
1485       Type *function_type = sc.function->GetType();
1486       if (function_type) {
1487         CompilerType return_type =
1488             sc.function->GetCompilerType().GetFunctionReturnType();
1489         if (return_type) {
1490           StreamString s;
1491           return_type.DumpTypeDescription(&s);
1492           ValueObjectSP cast_value_sp = return_value_sp->Cast(return_type);
1493           if (cast_value_sp) {
1494             cast_value_sp->SetFormat(eFormatHex);
1495             return_value_sp = cast_value_sp;
1496           }
1497         }
1498       }
1499     }
1500 
1501     return_error = abi->SetReturnValueObject(older_frame_sp, return_value_sp);
1502     if (!return_error.Success())
1503       return return_error;
1504   }
1505 
1506   // Now write the return registers for the chosen frame: Note, we can't use
1507   // ReadAllRegisterValues->WriteAllRegisterValues, since the read & write cook
1508   // their data
1509 
1510   StackFrameSP youngest_frame_sp = thread->GetStackFrameAtIndex(0);
1511   if (youngest_frame_sp) {
1512     lldb::RegisterContextSP reg_ctx_sp(youngest_frame_sp->GetRegisterContext());
1513     if (reg_ctx_sp) {
1514       bool copy_success = reg_ctx_sp->CopyFromRegisterContext(
1515           older_frame_sp->GetRegisterContext());
1516       if (copy_success) {
1517         thread->DiscardThreadPlans(true);
1518         thread->ClearStackFrames();
1519         if (broadcast && EventTypeHasListeners(eBroadcastBitStackChanged))
1520           BroadcastEvent(eBroadcastBitStackChanged,
1521                          new ThreadEventData(this->shared_from_this()));
1522       } else {
1523         return_error.SetErrorString("Could not reset register values.");
1524       }
1525     } else {
1526       return_error.SetErrorString("Frame has no register context.");
1527     }
1528   } else {
1529     return_error.SetErrorString("Returned past top frame.");
1530   }
1531   return return_error;
1532 }
1533 
1534 static void DumpAddressList(Stream &s, const std::vector<Address> &list,
1535                             ExecutionContextScope *exe_scope) {
1536   for (size_t n = 0; n < list.size(); n++) {
1537     s << "\t";
1538     list[n].Dump(&s, exe_scope, Address::DumpStyleResolvedDescription,
1539                  Address::DumpStyleSectionNameOffset);
1540     s << "\n";
1541   }
1542 }
1543 
1544 Status Thread::JumpToLine(const FileSpec &file, uint32_t line,
1545                           bool can_leave_function, std::string *warnings) {
1546   ExecutionContext exe_ctx(GetStackFrameAtIndex(0));
1547   Target *target = exe_ctx.GetTargetPtr();
1548   TargetSP target_sp = exe_ctx.GetTargetSP();
1549   RegisterContext *reg_ctx = exe_ctx.GetRegisterContext();
1550   StackFrame *frame = exe_ctx.GetFramePtr();
1551   const SymbolContext &sc = frame->GetSymbolContext(eSymbolContextFunction);
1552 
1553   // Find candidate locations.
1554   std::vector<Address> candidates, within_function, outside_function;
1555   target->GetImages().FindAddressesForLine(target_sp, file, line, sc.function,
1556                                            within_function, outside_function);
1557 
1558   // If possible, we try and stay within the current function. Within a
1559   // function, we accept multiple locations (optimized code may do this,
1560   // there's no solution here so we do the best we can). However if we're
1561   // trying to leave the function, we don't know how to pick the right
1562   // location, so if there's more than one then we bail.
1563   if (!within_function.empty())
1564     candidates = within_function;
1565   else if (outside_function.size() == 1 && can_leave_function)
1566     candidates = outside_function;
1567 
1568   // Check if we got anything.
1569   if (candidates.empty()) {
1570     if (outside_function.empty()) {
1571       return Status("Cannot locate an address for %s:%i.",
1572                     file.GetFilename().AsCString(), line);
1573     } else if (outside_function.size() == 1) {
1574       return Status("%s:%i is outside the current function.",
1575                     file.GetFilename().AsCString(), line);
1576     } else {
1577       StreamString sstr;
1578       DumpAddressList(sstr, outside_function, target);
1579       return Status("%s:%i has multiple candidate locations:\n%s",
1580                     file.GetFilename().AsCString(), line, sstr.GetData());
1581     }
1582   }
1583 
1584   // Accept the first location, warn about any others.
1585   Address dest = candidates[0];
1586   if (warnings && candidates.size() > 1) {
1587     StreamString sstr;
1588     sstr.Printf("%s:%i appears multiple times in this function, selecting the "
1589                 "first location:\n",
1590                 file.GetFilename().AsCString(), line);
1591     DumpAddressList(sstr, candidates, target);
1592     *warnings = std::string(sstr.GetString());
1593   }
1594 
1595   if (!reg_ctx->SetPC(dest))
1596     return Status("Cannot change PC to target address.");
1597 
1598   return Status();
1599 }
1600 
1601 void Thread::DumpUsingSettingsFormat(Stream &strm, uint32_t frame_idx,
1602                                      bool stop_format) {
1603   ExecutionContext exe_ctx(shared_from_this());
1604   Process *process = exe_ctx.GetProcessPtr();
1605   if (process == nullptr)
1606     return;
1607 
1608   StackFrameSP frame_sp;
1609   SymbolContext frame_sc;
1610   if (frame_idx != LLDB_INVALID_FRAME_ID) {
1611     frame_sp = GetStackFrameAtIndex(frame_idx);
1612     if (frame_sp) {
1613       exe_ctx.SetFrameSP(frame_sp);
1614       frame_sc = frame_sp->GetSymbolContext(eSymbolContextEverything);
1615     }
1616   }
1617 
1618   const FormatEntity::Entry *thread_format;
1619   if (stop_format)
1620     thread_format = exe_ctx.GetTargetRef().GetDebugger().GetThreadStopFormat();
1621   else
1622     thread_format = exe_ctx.GetTargetRef().GetDebugger().GetThreadFormat();
1623 
1624   assert(thread_format);
1625 
1626   FormatEntity::Format(*thread_format, strm, frame_sp ? &frame_sc : nullptr,
1627                        &exe_ctx, nullptr, nullptr, false, false);
1628 }
1629 
1630 void Thread::SettingsInitialize() {}
1631 
1632 void Thread::SettingsTerminate() {}
1633 
1634 lldb::addr_t Thread::GetThreadPointer() { return LLDB_INVALID_ADDRESS; }
1635 
1636 addr_t Thread::GetThreadLocalData(const ModuleSP module,
1637                                   lldb::addr_t tls_file_addr) {
1638   // The default implementation is to ask the dynamic loader for it. This can
1639   // be overridden for specific platforms.
1640   DynamicLoader *loader = GetProcess()->GetDynamicLoader();
1641   if (loader)
1642     return loader->GetThreadLocalData(module, shared_from_this(),
1643                                       tls_file_addr);
1644   else
1645     return LLDB_INVALID_ADDRESS;
1646 }
1647 
1648 bool Thread::SafeToCallFunctions() {
1649   Process *process = GetProcess().get();
1650   if (process) {
1651     SystemRuntime *runtime = process->GetSystemRuntime();
1652     if (runtime) {
1653       return runtime->SafeToCallFunctionsOnThisThread(shared_from_this());
1654     }
1655   }
1656   return true;
1657 }
1658 
1659 lldb::StackFrameSP
1660 Thread::GetStackFrameSPForStackFramePtr(StackFrame *stack_frame_ptr) {
1661   return GetStackFrameList()->GetStackFrameSPForStackFramePtr(stack_frame_ptr);
1662 }
1663 
1664 const char *Thread::StopReasonAsCString(lldb::StopReason reason) {
1665   switch (reason) {
1666   case eStopReasonInvalid:
1667     return "invalid";
1668   case eStopReasonNone:
1669     return "none";
1670   case eStopReasonTrace:
1671     return "trace";
1672   case eStopReasonBreakpoint:
1673     return "breakpoint";
1674   case eStopReasonWatchpoint:
1675     return "watchpoint";
1676   case eStopReasonSignal:
1677     return "signal";
1678   case eStopReasonException:
1679     return "exception";
1680   case eStopReasonExec:
1681     return "exec";
1682   case eStopReasonPlanComplete:
1683     return "plan complete";
1684   case eStopReasonThreadExiting:
1685     return "thread exiting";
1686   case eStopReasonInstrumentation:
1687     return "instrumentation break";
1688   }
1689 
1690   static char unknown_state_string[64];
1691   snprintf(unknown_state_string, sizeof(unknown_state_string),
1692            "StopReason = %i", reason);
1693   return unknown_state_string;
1694 }
1695 
1696 const char *Thread::RunModeAsCString(lldb::RunMode mode) {
1697   switch (mode) {
1698   case eOnlyThisThread:
1699     return "only this thread";
1700   case eAllThreads:
1701     return "all threads";
1702   case eOnlyDuringStepping:
1703     return "only during stepping";
1704   }
1705 
1706   static char unknown_state_string[64];
1707   snprintf(unknown_state_string, sizeof(unknown_state_string), "RunMode = %i",
1708            mode);
1709   return unknown_state_string;
1710 }
1711 
1712 size_t Thread::GetStatus(Stream &strm, uint32_t start_frame,
1713                          uint32_t num_frames, uint32_t num_frames_with_source,
1714                          bool stop_format, bool only_stacks) {
1715 
1716   if (!only_stacks) {
1717     ExecutionContext exe_ctx(shared_from_this());
1718     Target *target = exe_ctx.GetTargetPtr();
1719     Process *process = exe_ctx.GetProcessPtr();
1720     strm.Indent();
1721     bool is_selected = false;
1722     if (process) {
1723       if (process->GetThreadList().GetSelectedThread().get() == this)
1724         is_selected = true;
1725     }
1726     strm.Printf("%c ", is_selected ? '*' : ' ');
1727     if (target && target->GetDebugger().GetUseExternalEditor()) {
1728       StackFrameSP frame_sp = GetStackFrameAtIndex(start_frame);
1729       if (frame_sp) {
1730         SymbolContext frame_sc(
1731             frame_sp->GetSymbolContext(eSymbolContextLineEntry));
1732         if (frame_sc.line_entry.line != 0 && frame_sc.line_entry.file) {
1733           Host::OpenFileInExternalEditor(frame_sc.line_entry.file,
1734                                          frame_sc.line_entry.line);
1735         }
1736       }
1737     }
1738 
1739     DumpUsingSettingsFormat(strm, start_frame, stop_format);
1740   }
1741 
1742   size_t num_frames_shown = 0;
1743   if (num_frames > 0) {
1744     strm.IndentMore();
1745 
1746     const bool show_frame_info = true;
1747     const bool show_frame_unique = only_stacks;
1748     const char *selected_frame_marker = nullptr;
1749     if (num_frames == 1 || only_stacks ||
1750         (GetID() != GetProcess()->GetThreadList().GetSelectedThread()->GetID()))
1751       strm.IndentMore();
1752     else
1753       selected_frame_marker = "* ";
1754 
1755     num_frames_shown = GetStackFrameList()->GetStatus(
1756         strm, start_frame, num_frames, show_frame_info, num_frames_with_source,
1757         show_frame_unique, selected_frame_marker);
1758     if (num_frames == 1)
1759       strm.IndentLess();
1760     strm.IndentLess();
1761   }
1762   return num_frames_shown;
1763 }
1764 
1765 bool Thread::GetDescription(Stream &strm, lldb::DescriptionLevel level,
1766                             bool print_json_thread, bool print_json_stopinfo) {
1767   const bool stop_format = false;
1768   DumpUsingSettingsFormat(strm, 0, stop_format);
1769   strm.Printf("\n");
1770 
1771   StructuredData::ObjectSP thread_info = GetExtendedInfo();
1772 
1773   if (print_json_thread || print_json_stopinfo) {
1774     if (thread_info && print_json_thread) {
1775       thread_info->Dump(strm);
1776       strm.Printf("\n");
1777     }
1778 
1779     if (print_json_stopinfo && m_stop_info_sp) {
1780       StructuredData::ObjectSP stop_info = m_stop_info_sp->GetExtendedInfo();
1781       if (stop_info) {
1782         stop_info->Dump(strm);
1783         strm.Printf("\n");
1784       }
1785     }
1786 
1787     return true;
1788   }
1789 
1790   if (thread_info) {
1791     StructuredData::ObjectSP activity =
1792         thread_info->GetObjectForDotSeparatedPath("activity");
1793     StructuredData::ObjectSP breadcrumb =
1794         thread_info->GetObjectForDotSeparatedPath("breadcrumb");
1795     StructuredData::ObjectSP messages =
1796         thread_info->GetObjectForDotSeparatedPath("trace_messages");
1797 
1798     bool printed_activity = false;
1799     if (activity && activity->GetType() == eStructuredDataTypeDictionary) {
1800       StructuredData::Dictionary *activity_dict = activity->GetAsDictionary();
1801       StructuredData::ObjectSP id = activity_dict->GetValueForKey("id");
1802       StructuredData::ObjectSP name = activity_dict->GetValueForKey("name");
1803       if (name && name->GetType() == eStructuredDataTypeString && id &&
1804           id->GetType() == eStructuredDataTypeInteger) {
1805         strm.Format("  Activity '{0}', {1:x}\n",
1806                     name->GetAsString()->GetValue(),
1807                     id->GetAsInteger()->GetValue());
1808       }
1809       printed_activity = true;
1810     }
1811     bool printed_breadcrumb = false;
1812     if (breadcrumb && breadcrumb->GetType() == eStructuredDataTypeDictionary) {
1813       if (printed_activity)
1814         strm.Printf("\n");
1815       StructuredData::Dictionary *breadcrumb_dict =
1816           breadcrumb->GetAsDictionary();
1817       StructuredData::ObjectSP breadcrumb_text =
1818           breadcrumb_dict->GetValueForKey("name");
1819       if (breadcrumb_text &&
1820           breadcrumb_text->GetType() == eStructuredDataTypeString) {
1821         strm.Format("  Current Breadcrumb: {0}\n",
1822                     breadcrumb_text->GetAsString()->GetValue());
1823       }
1824       printed_breadcrumb = true;
1825     }
1826     if (messages && messages->GetType() == eStructuredDataTypeArray) {
1827       if (printed_breadcrumb)
1828         strm.Printf("\n");
1829       StructuredData::Array *messages_array = messages->GetAsArray();
1830       const size_t msg_count = messages_array->GetSize();
1831       if (msg_count > 0) {
1832         strm.Printf("  %zu trace messages:\n", msg_count);
1833         for (size_t i = 0; i < msg_count; i++) {
1834           StructuredData::ObjectSP message = messages_array->GetItemAtIndex(i);
1835           if (message && message->GetType() == eStructuredDataTypeDictionary) {
1836             StructuredData::Dictionary *message_dict =
1837                 message->GetAsDictionary();
1838             StructuredData::ObjectSP message_text =
1839                 message_dict->GetValueForKey("message");
1840             if (message_text &&
1841                 message_text->GetType() == eStructuredDataTypeString) {
1842               strm.Format("    {0}\n", message_text->GetAsString()->GetValue());
1843             }
1844           }
1845         }
1846       }
1847     }
1848   }
1849 
1850   return true;
1851 }
1852 
1853 size_t Thread::GetStackFrameStatus(Stream &strm, uint32_t first_frame,
1854                                    uint32_t num_frames, bool show_frame_info,
1855                                    uint32_t num_frames_with_source) {
1856   return GetStackFrameList()->GetStatus(
1857       strm, first_frame, num_frames, show_frame_info, num_frames_with_source);
1858 }
1859 
1860 Unwind &Thread::GetUnwinder() {
1861   if (!m_unwinder_up)
1862     m_unwinder_up = std::make_unique<UnwindLLDB>(*this);
1863   return *m_unwinder_up;
1864 }
1865 
1866 void Thread::Flush() {
1867   ClearStackFrames();
1868   m_reg_context_sp.reset();
1869 }
1870 
1871 bool Thread::IsStillAtLastBreakpointHit() {
1872   // If we are currently stopped at a breakpoint, always return that stopinfo
1873   // and don't reset it. This allows threads to maintain their breakpoint
1874   // stopinfo, such as when thread-stepping in multithreaded programs.
1875   if (m_stop_info_sp) {
1876     StopReason stop_reason = m_stop_info_sp->GetStopReason();
1877     if (stop_reason == lldb::eStopReasonBreakpoint) {
1878       uint64_t value = m_stop_info_sp->GetValue();
1879       lldb::RegisterContextSP reg_ctx_sp(GetRegisterContext());
1880       if (reg_ctx_sp) {
1881         lldb::addr_t pc = reg_ctx_sp->GetPC();
1882         BreakpointSiteSP bp_site_sp =
1883             GetProcess()->GetBreakpointSiteList().FindByAddress(pc);
1884         if (bp_site_sp && static_cast<break_id_t>(value) == bp_site_sp->GetID())
1885           return true;
1886       }
1887     }
1888   }
1889   return false;
1890 }
1891 
1892 Status Thread::StepIn(bool source_step,
1893                       LazyBool step_in_avoids_code_without_debug_info,
1894                       LazyBool step_out_avoids_code_without_debug_info)
1895 
1896 {
1897   Status error;
1898   Process *process = GetProcess().get();
1899   if (StateIsStoppedState(process->GetState(), true)) {
1900     StackFrameSP frame_sp = GetStackFrameAtIndex(0);
1901     ThreadPlanSP new_plan_sp;
1902     const lldb::RunMode run_mode = eOnlyThisThread;
1903     const bool abort_other_plans = false;
1904 
1905     if (source_step && frame_sp && frame_sp->HasDebugInformation()) {
1906       SymbolContext sc(frame_sp->GetSymbolContext(eSymbolContextEverything));
1907       new_plan_sp = QueueThreadPlanForStepInRange(
1908           abort_other_plans, sc.line_entry, sc, nullptr, run_mode, error,
1909           step_in_avoids_code_without_debug_info,
1910           step_out_avoids_code_without_debug_info);
1911     } else {
1912       new_plan_sp = QueueThreadPlanForStepSingleInstruction(
1913           false, abort_other_plans, run_mode, error);
1914     }
1915 
1916     new_plan_sp->SetIsMasterPlan(true);
1917     new_plan_sp->SetOkayToDiscard(false);
1918 
1919     // Why do we need to set the current thread by ID here???
1920     process->GetThreadList().SetSelectedThreadByID(GetID());
1921     error = process->Resume();
1922   } else {
1923     error.SetErrorString("process not stopped");
1924   }
1925   return error;
1926 }
1927 
1928 Status Thread::StepOver(bool source_step,
1929                         LazyBool step_out_avoids_code_without_debug_info) {
1930   Status error;
1931   Process *process = GetProcess().get();
1932   if (StateIsStoppedState(process->GetState(), true)) {
1933     StackFrameSP frame_sp = GetStackFrameAtIndex(0);
1934     ThreadPlanSP new_plan_sp;
1935 
1936     const lldb::RunMode run_mode = eOnlyThisThread;
1937     const bool abort_other_plans = false;
1938 
1939     if (source_step && frame_sp && frame_sp->HasDebugInformation()) {
1940       SymbolContext sc(frame_sp->GetSymbolContext(eSymbolContextEverything));
1941       new_plan_sp = QueueThreadPlanForStepOverRange(
1942           abort_other_plans, sc.line_entry, sc, run_mode, error,
1943           step_out_avoids_code_without_debug_info);
1944     } else {
1945       new_plan_sp = QueueThreadPlanForStepSingleInstruction(
1946           true, abort_other_plans, run_mode, error);
1947     }
1948 
1949     new_plan_sp->SetIsMasterPlan(true);
1950     new_plan_sp->SetOkayToDiscard(false);
1951 
1952     // Why do we need to set the current thread by ID here???
1953     process->GetThreadList().SetSelectedThreadByID(GetID());
1954     error = process->Resume();
1955   } else {
1956     error.SetErrorString("process not stopped");
1957   }
1958   return error;
1959 }
1960 
1961 Status Thread::StepOut() {
1962   Status error;
1963   Process *process = GetProcess().get();
1964   if (StateIsStoppedState(process->GetState(), true)) {
1965     const bool first_instruction = false;
1966     const bool stop_other_threads = false;
1967     const bool abort_other_plans = false;
1968 
1969     ThreadPlanSP new_plan_sp(QueueThreadPlanForStepOut(
1970         abort_other_plans, nullptr, first_instruction, stop_other_threads,
1971         eVoteYes, eVoteNoOpinion, 0, error));
1972 
1973     new_plan_sp->SetIsMasterPlan(true);
1974     new_plan_sp->SetOkayToDiscard(false);
1975 
1976     // Why do we need to set the current thread by ID here???
1977     process->GetThreadList().SetSelectedThreadByID(GetID());
1978     error = process->Resume();
1979   } else {
1980     error.SetErrorString("process not stopped");
1981   }
1982   return error;
1983 }
1984 
1985 ValueObjectSP Thread::GetCurrentException() {
1986   if (auto frame_sp = GetStackFrameAtIndex(0))
1987     if (auto recognized_frame = frame_sp->GetRecognizedFrame())
1988       if (auto e = recognized_frame->GetExceptionObject())
1989         return e;
1990 
1991   // NOTE: Even though this behavior is generalized, only ObjC is actually
1992   // supported at the moment.
1993   for (LanguageRuntime *runtime : GetProcess()->GetLanguageRuntimes()) {
1994     if (auto e = runtime->GetExceptionObjectForThread(shared_from_this()))
1995       return e;
1996   }
1997 
1998   return ValueObjectSP();
1999 }
2000 
2001 ThreadSP Thread::GetCurrentExceptionBacktrace() {
2002   ValueObjectSP exception = GetCurrentException();
2003   if (!exception)
2004     return ThreadSP();
2005 
2006   // NOTE: Even though this behavior is generalized, only ObjC is actually
2007   // supported at the moment.
2008   for (LanguageRuntime *runtime : GetProcess()->GetLanguageRuntimes()) {
2009     if (auto bt = runtime->GetBacktraceThreadFromException(exception))
2010       return bt;
2011   }
2012 
2013   return ThreadSP();
2014 }
2015