1 //===-- CommandObjectThread.cpp -------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "CommandObjectThread.h" 10 11 #include <memory> 12 #include <sstream> 13 14 #include "CommandObjectThreadUtil.h" 15 #include "CommandObjectTrace.h" 16 #include "lldb/Core/PluginManager.h" 17 #include "lldb/Core/ValueObject.h" 18 #include "lldb/Host/OptionParser.h" 19 #include "lldb/Interpreter/CommandInterpreter.h" 20 #include "lldb/Interpreter/CommandReturnObject.h" 21 #include "lldb/Interpreter/OptionArgParser.h" 22 #include "lldb/Interpreter/OptionGroupPythonClassWithDict.h" 23 #include "lldb/Interpreter/Options.h" 24 #include "lldb/Symbol/CompileUnit.h" 25 #include "lldb/Symbol/Function.h" 26 #include "lldb/Symbol/LineEntry.h" 27 #include "lldb/Symbol/LineTable.h" 28 #include "lldb/Target/Process.h" 29 #include "lldb/Target/RegisterContext.h" 30 #include "lldb/Target/SystemRuntime.h" 31 #include "lldb/Target/Target.h" 32 #include "lldb/Target/Thread.h" 33 #include "lldb/Target/ThreadPlan.h" 34 #include "lldb/Target/ThreadPlanStepInRange.h" 35 #include "lldb/Target/Trace.h" 36 #include "lldb/Target/TraceDumper.h" 37 #include "lldb/Utility/State.h" 38 39 using namespace lldb; 40 using namespace lldb_private; 41 42 // CommandObjectThreadBacktrace 43 #define LLDB_OPTIONS_thread_backtrace 44 #include "CommandOptions.inc" 45 46 class CommandObjectThreadBacktrace : public CommandObjectIterateOverThreads { 47 public: 48 class CommandOptions : public Options { 49 public: 50 CommandOptions() { 51 // Keep default values of all options in one place: OptionParsingStarting 52 // () 53 OptionParsingStarting(nullptr); 54 } 55 56 ~CommandOptions() override = default; 57 58 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 59 ExecutionContext *execution_context) override { 60 Status error; 61 const int short_option = m_getopt_table[option_idx].val; 62 63 switch (short_option) { 64 case 'c': { 65 int32_t input_count = 0; 66 if (option_arg.getAsInteger(0, m_count)) { 67 m_count = UINT32_MAX; 68 error.SetErrorStringWithFormat( 69 "invalid integer value for option '%c'", short_option); 70 } else if (input_count < 0) 71 m_count = UINT32_MAX; 72 } break; 73 case 's': 74 if (option_arg.getAsInteger(0, m_start)) 75 error.SetErrorStringWithFormat( 76 "invalid integer value for option '%c'", short_option); 77 break; 78 case 'e': { 79 bool success; 80 m_extended_backtrace = 81 OptionArgParser::ToBoolean(option_arg, false, &success); 82 if (!success) 83 error.SetErrorStringWithFormat( 84 "invalid boolean value for option '%c'", short_option); 85 } break; 86 default: 87 llvm_unreachable("Unimplemented option"); 88 } 89 return error; 90 } 91 92 void OptionParsingStarting(ExecutionContext *execution_context) override { 93 m_count = UINT32_MAX; 94 m_start = 0; 95 m_extended_backtrace = false; 96 } 97 98 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 99 return llvm::makeArrayRef(g_thread_backtrace_options); 100 } 101 102 // Instance variables to hold the values for command options. 103 uint32_t m_count; 104 uint32_t m_start; 105 bool m_extended_backtrace; 106 }; 107 108 CommandObjectThreadBacktrace(CommandInterpreter &interpreter) 109 : CommandObjectIterateOverThreads( 110 interpreter, "thread backtrace", 111 "Show thread call stacks. Defaults to the current thread, thread " 112 "indexes can be specified as arguments.\n" 113 "Use the thread-index \"all\" to see all threads.\n" 114 "Use the thread-index \"unique\" to see threads grouped by unique " 115 "call stacks.\n" 116 "Use 'settings set frame-format' to customize the printing of " 117 "frames in the backtrace and 'settings set thread-format' to " 118 "customize the thread header.", 119 nullptr, 120 eCommandRequiresProcess | eCommandRequiresThread | 121 eCommandTryTargetAPILock | eCommandProcessMustBeLaunched | 122 eCommandProcessMustBePaused) {} 123 124 ~CommandObjectThreadBacktrace() override = default; 125 126 Options *GetOptions() override { return &m_options; } 127 128 llvm::Optional<std::string> GetRepeatCommand(Args ¤t_args, 129 uint32_t idx) override { 130 llvm::StringRef count_opt("--count"); 131 llvm::StringRef start_opt("--start"); 132 133 // If no "count" was provided, we are dumping the entire backtrace, so 134 // there isn't a repeat command. So we search for the count option in 135 // the args, and if we find it, we make a copy and insert or modify the 136 // start option's value to start count indices greater. 137 138 Args copy_args(current_args); 139 size_t num_entries = copy_args.GetArgumentCount(); 140 // These two point at the index of the option value if found. 141 size_t count_idx = 0; 142 size_t start_idx = 0; 143 size_t count_val = 0; 144 size_t start_val = 0; 145 146 for (size_t idx = 0; idx < num_entries; idx++) { 147 llvm::StringRef arg_string = copy_args[idx].ref(); 148 if (arg_string.equals("-c") || count_opt.startswith(arg_string)) { 149 idx++; 150 if (idx == num_entries) 151 return llvm::None; 152 count_idx = idx; 153 if (copy_args[idx].ref().getAsInteger(0, count_val)) 154 return llvm::None; 155 } else if (arg_string.equals("-s") || start_opt.startswith(arg_string)) { 156 idx++; 157 if (idx == num_entries) 158 return llvm::None; 159 start_idx = idx; 160 if (copy_args[idx].ref().getAsInteger(0, start_val)) 161 return llvm::None; 162 } 163 } 164 if (count_idx == 0) 165 return llvm::None; 166 167 std::string new_start_val = llvm::formatv("{0}", start_val + count_val); 168 if (start_idx == 0) { 169 copy_args.AppendArgument(start_opt); 170 copy_args.AppendArgument(new_start_val); 171 } else { 172 copy_args.ReplaceArgumentAtIndex(start_idx, new_start_val); 173 } 174 std::string repeat_command; 175 if (!copy_args.GetQuotedCommandString(repeat_command)) 176 return llvm::None; 177 return repeat_command; 178 } 179 180 protected: 181 void DoExtendedBacktrace(Thread *thread, CommandReturnObject &result) { 182 SystemRuntime *runtime = thread->GetProcess()->GetSystemRuntime(); 183 if (runtime) { 184 Stream &strm = result.GetOutputStream(); 185 const std::vector<ConstString> &types = 186 runtime->GetExtendedBacktraceTypes(); 187 for (auto type : types) { 188 ThreadSP ext_thread_sp = runtime->GetExtendedBacktraceThread( 189 thread->shared_from_this(), type); 190 if (ext_thread_sp && ext_thread_sp->IsValid()) { 191 const uint32_t num_frames_with_source = 0; 192 const bool stop_format = false; 193 if (ext_thread_sp->GetStatus(strm, m_options.m_start, 194 m_options.m_count, 195 num_frames_with_source, stop_format)) { 196 DoExtendedBacktrace(ext_thread_sp.get(), result); 197 } 198 } 199 } 200 } 201 } 202 203 bool HandleOneThread(lldb::tid_t tid, CommandReturnObject &result) override { 204 ThreadSP thread_sp = 205 m_exe_ctx.GetProcessPtr()->GetThreadList().FindThreadByID(tid); 206 if (!thread_sp) { 207 result.AppendErrorWithFormat( 208 "thread disappeared while computing backtraces: 0x%" PRIx64 "\n", 209 tid); 210 return false; 211 } 212 213 Thread *thread = thread_sp.get(); 214 215 Stream &strm = result.GetOutputStream(); 216 217 // Only dump stack info if we processing unique stacks. 218 const bool only_stacks = m_unique_stacks; 219 220 // Don't show source context when doing backtraces. 221 const uint32_t num_frames_with_source = 0; 222 const bool stop_format = true; 223 if (!thread->GetStatus(strm, m_options.m_start, m_options.m_count, 224 num_frames_with_source, stop_format, only_stacks)) { 225 result.AppendErrorWithFormat( 226 "error displaying backtrace for thread: \"0x%4.4x\"\n", 227 thread->GetIndexID()); 228 return false; 229 } 230 if (m_options.m_extended_backtrace) { 231 DoExtendedBacktrace(thread, result); 232 } 233 234 return true; 235 } 236 237 CommandOptions m_options; 238 }; 239 240 enum StepScope { eStepScopeSource, eStepScopeInstruction }; 241 242 static constexpr OptionEnumValueElement g_tri_running_mode[] = { 243 {eOnlyThisThread, "this-thread", "Run only this thread"}, 244 {eAllThreads, "all-threads", "Run all threads"}, 245 {eOnlyDuringStepping, "while-stepping", 246 "Run only this thread while stepping"}}; 247 248 static constexpr OptionEnumValues TriRunningModes() { 249 return OptionEnumValues(g_tri_running_mode); 250 } 251 252 #define LLDB_OPTIONS_thread_step_scope 253 #include "CommandOptions.inc" 254 255 class ThreadStepScopeOptionGroup : public OptionGroup { 256 public: 257 ThreadStepScopeOptionGroup() { 258 // Keep default values of all options in one place: OptionParsingStarting 259 // () 260 OptionParsingStarting(nullptr); 261 } 262 263 ~ThreadStepScopeOptionGroup() override = default; 264 265 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 266 return llvm::makeArrayRef(g_thread_step_scope_options); 267 } 268 269 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 270 ExecutionContext *execution_context) override { 271 Status error; 272 const int short_option = 273 g_thread_step_scope_options[option_idx].short_option; 274 275 switch (short_option) { 276 case 'a': { 277 bool success; 278 bool avoid_no_debug = 279 OptionArgParser::ToBoolean(option_arg, true, &success); 280 if (!success) 281 error.SetErrorStringWithFormat("invalid boolean value for option '%c'", 282 short_option); 283 else { 284 m_step_in_avoid_no_debug = avoid_no_debug ? eLazyBoolYes : eLazyBoolNo; 285 } 286 } break; 287 288 case 'A': { 289 bool success; 290 bool avoid_no_debug = 291 OptionArgParser::ToBoolean(option_arg, true, &success); 292 if (!success) 293 error.SetErrorStringWithFormat("invalid boolean value for option '%c'", 294 short_option); 295 else { 296 m_step_out_avoid_no_debug = avoid_no_debug ? eLazyBoolYes : eLazyBoolNo; 297 } 298 } break; 299 300 case 'c': 301 if (option_arg.getAsInteger(0, m_step_count)) 302 error.SetErrorStringWithFormat("invalid step count '%s'", 303 option_arg.str().c_str()); 304 break; 305 306 case 'm': { 307 auto enum_values = GetDefinitions()[option_idx].enum_values; 308 m_run_mode = (lldb::RunMode)OptionArgParser::ToOptionEnum( 309 option_arg, enum_values, eOnlyDuringStepping, error); 310 } break; 311 312 case 'e': 313 if (option_arg == "block") { 314 m_end_line_is_block_end = true; 315 break; 316 } 317 if (option_arg.getAsInteger(0, m_end_line)) 318 error.SetErrorStringWithFormat("invalid end line number '%s'", 319 option_arg.str().c_str()); 320 break; 321 322 case 'r': 323 m_avoid_regexp.clear(); 324 m_avoid_regexp.assign(std::string(option_arg)); 325 break; 326 327 case 't': 328 m_step_in_target.clear(); 329 m_step_in_target.assign(std::string(option_arg)); 330 break; 331 332 default: 333 llvm_unreachable("Unimplemented option"); 334 } 335 return error; 336 } 337 338 void OptionParsingStarting(ExecutionContext *execution_context) override { 339 m_step_in_avoid_no_debug = eLazyBoolCalculate; 340 m_step_out_avoid_no_debug = eLazyBoolCalculate; 341 m_run_mode = eOnlyDuringStepping; 342 343 // Check if we are in Non-Stop mode 344 TargetSP target_sp = 345 execution_context ? execution_context->GetTargetSP() : TargetSP(); 346 ProcessSP process_sp = 347 execution_context ? execution_context->GetProcessSP() : ProcessSP(); 348 if (process_sp && process_sp->GetSteppingRunsAllThreads()) 349 m_run_mode = eAllThreads; 350 351 m_avoid_regexp.clear(); 352 m_step_in_target.clear(); 353 m_step_count = 1; 354 m_end_line = LLDB_INVALID_LINE_NUMBER; 355 m_end_line_is_block_end = false; 356 } 357 358 // Instance variables to hold the values for command options. 359 LazyBool m_step_in_avoid_no_debug; 360 LazyBool m_step_out_avoid_no_debug; 361 RunMode m_run_mode; 362 std::string m_avoid_regexp; 363 std::string m_step_in_target; 364 uint32_t m_step_count; 365 uint32_t m_end_line; 366 bool m_end_line_is_block_end; 367 }; 368 369 class CommandObjectThreadStepWithTypeAndScope : public CommandObjectParsed { 370 public: 371 CommandObjectThreadStepWithTypeAndScope(CommandInterpreter &interpreter, 372 const char *name, const char *help, 373 const char *syntax, 374 StepType step_type, 375 StepScope step_scope) 376 : CommandObjectParsed(interpreter, name, help, syntax, 377 eCommandRequiresProcess | eCommandRequiresThread | 378 eCommandTryTargetAPILock | 379 eCommandProcessMustBeLaunched | 380 eCommandProcessMustBePaused), 381 m_step_type(step_type), m_step_scope(step_scope), 382 m_class_options("scripted step") { 383 CommandArgumentEntry arg; 384 CommandArgumentData thread_id_arg; 385 386 // Define the first (and only) variant of this arg. 387 thread_id_arg.arg_type = eArgTypeThreadID; 388 thread_id_arg.arg_repetition = eArgRepeatOptional; 389 390 // There is only one variant this argument could be; put it into the 391 // argument entry. 392 arg.push_back(thread_id_arg); 393 394 // Push the data for the first argument into the m_arguments vector. 395 m_arguments.push_back(arg); 396 397 if (step_type == eStepTypeScripted) { 398 m_all_options.Append(&m_class_options, LLDB_OPT_SET_1 | LLDB_OPT_SET_2, 399 LLDB_OPT_SET_1); 400 } 401 m_all_options.Append(&m_options); 402 m_all_options.Finalize(); 403 } 404 405 ~CommandObjectThreadStepWithTypeAndScope() override = default; 406 407 void 408 HandleArgumentCompletion(CompletionRequest &request, 409 OptionElementVector &opt_element_vector) override { 410 if (request.GetCursorIndex()) 411 return; 412 413 CommandCompletions::InvokeCommonCompletionCallbacks( 414 GetCommandInterpreter(), CommandCompletions::eThreadIndexCompletion, 415 request, nullptr); 416 } 417 418 Options *GetOptions() override { return &m_all_options; } 419 420 protected: 421 bool DoExecute(Args &command, CommandReturnObject &result) override { 422 Process *process = m_exe_ctx.GetProcessPtr(); 423 bool synchronous_execution = m_interpreter.GetSynchronous(); 424 425 const uint32_t num_threads = process->GetThreadList().GetSize(); 426 Thread *thread = nullptr; 427 428 if (command.GetArgumentCount() == 0) { 429 thread = GetDefaultThread(); 430 431 if (thread == nullptr) { 432 result.AppendError("no selected thread in process"); 433 return false; 434 } 435 } else { 436 const char *thread_idx_cstr = command.GetArgumentAtIndex(0); 437 uint32_t step_thread_idx; 438 439 if (!llvm::to_integer(thread_idx_cstr, step_thread_idx)) { 440 result.AppendErrorWithFormat("invalid thread index '%s'.\n", 441 thread_idx_cstr); 442 return false; 443 } 444 thread = 445 process->GetThreadList().FindThreadByIndexID(step_thread_idx).get(); 446 if (thread == nullptr) { 447 result.AppendErrorWithFormat( 448 "Thread index %u is out of range (valid values are 0 - %u).\n", 449 step_thread_idx, num_threads); 450 return false; 451 } 452 } 453 454 if (m_step_type == eStepTypeScripted) { 455 if (m_class_options.GetName().empty()) { 456 result.AppendErrorWithFormat("empty class name for scripted step."); 457 return false; 458 } else if (!GetDebugger().GetScriptInterpreter()->CheckObjectExists( 459 m_class_options.GetName().c_str())) { 460 result.AppendErrorWithFormat( 461 "class for scripted step: \"%s\" does not exist.", 462 m_class_options.GetName().c_str()); 463 return false; 464 } 465 } 466 467 if (m_options.m_end_line != LLDB_INVALID_LINE_NUMBER && 468 m_step_type != eStepTypeInto) { 469 result.AppendErrorWithFormat( 470 "end line option is only valid for step into"); 471 return false; 472 } 473 474 const bool abort_other_plans = false; 475 const lldb::RunMode stop_other_threads = m_options.m_run_mode; 476 477 // This is a bit unfortunate, but not all the commands in this command 478 // object support only while stepping, so I use the bool for them. 479 bool bool_stop_other_threads; 480 if (m_options.m_run_mode == eAllThreads) 481 bool_stop_other_threads = false; 482 else if (m_options.m_run_mode == eOnlyDuringStepping) 483 bool_stop_other_threads = (m_step_type != eStepTypeOut); 484 else 485 bool_stop_other_threads = true; 486 487 ThreadPlanSP new_plan_sp; 488 Status new_plan_status; 489 490 if (m_step_type == eStepTypeInto) { 491 StackFrame *frame = thread->GetStackFrameAtIndex(0).get(); 492 assert(frame != nullptr); 493 494 if (frame->HasDebugInformation()) { 495 AddressRange range; 496 SymbolContext sc = frame->GetSymbolContext(eSymbolContextEverything); 497 if (m_options.m_end_line != LLDB_INVALID_LINE_NUMBER) { 498 Status error; 499 if (!sc.GetAddressRangeFromHereToEndLine(m_options.m_end_line, range, 500 error)) { 501 result.AppendErrorWithFormat("invalid end-line option: %s.", 502 error.AsCString()); 503 return false; 504 } 505 } else if (m_options.m_end_line_is_block_end) { 506 Status error; 507 Block *block = frame->GetSymbolContext(eSymbolContextBlock).block; 508 if (!block) { 509 result.AppendErrorWithFormat("Could not find the current block."); 510 return false; 511 } 512 513 AddressRange block_range; 514 Address pc_address = frame->GetFrameCodeAddress(); 515 block->GetRangeContainingAddress(pc_address, block_range); 516 if (!block_range.GetBaseAddress().IsValid()) { 517 result.AppendErrorWithFormat( 518 "Could not find the current block address."); 519 return false; 520 } 521 lldb::addr_t pc_offset_in_block = 522 pc_address.GetFileAddress() - 523 block_range.GetBaseAddress().GetFileAddress(); 524 lldb::addr_t range_length = 525 block_range.GetByteSize() - pc_offset_in_block; 526 range = AddressRange(pc_address, range_length); 527 } else { 528 range = sc.line_entry.range; 529 } 530 531 new_plan_sp = thread->QueueThreadPlanForStepInRange( 532 abort_other_plans, range, 533 frame->GetSymbolContext(eSymbolContextEverything), 534 m_options.m_step_in_target.c_str(), stop_other_threads, 535 new_plan_status, m_options.m_step_in_avoid_no_debug, 536 m_options.m_step_out_avoid_no_debug); 537 538 if (new_plan_sp && !m_options.m_avoid_regexp.empty()) { 539 ThreadPlanStepInRange *step_in_range_plan = 540 static_cast<ThreadPlanStepInRange *>(new_plan_sp.get()); 541 step_in_range_plan->SetAvoidRegexp(m_options.m_avoid_regexp.c_str()); 542 } 543 } else 544 new_plan_sp = thread->QueueThreadPlanForStepSingleInstruction( 545 false, abort_other_plans, bool_stop_other_threads, new_plan_status); 546 } else if (m_step_type == eStepTypeOver) { 547 StackFrame *frame = thread->GetStackFrameAtIndex(0).get(); 548 549 if (frame->HasDebugInformation()) 550 new_plan_sp = thread->QueueThreadPlanForStepOverRange( 551 abort_other_plans, 552 frame->GetSymbolContext(eSymbolContextEverything).line_entry, 553 frame->GetSymbolContext(eSymbolContextEverything), 554 stop_other_threads, new_plan_status, 555 m_options.m_step_out_avoid_no_debug); 556 else 557 new_plan_sp = thread->QueueThreadPlanForStepSingleInstruction( 558 true, abort_other_plans, bool_stop_other_threads, new_plan_status); 559 } else if (m_step_type == eStepTypeTrace) { 560 new_plan_sp = thread->QueueThreadPlanForStepSingleInstruction( 561 false, abort_other_plans, bool_stop_other_threads, new_plan_status); 562 } else if (m_step_type == eStepTypeTraceOver) { 563 new_plan_sp = thread->QueueThreadPlanForStepSingleInstruction( 564 true, abort_other_plans, bool_stop_other_threads, new_plan_status); 565 } else if (m_step_type == eStepTypeOut) { 566 new_plan_sp = thread->QueueThreadPlanForStepOut( 567 abort_other_plans, nullptr, false, bool_stop_other_threads, eVoteYes, 568 eVoteNoOpinion, thread->GetSelectedFrameIndex(), new_plan_status, 569 m_options.m_step_out_avoid_no_debug); 570 } else if (m_step_type == eStepTypeScripted) { 571 new_plan_sp = thread->QueueThreadPlanForStepScripted( 572 abort_other_plans, m_class_options.GetName().c_str(), 573 m_class_options.GetStructuredData(), bool_stop_other_threads, 574 new_plan_status); 575 } else { 576 result.AppendError("step type is not supported"); 577 return false; 578 } 579 580 // If we got a new plan, then set it to be a controlling plan (User level 581 // Plans should be controlling plans so that they can be interruptible). 582 // Then resume the process. 583 584 if (new_plan_sp) { 585 new_plan_sp->SetIsControllingPlan(true); 586 new_plan_sp->SetOkayToDiscard(false); 587 588 if (m_options.m_step_count > 1) { 589 if (!new_plan_sp->SetIterationCount(m_options.m_step_count)) { 590 result.AppendWarning( 591 "step operation does not support iteration count."); 592 } 593 } 594 595 process->GetThreadList().SetSelectedThreadByID(thread->GetID()); 596 597 const uint32_t iohandler_id = process->GetIOHandlerID(); 598 599 StreamString stream; 600 Status error; 601 if (synchronous_execution) 602 error = process->ResumeSynchronous(&stream); 603 else 604 error = process->Resume(); 605 606 if (!error.Success()) { 607 result.AppendMessage(error.AsCString()); 608 return false; 609 } 610 611 // There is a race condition where this thread will return up the call 612 // stack to the main command handler and show an (lldb) prompt before 613 // HandlePrivateEvent (from PrivateStateThread) has a chance to call 614 // PushProcessIOHandler(). 615 process->SyncIOHandler(iohandler_id, std::chrono::seconds(2)); 616 617 if (synchronous_execution) { 618 // If any state changed events had anything to say, add that to the 619 // result 620 if (stream.GetSize() > 0) 621 result.AppendMessage(stream.GetString()); 622 623 process->GetThreadList().SetSelectedThreadByID(thread->GetID()); 624 result.SetDidChangeProcessState(true); 625 result.SetStatus(eReturnStatusSuccessFinishNoResult); 626 } else { 627 result.SetStatus(eReturnStatusSuccessContinuingNoResult); 628 } 629 } else { 630 result.SetError(new_plan_status); 631 } 632 return result.Succeeded(); 633 } 634 635 StepType m_step_type; 636 StepScope m_step_scope; 637 ThreadStepScopeOptionGroup m_options; 638 OptionGroupPythonClassWithDict m_class_options; 639 OptionGroupOptions m_all_options; 640 }; 641 642 // CommandObjectThreadContinue 643 644 class CommandObjectThreadContinue : public CommandObjectParsed { 645 public: 646 CommandObjectThreadContinue(CommandInterpreter &interpreter) 647 : CommandObjectParsed( 648 interpreter, "thread continue", 649 "Continue execution of the current target process. One " 650 "or more threads may be specified, by default all " 651 "threads continue.", 652 nullptr, 653 eCommandRequiresThread | eCommandTryTargetAPILock | 654 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) { 655 CommandArgumentEntry arg; 656 CommandArgumentData thread_idx_arg; 657 658 // Define the first (and only) variant of this arg. 659 thread_idx_arg.arg_type = eArgTypeThreadIndex; 660 thread_idx_arg.arg_repetition = eArgRepeatPlus; 661 662 // There is only one variant this argument could be; put it into the 663 // argument entry. 664 arg.push_back(thread_idx_arg); 665 666 // Push the data for the first argument into the m_arguments vector. 667 m_arguments.push_back(arg); 668 } 669 670 ~CommandObjectThreadContinue() override = default; 671 672 void 673 HandleArgumentCompletion(CompletionRequest &request, 674 OptionElementVector &opt_element_vector) override { 675 CommandCompletions::InvokeCommonCompletionCallbacks( 676 GetCommandInterpreter(), CommandCompletions::eThreadIndexCompletion, 677 request, nullptr); 678 } 679 680 bool DoExecute(Args &command, CommandReturnObject &result) override { 681 bool synchronous_execution = m_interpreter.GetSynchronous(); 682 683 Process *process = m_exe_ctx.GetProcessPtr(); 684 if (process == nullptr) { 685 result.AppendError("no process exists. Cannot continue"); 686 return false; 687 } 688 689 StateType state = process->GetState(); 690 if ((state == eStateCrashed) || (state == eStateStopped) || 691 (state == eStateSuspended)) { 692 const size_t argc = command.GetArgumentCount(); 693 if (argc > 0) { 694 // These two lines appear at the beginning of both blocks in this 695 // if..else, but that is because we need to release the lock before 696 // calling process->Resume below. 697 std::lock_guard<std::recursive_mutex> guard( 698 process->GetThreadList().GetMutex()); 699 const uint32_t num_threads = process->GetThreadList().GetSize(); 700 std::vector<Thread *> resume_threads; 701 for (auto &entry : command.entries()) { 702 uint32_t thread_idx; 703 if (entry.ref().getAsInteger(0, thread_idx)) { 704 result.AppendErrorWithFormat( 705 "invalid thread index argument: \"%s\".\n", entry.c_str()); 706 return false; 707 } 708 Thread *thread = 709 process->GetThreadList().FindThreadByIndexID(thread_idx).get(); 710 711 if (thread) { 712 resume_threads.push_back(thread); 713 } else { 714 result.AppendErrorWithFormat("invalid thread index %u.\n", 715 thread_idx); 716 return false; 717 } 718 } 719 720 if (resume_threads.empty()) { 721 result.AppendError("no valid thread indexes were specified"); 722 return false; 723 } else { 724 if (resume_threads.size() == 1) 725 result.AppendMessageWithFormat("Resuming thread: "); 726 else 727 result.AppendMessageWithFormat("Resuming threads: "); 728 729 for (uint32_t idx = 0; idx < num_threads; ++idx) { 730 Thread *thread = 731 process->GetThreadList().GetThreadAtIndex(idx).get(); 732 std::vector<Thread *>::iterator this_thread_pos = 733 find(resume_threads.begin(), resume_threads.end(), thread); 734 735 if (this_thread_pos != resume_threads.end()) { 736 resume_threads.erase(this_thread_pos); 737 if (!resume_threads.empty()) 738 result.AppendMessageWithFormat("%u, ", thread->GetIndexID()); 739 else 740 result.AppendMessageWithFormat("%u ", thread->GetIndexID()); 741 742 const bool override_suspend = true; 743 thread->SetResumeState(eStateRunning, override_suspend); 744 } else { 745 thread->SetResumeState(eStateSuspended); 746 } 747 } 748 result.AppendMessageWithFormat("in process %" PRIu64 "\n", 749 process->GetID()); 750 } 751 } else { 752 // These two lines appear at the beginning of both blocks in this 753 // if..else, but that is because we need to release the lock before 754 // calling process->Resume below. 755 std::lock_guard<std::recursive_mutex> guard( 756 process->GetThreadList().GetMutex()); 757 const uint32_t num_threads = process->GetThreadList().GetSize(); 758 Thread *current_thread = GetDefaultThread(); 759 if (current_thread == nullptr) { 760 result.AppendError("the process doesn't have a current thread"); 761 return false; 762 } 763 // Set the actions that the threads should each take when resuming 764 for (uint32_t idx = 0; idx < num_threads; ++idx) { 765 Thread *thread = process->GetThreadList().GetThreadAtIndex(idx).get(); 766 if (thread == current_thread) { 767 result.AppendMessageWithFormat("Resuming thread 0x%4.4" PRIx64 768 " in process %" PRIu64 "\n", 769 thread->GetID(), process->GetID()); 770 const bool override_suspend = true; 771 thread->SetResumeState(eStateRunning, override_suspend); 772 } else { 773 thread->SetResumeState(eStateSuspended); 774 } 775 } 776 } 777 778 StreamString stream; 779 Status error; 780 if (synchronous_execution) 781 error = process->ResumeSynchronous(&stream); 782 else 783 error = process->Resume(); 784 785 // We should not be holding the thread list lock when we do this. 786 if (error.Success()) { 787 result.AppendMessageWithFormat("Process %" PRIu64 " resuming\n", 788 process->GetID()); 789 if (synchronous_execution) { 790 // If any state changed events had anything to say, add that to the 791 // result 792 if (stream.GetSize() > 0) 793 result.AppendMessage(stream.GetString()); 794 795 result.SetDidChangeProcessState(true); 796 result.SetStatus(eReturnStatusSuccessFinishNoResult); 797 } else { 798 result.SetStatus(eReturnStatusSuccessContinuingNoResult); 799 } 800 } else { 801 result.AppendErrorWithFormat("Failed to resume process: %s\n", 802 error.AsCString()); 803 } 804 } else { 805 result.AppendErrorWithFormat( 806 "Process cannot be continued from its current state (%s).\n", 807 StateAsCString(state)); 808 } 809 810 return result.Succeeded(); 811 } 812 }; 813 814 // CommandObjectThreadUntil 815 816 static constexpr OptionEnumValueElement g_duo_running_mode[] = { 817 {eOnlyThisThread, "this-thread", "Run only this thread"}, 818 {eAllThreads, "all-threads", "Run all threads"}}; 819 820 static constexpr OptionEnumValues DuoRunningModes() { 821 return OptionEnumValues(g_duo_running_mode); 822 } 823 824 #define LLDB_OPTIONS_thread_until 825 #include "CommandOptions.inc" 826 827 class CommandObjectThreadUntil : public CommandObjectParsed { 828 public: 829 class CommandOptions : public Options { 830 public: 831 uint32_t m_thread_idx = LLDB_INVALID_THREAD_ID; 832 uint32_t m_frame_idx = LLDB_INVALID_FRAME_ID; 833 834 CommandOptions() { 835 // Keep default values of all options in one place: OptionParsingStarting 836 // () 837 OptionParsingStarting(nullptr); 838 } 839 840 ~CommandOptions() override = default; 841 842 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 843 ExecutionContext *execution_context) override { 844 Status error; 845 const int short_option = m_getopt_table[option_idx].val; 846 847 switch (short_option) { 848 case 'a': { 849 lldb::addr_t tmp_addr = OptionArgParser::ToAddress( 850 execution_context, option_arg, LLDB_INVALID_ADDRESS, &error); 851 if (error.Success()) 852 m_until_addrs.push_back(tmp_addr); 853 } break; 854 case 't': 855 if (option_arg.getAsInteger(0, m_thread_idx)) { 856 m_thread_idx = LLDB_INVALID_INDEX32; 857 error.SetErrorStringWithFormat("invalid thread index '%s'", 858 option_arg.str().c_str()); 859 } 860 break; 861 case 'f': 862 if (option_arg.getAsInteger(0, m_frame_idx)) { 863 m_frame_idx = LLDB_INVALID_FRAME_ID; 864 error.SetErrorStringWithFormat("invalid frame index '%s'", 865 option_arg.str().c_str()); 866 } 867 break; 868 case 'm': { 869 auto enum_values = GetDefinitions()[option_idx].enum_values; 870 lldb::RunMode run_mode = (lldb::RunMode)OptionArgParser::ToOptionEnum( 871 option_arg, enum_values, eOnlyDuringStepping, error); 872 873 if (error.Success()) { 874 if (run_mode == eAllThreads) 875 m_stop_others = false; 876 else 877 m_stop_others = true; 878 } 879 } break; 880 default: 881 llvm_unreachable("Unimplemented option"); 882 } 883 return error; 884 } 885 886 void OptionParsingStarting(ExecutionContext *execution_context) override { 887 m_thread_idx = LLDB_INVALID_THREAD_ID; 888 m_frame_idx = 0; 889 m_stop_others = false; 890 m_until_addrs.clear(); 891 } 892 893 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 894 return llvm::makeArrayRef(g_thread_until_options); 895 } 896 897 uint32_t m_step_thread_idx; 898 bool m_stop_others; 899 std::vector<lldb::addr_t> m_until_addrs; 900 901 // Instance variables to hold the values for command options. 902 }; 903 904 CommandObjectThreadUntil(CommandInterpreter &interpreter) 905 : CommandObjectParsed( 906 interpreter, "thread until", 907 "Continue until a line number or address is reached by the " 908 "current or specified thread. Stops when returning from " 909 "the current function as a safety measure. " 910 "The target line number(s) are given as arguments, and if more " 911 "than one" 912 " is provided, stepping will stop when the first one is hit.", 913 nullptr, 914 eCommandRequiresThread | eCommandTryTargetAPILock | 915 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) { 916 CommandArgumentEntry arg; 917 CommandArgumentData line_num_arg; 918 919 // Define the first (and only) variant of this arg. 920 line_num_arg.arg_type = eArgTypeLineNum; 921 line_num_arg.arg_repetition = eArgRepeatPlain; 922 923 // There is only one variant this argument could be; put it into the 924 // argument entry. 925 arg.push_back(line_num_arg); 926 927 // Push the data for the first argument into the m_arguments vector. 928 m_arguments.push_back(arg); 929 } 930 931 ~CommandObjectThreadUntil() override = default; 932 933 Options *GetOptions() override { return &m_options; } 934 935 protected: 936 bool DoExecute(Args &command, CommandReturnObject &result) override { 937 bool synchronous_execution = m_interpreter.GetSynchronous(); 938 939 Target *target = &GetSelectedTarget(); 940 941 Process *process = m_exe_ctx.GetProcessPtr(); 942 if (process == nullptr) { 943 result.AppendError("need a valid process to step"); 944 } else { 945 Thread *thread = nullptr; 946 std::vector<uint32_t> line_numbers; 947 948 if (command.GetArgumentCount() >= 1) { 949 size_t num_args = command.GetArgumentCount(); 950 for (size_t i = 0; i < num_args; i++) { 951 uint32_t line_number; 952 if (!llvm::to_integer(command.GetArgumentAtIndex(i), line_number)) { 953 result.AppendErrorWithFormat("invalid line number: '%s'.\n", 954 command.GetArgumentAtIndex(i)); 955 return false; 956 } else 957 line_numbers.push_back(line_number); 958 } 959 } else if (m_options.m_until_addrs.empty()) { 960 result.AppendErrorWithFormat("No line number or address provided:\n%s", 961 GetSyntax().str().c_str()); 962 return false; 963 } 964 965 if (m_options.m_thread_idx == LLDB_INVALID_THREAD_ID) { 966 thread = GetDefaultThread(); 967 } else { 968 thread = process->GetThreadList() 969 .FindThreadByIndexID(m_options.m_thread_idx) 970 .get(); 971 } 972 973 if (thread == nullptr) { 974 const uint32_t num_threads = process->GetThreadList().GetSize(); 975 result.AppendErrorWithFormat( 976 "Thread index %u is out of range (valid values are 0 - %u).\n", 977 m_options.m_thread_idx, num_threads); 978 return false; 979 } 980 981 const bool abort_other_plans = false; 982 983 StackFrame *frame = 984 thread->GetStackFrameAtIndex(m_options.m_frame_idx).get(); 985 if (frame == nullptr) { 986 result.AppendErrorWithFormat( 987 "Frame index %u is out of range for thread id %" PRIu64 ".\n", 988 m_options.m_frame_idx, thread->GetID()); 989 return false; 990 } 991 992 ThreadPlanSP new_plan_sp; 993 Status new_plan_status; 994 995 if (frame->HasDebugInformation()) { 996 // Finally we got here... Translate the given line number to a bunch 997 // of addresses: 998 SymbolContext sc(frame->GetSymbolContext(eSymbolContextCompUnit)); 999 LineTable *line_table = nullptr; 1000 if (sc.comp_unit) 1001 line_table = sc.comp_unit->GetLineTable(); 1002 1003 if (line_table == nullptr) { 1004 result.AppendErrorWithFormat("Failed to resolve the line table for " 1005 "frame %u of thread id %" PRIu64 ".\n", 1006 m_options.m_frame_idx, thread->GetID()); 1007 return false; 1008 } 1009 1010 LineEntry function_start; 1011 uint32_t index_ptr = 0, end_ptr; 1012 std::vector<addr_t> address_list; 1013 1014 // Find the beginning & end index of the function, but first make 1015 // sure it is valid: 1016 if (!sc.function) { 1017 result.AppendErrorWithFormat("Have debug information but no " 1018 "function info - can't get until range."); 1019 return false; 1020 } 1021 1022 AddressRange fun_addr_range = sc.function->GetAddressRange(); 1023 Address fun_start_addr = fun_addr_range.GetBaseAddress(); 1024 line_table->FindLineEntryByAddress(fun_start_addr, function_start, 1025 &index_ptr); 1026 1027 Address fun_end_addr(fun_start_addr.GetSection(), 1028 fun_start_addr.GetOffset() + 1029 fun_addr_range.GetByteSize()); 1030 1031 bool all_in_function = true; 1032 1033 line_table->FindLineEntryByAddress(fun_end_addr, function_start, 1034 &end_ptr); 1035 1036 // Since not all source lines will contribute code, check if we are 1037 // setting the breakpoint on the exact line number or the nearest 1038 // subsequent line number and set breakpoints at all the line table 1039 // entries of the chosen line number (exact or nearest subsequent). 1040 for (uint32_t line_number : line_numbers) { 1041 LineEntry line_entry; 1042 bool exact = false; 1043 uint32_t start_idx_ptr = index_ptr; 1044 start_idx_ptr = sc.comp_unit->FindLineEntry( 1045 index_ptr, line_number, nullptr, exact, &line_entry); 1046 if (start_idx_ptr != UINT32_MAX) 1047 line_number = line_entry.line; 1048 exact = true; 1049 start_idx_ptr = index_ptr; 1050 while (start_idx_ptr <= end_ptr) { 1051 start_idx_ptr = sc.comp_unit->FindLineEntry( 1052 start_idx_ptr, line_number, nullptr, exact, &line_entry); 1053 if (start_idx_ptr == UINT32_MAX) 1054 break; 1055 1056 addr_t address = 1057 line_entry.range.GetBaseAddress().GetLoadAddress(target); 1058 if (address != LLDB_INVALID_ADDRESS) { 1059 if (fun_addr_range.ContainsLoadAddress(address, target)) 1060 address_list.push_back(address); 1061 else 1062 all_in_function = false; 1063 } 1064 start_idx_ptr++; 1065 } 1066 } 1067 1068 for (lldb::addr_t address : m_options.m_until_addrs) { 1069 if (fun_addr_range.ContainsLoadAddress(address, target)) 1070 address_list.push_back(address); 1071 else 1072 all_in_function = false; 1073 } 1074 1075 if (address_list.empty()) { 1076 if (all_in_function) 1077 result.AppendErrorWithFormat( 1078 "No line entries matching until target.\n"); 1079 else 1080 result.AppendErrorWithFormat( 1081 "Until target outside of the current function.\n"); 1082 1083 return false; 1084 } 1085 1086 new_plan_sp = thread->QueueThreadPlanForStepUntil( 1087 abort_other_plans, &address_list.front(), address_list.size(), 1088 m_options.m_stop_others, m_options.m_frame_idx, new_plan_status); 1089 if (new_plan_sp) { 1090 // User level plans should be controlling plans so they can be 1091 // interrupted 1092 // (e.g. by hitting a breakpoint) and other plans executed by the 1093 // user (stepping around the breakpoint) and then a "continue" will 1094 // resume the original plan. 1095 new_plan_sp->SetIsControllingPlan(true); 1096 new_plan_sp->SetOkayToDiscard(false); 1097 } else { 1098 result.SetError(new_plan_status); 1099 return false; 1100 } 1101 } else { 1102 result.AppendErrorWithFormat("Frame index %u of thread id %" PRIu64 1103 " has no debug information.\n", 1104 m_options.m_frame_idx, thread->GetID()); 1105 return false; 1106 } 1107 1108 if (!process->GetThreadList().SetSelectedThreadByID(thread->GetID())) { 1109 result.AppendErrorWithFormat( 1110 "Failed to set the selected thread to thread id %" PRIu64 ".\n", 1111 thread->GetID()); 1112 return false; 1113 } 1114 1115 StreamString stream; 1116 Status error; 1117 if (synchronous_execution) 1118 error = process->ResumeSynchronous(&stream); 1119 else 1120 error = process->Resume(); 1121 1122 if (error.Success()) { 1123 result.AppendMessageWithFormat("Process %" PRIu64 " resuming\n", 1124 process->GetID()); 1125 if (synchronous_execution) { 1126 // If any state changed events had anything to say, add that to the 1127 // result 1128 if (stream.GetSize() > 0) 1129 result.AppendMessage(stream.GetString()); 1130 1131 result.SetDidChangeProcessState(true); 1132 result.SetStatus(eReturnStatusSuccessFinishNoResult); 1133 } else { 1134 result.SetStatus(eReturnStatusSuccessContinuingNoResult); 1135 } 1136 } else { 1137 result.AppendErrorWithFormat("Failed to resume process: %s.\n", 1138 error.AsCString()); 1139 } 1140 } 1141 return result.Succeeded(); 1142 } 1143 1144 CommandOptions m_options; 1145 }; 1146 1147 // CommandObjectThreadSelect 1148 1149 class CommandObjectThreadSelect : public CommandObjectParsed { 1150 public: 1151 CommandObjectThreadSelect(CommandInterpreter &interpreter) 1152 : CommandObjectParsed(interpreter, "thread select", 1153 "Change the currently selected thread.", nullptr, 1154 eCommandRequiresProcess | eCommandTryTargetAPILock | 1155 eCommandProcessMustBeLaunched | 1156 eCommandProcessMustBePaused) { 1157 CommandArgumentEntry arg; 1158 CommandArgumentData thread_idx_arg; 1159 1160 // Define the first (and only) variant of this arg. 1161 thread_idx_arg.arg_type = eArgTypeThreadIndex; 1162 thread_idx_arg.arg_repetition = eArgRepeatPlain; 1163 1164 // There is only one variant this argument could be; put it into the 1165 // argument entry. 1166 arg.push_back(thread_idx_arg); 1167 1168 // Push the data for the first argument into the m_arguments vector. 1169 m_arguments.push_back(arg); 1170 } 1171 1172 ~CommandObjectThreadSelect() override = default; 1173 1174 void 1175 HandleArgumentCompletion(CompletionRequest &request, 1176 OptionElementVector &opt_element_vector) override { 1177 if (request.GetCursorIndex()) 1178 return; 1179 1180 CommandCompletions::InvokeCommonCompletionCallbacks( 1181 GetCommandInterpreter(), CommandCompletions::eThreadIndexCompletion, 1182 request, nullptr); 1183 } 1184 1185 protected: 1186 bool DoExecute(Args &command, CommandReturnObject &result) override { 1187 Process *process = m_exe_ctx.GetProcessPtr(); 1188 if (process == nullptr) { 1189 result.AppendError("no process"); 1190 return false; 1191 } else if (command.GetArgumentCount() != 1) { 1192 result.AppendErrorWithFormat( 1193 "'%s' takes exactly one thread index argument:\nUsage: %s\n", 1194 m_cmd_name.c_str(), m_cmd_syntax.c_str()); 1195 return false; 1196 } 1197 1198 uint32_t index_id; 1199 if (!llvm::to_integer(command.GetArgumentAtIndex(0), index_id)) { 1200 result.AppendErrorWithFormat("Invalid thread index '%s'", 1201 command.GetArgumentAtIndex(0)); 1202 return false; 1203 } 1204 1205 Thread *new_thread = 1206 process->GetThreadList().FindThreadByIndexID(index_id).get(); 1207 if (new_thread == nullptr) { 1208 result.AppendErrorWithFormat("invalid thread #%s.\n", 1209 command.GetArgumentAtIndex(0)); 1210 return false; 1211 } 1212 1213 process->GetThreadList().SetSelectedThreadByID(new_thread->GetID(), true); 1214 result.SetStatus(eReturnStatusSuccessFinishNoResult); 1215 1216 return result.Succeeded(); 1217 } 1218 }; 1219 1220 // CommandObjectThreadList 1221 1222 class CommandObjectThreadList : public CommandObjectParsed { 1223 public: 1224 CommandObjectThreadList(CommandInterpreter &interpreter) 1225 : CommandObjectParsed( 1226 interpreter, "thread list", 1227 "Show a summary of each thread in the current target process. " 1228 "Use 'settings set thread-format' to customize the individual " 1229 "thread listings.", 1230 "thread list", 1231 eCommandRequiresProcess | eCommandTryTargetAPILock | 1232 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) {} 1233 1234 ~CommandObjectThreadList() override = default; 1235 1236 protected: 1237 bool DoExecute(Args &command, CommandReturnObject &result) override { 1238 Stream &strm = result.GetOutputStream(); 1239 result.SetStatus(eReturnStatusSuccessFinishNoResult); 1240 Process *process = m_exe_ctx.GetProcessPtr(); 1241 const bool only_threads_with_stop_reason = false; 1242 const uint32_t start_frame = 0; 1243 const uint32_t num_frames = 0; 1244 const uint32_t num_frames_with_source = 0; 1245 process->GetStatus(strm); 1246 process->GetThreadStatus(strm, only_threads_with_stop_reason, start_frame, 1247 num_frames, num_frames_with_source, false); 1248 return result.Succeeded(); 1249 } 1250 }; 1251 1252 // CommandObjectThreadInfo 1253 #define LLDB_OPTIONS_thread_info 1254 #include "CommandOptions.inc" 1255 1256 class CommandObjectThreadInfo : public CommandObjectIterateOverThreads { 1257 public: 1258 class CommandOptions : public Options { 1259 public: 1260 CommandOptions() { OptionParsingStarting(nullptr); } 1261 1262 ~CommandOptions() override = default; 1263 1264 void OptionParsingStarting(ExecutionContext *execution_context) override { 1265 m_json_thread = false; 1266 m_json_stopinfo = false; 1267 } 1268 1269 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 1270 ExecutionContext *execution_context) override { 1271 const int short_option = m_getopt_table[option_idx].val; 1272 Status error; 1273 1274 switch (short_option) { 1275 case 'j': 1276 m_json_thread = true; 1277 break; 1278 1279 case 's': 1280 m_json_stopinfo = true; 1281 break; 1282 1283 default: 1284 llvm_unreachable("Unimplemented option"); 1285 } 1286 return error; 1287 } 1288 1289 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 1290 return llvm::makeArrayRef(g_thread_info_options); 1291 } 1292 1293 bool m_json_thread; 1294 bool m_json_stopinfo; 1295 }; 1296 1297 CommandObjectThreadInfo(CommandInterpreter &interpreter) 1298 : CommandObjectIterateOverThreads( 1299 interpreter, "thread info", 1300 "Show an extended summary of one or " 1301 "more threads. Defaults to the " 1302 "current thread.", 1303 "thread info", 1304 eCommandRequiresProcess | eCommandTryTargetAPILock | 1305 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) { 1306 m_add_return = false; 1307 } 1308 1309 ~CommandObjectThreadInfo() override = default; 1310 1311 void 1312 HandleArgumentCompletion(CompletionRequest &request, 1313 OptionElementVector &opt_element_vector) override { 1314 CommandCompletions::InvokeCommonCompletionCallbacks( 1315 GetCommandInterpreter(), CommandCompletions::eThreadIndexCompletion, 1316 request, nullptr); 1317 } 1318 1319 Options *GetOptions() override { return &m_options; } 1320 1321 bool HandleOneThread(lldb::tid_t tid, CommandReturnObject &result) override { 1322 ThreadSP thread_sp = 1323 m_exe_ctx.GetProcessPtr()->GetThreadList().FindThreadByID(tid); 1324 if (!thread_sp) { 1325 result.AppendErrorWithFormat("thread no longer exists: 0x%" PRIx64 "\n", 1326 tid); 1327 return false; 1328 } 1329 1330 Thread *thread = thread_sp.get(); 1331 1332 Stream &strm = result.GetOutputStream(); 1333 if (!thread->GetDescription(strm, eDescriptionLevelFull, 1334 m_options.m_json_thread, 1335 m_options.m_json_stopinfo)) { 1336 result.AppendErrorWithFormat("error displaying info for thread: \"%d\"\n", 1337 thread->GetIndexID()); 1338 return false; 1339 } 1340 return true; 1341 } 1342 1343 CommandOptions m_options; 1344 }; 1345 1346 // CommandObjectThreadException 1347 1348 class CommandObjectThreadException : public CommandObjectIterateOverThreads { 1349 public: 1350 CommandObjectThreadException(CommandInterpreter &interpreter) 1351 : CommandObjectIterateOverThreads( 1352 interpreter, "thread exception", 1353 "Display the current exception object for a thread. Defaults to " 1354 "the current thread.", 1355 "thread exception", 1356 eCommandRequiresProcess | eCommandTryTargetAPILock | 1357 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) {} 1358 1359 ~CommandObjectThreadException() override = default; 1360 1361 void 1362 HandleArgumentCompletion(CompletionRequest &request, 1363 OptionElementVector &opt_element_vector) override { 1364 CommandCompletions::InvokeCommonCompletionCallbacks( 1365 GetCommandInterpreter(), CommandCompletions::eThreadIndexCompletion, 1366 request, nullptr); 1367 } 1368 1369 bool HandleOneThread(lldb::tid_t tid, CommandReturnObject &result) override { 1370 ThreadSP thread_sp = 1371 m_exe_ctx.GetProcessPtr()->GetThreadList().FindThreadByID(tid); 1372 if (!thread_sp) { 1373 result.AppendErrorWithFormat("thread no longer exists: 0x%" PRIx64 "\n", 1374 tid); 1375 return false; 1376 } 1377 1378 Stream &strm = result.GetOutputStream(); 1379 ValueObjectSP exception_object_sp = thread_sp->GetCurrentException(); 1380 if (exception_object_sp) { 1381 exception_object_sp->Dump(strm); 1382 } 1383 1384 ThreadSP exception_thread_sp = thread_sp->GetCurrentExceptionBacktrace(); 1385 if (exception_thread_sp && exception_thread_sp->IsValid()) { 1386 const uint32_t num_frames_with_source = 0; 1387 const bool stop_format = false; 1388 exception_thread_sp->GetStatus(strm, 0, UINT32_MAX, 1389 num_frames_with_source, stop_format); 1390 } 1391 1392 return true; 1393 } 1394 }; 1395 1396 class CommandObjectThreadSiginfo : public CommandObjectIterateOverThreads { 1397 public: 1398 CommandObjectThreadSiginfo(CommandInterpreter &interpreter) 1399 : CommandObjectIterateOverThreads( 1400 interpreter, "thread siginfo", 1401 "Display the current siginfo object for a thread. Defaults to " 1402 "the current thread.", 1403 "thread siginfo", 1404 eCommandRequiresProcess | eCommandTryTargetAPILock | 1405 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) {} 1406 1407 ~CommandObjectThreadSiginfo() override = default; 1408 1409 void 1410 HandleArgumentCompletion(CompletionRequest &request, 1411 OptionElementVector &opt_element_vector) override { 1412 CommandCompletions::InvokeCommonCompletionCallbacks( 1413 GetCommandInterpreter(), CommandCompletions::eThreadIndexCompletion, 1414 request, nullptr); 1415 } 1416 1417 bool HandleOneThread(lldb::tid_t tid, CommandReturnObject &result) override { 1418 ThreadSP thread_sp = 1419 m_exe_ctx.GetProcessPtr()->GetThreadList().FindThreadByID(tid); 1420 if (!thread_sp) { 1421 result.AppendErrorWithFormat("thread no longer exists: 0x%" PRIx64 "\n", 1422 tid); 1423 return false; 1424 } 1425 1426 Stream &strm = result.GetOutputStream(); 1427 if (!thread_sp->GetDescription(strm, eDescriptionLevelFull, false, false)) { 1428 result.AppendErrorWithFormat("error displaying info for thread: \"%d\"\n", 1429 thread_sp->GetIndexID()); 1430 return false; 1431 } 1432 ValueObjectSP exception_object_sp = thread_sp->GetSiginfoValue(); 1433 if (exception_object_sp) 1434 exception_object_sp->Dump(strm); 1435 else 1436 strm.Printf("(no siginfo)\n"); 1437 strm.PutChar('\n'); 1438 1439 return true; 1440 } 1441 }; 1442 1443 // CommandObjectThreadReturn 1444 #define LLDB_OPTIONS_thread_return 1445 #include "CommandOptions.inc" 1446 1447 class CommandObjectThreadReturn : public CommandObjectRaw { 1448 public: 1449 class CommandOptions : public Options { 1450 public: 1451 CommandOptions() { 1452 // Keep default values of all options in one place: OptionParsingStarting 1453 // () 1454 OptionParsingStarting(nullptr); 1455 } 1456 1457 ~CommandOptions() override = default; 1458 1459 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 1460 ExecutionContext *execution_context) override { 1461 Status error; 1462 const int short_option = m_getopt_table[option_idx].val; 1463 1464 switch (short_option) { 1465 case 'x': { 1466 bool success; 1467 bool tmp_value = 1468 OptionArgParser::ToBoolean(option_arg, false, &success); 1469 if (success) 1470 m_from_expression = tmp_value; 1471 else { 1472 error.SetErrorStringWithFormat( 1473 "invalid boolean value '%s' for 'x' option", 1474 option_arg.str().c_str()); 1475 } 1476 } break; 1477 default: 1478 llvm_unreachable("Unimplemented option"); 1479 } 1480 return error; 1481 } 1482 1483 void OptionParsingStarting(ExecutionContext *execution_context) override { 1484 m_from_expression = false; 1485 } 1486 1487 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 1488 return llvm::makeArrayRef(g_thread_return_options); 1489 } 1490 1491 bool m_from_expression = false; 1492 1493 // Instance variables to hold the values for command options. 1494 }; 1495 1496 CommandObjectThreadReturn(CommandInterpreter &interpreter) 1497 : CommandObjectRaw(interpreter, "thread return", 1498 "Prematurely return from a stack frame, " 1499 "short-circuiting execution of newer frames " 1500 "and optionally yielding a specified value. Defaults " 1501 "to the exiting the current stack " 1502 "frame.", 1503 "thread return", 1504 eCommandRequiresFrame | eCommandTryTargetAPILock | 1505 eCommandProcessMustBeLaunched | 1506 eCommandProcessMustBePaused) { 1507 CommandArgumentEntry arg; 1508 CommandArgumentData expression_arg; 1509 1510 // Define the first (and only) variant of this arg. 1511 expression_arg.arg_type = eArgTypeExpression; 1512 expression_arg.arg_repetition = eArgRepeatOptional; 1513 1514 // There is only one variant this argument could be; put it into the 1515 // argument entry. 1516 arg.push_back(expression_arg); 1517 1518 // Push the data for the first argument into the m_arguments vector. 1519 m_arguments.push_back(arg); 1520 } 1521 1522 ~CommandObjectThreadReturn() override = default; 1523 1524 Options *GetOptions() override { return &m_options; } 1525 1526 protected: 1527 bool DoExecute(llvm::StringRef command, 1528 CommandReturnObject &result) override { 1529 // I am going to handle this by hand, because I don't want you to have to 1530 // say: 1531 // "thread return -- -5". 1532 if (command.startswith("-x")) { 1533 if (command.size() != 2U) 1534 result.AppendWarning("Return values ignored when returning from user " 1535 "called expressions"); 1536 1537 Thread *thread = m_exe_ctx.GetThreadPtr(); 1538 Status error; 1539 error = thread->UnwindInnermostExpression(); 1540 if (!error.Success()) { 1541 result.AppendErrorWithFormat("Unwinding expression failed - %s.", 1542 error.AsCString()); 1543 } else { 1544 bool success = 1545 thread->SetSelectedFrameByIndexNoisily(0, result.GetOutputStream()); 1546 if (success) { 1547 m_exe_ctx.SetFrameSP(thread->GetSelectedFrame()); 1548 result.SetStatus(eReturnStatusSuccessFinishResult); 1549 } else { 1550 result.AppendErrorWithFormat( 1551 "Could not select 0th frame after unwinding expression."); 1552 } 1553 } 1554 return result.Succeeded(); 1555 } 1556 1557 ValueObjectSP return_valobj_sp; 1558 1559 StackFrameSP frame_sp = m_exe_ctx.GetFrameSP(); 1560 uint32_t frame_idx = frame_sp->GetFrameIndex(); 1561 1562 if (frame_sp->IsInlined()) { 1563 result.AppendError("Don't know how to return from inlined frames."); 1564 return false; 1565 } 1566 1567 if (!command.empty()) { 1568 Target *target = m_exe_ctx.GetTargetPtr(); 1569 EvaluateExpressionOptions options; 1570 1571 options.SetUnwindOnError(true); 1572 options.SetUseDynamic(eNoDynamicValues); 1573 1574 ExpressionResults exe_results = eExpressionSetupError; 1575 exe_results = target->EvaluateExpression(command, frame_sp.get(), 1576 return_valobj_sp, options); 1577 if (exe_results != eExpressionCompleted) { 1578 if (return_valobj_sp) 1579 result.AppendErrorWithFormat( 1580 "Error evaluating result expression: %s", 1581 return_valobj_sp->GetError().AsCString()); 1582 else 1583 result.AppendErrorWithFormat( 1584 "Unknown error evaluating result expression."); 1585 return false; 1586 } 1587 } 1588 1589 Status error; 1590 ThreadSP thread_sp = m_exe_ctx.GetThreadSP(); 1591 const bool broadcast = true; 1592 error = thread_sp->ReturnFromFrame(frame_sp, return_valobj_sp, broadcast); 1593 if (!error.Success()) { 1594 result.AppendErrorWithFormat( 1595 "Error returning from frame %d of thread %d: %s.", frame_idx, 1596 thread_sp->GetIndexID(), error.AsCString()); 1597 return false; 1598 } 1599 1600 result.SetStatus(eReturnStatusSuccessFinishResult); 1601 return true; 1602 } 1603 1604 CommandOptions m_options; 1605 }; 1606 1607 // CommandObjectThreadJump 1608 #define LLDB_OPTIONS_thread_jump 1609 #include "CommandOptions.inc" 1610 1611 class CommandObjectThreadJump : public CommandObjectParsed { 1612 public: 1613 class CommandOptions : public Options { 1614 public: 1615 CommandOptions() { OptionParsingStarting(nullptr); } 1616 1617 ~CommandOptions() override = default; 1618 1619 void OptionParsingStarting(ExecutionContext *execution_context) override { 1620 m_filenames.Clear(); 1621 m_line_num = 0; 1622 m_line_offset = 0; 1623 m_load_addr = LLDB_INVALID_ADDRESS; 1624 m_force = false; 1625 } 1626 1627 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 1628 ExecutionContext *execution_context) override { 1629 const int short_option = m_getopt_table[option_idx].val; 1630 Status error; 1631 1632 switch (short_option) { 1633 case 'f': 1634 m_filenames.AppendIfUnique(FileSpec(option_arg)); 1635 if (m_filenames.GetSize() > 1) 1636 return Status("only one source file expected."); 1637 break; 1638 case 'l': 1639 if (option_arg.getAsInteger(0, m_line_num)) 1640 return Status("invalid line number: '%s'.", option_arg.str().c_str()); 1641 break; 1642 case 'b': 1643 if (option_arg.getAsInteger(0, m_line_offset)) 1644 return Status("invalid line offset: '%s'.", option_arg.str().c_str()); 1645 break; 1646 case 'a': 1647 m_load_addr = OptionArgParser::ToAddress(execution_context, option_arg, 1648 LLDB_INVALID_ADDRESS, &error); 1649 break; 1650 case 'r': 1651 m_force = true; 1652 break; 1653 default: 1654 llvm_unreachable("Unimplemented option"); 1655 } 1656 return error; 1657 } 1658 1659 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 1660 return llvm::makeArrayRef(g_thread_jump_options); 1661 } 1662 1663 FileSpecList m_filenames; 1664 uint32_t m_line_num; 1665 int32_t m_line_offset; 1666 lldb::addr_t m_load_addr; 1667 bool m_force; 1668 }; 1669 1670 CommandObjectThreadJump(CommandInterpreter &interpreter) 1671 : CommandObjectParsed( 1672 interpreter, "thread jump", 1673 "Sets the program counter to a new address.", "thread jump", 1674 eCommandRequiresFrame | eCommandTryTargetAPILock | 1675 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) {} 1676 1677 ~CommandObjectThreadJump() override = default; 1678 1679 Options *GetOptions() override { return &m_options; } 1680 1681 protected: 1682 bool DoExecute(Args &args, CommandReturnObject &result) override { 1683 RegisterContext *reg_ctx = m_exe_ctx.GetRegisterContext(); 1684 StackFrame *frame = m_exe_ctx.GetFramePtr(); 1685 Thread *thread = m_exe_ctx.GetThreadPtr(); 1686 Target *target = m_exe_ctx.GetTargetPtr(); 1687 const SymbolContext &sym_ctx = 1688 frame->GetSymbolContext(eSymbolContextLineEntry); 1689 1690 if (m_options.m_load_addr != LLDB_INVALID_ADDRESS) { 1691 // Use this address directly. 1692 Address dest = Address(m_options.m_load_addr); 1693 1694 lldb::addr_t callAddr = dest.GetCallableLoadAddress(target); 1695 if (callAddr == LLDB_INVALID_ADDRESS) { 1696 result.AppendErrorWithFormat("Invalid destination address."); 1697 return false; 1698 } 1699 1700 if (!reg_ctx->SetPC(callAddr)) { 1701 result.AppendErrorWithFormat("Error changing PC value for thread %d.", 1702 thread->GetIndexID()); 1703 return false; 1704 } 1705 } else { 1706 // Pick either the absolute line, or work out a relative one. 1707 int32_t line = (int32_t)m_options.m_line_num; 1708 if (line == 0) 1709 line = sym_ctx.line_entry.line + m_options.m_line_offset; 1710 1711 // Try the current file, but override if asked. 1712 FileSpec file = sym_ctx.line_entry.file; 1713 if (m_options.m_filenames.GetSize() == 1) 1714 file = m_options.m_filenames.GetFileSpecAtIndex(0); 1715 1716 if (!file) { 1717 result.AppendErrorWithFormat( 1718 "No source file available for the current location."); 1719 return false; 1720 } 1721 1722 std::string warnings; 1723 Status err = thread->JumpToLine(file, line, m_options.m_force, &warnings); 1724 1725 if (err.Fail()) { 1726 result.SetError(err); 1727 return false; 1728 } 1729 1730 if (!warnings.empty()) 1731 result.AppendWarning(warnings.c_str()); 1732 } 1733 1734 result.SetStatus(eReturnStatusSuccessFinishResult); 1735 return true; 1736 } 1737 1738 CommandOptions m_options; 1739 }; 1740 1741 // Next are the subcommands of CommandObjectMultiwordThreadPlan 1742 1743 // CommandObjectThreadPlanList 1744 #define LLDB_OPTIONS_thread_plan_list 1745 #include "CommandOptions.inc" 1746 1747 class CommandObjectThreadPlanList : public CommandObjectIterateOverThreads { 1748 public: 1749 class CommandOptions : public Options { 1750 public: 1751 CommandOptions() { 1752 // Keep default values of all options in one place: OptionParsingStarting 1753 // () 1754 OptionParsingStarting(nullptr); 1755 } 1756 1757 ~CommandOptions() override = default; 1758 1759 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 1760 ExecutionContext *execution_context) override { 1761 const int short_option = m_getopt_table[option_idx].val; 1762 1763 switch (short_option) { 1764 case 'i': 1765 m_internal = true; 1766 break; 1767 case 't': 1768 lldb::tid_t tid; 1769 if (option_arg.getAsInteger(0, tid)) 1770 return Status("invalid tid: '%s'.", option_arg.str().c_str()); 1771 m_tids.push_back(tid); 1772 break; 1773 case 'u': 1774 m_unreported = false; 1775 break; 1776 case 'v': 1777 m_verbose = true; 1778 break; 1779 default: 1780 llvm_unreachable("Unimplemented option"); 1781 } 1782 return {}; 1783 } 1784 1785 void OptionParsingStarting(ExecutionContext *execution_context) override { 1786 m_verbose = false; 1787 m_internal = false; 1788 m_unreported = true; // The variable is "skip unreported" and we want to 1789 // skip unreported by default. 1790 m_tids.clear(); 1791 } 1792 1793 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 1794 return llvm::makeArrayRef(g_thread_plan_list_options); 1795 } 1796 1797 // Instance variables to hold the values for command options. 1798 bool m_verbose; 1799 bool m_internal; 1800 bool m_unreported; 1801 std::vector<lldb::tid_t> m_tids; 1802 }; 1803 1804 CommandObjectThreadPlanList(CommandInterpreter &interpreter) 1805 : CommandObjectIterateOverThreads( 1806 interpreter, "thread plan list", 1807 "Show thread plans for one or more threads. If no threads are " 1808 "specified, show the " 1809 "current thread. Use the thread-index \"all\" to see all threads.", 1810 nullptr, 1811 eCommandRequiresProcess | eCommandRequiresThread | 1812 eCommandTryTargetAPILock | eCommandProcessMustBeLaunched | 1813 eCommandProcessMustBePaused) {} 1814 1815 ~CommandObjectThreadPlanList() override = default; 1816 1817 Options *GetOptions() override { return &m_options; } 1818 1819 bool DoExecute(Args &command, CommandReturnObject &result) override { 1820 // If we are reporting all threads, dispatch to the Process to do that: 1821 if (command.GetArgumentCount() == 0 && m_options.m_tids.empty()) { 1822 Stream &strm = result.GetOutputStream(); 1823 DescriptionLevel desc_level = m_options.m_verbose 1824 ? eDescriptionLevelVerbose 1825 : eDescriptionLevelFull; 1826 m_exe_ctx.GetProcessPtr()->DumpThreadPlans( 1827 strm, desc_level, m_options.m_internal, true, m_options.m_unreported); 1828 result.SetStatus(eReturnStatusSuccessFinishResult); 1829 return true; 1830 } else { 1831 // Do any TID's that the user may have specified as TID, then do any 1832 // Thread Indexes... 1833 if (!m_options.m_tids.empty()) { 1834 Process *process = m_exe_ctx.GetProcessPtr(); 1835 StreamString tmp_strm; 1836 for (lldb::tid_t tid : m_options.m_tids) { 1837 bool success = process->DumpThreadPlansForTID( 1838 tmp_strm, tid, eDescriptionLevelFull, m_options.m_internal, 1839 true /* condense_trivial */, m_options.m_unreported); 1840 // If we didn't find a TID, stop here and return an error. 1841 if (!success) { 1842 result.AppendError("Error dumping plans:"); 1843 result.AppendError(tmp_strm.GetString()); 1844 return false; 1845 } 1846 // Otherwise, add our data to the output: 1847 result.GetOutputStream() << tmp_strm.GetString(); 1848 } 1849 } 1850 return CommandObjectIterateOverThreads::DoExecute(command, result); 1851 } 1852 } 1853 1854 protected: 1855 bool HandleOneThread(lldb::tid_t tid, CommandReturnObject &result) override { 1856 // If we have already handled this from a -t option, skip it here. 1857 if (llvm::is_contained(m_options.m_tids, tid)) 1858 return true; 1859 1860 Process *process = m_exe_ctx.GetProcessPtr(); 1861 1862 Stream &strm = result.GetOutputStream(); 1863 DescriptionLevel desc_level = eDescriptionLevelFull; 1864 if (m_options.m_verbose) 1865 desc_level = eDescriptionLevelVerbose; 1866 1867 process->DumpThreadPlansForTID(strm, tid, desc_level, m_options.m_internal, 1868 true /* condense_trivial */, 1869 m_options.m_unreported); 1870 return true; 1871 } 1872 1873 CommandOptions m_options; 1874 }; 1875 1876 class CommandObjectThreadPlanDiscard : public CommandObjectParsed { 1877 public: 1878 CommandObjectThreadPlanDiscard(CommandInterpreter &interpreter) 1879 : CommandObjectParsed(interpreter, "thread plan discard", 1880 "Discards thread plans up to and including the " 1881 "specified index (see 'thread plan list'.) " 1882 "Only user visible plans can be discarded.", 1883 nullptr, 1884 eCommandRequiresProcess | eCommandRequiresThread | 1885 eCommandTryTargetAPILock | 1886 eCommandProcessMustBeLaunched | 1887 eCommandProcessMustBePaused) { 1888 CommandArgumentEntry arg; 1889 CommandArgumentData plan_index_arg; 1890 1891 // Define the first (and only) variant of this arg. 1892 plan_index_arg.arg_type = eArgTypeUnsignedInteger; 1893 plan_index_arg.arg_repetition = eArgRepeatPlain; 1894 1895 // There is only one variant this argument could be; put it into the 1896 // argument entry. 1897 arg.push_back(plan_index_arg); 1898 1899 // Push the data for the first argument into the m_arguments vector. 1900 m_arguments.push_back(arg); 1901 } 1902 1903 ~CommandObjectThreadPlanDiscard() override = default; 1904 1905 void 1906 HandleArgumentCompletion(CompletionRequest &request, 1907 OptionElementVector &opt_element_vector) override { 1908 if (!m_exe_ctx.HasThreadScope() || request.GetCursorIndex()) 1909 return; 1910 1911 m_exe_ctx.GetThreadPtr()->AutoCompleteThreadPlans(request); 1912 } 1913 1914 bool DoExecute(Args &args, CommandReturnObject &result) override { 1915 Thread *thread = m_exe_ctx.GetThreadPtr(); 1916 if (args.GetArgumentCount() != 1) { 1917 result.AppendErrorWithFormat("Too many arguments, expected one - the " 1918 "thread plan index - but got %zu.", 1919 args.GetArgumentCount()); 1920 return false; 1921 } 1922 1923 uint32_t thread_plan_idx; 1924 if (!llvm::to_integer(args.GetArgumentAtIndex(0), thread_plan_idx)) { 1925 result.AppendErrorWithFormat( 1926 "Invalid thread index: \"%s\" - should be unsigned int.", 1927 args.GetArgumentAtIndex(0)); 1928 return false; 1929 } 1930 1931 if (thread_plan_idx == 0) { 1932 result.AppendErrorWithFormat( 1933 "You wouldn't really want me to discard the base thread plan."); 1934 return false; 1935 } 1936 1937 if (thread->DiscardUserThreadPlansUpToIndex(thread_plan_idx)) { 1938 result.SetStatus(eReturnStatusSuccessFinishNoResult); 1939 return true; 1940 } else { 1941 result.AppendErrorWithFormat( 1942 "Could not find User thread plan with index %s.", 1943 args.GetArgumentAtIndex(0)); 1944 return false; 1945 } 1946 } 1947 }; 1948 1949 class CommandObjectThreadPlanPrune : public CommandObjectParsed { 1950 public: 1951 CommandObjectThreadPlanPrune(CommandInterpreter &interpreter) 1952 : CommandObjectParsed(interpreter, "thread plan prune", 1953 "Removes any thread plans associated with " 1954 "currently unreported threads. " 1955 "Specify one or more TID's to remove, or if no " 1956 "TID's are provides, remove threads for all " 1957 "unreported threads", 1958 nullptr, 1959 eCommandRequiresProcess | 1960 eCommandTryTargetAPILock | 1961 eCommandProcessMustBeLaunched | 1962 eCommandProcessMustBePaused) { 1963 CommandArgumentEntry arg; 1964 CommandArgumentData tid_arg; 1965 1966 // Define the first (and only) variant of this arg. 1967 tid_arg.arg_type = eArgTypeThreadID; 1968 tid_arg.arg_repetition = eArgRepeatStar; 1969 1970 // There is only one variant this argument could be; put it into the 1971 // argument entry. 1972 arg.push_back(tid_arg); 1973 1974 // Push the data for the first argument into the m_arguments vector. 1975 m_arguments.push_back(arg); 1976 } 1977 1978 ~CommandObjectThreadPlanPrune() override = default; 1979 1980 bool DoExecute(Args &args, CommandReturnObject &result) override { 1981 Process *process = m_exe_ctx.GetProcessPtr(); 1982 1983 if (args.GetArgumentCount() == 0) { 1984 process->PruneThreadPlans(); 1985 result.SetStatus(eReturnStatusSuccessFinishNoResult); 1986 return true; 1987 } 1988 1989 const size_t num_args = args.GetArgumentCount(); 1990 1991 std::lock_guard<std::recursive_mutex> guard( 1992 process->GetThreadList().GetMutex()); 1993 1994 for (size_t i = 0; i < num_args; i++) { 1995 lldb::tid_t tid; 1996 if (!llvm::to_integer(args.GetArgumentAtIndex(i), tid)) { 1997 result.AppendErrorWithFormat("invalid thread specification: \"%s\"\n", 1998 args.GetArgumentAtIndex(i)); 1999 return false; 2000 } 2001 if (!process->PruneThreadPlansForTID(tid)) { 2002 result.AppendErrorWithFormat("Could not find unreported tid: \"%s\"\n", 2003 args.GetArgumentAtIndex(i)); 2004 return false; 2005 } 2006 } 2007 result.SetStatus(eReturnStatusSuccessFinishNoResult); 2008 return true; 2009 } 2010 }; 2011 2012 // CommandObjectMultiwordThreadPlan 2013 2014 class CommandObjectMultiwordThreadPlan : public CommandObjectMultiword { 2015 public: 2016 CommandObjectMultiwordThreadPlan(CommandInterpreter &interpreter) 2017 : CommandObjectMultiword( 2018 interpreter, "plan", 2019 "Commands for managing thread plans that control execution.", 2020 "thread plan <subcommand> [<subcommand objects]") { 2021 LoadSubCommand( 2022 "list", CommandObjectSP(new CommandObjectThreadPlanList(interpreter))); 2023 LoadSubCommand( 2024 "discard", 2025 CommandObjectSP(new CommandObjectThreadPlanDiscard(interpreter))); 2026 LoadSubCommand( 2027 "prune", 2028 CommandObjectSP(new CommandObjectThreadPlanPrune(interpreter))); 2029 } 2030 2031 ~CommandObjectMultiwordThreadPlan() override = default; 2032 }; 2033 2034 // Next are the subcommands of CommandObjectMultiwordTrace 2035 2036 // CommandObjectTraceExport 2037 2038 class CommandObjectTraceExport : public CommandObjectMultiword { 2039 public: 2040 CommandObjectTraceExport(CommandInterpreter &interpreter) 2041 : CommandObjectMultiword( 2042 interpreter, "trace thread export", 2043 "Commands for exporting traces of the threads in the current " 2044 "process to different formats.", 2045 "thread trace export <export-plugin> [<subcommand objects>]") { 2046 2047 unsigned i = 0; 2048 for (llvm::StringRef plugin_name = 2049 PluginManager::GetTraceExporterPluginNameAtIndex(i); 2050 !plugin_name.empty(); 2051 plugin_name = PluginManager::GetTraceExporterPluginNameAtIndex(i++)) { 2052 if (ThreadTraceExportCommandCreator command_creator = 2053 PluginManager::GetThreadTraceExportCommandCreatorAtIndex(i)) { 2054 LoadSubCommand(plugin_name, command_creator(interpreter)); 2055 } 2056 } 2057 } 2058 }; 2059 2060 // CommandObjectTraceStart 2061 2062 class CommandObjectTraceStart : public CommandObjectTraceProxy { 2063 public: 2064 CommandObjectTraceStart(CommandInterpreter &interpreter) 2065 : CommandObjectTraceProxy( 2066 /*live_debug_session_only=*/true, interpreter, "thread trace start", 2067 "Start tracing threads with the corresponding trace " 2068 "plug-in for the current process.", 2069 "thread trace start [<trace-options>]") {} 2070 2071 protected: 2072 lldb::CommandObjectSP GetDelegateCommand(Trace &trace) override { 2073 return trace.GetThreadTraceStartCommand(m_interpreter); 2074 } 2075 }; 2076 2077 // CommandObjectTraceStop 2078 2079 class CommandObjectTraceStop : public CommandObjectMultipleThreads { 2080 public: 2081 CommandObjectTraceStop(CommandInterpreter &interpreter) 2082 : CommandObjectMultipleThreads( 2083 interpreter, "thread trace stop", 2084 "Stop tracing threads, including the ones traced with the " 2085 "\"process trace start\" command." 2086 "Defaults to the current thread. Thread indices can be " 2087 "specified as arguments.\n Use the thread-index \"all\" to stop " 2088 "tracing " 2089 "for all existing threads.", 2090 "thread trace stop [<thread-index> <thread-index> ...]", 2091 eCommandRequiresProcess | eCommandTryTargetAPILock | 2092 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused | 2093 eCommandProcessMustBeTraced) {} 2094 2095 ~CommandObjectTraceStop() override = default; 2096 2097 bool DoExecuteOnThreads(Args &command, CommandReturnObject &result, 2098 llvm::ArrayRef<lldb::tid_t> tids) override { 2099 ProcessSP process_sp = m_exe_ctx.GetProcessSP(); 2100 2101 TraceSP trace_sp = process_sp->GetTarget().GetTrace(); 2102 2103 if (llvm::Error err = trace_sp->Stop(tids)) 2104 result.AppendError(toString(std::move(err))); 2105 else 2106 result.SetStatus(eReturnStatusSuccessFinishResult); 2107 2108 return result.Succeeded(); 2109 } 2110 }; 2111 2112 // CommandObjectTraceDumpInstructions 2113 #define LLDB_OPTIONS_thread_trace_dump_instructions 2114 #include "CommandOptions.inc" 2115 2116 class CommandObjectTraceDumpInstructions : public CommandObjectParsed { 2117 public: 2118 class CommandOptions : public Options { 2119 public: 2120 CommandOptions() { OptionParsingStarting(nullptr); } 2121 2122 ~CommandOptions() override = default; 2123 2124 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 2125 ExecutionContext *execution_context) override { 2126 Status error; 2127 const int short_option = m_getopt_table[option_idx].val; 2128 2129 switch (short_option) { 2130 case 'c': { 2131 int32_t count; 2132 if (option_arg.empty() || option_arg.getAsInteger(0, count) || 2133 count < 0) 2134 error.SetErrorStringWithFormat( 2135 "invalid integer value for option '%s'", 2136 option_arg.str().c_str()); 2137 else 2138 m_count = count; 2139 break; 2140 } 2141 case 'a': { 2142 m_count = std::numeric_limits<decltype(m_count)>::max(); 2143 break; 2144 } 2145 case 's': { 2146 int32_t skip; 2147 if (option_arg.empty() || option_arg.getAsInteger(0, skip) || skip < 0) 2148 error.SetErrorStringWithFormat( 2149 "invalid integer value for option '%s'", 2150 option_arg.str().c_str()); 2151 else 2152 m_dumper_options.skip = skip; 2153 break; 2154 } 2155 case 'i': { 2156 uint64_t id; 2157 if (option_arg.empty() || option_arg.getAsInteger(0, id)) 2158 error.SetErrorStringWithFormat( 2159 "invalid integer value for option '%s'", 2160 option_arg.str().c_str()); 2161 else 2162 m_dumper_options.id = id; 2163 break; 2164 } 2165 case 'F': { 2166 m_output_file.emplace(option_arg); 2167 break; 2168 } 2169 case 'r': { 2170 m_dumper_options.raw = true; 2171 break; 2172 } 2173 case 'f': { 2174 m_dumper_options.forwards = true; 2175 break; 2176 } 2177 case 'k': { 2178 m_dumper_options.show_control_flow_kind = true; 2179 break; 2180 } 2181 case 't': { 2182 m_dumper_options.show_tsc = true; 2183 break; 2184 } 2185 case 'e': { 2186 m_dumper_options.show_events = true; 2187 break; 2188 } 2189 case 'j': { 2190 m_dumper_options.json = true; 2191 break; 2192 } 2193 case 'J': { 2194 m_dumper_options.pretty_print_json = true; 2195 m_dumper_options.json = true; 2196 break; 2197 } 2198 case 'C': { 2199 m_continue = true; 2200 break; 2201 } 2202 default: 2203 llvm_unreachable("Unimplemented option"); 2204 } 2205 return error; 2206 } 2207 2208 void OptionParsingStarting(ExecutionContext *execution_context) override { 2209 m_count = kDefaultCount; 2210 m_continue = false; 2211 m_output_file = llvm::None; 2212 m_dumper_options = {}; 2213 } 2214 2215 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 2216 return llvm::makeArrayRef(g_thread_trace_dump_instructions_options); 2217 } 2218 2219 static const size_t kDefaultCount = 20; 2220 2221 // Instance variables to hold the values for command options. 2222 size_t m_count; 2223 size_t m_continue; 2224 llvm::Optional<FileSpec> m_output_file; 2225 TraceDumperOptions m_dumper_options; 2226 }; 2227 2228 CommandObjectTraceDumpInstructions(CommandInterpreter &interpreter) 2229 : CommandObjectParsed( 2230 interpreter, "thread trace dump instructions", 2231 "Dump the traced instructions for one thread. If no " 2232 "thread is specified, show the current thread.", 2233 nullptr, 2234 eCommandRequiresProcess | eCommandRequiresThread | 2235 eCommandTryTargetAPILock | eCommandProcessMustBeLaunched | 2236 eCommandProcessMustBePaused | eCommandProcessMustBeTraced) { 2237 CommandArgumentData thread_arg{eArgTypeThreadIndex, eArgRepeatOptional}; 2238 m_arguments.push_back({thread_arg}); 2239 } 2240 2241 ~CommandObjectTraceDumpInstructions() override = default; 2242 2243 Options *GetOptions() override { return &m_options; } 2244 2245 llvm::Optional<std::string> GetRepeatCommand(Args ¤t_command_args, 2246 uint32_t index) override { 2247 std::string cmd; 2248 current_command_args.GetCommandString(cmd); 2249 if (cmd.find(" --continue") == std::string::npos) 2250 cmd += " --continue"; 2251 return cmd; 2252 } 2253 2254 protected: 2255 ThreadSP GetThread(Args &args, CommandReturnObject &result) { 2256 if (args.GetArgumentCount() == 0) 2257 return m_exe_ctx.GetThreadSP(); 2258 2259 const char *arg = args.GetArgumentAtIndex(0); 2260 uint32_t thread_idx; 2261 2262 if (!llvm::to_integer(arg, thread_idx)) { 2263 result.AppendErrorWithFormat("invalid thread specification: \"%s\"\n", 2264 arg); 2265 return nullptr; 2266 } 2267 ThreadSP thread_sp = 2268 m_exe_ctx.GetProcessRef().GetThreadList().FindThreadByIndexID( 2269 thread_idx); 2270 if (!thread_sp) 2271 result.AppendErrorWithFormat("no thread with index: \"%s\"\n", arg); 2272 return thread_sp; 2273 } 2274 2275 bool DoExecute(Args &args, CommandReturnObject &result) override { 2276 ThreadSP thread_sp = GetThread(args, result); 2277 if (!thread_sp) { 2278 result.AppendError("invalid thread\n"); 2279 return false; 2280 } 2281 2282 if (m_options.m_continue && m_last_id) { 2283 // We set up the options to continue one instruction past where 2284 // the previous iteration stopped. 2285 m_options.m_dumper_options.skip = 1; 2286 m_options.m_dumper_options.id = m_last_id; 2287 } 2288 2289 llvm::Expected<TraceCursorUP> cursor_or_error = 2290 m_exe_ctx.GetTargetSP()->GetTrace()->CreateNewCursor(*thread_sp); 2291 2292 if (!cursor_or_error) { 2293 result.AppendError(llvm::toString(cursor_or_error.takeError())); 2294 return false; 2295 } 2296 TraceCursorUP &cursor_up = *cursor_or_error; 2297 2298 if (m_options.m_dumper_options.id && 2299 !cursor_up->HasId(*m_options.m_dumper_options.id)) { 2300 result.AppendError("invalid instruction id\n"); 2301 return false; 2302 } 2303 2304 llvm::Optional<StreamFile> out_file; 2305 if (m_options.m_output_file) { 2306 out_file.emplace(m_options.m_output_file->GetPath().c_str(), 2307 File::eOpenOptionWriteOnly | File::eOpenOptionCanCreate, 2308 lldb::eFilePermissionsFileDefault); 2309 } 2310 2311 if (m_options.m_continue && !m_last_id) { 2312 // We need to stop processing data when we already ran out of instructions 2313 // in a previous command. We can fake this by setting the cursor past the 2314 // end of the trace. 2315 cursor_up->Seek(1, TraceCursor::SeekType::End); 2316 } 2317 2318 TraceDumper dumper(std::move(cursor_up), 2319 out_file ? *out_file : result.GetOutputStream(), 2320 m_options.m_dumper_options); 2321 2322 m_last_id = dumper.DumpInstructions(m_options.m_count); 2323 return true; 2324 } 2325 2326 CommandOptions m_options; 2327 // Last traversed id used to continue a repeat command. None means 2328 // that all the trace has been consumed. 2329 llvm::Optional<lldb::user_id_t> m_last_id; 2330 }; 2331 2332 // CommandObjectTraceDumpInfo 2333 #define LLDB_OPTIONS_thread_trace_dump_info 2334 #include "CommandOptions.inc" 2335 2336 class CommandObjectTraceDumpInfo : public CommandObjectIterateOverThreads { 2337 public: 2338 class CommandOptions : public Options { 2339 public: 2340 CommandOptions() { OptionParsingStarting(nullptr); } 2341 2342 ~CommandOptions() override = default; 2343 2344 Status SetOptionValue(uint32_t option_idx, llvm::StringRef option_arg, 2345 ExecutionContext *execution_context) override { 2346 Status error; 2347 const int short_option = m_getopt_table[option_idx].val; 2348 2349 switch (short_option) { 2350 case 'v': { 2351 m_verbose = true; 2352 break; 2353 } 2354 default: 2355 llvm_unreachable("Unimplemented option"); 2356 } 2357 return error; 2358 } 2359 2360 void OptionParsingStarting(ExecutionContext *execution_context) override { 2361 m_verbose = false; 2362 } 2363 2364 llvm::ArrayRef<OptionDefinition> GetDefinitions() override { 2365 return llvm::makeArrayRef(g_thread_trace_dump_info_options); 2366 } 2367 2368 // Instance variables to hold the values for command options. 2369 bool m_verbose; 2370 }; 2371 2372 bool DoExecute(Args &command, CommandReturnObject &result) override { 2373 Target &target = m_exe_ctx.GetTargetRef(); 2374 result.GetOutputStream().Format("Trace technology: {0}\n", 2375 target.GetTrace()->GetPluginName()); 2376 return CommandObjectIterateOverThreads::DoExecute(command, result); 2377 } 2378 2379 CommandObjectTraceDumpInfo(CommandInterpreter &interpreter) 2380 : CommandObjectIterateOverThreads( 2381 interpreter, "thread trace dump info", 2382 "Dump the traced information for one or more threads. If no " 2383 "threads are specified, show the current thread. Use the " 2384 "thread-index \"all\" to see all threads.", 2385 nullptr, 2386 eCommandRequiresProcess | eCommandTryTargetAPILock | 2387 eCommandProcessMustBeLaunched | eCommandProcessMustBePaused | 2388 eCommandProcessMustBeTraced) {} 2389 2390 ~CommandObjectTraceDumpInfo() override = default; 2391 2392 Options *GetOptions() override { return &m_options; } 2393 2394 protected: 2395 bool HandleOneThread(lldb::tid_t tid, CommandReturnObject &result) override { 2396 const TraceSP &trace_sp = m_exe_ctx.GetTargetSP()->GetTrace(); 2397 ThreadSP thread_sp = 2398 m_exe_ctx.GetProcessPtr()->GetThreadList().FindThreadByID(tid); 2399 trace_sp->DumpTraceInfo(*thread_sp, result.GetOutputStream(), 2400 m_options.m_verbose); 2401 return true; 2402 } 2403 2404 CommandOptions m_options; 2405 }; 2406 2407 // CommandObjectMultiwordTraceDump 2408 class CommandObjectMultiwordTraceDump : public CommandObjectMultiword { 2409 public: 2410 CommandObjectMultiwordTraceDump(CommandInterpreter &interpreter) 2411 : CommandObjectMultiword( 2412 interpreter, "dump", 2413 "Commands for displaying trace information of the threads " 2414 "in the current process.", 2415 "thread trace dump <subcommand> [<subcommand objects>]") { 2416 LoadSubCommand( 2417 "instructions", 2418 CommandObjectSP(new CommandObjectTraceDumpInstructions(interpreter))); 2419 LoadSubCommand( 2420 "info", CommandObjectSP(new CommandObjectTraceDumpInfo(interpreter))); 2421 } 2422 ~CommandObjectMultiwordTraceDump() override = default; 2423 }; 2424 2425 // CommandObjectMultiwordTrace 2426 class CommandObjectMultiwordTrace : public CommandObjectMultiword { 2427 public: 2428 CommandObjectMultiwordTrace(CommandInterpreter &interpreter) 2429 : CommandObjectMultiword( 2430 interpreter, "trace", 2431 "Commands for operating on traces of the threads in the current " 2432 "process.", 2433 "thread trace <subcommand> [<subcommand objects>]") { 2434 LoadSubCommand("dump", CommandObjectSP(new CommandObjectMultiwordTraceDump( 2435 interpreter))); 2436 LoadSubCommand("start", 2437 CommandObjectSP(new CommandObjectTraceStart(interpreter))); 2438 LoadSubCommand("stop", 2439 CommandObjectSP(new CommandObjectTraceStop(interpreter))); 2440 LoadSubCommand("export", 2441 CommandObjectSP(new CommandObjectTraceExport(interpreter))); 2442 } 2443 2444 ~CommandObjectMultiwordTrace() override = default; 2445 }; 2446 2447 // CommandObjectMultiwordThread 2448 2449 CommandObjectMultiwordThread::CommandObjectMultiwordThread( 2450 CommandInterpreter &interpreter) 2451 : CommandObjectMultiword(interpreter, "thread", 2452 "Commands for operating on " 2453 "one or more threads in " 2454 "the current process.", 2455 "thread <subcommand> [<subcommand-options>]") { 2456 LoadSubCommand("backtrace", CommandObjectSP(new CommandObjectThreadBacktrace( 2457 interpreter))); 2458 LoadSubCommand("continue", 2459 CommandObjectSP(new CommandObjectThreadContinue(interpreter))); 2460 LoadSubCommand("list", 2461 CommandObjectSP(new CommandObjectThreadList(interpreter))); 2462 LoadSubCommand("return", 2463 CommandObjectSP(new CommandObjectThreadReturn(interpreter))); 2464 LoadSubCommand("jump", 2465 CommandObjectSP(new CommandObjectThreadJump(interpreter))); 2466 LoadSubCommand("select", 2467 CommandObjectSP(new CommandObjectThreadSelect(interpreter))); 2468 LoadSubCommand("until", 2469 CommandObjectSP(new CommandObjectThreadUntil(interpreter))); 2470 LoadSubCommand("info", 2471 CommandObjectSP(new CommandObjectThreadInfo(interpreter))); 2472 LoadSubCommand("exception", CommandObjectSP(new CommandObjectThreadException( 2473 interpreter))); 2474 LoadSubCommand("siginfo", 2475 CommandObjectSP(new CommandObjectThreadSiginfo(interpreter))); 2476 LoadSubCommand("step-in", 2477 CommandObjectSP(new CommandObjectThreadStepWithTypeAndScope( 2478 interpreter, "thread step-in", 2479 "Source level single step, stepping into calls. Defaults " 2480 "to current thread unless specified.", 2481 nullptr, eStepTypeInto, eStepScopeSource))); 2482 2483 LoadSubCommand("step-out", 2484 CommandObjectSP(new CommandObjectThreadStepWithTypeAndScope( 2485 interpreter, "thread step-out", 2486 "Finish executing the current stack frame and stop after " 2487 "returning. Defaults to current thread unless specified.", 2488 nullptr, eStepTypeOut, eStepScopeSource))); 2489 2490 LoadSubCommand("step-over", 2491 CommandObjectSP(new CommandObjectThreadStepWithTypeAndScope( 2492 interpreter, "thread step-over", 2493 "Source level single step, stepping over calls. Defaults " 2494 "to current thread unless specified.", 2495 nullptr, eStepTypeOver, eStepScopeSource))); 2496 2497 LoadSubCommand("step-inst", 2498 CommandObjectSP(new CommandObjectThreadStepWithTypeAndScope( 2499 interpreter, "thread step-inst", 2500 "Instruction level single step, stepping into calls. " 2501 "Defaults to current thread unless specified.", 2502 nullptr, eStepTypeTrace, eStepScopeInstruction))); 2503 2504 LoadSubCommand("step-inst-over", 2505 CommandObjectSP(new CommandObjectThreadStepWithTypeAndScope( 2506 interpreter, "thread step-inst-over", 2507 "Instruction level single step, stepping over calls. " 2508 "Defaults to current thread unless specified.", 2509 nullptr, eStepTypeTraceOver, eStepScopeInstruction))); 2510 2511 LoadSubCommand( 2512 "step-scripted", 2513 CommandObjectSP(new CommandObjectThreadStepWithTypeAndScope( 2514 interpreter, "thread step-scripted", 2515 "Step as instructed by the script class passed in the -C option. " 2516 "You can also specify a dictionary of key (-k) and value (-v) pairs " 2517 "that will be used to populate an SBStructuredData Dictionary, which " 2518 "will be passed to the constructor of the class implementing the " 2519 "scripted step. See the Python Reference for more details.", 2520 nullptr, eStepTypeScripted, eStepScopeSource))); 2521 2522 LoadSubCommand("plan", CommandObjectSP(new CommandObjectMultiwordThreadPlan( 2523 interpreter))); 2524 LoadSubCommand("trace", 2525 CommandObjectSP(new CommandObjectMultiwordTrace(interpreter))); 2526 } 2527 2528 CommandObjectMultiwordThread::~CommandObjectMultiwordThread() = default; 2529