1 //===-- CommandObjectExpression.cpp ---------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "llvm/ADT/StringRef.h" 10 11 #include "CommandObjectExpression.h" 12 #include "lldb/Core/Debugger.h" 13 #include "lldb/Expression/ExpressionVariable.h" 14 #include "lldb/Expression/REPL.h" 15 #include "lldb/Expression/UserExpression.h" 16 #include "lldb/Host/OptionParser.h" 17 #include "lldb/Interpreter/CommandInterpreter.h" 18 #include "lldb/Interpreter/CommandOptionArgumentTable.h" 19 #include "lldb/Interpreter/CommandReturnObject.h" 20 #include "lldb/Interpreter/OptionArgParser.h" 21 #include "lldb/Target/Language.h" 22 #include "lldb/Target/Process.h" 23 #include "lldb/Target/StackFrame.h" 24 #include "lldb/Target/Target.h" 25 #include "lldb/lldb-enumerations.h" 26 #include "lldb/lldb-private-enumerations.h" 27 28 using namespace lldb; 29 using namespace lldb_private; 30 31 CommandObjectExpression::CommandOptions::CommandOptions() = default; 32 33 CommandObjectExpression::CommandOptions::~CommandOptions() = default; 34 35 #define LLDB_OPTIONS_expression 36 #include "CommandOptions.inc" 37 38 Status CommandObjectExpression::CommandOptions::SetOptionValue( 39 uint32_t option_idx, llvm::StringRef option_arg, 40 ExecutionContext *execution_context) { 41 Status error; 42 43 const int short_option = GetDefinitions()[option_idx].short_option; 44 45 switch (short_option) { 46 case 'l': 47 language = Language::GetLanguageTypeFromString(option_arg); 48 if (language == eLanguageTypeUnknown) { 49 StreamString sstr; 50 sstr.Printf("unknown language type: '%s' for expression. " 51 "List of supported languages:\n", 52 option_arg.str().c_str()); 53 54 Language::PrintSupportedLanguagesForExpressions(sstr, " ", "\n"); 55 error.SetErrorString(sstr.GetString()); 56 } 57 break; 58 59 case 'a': { 60 bool success; 61 bool result; 62 result = OptionArgParser::ToBoolean(option_arg, true, &success); 63 if (!success) 64 error.SetErrorStringWithFormat( 65 "invalid all-threads value setting: \"%s\"", 66 option_arg.str().c_str()); 67 else 68 try_all_threads = result; 69 } break; 70 71 case 'i': { 72 bool success; 73 bool tmp_value = OptionArgParser::ToBoolean(option_arg, true, &success); 74 if (success) 75 ignore_breakpoints = tmp_value; 76 else 77 error.SetErrorStringWithFormat( 78 "could not convert \"%s\" to a boolean value.", 79 option_arg.str().c_str()); 80 break; 81 } 82 83 case 'j': { 84 bool success; 85 bool tmp_value = OptionArgParser::ToBoolean(option_arg, true, &success); 86 if (success) 87 allow_jit = tmp_value; 88 else 89 error.SetErrorStringWithFormat( 90 "could not convert \"%s\" to a boolean value.", 91 option_arg.str().c_str()); 92 break; 93 } 94 95 case 't': 96 if (option_arg.getAsInteger(0, timeout)) { 97 timeout = 0; 98 error.SetErrorStringWithFormat("invalid timeout setting \"%s\"", 99 option_arg.str().c_str()); 100 } 101 break; 102 103 case 'u': { 104 bool success; 105 bool tmp_value = OptionArgParser::ToBoolean(option_arg, true, &success); 106 if (success) 107 unwind_on_error = tmp_value; 108 else 109 error.SetErrorStringWithFormat( 110 "could not convert \"%s\" to a boolean value.", 111 option_arg.str().c_str()); 112 break; 113 } 114 115 case 'v': 116 if (option_arg.empty()) { 117 m_verbosity = eLanguageRuntimeDescriptionDisplayVerbosityFull; 118 break; 119 } 120 m_verbosity = (LanguageRuntimeDescriptionDisplayVerbosity) 121 OptionArgParser::ToOptionEnum( 122 option_arg, GetDefinitions()[option_idx].enum_values, 0, error); 123 if (!error.Success()) 124 error.SetErrorStringWithFormat( 125 "unrecognized value for description-verbosity '%s'", 126 option_arg.str().c_str()); 127 break; 128 129 case 'g': 130 debug = true; 131 unwind_on_error = false; 132 ignore_breakpoints = false; 133 break; 134 135 case 'p': 136 top_level = true; 137 break; 138 139 case 'X': { 140 bool success; 141 bool tmp_value = OptionArgParser::ToBoolean(option_arg, true, &success); 142 if (success) 143 auto_apply_fixits = tmp_value ? eLazyBoolYes : eLazyBoolNo; 144 else 145 error.SetErrorStringWithFormat( 146 "could not convert \"%s\" to a boolean value.", 147 option_arg.str().c_str()); 148 break; 149 } 150 151 case '\x01': { 152 bool success; 153 bool persist_result = 154 OptionArgParser::ToBoolean(option_arg, true, &success); 155 if (success) 156 suppress_persistent_result = !persist_result ? eLazyBoolYes : eLazyBoolNo; 157 else 158 error.SetErrorStringWithFormat( 159 "could not convert \"%s\" to a boolean value.", 160 option_arg.str().c_str()); 161 break; 162 } 163 164 default: 165 llvm_unreachable("Unimplemented option"); 166 } 167 168 return error; 169 } 170 171 void CommandObjectExpression::CommandOptions::OptionParsingStarting( 172 ExecutionContext *execution_context) { 173 auto process_sp = 174 execution_context ? execution_context->GetProcessSP() : ProcessSP(); 175 if (process_sp) { 176 ignore_breakpoints = process_sp->GetIgnoreBreakpointsInExpressions(); 177 unwind_on_error = process_sp->GetUnwindOnErrorInExpressions(); 178 } else { 179 ignore_breakpoints = true; 180 unwind_on_error = true; 181 } 182 183 show_summary = true; 184 try_all_threads = true; 185 timeout = 0; 186 debug = false; 187 language = eLanguageTypeUnknown; 188 m_verbosity = eLanguageRuntimeDescriptionDisplayVerbosityCompact; 189 auto_apply_fixits = eLazyBoolCalculate; 190 top_level = false; 191 allow_jit = true; 192 suppress_persistent_result = eLazyBoolCalculate; 193 } 194 195 llvm::ArrayRef<OptionDefinition> 196 CommandObjectExpression::CommandOptions::GetDefinitions() { 197 return llvm::ArrayRef(g_expression_options); 198 } 199 200 EvaluateExpressionOptions 201 CommandObjectExpression::CommandOptions::GetEvaluateExpressionOptions( 202 const Target &target, const OptionGroupValueObjectDisplay &display_opts) { 203 EvaluateExpressionOptions options; 204 options.SetCoerceToId(display_opts.use_objc); 205 options.SetUnwindOnError(unwind_on_error); 206 options.SetIgnoreBreakpoints(ignore_breakpoints); 207 options.SetKeepInMemory(true); 208 options.SetUseDynamic(display_opts.use_dynamic); 209 options.SetTryAllThreads(try_all_threads); 210 options.SetDebug(debug); 211 options.SetLanguage(language); 212 options.SetExecutionPolicy( 213 allow_jit ? EvaluateExpressionOptions::default_execution_policy 214 : lldb_private::eExecutionPolicyNever); 215 216 bool auto_apply_fixits; 217 if (this->auto_apply_fixits == eLazyBoolCalculate) 218 auto_apply_fixits = target.GetEnableAutoApplyFixIts(); 219 else 220 auto_apply_fixits = this->auto_apply_fixits == eLazyBoolYes; 221 222 options.SetAutoApplyFixIts(auto_apply_fixits); 223 options.SetRetriesWithFixIts(target.GetNumberOfRetriesWithFixits()); 224 225 if (top_level) 226 options.SetExecutionPolicy(eExecutionPolicyTopLevel); 227 228 // If there is any chance we are going to stop and want to see what went 229 // wrong with our expression, we should generate debug info 230 if (!ignore_breakpoints || !unwind_on_error) 231 options.SetGenerateDebugInfo(true); 232 233 if (timeout > 0) 234 options.SetTimeout(std::chrono::microseconds(timeout)); 235 else 236 options.SetTimeout(std::nullopt); 237 return options; 238 } 239 240 bool CommandObjectExpression::CommandOptions::ShouldSuppressResult( 241 const OptionGroupValueObjectDisplay &display_opts) const { 242 // Explicitly disabling persistent results takes precedence over the 243 // m_verbosity/use_objc logic. 244 if (suppress_persistent_result != eLazyBoolCalculate) 245 return suppress_persistent_result == eLazyBoolYes; 246 247 return display_opts.use_objc && 248 m_verbosity == eLanguageRuntimeDescriptionDisplayVerbosityCompact; 249 } 250 251 CommandObjectExpression::CommandObjectExpression( 252 CommandInterpreter &interpreter) 253 : CommandObjectRaw(interpreter, "expression", 254 "Evaluate an expression on the current " 255 "thread. Displays any returned value " 256 "with LLDB's default formatting.", 257 "", 258 eCommandProcessMustBePaused | eCommandTryTargetAPILock), 259 IOHandlerDelegate(IOHandlerDelegate::Completion::Expression), 260 m_format_options(eFormatDefault), 261 m_repl_option(LLDB_OPT_SET_1, false, "repl", 'r', "Drop into REPL", false, 262 true), 263 m_expr_line_count(0) { 264 SetHelpLong( 265 R"( 266 Single and multi-line expressions: 267 268 )" 269 " The expression provided on the command line must be a complete expression \ 270 with no newlines. To evaluate a multi-line expression, \ 271 hit a return after an empty expression, and lldb will enter the multi-line expression editor. \ 272 Hit return on an empty line to end the multi-line expression." 273 274 R"( 275 276 Timeouts: 277 278 )" 279 " If the expression can be evaluated statically (without running code) then it will be. \ 280 Otherwise, by default the expression will run on the current thread with a short timeout: \ 281 currently .25 seconds. If it doesn't return in that time, the evaluation will be interrupted \ 282 and resumed with all threads running. You can use the -a option to disable retrying on all \ 283 threads. You can use the -t option to set a shorter timeout." 284 R"( 285 286 User defined variables: 287 288 )" 289 " You can define your own variables for convenience or to be used in subsequent expressions. \ 290 You define them the same way you would define variables in C. If the first character of \ 291 your user defined variable is a $, then the variable's value will be available in future \ 292 expressions, otherwise it will just be available in the current expression." 293 R"( 294 295 Continuing evaluation after a breakpoint: 296 297 )" 298 " If the \"-i false\" option is used, and execution is interrupted by a breakpoint hit, once \ 299 you are done with your investigation, you can either remove the expression execution frames \ 300 from the stack with \"thread return -x\" or if you are still interested in the expression result \ 301 you can issue the \"continue\" command and the expression evaluation will complete and the \ 302 expression result will be available using the \"thread.completed-expression\" key in the thread \ 303 format." 304 305 R"( 306 307 Examples: 308 309 expr my_struct->a = my_array[3] 310 expr -f bin -- (index * 8) + 5 311 expr unsigned int $foo = 5 312 expr char c[] = \"foo\"; c[0])"); 313 314 AddSimpleArgumentList(eArgTypeExpression); 315 316 // Add the "--format" and "--gdb-format" 317 m_option_group.Append(&m_format_options, 318 OptionGroupFormat::OPTION_GROUP_FORMAT | 319 OptionGroupFormat::OPTION_GROUP_GDB_FMT, 320 LLDB_OPT_SET_1); 321 m_option_group.Append(&m_command_options); 322 m_option_group.Append(&m_varobj_options, LLDB_OPT_SET_ALL, 323 LLDB_OPT_SET_1 | LLDB_OPT_SET_2); 324 m_option_group.Append(&m_repl_option, LLDB_OPT_SET_ALL, LLDB_OPT_SET_3); 325 m_option_group.Finalize(); 326 } 327 328 CommandObjectExpression::~CommandObjectExpression() = default; 329 330 Options *CommandObjectExpression::GetOptions() { return &m_option_group; } 331 332 void CommandObjectExpression::HandleCompletion(CompletionRequest &request) { 333 EvaluateExpressionOptions options; 334 options.SetCoerceToId(m_varobj_options.use_objc); 335 options.SetLanguage(m_command_options.language); 336 options.SetExecutionPolicy(lldb_private::eExecutionPolicyNever); 337 options.SetAutoApplyFixIts(false); 338 options.SetGenerateDebugInfo(false); 339 340 ExecutionContext exe_ctx(m_interpreter.GetExecutionContext()); 341 342 // Get out before we start doing things that expect a valid frame pointer. 343 if (exe_ctx.GetFramePtr() == nullptr) 344 return; 345 346 Target *exe_target = exe_ctx.GetTargetPtr(); 347 Target &target = exe_target ? *exe_target : GetDummyTarget(); 348 349 unsigned cursor_pos = request.GetRawCursorPos(); 350 // Get the full user input including the suffix. The suffix is necessary 351 // as OptionsWithRaw will use it to detect if the cursor is cursor is in the 352 // argument part of in the raw input part of the arguments. If we cut of 353 // of the suffix then "expr -arg[cursor] --" would interpret the "-arg" as 354 // the raw input (as the "--" is hidden in the suffix). 355 llvm::StringRef code = request.GetRawLineWithUnusedSuffix(); 356 357 const std::size_t original_code_size = code.size(); 358 359 // Remove the first token which is 'expr' or some alias/abbreviation of that. 360 code = llvm::getToken(code).second.ltrim(); 361 OptionsWithRaw args(code); 362 code = args.GetRawPart(); 363 364 // The position where the expression starts in the command line. 365 assert(original_code_size >= code.size()); 366 std::size_t raw_start = original_code_size - code.size(); 367 368 // Check if the cursor is actually in the expression string, and if not, we 369 // exit. 370 // FIXME: We should complete the options here. 371 if (cursor_pos < raw_start) 372 return; 373 374 // Make the cursor_pos again relative to the start of the code string. 375 assert(cursor_pos >= raw_start); 376 cursor_pos -= raw_start; 377 378 auto language = exe_ctx.GetFrameRef().GetLanguage(); 379 380 Status error; 381 lldb::UserExpressionSP expr(target.GetUserExpressionForLanguage( 382 code, llvm::StringRef(), language, UserExpression::eResultTypeAny, 383 options, nullptr, error)); 384 if (error.Fail()) 385 return; 386 387 expr->Complete(exe_ctx, request, cursor_pos); 388 } 389 390 static lldb_private::Status 391 CanBeUsedForElementCountPrinting(ValueObject &valobj) { 392 CompilerType type(valobj.GetCompilerType()); 393 CompilerType pointee; 394 if (!type.IsPointerType(&pointee)) 395 return Status("as it does not refer to a pointer"); 396 if (pointee.IsVoidType()) 397 return Status("as it refers to a pointer to void"); 398 return Status(); 399 } 400 401 bool CommandObjectExpression::EvaluateExpression(llvm::StringRef expr, 402 Stream &output_stream, 403 Stream &error_stream, 404 CommandReturnObject &result) { 405 // Don't use m_exe_ctx as this might be called asynchronously after the 406 // command object DoExecute has finished when doing multi-line expression 407 // that use an input reader... 408 ExecutionContext exe_ctx(m_interpreter.GetExecutionContext()); 409 Target *exe_target = exe_ctx.GetTargetPtr(); 410 Target &target = exe_target ? *exe_target : GetDummyTarget(); 411 412 lldb::ValueObjectSP result_valobj_sp; 413 StackFrame *frame = exe_ctx.GetFramePtr(); 414 415 if (m_command_options.top_level && !m_command_options.allow_jit) { 416 result.AppendErrorWithFormat( 417 "Can't disable JIT compilation for top-level expressions.\n"); 418 return false; 419 } 420 421 EvaluateExpressionOptions eval_options = 422 m_command_options.GetEvaluateExpressionOptions(target, m_varobj_options); 423 // This command manually removes the result variable, make sure expression 424 // evaluation doesn't do it first. 425 eval_options.SetSuppressPersistentResult(false); 426 427 ExpressionResults success = target.EvaluateExpression( 428 expr, frame, result_valobj_sp, eval_options, &m_fixed_expression); 429 430 // Only mention Fix-Its if the expression evaluator applied them. 431 // Compiler errors refer to the final expression after applying Fix-It(s). 432 if (!m_fixed_expression.empty() && target.GetEnableNotifyAboutFixIts()) { 433 error_stream << " Evaluated this expression after applying Fix-It(s):\n"; 434 error_stream << " " << m_fixed_expression << "\n"; 435 } 436 437 if (result_valobj_sp) { 438 Format format = m_format_options.GetFormat(); 439 440 if (result_valobj_sp->GetError().Success()) { 441 if (format != eFormatVoid) { 442 if (format != eFormatDefault) 443 result_valobj_sp->SetFormat(format); 444 445 if (m_varobj_options.elem_count > 0) { 446 Status error(CanBeUsedForElementCountPrinting(*result_valobj_sp)); 447 if (error.Fail()) { 448 result.AppendErrorWithFormat( 449 "expression cannot be used with --element-count %s\n", 450 error.AsCString("")); 451 return false; 452 } 453 } 454 455 bool suppress_result = 456 m_command_options.ShouldSuppressResult(m_varobj_options); 457 458 DumpValueObjectOptions options(m_varobj_options.GetAsDumpOptions( 459 m_command_options.m_verbosity, format)); 460 options.SetHideRootName(suppress_result); 461 options.SetVariableFormatDisplayLanguage( 462 result_valobj_sp->GetPreferredDisplayLanguage()); 463 464 if (llvm::Error error = 465 result_valobj_sp->Dump(output_stream, options)) { 466 result.AppendError(toString(std::move(error))); 467 return false; 468 } 469 470 if (suppress_result) 471 if (auto result_var_sp = 472 target.GetPersistentVariable(result_valobj_sp->GetName())) { 473 auto language = result_valobj_sp->GetPreferredDisplayLanguage(); 474 if (auto *persistent_state = 475 target.GetPersistentExpressionStateForLanguage(language)) 476 persistent_state->RemovePersistentVariable(result_var_sp); 477 } 478 result.SetStatus(eReturnStatusSuccessFinishResult); 479 } 480 } else { 481 if (result_valobj_sp->GetError().GetError() == 482 UserExpression::kNoResult) { 483 if (format != eFormatVoid && GetDebugger().GetNotifyVoid()) { 484 error_stream.PutCString("(void)\n"); 485 } 486 487 result.SetStatus(eReturnStatusSuccessFinishResult); 488 } else { 489 const char *error_cstr = result_valobj_sp->GetError().AsCString(); 490 if (error_cstr && error_cstr[0]) { 491 const size_t error_cstr_len = strlen(error_cstr); 492 const bool ends_with_newline = error_cstr[error_cstr_len - 1] == '\n'; 493 if (strstr(error_cstr, "error:") != error_cstr) 494 error_stream.PutCString("error: "); 495 error_stream.Write(error_cstr, error_cstr_len); 496 if (!ends_with_newline) 497 error_stream.EOL(); 498 } else { 499 error_stream.PutCString("error: unknown error\n"); 500 } 501 502 result.SetStatus(eReturnStatusFailed); 503 } 504 } 505 } else { 506 error_stream.Printf("error: unknown error\n"); 507 } 508 509 return (success != eExpressionSetupError && 510 success != eExpressionParseError); 511 } 512 513 void CommandObjectExpression::IOHandlerInputComplete(IOHandler &io_handler, 514 std::string &line) { 515 io_handler.SetIsDone(true); 516 StreamFileSP output_sp = io_handler.GetOutputStreamFileSP(); 517 StreamFileSP error_sp = io_handler.GetErrorStreamFileSP(); 518 519 CommandReturnObject return_obj( 520 GetCommandInterpreter().GetDebugger().GetUseColor()); 521 EvaluateExpression(line.c_str(), *output_sp, *error_sp, return_obj); 522 if (output_sp) 523 output_sp->Flush(); 524 if (error_sp) 525 error_sp->Flush(); 526 } 527 528 bool CommandObjectExpression::IOHandlerIsInputComplete(IOHandler &io_handler, 529 StringList &lines) { 530 // An empty lines is used to indicate the end of input 531 const size_t num_lines = lines.GetSize(); 532 if (num_lines > 0 && lines[num_lines - 1].empty()) { 533 // Remove the last empty line from "lines" so it doesn't appear in our 534 // resulting input and return true to indicate we are done getting lines 535 lines.PopBack(); 536 return true; 537 } 538 return false; 539 } 540 541 void CommandObjectExpression::GetMultilineExpression() { 542 m_expr_lines.clear(); 543 m_expr_line_count = 0; 544 545 Debugger &debugger = GetCommandInterpreter().GetDebugger(); 546 bool color_prompt = debugger.GetUseColor(); 547 const bool multiple_lines = true; // Get multiple lines 548 IOHandlerSP io_handler_sp( 549 new IOHandlerEditline(debugger, IOHandler::Type::Expression, 550 "lldb-expr", // Name of input reader for history 551 llvm::StringRef(), // No prompt 552 llvm::StringRef(), // Continuation prompt 553 multiple_lines, color_prompt, 554 1, // Show line numbers starting at 1 555 *this)); 556 557 StreamFileSP output_sp = io_handler_sp->GetOutputStreamFileSP(); 558 if (output_sp) { 559 output_sp->PutCString( 560 "Enter expressions, then terminate with an empty line to evaluate:\n"); 561 output_sp->Flush(); 562 } 563 debugger.RunIOHandlerAsync(io_handler_sp); 564 } 565 566 static EvaluateExpressionOptions 567 GetExprOptions(ExecutionContext &ctx, 568 CommandObjectExpression::CommandOptions command_options) { 569 command_options.OptionParsingStarting(&ctx); 570 571 // Default certain settings for REPL regardless of the global settings. 572 command_options.unwind_on_error = false; 573 command_options.ignore_breakpoints = false; 574 command_options.debug = false; 575 576 EvaluateExpressionOptions expr_options; 577 expr_options.SetUnwindOnError(command_options.unwind_on_error); 578 expr_options.SetIgnoreBreakpoints(command_options.ignore_breakpoints); 579 expr_options.SetTryAllThreads(command_options.try_all_threads); 580 581 if (command_options.timeout > 0) 582 expr_options.SetTimeout(std::chrono::microseconds(command_options.timeout)); 583 else 584 expr_options.SetTimeout(std::nullopt); 585 586 return expr_options; 587 } 588 589 void CommandObjectExpression::DoExecute(llvm::StringRef command, 590 CommandReturnObject &result) { 591 m_fixed_expression.clear(); 592 auto exe_ctx = GetCommandInterpreter().GetExecutionContext(); 593 m_option_group.NotifyOptionParsingStarting(&exe_ctx); 594 595 if (command.empty()) { 596 GetMultilineExpression(); 597 return; 598 } 599 600 OptionsWithRaw args(command); 601 llvm::StringRef expr = args.GetRawPart(); 602 603 if (args.HasArgs()) { 604 if (!ParseOptionsAndNotify(args.GetArgs(), result, m_option_group, exe_ctx)) 605 return; 606 607 if (m_repl_option.GetOptionValue().GetCurrentValue()) { 608 Target &target = GetSelectedOrDummyTarget(); 609 // Drop into REPL 610 m_expr_lines.clear(); 611 m_expr_line_count = 0; 612 613 Debugger &debugger = target.GetDebugger(); 614 615 // Check if the LLDB command interpreter is sitting on top of a REPL 616 // that launched it... 617 if (debugger.CheckTopIOHandlerTypes(IOHandler::Type::CommandInterpreter, 618 IOHandler::Type::REPL)) { 619 // the LLDB command interpreter is sitting on top of a REPL that 620 // launched it, so just say the command interpreter is done and 621 // fall back to the existing REPL 622 m_interpreter.GetIOHandler(false)->SetIsDone(true); 623 } else { 624 // We are launching the REPL on top of the current LLDB command 625 // interpreter, so just push one 626 bool initialize = false; 627 Status repl_error; 628 REPLSP repl_sp(target.GetREPL(repl_error, m_command_options.language, 629 nullptr, false)); 630 631 if (!repl_sp) { 632 initialize = true; 633 repl_sp = target.GetREPL(repl_error, m_command_options.language, 634 nullptr, true); 635 if (!repl_error.Success()) { 636 result.SetError(repl_error); 637 return; 638 } 639 } 640 641 if (repl_sp) { 642 if (initialize) { 643 repl_sp->SetEvaluateOptions( 644 GetExprOptions(exe_ctx, m_command_options)); 645 repl_sp->SetFormatOptions(m_format_options); 646 repl_sp->SetValueObjectDisplayOptions(m_varobj_options); 647 } 648 649 IOHandlerSP io_handler_sp(repl_sp->GetIOHandler()); 650 io_handler_sp->SetIsDone(false); 651 debugger.RunIOHandlerAsync(io_handler_sp); 652 } else { 653 repl_error.SetErrorStringWithFormat( 654 "Couldn't create a REPL for %s", 655 Language::GetNameForLanguageType(m_command_options.language)); 656 result.SetError(repl_error); 657 return; 658 } 659 } 660 } 661 // No expression following options 662 else if (expr.empty()) { 663 GetMultilineExpression(); 664 return; 665 } 666 } 667 668 Target &target = GetSelectedOrDummyTarget(); 669 if (EvaluateExpression(expr, result.GetOutputStream(), 670 result.GetErrorStream(), result)) { 671 672 if (!m_fixed_expression.empty() && target.GetEnableNotifyAboutFixIts()) { 673 CommandHistory &history = m_interpreter.GetCommandHistory(); 674 // FIXME: Can we figure out what the user actually typed (e.g. some alias 675 // for expr???) 676 // If we can it would be nice to show that. 677 std::string fixed_command("expression "); 678 if (args.HasArgs()) { 679 // Add in any options that might have been in the original command: 680 fixed_command.append(std::string(args.GetArgStringWithDelimiter())); 681 fixed_command.append(m_fixed_expression); 682 } else 683 fixed_command.append(m_fixed_expression); 684 history.AppendString(fixed_command); 685 } 686 return; 687 } 688 result.SetStatus(eReturnStatusFailed); 689 } 690