1 //===-- Debugger.cpp --------------------------------------------*- C++ -*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "lldb/Core/Debugger.h"
10 
11 #include "lldb/Breakpoint/Breakpoint.h"
12 #include "lldb/Core/FormatEntity.h"
13 #include "lldb/Core/Mangled.h"
14 #include "lldb/Core/ModuleList.h"
15 #include "lldb/Core/PluginManager.h"
16 #include "lldb/Core/StreamAsynchronousIO.h"
17 #include "lldb/Core/StreamFile.h"
18 #include "lldb/DataFormatters/DataVisualization.h"
19 #include "lldb/Expression/REPL.h"
20 #include "lldb/Host/File.h"
21 #include "lldb/Host/FileSystem.h"
22 #include "lldb/Host/HostInfo.h"
23 #include "lldb/Host/Terminal.h"
24 #include "lldb/Host/ThreadLauncher.h"
25 #include "lldb/Interpreter/CommandInterpreter.h"
26 #include "lldb/Interpreter/OptionValue.h"
27 #include "lldb/Interpreter/OptionValueProperties.h"
28 #include "lldb/Interpreter/OptionValueSInt64.h"
29 #include "lldb/Interpreter/OptionValueString.h"
30 #include "lldb/Interpreter/Property.h"
31 #include "lldb/Interpreter/ScriptInterpreter.h"
32 #include "lldb/Symbol/Function.h"
33 #include "lldb/Symbol/Symbol.h"
34 #include "lldb/Symbol/SymbolContext.h"
35 #include "lldb/Target/Language.h"
36 #include "lldb/Target/Process.h"
37 #include "lldb/Target/StructuredDataPlugin.h"
38 #include "lldb/Target/Target.h"
39 #include "lldb/Target/TargetList.h"
40 #include "lldb/Target/Thread.h"
41 #include "lldb/Target/ThreadList.h"
42 #include "lldb/Utility/AnsiTerminal.h"
43 #include "lldb/Utility/Event.h"
44 #include "lldb/Utility/Listener.h"
45 #include "lldb/Utility/Log.h"
46 #include "lldb/Utility/Reproducer.h"
47 #include "lldb/Utility/State.h"
48 #include "lldb/Utility/Stream.h"
49 #include "lldb/Utility/StreamCallback.h"
50 #include "lldb/Utility/StreamString.h"
51 
52 #if defined(_WIN32)
53 #include "lldb/Host/windows/PosixApi.h"
54 #include "lldb/Host/windows/windows.h"
55 #endif
56 
57 #include "llvm/ADT/None.h"
58 #include "llvm/ADT/STLExtras.h"
59 #include "llvm/ADT/StringRef.h"
60 #include "llvm/ADT/iterator.h"
61 #include "llvm/Support/DynamicLibrary.h"
62 #include "llvm/Support/FileSystem.h"
63 #include "llvm/Support/Process.h"
64 #include "llvm/Support/Threading.h"
65 #include "llvm/Support/raw_ostream.h"
66 
67 #include <list>
68 #include <memory>
69 #include <mutex>
70 #include <set>
71 #include <stdio.h>
72 #include <stdlib.h>
73 #include <string.h>
74 #include <string>
75 #include <system_error>
76 
77 namespace lldb_private {
78 class Address;
79 }
80 
81 using namespace lldb;
82 using namespace lldb_private;
83 
84 static lldb::user_id_t g_unique_id = 1;
85 static size_t g_debugger_event_thread_stack_bytes = 8 * 1024 * 1024;
86 
87 #pragma mark Static Functions
88 
89 typedef std::vector<DebuggerSP> DebuggerList;
90 static std::recursive_mutex *g_debugger_list_mutex_ptr =
91     nullptr; // NOTE: intentional leak to avoid issues with C++ destructor chain
92 static DebuggerList *g_debugger_list_ptr =
93     nullptr; // NOTE: intentional leak to avoid issues with C++ destructor chain
94 
95 static constexpr OptionEnumValueElement g_show_disassembly_enum_values[] = {
96     {
97         Debugger::eStopDisassemblyTypeNever,
98         "never",
99         "Never show disassembly when displaying a stop context.",
100     },
101     {
102         Debugger::eStopDisassemblyTypeNoDebugInfo,
103         "no-debuginfo",
104         "Show disassembly when there is no debug information.",
105     },
106     {
107         Debugger::eStopDisassemblyTypeNoSource,
108         "no-source",
109         "Show disassembly when there is no source information, or the source "
110         "file "
111         "is missing when displaying a stop context.",
112     },
113     {
114         Debugger::eStopDisassemblyTypeAlways,
115         "always",
116         "Always show disassembly when displaying a stop context.",
117     },
118 };
119 
120 static constexpr OptionEnumValueElement g_language_enumerators[] = {
121     {
122         eScriptLanguageNone,
123         "none",
124         "Disable scripting languages.",
125     },
126     {
127         eScriptLanguagePython,
128         "python",
129         "Select python as the default scripting language.",
130     },
131     {
132         eScriptLanguageDefault,
133         "default",
134         "Select the lldb default as the default scripting language.",
135     },
136 };
137 
138 #define MODULE_WITH_FUNC                                                       \
139   "{ "                                                                         \
140   "${module.file.basename}{`${function.name-with-args}"                        \
141   "{${frame.no-debug}${function.pc-offset}}}}"
142 
143 #define MODULE_WITH_FUNC_NO_ARGS                                               \
144   "{ "                                                                         \
145   "${module.file.basename}{`${function.name-without-args}"                     \
146   "{${frame.no-debug}${function.pc-offset}}}}"
147 
148 #define FILE_AND_LINE                                                          \
149   "{ at ${ansi.fg.cyan}${line.file.basename}${ansi.normal}"                    \
150   ":${ansi.fg.yellow}${line.number}${ansi.normal}"                             \
151   "{:${ansi.fg.yellow}${line.column}${ansi.normal}}}"
152 
153 #define IS_OPTIMIZED "{${function.is-optimized} [opt]}"
154 
155 #define IS_ARTIFICIAL "{${frame.is-artificial} [artificial]}"
156 
157 #define DEFAULT_THREAD_FORMAT                                                  \
158   "thread #${thread.index}: tid = ${thread.id%tid}"                            \
159   "{, ${frame.pc}}" MODULE_WITH_FUNC FILE_AND_LINE                             \
160   "{, name = ${ansi.fg.green}'${thread.name}'${ansi.normal}}"                  \
161   "{, queue = ${ansi.fg.green}'${thread.queue}'${ansi.normal}}"                \
162   "{, activity = "                                                             \
163   "${ansi.fg.green}'${thread.info.activity.name}'${ansi.normal}}"              \
164   "{, ${thread.info.trace_messages} messages}"                                 \
165   "{, stop reason = ${ansi.fg.red}${thread.stop-reason}${ansi.normal}}"        \
166   "{\\nReturn value: ${thread.return-value}}"                                  \
167   "{\\nCompleted expression: ${thread.completed-expression}}"                  \
168   "\\n"
169 
170 #define DEFAULT_THREAD_STOP_FORMAT                                             \
171   "thread #${thread.index}{, name = '${thread.name}'}"                         \
172   "{, queue = ${ansi.fg.green}'${thread.queue}'${ansi.normal}}"                \
173   "{, activity = "                                                             \
174   "${ansi.fg.green}'${thread.info.activity.name}'${ansi.normal}}"              \
175   "{, ${thread.info.trace_messages} messages}"                                 \
176   "{, stop reason = ${ansi.fg.red}${thread.stop-reason}${ansi.normal}}"        \
177   "{\\nReturn value: ${thread.return-value}}"                                  \
178   "{\\nCompleted expression: ${thread.completed-expression}}"                  \
179   "\\n"
180 
181 #define DEFAULT_FRAME_FORMAT                                                   \
182   "frame #${frame.index}: "                                                    \
183   "${ansi.fg.yellow}${frame.pc}${ansi.normal}" MODULE_WITH_FUNC FILE_AND_LINE  \
184       IS_OPTIMIZED IS_ARTIFICIAL "\\n"
185 
186 #define DEFAULT_FRAME_FORMAT_NO_ARGS                                           \
187   "frame #${frame.index}: "                                                    \
188   "${ansi.fg.yellow}${frame.pc}${ansi.normal}" MODULE_WITH_FUNC_NO_ARGS        \
189       FILE_AND_LINE IS_OPTIMIZED IS_ARTIFICIAL "\\n"
190 
191 // Three parts to this disassembly format specification:
192 //   1. If this is a new function/symbol (no previous symbol/function), print
193 //      dylib`funcname:\n
194 //   2. If this is a symbol context change (different from previous
195 //   symbol/function), print
196 //      dylib`funcname:\n
197 //   3. print
198 //      address <+offset>:
199 #define DEFAULT_DISASSEMBLY_FORMAT                                             \
200   "{${function.initial-function}{${module.file.basename}`}{${function.name-"   \
201   "without-args}}:\\n}{${function.changed}\\n{${module.file.basename}`}{${"    \
202   "function.name-without-args}}:\\n}{${current-pc-arrow} "                     \
203   "}${addr-file-or-load}{ "                                                    \
204   "<${function.concrete-only-addr-offset-no-padding}>}: "
205 
206 // gdb's disassembly format can be emulated with ${current-pc-arrow}${addr-
207 // file-or-load}{ <${function.name-without-args}${function.concrete-only-addr-
208 // offset-no-padding}>}:
209 
210 // lldb's original format for disassembly would look like this format string -
211 // {${function.initial-function}{${module.file.basename}`}{${function.name-
212 // without-
213 // args}}:\n}{${function.changed}\n{${module.file.basename}`}{${function.name-
214 // without-args}}:\n}{${current-pc-arrow} }{${addr-file-or-load}}:
215 
216 static constexpr OptionEnumValueElement s_stop_show_column_values[] = {
217     {
218         eStopShowColumnAnsiOrCaret,
219         "ansi-or-caret",
220         "Highlight the stop column with ANSI terminal codes when color/ANSI "
221         "mode is enabled; otherwise, fall back to using a text-only caret (^) "
222         "as if \"caret-only\" mode was selected.",
223     },
224     {
225         eStopShowColumnAnsi,
226         "ansi",
227         "Highlight the stop column with ANSI terminal codes when running LLDB "
228         "with color/ANSI enabled.",
229     },
230     {
231         eStopShowColumnCaret,
232         "caret",
233         "Highlight the stop column with a caret character (^) underneath the "
234         "stop column. This method introduces a new line in source listings "
235         "that display thread stop locations.",
236     },
237     {
238         eStopShowColumnNone,
239         "none",
240         "Do not highlight the stop column.",
241     },
242 };
243 
244 #define LLDB_PROPERTIES_debugger
245 #include "CoreProperties.inc"
246 
247 enum {
248 #define LLDB_PROPERTIES_debugger
249 #include "CorePropertiesEnum.inc"
250 };
251 
252 LoadPluginCallbackType Debugger::g_load_plugin_callback = nullptr;
253 
254 Status Debugger::SetPropertyValue(const ExecutionContext *exe_ctx,
255                                   VarSetOperationType op,
256                                   llvm::StringRef property_path,
257                                   llvm::StringRef value) {
258   bool is_load_script =
259       (property_path == "target.load-script-from-symbol-file");
260   // These properties might change how we visualize data.
261   bool invalidate_data_vis = (property_path == "escape-non-printables");
262   invalidate_data_vis |=
263       (property_path == "target.max-zero-padding-in-float-format");
264   if (invalidate_data_vis) {
265     DataVisualization::ForceUpdate();
266   }
267 
268   TargetSP target_sp;
269   LoadScriptFromSymFile load_script_old_value;
270   if (is_load_script && exe_ctx->GetTargetSP()) {
271     target_sp = exe_ctx->GetTargetSP();
272     load_script_old_value =
273         target_sp->TargetProperties::GetLoadScriptFromSymbolFile();
274   }
275   Status error(Properties::SetPropertyValue(exe_ctx, op, property_path, value));
276   if (error.Success()) {
277     // FIXME it would be nice to have "on-change" callbacks for properties
278     if (property_path == g_debugger_properties[ePropertyPrompt].name) {
279       llvm::StringRef new_prompt = GetPrompt();
280       std::string str = lldb_private::ansi::FormatAnsiTerminalCodes(
281           new_prompt, GetUseColor());
282       if (str.length())
283         new_prompt = str;
284       GetCommandInterpreter().UpdatePrompt(new_prompt);
285       auto bytes = std::make_unique<EventDataBytes>(new_prompt);
286       auto prompt_change_event_sp = std::make_shared<Event>(
287           CommandInterpreter::eBroadcastBitResetPrompt, bytes.release());
288       GetCommandInterpreter().BroadcastEvent(prompt_change_event_sp);
289     } else if (property_path == g_debugger_properties[ePropertyUseColor].name) {
290       // use-color changed. Ping the prompt so it can reset the ansi terminal
291       // codes.
292       SetPrompt(GetPrompt());
293     } else if (is_load_script && target_sp &&
294                load_script_old_value == eLoadScriptFromSymFileWarn) {
295       if (target_sp->TargetProperties::GetLoadScriptFromSymbolFile() ==
296           eLoadScriptFromSymFileTrue) {
297         std::list<Status> errors;
298         StreamString feedback_stream;
299         if (!target_sp->LoadScriptingResources(errors, &feedback_stream)) {
300           StreamFileSP stream_sp(GetErrorFile());
301           if (stream_sp) {
302             for (auto error : errors) {
303               stream_sp->Printf("%s\n", error.AsCString());
304             }
305             if (feedback_stream.GetSize())
306               stream_sp->PutCString(feedback_stream.GetString());
307           }
308         }
309       }
310     }
311   }
312   return error;
313 }
314 
315 bool Debugger::GetAutoConfirm() const {
316   const uint32_t idx = ePropertyAutoConfirm;
317   return m_collection_sp->GetPropertyAtIndexAsBoolean(
318       nullptr, idx, g_debugger_properties[idx].default_uint_value != 0);
319 }
320 
321 const FormatEntity::Entry *Debugger::GetDisassemblyFormat() const {
322   const uint32_t idx = ePropertyDisassemblyFormat;
323   return m_collection_sp->GetPropertyAtIndexAsFormatEntity(nullptr, idx);
324 }
325 
326 const FormatEntity::Entry *Debugger::GetFrameFormat() const {
327   const uint32_t idx = ePropertyFrameFormat;
328   return m_collection_sp->GetPropertyAtIndexAsFormatEntity(nullptr, idx);
329 }
330 
331 const FormatEntity::Entry *Debugger::GetFrameFormatUnique() const {
332   const uint32_t idx = ePropertyFrameFormatUnique;
333   return m_collection_sp->GetPropertyAtIndexAsFormatEntity(nullptr, idx);
334 }
335 
336 bool Debugger::GetNotifyVoid() const {
337   const uint32_t idx = ePropertyNotiftVoid;
338   return m_collection_sp->GetPropertyAtIndexAsBoolean(
339       nullptr, idx, g_debugger_properties[idx].default_uint_value != 0);
340 }
341 
342 llvm::StringRef Debugger::GetPrompt() const {
343   const uint32_t idx = ePropertyPrompt;
344   return m_collection_sp->GetPropertyAtIndexAsString(
345       nullptr, idx, g_debugger_properties[idx].default_cstr_value);
346 }
347 
348 void Debugger::SetPrompt(llvm::StringRef p) {
349   const uint32_t idx = ePropertyPrompt;
350   m_collection_sp->SetPropertyAtIndexAsString(nullptr, idx, p);
351   llvm::StringRef new_prompt = GetPrompt();
352   std::string str =
353       lldb_private::ansi::FormatAnsiTerminalCodes(new_prompt, GetUseColor());
354   if (str.length())
355     new_prompt = str;
356   GetCommandInterpreter().UpdatePrompt(new_prompt);
357 }
358 
359 llvm::StringRef Debugger::GetReproducerPath() const {
360   auto &r = repro::Reproducer::Instance();
361   return r.GetReproducerPath().GetCString();
362 }
363 
364 const FormatEntity::Entry *Debugger::GetThreadFormat() const {
365   const uint32_t idx = ePropertyThreadFormat;
366   return m_collection_sp->GetPropertyAtIndexAsFormatEntity(nullptr, idx);
367 }
368 
369 const FormatEntity::Entry *Debugger::GetThreadStopFormat() const {
370   const uint32_t idx = ePropertyThreadStopFormat;
371   return m_collection_sp->GetPropertyAtIndexAsFormatEntity(nullptr, idx);
372 }
373 
374 lldb::ScriptLanguage Debugger::GetScriptLanguage() const {
375   const uint32_t idx = ePropertyScriptLanguage;
376   return (lldb::ScriptLanguage)m_collection_sp->GetPropertyAtIndexAsEnumeration(
377       nullptr, idx, g_debugger_properties[idx].default_uint_value);
378 }
379 
380 bool Debugger::SetScriptLanguage(lldb::ScriptLanguage script_lang) {
381   const uint32_t idx = ePropertyScriptLanguage;
382   return m_collection_sp->SetPropertyAtIndexAsEnumeration(nullptr, idx,
383                                                           script_lang);
384 }
385 
386 uint32_t Debugger::GetTerminalWidth() const {
387   const uint32_t idx = ePropertyTerminalWidth;
388   return m_collection_sp->GetPropertyAtIndexAsSInt64(
389       nullptr, idx, g_debugger_properties[idx].default_uint_value);
390 }
391 
392 bool Debugger::SetTerminalWidth(uint32_t term_width) {
393   const uint32_t idx = ePropertyTerminalWidth;
394   return m_collection_sp->SetPropertyAtIndexAsSInt64(nullptr, idx, term_width);
395 }
396 
397 bool Debugger::GetUseExternalEditor() const {
398   const uint32_t idx = ePropertyUseExternalEditor;
399   return m_collection_sp->GetPropertyAtIndexAsBoolean(
400       nullptr, idx, g_debugger_properties[idx].default_uint_value != 0);
401 }
402 
403 bool Debugger::SetUseExternalEditor(bool b) {
404   const uint32_t idx = ePropertyUseExternalEditor;
405   return m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, b);
406 }
407 
408 bool Debugger::GetUseColor() const {
409   const uint32_t idx = ePropertyUseColor;
410   return m_collection_sp->GetPropertyAtIndexAsBoolean(
411       nullptr, idx, g_debugger_properties[idx].default_uint_value != 0);
412 }
413 
414 bool Debugger::SetUseColor(bool b) {
415   const uint32_t idx = ePropertyUseColor;
416   bool ret = m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, b);
417   SetPrompt(GetPrompt());
418   return ret;
419 }
420 
421 bool Debugger::GetHighlightSource() const {
422   const uint32_t idx = ePropertyHighlightSource;
423   return m_collection_sp->GetPropertyAtIndexAsBoolean(
424       nullptr, idx, g_debugger_properties[idx].default_uint_value);
425 }
426 
427 StopShowColumn Debugger::GetStopShowColumn() const {
428   const uint32_t idx = ePropertyStopShowColumn;
429   return (lldb::StopShowColumn)m_collection_sp->GetPropertyAtIndexAsEnumeration(
430       nullptr, idx, g_debugger_properties[idx].default_uint_value);
431 }
432 
433 llvm::StringRef Debugger::GetStopShowColumnAnsiPrefix() const {
434   const uint32_t idx = ePropertyStopShowColumnAnsiPrefix;
435   return m_collection_sp->GetPropertyAtIndexAsString(nullptr, idx, "");
436 }
437 
438 llvm::StringRef Debugger::GetStopShowColumnAnsiSuffix() const {
439   const uint32_t idx = ePropertyStopShowColumnAnsiSuffix;
440   return m_collection_sp->GetPropertyAtIndexAsString(nullptr, idx, "");
441 }
442 
443 uint32_t Debugger::GetStopSourceLineCount(bool before) const {
444   const uint32_t idx =
445       before ? ePropertyStopLineCountBefore : ePropertyStopLineCountAfter;
446   return m_collection_sp->GetPropertyAtIndexAsSInt64(
447       nullptr, idx, g_debugger_properties[idx].default_uint_value);
448 }
449 
450 Debugger::StopDisassemblyType Debugger::GetStopDisassemblyDisplay() const {
451   const uint32_t idx = ePropertyStopDisassemblyDisplay;
452   return (Debugger::StopDisassemblyType)
453       m_collection_sp->GetPropertyAtIndexAsEnumeration(
454           nullptr, idx, g_debugger_properties[idx].default_uint_value);
455 }
456 
457 uint32_t Debugger::GetDisassemblyLineCount() const {
458   const uint32_t idx = ePropertyStopDisassemblyCount;
459   return m_collection_sp->GetPropertyAtIndexAsSInt64(
460       nullptr, idx, g_debugger_properties[idx].default_uint_value);
461 }
462 
463 bool Debugger::GetAutoOneLineSummaries() const {
464   const uint32_t idx = ePropertyAutoOneLineSummaries;
465   return m_collection_sp->GetPropertyAtIndexAsBoolean(nullptr, idx, true);
466 }
467 
468 bool Debugger::GetEscapeNonPrintables() const {
469   const uint32_t idx = ePropertyEscapeNonPrintables;
470   return m_collection_sp->GetPropertyAtIndexAsBoolean(nullptr, idx, true);
471 }
472 
473 bool Debugger::GetAutoIndent() const {
474   const uint32_t idx = ePropertyAutoIndent;
475   return m_collection_sp->GetPropertyAtIndexAsBoolean(nullptr, idx, true);
476 }
477 
478 bool Debugger::SetAutoIndent(bool b) {
479   const uint32_t idx = ePropertyAutoIndent;
480   return m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, b);
481 }
482 
483 bool Debugger::GetPrintDecls() const {
484   const uint32_t idx = ePropertyPrintDecls;
485   return m_collection_sp->GetPropertyAtIndexAsBoolean(nullptr, idx, true);
486 }
487 
488 bool Debugger::SetPrintDecls(bool b) {
489   const uint32_t idx = ePropertyPrintDecls;
490   return m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, b);
491 }
492 
493 uint32_t Debugger::GetTabSize() const {
494   const uint32_t idx = ePropertyTabSize;
495   return m_collection_sp->GetPropertyAtIndexAsUInt64(
496       nullptr, idx, g_debugger_properties[idx].default_uint_value);
497 }
498 
499 bool Debugger::SetTabSize(uint32_t tab_size) {
500   const uint32_t idx = ePropertyTabSize;
501   return m_collection_sp->SetPropertyAtIndexAsUInt64(nullptr, idx, tab_size);
502 }
503 
504 #pragma mark Debugger
505 
506 // const DebuggerPropertiesSP &
507 // Debugger::GetSettings() const
508 //{
509 //    return m_properties_sp;
510 //}
511 //
512 
513 void Debugger::Initialize(LoadPluginCallbackType load_plugin_callback) {
514   assert(g_debugger_list_ptr == nullptr &&
515          "Debugger::Initialize called more than once!");
516   g_debugger_list_mutex_ptr = new std::recursive_mutex();
517   g_debugger_list_ptr = new DebuggerList();
518   g_load_plugin_callback = load_plugin_callback;
519 }
520 
521 void Debugger::Terminate() {
522   assert(g_debugger_list_ptr &&
523          "Debugger::Terminate called without a matching Debugger::Initialize!");
524 
525   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
526     // Clear our master list of debugger objects
527     {
528       std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
529       for (const auto &debugger : *g_debugger_list_ptr)
530         debugger->Clear();
531       g_debugger_list_ptr->clear();
532     }
533   }
534 }
535 
536 void Debugger::SettingsInitialize() { Target::SettingsInitialize(); }
537 
538 void Debugger::SettingsTerminate() { Target::SettingsTerminate(); }
539 
540 bool Debugger::LoadPlugin(const FileSpec &spec, Status &error) {
541   if (g_load_plugin_callback) {
542     llvm::sys::DynamicLibrary dynlib =
543         g_load_plugin_callback(shared_from_this(), spec, error);
544     if (dynlib.isValid()) {
545       m_loaded_plugins.push_back(dynlib);
546       return true;
547     }
548   } else {
549     // The g_load_plugin_callback is registered in SBDebugger::Initialize() and
550     // if the public API layer isn't available (code is linking against all of
551     // the internal LLDB static libraries), then we can't load plugins
552     error.SetErrorString("Public API layer is not available");
553   }
554   return false;
555 }
556 
557 static FileSystem::EnumerateDirectoryResult
558 LoadPluginCallback(void *baton, llvm::sys::fs::file_type ft,
559                    llvm::StringRef path) {
560   Status error;
561 
562   static ConstString g_dylibext(".dylib");
563   static ConstString g_solibext(".so");
564 
565   if (!baton)
566     return FileSystem::eEnumerateDirectoryResultQuit;
567 
568   Debugger *debugger = (Debugger *)baton;
569 
570   namespace fs = llvm::sys::fs;
571   // If we have a regular file, a symbolic link or unknown file type, try and
572   // process the file. We must handle unknown as sometimes the directory
573   // enumeration might be enumerating a file system that doesn't have correct
574   // file type information.
575   if (ft == fs::file_type::regular_file || ft == fs::file_type::symlink_file ||
576       ft == fs::file_type::type_unknown) {
577     FileSpec plugin_file_spec(path);
578     FileSystem::Instance().Resolve(plugin_file_spec);
579 
580     if (plugin_file_spec.GetFileNameExtension() != g_dylibext &&
581         plugin_file_spec.GetFileNameExtension() != g_solibext) {
582       return FileSystem::eEnumerateDirectoryResultNext;
583     }
584 
585     Status plugin_load_error;
586     debugger->LoadPlugin(plugin_file_spec, plugin_load_error);
587 
588     return FileSystem::eEnumerateDirectoryResultNext;
589   } else if (ft == fs::file_type::directory_file ||
590              ft == fs::file_type::symlink_file ||
591              ft == fs::file_type::type_unknown) {
592     // Try and recurse into anything that a directory or symbolic link. We must
593     // also do this for unknown as sometimes the directory enumeration might be
594     // enumerating a file system that doesn't have correct file type
595     // information.
596     return FileSystem::eEnumerateDirectoryResultEnter;
597   }
598 
599   return FileSystem::eEnumerateDirectoryResultNext;
600 }
601 
602 void Debugger::InstanceInitialize() {
603   const bool find_directories = true;
604   const bool find_files = true;
605   const bool find_other = true;
606   char dir_path[PATH_MAX];
607   if (FileSpec dir_spec = HostInfo::GetSystemPluginDir()) {
608     if (FileSystem::Instance().Exists(dir_spec) &&
609         dir_spec.GetPath(dir_path, sizeof(dir_path))) {
610       FileSystem::Instance().EnumerateDirectory(dir_path, find_directories,
611                                                 find_files, find_other,
612                                                 LoadPluginCallback, this);
613     }
614   }
615 
616   if (FileSpec dir_spec = HostInfo::GetUserPluginDir()) {
617     if (FileSystem::Instance().Exists(dir_spec) &&
618         dir_spec.GetPath(dir_path, sizeof(dir_path))) {
619       FileSystem::Instance().EnumerateDirectory(dir_path, find_directories,
620                                                 find_files, find_other,
621                                                 LoadPluginCallback, this);
622     }
623   }
624 
625   PluginManager::DebuggerInitialize(*this);
626 }
627 
628 DebuggerSP Debugger::CreateInstance(lldb::LogOutputCallback log_callback,
629                                     void *baton) {
630   DebuggerSP debugger_sp(new Debugger(log_callback, baton));
631   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
632     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
633     g_debugger_list_ptr->push_back(debugger_sp);
634   }
635   debugger_sp->InstanceInitialize();
636   return debugger_sp;
637 }
638 
639 void Debugger::Destroy(DebuggerSP &debugger_sp) {
640   if (!debugger_sp)
641     return;
642 
643   debugger_sp->Clear();
644 
645   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
646     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
647     DebuggerList::iterator pos, end = g_debugger_list_ptr->end();
648     for (pos = g_debugger_list_ptr->begin(); pos != end; ++pos) {
649       if ((*pos).get() == debugger_sp.get()) {
650         g_debugger_list_ptr->erase(pos);
651         return;
652       }
653     }
654   }
655 }
656 
657 DebuggerSP Debugger::FindDebuggerWithInstanceName(ConstString instance_name) {
658   DebuggerSP debugger_sp;
659   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
660     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
661     DebuggerList::iterator pos, end = g_debugger_list_ptr->end();
662     for (pos = g_debugger_list_ptr->begin(); pos != end; ++pos) {
663       if ((*pos)->m_instance_name == instance_name) {
664         debugger_sp = *pos;
665         break;
666       }
667     }
668   }
669   return debugger_sp;
670 }
671 
672 TargetSP Debugger::FindTargetWithProcessID(lldb::pid_t pid) {
673   TargetSP target_sp;
674   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
675     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
676     DebuggerList::iterator pos, end = g_debugger_list_ptr->end();
677     for (pos = g_debugger_list_ptr->begin(); pos != end; ++pos) {
678       target_sp = (*pos)->GetTargetList().FindTargetWithProcessID(pid);
679       if (target_sp)
680         break;
681     }
682   }
683   return target_sp;
684 }
685 
686 TargetSP Debugger::FindTargetWithProcess(Process *process) {
687   TargetSP target_sp;
688   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
689     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
690     DebuggerList::iterator pos, end = g_debugger_list_ptr->end();
691     for (pos = g_debugger_list_ptr->begin(); pos != end; ++pos) {
692       target_sp = (*pos)->GetTargetList().FindTargetWithProcess(process);
693       if (target_sp)
694         break;
695     }
696   }
697   return target_sp;
698 }
699 
700 Debugger::Debugger(lldb::LogOutputCallback log_callback, void *baton)
701     : UserID(g_unique_id++),
702       Properties(std::make_shared<OptionValueProperties>()),
703       m_input_file_sp(std::make_shared<StreamFile>(stdin, false)),
704       m_output_file_sp(std::make_shared<StreamFile>(stdout, false)),
705       m_error_file_sp(std::make_shared<StreamFile>(stderr, false)),
706       m_input_recorder(nullptr),
707       m_broadcaster_manager_sp(BroadcasterManager::MakeBroadcasterManager()),
708       m_terminal_state(), m_target_list(*this), m_platform_list(),
709       m_listener_sp(Listener::MakeListener("lldb.Debugger")),
710       m_source_manager_up(), m_source_file_cache(),
711       m_command_interpreter_up(
712           std::make_unique<CommandInterpreter>(*this, false)),
713       m_script_interpreter_sp(), m_input_reader_stack(), m_instance_name(),
714       m_loaded_plugins(), m_event_handler_thread(), m_io_handler_thread(),
715       m_sync_broadcaster(nullptr, "lldb.debugger.sync"),
716       m_forward_listener_sp(), m_clear_once() {
717   char instance_cstr[256];
718   snprintf(instance_cstr, sizeof(instance_cstr), "debugger_%d", (int)GetID());
719   m_instance_name.SetCString(instance_cstr);
720   if (log_callback)
721     m_log_callback_stream_sp =
722         std::make_shared<StreamCallback>(log_callback, baton);
723   m_command_interpreter_up->Initialize();
724   // Always add our default platform to the platform list
725   PlatformSP default_platform_sp(Platform::GetHostPlatform());
726   assert(default_platform_sp);
727   m_platform_list.Append(default_platform_sp, true);
728 
729   m_dummy_target_sp = m_target_list.GetDummyTarget(*this);
730   assert(m_dummy_target_sp.get() && "Couldn't construct dummy target?");
731 
732   m_collection_sp->Initialize(g_debugger_properties);
733   m_collection_sp->AppendProperty(
734       ConstString("target"),
735       ConstString("Settings specify to debugging targets."), true,
736       Target::GetGlobalProperties()->GetValueProperties());
737   m_collection_sp->AppendProperty(
738       ConstString("platform"), ConstString("Platform settings."), true,
739       Platform::GetGlobalPlatformProperties()->GetValueProperties());
740   m_collection_sp->AppendProperty(
741       ConstString("symbols"), ConstString("Symbol lookup and cache settings."),
742       true, ModuleList::GetGlobalModuleListProperties().GetValueProperties());
743   if (m_command_interpreter_up) {
744     m_collection_sp->AppendProperty(
745         ConstString("interpreter"),
746         ConstString("Settings specify to the debugger's command interpreter."),
747         true, m_command_interpreter_up->GetValueProperties());
748   }
749   OptionValueSInt64 *term_width =
750       m_collection_sp->GetPropertyAtIndexAsOptionValueSInt64(
751           nullptr, ePropertyTerminalWidth);
752   term_width->SetMinimumValue(10);
753   term_width->SetMaximumValue(1024);
754 
755   // Turn off use-color if this is a dumb terminal.
756   const char *term = getenv("TERM");
757   if (term && !strcmp(term, "dumb"))
758     SetUseColor(false);
759   // Turn off use-color if we don't write to a terminal with color support.
760   if (!m_output_file_sp->GetFile().GetIsTerminalWithColors())
761     SetUseColor(false);
762 
763 #if defined(_WIN32) && defined(ENABLE_VIRTUAL_TERMINAL_PROCESSING)
764   // Enabling use of ANSI color codes because LLDB is using them to highlight
765   // text.
766   llvm::sys::Process::UseANSIEscapeCodes(true);
767 #endif
768 }
769 
770 Debugger::~Debugger() { Clear(); }
771 
772 void Debugger::Clear() {
773   // Make sure we call this function only once. With the C++ global destructor
774   // chain having a list of debuggers and with code that can be running on
775   // other threads, we need to ensure this doesn't happen multiple times.
776   //
777   // The following functions call Debugger::Clear():
778   //     Debugger::~Debugger();
779   //     static void Debugger::Destroy(lldb::DebuggerSP &debugger_sp);
780   //     static void Debugger::Terminate();
781   llvm::call_once(m_clear_once, [this]() {
782     ClearIOHandlers();
783     StopIOHandlerThread();
784     StopEventHandlerThread();
785     m_listener_sp->Clear();
786     int num_targets = m_target_list.GetNumTargets();
787     for (int i = 0; i < num_targets; i++) {
788       TargetSP target_sp(m_target_list.GetTargetAtIndex(i));
789       if (target_sp) {
790         ProcessSP process_sp(target_sp->GetProcessSP());
791         if (process_sp)
792           process_sp->Finalize();
793         target_sp->Destroy();
794       }
795     }
796     m_broadcaster_manager_sp->Clear();
797 
798     // Close the input file _before_ we close the input read communications
799     // class as it does NOT own the input file, our m_input_file does.
800     m_terminal_state.Clear();
801     if (m_input_file_sp)
802       m_input_file_sp->GetFile().Close();
803 
804     m_command_interpreter_up->Clear();
805   });
806 }
807 
808 bool Debugger::GetCloseInputOnEOF() const {
809   //    return m_input_comm.GetCloseOnEOF();
810   return false;
811 }
812 
813 void Debugger::SetCloseInputOnEOF(bool b) {
814   //    m_input_comm.SetCloseOnEOF(b);
815 }
816 
817 bool Debugger::GetAsyncExecution() {
818   return !m_command_interpreter_up->GetSynchronous();
819 }
820 
821 void Debugger::SetAsyncExecution(bool async_execution) {
822   m_command_interpreter_up->SetSynchronous(!async_execution);
823 }
824 
825 repro::DataRecorder *Debugger::GetInputRecorder() { return m_input_recorder; }
826 
827 void Debugger::SetInputFileHandle(FILE *fh, bool tranfer_ownership,
828                                   repro::DataRecorder *recorder) {
829   m_input_recorder = recorder;
830   if (m_input_file_sp)
831     m_input_file_sp->GetFile().SetStream(fh, tranfer_ownership);
832   else
833     m_input_file_sp = std::make_shared<StreamFile>(fh, tranfer_ownership);
834 
835   File &in_file = m_input_file_sp->GetFile();
836   if (!in_file.IsValid())
837     in_file.SetStream(stdin, true);
838 
839   // Save away the terminal state if that is relevant, so that we can restore
840   // it in RestoreInputState.
841   SaveInputTerminalState();
842 }
843 
844 void Debugger::SetOutputFileHandle(FILE *fh, bool tranfer_ownership) {
845   if (m_output_file_sp)
846     m_output_file_sp->GetFile().SetStream(fh, tranfer_ownership);
847   else
848     m_output_file_sp = std::make_shared<StreamFile>(fh, tranfer_ownership);
849 
850   File &out_file = m_output_file_sp->GetFile();
851   if (!out_file.IsValid())
852     out_file.SetStream(stdout, false);
853 
854 }
855 
856 void Debugger::SetErrorFileHandle(FILE *fh, bool tranfer_ownership) {
857   if (m_error_file_sp)
858     m_error_file_sp->GetFile().SetStream(fh, tranfer_ownership);
859   else
860     m_error_file_sp = std::make_shared<StreamFile>(fh, tranfer_ownership);
861 
862   File &err_file = m_error_file_sp->GetFile();
863   if (!err_file.IsValid())
864     err_file.SetStream(stderr, false);
865 }
866 
867 void Debugger::SaveInputTerminalState() {
868   if (m_input_file_sp) {
869     File &in_file = m_input_file_sp->GetFile();
870     if (in_file.GetDescriptor() != File::kInvalidDescriptor)
871       m_terminal_state.Save(in_file.GetDescriptor(), true);
872   }
873 }
874 
875 void Debugger::RestoreInputTerminalState() { m_terminal_state.Restore(); }
876 
877 ExecutionContext Debugger::GetSelectedExecutionContext() {
878   ExecutionContext exe_ctx;
879   TargetSP target_sp(GetSelectedTarget());
880   exe_ctx.SetTargetSP(target_sp);
881 
882   if (target_sp) {
883     ProcessSP process_sp(target_sp->GetProcessSP());
884     exe_ctx.SetProcessSP(process_sp);
885     if (process_sp && !process_sp->IsRunning()) {
886       ThreadSP thread_sp(process_sp->GetThreadList().GetSelectedThread());
887       if (thread_sp) {
888         exe_ctx.SetThreadSP(thread_sp);
889         exe_ctx.SetFrameSP(thread_sp->GetSelectedFrame());
890         if (exe_ctx.GetFramePtr() == nullptr)
891           exe_ctx.SetFrameSP(thread_sp->GetStackFrameAtIndex(0));
892       }
893     }
894   }
895   return exe_ctx;
896 }
897 
898 void Debugger::DispatchInputInterrupt() {
899   std::lock_guard<std::recursive_mutex> guard(m_input_reader_stack.GetMutex());
900   IOHandlerSP reader_sp(m_input_reader_stack.Top());
901   if (reader_sp)
902     reader_sp->Interrupt();
903 }
904 
905 void Debugger::DispatchInputEndOfFile() {
906   std::lock_guard<std::recursive_mutex> guard(m_input_reader_stack.GetMutex());
907   IOHandlerSP reader_sp(m_input_reader_stack.Top());
908   if (reader_sp)
909     reader_sp->GotEOF();
910 }
911 
912 void Debugger::ClearIOHandlers() {
913   // The bottom input reader should be the main debugger input reader.  We do
914   // not want to close that one here.
915   std::lock_guard<std::recursive_mutex> guard(m_input_reader_stack.GetMutex());
916   while (m_input_reader_stack.GetSize() > 1) {
917     IOHandlerSP reader_sp(m_input_reader_stack.Top());
918     if (reader_sp)
919       PopIOHandler(reader_sp);
920   }
921 }
922 
923 void Debugger::ExecuteIOHandlers() {
924   while (true) {
925     IOHandlerSP reader_sp(m_input_reader_stack.Top());
926     if (!reader_sp)
927       break;
928 
929     reader_sp->Run();
930 
931     // Remove all input readers that are done from the top of the stack
932     while (true) {
933       IOHandlerSP top_reader_sp = m_input_reader_stack.Top();
934       if (top_reader_sp && top_reader_sp->GetIsDone())
935         PopIOHandler(top_reader_sp);
936       else
937         break;
938     }
939   }
940   ClearIOHandlers();
941 }
942 
943 bool Debugger::IsTopIOHandler(const lldb::IOHandlerSP &reader_sp) {
944   return m_input_reader_stack.IsTop(reader_sp);
945 }
946 
947 bool Debugger::CheckTopIOHandlerTypes(IOHandler::Type top_type,
948                                       IOHandler::Type second_top_type) {
949   return m_input_reader_stack.CheckTopIOHandlerTypes(top_type, second_top_type);
950 }
951 
952 void Debugger::PrintAsync(const char *s, size_t len, bool is_stdout) {
953   lldb::StreamFileSP stream = is_stdout ? GetOutputFile() : GetErrorFile();
954   m_input_reader_stack.PrintAsync(stream.get(), s, len);
955 }
956 
957 ConstString Debugger::GetTopIOHandlerControlSequence(char ch) {
958   return m_input_reader_stack.GetTopIOHandlerControlSequence(ch);
959 }
960 
961 const char *Debugger::GetIOHandlerCommandPrefix() {
962   return m_input_reader_stack.GetTopIOHandlerCommandPrefix();
963 }
964 
965 const char *Debugger::GetIOHandlerHelpPrologue() {
966   return m_input_reader_stack.GetTopIOHandlerHelpPrologue();
967 }
968 
969 void Debugger::RunIOHandler(const IOHandlerSP &reader_sp) {
970   PushIOHandler(reader_sp);
971 
972   IOHandlerSP top_reader_sp = reader_sp;
973   while (top_reader_sp) {
974     top_reader_sp->Run();
975 
976     if (top_reader_sp.get() == reader_sp.get()) {
977       if (PopIOHandler(reader_sp))
978         break;
979     }
980 
981     while (true) {
982       top_reader_sp = m_input_reader_stack.Top();
983       if (top_reader_sp && top_reader_sp->GetIsDone())
984         PopIOHandler(top_reader_sp);
985       else
986         break;
987     }
988   }
989 }
990 
991 void Debugger::AdoptTopIOHandlerFilesIfInvalid(StreamFileSP &in,
992                                                StreamFileSP &out,
993                                                StreamFileSP &err) {
994   // Before an IOHandler runs, it must have in/out/err streams. This function
995   // is called when one ore more of the streams are nullptr. We use the top
996   // input reader's in/out/err streams, or fall back to the debugger file
997   // handles, or we fall back onto stdin/stdout/stderr as a last resort.
998 
999   std::lock_guard<std::recursive_mutex> guard(m_input_reader_stack.GetMutex());
1000   IOHandlerSP top_reader_sp(m_input_reader_stack.Top());
1001   // If no STDIN has been set, then set it appropriately
1002   if (!in) {
1003     if (top_reader_sp)
1004       in = top_reader_sp->GetInputStreamFile();
1005     else
1006       in = GetInputFile();
1007 
1008     // If there is nothing, use stdin
1009     if (!in)
1010       in = std::make_shared<StreamFile>(stdin, false);
1011   }
1012   // If no STDOUT has been set, then set it appropriately
1013   if (!out) {
1014     if (top_reader_sp)
1015       out = top_reader_sp->GetOutputStreamFile();
1016     else
1017       out = GetOutputFile();
1018 
1019     // If there is nothing, use stdout
1020     if (!out)
1021       out = std::make_shared<StreamFile>(stdout, false);
1022   }
1023   // If no STDERR has been set, then set it appropriately
1024   if (!err) {
1025     if (top_reader_sp)
1026       err = top_reader_sp->GetErrorStreamFile();
1027     else
1028       err = GetErrorFile();
1029 
1030     // If there is nothing, use stderr
1031     if (!err)
1032       err = std::make_shared<StreamFile>(stdout, false);
1033   }
1034 }
1035 
1036 void Debugger::PushIOHandler(const IOHandlerSP &reader_sp,
1037                              bool cancel_top_handler) {
1038   if (!reader_sp)
1039     return;
1040 
1041   std::lock_guard<std::recursive_mutex> guard(m_input_reader_stack.GetMutex());
1042 
1043   // Get the current top input reader...
1044   IOHandlerSP top_reader_sp(m_input_reader_stack.Top());
1045 
1046   // Don't push the same IO handler twice...
1047   if (reader_sp == top_reader_sp)
1048     return;
1049 
1050   // Push our new input reader
1051   m_input_reader_stack.Push(reader_sp);
1052   reader_sp->Activate();
1053 
1054   // Interrupt the top input reader to it will exit its Run() function and let
1055   // this new input reader take over
1056   if (top_reader_sp) {
1057     top_reader_sp->Deactivate();
1058     if (cancel_top_handler)
1059       top_reader_sp->Cancel();
1060   }
1061 }
1062 
1063 bool Debugger::PopIOHandler(const IOHandlerSP &pop_reader_sp) {
1064   if (!pop_reader_sp)
1065     return false;
1066 
1067   std::lock_guard<std::recursive_mutex> guard(m_input_reader_stack.GetMutex());
1068 
1069   // The reader on the stop of the stack is done, so let the next read on the
1070   // stack refresh its prompt and if there is one...
1071   if (m_input_reader_stack.IsEmpty())
1072     return false;
1073 
1074   IOHandlerSP reader_sp(m_input_reader_stack.Top());
1075 
1076   if (pop_reader_sp != reader_sp)
1077     return false;
1078 
1079   reader_sp->Deactivate();
1080   reader_sp->Cancel();
1081   m_input_reader_stack.Pop();
1082 
1083   reader_sp = m_input_reader_stack.Top();
1084   if (reader_sp)
1085     reader_sp->Activate();
1086 
1087   return true;
1088 }
1089 
1090 StreamSP Debugger::GetAsyncOutputStream() {
1091   return std::make_shared<StreamAsynchronousIO>(*this, true);
1092 }
1093 
1094 StreamSP Debugger::GetAsyncErrorStream() {
1095   return std::make_shared<StreamAsynchronousIO>(*this, false);
1096 }
1097 
1098 size_t Debugger::GetNumDebuggers() {
1099   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
1100     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
1101     return g_debugger_list_ptr->size();
1102   }
1103   return 0;
1104 }
1105 
1106 lldb::DebuggerSP Debugger::GetDebuggerAtIndex(size_t index) {
1107   DebuggerSP debugger_sp;
1108 
1109   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
1110     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
1111     if (index < g_debugger_list_ptr->size())
1112       debugger_sp = g_debugger_list_ptr->at(index);
1113   }
1114 
1115   return debugger_sp;
1116 }
1117 
1118 DebuggerSP Debugger::FindDebuggerWithID(lldb::user_id_t id) {
1119   DebuggerSP debugger_sp;
1120 
1121   if (g_debugger_list_ptr && g_debugger_list_mutex_ptr) {
1122     std::lock_guard<std::recursive_mutex> guard(*g_debugger_list_mutex_ptr);
1123     DebuggerList::iterator pos, end = g_debugger_list_ptr->end();
1124     for (pos = g_debugger_list_ptr->begin(); pos != end; ++pos) {
1125       if ((*pos)->GetID() == id) {
1126         debugger_sp = *pos;
1127         break;
1128       }
1129     }
1130   }
1131   return debugger_sp;
1132 }
1133 
1134 bool Debugger::FormatDisassemblerAddress(const FormatEntity::Entry *format,
1135                                          const SymbolContext *sc,
1136                                          const SymbolContext *prev_sc,
1137                                          const ExecutionContext *exe_ctx,
1138                                          const Address *addr, Stream &s) {
1139   FormatEntity::Entry format_entry;
1140 
1141   if (format == nullptr) {
1142     if (exe_ctx != nullptr && exe_ctx->HasTargetScope())
1143       format = exe_ctx->GetTargetRef().GetDebugger().GetDisassemblyFormat();
1144     if (format == nullptr) {
1145       FormatEntity::Parse("${addr}: ", format_entry);
1146       format = &format_entry;
1147     }
1148   }
1149   bool function_changed = false;
1150   bool initial_function = false;
1151   if (prev_sc && (prev_sc->function || prev_sc->symbol)) {
1152     if (sc && (sc->function || sc->symbol)) {
1153       if (prev_sc->symbol && sc->symbol) {
1154         if (!sc->symbol->Compare(prev_sc->symbol->GetName(),
1155                                  prev_sc->symbol->GetType())) {
1156           function_changed = true;
1157         }
1158       } else if (prev_sc->function && sc->function) {
1159         if (prev_sc->function->GetMangled() != sc->function->GetMangled()) {
1160           function_changed = true;
1161         }
1162       }
1163     }
1164   }
1165   // The first context on a list of instructions will have a prev_sc that has
1166   // no Function or Symbol -- if SymbolContext had an IsValid() method, it
1167   // would return false.  But we do get a prev_sc pointer.
1168   if ((sc && (sc->function || sc->symbol)) && prev_sc &&
1169       (prev_sc->function == nullptr && prev_sc->symbol == nullptr)) {
1170     initial_function = true;
1171   }
1172   return FormatEntity::Format(*format, s, sc, exe_ctx, addr, nullptr,
1173                               function_changed, initial_function);
1174 }
1175 
1176 void Debugger::SetLoggingCallback(lldb::LogOutputCallback log_callback,
1177                                   void *baton) {
1178   // For simplicity's sake, I am not going to deal with how to close down any
1179   // open logging streams, I just redirect everything from here on out to the
1180   // callback.
1181   m_log_callback_stream_sp =
1182       std::make_shared<StreamCallback>(log_callback, baton);
1183 }
1184 
1185 bool Debugger::EnableLog(llvm::StringRef channel,
1186                          llvm::ArrayRef<const char *> categories,
1187                          llvm::StringRef log_file, uint32_t log_options,
1188                          llvm::raw_ostream &error_stream) {
1189   const bool should_close = true;
1190   const bool unbuffered = true;
1191 
1192   std::shared_ptr<llvm::raw_ostream> log_stream_sp;
1193   if (m_log_callback_stream_sp) {
1194     log_stream_sp = m_log_callback_stream_sp;
1195     // For now when using the callback mode you always get thread & timestamp.
1196     log_options |=
1197         LLDB_LOG_OPTION_PREPEND_TIMESTAMP | LLDB_LOG_OPTION_PREPEND_THREAD_NAME;
1198   } else if (log_file.empty()) {
1199     log_stream_sp = std::make_shared<llvm::raw_fd_ostream>(
1200         GetOutputFile()->GetFile().GetDescriptor(), !should_close, unbuffered);
1201   } else {
1202     auto pos = m_log_streams.find(log_file);
1203     if (pos != m_log_streams.end())
1204       log_stream_sp = pos->second.lock();
1205     if (!log_stream_sp) {
1206       llvm::sys::fs::OpenFlags flags = llvm::sys::fs::OF_Text;
1207       if (log_options & LLDB_LOG_OPTION_APPEND)
1208         flags |= llvm::sys::fs::OF_Append;
1209       int FD;
1210       if (std::error_code ec = llvm::sys::fs::openFileForWrite(
1211               log_file, FD, llvm::sys::fs::CD_CreateAlways, flags)) {
1212         error_stream << "Unable to open log file: " << ec.message();
1213         return false;
1214       }
1215       log_stream_sp =
1216           std::make_shared<llvm::raw_fd_ostream>(FD, should_close, unbuffered);
1217       m_log_streams[log_file] = log_stream_sp;
1218     }
1219   }
1220   assert(log_stream_sp);
1221 
1222   if (log_options == 0)
1223     log_options =
1224         LLDB_LOG_OPTION_PREPEND_THREAD_NAME | LLDB_LOG_OPTION_THREADSAFE;
1225 
1226   return Log::EnableLogChannel(log_stream_sp, log_options, channel, categories,
1227                                error_stream);
1228 }
1229 
1230 ScriptInterpreter *Debugger::GetScriptInterpreter(bool can_create) {
1231   std::lock_guard<std::recursive_mutex> locker(m_script_interpreter_mutex);
1232 
1233   if (!m_script_interpreter_sp) {
1234     if (!can_create)
1235       return nullptr;
1236     m_script_interpreter_sp = PluginManager::GetScriptInterpreterForLanguage(
1237         GetScriptLanguage(), *this);
1238   }
1239 
1240   return m_script_interpreter_sp.get();
1241 }
1242 
1243 SourceManager &Debugger::GetSourceManager() {
1244   if (!m_source_manager_up)
1245     m_source_manager_up = std::make_unique<SourceManager>(shared_from_this());
1246   return *m_source_manager_up;
1247 }
1248 
1249 // This function handles events that were broadcast by the process.
1250 void Debugger::HandleBreakpointEvent(const EventSP &event_sp) {
1251   using namespace lldb;
1252   const uint32_t event_type =
1253       Breakpoint::BreakpointEventData::GetBreakpointEventTypeFromEvent(
1254           event_sp);
1255 
1256   //    if (event_type & eBreakpointEventTypeAdded
1257   //        || event_type & eBreakpointEventTypeRemoved
1258   //        || event_type & eBreakpointEventTypeEnabled
1259   //        || event_type & eBreakpointEventTypeDisabled
1260   //        || event_type & eBreakpointEventTypeCommandChanged
1261   //        || event_type & eBreakpointEventTypeConditionChanged
1262   //        || event_type & eBreakpointEventTypeIgnoreChanged
1263   //        || event_type & eBreakpointEventTypeLocationsResolved)
1264   //    {
1265   //        // Don't do anything about these events, since the breakpoint
1266   //        commands already echo these actions.
1267   //    }
1268   //
1269   if (event_type & eBreakpointEventTypeLocationsAdded) {
1270     uint32_t num_new_locations =
1271         Breakpoint::BreakpointEventData::GetNumBreakpointLocationsFromEvent(
1272             event_sp);
1273     if (num_new_locations > 0) {
1274       BreakpointSP breakpoint =
1275           Breakpoint::BreakpointEventData::GetBreakpointFromEvent(event_sp);
1276       StreamSP output_sp(GetAsyncOutputStream());
1277       if (output_sp) {
1278         output_sp->Printf("%d location%s added to breakpoint %d\n",
1279                           num_new_locations, num_new_locations == 1 ? "" : "s",
1280                           breakpoint->GetID());
1281         output_sp->Flush();
1282       }
1283     }
1284   }
1285   //    else if (event_type & eBreakpointEventTypeLocationsRemoved)
1286   //    {
1287   //        // These locations just get disabled, not sure it is worth spamming
1288   //        folks about this on the command line.
1289   //    }
1290   //    else if (event_type & eBreakpointEventTypeLocationsResolved)
1291   //    {
1292   //        // This might be an interesting thing to note, but I'm going to
1293   //        leave it quiet for now, it just looked noisy.
1294   //    }
1295 }
1296 
1297 void Debugger::FlushProcessOutput(Process &process, bool flush_stdout,
1298                                   bool flush_stderr) {
1299   const auto &flush = [&](Stream &stream,
1300                           size_t (Process::*get)(char *, size_t, Status &)) {
1301     Status error;
1302     size_t len;
1303     char buffer[1024];
1304     while ((len = (process.*get)(buffer, sizeof(buffer), error)) > 0)
1305       stream.Write(buffer, len);
1306     stream.Flush();
1307   };
1308 
1309   std::lock_guard<std::mutex> guard(m_output_flush_mutex);
1310   if (flush_stdout)
1311     flush(*GetAsyncOutputStream(), &Process::GetSTDOUT);
1312   if (flush_stderr)
1313     flush(*GetAsyncErrorStream(), &Process::GetSTDERR);
1314 }
1315 
1316 // This function handles events that were broadcast by the process.
1317 void Debugger::HandleProcessEvent(const EventSP &event_sp) {
1318   using namespace lldb;
1319   const uint32_t event_type = event_sp->GetType();
1320   ProcessSP process_sp =
1321       (event_type == Process::eBroadcastBitStructuredData)
1322           ? EventDataStructuredData::GetProcessFromEvent(event_sp.get())
1323           : Process::ProcessEventData::GetProcessFromEvent(event_sp.get());
1324 
1325   StreamSP output_stream_sp = GetAsyncOutputStream();
1326   StreamSP error_stream_sp = GetAsyncErrorStream();
1327   const bool gui_enabled = IsForwardingEvents();
1328 
1329   if (!gui_enabled) {
1330     bool pop_process_io_handler = false;
1331     assert(process_sp);
1332 
1333     bool state_is_stopped = false;
1334     const bool got_state_changed =
1335         (event_type & Process::eBroadcastBitStateChanged) != 0;
1336     const bool got_stdout = (event_type & Process::eBroadcastBitSTDOUT) != 0;
1337     const bool got_stderr = (event_type & Process::eBroadcastBitSTDERR) != 0;
1338     const bool got_structured_data =
1339         (event_type & Process::eBroadcastBitStructuredData) != 0;
1340 
1341     if (got_state_changed) {
1342       StateType event_state =
1343           Process::ProcessEventData::GetStateFromEvent(event_sp.get());
1344       state_is_stopped = StateIsStoppedState(event_state, false);
1345     }
1346 
1347     // Display running state changes first before any STDIO
1348     if (got_state_changed && !state_is_stopped) {
1349       Process::HandleProcessStateChangedEvent(event_sp, output_stream_sp.get(),
1350                                               pop_process_io_handler);
1351     }
1352 
1353     // Now display STDOUT and STDERR
1354     FlushProcessOutput(*process_sp, got_stdout || got_state_changed,
1355                        got_stderr || got_state_changed);
1356 
1357     // Give structured data events an opportunity to display.
1358     if (got_structured_data) {
1359       StructuredDataPluginSP plugin_sp =
1360           EventDataStructuredData::GetPluginFromEvent(event_sp.get());
1361       if (plugin_sp) {
1362         auto structured_data_sp =
1363             EventDataStructuredData::GetObjectFromEvent(event_sp.get());
1364         if (output_stream_sp) {
1365           StreamString content_stream;
1366           Status error =
1367               plugin_sp->GetDescription(structured_data_sp, content_stream);
1368           if (error.Success()) {
1369             if (!content_stream.GetString().empty()) {
1370               // Add newline.
1371               content_stream.PutChar('\n');
1372               content_stream.Flush();
1373 
1374               // Print it.
1375               output_stream_sp->PutCString(content_stream.GetString());
1376             }
1377           } else {
1378             error_stream_sp->Printf("Failed to print structured "
1379                                     "data with plugin %s: %s",
1380                                     plugin_sp->GetPluginName().AsCString(),
1381                                     error.AsCString());
1382           }
1383         }
1384       }
1385     }
1386 
1387     // Now display any stopped state changes after any STDIO
1388     if (got_state_changed && state_is_stopped) {
1389       Process::HandleProcessStateChangedEvent(event_sp, output_stream_sp.get(),
1390                                               pop_process_io_handler);
1391     }
1392 
1393     output_stream_sp->Flush();
1394     error_stream_sp->Flush();
1395 
1396     if (pop_process_io_handler)
1397       process_sp->PopProcessIOHandler();
1398   }
1399 }
1400 
1401 void Debugger::HandleThreadEvent(const EventSP &event_sp) {
1402   // At present the only thread event we handle is the Frame Changed event, and
1403   // all we do for that is just reprint the thread status for that thread.
1404   using namespace lldb;
1405   const uint32_t event_type = event_sp->GetType();
1406   const bool stop_format = true;
1407   if (event_type == Thread::eBroadcastBitStackChanged ||
1408       event_type == Thread::eBroadcastBitThreadSelected) {
1409     ThreadSP thread_sp(
1410         Thread::ThreadEventData::GetThreadFromEvent(event_sp.get()));
1411     if (thread_sp) {
1412       thread_sp->GetStatus(*GetAsyncOutputStream(), 0, 1, 1, stop_format);
1413     }
1414   }
1415 }
1416 
1417 bool Debugger::IsForwardingEvents() { return (bool)m_forward_listener_sp; }
1418 
1419 void Debugger::EnableForwardEvents(const ListenerSP &listener_sp) {
1420   m_forward_listener_sp = listener_sp;
1421 }
1422 
1423 void Debugger::CancelForwardEvents(const ListenerSP &listener_sp) {
1424   m_forward_listener_sp.reset();
1425 }
1426 
1427 void Debugger::DefaultEventHandler() {
1428   ListenerSP listener_sp(GetListener());
1429   ConstString broadcaster_class_target(Target::GetStaticBroadcasterClass());
1430   ConstString broadcaster_class_process(Process::GetStaticBroadcasterClass());
1431   ConstString broadcaster_class_thread(Thread::GetStaticBroadcasterClass());
1432   BroadcastEventSpec target_event_spec(broadcaster_class_target,
1433                                        Target::eBroadcastBitBreakpointChanged);
1434 
1435   BroadcastEventSpec process_event_spec(
1436       broadcaster_class_process,
1437       Process::eBroadcastBitStateChanged | Process::eBroadcastBitSTDOUT |
1438           Process::eBroadcastBitSTDERR | Process::eBroadcastBitStructuredData);
1439 
1440   BroadcastEventSpec thread_event_spec(broadcaster_class_thread,
1441                                        Thread::eBroadcastBitStackChanged |
1442                                            Thread::eBroadcastBitThreadSelected);
1443 
1444   listener_sp->StartListeningForEventSpec(m_broadcaster_manager_sp,
1445                                           target_event_spec);
1446   listener_sp->StartListeningForEventSpec(m_broadcaster_manager_sp,
1447                                           process_event_spec);
1448   listener_sp->StartListeningForEventSpec(m_broadcaster_manager_sp,
1449                                           thread_event_spec);
1450   listener_sp->StartListeningForEvents(
1451       m_command_interpreter_up.get(),
1452       CommandInterpreter::eBroadcastBitQuitCommandReceived |
1453           CommandInterpreter::eBroadcastBitAsynchronousOutputData |
1454           CommandInterpreter::eBroadcastBitAsynchronousErrorData);
1455 
1456   // Let the thread that spawned us know that we have started up and that we
1457   // are now listening to all required events so no events get missed
1458   m_sync_broadcaster.BroadcastEvent(eBroadcastBitEventThreadIsListening);
1459 
1460   bool done = false;
1461   while (!done) {
1462     EventSP event_sp;
1463     if (listener_sp->GetEvent(event_sp, llvm::None)) {
1464       if (event_sp) {
1465         Broadcaster *broadcaster = event_sp->GetBroadcaster();
1466         if (broadcaster) {
1467           uint32_t event_type = event_sp->GetType();
1468           ConstString broadcaster_class(broadcaster->GetBroadcasterClass());
1469           if (broadcaster_class == broadcaster_class_process) {
1470             HandleProcessEvent(event_sp);
1471           } else if (broadcaster_class == broadcaster_class_target) {
1472             if (Breakpoint::BreakpointEventData::GetEventDataFromEvent(
1473                     event_sp.get())) {
1474               HandleBreakpointEvent(event_sp);
1475             }
1476           } else if (broadcaster_class == broadcaster_class_thread) {
1477             HandleThreadEvent(event_sp);
1478           } else if (broadcaster == m_command_interpreter_up.get()) {
1479             if (event_type &
1480                 CommandInterpreter::eBroadcastBitQuitCommandReceived) {
1481               done = true;
1482             } else if (event_type &
1483                        CommandInterpreter::eBroadcastBitAsynchronousErrorData) {
1484               const char *data = reinterpret_cast<const char *>(
1485                   EventDataBytes::GetBytesFromEvent(event_sp.get()));
1486               if (data && data[0]) {
1487                 StreamSP error_sp(GetAsyncErrorStream());
1488                 if (error_sp) {
1489                   error_sp->PutCString(data);
1490                   error_sp->Flush();
1491                 }
1492               }
1493             } else if (event_type & CommandInterpreter::
1494                                         eBroadcastBitAsynchronousOutputData) {
1495               const char *data = reinterpret_cast<const char *>(
1496                   EventDataBytes::GetBytesFromEvent(event_sp.get()));
1497               if (data && data[0]) {
1498                 StreamSP output_sp(GetAsyncOutputStream());
1499                 if (output_sp) {
1500                   output_sp->PutCString(data);
1501                   output_sp->Flush();
1502                 }
1503               }
1504             }
1505           }
1506         }
1507 
1508         if (m_forward_listener_sp)
1509           m_forward_listener_sp->AddEvent(event_sp);
1510       }
1511     }
1512   }
1513 }
1514 
1515 lldb::thread_result_t Debugger::EventHandlerThread(lldb::thread_arg_t arg) {
1516   ((Debugger *)arg)->DefaultEventHandler();
1517   return {};
1518 }
1519 
1520 bool Debugger::StartEventHandlerThread() {
1521   if (!m_event_handler_thread.IsJoinable()) {
1522     // We must synchronize with the DefaultEventHandler() thread to ensure it
1523     // is up and running and listening to events before we return from this
1524     // function. We do this by listening to events for the
1525     // eBroadcastBitEventThreadIsListening from the m_sync_broadcaster
1526     ConstString full_name("lldb.debugger.event-handler");
1527     ListenerSP listener_sp(Listener::MakeListener(full_name.AsCString()));
1528     listener_sp->StartListeningForEvents(&m_sync_broadcaster,
1529                                          eBroadcastBitEventThreadIsListening);
1530 
1531     auto thread_name =
1532         full_name.GetLength() < llvm::get_max_thread_name_length()
1533             ? full_name.AsCString()
1534             : "dbg.evt-handler";
1535 
1536     // Use larger 8MB stack for this thread
1537     llvm::Expected<HostThread> event_handler_thread =
1538         ThreadLauncher::LaunchThread(thread_name, EventHandlerThread, this,
1539                                      g_debugger_event_thread_stack_bytes);
1540 
1541     if (event_handler_thread) {
1542       m_event_handler_thread = *event_handler_thread;
1543     } else {
1544       LLDB_LOG(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_HOST),
1545                "failed to launch host thread: {}",
1546                llvm::toString(event_handler_thread.takeError()));
1547     }
1548 
1549     // Make sure DefaultEventHandler() is running and listening to events
1550     // before we return from this function. We are only listening for events of
1551     // type eBroadcastBitEventThreadIsListening so we don't need to check the
1552     // event, we just need to wait an infinite amount of time for it (nullptr
1553     // timeout as the first parameter)
1554     lldb::EventSP event_sp;
1555     listener_sp->GetEvent(event_sp, llvm::None);
1556   }
1557   return m_event_handler_thread.IsJoinable();
1558 }
1559 
1560 void Debugger::StopEventHandlerThread() {
1561   if (m_event_handler_thread.IsJoinable()) {
1562     GetCommandInterpreter().BroadcastEvent(
1563         CommandInterpreter::eBroadcastBitQuitCommandReceived);
1564     m_event_handler_thread.Join(nullptr);
1565   }
1566 }
1567 
1568 lldb::thread_result_t Debugger::IOHandlerThread(lldb::thread_arg_t arg) {
1569   Debugger *debugger = (Debugger *)arg;
1570   debugger->ExecuteIOHandlers();
1571   debugger->StopEventHandlerThread();
1572   return {};
1573 }
1574 
1575 bool Debugger::HasIOHandlerThread() { return m_io_handler_thread.IsJoinable(); }
1576 
1577 bool Debugger::StartIOHandlerThread() {
1578   if (!m_io_handler_thread.IsJoinable()) {
1579     llvm::Expected<HostThread> io_handler_thread = ThreadLauncher::LaunchThread(
1580         "lldb.debugger.io-handler", IOHandlerThread, this,
1581         8 * 1024 * 1024); // Use larger 8MB stack for this thread
1582     if (io_handler_thread) {
1583       m_io_handler_thread = *io_handler_thread;
1584     } else {
1585       LLDB_LOG(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_HOST),
1586                "failed to launch host thread: {}",
1587                llvm::toString(io_handler_thread.takeError()));
1588     }
1589   }
1590   return m_io_handler_thread.IsJoinable();
1591 }
1592 
1593 void Debugger::StopIOHandlerThread() {
1594   if (m_io_handler_thread.IsJoinable()) {
1595     if (m_input_file_sp)
1596       m_input_file_sp->GetFile().Close();
1597     m_io_handler_thread.Join(nullptr);
1598   }
1599 }
1600 
1601 void Debugger::JoinIOHandlerThread() {
1602   if (HasIOHandlerThread()) {
1603     thread_result_t result;
1604     m_io_handler_thread.Join(&result);
1605     m_io_handler_thread = LLDB_INVALID_HOST_THREAD;
1606   }
1607 }
1608 
1609 Target *Debugger::GetSelectedOrDummyTarget(bool prefer_dummy) {
1610   Target *target = nullptr;
1611   if (!prefer_dummy) {
1612     target = m_target_list.GetSelectedTarget().get();
1613     if (target)
1614       return target;
1615   }
1616 
1617   return GetDummyTarget();
1618 }
1619 
1620 Status Debugger::RunREPL(LanguageType language, const char *repl_options) {
1621   Status err;
1622   FileSpec repl_executable;
1623 
1624   if (language == eLanguageTypeUnknown) {
1625     LanguageSet repl_languages = Language::GetLanguagesSupportingREPLs();
1626 
1627     if (auto single_lang = repl_languages.GetSingularLanguage()) {
1628       language = *single_lang;
1629     } else if (repl_languages.Empty()) {
1630       err.SetErrorStringWithFormat(
1631           "LLDB isn't configured with REPL support for any languages.");
1632       return err;
1633     } else {
1634       err.SetErrorStringWithFormat(
1635           "Multiple possible REPL languages.  Please specify a language.");
1636       return err;
1637     }
1638   }
1639 
1640   Target *const target =
1641       nullptr; // passing in an empty target means the REPL must create one
1642 
1643   REPLSP repl_sp(REPL::Create(err, language, this, target, repl_options));
1644 
1645   if (!err.Success()) {
1646     return err;
1647   }
1648 
1649   if (!repl_sp) {
1650     err.SetErrorStringWithFormat("couldn't find a REPL for %s",
1651                                  Language::GetNameForLanguageType(language));
1652     return err;
1653   }
1654 
1655   repl_sp->SetCompilerOptions(repl_options);
1656   repl_sp->RunLoop();
1657 
1658   return err;
1659 }
1660