1 //===-- ThreadList.cpp ------------------------------------------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 #include <stdlib.h>
10 
11 #include <algorithm>
12 
13 #include "lldb/Core/Log.h"
14 #include "lldb/Core/State.h"
15 #include "lldb/Target/RegisterContext.h"
16 #include "lldb/Target/ThreadList.h"
17 #include "lldb/Target/Thread.h"
18 #include "lldb/Target/ThreadPlan.h"
19 #include "lldb/Target/Process.h"
20 #include "lldb/Utility/ConvertEnum.h"
21 
22 using namespace lldb;
23 using namespace lldb_private;
24 
25 ThreadList::ThreadList (Process *process) :
26     ThreadCollection(),
27     m_process (process),
28     m_stop_id (0),
29     m_selected_tid (LLDB_INVALID_THREAD_ID)
30 {
31 }
32 
33 ThreadList::ThreadList (const ThreadList &rhs) :
34     ThreadCollection(),
35     m_process (rhs.m_process),
36     m_stop_id (rhs.m_stop_id),
37     m_selected_tid ()
38 {
39     // Use the assignment operator since it uses the mutex
40     *this = rhs;
41 }
42 
43 const ThreadList&
44 ThreadList::operator = (const ThreadList& rhs)
45 {
46     if (this != &rhs)
47     {
48         // Lock both mutexes to make sure neither side changes anyone on us
49         // while the assignement occurs
50         Mutex::Locker locker(GetMutex());
51         m_process = rhs.m_process;
52         m_stop_id = rhs.m_stop_id;
53         m_threads = rhs.m_threads;
54         m_selected_tid = rhs.m_selected_tid;
55     }
56     return *this;
57 }
58 
59 
60 ThreadList::~ThreadList()
61 {
62     // Clear the thread list. Clear will take the mutex lock
63     // which will ensure that if anyone is using the list
64     // they won't get it removed while using it.
65     Clear();
66 }
67 
68 
69 uint32_t
70 ThreadList::GetStopID () const
71 {
72     return m_stop_id;
73 }
74 
75 void
76 ThreadList::SetStopID (uint32_t stop_id)
77 {
78     m_stop_id = stop_id;
79 }
80 
81 uint32_t
82 ThreadList::GetSize (bool can_update)
83 {
84     Mutex::Locker locker(GetMutex());
85     if (can_update)
86         m_process->UpdateThreadListIfNeeded();
87     return m_threads.size();
88 }
89 
90 ThreadSP
91 ThreadList::GetThreadAtIndex (uint32_t idx, bool can_update)
92 {
93     Mutex::Locker locker(GetMutex());
94     if (can_update)
95         m_process->UpdateThreadListIfNeeded();
96 
97     ThreadSP thread_sp;
98     if (idx < m_threads.size())
99         thread_sp = m_threads[idx];
100     return thread_sp;
101 }
102 
103 ThreadSP
104 ThreadList::FindThreadByID (lldb::tid_t tid, bool can_update)
105 {
106     Mutex::Locker locker(GetMutex());
107 
108     if (can_update)
109         m_process->UpdateThreadListIfNeeded();
110 
111     ThreadSP thread_sp;
112     uint32_t idx = 0;
113     const uint32_t num_threads = m_threads.size();
114     for (idx = 0; idx < num_threads; ++idx)
115     {
116         if (m_threads[idx]->GetID() == tid)
117         {
118             thread_sp = m_threads[idx];
119             break;
120         }
121     }
122     return thread_sp;
123 }
124 
125 ThreadSP
126 ThreadList::FindThreadByProtocolID (lldb::tid_t tid, bool can_update)
127 {
128     Mutex::Locker locker(GetMutex());
129 
130     if (can_update)
131         m_process->UpdateThreadListIfNeeded();
132 
133     ThreadSP thread_sp;
134     uint32_t idx = 0;
135     const uint32_t num_threads = m_threads.size();
136     for (idx = 0; idx < num_threads; ++idx)
137     {
138         if (m_threads[idx]->GetProtocolID() == tid)
139         {
140             thread_sp = m_threads[idx];
141             break;
142         }
143     }
144     return thread_sp;
145 }
146 
147 
148 ThreadSP
149 ThreadList::RemoveThreadByID (lldb::tid_t tid, bool can_update)
150 {
151     Mutex::Locker locker(GetMutex());
152 
153     if (can_update)
154         m_process->UpdateThreadListIfNeeded();
155 
156     ThreadSP thread_sp;
157     uint32_t idx = 0;
158     const uint32_t num_threads = m_threads.size();
159     for (idx = 0; idx < num_threads; ++idx)
160     {
161         if (m_threads[idx]->GetID() == tid)
162         {
163             thread_sp = m_threads[idx];
164             m_threads.erase(m_threads.begin()+idx);
165             break;
166         }
167     }
168     return thread_sp;
169 }
170 
171 ThreadSP
172 ThreadList::RemoveThreadByProtocolID (lldb::tid_t tid, bool can_update)
173 {
174     Mutex::Locker locker(GetMutex());
175 
176     if (can_update)
177         m_process->UpdateThreadListIfNeeded();
178 
179     ThreadSP thread_sp;
180     uint32_t idx = 0;
181     const uint32_t num_threads = m_threads.size();
182     for (idx = 0; idx < num_threads; ++idx)
183     {
184         if (m_threads[idx]->GetProtocolID() == tid)
185         {
186             thread_sp = m_threads[idx];
187             m_threads.erase(m_threads.begin()+idx);
188             break;
189         }
190     }
191     return thread_sp;
192 }
193 
194 ThreadSP
195 ThreadList::GetThreadSPForThreadPtr (Thread *thread_ptr)
196 {
197     ThreadSP thread_sp;
198     if (thread_ptr)
199     {
200         Mutex::Locker locker(GetMutex());
201 
202         uint32_t idx = 0;
203         const uint32_t num_threads = m_threads.size();
204         for (idx = 0; idx < num_threads; ++idx)
205         {
206             if (m_threads[idx].get() == thread_ptr)
207             {
208                 thread_sp = m_threads[idx];
209                 break;
210             }
211         }
212     }
213     return thread_sp;
214 }
215 
216 
217 
218 ThreadSP
219 ThreadList::FindThreadByIndexID (uint32_t index_id, bool can_update)
220 {
221     Mutex::Locker locker(GetMutex());
222 
223     if (can_update)
224         m_process->UpdateThreadListIfNeeded();
225 
226     ThreadSP thread_sp;
227     const uint32_t num_threads = m_threads.size();
228     for (uint32_t idx = 0; idx < num_threads; ++idx)
229     {
230         if (m_threads[idx]->GetIndexID() == index_id)
231         {
232             thread_sp = m_threads[idx];
233             break;
234         }
235     }
236     return thread_sp;
237 }
238 
239 bool
240 ThreadList::ShouldStop (Event *event_ptr)
241 {
242     // Running events should never stop, obviously...
243 
244     Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
245 
246     // The ShouldStop method of the threads can do a whole lot of work,
247     // figuring out whether the thread plan conditions are met.  So we don't want
248     // to keep the ThreadList locked the whole time we are doing this.
249     // FIXME: It is possible that running code could cause new threads
250     // to be created.  If that happens we will miss asking them whether
251     // then should stop.  This is not a big deal, since we haven't had
252     // a chance to hang any interesting operations on those threads yet.
253 
254     collection threads_copy;
255     {
256         // Scope for locker
257         Mutex::Locker locker(GetMutex());
258 
259         m_process->UpdateThreadListIfNeeded();
260         threads_copy = m_threads;
261     }
262 
263     collection::iterator pos, end = threads_copy.end();
264 
265     if (log)
266     {
267         log->PutCString("");
268         log->Printf ("ThreadList::%s: %" PRIu64 " threads", __FUNCTION__, (uint64_t)m_threads.size());
269     }
270 
271     bool did_anybody_stop_for_a_reason = false;
272 
273     // If the event is an Interrupt event, then we're going to stop no matter what.  Otherwise, presume we won't stop.
274     bool should_stop = false;
275     if (Process::ProcessEventData::GetInterruptedFromEvent(event_ptr))
276     {
277         if (log)
278             log->Printf("ThreadList::%s handling interrupt event, should stop set to true", __FUNCTION__);
279 
280         should_stop = true;
281     }
282 
283     // Now we run through all the threads and get their stop info's.  We want to make sure to do this first before
284     // we start running the ShouldStop, because one thread's ShouldStop could destroy information (like deleting a
285     // thread specific breakpoint another thread had stopped at) which could lead us to compute the StopInfo incorrectly.
286     // We don't need to use it here, we just want to make sure it gets computed.
287 
288     for (pos = threads_copy.begin(); pos != end; ++pos)
289     {
290         ThreadSP thread_sp(*pos);
291         thread_sp->GetStopInfo();
292     }
293 
294     for (pos = threads_copy.begin(); pos != end; ++pos)
295     {
296         ThreadSP thread_sp(*pos);
297 
298         // We should never get a stop for which no thread had a stop reason, but sometimes we do see this -
299         // for instance when we first connect to a remote stub.  In that case we should stop, since we can't figure out
300         // the right thing to do and stopping gives the user control over what to do in this instance.
301         //
302         // Note, this causes a problem when you have a thread specific breakpoint, and a bunch of threads hit the breakpoint,
303         // but not the thread which we are waiting for.  All the threads that are not "supposed" to hit the breakpoint
304         // are marked as having no stop reason, which is right, they should not show a stop reason.  But that triggers this
305         // code and causes us to stop seemingly for no reason.
306         //
307         // Since the only way we ever saw this error was on first attach, I'm only going to trigger set did_anybody_stop_for_a_reason
308         // to true unless this is the first stop.
309         //
310         // If this becomes a problem, we'll have to have another StopReason like "StopInfoHidden" which will look invalid
311         // everywhere but at this check.
312 
313         if (thread_sp->GetProcess()->GetStopID() > 1)
314             did_anybody_stop_for_a_reason = true;
315         else
316             did_anybody_stop_for_a_reason |= thread_sp->ThreadStoppedForAReason();
317 
318         const bool thread_should_stop = thread_sp->ShouldStop(event_ptr);
319         if (thread_should_stop)
320             should_stop |= true;
321     }
322 
323     if (!should_stop && !did_anybody_stop_for_a_reason)
324     {
325         should_stop = true;
326         if (log)
327             log->Printf ("ThreadList::%s we stopped but no threads had a stop reason, overriding should_stop and stopping.", __FUNCTION__);
328     }
329 
330     if (log)
331         log->Printf ("ThreadList::%s overall should_stop = %i", __FUNCTION__, should_stop);
332 
333     if (should_stop)
334     {
335         for (pos = threads_copy.begin(); pos != end; ++pos)
336         {
337             ThreadSP thread_sp(*pos);
338             thread_sp->WillStop ();
339         }
340     }
341 
342     return should_stop;
343 }
344 
345 Vote
346 ThreadList::ShouldReportStop (Event *event_ptr)
347 {
348     Mutex::Locker locker(GetMutex());
349 
350     Vote result = eVoteNoOpinion;
351     m_process->UpdateThreadListIfNeeded();
352     collection::iterator pos, end = m_threads.end();
353 
354     Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
355 
356     if (log)
357         log->Printf ("ThreadList::%s %" PRIu64 " threads", __FUNCTION__, (uint64_t)m_threads.size());
358 
359     // Run through the threads and ask whether we should report this event.
360     // For stopping, a YES vote wins over everything.  A NO vote wins over NO opinion.
361     for (pos = m_threads.begin(); pos != end; ++pos)
362     {
363         ThreadSP thread_sp(*pos);
364         const Vote vote = thread_sp->ShouldReportStop (event_ptr);
365         switch (vote)
366         {
367         case eVoteNoOpinion:
368             continue;
369 
370         case eVoteYes:
371             result = eVoteYes;
372             break;
373 
374         case eVoteNo:
375             if (result == eVoteNoOpinion)
376             {
377                 result = eVoteNo;
378             }
379             else
380             {
381                 if (log)
382                     log->Printf ("ThreadList::%s thread 0x%4.4" PRIx64 ": voted %s, but lost out because result was %s",
383                                  __FUNCTION__,
384                                  thread_sp->GetID (),
385                                  GetVoteAsCString (vote),
386                                  GetVoteAsCString (result));
387             }
388             break;
389         }
390     }
391     if (log)
392         log->Printf ("ThreadList::%s returning %s", __FUNCTION__, GetVoteAsCString (result));
393     return result;
394 }
395 
396 void
397 ThreadList::SetShouldReportStop (Vote vote)
398 {
399     Mutex::Locker locker(GetMutex());
400     m_process->UpdateThreadListIfNeeded();
401     collection::iterator pos, end = m_threads.end();
402     for (pos = m_threads.begin(); pos != end; ++pos)
403     {
404         ThreadSP thread_sp(*pos);
405         thread_sp->SetShouldReportStop (vote);
406     }
407 }
408 
409 Vote
410 ThreadList::ShouldReportRun (Event *event_ptr)
411 {
412 
413     Mutex::Locker locker(GetMutex());
414 
415     Vote result = eVoteNoOpinion;
416     m_process->UpdateThreadListIfNeeded();
417     collection::iterator pos, end = m_threads.end();
418 
419     // Run through the threads and ask whether we should report this event.
420     // The rule is NO vote wins over everything, a YES vote wins over no opinion.
421 
422     Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
423 
424     for (pos = m_threads.begin(); pos != end; ++pos)
425     {
426         if ((*pos)->GetResumeState () != eStateSuspended)
427         {
428             switch ((*pos)->ShouldReportRun (event_ptr))
429             {
430                 case eVoteNoOpinion:
431                     continue;
432                 case eVoteYes:
433                     if (result == eVoteNoOpinion)
434                         result = eVoteYes;
435                     break;
436                 case eVoteNo:
437                     if (log)
438                         log->Printf ("ThreadList::ShouldReportRun() thread %d (0x%4.4" PRIx64 ") says don't report.",
439                                      (*pos)->GetIndexID(),
440                                      (*pos)->GetID());
441                     result = eVoteNo;
442                     break;
443             }
444         }
445     }
446     return result;
447 }
448 
449 void
450 ThreadList::Clear()
451 {
452     Mutex::Locker locker(GetMutex());
453     m_stop_id = 0;
454     m_threads.clear();
455     m_selected_tid = LLDB_INVALID_THREAD_ID;
456 }
457 
458 void
459 ThreadList::Destroy()
460 {
461     Mutex::Locker locker(GetMutex());
462     const uint32_t num_threads = m_threads.size();
463     for (uint32_t idx = 0; idx < num_threads; ++idx)
464     {
465         m_threads[idx]->DestroyThread();
466     }
467 }
468 
469 void
470 ThreadList::RefreshStateAfterStop ()
471 {
472     Mutex::Locker locker(GetMutex());
473 
474     m_process->UpdateThreadListIfNeeded();
475 
476     Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
477     if (log && log->GetVerbose())
478         log->Printf ("Turning off notification of new threads while single stepping a thread.");
479 
480     collection::iterator pos, end = m_threads.end();
481     for (pos = m_threads.begin(); pos != end; ++pos)
482         (*pos)->RefreshStateAfterStop ();
483 }
484 
485 void
486 ThreadList::DiscardThreadPlans ()
487 {
488     // You don't need to update the thread list here, because only threads
489     // that you currently know about have any thread plans.
490     Mutex::Locker locker(GetMutex());
491 
492     collection::iterator pos, end = m_threads.end();
493     for (pos = m_threads.begin(); pos != end; ++pos)
494         (*pos)->DiscardThreadPlans (true);
495 
496 }
497 
498 bool
499 ThreadList::WillResume ()
500 {
501     // Run through the threads and perform their momentary actions.
502     // But we only do this for threads that are running, user suspended
503     // threads stay where they are.
504 
505     Mutex::Locker locker(GetMutex());
506     m_process->UpdateThreadListIfNeeded();
507 
508     collection::iterator pos, end = m_threads.end();
509 
510     // See if any thread wants to run stopping others.  If it does, then we won't
511     // setup the other threads for resume, since they aren't going to get a chance
512     // to run.  This is necessary because the SetupForResume might add "StopOthers"
513     // plans which would then get to be part of the who-gets-to-run negotiation, but
514     // they're coming in after the fact, and the threads that are already set up should
515     // take priority.
516 
517     bool wants_solo_run = false;
518 
519     for (pos = m_threads.begin(); pos != end; ++pos)
520     {
521         if ((*pos)->GetResumeState() != eStateSuspended &&
522                  (*pos)->GetCurrentPlan()->StopOthers())
523         {
524             if ((*pos)->IsOperatingSystemPluginThread() && !(*pos)->GetBackingThread())
525                 continue;
526             wants_solo_run = true;
527             break;
528         }
529     }
530 
531     if (wants_solo_run)
532     {
533         Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
534         if (log && log->GetVerbose())
535             log->Printf ("Turning on notification of new threads while single stepping a thread.");
536         m_process->StartNoticingNewThreads();
537     }
538     else
539     {
540         Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
541         if (log && log->GetVerbose())
542             log->Printf ("Turning off notification of new threads while single stepping a thread.");
543         m_process->StopNoticingNewThreads();
544     }
545 
546     // Give all the threads that are likely to run a last chance to set up their state before we
547     // negotiate who is actually going to get a chance to run...
548     // Don't set to resume suspended threads, and if any thread wanted to stop others, only
549     // call setup on the threads that request StopOthers...
550 
551     for (pos = m_threads.begin(); pos != end; ++pos)
552     {
553         if ((*pos)->GetResumeState() != eStateSuspended
554             && (!wants_solo_run || (*pos)->GetCurrentPlan()->StopOthers()))
555         {
556             if ((*pos)->IsOperatingSystemPluginThread() && !(*pos)->GetBackingThread())
557                 continue;
558             (*pos)->SetupForResume ();
559         }
560     }
561 
562     // Now go through the threads and see if any thread wants to run just itself.
563     // if so then pick one and run it.
564 
565     ThreadList run_me_only_list (m_process);
566 
567     run_me_only_list.SetStopID(m_process->GetStopID());
568 
569     bool run_only_current_thread = false;
570 
571     for (pos = m_threads.begin(); pos != end; ++pos)
572     {
573         ThreadSP thread_sp(*pos);
574         if (thread_sp->GetResumeState() != eStateSuspended &&
575                  thread_sp->GetCurrentPlan()->StopOthers())
576         {
577             if ((*pos)->IsOperatingSystemPluginThread() && !(*pos)->GetBackingThread())
578                 continue;
579 
580             // You can't say "stop others" and also want yourself to be suspended.
581             assert (thread_sp->GetCurrentPlan()->RunState() != eStateSuspended);
582 
583             if (thread_sp == GetSelectedThread())
584             {
585                 run_only_current_thread = true;
586                 run_me_only_list.Clear();
587                 run_me_only_list.AddThread (thread_sp);
588                 break;
589             }
590 
591             run_me_only_list.AddThread (thread_sp);
592         }
593 
594     }
595 
596     bool need_to_resume = true;
597 
598     if (run_me_only_list.GetSize (false) == 0)
599     {
600         // Everybody runs as they wish:
601         for (pos = m_threads.begin(); pos != end; ++pos)
602         {
603             ThreadSP thread_sp(*pos);
604             StateType run_state;
605             if (thread_sp->GetResumeState() != eStateSuspended)
606                 run_state = thread_sp->GetCurrentPlan()->RunState();
607             else
608                 run_state = eStateSuspended;
609             if (!thread_sp->ShouldResume(run_state))
610                 need_to_resume = false;
611         }
612     }
613     else
614     {
615         ThreadSP thread_to_run;
616 
617         if (run_only_current_thread)
618         {
619             thread_to_run = GetSelectedThread();
620         }
621         else if (run_me_only_list.GetSize (false) == 1)
622         {
623             thread_to_run = run_me_only_list.GetThreadAtIndex (0);
624         }
625         else
626         {
627             int random_thread = (int)
628                     ((run_me_only_list.GetSize (false) * (double) rand ()) / (RAND_MAX + 1.0));
629             thread_to_run = run_me_only_list.GetThreadAtIndex (random_thread);
630         }
631 
632         for (pos = m_threads.begin(); pos != end; ++pos)
633         {
634             ThreadSP thread_sp(*pos);
635             if (thread_sp == thread_to_run)
636             {
637                 if (!thread_sp->ShouldResume(thread_sp->GetCurrentPlan()->RunState()))
638                     need_to_resume = false;
639             }
640             else
641                 thread_sp->ShouldResume (eStateSuspended);
642         }
643     }
644 
645     return need_to_resume;
646 }
647 
648 void
649 ThreadList::DidResume ()
650 {
651     Mutex::Locker locker(GetMutex());
652     collection::iterator pos, end = m_threads.end();
653     for (pos = m_threads.begin(); pos != end; ++pos)
654     {
655         // Don't clear out threads that aren't going to get a chance to run, rather
656         // leave their state for the next time around.
657         ThreadSP thread_sp(*pos);
658         if (thread_sp->GetResumeState() != eStateSuspended)
659             thread_sp->DidResume ();
660     }
661 }
662 
663 void
664 ThreadList::DidStop ()
665 {
666     Mutex::Locker locker(GetMutex());
667     collection::iterator pos, end = m_threads.end();
668     for (pos = m_threads.begin(); pos != end; ++pos)
669     {
670         // Notify threads that the process just stopped.
671         // Note, this currently assumes that all threads in the list
672         // stop when the process stops.  In the future we will want to support
673         // a debugging model where some threads continue to run while others
674         // are stopped.  We either need to handle that somehow here or
675         // create a special thread list containing only threads which will
676         // stop in the code that calls this method (currently
677         // Process::SetPrivateState).
678         ThreadSP thread_sp(*pos);
679         if (StateIsRunningState(thread_sp->GetState()))
680             thread_sp->DidStop ();
681     }
682 }
683 
684 ThreadSP
685 ThreadList::GetSelectedThread ()
686 {
687     Mutex::Locker locker(GetMutex());
688     ThreadSP thread_sp = FindThreadByID(m_selected_tid);
689     if (!thread_sp.get())
690     {
691         if (m_threads.size() == 0)
692             return thread_sp;
693         m_selected_tid = m_threads[0]->GetID();
694         thread_sp = m_threads[0];
695     }
696     return thread_sp;
697 }
698 
699 bool
700 ThreadList::SetSelectedThreadByID (lldb::tid_t tid, bool notify)
701 {
702     Mutex::Locker locker(GetMutex());
703     ThreadSP selected_thread_sp(FindThreadByID(tid));
704     if  (selected_thread_sp)
705     {
706         m_selected_tid = tid;
707         selected_thread_sp->SetDefaultFileAndLineToSelectedFrame();
708     }
709     else
710         m_selected_tid = LLDB_INVALID_THREAD_ID;
711 
712     if (notify)
713         NotifySelectedThreadChanged(m_selected_tid);
714 
715     return m_selected_tid != LLDB_INVALID_THREAD_ID;
716 }
717 
718 bool
719 ThreadList::SetSelectedThreadByIndexID (uint32_t index_id, bool notify)
720 {
721     Mutex::Locker locker(GetMutex());
722     ThreadSP selected_thread_sp (FindThreadByIndexID(index_id));
723     if  (selected_thread_sp.get())
724     {
725         m_selected_tid = selected_thread_sp->GetID();
726         selected_thread_sp->SetDefaultFileAndLineToSelectedFrame();
727     }
728     else
729         m_selected_tid = LLDB_INVALID_THREAD_ID;
730 
731     if (notify)
732         NotifySelectedThreadChanged(m_selected_tid);
733 
734     return m_selected_tid != LLDB_INVALID_THREAD_ID;
735 }
736 
737 void
738 ThreadList::NotifySelectedThreadChanged (lldb::tid_t tid)
739 {
740     ThreadSP selected_thread_sp (FindThreadByID(tid));
741     if (selected_thread_sp->EventTypeHasListeners(Thread::eBroadcastBitThreadSelected))
742         selected_thread_sp->BroadcastEvent(Thread::eBroadcastBitThreadSelected,
743                                            new Thread::ThreadEventData(selected_thread_sp));
744 }
745 
746 void
747 ThreadList::Update (ThreadList &rhs)
748 {
749     if (this != &rhs)
750     {
751         // Lock both mutexes to make sure neither side changes anyone on us
752         // while the assignement occurs
753         Mutex::Locker locker(GetMutex());
754         m_process = rhs.m_process;
755         m_stop_id = rhs.m_stop_id;
756         m_threads.swap(rhs.m_threads);
757         m_selected_tid = rhs.m_selected_tid;
758 
759 
760         // Now we look for threads that we are done with and
761         // make sure to clear them up as much as possible so
762         // anyone with a shared pointer will still have a reference,
763         // but the thread won't be of much use. Using std::weak_ptr
764         // for all backward references (such as a thread to a process)
765         // will eventually solve this issue for us, but for now, we
766         // need to work around the issue
767         collection::iterator rhs_pos, rhs_end = rhs.m_threads.end();
768         for (rhs_pos = rhs.m_threads.begin(); rhs_pos != rhs_end; ++rhs_pos)
769         {
770             const lldb::tid_t tid = (*rhs_pos)->GetID();
771             bool thread_is_alive = false;
772             const uint32_t num_threads = m_threads.size();
773             for (uint32_t idx = 0; idx < num_threads; ++idx)
774             {
775                 if (m_threads[idx]->GetID() == tid)
776                 {
777                     thread_is_alive = true;
778                     break;
779                 }
780             }
781             if (!thread_is_alive)
782                 (*rhs_pos)->DestroyThread();
783         }
784     }
785 }
786 
787 void
788 ThreadList::Flush ()
789 {
790     Mutex::Locker locker(GetMutex());
791     collection::iterator pos, end = m_threads.end();
792     for (pos = m_threads.begin(); pos != end; ++pos)
793         (*pos)->Flush ();
794 }
795 
796 Mutex &
797 ThreadList::GetMutex ()
798 {
799     return m_process->m_thread_mutex;
800 }
801 
802