xref: /openbsd-src/gnu/llvm/lldb/source/Breakpoint/Breakpoint.cpp (revision f6aab3d83b51b91c24247ad2c2573574de475a82)
1 //===-- Breakpoint.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 "llvm/Support/Casting.h"
10 
11 #include "lldb/Breakpoint/Breakpoint.h"
12 #include "lldb/Breakpoint/BreakpointLocation.h"
13 #include "lldb/Breakpoint/BreakpointLocationCollection.h"
14 #include "lldb/Breakpoint/BreakpointPrecondition.h"
15 #include "lldb/Breakpoint/BreakpointResolver.h"
16 #include "lldb/Breakpoint/BreakpointResolverFileLine.h"
17 #include "lldb/Core/Address.h"
18 #include "lldb/Core/Module.h"
19 #include "lldb/Core/ModuleList.h"
20 #include "lldb/Core/SearchFilter.h"
21 #include "lldb/Core/Section.h"
22 #include "lldb/Symbol/CompileUnit.h"
23 #include "lldb/Symbol/Function.h"
24 #include "lldb/Symbol/Symbol.h"
25 #include "lldb/Symbol/SymbolContext.h"
26 #include "lldb/Target/SectionLoadList.h"
27 #include "lldb/Target/Target.h"
28 #include "lldb/Target/ThreadSpec.h"
29 #include "lldb/Utility/LLDBLog.h"
30 #include "lldb/Utility/Log.h"
31 #include "lldb/Utility/Stream.h"
32 #include "lldb/Utility/StreamString.h"
33 
34 #include <memory>
35 
36 using namespace lldb;
37 using namespace lldb_private;
38 using namespace llvm;
39 
GetEventIdentifier()40 ConstString Breakpoint::GetEventIdentifier() {
41   static ConstString g_identifier("event-identifier.breakpoint.changed");
42   return g_identifier;
43 }
44 
45 const char *Breakpoint::g_option_names[static_cast<uint32_t>(
46     Breakpoint::OptionNames::LastOptionName)]{"Names", "Hardware"};
47 
48 // Breakpoint constructor
Breakpoint(Target & target,SearchFilterSP & filter_sp,BreakpointResolverSP & resolver_sp,bool hardware,bool resolve_indirect_symbols)49 Breakpoint::Breakpoint(Target &target, SearchFilterSP &filter_sp,
50                        BreakpointResolverSP &resolver_sp, bool hardware,
51                        bool resolve_indirect_symbols)
52     : m_being_created(true), m_hardware(hardware), m_target(target),
53       m_filter_sp(filter_sp), m_resolver_sp(resolver_sp), m_options(true),
54       m_locations(*this), m_resolve_indirect_symbols(resolve_indirect_symbols),
55       m_hit_counter() {
56   m_being_created = false;
57 }
58 
Breakpoint(Target & new_target,const Breakpoint & source_bp)59 Breakpoint::Breakpoint(Target &new_target, const Breakpoint &source_bp)
60     : m_being_created(true), m_hardware(source_bp.m_hardware),
61       m_target(new_target), m_name_list(source_bp.m_name_list),
62       m_options(source_bp.m_options), m_locations(*this),
63       m_resolve_indirect_symbols(source_bp.m_resolve_indirect_symbols),
64       m_hit_counter() {}
65 
66 // Destructor
67 Breakpoint::~Breakpoint() = default;
68 
CopyFromBreakpoint(TargetSP new_target,const Breakpoint & bp_to_copy_from)69 BreakpointSP Breakpoint::CopyFromBreakpoint(TargetSP new_target,
70     const Breakpoint& bp_to_copy_from) {
71   if (!new_target)
72     return BreakpointSP();
73 
74   BreakpointSP bp(new Breakpoint(*new_target, bp_to_copy_from));
75   // Now go through and copy the filter & resolver:
76   bp->m_resolver_sp = bp_to_copy_from.m_resolver_sp->CopyForBreakpoint(bp);
77   bp->m_filter_sp = bp_to_copy_from.m_filter_sp->CreateCopy(new_target);
78   return bp;
79 }
80 
81 // Serialization
SerializeToStructuredData()82 StructuredData::ObjectSP Breakpoint::SerializeToStructuredData() {
83   // Serialize the resolver:
84   StructuredData::DictionarySP breakpoint_dict_sp(
85       new StructuredData::Dictionary());
86   StructuredData::DictionarySP breakpoint_contents_sp(
87       new StructuredData::Dictionary());
88 
89   if (!m_name_list.empty()) {
90     StructuredData::ArraySP names_array_sp(new StructuredData::Array());
91     for (auto name : m_name_list) {
92       names_array_sp->AddItem(
93           StructuredData::StringSP(new StructuredData::String(name)));
94     }
95     breakpoint_contents_sp->AddItem(Breakpoint::GetKey(OptionNames::Names),
96                                     names_array_sp);
97   }
98 
99   breakpoint_contents_sp->AddBooleanItem(
100       Breakpoint::GetKey(OptionNames::Hardware), m_hardware);
101 
102   StructuredData::ObjectSP resolver_dict_sp(
103       m_resolver_sp->SerializeToStructuredData());
104   if (!resolver_dict_sp)
105     return StructuredData::ObjectSP();
106 
107   breakpoint_contents_sp->AddItem(BreakpointResolver::GetSerializationKey(),
108                                   resolver_dict_sp);
109 
110   StructuredData::ObjectSP filter_dict_sp(
111       m_filter_sp->SerializeToStructuredData());
112   if (!filter_dict_sp)
113     return StructuredData::ObjectSP();
114 
115   breakpoint_contents_sp->AddItem(SearchFilter::GetSerializationKey(),
116                                   filter_dict_sp);
117 
118   StructuredData::ObjectSP options_dict_sp(
119       m_options.SerializeToStructuredData());
120   if (!options_dict_sp)
121     return StructuredData::ObjectSP();
122 
123   breakpoint_contents_sp->AddItem(BreakpointOptions::GetSerializationKey(),
124                                   options_dict_sp);
125 
126   breakpoint_dict_sp->AddItem(GetSerializationKey(), breakpoint_contents_sp);
127   return breakpoint_dict_sp;
128 }
129 
CreateFromStructuredData(TargetSP target_sp,StructuredData::ObjectSP & object_data,Status & error)130 lldb::BreakpointSP Breakpoint::CreateFromStructuredData(
131     TargetSP target_sp, StructuredData::ObjectSP &object_data, Status &error) {
132   BreakpointSP result_sp;
133   if (!target_sp)
134     return result_sp;
135 
136   StructuredData::Dictionary *breakpoint_dict = object_data->GetAsDictionary();
137 
138   if (!breakpoint_dict || !breakpoint_dict->IsValid()) {
139     error.SetErrorString("Can't deserialize from an invalid data object.");
140     return result_sp;
141   }
142 
143   StructuredData::Dictionary *resolver_dict;
144   bool success = breakpoint_dict->GetValueForKeyAsDictionary(
145       BreakpointResolver::GetSerializationKey(), resolver_dict);
146   if (!success) {
147     error.SetErrorString("Breakpoint data missing toplevel resolver key");
148     return result_sp;
149   }
150 
151   Status create_error;
152   BreakpointResolverSP resolver_sp =
153       BreakpointResolver::CreateFromStructuredData(*resolver_dict,
154                                                    create_error);
155   if (create_error.Fail()) {
156     error.SetErrorStringWithFormat(
157         "Error creating breakpoint resolver from data: %s.",
158         create_error.AsCString());
159     return result_sp;
160   }
161 
162   StructuredData::Dictionary *filter_dict;
163   success = breakpoint_dict->GetValueForKeyAsDictionary(
164       SearchFilter::GetSerializationKey(), filter_dict);
165   SearchFilterSP filter_sp;
166   if (!success)
167     filter_sp =
168         std::make_shared<SearchFilterForUnconstrainedSearches>(target_sp);
169   else {
170     filter_sp = SearchFilter::CreateFromStructuredData(target_sp, *filter_dict,
171         create_error);
172     if (create_error.Fail()) {
173       error.SetErrorStringWithFormat(
174           "Error creating breakpoint filter from data: %s.",
175           create_error.AsCString());
176       return result_sp;
177     }
178   }
179 
180   std::unique_ptr<BreakpointOptions> options_up;
181   StructuredData::Dictionary *options_dict;
182   Target& target = *target_sp;
183   success = breakpoint_dict->GetValueForKeyAsDictionary(
184       BreakpointOptions::GetSerializationKey(), options_dict);
185   if (success) {
186     options_up = BreakpointOptions::CreateFromStructuredData(
187         target, *options_dict, create_error);
188     if (create_error.Fail()) {
189       error.SetErrorStringWithFormat(
190           "Error creating breakpoint options from data: %s.",
191           create_error.AsCString());
192       return result_sp;
193     }
194   }
195 
196   bool hardware = false;
197   success = breakpoint_dict->GetValueForKeyAsBoolean(
198       Breakpoint::GetKey(OptionNames::Hardware), hardware);
199 
200   result_sp = target.CreateBreakpoint(filter_sp, resolver_sp, false,
201                                       hardware, true);
202 
203   if (result_sp && options_up) {
204     result_sp->m_options = *options_up;
205   }
206 
207   StructuredData::Array *names_array;
208   success = breakpoint_dict->GetValueForKeyAsArray(
209       Breakpoint::GetKey(OptionNames::Names), names_array);
210   if (success && names_array) {
211     size_t num_names = names_array->GetSize();
212     for (size_t i = 0; i < num_names; i++) {
213       llvm::StringRef name;
214       Status error;
215       success = names_array->GetItemAtIndexAsString(i, name);
216       target.AddNameToBreakpoint(result_sp, name.str().c_str(), error);
217     }
218   }
219 
220   return result_sp;
221 }
222 
SerializedBreakpointMatchesNames(StructuredData::ObjectSP & bkpt_object_sp,std::vector<std::string> & names)223 bool Breakpoint::SerializedBreakpointMatchesNames(
224     StructuredData::ObjectSP &bkpt_object_sp, std::vector<std::string> &names) {
225   if (!bkpt_object_sp)
226     return false;
227 
228   StructuredData::Dictionary *bkpt_dict = bkpt_object_sp->GetAsDictionary();
229   if (!bkpt_dict)
230     return false;
231 
232   if (names.empty())
233     return true;
234 
235   StructuredData::Array *names_array;
236 
237   bool success =
238       bkpt_dict->GetValueForKeyAsArray(GetKey(OptionNames::Names), names_array);
239   // If there are no names, it can't match these names;
240   if (!success)
241     return false;
242 
243   size_t num_names = names_array->GetSize();
244 
245   for (size_t i = 0; i < num_names; i++) {
246     llvm::StringRef name;
247     if (names_array->GetItemAtIndexAsString(i, name)) {
248       if (llvm::is_contained(names, name))
249         return true;
250     }
251   }
252   return false;
253 }
254 
GetTargetSP()255 const lldb::TargetSP Breakpoint::GetTargetSP() {
256   return m_target.shared_from_this();
257 }
258 
IsInternal() const259 bool Breakpoint::IsInternal() const { return LLDB_BREAK_ID_IS_INTERNAL(m_bid); }
260 
AddLocation(const Address & addr,bool * new_location)261 BreakpointLocationSP Breakpoint::AddLocation(const Address &addr,
262                                              bool *new_location) {
263   return m_locations.AddLocation(addr, m_resolve_indirect_symbols,
264                                  new_location);
265 }
266 
FindLocationByAddress(const Address & addr)267 BreakpointLocationSP Breakpoint::FindLocationByAddress(const Address &addr) {
268   return m_locations.FindByAddress(addr);
269 }
270 
FindLocationIDByAddress(const Address & addr)271 break_id_t Breakpoint::FindLocationIDByAddress(const Address &addr) {
272   return m_locations.FindIDByAddress(addr);
273 }
274 
FindLocationByID(break_id_t bp_loc_id)275 BreakpointLocationSP Breakpoint::FindLocationByID(break_id_t bp_loc_id) {
276   return m_locations.FindByID(bp_loc_id);
277 }
278 
GetLocationAtIndex(size_t index)279 BreakpointLocationSP Breakpoint::GetLocationAtIndex(size_t index) {
280   return m_locations.GetByIndex(index);
281 }
282 
RemoveInvalidLocations(const ArchSpec & arch)283 void Breakpoint::RemoveInvalidLocations(const ArchSpec &arch) {
284   m_locations.RemoveInvalidLocations(arch);
285 }
286 
287 // For each of the overall options we need to decide how they propagate to the
288 // location options.  This will determine the precedence of options on the
289 // breakpoint vs. its locations.
290 
291 // Disable at the breakpoint level should override the location settings. That
292 // way you can conveniently turn off a whole breakpoint without messing up the
293 // individual settings.
294 
SetEnabled(bool enable)295 void Breakpoint::SetEnabled(bool enable) {
296   if (enable == m_options.IsEnabled())
297     return;
298 
299   m_options.SetEnabled(enable);
300   if (enable)
301     m_locations.ResolveAllBreakpointSites();
302   else
303     m_locations.ClearAllBreakpointSites();
304 
305   SendBreakpointChangedEvent(enable ? eBreakpointEventTypeEnabled
306                                     : eBreakpointEventTypeDisabled);
307 }
308 
IsEnabled()309 bool Breakpoint::IsEnabled() { return m_options.IsEnabled(); }
310 
SetIgnoreCount(uint32_t n)311 void Breakpoint::SetIgnoreCount(uint32_t n) {
312   if (m_options.GetIgnoreCount() == n)
313     return;
314 
315   m_options.SetIgnoreCount(n);
316   SendBreakpointChangedEvent(eBreakpointEventTypeIgnoreChanged);
317 }
318 
DecrementIgnoreCount()319 void Breakpoint::DecrementIgnoreCount() {
320   uint32_t ignore = m_options.GetIgnoreCount();
321   if (ignore != 0)
322     m_options.SetIgnoreCount(ignore - 1);
323 }
324 
GetIgnoreCount() const325 uint32_t Breakpoint::GetIgnoreCount() const {
326   return m_options.GetIgnoreCount();
327 }
328 
GetHitCount() const329 uint32_t Breakpoint::GetHitCount() const { return m_hit_counter.GetValue(); }
330 
ResetHitCount()331 void Breakpoint::ResetHitCount() {
332   m_hit_counter.Reset();
333   m_locations.ResetHitCount();
334 }
335 
IsOneShot() const336 bool Breakpoint::IsOneShot() const { return m_options.IsOneShot(); }
337 
SetOneShot(bool one_shot)338 void Breakpoint::SetOneShot(bool one_shot) { m_options.SetOneShot(one_shot); }
339 
IsAutoContinue() const340 bool Breakpoint::IsAutoContinue() const { return m_options.IsAutoContinue(); }
341 
SetAutoContinue(bool auto_continue)342 void Breakpoint::SetAutoContinue(bool auto_continue) {
343   m_options.SetAutoContinue(auto_continue);
344 }
345 
SetThreadID(lldb::tid_t thread_id)346 void Breakpoint::SetThreadID(lldb::tid_t thread_id) {
347   if (m_options.GetThreadSpec()->GetTID() == thread_id)
348     return;
349 
350   m_options.GetThreadSpec()->SetTID(thread_id);
351   SendBreakpointChangedEvent(eBreakpointEventTypeThreadChanged);
352 }
353 
GetThreadID() const354 lldb::tid_t Breakpoint::GetThreadID() const {
355   if (m_options.GetThreadSpecNoCreate() == nullptr)
356     return LLDB_INVALID_THREAD_ID;
357   else
358     return m_options.GetThreadSpecNoCreate()->GetTID();
359 }
360 
SetThreadIndex(uint32_t index)361 void Breakpoint::SetThreadIndex(uint32_t index) {
362   if (m_options.GetThreadSpec()->GetIndex() == index)
363     return;
364 
365   m_options.GetThreadSpec()->SetIndex(index);
366   SendBreakpointChangedEvent(eBreakpointEventTypeThreadChanged);
367 }
368 
GetThreadIndex() const369 uint32_t Breakpoint::GetThreadIndex() const {
370   if (m_options.GetThreadSpecNoCreate() == nullptr)
371     return 0;
372   else
373     return m_options.GetThreadSpecNoCreate()->GetIndex();
374 }
375 
SetThreadName(const char * thread_name)376 void Breakpoint::SetThreadName(const char *thread_name) {
377   if (m_options.GetThreadSpec()->GetName() != nullptr &&
378       ::strcmp(m_options.GetThreadSpec()->GetName(), thread_name) == 0)
379     return;
380 
381   m_options.GetThreadSpec()->SetName(thread_name);
382   SendBreakpointChangedEvent(eBreakpointEventTypeThreadChanged);
383 }
384 
GetThreadName() const385 const char *Breakpoint::GetThreadName() const {
386   if (m_options.GetThreadSpecNoCreate() == nullptr)
387     return nullptr;
388   else
389     return m_options.GetThreadSpecNoCreate()->GetName();
390 }
391 
SetQueueName(const char * queue_name)392 void Breakpoint::SetQueueName(const char *queue_name) {
393   if (m_options.GetThreadSpec()->GetQueueName() != nullptr &&
394       ::strcmp(m_options.GetThreadSpec()->GetQueueName(), queue_name) == 0)
395     return;
396 
397   m_options.GetThreadSpec()->SetQueueName(queue_name);
398   SendBreakpointChangedEvent(eBreakpointEventTypeThreadChanged);
399 }
400 
GetQueueName() const401 const char *Breakpoint::GetQueueName() const {
402   if (m_options.GetThreadSpecNoCreate() == nullptr)
403     return nullptr;
404   else
405     return m_options.GetThreadSpecNoCreate()->GetQueueName();
406 }
407 
SetCondition(const char * condition)408 void Breakpoint::SetCondition(const char *condition) {
409   m_options.SetCondition(condition);
410   SendBreakpointChangedEvent(eBreakpointEventTypeConditionChanged);
411 }
412 
GetConditionText() const413 const char *Breakpoint::GetConditionText() const {
414   return m_options.GetConditionText();
415 }
416 
417 // This function is used when "baton" doesn't need to be freed
SetCallback(BreakpointHitCallback callback,void * baton,bool is_synchronous)418 void Breakpoint::SetCallback(BreakpointHitCallback callback, void *baton,
419                              bool is_synchronous) {
420   // The default "Baton" class will keep a copy of "baton" and won't free or
421   // delete it when it goes goes out of scope.
422   m_options.SetCallback(callback, std::make_shared<UntypedBaton>(baton),
423                         is_synchronous);
424 
425   SendBreakpointChangedEvent(eBreakpointEventTypeCommandChanged);
426 }
427 
428 // This function is used when a baton needs to be freed and therefore is
429 // contained in a "Baton" subclass.
SetCallback(BreakpointHitCallback callback,const BatonSP & callback_baton_sp,bool is_synchronous)430 void Breakpoint::SetCallback(BreakpointHitCallback callback,
431                              const BatonSP &callback_baton_sp,
432                              bool is_synchronous) {
433   m_options.SetCallback(callback, callback_baton_sp, is_synchronous);
434 }
435 
ClearCallback()436 void Breakpoint::ClearCallback() { m_options.ClearCallback(); }
437 
InvokeCallback(StoppointCallbackContext * context,break_id_t bp_loc_id)438 bool Breakpoint::InvokeCallback(StoppointCallbackContext *context,
439                                 break_id_t bp_loc_id) {
440   return m_options.InvokeCallback(context, GetID(), bp_loc_id);
441 }
442 
GetOptions()443 BreakpointOptions &Breakpoint::GetOptions() { return m_options; }
444 
GetOptions() const445 const BreakpointOptions &Breakpoint::GetOptions() const { return m_options; }
446 
ResolveBreakpoint()447 void Breakpoint::ResolveBreakpoint() {
448   if (m_resolver_sp) {
449     ElapsedTime elapsed(m_resolve_time);
450     m_resolver_sp->ResolveBreakpoint(*m_filter_sp);
451   }
452 }
453 
ResolveBreakpointInModules(ModuleList & module_list,BreakpointLocationCollection & new_locations)454 void Breakpoint::ResolveBreakpointInModules(
455     ModuleList &module_list, BreakpointLocationCollection &new_locations) {
456   ElapsedTime elapsed(m_resolve_time);
457   m_locations.StartRecordingNewLocations(new_locations);
458 
459   m_resolver_sp->ResolveBreakpointInModules(*m_filter_sp, module_list);
460 
461   m_locations.StopRecordingNewLocations();
462 }
463 
ResolveBreakpointInModules(ModuleList & module_list,bool send_event)464 void Breakpoint::ResolveBreakpointInModules(ModuleList &module_list,
465                                             bool send_event) {
466   if (m_resolver_sp) {
467     // If this is not an internal breakpoint, set up to record the new
468     // locations, then dispatch an event with the new locations.
469     if (!IsInternal() && send_event) {
470       BreakpointEventData *new_locations_event = new BreakpointEventData(
471           eBreakpointEventTypeLocationsAdded, shared_from_this());
472 
473       ResolveBreakpointInModules(
474           module_list, new_locations_event->GetBreakpointLocationCollection());
475 
476       if (new_locations_event->GetBreakpointLocationCollection().GetSize() !=
477           0) {
478         SendBreakpointChangedEvent(new_locations_event);
479       } else
480         delete new_locations_event;
481     } else {
482       ElapsedTime elapsed(m_resolve_time);
483       m_resolver_sp->ResolveBreakpointInModules(*m_filter_sp, module_list);
484     }
485   }
486 }
487 
ClearAllBreakpointSites()488 void Breakpoint::ClearAllBreakpointSites() {
489   m_locations.ClearAllBreakpointSites();
490 }
491 
492 // ModulesChanged: Pass in a list of new modules, and
493 
ModulesChanged(ModuleList & module_list,bool load,bool delete_locations)494 void Breakpoint::ModulesChanged(ModuleList &module_list, bool load,
495                                 bool delete_locations) {
496   Log *log = GetLog(LLDBLog::Breakpoints);
497   LLDB_LOGF(log,
498             "Breakpoint::ModulesChanged: num_modules: %zu load: %i "
499             "delete_locations: %i\n",
500             module_list.GetSize(), load, delete_locations);
501 
502   if (load) {
503     // The logic for handling new modules is:
504     // 1) If the filter rejects this module, then skip it. 2) Run through the
505     // current location list and if there are any locations
506     //    for that module, we mark the module as "seen" and we don't try to
507     //    re-resolve
508     //    breakpoint locations for that module.
509     //    However, we do add breakpoint sites to these locations if needed.
510     // 3) If we don't see this module in our breakpoint location list, call
511     // ResolveInModules.
512 
513     ModuleList new_modules; // We'll stuff the "unseen" modules in this list,
514                             // and then resolve
515     // them after the locations pass.  Have to do it this way because resolving
516     // breakpoints will add new locations potentially.
517 
518     for (ModuleSP module_sp : module_list.Modules()) {
519       bool seen = false;
520       if (!m_filter_sp->ModulePasses(module_sp))
521         continue;
522 
523       BreakpointLocationCollection locations_with_no_section;
524       for (BreakpointLocationSP break_loc_sp :
525            m_locations.BreakpointLocations()) {
526 
527         // If the section for this location was deleted, that means it's Module
528         // has gone away but somebody forgot to tell us. Let's clean it up
529         // here.
530         Address section_addr(break_loc_sp->GetAddress());
531         if (section_addr.SectionWasDeleted()) {
532           locations_with_no_section.Add(break_loc_sp);
533           continue;
534         }
535 
536         if (!break_loc_sp->IsEnabled())
537           continue;
538 
539         SectionSP section_sp(section_addr.GetSection());
540 
541         // If we don't have a Section, that means this location is a raw
542         // address that we haven't resolved to a section yet.  So we'll have to
543         // look in all the new modules to resolve this location. Otherwise, if
544         // it was set in this module, re-resolve it here.
545         if (section_sp && section_sp->GetModule() == module_sp) {
546           if (!seen)
547             seen = true;
548 
549           if (!break_loc_sp->ResolveBreakpointSite()) {
550             LLDB_LOGF(log,
551                       "Warning: could not set breakpoint site for "
552                       "breakpoint location %d of breakpoint %d.\n",
553                       break_loc_sp->GetID(), GetID());
554           }
555         }
556       }
557 
558       size_t num_to_delete = locations_with_no_section.GetSize();
559 
560       for (size_t i = 0; i < num_to_delete; i++)
561         m_locations.RemoveLocation(locations_with_no_section.GetByIndex(i));
562 
563       if (!seen)
564         new_modules.AppendIfNeeded(module_sp);
565     }
566 
567     if (new_modules.GetSize() > 0) {
568       ResolveBreakpointInModules(new_modules);
569     }
570   } else {
571     // Go through the currently set locations and if any have breakpoints in
572     // the module list, then remove their breakpoint sites, and their locations
573     // if asked to.
574 
575     BreakpointEventData *removed_locations_event;
576     if (!IsInternal())
577       removed_locations_event = new BreakpointEventData(
578           eBreakpointEventTypeLocationsRemoved, shared_from_this());
579     else
580       removed_locations_event = nullptr;
581 
582     for (ModuleSP module_sp : module_list.Modules()) {
583       if (m_filter_sp->ModulePasses(module_sp)) {
584         size_t loc_idx = 0;
585         size_t num_locations = m_locations.GetSize();
586         BreakpointLocationCollection locations_to_remove;
587         for (loc_idx = 0; loc_idx < num_locations; loc_idx++) {
588           BreakpointLocationSP break_loc_sp(m_locations.GetByIndex(loc_idx));
589           SectionSP section_sp(break_loc_sp->GetAddress().GetSection());
590           if (section_sp && section_sp->GetModule() == module_sp) {
591             // Remove this breakpoint since the shared library is unloaded, but
592             // keep the breakpoint location around so we always get complete
593             // hit count and breakpoint lifetime info
594             break_loc_sp->ClearBreakpointSite();
595             if (removed_locations_event) {
596               removed_locations_event->GetBreakpointLocationCollection().Add(
597                   break_loc_sp);
598             }
599             if (delete_locations)
600               locations_to_remove.Add(break_loc_sp);
601           }
602         }
603 
604         if (delete_locations) {
605           size_t num_locations_to_remove = locations_to_remove.GetSize();
606           for (loc_idx = 0; loc_idx < num_locations_to_remove; loc_idx++)
607             m_locations.RemoveLocation(locations_to_remove.GetByIndex(loc_idx));
608         }
609       }
610     }
611     SendBreakpointChangedEvent(removed_locations_event);
612   }
613 }
614 
SymbolContextsMightBeEquivalent(SymbolContext & old_sc,SymbolContext & new_sc)615 static bool SymbolContextsMightBeEquivalent(SymbolContext &old_sc,
616                                             SymbolContext &new_sc) {
617   bool equivalent_scs = false;
618 
619   if (old_sc.module_sp.get() == new_sc.module_sp.get()) {
620     // If these come from the same module, we can directly compare the
621     // pointers:
622     if (old_sc.comp_unit && new_sc.comp_unit &&
623         (old_sc.comp_unit == new_sc.comp_unit)) {
624       if (old_sc.function && new_sc.function &&
625           (old_sc.function == new_sc.function)) {
626         equivalent_scs = true;
627       }
628     } else if (old_sc.symbol && new_sc.symbol &&
629                (old_sc.symbol == new_sc.symbol)) {
630       equivalent_scs = true;
631     }
632   } else {
633     // Otherwise we will compare by name...
634     if (old_sc.comp_unit && new_sc.comp_unit) {
635       if (old_sc.comp_unit->GetPrimaryFile() ==
636           new_sc.comp_unit->GetPrimaryFile()) {
637         // Now check the functions:
638         if (old_sc.function && new_sc.function &&
639             (old_sc.function->GetName() == new_sc.function->GetName())) {
640           equivalent_scs = true;
641         }
642       }
643     } else if (old_sc.symbol && new_sc.symbol) {
644       if (Mangled::Compare(old_sc.symbol->GetMangled(),
645                            new_sc.symbol->GetMangled()) == 0) {
646         equivalent_scs = true;
647       }
648     }
649   }
650   return equivalent_scs;
651 }
652 
ModuleReplaced(ModuleSP old_module_sp,ModuleSP new_module_sp)653 void Breakpoint::ModuleReplaced(ModuleSP old_module_sp,
654                                 ModuleSP new_module_sp) {
655   Log *log = GetLog(LLDBLog::Breakpoints);
656   LLDB_LOGF(log, "Breakpoint::ModulesReplaced for %s\n",
657             old_module_sp->GetSpecificationDescription().c_str());
658   // First find all the locations that are in the old module
659 
660   BreakpointLocationCollection old_break_locs;
661   for (BreakpointLocationSP break_loc_sp : m_locations.BreakpointLocations()) {
662     SectionSP section_sp = break_loc_sp->GetAddress().GetSection();
663     if (section_sp && section_sp->GetModule() == old_module_sp) {
664       old_break_locs.Add(break_loc_sp);
665     }
666   }
667 
668   size_t num_old_locations = old_break_locs.GetSize();
669 
670   if (num_old_locations == 0) {
671     // There were no locations in the old module, so we just need to check if
672     // there were any in the new module.
673     ModuleList temp_list;
674     temp_list.Append(new_module_sp);
675     ResolveBreakpointInModules(temp_list);
676   } else {
677     // First search the new module for locations. Then compare this with the
678     // old list, copy over locations that "look the same" Then delete the old
679     // locations. Finally remember to post the creation event.
680     //
681     // Two locations are the same if they have the same comp unit & function
682     // (by name) and there are the same number of locations in the old function
683     // as in the new one.
684 
685     ModuleList temp_list;
686     temp_list.Append(new_module_sp);
687     BreakpointLocationCollection new_break_locs;
688     ResolveBreakpointInModules(temp_list, new_break_locs);
689     BreakpointLocationCollection locations_to_remove;
690     BreakpointLocationCollection locations_to_announce;
691 
692     size_t num_new_locations = new_break_locs.GetSize();
693 
694     if (num_new_locations > 0) {
695       // Break out the case of one location -> one location since that's the
696       // most common one, and there's no need to build up the structures needed
697       // for the merge in that case.
698       if (num_new_locations == 1 && num_old_locations == 1) {
699         bool equivalent_locations = false;
700         SymbolContext old_sc, new_sc;
701         // The only way the old and new location can be equivalent is if they
702         // have the same amount of information:
703         BreakpointLocationSP old_loc_sp = old_break_locs.GetByIndex(0);
704         BreakpointLocationSP new_loc_sp = new_break_locs.GetByIndex(0);
705 
706         if (old_loc_sp->GetAddress().CalculateSymbolContext(&old_sc) ==
707             new_loc_sp->GetAddress().CalculateSymbolContext(&new_sc)) {
708           equivalent_locations =
709               SymbolContextsMightBeEquivalent(old_sc, new_sc);
710         }
711 
712         if (equivalent_locations) {
713           m_locations.SwapLocation(old_loc_sp, new_loc_sp);
714         } else {
715           locations_to_remove.Add(old_loc_sp);
716           locations_to_announce.Add(new_loc_sp);
717         }
718       } else {
719         // We don't want to have to keep computing the SymbolContexts for these
720         // addresses over and over, so lets get them up front:
721 
722         typedef std::map<lldb::break_id_t, SymbolContext> IDToSCMap;
723         IDToSCMap old_sc_map;
724         for (size_t idx = 0; idx < num_old_locations; idx++) {
725           SymbolContext sc;
726           BreakpointLocationSP bp_loc_sp = old_break_locs.GetByIndex(idx);
727           lldb::break_id_t loc_id = bp_loc_sp->GetID();
728           bp_loc_sp->GetAddress().CalculateSymbolContext(&old_sc_map[loc_id]);
729         }
730 
731         std::map<lldb::break_id_t, SymbolContext> new_sc_map;
732         for (size_t idx = 0; idx < num_new_locations; idx++) {
733           SymbolContext sc;
734           BreakpointLocationSP bp_loc_sp = new_break_locs.GetByIndex(idx);
735           lldb::break_id_t loc_id = bp_loc_sp->GetID();
736           bp_loc_sp->GetAddress().CalculateSymbolContext(&new_sc_map[loc_id]);
737         }
738         // Take an element from the old Symbol Contexts
739         while (old_sc_map.size() > 0) {
740           lldb::break_id_t old_id = old_sc_map.begin()->first;
741           SymbolContext &old_sc = old_sc_map.begin()->second;
742 
743           // Count the number of entries equivalent to this SC for the old
744           // list:
745           std::vector<lldb::break_id_t> old_id_vec;
746           old_id_vec.push_back(old_id);
747 
748           IDToSCMap::iterator tmp_iter;
749           for (tmp_iter = ++old_sc_map.begin(); tmp_iter != old_sc_map.end();
750                tmp_iter++) {
751             if (SymbolContextsMightBeEquivalent(old_sc, tmp_iter->second))
752               old_id_vec.push_back(tmp_iter->first);
753           }
754 
755           // Now find all the equivalent locations in the new list.
756           std::vector<lldb::break_id_t> new_id_vec;
757           for (tmp_iter = new_sc_map.begin(); tmp_iter != new_sc_map.end();
758                tmp_iter++) {
759             if (SymbolContextsMightBeEquivalent(old_sc, tmp_iter->second))
760               new_id_vec.push_back(tmp_iter->first);
761           }
762 
763           // Alright, if we have the same number of potentially equivalent
764           // locations in the old and new modules, we'll just map them one to
765           // one in ascending ID order (assuming the resolver's order would
766           // match the equivalent ones. Otherwise, we'll dump all the old ones,
767           // and just take the new ones, erasing the elements from both maps as
768           // we go.
769 
770           if (old_id_vec.size() == new_id_vec.size()) {
771             llvm::sort(old_id_vec);
772             llvm::sort(new_id_vec);
773             size_t num_elements = old_id_vec.size();
774             for (size_t idx = 0; idx < num_elements; idx++) {
775               BreakpointLocationSP old_loc_sp =
776                   old_break_locs.FindByIDPair(GetID(), old_id_vec[idx]);
777               BreakpointLocationSP new_loc_sp =
778                   new_break_locs.FindByIDPair(GetID(), new_id_vec[idx]);
779               m_locations.SwapLocation(old_loc_sp, new_loc_sp);
780               old_sc_map.erase(old_id_vec[idx]);
781               new_sc_map.erase(new_id_vec[idx]);
782             }
783           } else {
784             for (lldb::break_id_t old_id : old_id_vec) {
785               locations_to_remove.Add(
786                   old_break_locs.FindByIDPair(GetID(), old_id));
787               old_sc_map.erase(old_id);
788             }
789             for (lldb::break_id_t new_id : new_id_vec) {
790               locations_to_announce.Add(
791                   new_break_locs.FindByIDPair(GetID(), new_id));
792               new_sc_map.erase(new_id);
793             }
794           }
795         }
796       }
797     }
798 
799     // Now remove the remaining old locations, and cons up a removed locations
800     // event. Note, we don't put the new locations that were swapped with an
801     // old location on the locations_to_remove list, so we don't need to worry
802     // about telling the world about removing a location we didn't tell them
803     // about adding.
804 
805     BreakpointEventData *locations_event;
806     if (!IsInternal())
807       locations_event = new BreakpointEventData(
808           eBreakpointEventTypeLocationsRemoved, shared_from_this());
809     else
810       locations_event = nullptr;
811 
812     for (BreakpointLocationSP loc_sp :
813          locations_to_remove.BreakpointLocations()) {
814       m_locations.RemoveLocation(loc_sp);
815       if (locations_event)
816         locations_event->GetBreakpointLocationCollection().Add(loc_sp);
817     }
818     SendBreakpointChangedEvent(locations_event);
819 
820     // And announce the new ones.
821 
822     if (!IsInternal()) {
823       locations_event = new BreakpointEventData(
824           eBreakpointEventTypeLocationsAdded, shared_from_this());
825       for (BreakpointLocationSP loc_sp :
826            locations_to_announce.BreakpointLocations())
827         locations_event->GetBreakpointLocationCollection().Add(loc_sp);
828 
829       SendBreakpointChangedEvent(locations_event);
830     }
831     m_locations.Compact();
832   }
833 }
834 
Dump(Stream *)835 void Breakpoint::Dump(Stream *) {}
836 
GetNumResolvedLocations() const837 size_t Breakpoint::GetNumResolvedLocations() const {
838   // Return the number of breakpoints that are actually resolved and set down
839   // in the inferior process.
840   return m_locations.GetNumResolvedLocations();
841 }
842 
HasResolvedLocations() const843 bool Breakpoint::HasResolvedLocations() const {
844   return GetNumResolvedLocations() > 0;
845 }
846 
GetNumLocations() const847 size_t Breakpoint::GetNumLocations() const { return m_locations.GetSize(); }
848 
AddName(llvm::StringRef new_name)849 bool Breakpoint::AddName(llvm::StringRef new_name) {
850   m_name_list.insert(new_name.str().c_str());
851   return true;
852 }
853 
GetDescription(Stream * s,lldb::DescriptionLevel level,bool show_locations)854 void Breakpoint::GetDescription(Stream *s, lldb::DescriptionLevel level,
855                                 bool show_locations) {
856   assert(s != nullptr);
857 
858   if (!m_kind_description.empty()) {
859     if (level == eDescriptionLevelBrief) {
860       s->PutCString(GetBreakpointKind());
861       return;
862     } else
863       s->Printf("Kind: %s\n", GetBreakpointKind());
864   }
865 
866   const size_t num_locations = GetNumLocations();
867   const size_t num_resolved_locations = GetNumResolvedLocations();
868 
869   // They just made the breakpoint, they don't need to be told HOW they made
870   // it... Also, we'll print the breakpoint number differently depending on
871   // whether there is 1 or more locations.
872   if (level != eDescriptionLevelInitial) {
873     s->Printf("%i: ", GetID());
874     GetResolverDescription(s);
875     GetFilterDescription(s);
876   }
877 
878   switch (level) {
879   case lldb::eDescriptionLevelBrief:
880   case lldb::eDescriptionLevelFull:
881     if (num_locations > 0) {
882       s->Printf(", locations = %" PRIu64, (uint64_t)num_locations);
883       if (num_resolved_locations > 0)
884         s->Printf(", resolved = %" PRIu64 ", hit count = %d",
885                   (uint64_t)num_resolved_locations, GetHitCount());
886     } else {
887       // Don't print the pending notification for exception resolvers since we
888       // don't generally know how to set them until the target is run.
889       if (m_resolver_sp->getResolverID() !=
890           BreakpointResolver::ExceptionResolver)
891         s->Printf(", locations = 0 (pending)");
892     }
893 
894     m_options.GetDescription(s, level);
895 
896     if (m_precondition_sp)
897       m_precondition_sp->GetDescription(*s, level);
898 
899     if (level == lldb::eDescriptionLevelFull) {
900       if (!m_name_list.empty()) {
901         s->EOL();
902         s->Indent();
903         s->Printf("Names:");
904         s->EOL();
905         s->IndentMore();
906         for (std::string name : m_name_list) {
907           s->Indent();
908           s->Printf("%s\n", name.c_str());
909         }
910         s->IndentLess();
911       }
912       s->IndentLess();
913       s->EOL();
914     }
915     break;
916 
917   case lldb::eDescriptionLevelInitial:
918     s->Printf("Breakpoint %i: ", GetID());
919     if (num_locations == 0) {
920       s->Printf("no locations (pending).");
921     } else if (num_locations == 1 && !show_locations) {
922       // There is only one location, so we'll just print that location
923       // information.
924       GetLocationAtIndex(0)->GetDescription(s, level);
925     } else {
926       s->Printf("%" PRIu64 " locations.", static_cast<uint64_t>(num_locations));
927     }
928     s->EOL();
929     break;
930 
931   case lldb::eDescriptionLevelVerbose:
932     // Verbose mode does a debug dump of the breakpoint
933     Dump(s);
934     s->EOL();
935     // s->Indent();
936     m_options.GetDescription(s, level);
937     break;
938 
939   default:
940     break;
941   }
942 
943   // The brief description is just the location name (1.2 or whatever).  That's
944   // pointless to show in the breakpoint's description, so suppress it.
945   if (show_locations && level != lldb::eDescriptionLevelBrief) {
946     s->IndentMore();
947     for (size_t i = 0; i < num_locations; ++i) {
948       BreakpointLocation *loc = GetLocationAtIndex(i).get();
949       loc->GetDescription(s, level);
950       s->EOL();
951     }
952     s->IndentLess();
953   }
954 }
955 
GetResolverDescription(Stream * s)956 void Breakpoint::GetResolverDescription(Stream *s) {
957   if (m_resolver_sp)
958     m_resolver_sp->GetDescription(s);
959 }
960 
GetMatchingFileLine(ConstString filename,uint32_t line_number,BreakpointLocationCollection & loc_coll)961 bool Breakpoint::GetMatchingFileLine(ConstString filename,
962                                      uint32_t line_number,
963                                      BreakpointLocationCollection &loc_coll) {
964   // TODO: To be correct, this method needs to fill the breakpoint location
965   // collection
966   //       with the location IDs which match the filename and line_number.
967   //
968 
969   if (m_resolver_sp) {
970     BreakpointResolverFileLine *resolverFileLine =
971         dyn_cast<BreakpointResolverFileLine>(m_resolver_sp.get());
972 
973     // TODO: Handle SourceLocationSpec column information
974     if (resolverFileLine &&
975         resolverFileLine->m_location_spec.GetFileSpec().GetFilename() ==
976             filename &&
977         resolverFileLine->m_location_spec.GetLine() == line_number) {
978       return true;
979     }
980   }
981   return false;
982 }
983 
GetFilterDescription(Stream * s)984 void Breakpoint::GetFilterDescription(Stream *s) {
985   m_filter_sp->GetDescription(s);
986 }
987 
EvaluatePrecondition(StoppointCallbackContext & context)988 bool Breakpoint::EvaluatePrecondition(StoppointCallbackContext &context) {
989   if (!m_precondition_sp)
990     return true;
991 
992   return m_precondition_sp->EvaluatePrecondition(context);
993 }
994 
SendBreakpointChangedEvent(lldb::BreakpointEventType eventKind)995 void Breakpoint::SendBreakpointChangedEvent(
996     lldb::BreakpointEventType eventKind) {
997   if (!m_being_created && !IsInternal() &&
998       GetTarget().EventTypeHasListeners(
999           Target::eBroadcastBitBreakpointChanged)) {
1000     BreakpointEventData *data =
1001         new Breakpoint::BreakpointEventData(eventKind, shared_from_this());
1002 
1003     GetTarget().BroadcastEvent(Target::eBroadcastBitBreakpointChanged, data);
1004   }
1005 }
1006 
SendBreakpointChangedEvent(BreakpointEventData * data)1007 void Breakpoint::SendBreakpointChangedEvent(BreakpointEventData *data) {
1008   if (data == nullptr)
1009     return;
1010 
1011   if (!m_being_created && !IsInternal() &&
1012       GetTarget().EventTypeHasListeners(Target::eBroadcastBitBreakpointChanged))
1013     GetTarget().BroadcastEvent(Target::eBroadcastBitBreakpointChanged, data);
1014   else
1015     delete data;
1016 }
1017 
BreakpointEventTypeAsCString(BreakpointEventType type)1018 const char *Breakpoint::BreakpointEventTypeAsCString(BreakpointEventType type) {
1019   switch (type) {
1020     case eBreakpointEventTypeInvalidType: return "invalid";
1021     case eBreakpointEventTypeAdded: return "breakpoint added";
1022     case eBreakpointEventTypeRemoved: return "breakpoint removed";
1023     case eBreakpointEventTypeLocationsAdded: return "locations added";
1024     case eBreakpointEventTypeLocationsRemoved: return "locations removed";
1025     case eBreakpointEventTypeLocationsResolved: return "locations resolved";
1026     case eBreakpointEventTypeEnabled: return "breakpoint enabled";
1027     case eBreakpointEventTypeDisabled: return "breakpoint disabled";
1028     case eBreakpointEventTypeCommandChanged: return "command changed";
1029     case eBreakpointEventTypeConditionChanged: return "condition changed";
1030     case eBreakpointEventTypeIgnoreChanged: return "ignore count changed";
1031     case eBreakpointEventTypeThreadChanged: return "thread changed";
1032     case eBreakpointEventTypeAutoContinueChanged: return "autocontinue changed";
1033   };
1034   llvm_unreachable("Fully covered switch above!");
1035 }
1036 
GetLogChannel()1037 Log *Breakpoint::BreakpointEventData::GetLogChannel() {
1038   return GetLog(LLDBLog::Breakpoints);
1039 }
1040 
BreakpointEventData(BreakpointEventType sub_type,const BreakpointSP & new_breakpoint_sp)1041 Breakpoint::BreakpointEventData::BreakpointEventData(
1042     BreakpointEventType sub_type, const BreakpointSP &new_breakpoint_sp)
1043     : m_breakpoint_event(sub_type), m_new_breakpoint_sp(new_breakpoint_sp) {}
1044 
1045 Breakpoint::BreakpointEventData::~BreakpointEventData() = default;
1046 
GetFlavorString()1047 ConstString Breakpoint::BreakpointEventData::GetFlavorString() {
1048   static ConstString g_flavor("Breakpoint::BreakpointEventData");
1049   return g_flavor;
1050 }
1051 
GetFlavor() const1052 ConstString Breakpoint::BreakpointEventData::GetFlavor() const {
1053   return BreakpointEventData::GetFlavorString();
1054 }
1055 
GetBreakpoint() const1056 BreakpointSP Breakpoint::BreakpointEventData::GetBreakpoint() const {
1057   return m_new_breakpoint_sp;
1058 }
1059 
1060 BreakpointEventType
GetBreakpointEventType() const1061 Breakpoint::BreakpointEventData::GetBreakpointEventType() const {
1062   return m_breakpoint_event;
1063 }
1064 
Dump(Stream * s) const1065 void Breakpoint::BreakpointEventData::Dump(Stream *s) const {
1066   if (!s)
1067     return;
1068   BreakpointEventType event_type = GetBreakpointEventType();
1069   break_id_t bkpt_id = GetBreakpoint()->GetID();
1070   s->Format("bkpt: {0} type: {1}", bkpt_id,
1071       BreakpointEventTypeAsCString(event_type));
1072 }
1073 
1074 const Breakpoint::BreakpointEventData *
GetEventDataFromEvent(const Event * event)1075 Breakpoint::BreakpointEventData::GetEventDataFromEvent(const Event *event) {
1076   if (event) {
1077     const EventData *event_data = event->GetData();
1078     if (event_data &&
1079         event_data->GetFlavor() == BreakpointEventData::GetFlavorString())
1080       return static_cast<const BreakpointEventData *>(event->GetData());
1081   }
1082   return nullptr;
1083 }
1084 
1085 BreakpointEventType
GetBreakpointEventTypeFromEvent(const EventSP & event_sp)1086 Breakpoint::BreakpointEventData::GetBreakpointEventTypeFromEvent(
1087     const EventSP &event_sp) {
1088   const BreakpointEventData *data = GetEventDataFromEvent(event_sp.get());
1089 
1090   if (data == nullptr)
1091     return eBreakpointEventTypeInvalidType;
1092   else
1093     return data->GetBreakpointEventType();
1094 }
1095 
GetBreakpointFromEvent(const EventSP & event_sp)1096 BreakpointSP Breakpoint::BreakpointEventData::GetBreakpointFromEvent(
1097     const EventSP &event_sp) {
1098   BreakpointSP bp_sp;
1099 
1100   const BreakpointEventData *data = GetEventDataFromEvent(event_sp.get());
1101   if (data)
1102     bp_sp = data->m_new_breakpoint_sp;
1103 
1104   return bp_sp;
1105 }
1106 
GetNumBreakpointLocationsFromEvent(const EventSP & event_sp)1107 size_t Breakpoint::BreakpointEventData::GetNumBreakpointLocationsFromEvent(
1108     const EventSP &event_sp) {
1109   const BreakpointEventData *data = GetEventDataFromEvent(event_sp.get());
1110   if (data)
1111     return data->m_locations.GetSize();
1112 
1113   return 0;
1114 }
1115 
1116 lldb::BreakpointLocationSP
GetBreakpointLocationAtIndexFromEvent(const lldb::EventSP & event_sp,uint32_t bp_loc_idx)1117 Breakpoint::BreakpointEventData::GetBreakpointLocationAtIndexFromEvent(
1118     const lldb::EventSP &event_sp, uint32_t bp_loc_idx) {
1119   lldb::BreakpointLocationSP bp_loc_sp;
1120 
1121   const BreakpointEventData *data = GetEventDataFromEvent(event_sp.get());
1122   if (data) {
1123     bp_loc_sp = data->m_locations.GetByIndex(bp_loc_idx);
1124   }
1125 
1126   return bp_loc_sp;
1127 }
1128 
GetStatistics()1129 json::Value Breakpoint::GetStatistics() {
1130   json::Object bp;
1131   bp.try_emplace("id", GetID());
1132   bp.try_emplace("resolveTime", m_resolve_time.get().count());
1133   bp.try_emplace("numLocations", (int64_t)GetNumLocations());
1134   bp.try_emplace("numResolvedLocations", (int64_t)GetNumResolvedLocations());
1135   bp.try_emplace("internal", IsInternal());
1136   if (!m_kind_description.empty())
1137     bp.try_emplace("kindDescription", m_kind_description);
1138   // Put the full structured data for reproducing this breakpoint in a key/value
1139   // pair named "details". This allows the breakpoint's details to be visible
1140   // in the stats in case we need to reproduce a breakpoint that has long
1141   // resolve times
1142   StructuredData::ObjectSP bp_data_sp = SerializeToStructuredData();
1143   if (bp_data_sp) {
1144     std::string buffer;
1145     llvm::raw_string_ostream ss(buffer);
1146     json::OStream json_os(ss);
1147     bp_data_sp->Serialize(json_os);
1148     if (auto expected_value = llvm::json::parse(ss.str())) {
1149       bp.try_emplace("details", std::move(*expected_value));
1150     } else {
1151       std::string details_error = toString(expected_value.takeError());
1152       json::Object details;
1153       details.try_emplace("error", details_error);
1154       bp.try_emplace("details", std::move(details));
1155     }
1156   }
1157   return json::Value(std::move(bp));
1158 }
1159