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