1 //===-- Target.cpp ----------------------------------------------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "lldb/Target/Target.h"
11 
12 // C Includes
13 // C++ Includes
14 // Other libraries and framework includes
15 // Project includes
16 #include "lldb/Breakpoint/BreakpointResolver.h"
17 #include "lldb/Breakpoint/BreakpointResolverAddress.h"
18 #include "lldb/Breakpoint/BreakpointResolverFileLine.h"
19 #include "lldb/Breakpoint/BreakpointResolverFileRegex.h"
20 #include "lldb/Breakpoint/BreakpointResolverName.h"
21 #include "lldb/Breakpoint/Watchpoint.h"
22 #include "lldb/Core/Debugger.h"
23 #include "lldb/Core/Event.h"
24 #include "lldb/Core/Log.h"
25 #include "lldb/Core/StreamAsynchronousIO.h"
26 #include "lldb/Core/StreamString.h"
27 #include "lldb/Core/Timer.h"
28 #include "lldb/Core/ValueObject.h"
29 #include "lldb/Expression/ClangASTSource.h"
30 #include "lldb/Expression/ClangUserExpression.h"
31 #include "lldb/Host/Host.h"
32 #include "lldb/Interpreter/CommandInterpreter.h"
33 #include "lldb/Interpreter/CommandReturnObject.h"
34 #include "lldb/lldb-private-log.h"
35 #include "lldb/Symbol/ObjectFile.h"
36 #include "lldb/Target/Process.h"
37 #include "lldb/Target/StackFrame.h"
38 #include "lldb/Target/Thread.h"
39 #include "lldb/Target/ThreadSpec.h"
40 
41 using namespace lldb;
42 using namespace lldb_private;
43 
44 //----------------------------------------------------------------------
45 // Target constructor
46 //----------------------------------------------------------------------
47 Target::Target(Debugger &debugger, const ArchSpec &target_arch, const lldb::PlatformSP &platform_sp) :
48     Broadcaster ("lldb.target"),
49     ExecutionContextScope (),
50     TargetInstanceSettings (*GetSettingsController()),
51     m_debugger (debugger),
52     m_platform_sp (platform_sp),
53     m_mutex (Mutex::eMutexTypeRecursive),
54     m_arch (target_arch),
55     m_images (),
56     m_section_load_list (),
57     m_breakpoint_list (false),
58     m_internal_breakpoint_list (true),
59     m_watchpoint_list (),
60     m_process_sp (),
61     m_search_filter_sp (),
62     m_image_search_paths (ImageSearchPathsChanged, this),
63     m_scratch_ast_context_ap (NULL),
64     m_scratch_ast_source_ap (NULL),
65     m_ast_importer_ap (NULL),
66     m_persistent_variables (),
67     m_source_manager(*this),
68     m_stop_hooks (),
69     m_stop_hook_next_id (0),
70     m_suppress_stop_hooks (false)
71 {
72     SetEventName (eBroadcastBitBreakpointChanged, "breakpoint-changed");
73     SetEventName (eBroadcastBitModulesLoaded, "modules-loaded");
74     SetEventName (eBroadcastBitModulesUnloaded, "modules-unloaded");
75 
76     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_OBJECT));
77     if (log)
78         log->Printf ("%p Target::Target()", this);
79 }
80 
81 //----------------------------------------------------------------------
82 // Destructor
83 //----------------------------------------------------------------------
84 Target::~Target()
85 {
86     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_OBJECT));
87     if (log)
88         log->Printf ("%p Target::~Target()", this);
89     DeleteCurrentProcess ();
90 }
91 
92 void
93 Target::Dump (Stream *s, lldb::DescriptionLevel description_level)
94 {
95 //    s->Printf("%.*p: ", (int)sizeof(void*) * 2, this);
96     if (description_level != lldb::eDescriptionLevelBrief)
97     {
98         s->Indent();
99         s->PutCString("Target\n");
100         s->IndentMore();
101             m_images.Dump(s);
102             m_breakpoint_list.Dump(s);
103             m_internal_breakpoint_list.Dump(s);
104         s->IndentLess();
105     }
106     else
107     {
108         Module *exe_module = GetExecutableModulePointer();
109         if (exe_module)
110             s->PutCString (exe_module->GetFileSpec().GetFilename().GetCString());
111         else
112             s->PutCString ("No executable module.");
113     }
114 }
115 
116 void
117 Target::DeleteCurrentProcess ()
118 {
119     if (m_process_sp.get())
120     {
121         m_section_load_list.Clear();
122         if (m_process_sp->IsAlive())
123             m_process_sp->Destroy();
124 
125         m_process_sp->Finalize();
126 
127         // Do any cleanup of the target we need to do between process instances.
128         // NB It is better to do this before destroying the process in case the
129         // clean up needs some help from the process.
130         m_breakpoint_list.ClearAllBreakpointSites();
131         m_internal_breakpoint_list.ClearAllBreakpointSites();
132         // Disable watchpoints just on the debugger side.
133         DisableAllWatchpoints(false);
134         m_process_sp.reset();
135     }
136 }
137 
138 const lldb::ProcessSP &
139 Target::CreateProcess (Listener &listener, const char *plugin_name)
140 {
141     DeleteCurrentProcess ();
142     m_process_sp.reset(Process::FindPlugin(*this, plugin_name, listener));
143     return m_process_sp;
144 }
145 
146 const lldb::ProcessSP &
147 Target::GetProcessSP () const
148 {
149     return m_process_sp;
150 }
151 
152 lldb::TargetSP
153 Target::GetSP()
154 {
155     // This object contains an instrusive ref count base class so we can
156     // easily make a shared pointer to this object
157     return TargetSP(this);
158 }
159 
160 void
161 Target::Destroy()
162 {
163     Mutex::Locker locker (m_mutex);
164     DeleteCurrentProcess ();
165     m_platform_sp.reset();
166     m_arch.Clear();
167     m_images.Clear();
168     m_section_load_list.Clear();
169     const bool notify = false;
170     m_breakpoint_list.RemoveAll(notify);
171     m_internal_breakpoint_list.RemoveAll(notify);
172     m_last_created_breakpoint.reset();
173     m_last_created_watchpoint.reset();
174     m_search_filter_sp.reset();
175     m_image_search_paths.Clear(notify);
176     m_scratch_ast_context_ap.reset();
177     m_scratch_ast_source_ap.reset();
178     m_ast_importer_ap.reset();
179     m_persistent_variables.Clear();
180     m_stop_hooks.clear();
181     m_stop_hook_next_id = 0;
182     m_suppress_stop_hooks = false;
183 }
184 
185 
186 BreakpointList &
187 Target::GetBreakpointList(bool internal)
188 {
189     if (internal)
190         return m_internal_breakpoint_list;
191     else
192         return m_breakpoint_list;
193 }
194 
195 const BreakpointList &
196 Target::GetBreakpointList(bool internal) const
197 {
198     if (internal)
199         return m_internal_breakpoint_list;
200     else
201         return m_breakpoint_list;
202 }
203 
204 BreakpointSP
205 Target::GetBreakpointByID (break_id_t break_id)
206 {
207     BreakpointSP bp_sp;
208 
209     if (LLDB_BREAK_ID_IS_INTERNAL (break_id))
210         bp_sp = m_internal_breakpoint_list.FindBreakpointByID (break_id);
211     else
212         bp_sp = m_breakpoint_list.FindBreakpointByID (break_id);
213 
214     return bp_sp;
215 }
216 
217 BreakpointSP
218 Target::CreateSourceRegexBreakpoint (const FileSpecList *containingModules,
219                   const FileSpecList *source_file_spec_list,
220                   RegularExpression &source_regex,
221                   bool internal)
222 {
223     SearchFilterSP filter_sp(GetSearchFilterForModuleAndCUList (containingModules, source_file_spec_list));
224     BreakpointResolverSP resolver_sp(new BreakpointResolverFileRegex (NULL, source_regex));
225     return CreateBreakpoint (filter_sp, resolver_sp, internal);
226 }
227 
228 
229 BreakpointSP
230 Target::CreateBreakpoint (const FileSpecList *containingModules, const FileSpec &file, uint32_t line_no, bool check_inlines, bool internal)
231 {
232     SearchFilterSP filter_sp(GetSearchFilterForModuleList (containingModules));
233     BreakpointResolverSP resolver_sp(new BreakpointResolverFileLine (NULL, file, line_no, check_inlines));
234     return CreateBreakpoint (filter_sp, resolver_sp, internal);
235 }
236 
237 
238 BreakpointSP
239 Target::CreateBreakpoint (lldb::addr_t addr, bool internal)
240 {
241     Address so_addr;
242     // Attempt to resolve our load address if possible, though it is ok if
243     // it doesn't resolve to section/offset.
244 
245     // Try and resolve as a load address if possible
246     m_section_load_list.ResolveLoadAddress(addr, so_addr);
247     if (!so_addr.IsValid())
248     {
249         // The address didn't resolve, so just set this as an absolute address
250         so_addr.SetOffset (addr);
251     }
252     BreakpointSP bp_sp (CreateBreakpoint(so_addr, internal));
253     return bp_sp;
254 }
255 
256 BreakpointSP
257 Target::CreateBreakpoint (Address &addr, bool internal)
258 {
259     TargetSP target_sp = this->GetSP();
260     SearchFilterSP filter_sp(new SearchFilterForNonModuleSpecificSearches (target_sp));
261     BreakpointResolverSP resolver_sp (new BreakpointResolverAddress (NULL, addr));
262     return CreateBreakpoint (filter_sp, resolver_sp, internal);
263 }
264 
265 BreakpointSP
266 Target::CreateBreakpoint (const FileSpecList *containingModules,
267                           const FileSpecList *containingSourceFiles,
268                           const char *func_name,
269                           uint32_t func_name_type_mask,
270                           bool internal,
271                           LazyBool skip_prologue)
272 {
273     BreakpointSP bp_sp;
274     if (func_name)
275     {
276         SearchFilterSP filter_sp(GetSearchFilterForModuleAndCUList (containingModules, containingSourceFiles));
277 
278         BreakpointResolverSP resolver_sp (new BreakpointResolverName (NULL,
279                                                                       func_name,
280                                                                       func_name_type_mask,
281                                                                       Breakpoint::Exact,
282                                                                       skip_prologue == eLazyBoolCalculate ? GetSkipPrologue() : skip_prologue));
283         bp_sp = CreateBreakpoint (filter_sp, resolver_sp, internal);
284     }
285     return bp_sp;
286 }
287 
288 
289 SearchFilterSP
290 Target::GetSearchFilterForModule (const FileSpec *containingModule)
291 {
292     SearchFilterSP filter_sp;
293     lldb::TargetSP target_sp = this->GetSP();
294     if (containingModule != NULL)
295     {
296         // TODO: We should look into sharing module based search filters
297         // across many breakpoints like we do for the simple target based one
298         filter_sp.reset (new SearchFilterByModule (target_sp, *containingModule));
299     }
300     else
301     {
302         if (m_search_filter_sp.get() == NULL)
303             m_search_filter_sp.reset (new SearchFilterForNonModuleSpecificSearches (target_sp));
304         filter_sp = m_search_filter_sp;
305     }
306     return filter_sp;
307 }
308 
309 SearchFilterSP
310 Target::GetSearchFilterForModuleList (const FileSpecList *containingModules)
311 {
312     SearchFilterSP filter_sp;
313     lldb::TargetSP target_sp = this->GetSP();
314     if (containingModules && containingModules->GetSize() != 0)
315     {
316         // TODO: We should look into sharing module based search filters
317         // across many breakpoints like we do for the simple target based one
318         filter_sp.reset (new SearchFilterByModuleList (target_sp, *containingModules));
319     }
320     else
321     {
322         if (m_search_filter_sp.get() == NULL)
323             m_search_filter_sp.reset (new SearchFilterForNonModuleSpecificSearches (target_sp));
324         filter_sp = m_search_filter_sp;
325     }
326     return filter_sp;
327 }
328 
329 SearchFilterSP
330 Target::GetSearchFilterForModuleAndCUList (const FileSpecList *containingModules, const FileSpecList *containingSourceFiles)
331 {
332     if (containingSourceFiles == NULL || containingSourceFiles->GetSize() == 0)
333         return GetSearchFilterForModuleList(containingModules);
334 
335     SearchFilterSP filter_sp;
336     lldb::TargetSP target_sp = this->GetSP();
337     if (containingModules == NULL)
338     {
339         // We could make a special "CU List only SearchFilter".  Better yet was if these could be composable,
340         // but that will take a little reworking.
341 
342         filter_sp.reset (new SearchFilterByModuleListAndCU (target_sp, FileSpecList(), *containingSourceFiles));
343     }
344     else
345     {
346         filter_sp.reset (new SearchFilterByModuleListAndCU (target_sp, *containingModules, *containingSourceFiles));
347     }
348     return filter_sp;
349 }
350 
351 BreakpointSP
352 Target::CreateFuncRegexBreakpoint (const FileSpecList *containingModules,
353                           const FileSpecList *containingSourceFiles,
354                           RegularExpression &func_regex,
355                           bool internal,
356                           LazyBool skip_prologue)
357 {
358     SearchFilterSP filter_sp(GetSearchFilterForModuleAndCUList (containingModules, containingSourceFiles));
359     BreakpointResolverSP resolver_sp(new BreakpointResolverName (NULL,
360                                                                  func_regex,
361                                                                  skip_prologue == eLazyBoolCalculate ? GetSkipPrologue() : skip_prologue));
362 
363     return CreateBreakpoint (filter_sp, resolver_sp, internal);
364 }
365 
366 BreakpointSP
367 Target::CreateBreakpoint (SearchFilterSP &filter_sp, BreakpointResolverSP &resolver_sp, bool internal)
368 {
369     BreakpointSP bp_sp;
370     if (filter_sp && resolver_sp)
371     {
372         bp_sp.reset(new Breakpoint (*this, filter_sp, resolver_sp));
373         resolver_sp->SetBreakpoint (bp_sp.get());
374 
375         if (internal)
376             m_internal_breakpoint_list.Add (bp_sp, false);
377         else
378             m_breakpoint_list.Add (bp_sp, true);
379 
380         LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
381         if (log)
382         {
383             StreamString s;
384             bp_sp->GetDescription(&s, lldb::eDescriptionLevelVerbose);
385             log->Printf ("Target::%s (internal = %s) => break_id = %s\n", __FUNCTION__, internal ? "yes" : "no", s.GetData());
386         }
387 
388         bp_sp->ResolveBreakpoint();
389     }
390 
391     if (!internal && bp_sp)
392     {
393         m_last_created_breakpoint = bp_sp;
394     }
395 
396     return bp_sp;
397 }
398 
399 bool
400 Target::ProcessIsValid()
401 {
402     return (m_process_sp && m_process_sp->IsAlive());
403 }
404 
405 // See also Watchpoint::SetWatchpointType(uint32_t type) and
406 // the OptionGroupWatchpoint::WatchType enum type.
407 WatchpointSP
408 Target::CreateWatchpoint(lldb::addr_t addr, size_t size, uint32_t type)
409 {
410     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
411     if (log)
412         log->Printf("Target::%s (addr = 0x%8.8llx size = %zu type = %u)\n",
413                     __FUNCTION__, addr, size, type);
414 
415     WatchpointSP wp_sp;
416     if (!ProcessIsValid())
417         return wp_sp;
418     if (addr == LLDB_INVALID_ADDRESS || size == 0)
419         return wp_sp;
420 
421     // Currently we only support one watchpoint per address, with total number
422     // of watchpoints limited by the hardware which the inferior is running on.
423     WatchpointSP matched_sp = m_watchpoint_list.FindByAddress(addr);
424     if (matched_sp)
425     {
426         size_t old_size = matched_sp->GetByteSize();
427         uint32_t old_type =
428             (matched_sp->WatchpointRead() ? LLDB_WATCH_TYPE_READ : 0) |
429             (matched_sp->WatchpointWrite() ? LLDB_WATCH_TYPE_WRITE : 0);
430         // Return the existing watchpoint if both size and type match.
431         if (size == old_size && type == old_type) {
432             wp_sp = matched_sp;
433             wp_sp->SetEnabled(false);
434         } else {
435             // Nil the matched watchpoint; we will be creating a new one.
436             m_process_sp->DisableWatchpoint(matched_sp.get());
437             m_watchpoint_list.Remove(matched_sp->GetID());
438         }
439     }
440 
441     if (!wp_sp) {
442         Watchpoint *new_wp = new Watchpoint(addr, size);
443         if (!new_wp) {
444             printf("Watchpoint ctor failed, out of memory?\n");
445             return wp_sp;
446         }
447         new_wp->SetWatchpointType(type);
448         new_wp->SetTarget(this);
449         wp_sp.reset(new_wp);
450         m_watchpoint_list.Add(wp_sp);
451     }
452 
453     Error rc = m_process_sp->EnableWatchpoint(wp_sp.get());
454     if (log)
455             log->Printf("Target::%s (creation of watchpoint %s with id = %u)\n",
456                         __FUNCTION__,
457                         rc.Success() ? "succeeded" : "failed",
458                         wp_sp->GetID());
459 
460     if (rc.Fail())
461         wp_sp.reset();
462     else
463         m_last_created_watchpoint = wp_sp;
464     return wp_sp;
465 }
466 
467 void
468 Target::RemoveAllBreakpoints (bool internal_also)
469 {
470     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
471     if (log)
472         log->Printf ("Target::%s (internal_also = %s)\n", __FUNCTION__, internal_also ? "yes" : "no");
473 
474     m_breakpoint_list.RemoveAll (true);
475     if (internal_also)
476         m_internal_breakpoint_list.RemoveAll (false);
477 
478     m_last_created_breakpoint.reset();
479 }
480 
481 void
482 Target::DisableAllBreakpoints (bool internal_also)
483 {
484     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
485     if (log)
486         log->Printf ("Target::%s (internal_also = %s)\n", __FUNCTION__, internal_also ? "yes" : "no");
487 
488     m_breakpoint_list.SetEnabledAll (false);
489     if (internal_also)
490         m_internal_breakpoint_list.SetEnabledAll (false);
491 }
492 
493 void
494 Target::EnableAllBreakpoints (bool internal_also)
495 {
496     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
497     if (log)
498         log->Printf ("Target::%s (internal_also = %s)\n", __FUNCTION__, internal_also ? "yes" : "no");
499 
500     m_breakpoint_list.SetEnabledAll (true);
501     if (internal_also)
502         m_internal_breakpoint_list.SetEnabledAll (true);
503 }
504 
505 bool
506 Target::RemoveBreakpointByID (break_id_t break_id)
507 {
508     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
509     if (log)
510         log->Printf ("Target::%s (break_id = %i, internal = %s)\n", __FUNCTION__, break_id, LLDB_BREAK_ID_IS_INTERNAL (break_id) ? "yes" : "no");
511 
512     if (DisableBreakpointByID (break_id))
513     {
514         if (LLDB_BREAK_ID_IS_INTERNAL (break_id))
515             m_internal_breakpoint_list.Remove(break_id, false);
516         else
517         {
518             if (m_last_created_breakpoint)
519             {
520                 if (m_last_created_breakpoint->GetID() == break_id)
521                     m_last_created_breakpoint.reset();
522             }
523             m_breakpoint_list.Remove(break_id, true);
524         }
525         return true;
526     }
527     return false;
528 }
529 
530 bool
531 Target::DisableBreakpointByID (break_id_t break_id)
532 {
533     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
534     if (log)
535         log->Printf ("Target::%s (break_id = %i, internal = %s)\n", __FUNCTION__, break_id, LLDB_BREAK_ID_IS_INTERNAL (break_id) ? "yes" : "no");
536 
537     BreakpointSP bp_sp;
538 
539     if (LLDB_BREAK_ID_IS_INTERNAL (break_id))
540         bp_sp = m_internal_breakpoint_list.FindBreakpointByID (break_id);
541     else
542         bp_sp = m_breakpoint_list.FindBreakpointByID (break_id);
543     if (bp_sp)
544     {
545         bp_sp->SetEnabled (false);
546         return true;
547     }
548     return false;
549 }
550 
551 bool
552 Target::EnableBreakpointByID (break_id_t break_id)
553 {
554     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_BREAKPOINTS));
555     if (log)
556         log->Printf ("Target::%s (break_id = %i, internal = %s)\n",
557                      __FUNCTION__,
558                      break_id,
559                      LLDB_BREAK_ID_IS_INTERNAL (break_id) ? "yes" : "no");
560 
561     BreakpointSP bp_sp;
562 
563     if (LLDB_BREAK_ID_IS_INTERNAL (break_id))
564         bp_sp = m_internal_breakpoint_list.FindBreakpointByID (break_id);
565     else
566         bp_sp = m_breakpoint_list.FindBreakpointByID (break_id);
567 
568     if (bp_sp)
569     {
570         bp_sp->SetEnabled (true);
571         return true;
572     }
573     return false;
574 }
575 
576 // The flag 'end_to_end', default to true, signifies that the operation is
577 // performed end to end, for both the debugger and the debuggee.
578 
579 // Assumption: Caller holds the list mutex lock for m_watchpoint_list for end
580 // to end operations.
581 bool
582 Target::RemoveAllWatchpoints (bool end_to_end)
583 {
584     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
585     if (log)
586         log->Printf ("Target::%s\n", __FUNCTION__);
587 
588     if (!end_to_end) {
589         m_watchpoint_list.RemoveAll();
590         return true;
591     }
592 
593     // Otherwise, it's an end to end operation.
594 
595     if (!ProcessIsValid())
596         return false;
597 
598     size_t num_watchpoints = m_watchpoint_list.GetSize();
599     for (size_t i = 0; i < num_watchpoints; ++i)
600     {
601         WatchpointSP wp_sp = m_watchpoint_list.GetByIndex(i);
602         if (!wp_sp)
603             return false;
604 
605         Error rc = m_process_sp->DisableWatchpoint(wp_sp.get());
606         if (rc.Fail())
607             return false;
608     }
609     m_watchpoint_list.RemoveAll ();
610     return true; // Success!
611 }
612 
613 // Assumption: Caller holds the list mutex lock for m_watchpoint_list for end to
614 // end operations.
615 bool
616 Target::DisableAllWatchpoints (bool end_to_end)
617 {
618     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
619     if (log)
620         log->Printf ("Target::%s\n", __FUNCTION__);
621 
622     if (!end_to_end) {
623         m_watchpoint_list.SetEnabledAll(false);
624         return true;
625     }
626 
627     // Otherwise, it's an end to end operation.
628 
629     if (!ProcessIsValid())
630         return false;
631 
632     size_t num_watchpoints = m_watchpoint_list.GetSize();
633     for (size_t i = 0; i < num_watchpoints; ++i)
634     {
635         WatchpointSP wp_sp = m_watchpoint_list.GetByIndex(i);
636         if (!wp_sp)
637             return false;
638 
639         Error rc = m_process_sp->DisableWatchpoint(wp_sp.get());
640         if (rc.Fail())
641             return false;
642     }
643     return true; // Success!
644 }
645 
646 // Assumption: Caller holds the list mutex lock for m_watchpoint_list for end to
647 // end operations.
648 bool
649 Target::EnableAllWatchpoints (bool end_to_end)
650 {
651     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
652     if (log)
653         log->Printf ("Target::%s\n", __FUNCTION__);
654 
655     if (!end_to_end) {
656         m_watchpoint_list.SetEnabledAll(true);
657         return true;
658     }
659 
660     // Otherwise, it's an end to end operation.
661 
662     if (!ProcessIsValid())
663         return false;
664 
665     size_t num_watchpoints = m_watchpoint_list.GetSize();
666     for (size_t i = 0; i < num_watchpoints; ++i)
667     {
668         WatchpointSP wp_sp = m_watchpoint_list.GetByIndex(i);
669         if (!wp_sp)
670             return false;
671 
672         Error rc = m_process_sp->EnableWatchpoint(wp_sp.get());
673         if (rc.Fail())
674             return false;
675     }
676     return true; // Success!
677 }
678 
679 // Assumption: Caller holds the list mutex lock for m_watchpoint_list
680 // during these operations.
681 bool
682 Target::IgnoreAllWatchpoints (uint32_t ignore_count)
683 {
684     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
685     if (log)
686         log->Printf ("Target::%s\n", __FUNCTION__);
687 
688     if (!ProcessIsValid())
689         return false;
690 
691     size_t num_watchpoints = m_watchpoint_list.GetSize();
692     for (size_t i = 0; i < num_watchpoints; ++i)
693     {
694         WatchpointSP wp_sp = m_watchpoint_list.GetByIndex(i);
695         if (!wp_sp)
696             return false;
697 
698         wp_sp->SetIgnoreCount(ignore_count);
699     }
700     return true; // Success!
701 }
702 
703 // Assumption: Caller holds the list mutex lock for m_watchpoint_list.
704 bool
705 Target::DisableWatchpointByID (lldb::watch_id_t watch_id)
706 {
707     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
708     if (log)
709         log->Printf ("Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
710 
711     if (!ProcessIsValid())
712         return false;
713 
714     WatchpointSP wp_sp = m_watchpoint_list.FindByID (watch_id);
715     if (wp_sp)
716     {
717         Error rc = m_process_sp->DisableWatchpoint(wp_sp.get());
718         if (rc.Success())
719             return true;
720 
721         // Else, fallthrough.
722     }
723     return false;
724 }
725 
726 // Assumption: Caller holds the list mutex lock for m_watchpoint_list.
727 bool
728 Target::EnableWatchpointByID (lldb::watch_id_t watch_id)
729 {
730     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
731     if (log)
732         log->Printf ("Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
733 
734     if (!ProcessIsValid())
735         return false;
736 
737     WatchpointSP wp_sp = m_watchpoint_list.FindByID (watch_id);
738     if (wp_sp)
739     {
740         Error rc = m_process_sp->EnableWatchpoint(wp_sp.get());
741         if (rc.Success())
742             return true;
743 
744         // Else, fallthrough.
745     }
746     return false;
747 }
748 
749 // Assumption: Caller holds the list mutex lock for m_watchpoint_list.
750 bool
751 Target::RemoveWatchpointByID (lldb::watch_id_t watch_id)
752 {
753     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
754     if (log)
755         log->Printf ("Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
756 
757     if (DisableWatchpointByID (watch_id))
758     {
759         m_watchpoint_list.Remove(watch_id);
760         return true;
761     }
762     return false;
763 }
764 
765 // Assumption: Caller holds the list mutex lock for m_watchpoint_list.
766 bool
767 Target::IgnoreWatchpointByID (lldb::watch_id_t watch_id, uint32_t ignore_count)
768 {
769     LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_WATCHPOINTS));
770     if (log)
771         log->Printf ("Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
772 
773     if (!ProcessIsValid())
774         return false;
775 
776     WatchpointSP wp_sp = m_watchpoint_list.FindByID (watch_id);
777     if (wp_sp)
778     {
779         wp_sp->SetIgnoreCount(ignore_count);
780         return true;
781     }
782     return false;
783 }
784 
785 ModuleSP
786 Target::GetExecutableModule ()
787 {
788     return m_images.GetModuleAtIndex(0);
789 }
790 
791 Module*
792 Target::GetExecutableModulePointer ()
793 {
794     return m_images.GetModulePointerAtIndex(0);
795 }
796 
797 void
798 Target::SetExecutableModule (ModuleSP& executable_sp, bool get_dependent_files)
799 {
800     m_images.Clear();
801     m_scratch_ast_context_ap.reset();
802     m_scratch_ast_source_ap.reset();
803     m_ast_importer_ap.reset();
804 
805     if (executable_sp.get())
806     {
807         Timer scoped_timer (__PRETTY_FUNCTION__,
808                             "Target::SetExecutableModule (executable = '%s/%s')",
809                             executable_sp->GetFileSpec().GetDirectory().AsCString(),
810                             executable_sp->GetFileSpec().GetFilename().AsCString());
811 
812         m_images.Append(executable_sp); // The first image is our exectuable file
813 
814         // If we haven't set an architecture yet, reset our architecture based on what we found in the executable module.
815         if (!m_arch.IsValid())
816             m_arch = executable_sp->GetArchitecture();
817 
818         FileSpecList dependent_files;
819         ObjectFile *executable_objfile = executable_sp->GetObjectFile();
820 
821         if (executable_objfile && get_dependent_files)
822         {
823             executable_objfile->GetDependentModules(dependent_files);
824             for (uint32_t i=0; i<dependent_files.GetSize(); i++)
825             {
826                 FileSpec dependent_file_spec (dependent_files.GetFileSpecPointerAtIndex(i));
827                 FileSpec platform_dependent_file_spec;
828                 if (m_platform_sp)
829                     m_platform_sp->GetFile (dependent_file_spec, NULL, platform_dependent_file_spec);
830                 else
831                     platform_dependent_file_spec = dependent_file_spec;
832 
833                 ModuleSP image_module_sp(GetSharedModule (platform_dependent_file_spec,
834                                                           m_arch));
835                 if (image_module_sp.get())
836                 {
837                     ObjectFile *objfile = image_module_sp->GetObjectFile();
838                     if (objfile)
839                         objfile->GetDependentModules(dependent_files);
840                 }
841             }
842         }
843     }
844 
845     UpdateInstanceName();
846 }
847 
848 
849 bool
850 Target::SetArchitecture (const ArchSpec &arch_spec)
851 {
852     if (m_arch == arch_spec)
853     {
854         // If we're setting the architecture to our current architecture, we
855         // don't need to do anything.
856         return true;
857     }
858     else if (!m_arch.IsValid())
859     {
860         // If we haven't got a valid arch spec, then we just need to set it.
861         m_arch = arch_spec;
862         return true;
863     }
864     else
865     {
866         // If we have an executable file, try to reset the executable to the desired architecture
867         m_arch = arch_spec;
868         ModuleSP executable_sp = GetExecutableModule ();
869         m_images.Clear();
870         m_scratch_ast_context_ap.reset();
871         m_scratch_ast_source_ap.reset();
872         m_ast_importer_ap.reset();
873         // Need to do something about unsetting breakpoints.
874 
875         if (executable_sp)
876         {
877             FileSpec exec_file_spec = executable_sp->GetFileSpec();
878             Error error = ModuleList::GetSharedModule(exec_file_spec,
879                                                       arch_spec,
880                                                       NULL,
881                                                       NULL,
882                                                       0,
883                                                       executable_sp,
884                                                       NULL,
885                                                       NULL);
886 
887             if (!error.Fail() && executable_sp)
888             {
889                 SetExecutableModule (executable_sp, true);
890                 return true;
891             }
892             else
893             {
894                 return false;
895             }
896         }
897         else
898         {
899             return false;
900         }
901     }
902 }
903 
904 void
905 Target::ModuleAdded (ModuleSP &module_sp)
906 {
907     // A module is being added to this target for the first time
908     ModuleList module_list;
909     module_list.Append(module_sp);
910     ModulesDidLoad (module_list);
911 }
912 
913 void
914 Target::ModuleUpdated (ModuleSP &old_module_sp, ModuleSP &new_module_sp)
915 {
916     // A module is replacing an already added module
917     ModuleList module_list;
918     module_list.Append (old_module_sp);
919     ModulesDidUnload (module_list);
920     module_list.Clear ();
921     module_list.Append (new_module_sp);
922     ModulesDidLoad (module_list);
923 }
924 
925 void
926 Target::ModulesDidLoad (ModuleList &module_list)
927 {
928     m_breakpoint_list.UpdateBreakpoints (module_list, true);
929     // TODO: make event data that packages up the module_list
930     BroadcastEvent (eBroadcastBitModulesLoaded, NULL);
931 }
932 
933 void
934 Target::ModulesDidUnload (ModuleList &module_list)
935 {
936     m_breakpoint_list.UpdateBreakpoints (module_list, false);
937 
938     // Remove the images from the target image list
939     m_images.Remove(module_list);
940 
941     // TODO: make event data that packages up the module_list
942     BroadcastEvent (eBroadcastBitModulesUnloaded, NULL);
943 }
944 
945 
946 bool
947 Target::ModuleIsExcludedForNonModuleSpecificSearches (const FileSpec &module_spec)
948 {
949 
950     if (!m_breakpoints_use_platform_avoid)
951         return false;
952     else
953     {
954         ModuleList matchingModules;
955         const ArchSpec *arch_ptr = NULL;
956         const lldb_private::UUID *uuid_ptr= NULL;
957         const ConstString *object_name = NULL;
958         size_t num_modules = GetImages().FindModules(&module_spec, arch_ptr, uuid_ptr, object_name, matchingModules);
959 
960         // If there is more than one module for this file spec, only return true if ALL the modules are on the
961         // black list.
962         if (num_modules > 0)
963         {
964             for (int i  = 0; i < num_modules; i++)
965             {
966                 if (!ModuleIsExcludedForNonModuleSpecificSearches (matchingModules.GetModuleAtIndex(i)))
967                     return false;
968             }
969             return true;
970         }
971         else
972             return false;
973     }
974 }
975 
976 bool
977 Target::ModuleIsExcludedForNonModuleSpecificSearches (const lldb::ModuleSP &module_sp)
978 {
979     if (!m_breakpoints_use_platform_avoid)
980         return false;
981     else if (GetPlatform())
982     {
983         return GetPlatform()->ModuleIsExcludedForNonModuleSpecificSearches (*this, module_sp);
984     }
985     else
986         return false;
987 }
988 
989 size_t
990 Target::ReadMemoryFromFileCache (const Address& addr, void *dst, size_t dst_len, Error &error)
991 {
992     const Section *section = addr.GetSection();
993     if (section && section->GetModule())
994     {
995         ObjectFile *objfile = section->GetModule()->GetObjectFile();
996         if (objfile)
997         {
998             size_t bytes_read = section->ReadSectionDataFromObjectFile (objfile,
999                                                                         addr.GetOffset(),
1000                                                                         dst,
1001                                                                         dst_len);
1002             if (bytes_read > 0)
1003                 return bytes_read;
1004             else
1005                 error.SetErrorStringWithFormat("error reading data from section %s", section->GetName().GetCString());
1006         }
1007         else
1008         {
1009             error.SetErrorString("address isn't from a object file");
1010         }
1011     }
1012     else
1013     {
1014         error.SetErrorString("address doesn't contain a section that points to a section in a object file");
1015     }
1016     return 0;
1017 }
1018 
1019 size_t
1020 Target::ReadMemory (const Address& addr,
1021                     bool prefer_file_cache,
1022                     void *dst,
1023                     size_t dst_len,
1024                     Error &error,
1025                     lldb::addr_t *load_addr_ptr)
1026 {
1027     error.Clear();
1028 
1029     // if we end up reading this from process memory, we will fill this
1030     // with the actual load address
1031     if (load_addr_ptr)
1032         *load_addr_ptr = LLDB_INVALID_ADDRESS;
1033 
1034     size_t bytes_read = 0;
1035 
1036     addr_t load_addr = LLDB_INVALID_ADDRESS;
1037     addr_t file_addr = LLDB_INVALID_ADDRESS;
1038     Address resolved_addr;
1039     if (!addr.IsSectionOffset())
1040     {
1041         if (m_section_load_list.IsEmpty())
1042         {
1043             // No sections are loaded, so we must assume we are not running
1044             // yet and anything we are given is a file address.
1045             file_addr = addr.GetOffset(); // "addr" doesn't have a section, so its offset is the file address
1046             m_images.ResolveFileAddress (file_addr, resolved_addr);
1047         }
1048         else
1049         {
1050             // We have at least one section loaded. This can be becuase
1051             // we have manually loaded some sections with "target modules load ..."
1052             // or because we have have a live process that has sections loaded
1053             // through the dynamic loader
1054             load_addr = addr.GetOffset(); // "addr" doesn't have a section, so its offset is the load address
1055             m_section_load_list.ResolveLoadAddress (load_addr, resolved_addr);
1056         }
1057     }
1058     if (!resolved_addr.IsValid())
1059         resolved_addr = addr;
1060 
1061 
1062     if (prefer_file_cache)
1063     {
1064         bytes_read = ReadMemoryFromFileCache (resolved_addr, dst, dst_len, error);
1065         if (bytes_read > 0)
1066             return bytes_read;
1067     }
1068 
1069     if (ProcessIsValid())
1070     {
1071         if (load_addr == LLDB_INVALID_ADDRESS)
1072             load_addr = resolved_addr.GetLoadAddress (this);
1073 
1074         if (load_addr == LLDB_INVALID_ADDRESS)
1075         {
1076             if (resolved_addr.GetModule() && resolved_addr.GetModule()->GetFileSpec())
1077                 error.SetErrorStringWithFormat("%s[0x%llx] can't be resolved, %s in not currently loaded",
1078                                                resolved_addr.GetModule()->GetFileSpec().GetFilename().AsCString(),
1079                                                resolved_addr.GetFileAddress(),
1080                                                resolved_addr.GetModule()->GetFileSpec().GetFilename().AsCString());
1081             else
1082                 error.SetErrorStringWithFormat("0x%llx can't be resolved", resolved_addr.GetFileAddress());
1083         }
1084         else
1085         {
1086             bytes_read = m_process_sp->ReadMemory(load_addr, dst, dst_len, error);
1087             if (bytes_read != dst_len)
1088             {
1089                 if (error.Success())
1090                 {
1091                     if (bytes_read == 0)
1092                         error.SetErrorStringWithFormat("read memory from 0x%llx failed", load_addr);
1093                     else
1094                         error.SetErrorStringWithFormat("only %zu of %zu bytes were read from memory at 0x%llx", bytes_read, dst_len, load_addr);
1095                 }
1096             }
1097             if (bytes_read)
1098             {
1099                 if (load_addr_ptr)
1100                     *load_addr_ptr = load_addr;
1101                 return bytes_read;
1102             }
1103             // If the address is not section offset we have an address that
1104             // doesn't resolve to any address in any currently loaded shared
1105             // libaries and we failed to read memory so there isn't anything
1106             // more we can do. If it is section offset, we might be able to
1107             // read cached memory from the object file.
1108             if (!resolved_addr.IsSectionOffset())
1109                 return 0;
1110         }
1111     }
1112 
1113     if (!prefer_file_cache && resolved_addr.IsSectionOffset())
1114     {
1115         // If we didn't already try and read from the object file cache, then
1116         // try it after failing to read from the process.
1117         return ReadMemoryFromFileCache (resolved_addr, dst, dst_len, error);
1118     }
1119     return 0;
1120 }
1121 
1122 size_t
1123 Target::ReadScalarIntegerFromMemory (const Address& addr,
1124                                      bool prefer_file_cache,
1125                                      uint32_t byte_size,
1126                                      bool is_signed,
1127                                      Scalar &scalar,
1128                                      Error &error)
1129 {
1130     uint64_t uval;
1131 
1132     if (byte_size <= sizeof(uval))
1133     {
1134         size_t bytes_read = ReadMemory (addr, prefer_file_cache, &uval, byte_size, error);
1135         if (bytes_read == byte_size)
1136         {
1137             DataExtractor data (&uval, sizeof(uval), m_arch.GetByteOrder(), m_arch.GetAddressByteSize());
1138             uint32_t offset = 0;
1139             if (byte_size <= 4)
1140                 scalar = data.GetMaxU32 (&offset, byte_size);
1141             else
1142                 scalar = data.GetMaxU64 (&offset, byte_size);
1143 
1144             if (is_signed)
1145                 scalar.SignExtend(byte_size * 8);
1146             return bytes_read;
1147         }
1148     }
1149     else
1150     {
1151         error.SetErrorStringWithFormat ("byte size of %u is too large for integer scalar type", byte_size);
1152     }
1153     return 0;
1154 }
1155 
1156 uint64_t
1157 Target::ReadUnsignedIntegerFromMemory (const Address& addr,
1158                                        bool prefer_file_cache,
1159                                        size_t integer_byte_size,
1160                                        uint64_t fail_value,
1161                                        Error &error)
1162 {
1163     Scalar scalar;
1164     if (ReadScalarIntegerFromMemory (addr,
1165                                      prefer_file_cache,
1166                                      integer_byte_size,
1167                                      false,
1168                                      scalar,
1169                                      error))
1170         return scalar.ULongLong(fail_value);
1171     return fail_value;
1172 }
1173 
1174 bool
1175 Target::ReadPointerFromMemory (const Address& addr,
1176                                bool prefer_file_cache,
1177                                Error &error,
1178                                Address &pointer_addr)
1179 {
1180     Scalar scalar;
1181     if (ReadScalarIntegerFromMemory (addr,
1182                                      prefer_file_cache,
1183                                      m_arch.GetAddressByteSize(),
1184                                      false,
1185                                      scalar,
1186                                      error))
1187     {
1188         addr_t pointer_vm_addr = scalar.ULongLong(LLDB_INVALID_ADDRESS);
1189         if (pointer_vm_addr != LLDB_INVALID_ADDRESS)
1190         {
1191             if (m_section_load_list.IsEmpty())
1192             {
1193                 // No sections are loaded, so we must assume we are not running
1194                 // yet and anything we are given is a file address.
1195                 m_images.ResolveFileAddress (pointer_vm_addr, pointer_addr);
1196             }
1197             else
1198             {
1199                 // We have at least one section loaded. This can be becuase
1200                 // we have manually loaded some sections with "target modules load ..."
1201                 // or because we have have a live process that has sections loaded
1202                 // through the dynamic loader
1203                 m_section_load_list.ResolveLoadAddress (pointer_vm_addr, pointer_addr);
1204             }
1205             // We weren't able to resolve the pointer value, so just return
1206             // an address with no section
1207             if (!pointer_addr.IsValid())
1208                 pointer_addr.SetOffset (pointer_vm_addr);
1209             return true;
1210 
1211         }
1212     }
1213     return false;
1214 }
1215 
1216 ModuleSP
1217 Target::GetSharedModule
1218 (
1219     const FileSpec& file_spec,
1220     const ArchSpec& arch,
1221     const lldb_private::UUID *uuid_ptr,
1222     const ConstString *object_name,
1223     off_t object_offset,
1224     Error *error_ptr
1225 )
1226 {
1227     // Don't pass in the UUID so we can tell if we have a stale value in our list
1228     ModuleSP old_module_sp; // This will get filled in if we have a new version of the library
1229     bool did_create_module = false;
1230     ModuleSP module_sp;
1231 
1232     Error error;
1233 
1234     // If there are image search path entries, try to use them first to acquire a suitable image.
1235     if (m_image_search_paths.GetSize())
1236     {
1237         FileSpec transformed_spec;
1238         if (m_image_search_paths.RemapPath (file_spec.GetDirectory(), transformed_spec.GetDirectory()))
1239         {
1240             transformed_spec.GetFilename() = file_spec.GetFilename();
1241             error = ModuleList::GetSharedModule (transformed_spec, arch, uuid_ptr, object_name, object_offset, module_sp, &old_module_sp, &did_create_module);
1242         }
1243     }
1244 
1245     // The platform is responsible for finding and caching an appropriate
1246     // module in the shared module cache.
1247     if (m_platform_sp)
1248     {
1249         FileSpec platform_file_spec;
1250         error = m_platform_sp->GetSharedModule (file_spec,
1251                                                 arch,
1252                                                 uuid_ptr,
1253                                                 object_name,
1254                                                 object_offset,
1255                                                 module_sp,
1256                                                 &old_module_sp,
1257                                                 &did_create_module);
1258     }
1259     else
1260     {
1261         error.SetErrorString("no platform is currently set");
1262     }
1263 
1264     // If a module hasn't been found yet, use the unmodified path.
1265     if (module_sp)
1266     {
1267         m_images.Append (module_sp);
1268         if (did_create_module)
1269         {
1270             if (old_module_sp && m_images.GetIndexForModule (old_module_sp.get()) != LLDB_INVALID_INDEX32)
1271                 ModuleUpdated(old_module_sp, module_sp);
1272             else
1273                 ModuleAdded(module_sp);
1274         }
1275     }
1276     if (error_ptr)
1277         *error_ptr = error;
1278     return module_sp;
1279 }
1280 
1281 
1282 Target *
1283 Target::CalculateTarget ()
1284 {
1285     return this;
1286 }
1287 
1288 Process *
1289 Target::CalculateProcess ()
1290 {
1291     return NULL;
1292 }
1293 
1294 Thread *
1295 Target::CalculateThread ()
1296 {
1297     return NULL;
1298 }
1299 
1300 StackFrame *
1301 Target::CalculateStackFrame ()
1302 {
1303     return NULL;
1304 }
1305 
1306 void
1307 Target::CalculateExecutionContext (ExecutionContext &exe_ctx)
1308 {
1309     exe_ctx.Clear();
1310     exe_ctx.SetTargetPtr(this);
1311 }
1312 
1313 PathMappingList &
1314 Target::GetImageSearchPathList ()
1315 {
1316     return m_image_search_paths;
1317 }
1318 
1319 void
1320 Target::ImageSearchPathsChanged
1321 (
1322     const PathMappingList &path_list,
1323     void *baton
1324 )
1325 {
1326     Target *target = (Target *)baton;
1327     ModuleSP exe_module_sp (target->GetExecutableModule());
1328     if (exe_module_sp)
1329     {
1330         target->m_images.Clear();
1331         target->SetExecutableModule (exe_module_sp, true);
1332     }
1333 }
1334 
1335 ClangASTContext *
1336 Target::GetScratchClangASTContext(bool create_on_demand)
1337 {
1338     // Now see if we know the target triple, and if so, create our scratch AST context:
1339     if (m_scratch_ast_context_ap.get() == NULL && m_arch.IsValid() && create_on_demand)
1340     {
1341         m_scratch_ast_context_ap.reset (new ClangASTContext(m_arch.GetTriple().str().c_str()));
1342         m_scratch_ast_source_ap.reset (new ClangASTSource(GetSP()));
1343         m_scratch_ast_source_ap->InstallASTContext(m_scratch_ast_context_ap->getASTContext());
1344         llvm::OwningPtr<clang::ExternalASTSource> proxy_ast_source(m_scratch_ast_source_ap->CreateProxy());
1345         m_scratch_ast_context_ap->SetExternalSource(proxy_ast_source);
1346     }
1347     return m_scratch_ast_context_ap.get();
1348 }
1349 
1350 ClangASTImporter *
1351 Target::GetClangASTImporter()
1352 {
1353     ClangASTImporter *ast_importer = m_ast_importer_ap.get();
1354 
1355     if (!ast_importer)
1356     {
1357         ast_importer = new ClangASTImporter();
1358         m_ast_importer_ap.reset(ast_importer);
1359     }
1360 
1361     return ast_importer;
1362 }
1363 
1364 void
1365 Target::SettingsInitialize ()
1366 {
1367     UserSettingsControllerSP &usc = GetSettingsController();
1368     usc.reset (new SettingsController);
1369     UserSettingsController::InitializeSettingsController (usc,
1370                                                           SettingsController::global_settings_table,
1371                                                           SettingsController::instance_settings_table);
1372 
1373     // Now call SettingsInitialize() on each 'child' setting of Target
1374     Process::SettingsInitialize ();
1375 }
1376 
1377 void
1378 Target::SettingsTerminate ()
1379 {
1380 
1381     // Must call SettingsTerminate() on each settings 'child' of Target, before terminating Target's Settings.
1382 
1383     Process::SettingsTerminate ();
1384 
1385     // Now terminate Target Settings.
1386 
1387     UserSettingsControllerSP &usc = GetSettingsController();
1388     UserSettingsController::FinalizeSettingsController (usc);
1389     usc.reset();
1390 }
1391 
1392 UserSettingsControllerSP &
1393 Target::GetSettingsController ()
1394 {
1395     static UserSettingsControllerSP g_settings_controller;
1396     return g_settings_controller;
1397 }
1398 
1399 ArchSpec
1400 Target::GetDefaultArchitecture ()
1401 {
1402     lldb::UserSettingsControllerSP settings_controller_sp (GetSettingsController());
1403 
1404     if (settings_controller_sp)
1405         return static_cast<Target::SettingsController *>(settings_controller_sp.get())->GetArchitecture ();
1406     return ArchSpec();
1407 }
1408 
1409 void
1410 Target::SetDefaultArchitecture (const ArchSpec& arch)
1411 {
1412     lldb::UserSettingsControllerSP settings_controller_sp (GetSettingsController());
1413 
1414     if (settings_controller_sp)
1415         static_cast<Target::SettingsController *>(settings_controller_sp.get())->GetArchitecture () = arch;
1416 }
1417 
1418 Target *
1419 Target::GetTargetFromContexts (const ExecutionContext *exe_ctx_ptr, const SymbolContext *sc_ptr)
1420 {
1421     // The target can either exist in the "process" of ExecutionContext, or in
1422     // the "target_sp" member of SymbolContext. This accessor helper function
1423     // will get the target from one of these locations.
1424 
1425     Target *target = NULL;
1426     if (sc_ptr != NULL)
1427         target = sc_ptr->target_sp.get();
1428     if (target == NULL && exe_ctx_ptr)
1429         target = exe_ctx_ptr->GetTargetPtr();
1430     return target;
1431 }
1432 
1433 
1434 void
1435 Target::UpdateInstanceName ()
1436 {
1437     StreamString sstr;
1438 
1439     Module *exe_module = GetExecutableModulePointer();
1440     if (exe_module)
1441     {
1442         sstr.Printf ("%s_%s",
1443                      exe_module->GetFileSpec().GetFilename().AsCString(),
1444                      exe_module->GetArchitecture().GetArchitectureName());
1445         GetSettingsController()->RenameInstanceSettings (GetInstanceName().AsCString(), sstr.GetData());
1446     }
1447 }
1448 
1449 const char *
1450 Target::GetExpressionPrefixContentsAsCString ()
1451 {
1452     if (!m_expr_prefix_contents.empty())
1453         return m_expr_prefix_contents.c_str();
1454     return NULL;
1455 }
1456 
1457 ExecutionResults
1458 Target::EvaluateExpression
1459 (
1460     const char *expr_cstr,
1461     StackFrame *frame,
1462     lldb_private::ExecutionPolicy execution_policy,
1463     bool coerce_to_id,
1464     bool unwind_on_error,
1465     bool keep_in_memory,
1466     lldb::DynamicValueType use_dynamic,
1467     lldb::ValueObjectSP &result_valobj_sp
1468 )
1469 {
1470     ExecutionResults execution_results = eExecutionSetupError;
1471 
1472     result_valobj_sp.reset();
1473 
1474     if (expr_cstr == NULL || expr_cstr[0] == '\0')
1475         return execution_results;
1476 
1477     // We shouldn't run stop hooks in expressions.
1478     // Be sure to reset this if you return anywhere within this function.
1479     bool old_suppress_value = m_suppress_stop_hooks;
1480     m_suppress_stop_hooks = true;
1481 
1482     ExecutionContext exe_ctx;
1483 
1484     const size_t expr_cstr_len = ::strlen (expr_cstr);
1485 
1486     if (frame)
1487     {
1488         frame->CalculateExecutionContext(exe_ctx);
1489         Error error;
1490         const uint32_t expr_path_options = StackFrame::eExpressionPathOptionCheckPtrVsMember |
1491                                            StackFrame::eExpressionPathOptionsNoFragileObjcIvar |
1492                                            StackFrame::eExpressionPathOptionsNoSyntheticChildren;
1493         lldb::VariableSP var_sp;
1494 
1495         // Make sure we don't have any things that we know a variable expression
1496         // won't be able to deal with before calling into it
1497         if (::strcspn (expr_cstr, "()+*&|!~<=/^%,?") == expr_cstr_len)
1498         {
1499             result_valobj_sp = frame->GetValueForVariableExpressionPath (expr_cstr,
1500                                                                          use_dynamic,
1501                                                                          expr_path_options,
1502                                                                          var_sp,
1503                                                                          error);
1504         }
1505     }
1506     else if (m_process_sp)
1507     {
1508         m_process_sp->CalculateExecutionContext(exe_ctx);
1509     }
1510     else
1511     {
1512         CalculateExecutionContext(exe_ctx);
1513     }
1514 
1515     if (result_valobj_sp)
1516     {
1517         execution_results = eExecutionCompleted;
1518         // We got a result from the frame variable expression path above...
1519         ConstString persistent_variable_name (m_persistent_variables.GetNextPersistentVariableName());
1520 
1521         lldb::ValueObjectSP const_valobj_sp;
1522 
1523         // Check in case our value is already a constant value
1524         if (result_valobj_sp->GetIsConstant())
1525         {
1526             const_valobj_sp = result_valobj_sp;
1527             const_valobj_sp->SetName (persistent_variable_name);
1528         }
1529         else
1530         {
1531             if (use_dynamic != lldb::eNoDynamicValues)
1532             {
1533                 ValueObjectSP dynamic_sp = result_valobj_sp->GetDynamicValue(use_dynamic);
1534                 if (dynamic_sp)
1535                     result_valobj_sp = dynamic_sp;
1536             }
1537 
1538             const_valobj_sp = result_valobj_sp->CreateConstantValue (persistent_variable_name);
1539         }
1540 
1541         lldb::ValueObjectSP live_valobj_sp = result_valobj_sp;
1542 
1543         result_valobj_sp = const_valobj_sp;
1544 
1545         ClangExpressionVariableSP clang_expr_variable_sp(m_persistent_variables.CreatePersistentVariable(result_valobj_sp));
1546         assert (clang_expr_variable_sp.get());
1547 
1548         // Set flags and live data as appropriate
1549 
1550         const Value &result_value = live_valobj_sp->GetValue();
1551 
1552         switch (result_value.GetValueType())
1553         {
1554         case Value::eValueTypeHostAddress:
1555         case Value::eValueTypeFileAddress:
1556             // we don't do anything with these for now
1557             break;
1558         case Value::eValueTypeScalar:
1559             clang_expr_variable_sp->m_flags |= ClangExpressionVariable::EVIsLLDBAllocated;
1560             clang_expr_variable_sp->m_flags |= ClangExpressionVariable::EVNeedsAllocation;
1561             break;
1562         case Value::eValueTypeLoadAddress:
1563             clang_expr_variable_sp->m_live_sp = live_valobj_sp;
1564             clang_expr_variable_sp->m_flags |= ClangExpressionVariable::EVIsProgramReference;
1565             break;
1566         }
1567     }
1568     else
1569     {
1570         // Make sure we aren't just trying to see the value of a persistent
1571         // variable (something like "$0")
1572         lldb::ClangExpressionVariableSP persistent_var_sp;
1573         // Only check for persistent variables the expression starts with a '$'
1574         if (expr_cstr[0] == '$')
1575             persistent_var_sp = m_persistent_variables.GetVariable (expr_cstr);
1576 
1577         if (persistent_var_sp)
1578         {
1579             result_valobj_sp = persistent_var_sp->GetValueObject ();
1580             execution_results = eExecutionCompleted;
1581         }
1582         else
1583         {
1584             const char *prefix = GetExpressionPrefixContentsAsCString();
1585 
1586             execution_results = ClangUserExpression::Evaluate (exe_ctx,
1587                                                                execution_policy,
1588                                                                lldb::eLanguageTypeUnknown,
1589                                                                coerce_to_id ? ClangUserExpression::eResultTypeId : ClangUserExpression::eResultTypeAny,
1590                                                                unwind_on_error,
1591                                                                expr_cstr,
1592                                                                prefix,
1593                                                                result_valobj_sp);
1594         }
1595     }
1596 
1597     m_suppress_stop_hooks = old_suppress_value;
1598 
1599     return execution_results;
1600 }
1601 
1602 lldb::addr_t
1603 Target::GetCallableLoadAddress (lldb::addr_t load_addr, AddressClass addr_class) const
1604 {
1605     addr_t code_addr = load_addr;
1606     switch (m_arch.GetMachine())
1607     {
1608     case llvm::Triple::arm:
1609     case llvm::Triple::thumb:
1610         switch (addr_class)
1611         {
1612         case eAddressClassData:
1613         case eAddressClassDebug:
1614             return LLDB_INVALID_ADDRESS;
1615 
1616         case eAddressClassUnknown:
1617         case eAddressClassInvalid:
1618         case eAddressClassCode:
1619         case eAddressClassCodeAlternateISA:
1620         case eAddressClassRuntime:
1621             // Check if bit zero it no set?
1622             if ((code_addr & 1ull) == 0)
1623             {
1624                 // Bit zero isn't set, check if the address is a multiple of 2?
1625                 if (code_addr & 2ull)
1626                 {
1627                     // The address is a multiple of 2 so it must be thumb, set bit zero
1628                     code_addr |= 1ull;
1629                 }
1630                 else if (addr_class == eAddressClassCodeAlternateISA)
1631                 {
1632                     // We checked the address and the address claims to be the alternate ISA
1633                     // which means thumb, so set bit zero.
1634                     code_addr |= 1ull;
1635                 }
1636             }
1637             break;
1638         }
1639         break;
1640 
1641     default:
1642         break;
1643     }
1644     return code_addr;
1645 }
1646 
1647 lldb::addr_t
1648 Target::GetOpcodeLoadAddress (lldb::addr_t load_addr, AddressClass addr_class) const
1649 {
1650     addr_t opcode_addr = load_addr;
1651     switch (m_arch.GetMachine())
1652     {
1653     case llvm::Triple::arm:
1654     case llvm::Triple::thumb:
1655         switch (addr_class)
1656         {
1657         case eAddressClassData:
1658         case eAddressClassDebug:
1659             return LLDB_INVALID_ADDRESS;
1660 
1661         case eAddressClassInvalid:
1662         case eAddressClassUnknown:
1663         case eAddressClassCode:
1664         case eAddressClassCodeAlternateISA:
1665         case eAddressClassRuntime:
1666             opcode_addr &= ~(1ull);
1667             break;
1668         }
1669         break;
1670 
1671     default:
1672         break;
1673     }
1674     return opcode_addr;
1675 }
1676 
1677 lldb::user_id_t
1678 Target::AddStopHook (Target::StopHookSP &new_hook_sp)
1679 {
1680     lldb::user_id_t new_uid = ++m_stop_hook_next_id;
1681     new_hook_sp.reset (new StopHook(GetSP(), new_uid));
1682     m_stop_hooks[new_uid] = new_hook_sp;
1683     return new_uid;
1684 }
1685 
1686 bool
1687 Target::RemoveStopHookByID (lldb::user_id_t user_id)
1688 {
1689     size_t num_removed;
1690     num_removed = m_stop_hooks.erase (user_id);
1691     if (num_removed == 0)
1692         return false;
1693     else
1694         return true;
1695 }
1696 
1697 void
1698 Target::RemoveAllStopHooks ()
1699 {
1700     m_stop_hooks.clear();
1701 }
1702 
1703 Target::StopHookSP
1704 Target::GetStopHookByID (lldb::user_id_t user_id)
1705 {
1706     StopHookSP found_hook;
1707 
1708     StopHookCollection::iterator specified_hook_iter;
1709     specified_hook_iter = m_stop_hooks.find (user_id);
1710     if (specified_hook_iter != m_stop_hooks.end())
1711         found_hook = (*specified_hook_iter).second;
1712     return found_hook;
1713 }
1714 
1715 bool
1716 Target::SetStopHookActiveStateByID (lldb::user_id_t user_id, bool active_state)
1717 {
1718     StopHookCollection::iterator specified_hook_iter;
1719     specified_hook_iter = m_stop_hooks.find (user_id);
1720     if (specified_hook_iter == m_stop_hooks.end())
1721         return false;
1722 
1723     (*specified_hook_iter).second->SetIsActive (active_state);
1724     return true;
1725 }
1726 
1727 void
1728 Target::SetAllStopHooksActiveState (bool active_state)
1729 {
1730     StopHookCollection::iterator pos, end = m_stop_hooks.end();
1731     for (pos = m_stop_hooks.begin(); pos != end; pos++)
1732     {
1733         (*pos).second->SetIsActive (active_state);
1734     }
1735 }
1736 
1737 void
1738 Target::RunStopHooks ()
1739 {
1740     if (m_suppress_stop_hooks)
1741         return;
1742 
1743     if (!m_process_sp)
1744         return;
1745 
1746     if (m_stop_hooks.empty())
1747         return;
1748 
1749     StopHookCollection::iterator pos, end = m_stop_hooks.end();
1750 
1751     // If there aren't any active stop hooks, don't bother either:
1752     bool any_active_hooks = false;
1753     for (pos = m_stop_hooks.begin(); pos != end; pos++)
1754     {
1755         if ((*pos).second->IsActive())
1756         {
1757             any_active_hooks = true;
1758             break;
1759         }
1760     }
1761     if (!any_active_hooks)
1762         return;
1763 
1764     CommandReturnObject result;
1765 
1766     std::vector<ExecutionContext> exc_ctx_with_reasons;
1767     std::vector<SymbolContext> sym_ctx_with_reasons;
1768 
1769     ThreadList &cur_threadlist = m_process_sp->GetThreadList();
1770     size_t num_threads = cur_threadlist.GetSize();
1771     for (size_t i = 0; i < num_threads; i++)
1772     {
1773         lldb::ThreadSP cur_thread_sp = cur_threadlist.GetThreadAtIndex (i);
1774         if (cur_thread_sp->ThreadStoppedForAReason())
1775         {
1776             lldb::StackFrameSP cur_frame_sp = cur_thread_sp->GetStackFrameAtIndex(0);
1777             exc_ctx_with_reasons.push_back(ExecutionContext(m_process_sp.get(), cur_thread_sp.get(), cur_frame_sp.get()));
1778             sym_ctx_with_reasons.push_back(cur_frame_sp->GetSymbolContext(eSymbolContextEverything));
1779         }
1780     }
1781 
1782     // If no threads stopped for a reason, don't run the stop-hooks.
1783     size_t num_exe_ctx = exc_ctx_with_reasons.size();
1784     if (num_exe_ctx == 0)
1785         return;
1786 
1787     result.SetImmediateOutputStream (m_debugger.GetAsyncOutputStream());
1788     result.SetImmediateErrorStream (m_debugger.GetAsyncErrorStream());
1789 
1790     bool keep_going = true;
1791     bool hooks_ran = false;
1792     bool print_hook_header;
1793     bool print_thread_header;
1794 
1795     if (num_exe_ctx == 1)
1796         print_thread_header = false;
1797     else
1798         print_thread_header = true;
1799 
1800     if (m_stop_hooks.size() == 1)
1801         print_hook_header = false;
1802     else
1803         print_hook_header = true;
1804 
1805     for (pos = m_stop_hooks.begin(); keep_going && pos != end; pos++)
1806     {
1807         // result.Clear();
1808         StopHookSP cur_hook_sp = (*pos).second;
1809         if (!cur_hook_sp->IsActive())
1810             continue;
1811 
1812         bool any_thread_matched = false;
1813         for (size_t i = 0; keep_going && i < num_exe_ctx; i++)
1814         {
1815             if ((cur_hook_sp->GetSpecifier () == NULL
1816                   || cur_hook_sp->GetSpecifier()->SymbolContextMatches(sym_ctx_with_reasons[i]))
1817                 && (cur_hook_sp->GetThreadSpecifier() == NULL
1818                     || cur_hook_sp->GetThreadSpecifier()->ThreadPassesBasicTests(exc_ctx_with_reasons[i].GetThreadPtr())))
1819             {
1820                 if (!hooks_ran)
1821                 {
1822                     hooks_ran = true;
1823                 }
1824                 if (print_hook_header && !any_thread_matched)
1825                 {
1826                     const char *cmd = (cur_hook_sp->GetCommands().GetSize() == 1 ?
1827                                        cur_hook_sp->GetCommands().GetStringAtIndex(0) :
1828                                        NULL);
1829                     if (cmd)
1830                         result.AppendMessageWithFormat("\n- Hook %llu (%s)\n", cur_hook_sp->GetID(), cmd);
1831                     else
1832                         result.AppendMessageWithFormat("\n- Hook %llu\n", cur_hook_sp->GetID());
1833                     any_thread_matched = true;
1834                 }
1835 
1836                 if (print_thread_header)
1837                     result.AppendMessageWithFormat("-- Thread %d\n", exc_ctx_with_reasons[i].GetThreadPtr()->GetIndexID());
1838 
1839                 bool stop_on_continue = true;
1840                 bool stop_on_error = true;
1841                 bool echo_commands = false;
1842                 bool print_results = true;
1843                 GetDebugger().GetCommandInterpreter().HandleCommands (cur_hook_sp->GetCommands(),
1844                                                                       &exc_ctx_with_reasons[i],
1845                                                                       stop_on_continue,
1846                                                                       stop_on_error,
1847                                                                       echo_commands,
1848                                                                       print_results,
1849                                                                       result);
1850 
1851                 // If the command started the target going again, we should bag out of
1852                 // running the stop hooks.
1853                 if ((result.GetStatus() == eReturnStatusSuccessContinuingNoResult) ||
1854                     (result.GetStatus() == eReturnStatusSuccessContinuingResult))
1855                 {
1856                     result.AppendMessageWithFormat ("Aborting stop hooks, hook %llu set the program running.", cur_hook_sp->GetID());
1857                     keep_going = false;
1858                 }
1859             }
1860         }
1861     }
1862 
1863     result.GetImmediateOutputStream()->Flush();
1864     result.GetImmediateErrorStream()->Flush();
1865 }
1866 
1867 bool
1868 Target::LoadModuleWithSlide (Module *module, lldb::addr_t slide)
1869 {
1870     bool changed = false;
1871     if (module)
1872     {
1873         ObjectFile *object_file = module->GetObjectFile();
1874         if (object_file)
1875         {
1876             SectionList *section_list = object_file->GetSectionList ();
1877             if (section_list)
1878             {
1879                 // All sections listed in the dyld image info structure will all
1880                 // either be fixed up already, or they will all be off by a single
1881                 // slide amount that is determined by finding the first segment
1882                 // that is at file offset zero which also has bytes (a file size
1883                 // that is greater than zero) in the object file.
1884 
1885                 // Determine the slide amount (if any)
1886                 const size_t num_sections = section_list->GetSize();
1887                 size_t sect_idx = 0;
1888                 for (sect_idx = 0; sect_idx < num_sections; ++sect_idx)
1889                 {
1890                     // Iterate through the object file sections to find the
1891                     // first section that starts of file offset zero and that
1892                     // has bytes in the file...
1893                     Section *section = section_list->GetSectionAtIndex (sect_idx).get();
1894                     if (section)
1895                     {
1896                         if (m_section_load_list.SetSectionLoadAddress (section, section->GetFileAddress() + slide))
1897                             changed = true;
1898                     }
1899                 }
1900             }
1901         }
1902     }
1903     return changed;
1904 }
1905 
1906 
1907 //--------------------------------------------------------------
1908 // class Target::StopHook
1909 //--------------------------------------------------------------
1910 
1911 
1912 Target::StopHook::StopHook (lldb::TargetSP target_sp, lldb::user_id_t uid) :
1913         UserID (uid),
1914         m_target_sp (target_sp),
1915         m_commands (),
1916         m_specifier_sp (),
1917         m_thread_spec_ap(NULL),
1918         m_active (true)
1919 {
1920 }
1921 
1922 Target::StopHook::StopHook (const StopHook &rhs) :
1923         UserID (rhs.GetID()),
1924         m_target_sp (rhs.m_target_sp),
1925         m_commands (rhs.m_commands),
1926         m_specifier_sp (rhs.m_specifier_sp),
1927         m_thread_spec_ap (NULL),
1928         m_active (rhs.m_active)
1929 {
1930     if (rhs.m_thread_spec_ap.get() != NULL)
1931         m_thread_spec_ap.reset (new ThreadSpec(*rhs.m_thread_spec_ap.get()));
1932 }
1933 
1934 
1935 Target::StopHook::~StopHook ()
1936 {
1937 }
1938 
1939 void
1940 Target::StopHook::SetThreadSpecifier (ThreadSpec *specifier)
1941 {
1942     m_thread_spec_ap.reset (specifier);
1943 }
1944 
1945 
1946 void
1947 Target::StopHook::GetDescription (Stream *s, lldb::DescriptionLevel level) const
1948 {
1949     int indent_level = s->GetIndentLevel();
1950 
1951     s->SetIndentLevel(indent_level + 2);
1952 
1953     s->Printf ("Hook: %llu\n", GetID());
1954     if (m_active)
1955         s->Indent ("State: enabled\n");
1956     else
1957         s->Indent ("State: disabled\n");
1958 
1959     if (m_specifier_sp)
1960     {
1961         s->Indent();
1962         s->PutCString ("Specifier:\n");
1963         s->SetIndentLevel (indent_level + 4);
1964         m_specifier_sp->GetDescription (s, level);
1965         s->SetIndentLevel (indent_level + 2);
1966     }
1967 
1968     if (m_thread_spec_ap.get() != NULL)
1969     {
1970         StreamString tmp;
1971         s->Indent("Thread:\n");
1972         m_thread_spec_ap->GetDescription (&tmp, level);
1973         s->SetIndentLevel (indent_level + 4);
1974         s->Indent (tmp.GetData());
1975         s->PutCString ("\n");
1976         s->SetIndentLevel (indent_level + 2);
1977     }
1978 
1979     s->Indent ("Commands: \n");
1980     s->SetIndentLevel (indent_level + 4);
1981     uint32_t num_commands = m_commands.GetSize();
1982     for (uint32_t i = 0; i < num_commands; i++)
1983     {
1984         s->Indent(m_commands.GetStringAtIndex(i));
1985         s->PutCString ("\n");
1986     }
1987     s->SetIndentLevel (indent_level);
1988 }
1989 
1990 
1991 //--------------------------------------------------------------
1992 // class Target::SettingsController
1993 //--------------------------------------------------------------
1994 
1995 Target::SettingsController::SettingsController () :
1996     UserSettingsController ("target", Debugger::GetSettingsController()),
1997     m_default_architecture ()
1998 {
1999     m_default_settings.reset (new TargetInstanceSettings (*this, false,
2000                                                           InstanceSettings::GetDefaultName().AsCString()));
2001 }
2002 
2003 Target::SettingsController::~SettingsController ()
2004 {
2005 }
2006 
2007 lldb::InstanceSettingsSP
2008 Target::SettingsController::CreateInstanceSettings (const char *instance_name)
2009 {
2010     TargetInstanceSettings *new_settings = new TargetInstanceSettings (*GetSettingsController(),
2011                                                                        false,
2012                                                                        instance_name);
2013     lldb::InstanceSettingsSP new_settings_sp (new_settings);
2014     return new_settings_sp;
2015 }
2016 
2017 
2018 #define TSC_DEFAULT_ARCH        "default-arch"
2019 #define TSC_EXPR_PREFIX         "expr-prefix"
2020 #define TSC_PREFER_DYNAMIC      "prefer-dynamic-value"
2021 #define TSC_SKIP_PROLOGUE       "skip-prologue"
2022 #define TSC_SOURCE_MAP          "source-map"
2023 #define TSC_MAX_CHILDREN        "max-children-count"
2024 #define TSC_MAX_STRLENSUMMARY   "max-string-summary-length"
2025 #define TSC_PLATFORM_AVOID      "breakpoints-use-platform-avoid-list"
2026 #define TSC_RUN_ARGS            "run-args"
2027 #define TSC_ENV_VARS            "env-vars"
2028 #define TSC_INHERIT_ENV         "inherit-env"
2029 #define TSC_STDIN_PATH          "input-path"
2030 #define TSC_STDOUT_PATH         "output-path"
2031 #define TSC_STDERR_PATH         "error-path"
2032 #define TSC_DISABLE_ASLR        "disable-aslr"
2033 #define TSC_DISABLE_STDIO       "disable-stdio"
2034 
2035 
2036 static const ConstString &
2037 GetSettingNameForDefaultArch ()
2038 {
2039     static ConstString g_const_string (TSC_DEFAULT_ARCH);
2040     return g_const_string;
2041 }
2042 
2043 static const ConstString &
2044 GetSettingNameForExpressionPrefix ()
2045 {
2046     static ConstString g_const_string (TSC_EXPR_PREFIX);
2047     return g_const_string;
2048 }
2049 
2050 static const ConstString &
2051 GetSettingNameForPreferDynamicValue ()
2052 {
2053     static ConstString g_const_string (TSC_PREFER_DYNAMIC);
2054     return g_const_string;
2055 }
2056 
2057 static const ConstString &
2058 GetSettingNameForSourcePathMap ()
2059 {
2060     static ConstString g_const_string (TSC_SOURCE_MAP);
2061     return g_const_string;
2062 }
2063 
2064 static const ConstString &
2065 GetSettingNameForSkipPrologue ()
2066 {
2067     static ConstString g_const_string (TSC_SKIP_PROLOGUE);
2068     return g_const_string;
2069 }
2070 
2071 static const ConstString &
2072 GetSettingNameForMaxChildren ()
2073 {
2074     static ConstString g_const_string (TSC_MAX_CHILDREN);
2075     return g_const_string;
2076 }
2077 
2078 static const ConstString &
2079 GetSettingNameForMaxStringSummaryLength ()
2080 {
2081     static ConstString g_const_string (TSC_MAX_STRLENSUMMARY);
2082     return g_const_string;
2083 }
2084 
2085 static const ConstString &
2086 GetSettingNameForPlatformAvoid ()
2087 {
2088     static ConstString g_const_string (TSC_PLATFORM_AVOID);
2089     return g_const_string;
2090 }
2091 
2092 const ConstString &
2093 GetSettingNameForRunArgs ()
2094 {
2095     static ConstString g_const_string (TSC_RUN_ARGS);
2096     return g_const_string;
2097 }
2098 
2099 const ConstString &
2100 GetSettingNameForEnvVars ()
2101 {
2102     static ConstString g_const_string (TSC_ENV_VARS);
2103     return g_const_string;
2104 }
2105 
2106 const ConstString &
2107 GetSettingNameForInheritHostEnv ()
2108 {
2109     static ConstString g_const_string (TSC_INHERIT_ENV);
2110     return g_const_string;
2111 }
2112 
2113 const ConstString &
2114 GetSettingNameForInputPath ()
2115 {
2116     static ConstString g_const_string (TSC_STDIN_PATH);
2117     return g_const_string;
2118 }
2119 
2120 const ConstString &
2121 GetSettingNameForOutputPath ()
2122 {
2123     static ConstString g_const_string (TSC_STDOUT_PATH);
2124     return g_const_string;
2125 }
2126 
2127 const ConstString &
2128 GetSettingNameForErrorPath ()
2129 {
2130     static ConstString g_const_string (TSC_STDERR_PATH);
2131     return g_const_string;
2132 }
2133 
2134 const ConstString &
2135 GetSettingNameForDisableASLR ()
2136 {
2137     static ConstString g_const_string (TSC_DISABLE_ASLR);
2138     return g_const_string;
2139 }
2140 
2141 const ConstString &
2142 GetSettingNameForDisableSTDIO ()
2143 {
2144     static ConstString g_const_string (TSC_DISABLE_STDIO);
2145     return g_const_string;
2146 }
2147 
2148 bool
2149 Target::SettingsController::SetGlobalVariable (const ConstString &var_name,
2150                                                const char *index_value,
2151                                                const char *value,
2152                                                const SettingEntry &entry,
2153                                                const VarSetOperationType op,
2154                                                Error&err)
2155 {
2156     if (var_name == GetSettingNameForDefaultArch())
2157     {
2158         m_default_architecture.SetTriple (value, NULL);
2159         if (!m_default_architecture.IsValid())
2160             err.SetErrorStringWithFormat ("'%s' is not a valid architecture or triple.", value);
2161     }
2162     return true;
2163 }
2164 
2165 
2166 bool
2167 Target::SettingsController::GetGlobalVariable (const ConstString &var_name,
2168                                                StringList &value,
2169                                                Error &err)
2170 {
2171     if (var_name == GetSettingNameForDefaultArch())
2172     {
2173         // If the arch is invalid (the default), don't show a string for it
2174         if (m_default_architecture.IsValid())
2175             value.AppendString (m_default_architecture.GetArchitectureName());
2176         return true;
2177     }
2178     else
2179         err.SetErrorStringWithFormat ("unrecognized variable name '%s'", var_name.AsCString());
2180 
2181     return false;
2182 }
2183 
2184 //--------------------------------------------------------------
2185 // class TargetInstanceSettings
2186 //--------------------------------------------------------------
2187 
2188 TargetInstanceSettings::TargetInstanceSettings
2189 (
2190     UserSettingsController &owner,
2191     bool live_instance,
2192     const char *name
2193 ) :
2194     InstanceSettings (owner, name ? name : InstanceSettings::InvalidName().AsCString(), live_instance),
2195     m_expr_prefix_file (),
2196     m_expr_prefix_contents (),
2197     m_prefer_dynamic_value (2),
2198     m_skip_prologue (true, true),
2199     m_source_map (NULL, NULL),
2200     m_max_children_display(256),
2201     m_max_strlen_length(1024),
2202     m_breakpoints_use_platform_avoid (true, true),
2203     m_run_args (),
2204     m_env_vars (),
2205     m_input_path (),
2206     m_output_path (),
2207     m_error_path (),
2208     m_disable_aslr (true),
2209     m_disable_stdio (false),
2210     m_inherit_host_env (true),
2211     m_got_host_env (false)
2212 {
2213     // CopyInstanceSettings is a pure virtual function in InstanceSettings; it therefore cannot be called
2214     // until the vtables for TargetInstanceSettings are properly set up, i.e. AFTER all the initializers.
2215     // For this reason it has to be called here, rather than in the initializer or in the parent constructor.
2216     // This is true for CreateInstanceName() too.
2217 
2218     if (GetInstanceName () == InstanceSettings::InvalidName())
2219     {
2220         ChangeInstanceName (std::string (CreateInstanceName().AsCString()));
2221         m_owner.RegisterInstanceSettings (this);
2222     }
2223 
2224     if (live_instance)
2225     {
2226         const lldb::InstanceSettingsSP &pending_settings = m_owner.FindPendingSettings (m_instance_name);
2227         CopyInstanceSettings (pending_settings,false);
2228     }
2229 }
2230 
2231 TargetInstanceSettings::TargetInstanceSettings (const TargetInstanceSettings &rhs) :
2232     InstanceSettings (*Target::GetSettingsController(), CreateInstanceName().AsCString()),
2233     m_expr_prefix_file (rhs.m_expr_prefix_file),
2234     m_expr_prefix_contents (rhs.m_expr_prefix_contents),
2235     m_prefer_dynamic_value (rhs.m_prefer_dynamic_value),
2236     m_skip_prologue (rhs.m_skip_prologue),
2237     m_source_map (rhs.m_source_map),
2238     m_max_children_display (rhs.m_max_children_display),
2239     m_max_strlen_length (rhs.m_max_strlen_length),
2240     m_breakpoints_use_platform_avoid (rhs.m_breakpoints_use_platform_avoid),
2241     m_run_args (rhs.m_run_args),
2242     m_env_vars (rhs.m_env_vars),
2243     m_input_path (rhs.m_input_path),
2244     m_output_path (rhs.m_output_path),
2245     m_error_path (rhs.m_error_path),
2246     m_disable_aslr (rhs.m_disable_aslr),
2247     m_disable_stdio (rhs.m_disable_stdio),
2248     m_inherit_host_env (rhs.m_inherit_host_env)
2249 {
2250     if (m_instance_name != InstanceSettings::GetDefaultName())
2251     {
2252         const lldb::InstanceSettingsSP &pending_settings = m_owner.FindPendingSettings (m_instance_name);
2253         CopyInstanceSettings (pending_settings,false);
2254     }
2255 }
2256 
2257 TargetInstanceSettings::~TargetInstanceSettings ()
2258 {
2259 }
2260 
2261 TargetInstanceSettings&
2262 TargetInstanceSettings::operator= (const TargetInstanceSettings &rhs)
2263 {
2264     if (this != &rhs)
2265     {
2266         m_expr_prefix_file = rhs.m_expr_prefix_file;
2267         m_expr_prefix_contents = rhs.m_expr_prefix_contents;
2268         m_prefer_dynamic_value = rhs.m_prefer_dynamic_value;
2269         m_skip_prologue = rhs.m_skip_prologue;
2270         m_source_map = rhs.m_source_map;
2271         m_max_children_display = rhs.m_max_children_display;
2272         m_max_strlen_length = rhs.m_max_strlen_length;
2273         m_breakpoints_use_platform_avoid = rhs.m_breakpoints_use_platform_avoid;
2274         m_run_args = rhs.m_run_args;
2275         m_env_vars = rhs.m_env_vars;
2276         m_input_path = rhs.m_input_path;
2277         m_output_path = rhs.m_output_path;
2278         m_error_path = rhs.m_error_path;
2279         m_disable_aslr = rhs.m_disable_aslr;
2280         m_disable_stdio = rhs.m_disable_stdio;
2281         m_inherit_host_env = rhs.m_inherit_host_env;
2282     }
2283 
2284     return *this;
2285 }
2286 
2287 void
2288 TargetInstanceSettings::UpdateInstanceSettingsVariable (const ConstString &var_name,
2289                                                         const char *index_value,
2290                                                         const char *value,
2291                                                         const ConstString &instance_name,
2292                                                         const SettingEntry &entry,
2293                                                         VarSetOperationType op,
2294                                                         Error &err,
2295                                                         bool pending)
2296 {
2297     if (var_name == GetSettingNameForExpressionPrefix ())
2298     {
2299         err = UserSettingsController::UpdateFileSpecOptionValue (value, op, m_expr_prefix_file);
2300         if (err.Success())
2301         {
2302             switch (op)
2303             {
2304             default:
2305                 break;
2306             case eVarSetOperationAssign:
2307             case eVarSetOperationAppend:
2308                 {
2309                     m_expr_prefix_contents.clear();
2310 
2311                     if (!m_expr_prefix_file.GetCurrentValue().Exists())
2312                     {
2313                         err.SetErrorToGenericError ();
2314                         err.SetErrorStringWithFormat ("%s does not exist", value);
2315                         return;
2316                     }
2317 
2318                     DataBufferSP file_data_sp (m_expr_prefix_file.GetCurrentValue().ReadFileContents(0, SIZE_MAX, &err));
2319 
2320                     if (err.Success())
2321                     {
2322                         if (file_data_sp && file_data_sp->GetByteSize() > 0)
2323                         {
2324                             m_expr_prefix_contents.assign((const char*)file_data_sp->GetBytes(), file_data_sp->GetByteSize());
2325                         }
2326                         else
2327                         {
2328                             err.SetErrorStringWithFormat ("couldn't read data from '%s'", value);
2329                         }
2330                     }
2331                 }
2332                 break;
2333             case eVarSetOperationClear:
2334                 m_expr_prefix_contents.clear();
2335             }
2336         }
2337     }
2338     else if (var_name == GetSettingNameForPreferDynamicValue())
2339     {
2340         int new_value;
2341         UserSettingsController::UpdateEnumVariable (g_dynamic_value_types, &new_value, value, err);
2342         if (err.Success())
2343             m_prefer_dynamic_value = new_value;
2344     }
2345     else if (var_name == GetSettingNameForSkipPrologue())
2346     {
2347         err = UserSettingsController::UpdateBooleanOptionValue (value, op, m_skip_prologue);
2348     }
2349     else if (var_name == GetSettingNameForMaxChildren())
2350     {
2351         bool ok;
2352         uint32_t new_value = Args::StringToUInt32(value, 0, 10, &ok);
2353         if (ok)
2354             m_max_children_display = new_value;
2355     }
2356     else if (var_name == GetSettingNameForMaxStringSummaryLength())
2357     {
2358         bool ok;
2359         uint32_t new_value = Args::StringToUInt32(value, 0, 10, &ok);
2360         if (ok)
2361             m_max_strlen_length = new_value;
2362     }
2363     else if (var_name == GetSettingNameForSourcePathMap ())
2364     {
2365         switch (op)
2366         {
2367             case eVarSetOperationReplace:
2368             case eVarSetOperationInsertBefore:
2369             case eVarSetOperationInsertAfter:
2370             case eVarSetOperationRemove:
2371             default:
2372                 break;
2373             case eVarSetOperationAssign:
2374                 m_source_map.Clear(true);
2375                 // Fall through to append....
2376             case eVarSetOperationAppend:
2377                 {
2378                     Args args(value);
2379                     const uint32_t argc = args.GetArgumentCount();
2380                     if (argc & 1 || argc == 0)
2381                     {
2382                         err.SetErrorStringWithFormat ("an even number of paths must be supplied to to the source-map setting: %u arguments given", argc);
2383                     }
2384                     else
2385                     {
2386                         char resolved_new_path[PATH_MAX];
2387                         FileSpec file_spec;
2388                         const char *old_path;
2389                         for (uint32_t idx = 0; (old_path = args.GetArgumentAtIndex(idx)) != NULL; idx += 2)
2390                         {
2391                             const char *new_path = args.GetArgumentAtIndex(idx+1);
2392                             assert (new_path); // We have an even number of paths, this shouldn't happen!
2393 
2394                             file_spec.SetFile(new_path, true);
2395                             if (file_spec.Exists())
2396                             {
2397                                 if (file_spec.GetPath (resolved_new_path, sizeof(resolved_new_path)) >= sizeof(resolved_new_path))
2398                                 {
2399                                     err.SetErrorStringWithFormat("new path '%s' is too long", new_path);
2400                                     return;
2401                                 }
2402                             }
2403                             else
2404                             {
2405                                 err.SetErrorStringWithFormat("new path '%s' doesn't exist", new_path);
2406                                 return;
2407                             }
2408                             m_source_map.Append(ConstString (old_path), ConstString (resolved_new_path), true);
2409                         }
2410                     }
2411                 }
2412                 break;
2413 
2414             case eVarSetOperationClear:
2415                 m_source_map.Clear(true);
2416                 break;
2417         }
2418     }
2419     else if (var_name == GetSettingNameForPlatformAvoid ())
2420     {
2421         err = UserSettingsController::UpdateBooleanOptionValue (value, op, m_breakpoints_use_platform_avoid);
2422     }
2423     else if (var_name == GetSettingNameForRunArgs())
2424     {
2425         UserSettingsController::UpdateStringArrayVariable (op, index_value, m_run_args, value, err);
2426     }
2427     else if (var_name == GetSettingNameForEnvVars())
2428     {
2429         // This is nice for local debugging, but it is isn't correct for
2430         // remote debugging. We need to stop process.env-vars from being
2431         // populated with the host environment and add this as a launch option
2432         // and get the correct environment from the Target's platform.
2433         // GetHostEnvironmentIfNeeded ();
2434         UserSettingsController::UpdateDictionaryVariable (op, index_value, m_env_vars, value, err);
2435     }
2436     else if (var_name == GetSettingNameForInputPath())
2437     {
2438         UserSettingsController::UpdateStringVariable (op, m_input_path, value, err);
2439     }
2440     else if (var_name == GetSettingNameForOutputPath())
2441     {
2442         UserSettingsController::UpdateStringVariable (op, m_output_path, value, err);
2443     }
2444     else if (var_name == GetSettingNameForErrorPath())
2445     {
2446         UserSettingsController::UpdateStringVariable (op, m_error_path, value, err);
2447     }
2448     else if (var_name == GetSettingNameForDisableASLR())
2449     {
2450         UserSettingsController::UpdateBooleanVariable (op, m_disable_aslr, value, true, err);
2451     }
2452     else if (var_name == GetSettingNameForDisableSTDIO ())
2453     {
2454         UserSettingsController::UpdateBooleanVariable (op, m_disable_stdio, value, false, err);
2455     }
2456 }
2457 
2458 void
2459 TargetInstanceSettings::CopyInstanceSettings (const lldb::InstanceSettingsSP &new_settings, bool pending)
2460 {
2461     TargetInstanceSettings *new_settings_ptr = static_cast <TargetInstanceSettings *> (new_settings.get());
2462 
2463     if (!new_settings_ptr)
2464         return;
2465 
2466     *this = *new_settings_ptr;
2467 }
2468 
2469 bool
2470 TargetInstanceSettings::GetInstanceSettingsValue (const SettingEntry &entry,
2471                                                   const ConstString &var_name,
2472                                                   StringList &value,
2473                                                   Error *err)
2474 {
2475     if (var_name == GetSettingNameForExpressionPrefix ())
2476     {
2477         char path[PATH_MAX];
2478         const size_t path_len = m_expr_prefix_file.GetCurrentValue().GetPath (path, sizeof(path));
2479         if (path_len > 0)
2480             value.AppendString (path, path_len);
2481     }
2482     else if (var_name == GetSettingNameForPreferDynamicValue())
2483     {
2484         value.AppendString (g_dynamic_value_types[m_prefer_dynamic_value].string_value);
2485     }
2486     else if (var_name == GetSettingNameForSkipPrologue())
2487     {
2488         if (m_skip_prologue)
2489             value.AppendString ("true");
2490         else
2491             value.AppendString ("false");
2492     }
2493     else if (var_name == GetSettingNameForSourcePathMap ())
2494     {
2495         if (m_source_map.GetSize())
2496         {
2497             size_t i;
2498             for (i = 0; i < m_source_map.GetSize(); ++i) {
2499                 StreamString sstr;
2500                 m_source_map.Dump(&sstr, i);
2501                 value.AppendString(sstr.GetData());
2502             }
2503         }
2504     }
2505     else if (var_name == GetSettingNameForMaxChildren())
2506     {
2507         StreamString count_str;
2508         count_str.Printf ("%d", m_max_children_display);
2509         value.AppendString (count_str.GetData());
2510     }
2511     else if (var_name == GetSettingNameForMaxStringSummaryLength())
2512     {
2513         StreamString count_str;
2514         count_str.Printf ("%d", m_max_strlen_length);
2515         value.AppendString (count_str.GetData());
2516     }
2517     else if (var_name == GetSettingNameForPlatformAvoid())
2518     {
2519         if (m_breakpoints_use_platform_avoid)
2520             value.AppendString ("true");
2521         else
2522             value.AppendString ("false");
2523     }
2524     else if (var_name == GetSettingNameForRunArgs())
2525     {
2526         if (m_run_args.GetArgumentCount() > 0)
2527         {
2528             for (int i = 0; i < m_run_args.GetArgumentCount(); ++i)
2529                 value.AppendString (m_run_args.GetArgumentAtIndex (i));
2530         }
2531     }
2532     else if (var_name == GetSettingNameForEnvVars())
2533     {
2534         GetHostEnvironmentIfNeeded ();
2535 
2536         if (m_env_vars.size() > 0)
2537         {
2538             std::map<std::string, std::string>::iterator pos;
2539             for (pos = m_env_vars.begin(); pos != m_env_vars.end(); ++pos)
2540             {
2541                 StreamString value_str;
2542                 value_str.Printf ("%s=%s", pos->first.c_str(), pos->second.c_str());
2543                 value.AppendString (value_str.GetData());
2544             }
2545         }
2546     }
2547     else if (var_name == GetSettingNameForInputPath())
2548     {
2549         value.AppendString (m_input_path.c_str());
2550     }
2551     else if (var_name == GetSettingNameForOutputPath())
2552     {
2553         value.AppendString (m_output_path.c_str());
2554     }
2555     else if (var_name == GetSettingNameForErrorPath())
2556     {
2557         value.AppendString (m_error_path.c_str());
2558     }
2559     else if (var_name == GetSettingNameForInheritHostEnv())
2560     {
2561         if (m_inherit_host_env)
2562             value.AppendString ("true");
2563         else
2564             value.AppendString ("false");
2565     }
2566     else if (var_name == GetSettingNameForDisableASLR())
2567     {
2568         if (m_disable_aslr)
2569             value.AppendString ("true");
2570         else
2571             value.AppendString ("false");
2572     }
2573     else if (var_name == GetSettingNameForDisableSTDIO())
2574     {
2575         if (m_disable_stdio)
2576             value.AppendString ("true");
2577         else
2578             value.AppendString ("false");
2579     }
2580     else
2581     {
2582         if (err)
2583             err->SetErrorStringWithFormat ("unrecognized variable name '%s'", var_name.AsCString());
2584         return false;
2585     }
2586     return true;
2587 }
2588 
2589 void
2590 Target::TargetInstanceSettings::GetHostEnvironmentIfNeeded ()
2591 {
2592     if (m_inherit_host_env && !m_got_host_env)
2593     {
2594         m_got_host_env = true;
2595         StringList host_env;
2596         const size_t host_env_count = Host::GetEnvironment (host_env);
2597         for (size_t idx=0; idx<host_env_count; idx++)
2598         {
2599             const char *env_entry = host_env.GetStringAtIndex (idx);
2600             if (env_entry)
2601             {
2602                 const char *equal_pos = ::strchr(env_entry, '=');
2603                 if (equal_pos)
2604                 {
2605                     std::string key (env_entry, equal_pos - env_entry);
2606                     std::string value (equal_pos + 1);
2607                     if (m_env_vars.find (key) == m_env_vars.end())
2608                         m_env_vars[key] = value;
2609                 }
2610             }
2611         }
2612     }
2613 }
2614 
2615 
2616 size_t
2617 Target::TargetInstanceSettings::GetEnvironmentAsArgs (Args &env)
2618 {
2619     GetHostEnvironmentIfNeeded ();
2620 
2621     dictionary::const_iterator pos, end = m_env_vars.end();
2622     for (pos = m_env_vars.begin(); pos != end; ++pos)
2623     {
2624         std::string env_var_equal_value (pos->first);
2625         env_var_equal_value.append(1, '=');
2626         env_var_equal_value.append (pos->second);
2627         env.AppendArgument (env_var_equal_value.c_str());
2628     }
2629     return env.GetArgumentCount();
2630 }
2631 
2632 
2633 const ConstString
2634 TargetInstanceSettings::CreateInstanceName ()
2635 {
2636     StreamString sstr;
2637     static int instance_count = 1;
2638 
2639     sstr.Printf ("target_%d", instance_count);
2640     ++instance_count;
2641 
2642     const ConstString ret_val (sstr.GetData());
2643     return ret_val;
2644 }
2645 
2646 //--------------------------------------------------
2647 // Target::SettingsController Variable Tables
2648 //--------------------------------------------------
2649 OptionEnumValueElement
2650 TargetInstanceSettings::g_dynamic_value_types[] =
2651 {
2652 { eNoDynamicValues,      "no-dynamic-values", "Don't calculate the dynamic type of values"},
2653 { eDynamicCanRunTarget,  "run-target",        "Calculate the dynamic type of values even if you have to run the target."},
2654 { eDynamicDontRunTarget, "no-run-target",     "Calculate the dynamic type of values, but don't run the target."},
2655 { 0, NULL, NULL }
2656 };
2657 
2658 SettingEntry
2659 Target::SettingsController::global_settings_table[] =
2660 {
2661     // var-name           var-type           default      enum  init'd hidden help-text
2662     // =================  ================== ===========  ====  ====== ====== =========================================================================
2663     { TSC_DEFAULT_ARCH  , eSetVarTypeString , NULL      , NULL, false, false, "Default architecture to choose, when there's a choice." },
2664     { NULL              , eSetVarTypeNone   , NULL      , NULL, false, false, NULL }
2665 };
2666 
2667 SettingEntry
2668 Target::SettingsController::instance_settings_table[] =
2669 {
2670     // var-name             var-type            default         enum                    init'd hidden help-text
2671     // =================    ==================  =============== ======================= ====== ====== =========================================================================
2672     { TSC_EXPR_PREFIX       , eSetVarTypeString , NULL          , NULL,                  false, false, "Path to a file containing expressions to be prepended to all expressions." },
2673     { TSC_PREFER_DYNAMIC    , eSetVarTypeEnum   , NULL          , g_dynamic_value_types, false, false, "Should printed values be shown as their dynamic value." },
2674     { TSC_SKIP_PROLOGUE     , eSetVarTypeBoolean, "true"        , NULL,                  false, false, "Skip function prologues when setting breakpoints by name." },
2675     { TSC_SOURCE_MAP        , eSetVarTypeArray  , NULL          , NULL,                  false, false, "Source path remappings to use when locating source files from debug information." },
2676     { TSC_MAX_CHILDREN      , eSetVarTypeInt    , "256"         , NULL,                  true,  false, "Maximum number of children to expand in any level of depth." },
2677     { TSC_MAX_STRLENSUMMARY , eSetVarTypeInt    , "1024"        , NULL,                  true,  false, "Maximum number of characters to show when using %s in summary strings." },
2678     { TSC_PLATFORM_AVOID    , eSetVarTypeBoolean, "true"        , NULL,                  false, false, "Consult the platform module avoid list when setting non-module specific breakpoints." },
2679     { TSC_RUN_ARGS          , eSetVarTypeArray  , NULL          , NULL,                  false,  false,  "A list containing all the arguments to be passed to the executable when it is run." },
2680     { TSC_ENV_VARS          , eSetVarTypeDictionary, NULL       , NULL,                  false,  false,  "A list of all the environment variables to be passed to the executable's environment, and their values." },
2681     { TSC_INHERIT_ENV       , eSetVarTypeBoolean, "true"        , NULL,                  false,  false,  "Inherit the environment from the process that is running LLDB." },
2682     { TSC_STDIN_PATH        , eSetVarTypeString , NULL          , NULL,                  false,  false,  "The file/path to be used by the executable program for reading its standard input." },
2683     { TSC_STDOUT_PATH       , eSetVarTypeString , NULL          , NULL,                  false,  false,  "The file/path to be used by the executable program for writing its standard output." },
2684     { TSC_STDERR_PATH       , eSetVarTypeString , NULL          , NULL,                  false,  false,  "The file/path to be used by the executable program for writing its standard error." },
2685 //    { "plugin",         eSetVarTypeEnum,        NULL,           NULL,                  false,  false,  "The plugin to be used to run the process." },
2686     { TSC_DISABLE_ASLR      , eSetVarTypeBoolean, "true"        , NULL,                  false,  false,  "Disable Address Space Layout Randomization (ASLR)" },
2687     { TSC_DISABLE_STDIO     , eSetVarTypeBoolean, "false"       , NULL,                  false,  false,  "Disable stdin/stdout for process (e.g. for a GUI application)" },
2688     { NULL                  , eSetVarTypeNone   , NULL          , NULL,                  false, false, NULL }
2689 };
2690