1 //===-- ClangUserExpression.cpp ---------------------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include <stdio.h> 10 #if HAVE_SYS_TYPES_H 11 #include <sys/types.h> 12 #endif 13 14 #include <cstdlib> 15 #include <map> 16 #include <string> 17 18 #include "ClangUserExpression.h" 19 20 #include "ASTResultSynthesizer.h" 21 #include "ClangDiagnostic.h" 22 #include "ClangExpressionDeclMap.h" 23 #include "ClangExpressionParser.h" 24 #include "ClangExpressionSourceCode.h" 25 #include "ClangModulesDeclVendor.h" 26 #include "ClangPersistentVariables.h" 27 28 #include "lldb/Core/Debugger.h" 29 #include "lldb/Core/Module.h" 30 #include "lldb/Core/StreamFile.h" 31 #include "lldb/Core/ValueObjectConstResult.h" 32 #include "lldb/Expression/ExpressionSourceCode.h" 33 #include "lldb/Expression/IRExecutionUnit.h" 34 #include "lldb/Expression/IRInterpreter.h" 35 #include "lldb/Expression/Materializer.h" 36 #include "lldb/Host/HostInfo.h" 37 #include "lldb/Symbol/Block.h" 38 #include "lldb/Symbol/ClangASTContext.h" 39 #include "lldb/Symbol/ClangExternalASTSourceCommon.h" 40 #include "lldb/Symbol/CompileUnit.h" 41 #include "lldb/Symbol/Function.h" 42 #include "lldb/Symbol/ObjectFile.h" 43 #include "lldb/Symbol/SymbolVendor.h" 44 #include "lldb/Symbol/Type.h" 45 #include "lldb/Symbol/VariableList.h" 46 #include "lldb/Target/ExecutionContext.h" 47 #include "lldb/Target/Process.h" 48 #include "lldb/Target/StackFrame.h" 49 #include "lldb/Target/Target.h" 50 #include "lldb/Target/ThreadPlan.h" 51 #include "lldb/Target/ThreadPlanCallUserExpression.h" 52 #include "lldb/Utility/ConstString.h" 53 #include "lldb/Utility/Log.h" 54 #include "lldb/Utility/StreamString.h" 55 56 #include "clang/AST/DeclCXX.h" 57 #include "clang/AST/DeclObjC.h" 58 59 using namespace lldb_private; 60 61 ClangUserExpression::ClangUserExpression( 62 ExecutionContextScope &exe_scope, llvm::StringRef expr, 63 llvm::StringRef prefix, lldb::LanguageType language, 64 ResultType desired_type, const EvaluateExpressionOptions &options, 65 ValueObject *ctx_obj) 66 : LLVMUserExpression(exe_scope, expr, prefix, language, desired_type, 67 options, eKindClangUserExpression), 68 m_type_system_helper(*m_target_wp.lock(), options.GetExecutionPolicy() == 69 eExecutionPolicyTopLevel), 70 m_result_delegate(exe_scope.CalculateTarget()), m_ctx_obj(ctx_obj) { 71 switch (m_language) { 72 case lldb::eLanguageTypeC_plus_plus: 73 m_allow_cxx = true; 74 break; 75 case lldb::eLanguageTypeObjC: 76 m_allow_objc = true; 77 break; 78 case lldb::eLanguageTypeObjC_plus_plus: 79 default: 80 m_allow_cxx = true; 81 m_allow_objc = true; 82 break; 83 } 84 } 85 86 ClangUserExpression::~ClangUserExpression() {} 87 88 void ClangUserExpression::ScanContext(ExecutionContext &exe_ctx, Status &err) { 89 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS)); 90 91 if (log) 92 log->Printf("ClangUserExpression::ScanContext()"); 93 94 m_target = exe_ctx.GetTargetPtr(); 95 96 if (!(m_allow_cxx || m_allow_objc)) { 97 if (log) 98 log->Printf(" [CUE::SC] Settings inhibit C++ and Objective-C"); 99 return; 100 } 101 102 StackFrame *frame = exe_ctx.GetFramePtr(); 103 if (frame == NULL) { 104 if (log) 105 log->Printf(" [CUE::SC] Null stack frame"); 106 return; 107 } 108 109 SymbolContext sym_ctx = frame->GetSymbolContext(lldb::eSymbolContextFunction | 110 lldb::eSymbolContextBlock); 111 112 if (!sym_ctx.function) { 113 if (log) 114 log->Printf(" [CUE::SC] Null function"); 115 return; 116 } 117 118 // Find the block that defines the function represented by "sym_ctx" 119 Block *function_block = sym_ctx.GetFunctionBlock(); 120 121 if (!function_block) { 122 if (log) 123 log->Printf(" [CUE::SC] Null function block"); 124 return; 125 } 126 127 CompilerDeclContext decl_context = function_block->GetDeclContext(); 128 129 if (!decl_context) { 130 if (log) 131 log->Printf(" [CUE::SC] Null decl context"); 132 return; 133 } 134 135 if (m_ctx_obj) { 136 switch (m_ctx_obj->GetObjectRuntimeLanguage()) { 137 case lldb::eLanguageTypeC: 138 case lldb::eLanguageTypeC89: 139 case lldb::eLanguageTypeC99: 140 case lldb::eLanguageTypeC11: 141 case lldb::eLanguageTypeC_plus_plus: 142 case lldb::eLanguageTypeC_plus_plus_03: 143 case lldb::eLanguageTypeC_plus_plus_11: 144 case lldb::eLanguageTypeC_plus_plus_14: 145 m_in_cplusplus_method = true; 146 break; 147 case lldb::eLanguageTypeObjC: 148 case lldb::eLanguageTypeObjC_plus_plus: 149 m_in_objectivec_method = true; 150 break; 151 default: 152 break; 153 } 154 m_needs_object_ptr = true; 155 } else if (clang::CXXMethodDecl *method_decl = 156 ClangASTContext::DeclContextGetAsCXXMethodDecl(decl_context)) { 157 if (m_allow_cxx && method_decl->isInstance()) { 158 if (m_enforce_valid_object) { 159 lldb::VariableListSP variable_list_sp( 160 function_block->GetBlockVariableList(true)); 161 162 const char *thisErrorString = "Stopped in a C++ method, but 'this' " 163 "isn't available; pretending we are in a " 164 "generic context"; 165 166 if (!variable_list_sp) { 167 err.SetErrorString(thisErrorString); 168 return; 169 } 170 171 lldb::VariableSP this_var_sp( 172 variable_list_sp->FindVariable(ConstString("this"))); 173 174 if (!this_var_sp || !this_var_sp->IsInScope(frame) || 175 !this_var_sp->LocationIsValidForFrame(frame)) { 176 err.SetErrorString(thisErrorString); 177 return; 178 } 179 } 180 181 m_in_cplusplus_method = true; 182 m_needs_object_ptr = true; 183 } 184 } else if (clang::ObjCMethodDecl *method_decl = 185 ClangASTContext::DeclContextGetAsObjCMethodDecl( 186 decl_context)) { 187 if (m_allow_objc) { 188 if (m_enforce_valid_object) { 189 lldb::VariableListSP variable_list_sp( 190 function_block->GetBlockVariableList(true)); 191 192 const char *selfErrorString = "Stopped in an Objective-C method, but " 193 "'self' isn't available; pretending we " 194 "are in a generic context"; 195 196 if (!variable_list_sp) { 197 err.SetErrorString(selfErrorString); 198 return; 199 } 200 201 lldb::VariableSP self_variable_sp = 202 variable_list_sp->FindVariable(ConstString("self")); 203 204 if (!self_variable_sp || !self_variable_sp->IsInScope(frame) || 205 !self_variable_sp->LocationIsValidForFrame(frame)) { 206 err.SetErrorString(selfErrorString); 207 return; 208 } 209 } 210 211 m_in_objectivec_method = true; 212 m_needs_object_ptr = true; 213 214 if (!method_decl->isInstanceMethod()) 215 m_in_static_method = true; 216 } 217 } else if (clang::FunctionDecl *function_decl = 218 ClangASTContext::DeclContextGetAsFunctionDecl(decl_context)) { 219 // We might also have a function that said in the debug information that it 220 // captured an object pointer. The best way to deal with getting to the 221 // ivars at present is by pretending that this is a method of a class in 222 // whatever runtime the debug info says the object pointer belongs to. Do 223 // that here. 224 225 ClangASTMetadata *metadata = 226 ClangASTContext::DeclContextGetMetaData(decl_context, function_decl); 227 if (metadata && metadata->HasObjectPtr()) { 228 lldb::LanguageType language = metadata->GetObjectPtrLanguage(); 229 if (language == lldb::eLanguageTypeC_plus_plus) { 230 if (m_enforce_valid_object) { 231 lldb::VariableListSP variable_list_sp( 232 function_block->GetBlockVariableList(true)); 233 234 const char *thisErrorString = "Stopped in a context claiming to " 235 "capture a C++ object pointer, but " 236 "'this' isn't available; pretending we " 237 "are in a generic context"; 238 239 if (!variable_list_sp) { 240 err.SetErrorString(thisErrorString); 241 return; 242 } 243 244 lldb::VariableSP this_var_sp( 245 variable_list_sp->FindVariable(ConstString("this"))); 246 247 if (!this_var_sp || !this_var_sp->IsInScope(frame) || 248 !this_var_sp->LocationIsValidForFrame(frame)) { 249 err.SetErrorString(thisErrorString); 250 return; 251 } 252 } 253 254 m_in_cplusplus_method = true; 255 m_needs_object_ptr = true; 256 } else if (language == lldb::eLanguageTypeObjC) { 257 if (m_enforce_valid_object) { 258 lldb::VariableListSP variable_list_sp( 259 function_block->GetBlockVariableList(true)); 260 261 const char *selfErrorString = 262 "Stopped in a context claiming to capture an Objective-C object " 263 "pointer, but 'self' isn't available; pretending we are in a " 264 "generic context"; 265 266 if (!variable_list_sp) { 267 err.SetErrorString(selfErrorString); 268 return; 269 } 270 271 lldb::VariableSP self_variable_sp = 272 variable_list_sp->FindVariable(ConstString("self")); 273 274 if (!self_variable_sp || !self_variable_sp->IsInScope(frame) || 275 !self_variable_sp->LocationIsValidForFrame(frame)) { 276 err.SetErrorString(selfErrorString); 277 return; 278 } 279 280 Type *self_type = self_variable_sp->GetType(); 281 282 if (!self_type) { 283 err.SetErrorString(selfErrorString); 284 return; 285 } 286 287 CompilerType self_clang_type = self_type->GetForwardCompilerType(); 288 289 if (!self_clang_type) { 290 err.SetErrorString(selfErrorString); 291 return; 292 } 293 294 if (ClangASTContext::IsObjCClassType(self_clang_type)) { 295 return; 296 } else if (ClangASTContext::IsObjCObjectPointerType( 297 self_clang_type)) { 298 m_in_objectivec_method = true; 299 m_needs_object_ptr = true; 300 } else { 301 err.SetErrorString(selfErrorString); 302 return; 303 } 304 } else { 305 m_in_objectivec_method = true; 306 m_needs_object_ptr = true; 307 } 308 } 309 } 310 } 311 } 312 313 // This is a really nasty hack, meant to fix Objective-C expressions of the 314 // form (int)[myArray count]. Right now, because the type information for 315 // count is not available, [myArray count] returns id, which can't be directly 316 // cast to int without causing a clang error. 317 static void ApplyObjcCastHack(std::string &expr) { 318 #define OBJC_CAST_HACK_FROM "(int)[" 319 #define OBJC_CAST_HACK_TO "(int)(long long)[" 320 321 size_t from_offset; 322 323 while ((from_offset = expr.find(OBJC_CAST_HACK_FROM)) != expr.npos) 324 expr.replace(from_offset, sizeof(OBJC_CAST_HACK_FROM) - 1, 325 OBJC_CAST_HACK_TO); 326 327 #undef OBJC_CAST_HACK_TO 328 #undef OBJC_CAST_HACK_FROM 329 } 330 331 namespace { 332 // Utility guard that calls a callback when going out of scope. 333 class OnExit { 334 public: 335 typedef std::function<void(void)> Callback; 336 337 OnExit(Callback const &callback) : m_callback(callback) {} 338 339 ~OnExit() { m_callback(); } 340 341 private: 342 Callback m_callback; 343 }; 344 } // namespace 345 346 bool ClangUserExpression::SetupPersistentState(DiagnosticManager &diagnostic_manager, 347 ExecutionContext &exe_ctx) { 348 if (Target *target = exe_ctx.GetTargetPtr()) { 349 if (PersistentExpressionState *persistent_state = 350 target->GetPersistentExpressionStateForLanguage( 351 lldb::eLanguageTypeC)) { 352 m_result_delegate.RegisterPersistentState(persistent_state); 353 } else { 354 diagnostic_manager.PutString( 355 eDiagnosticSeverityError, 356 "couldn't start parsing (no persistent data)"); 357 return false; 358 } 359 } else { 360 diagnostic_manager.PutString(eDiagnosticSeverityError, 361 "error: couldn't start parsing (no target)"); 362 return false; 363 } 364 return true; 365 } 366 367 static void SetupDeclVendor(ExecutionContext &exe_ctx, Target *target) { 368 if (ClangModulesDeclVendor *decl_vendor = 369 target->GetClangModulesDeclVendor()) { 370 const ClangModulesDeclVendor::ModuleVector &hand_imported_modules = 371 llvm::cast<ClangPersistentVariables>( 372 target->GetPersistentExpressionStateForLanguage( 373 lldb::eLanguageTypeC)) 374 ->GetHandLoadedClangModules(); 375 ClangModulesDeclVendor::ModuleVector modules_for_macros; 376 377 for (ClangModulesDeclVendor::ModuleID module : hand_imported_modules) { 378 modules_for_macros.push_back(module); 379 } 380 381 if (target->GetEnableAutoImportClangModules()) { 382 if (StackFrame *frame = exe_ctx.GetFramePtr()) { 383 if (Block *block = frame->GetFrameBlock()) { 384 SymbolContext sc; 385 386 block->CalculateSymbolContext(&sc); 387 388 if (sc.comp_unit) { 389 StreamString error_stream; 390 391 decl_vendor->AddModulesForCompileUnit( 392 *sc.comp_unit, modules_for_macros, error_stream); 393 } 394 } 395 } 396 } 397 } 398 } 399 400 void ClangUserExpression::UpdateLanguageForExpr( 401 DiagnosticManager &diagnostic_manager, ExecutionContext &exe_ctx, 402 std::vector<std::string> modules_to_import) { 403 m_expr_lang = lldb::LanguageType::eLanguageTypeUnknown; 404 405 std::string prefix = m_expr_prefix; 406 407 if (m_options.GetExecutionPolicy() == eExecutionPolicyTopLevel) { 408 m_transformed_text = m_expr_text; 409 } else { 410 std::unique_ptr<ClangExpressionSourceCode> source_code( 411 ClangExpressionSourceCode::CreateWrapped(prefix.c_str(), 412 m_expr_text.c_str())); 413 414 if (m_in_cplusplus_method) 415 m_expr_lang = lldb::eLanguageTypeC_plus_plus; 416 else if (m_in_objectivec_method) 417 m_expr_lang = lldb::eLanguageTypeObjC; 418 else 419 m_expr_lang = lldb::eLanguageTypeC; 420 421 if (!source_code->GetText(m_transformed_text, m_expr_lang, 422 m_in_static_method, exe_ctx, !m_ctx_obj, 423 modules_to_import)) { 424 diagnostic_manager.PutString(eDiagnosticSeverityError, 425 "couldn't construct expression body"); 426 return; 427 } 428 429 // Find and store the start position of the original code inside the 430 // transformed code. We need this later for the code completion. 431 std::size_t original_start; 432 std::size_t original_end; 433 bool found_bounds = source_code->GetOriginalBodyBounds( 434 m_transformed_text, m_expr_lang, original_start, original_end); 435 if (found_bounds) 436 m_user_expression_start_pos = original_start; 437 } 438 } 439 440 static bool SupportsCxxModuleImport(lldb::LanguageType language) { 441 switch (language) { 442 case lldb::eLanguageTypeC_plus_plus: 443 case lldb::eLanguageTypeC_plus_plus_03: 444 case lldb::eLanguageTypeC_plus_plus_11: 445 case lldb::eLanguageTypeC_plus_plus_14: 446 case lldb::eLanguageTypeObjC_plus_plus: 447 return true; 448 default: 449 return false; 450 } 451 } 452 453 std::vector<std::string> 454 ClangUserExpression::GetModulesToImport(ExecutionContext &exe_ctx) { 455 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS)); 456 457 if (!SupportsCxxModuleImport(Language())) 458 return {}; 459 460 Target *target = exe_ctx.GetTargetPtr(); 461 if (!target || !target->GetEnableImportStdModule()) 462 return {}; 463 464 StackFrame *frame = exe_ctx.GetFramePtr(); 465 if (!frame) 466 return {}; 467 468 Block *block = frame->GetFrameBlock(); 469 if (!block) 470 return {}; 471 472 SymbolContext sc; 473 block->CalculateSymbolContext(&sc); 474 if (!sc.comp_unit) 475 return {}; 476 477 if (log) { 478 for (const SourceModule &m : sc.comp_unit->GetImportedModules()) { 479 LLDB_LOG(log, "Found module in compile unit: {0:$[.]} - include dir: {1}", 480 llvm::make_range(m.path.begin(), m.path.end()), m.search_path); 481 } 482 } 483 484 for (const SourceModule &m : sc.comp_unit->GetImportedModules()) 485 m_include_directories.push_back(m.search_path); 486 487 // Check if we imported 'std' or any of its submodules. 488 // We currently don't support importing any other modules in the expression 489 // parser. 490 for (const SourceModule &m : sc.comp_unit->GetImportedModules()) 491 if (!m.path.empty() && m.path.front() == ConstString("std")) 492 return {"std"}; 493 494 return {}; 495 } 496 497 bool ClangUserExpression::PrepareForParsing( 498 DiagnosticManager &diagnostic_manager, ExecutionContext &exe_ctx) { 499 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS)); 500 501 InstallContext(exe_ctx); 502 503 if (!SetupPersistentState(diagnostic_manager, exe_ctx)) 504 return false; 505 506 Status err; 507 ScanContext(exe_ctx, err); 508 509 if (!err.Success()) { 510 diagnostic_manager.PutString(eDiagnosticSeverityWarning, err.AsCString()); 511 } 512 513 //////////////////////////////////// 514 // Generate the expression 515 // 516 517 ApplyObjcCastHack(m_expr_text); 518 519 SetupDeclVendor(exe_ctx, m_target); 520 521 std::vector<std::string> used_modules = GetModulesToImport(exe_ctx); 522 m_imported_cpp_modules = !used_modules.empty(); 523 524 LLDB_LOG(log, "List of imported modules in expression: {0}", 525 llvm::make_range(used_modules.begin(), used_modules.end())); 526 527 UpdateLanguageForExpr(diagnostic_manager, exe_ctx, used_modules); 528 return true; 529 } 530 531 bool ClangUserExpression::Parse(DiagnosticManager &diagnostic_manager, 532 ExecutionContext &exe_ctx, 533 lldb_private::ExecutionPolicy execution_policy, 534 bool keep_result_in_memory, 535 bool generate_debug_info) { 536 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS)); 537 538 if (!PrepareForParsing(diagnostic_manager, exe_ctx)) 539 return false; 540 541 if (log) 542 log->Printf("Parsing the following code:\n%s", m_transformed_text.c_str()); 543 544 //////////////////////////////////// 545 // Set up the target and compiler 546 // 547 548 Target *target = exe_ctx.GetTargetPtr(); 549 550 if (!target) { 551 diagnostic_manager.PutString(eDiagnosticSeverityError, "invalid target"); 552 return false; 553 } 554 555 ////////////////////////// 556 // Parse the expression 557 // 558 559 m_materializer_up.reset(new Materializer()); 560 561 ResetDeclMap(exe_ctx, m_result_delegate, keep_result_in_memory); 562 563 OnExit on_exit([this]() { ResetDeclMap(); }); 564 565 if (!DeclMap()->WillParse(exe_ctx, m_materializer_up.get())) { 566 diagnostic_manager.PutString( 567 eDiagnosticSeverityError, 568 "current process state is unsuitable for expression parsing"); 569 return false; 570 } 571 572 if (m_options.GetExecutionPolicy() == eExecutionPolicyTopLevel) { 573 DeclMap()->SetLookupsEnabled(true); 574 } 575 576 Process *process = exe_ctx.GetProcessPtr(); 577 ExecutionContextScope *exe_scope = process; 578 579 if (!exe_scope) 580 exe_scope = exe_ctx.GetTargetPtr(); 581 582 // We use a shared pointer here so we can use the original parser - if it 583 // succeeds or the rewrite parser we might make if it fails. But the 584 // parser_sp will never be empty. 585 586 ClangExpressionParser parser(exe_scope, *this, generate_debug_info, 587 m_include_directories); 588 589 unsigned num_errors = parser.Parse(diagnostic_manager); 590 591 // Check here for FixItHints. If there are any try to apply the fixits and 592 // set the fixed text in m_fixed_text before returning an error. 593 if (num_errors) { 594 if (diagnostic_manager.HasFixIts()) { 595 if (parser.RewriteExpression(diagnostic_manager)) { 596 size_t fixed_start; 597 size_t fixed_end; 598 const std::string &fixed_expression = 599 diagnostic_manager.GetFixedExpression(); 600 if (ClangExpressionSourceCode::GetOriginalBodyBounds( 601 fixed_expression, m_expr_lang, fixed_start, fixed_end)) 602 m_fixed_text = 603 fixed_expression.substr(fixed_start, fixed_end - fixed_start); 604 } 605 } 606 return false; 607 } 608 609 ////////////////////////////////////////////////////////////////////////////// 610 // Prepare the output of the parser for execution, evaluating it statically 611 // if possible 612 // 613 614 { 615 Status jit_error = parser.PrepareForExecution( 616 m_jit_start_addr, m_jit_end_addr, m_execution_unit_sp, exe_ctx, 617 m_can_interpret, execution_policy); 618 619 if (!jit_error.Success()) { 620 const char *error_cstr = jit_error.AsCString(); 621 if (error_cstr && error_cstr[0]) 622 diagnostic_manager.PutString(eDiagnosticSeverityError, error_cstr); 623 else 624 diagnostic_manager.PutString(eDiagnosticSeverityError, 625 "expression can't be interpreted or run"); 626 return false; 627 } 628 } 629 630 if (exe_ctx.GetProcessPtr() && execution_policy == eExecutionPolicyTopLevel) { 631 Status static_init_error = 632 parser.RunStaticInitializers(m_execution_unit_sp, exe_ctx); 633 634 if (!static_init_error.Success()) { 635 const char *error_cstr = static_init_error.AsCString(); 636 if (error_cstr && error_cstr[0]) 637 diagnostic_manager.Printf(eDiagnosticSeverityError, 638 "couldn't run static initializers: %s\n", 639 error_cstr); 640 else 641 diagnostic_manager.PutString(eDiagnosticSeverityError, 642 "couldn't run static initializers\n"); 643 return false; 644 } 645 } 646 647 if (m_execution_unit_sp) { 648 bool register_execution_unit = false; 649 650 if (m_options.GetExecutionPolicy() == eExecutionPolicyTopLevel) { 651 register_execution_unit = true; 652 } 653 654 // If there is more than one external function in the execution unit, it 655 // needs to keep living even if it's not top level, because the result 656 // could refer to that function. 657 658 if (m_execution_unit_sp->GetJittedFunctions().size() > 1) { 659 register_execution_unit = true; 660 } 661 662 if (register_execution_unit) { 663 llvm::cast<PersistentExpressionState>( 664 exe_ctx.GetTargetPtr()->GetPersistentExpressionStateForLanguage( 665 m_language)) 666 ->RegisterExecutionUnit(m_execution_unit_sp); 667 } 668 } 669 670 if (generate_debug_info) { 671 lldb::ModuleSP jit_module_sp(m_execution_unit_sp->GetJITModule()); 672 673 if (jit_module_sp) { 674 ConstString const_func_name(FunctionName()); 675 FileSpec jit_file; 676 jit_file.GetFilename() = const_func_name; 677 jit_module_sp->SetFileSpecAndObjectName(jit_file, ConstString()); 678 m_jit_module_wp = jit_module_sp; 679 target->GetImages().Append(jit_module_sp); 680 } 681 } 682 683 if (process && m_jit_start_addr != LLDB_INVALID_ADDRESS) 684 m_jit_process_wp = lldb::ProcessWP(process->shared_from_this()); 685 return true; 686 } 687 688 /// Converts an absolute position inside a given code string into 689 /// a column/line pair. 690 /// 691 /// \param[in] abs_pos 692 /// A absolute position in the code string that we want to convert 693 /// to a column/line pair. 694 /// 695 /// \param[in] code 696 /// A multi-line string usually representing source code. 697 /// 698 /// \param[out] line 699 /// The line in the code that contains the given absolute position. 700 /// The first line in the string is indexed as 1. 701 /// 702 /// \param[out] column 703 /// The column in the line that contains the absolute position. 704 /// The first character in a line is indexed as 0. 705 static void AbsPosToLineColumnPos(size_t abs_pos, llvm::StringRef code, 706 unsigned &line, unsigned &column) { 707 // Reset to code position to beginning of the file. 708 line = 0; 709 column = 0; 710 711 assert(abs_pos <= code.size() && "Absolute position outside code string?"); 712 713 // We have to walk up to the position and count lines/columns. 714 for (std::size_t i = 0; i < abs_pos; ++i) { 715 // If we hit a line break, we go back to column 0 and enter a new line. 716 // We only handle \n because that's what we internally use to make new 717 // lines for our temporary code strings. 718 if (code[i] == '\n') { 719 ++line; 720 column = 0; 721 continue; 722 } 723 ++column; 724 } 725 } 726 727 bool ClangUserExpression::Complete(ExecutionContext &exe_ctx, 728 CompletionRequest &request, 729 unsigned complete_pos) { 730 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS)); 731 732 // We don't want any visible feedback when completing an expression. Mostly 733 // because the results we get from an incomplete invocation are probably not 734 // correct. 735 DiagnosticManager diagnostic_manager; 736 737 if (!PrepareForParsing(diagnostic_manager, exe_ctx)) 738 return false; 739 740 if (log) 741 log->Printf("Parsing the following code:\n%s", m_transformed_text.c_str()); 742 743 ////////////////////////// 744 // Parse the expression 745 // 746 747 m_materializer_up.reset(new Materializer()); 748 749 ResetDeclMap(exe_ctx, m_result_delegate, /*keep result in memory*/ true); 750 751 OnExit on_exit([this]() { ResetDeclMap(); }); 752 753 if (!DeclMap()->WillParse(exe_ctx, m_materializer_up.get())) { 754 diagnostic_manager.PutString( 755 eDiagnosticSeverityError, 756 "current process state is unsuitable for expression parsing"); 757 758 return false; 759 } 760 761 if (m_options.GetExecutionPolicy() == eExecutionPolicyTopLevel) { 762 DeclMap()->SetLookupsEnabled(true); 763 } 764 765 Process *process = exe_ctx.GetProcessPtr(); 766 ExecutionContextScope *exe_scope = process; 767 768 if (!exe_scope) 769 exe_scope = exe_ctx.GetTargetPtr(); 770 771 ClangExpressionParser parser(exe_scope, *this, false); 772 773 // We have to find the source code location where the user text is inside 774 // the transformed expression code. When creating the transformed text, we 775 // already stored the absolute position in the m_transformed_text string. The 776 // only thing left to do is to transform it into the line:column format that 777 // Clang expects. 778 779 // The line and column of the user expression inside the transformed source 780 // code. 781 unsigned user_expr_line, user_expr_column; 782 if (m_user_expression_start_pos.hasValue()) 783 AbsPosToLineColumnPos(*m_user_expression_start_pos, m_transformed_text, 784 user_expr_line, user_expr_column); 785 else 786 return false; 787 788 // The actual column where we have to complete is the start column of the 789 // user expression + the offset inside the user code that we were given. 790 const unsigned completion_column = user_expr_column + complete_pos; 791 parser.Complete(request, user_expr_line, completion_column, complete_pos); 792 793 return true; 794 } 795 796 bool ClangUserExpression::AddArguments(ExecutionContext &exe_ctx, 797 std::vector<lldb::addr_t> &args, 798 lldb::addr_t struct_address, 799 DiagnosticManager &diagnostic_manager) { 800 lldb::addr_t object_ptr = LLDB_INVALID_ADDRESS; 801 lldb::addr_t cmd_ptr = LLDB_INVALID_ADDRESS; 802 803 if (m_needs_object_ptr) { 804 lldb::StackFrameSP frame_sp = exe_ctx.GetFrameSP(); 805 if (!frame_sp) 806 return true; 807 808 ConstString object_name; 809 810 if (m_in_cplusplus_method) { 811 object_name.SetCString("this"); 812 } else if (m_in_objectivec_method) { 813 object_name.SetCString("self"); 814 } else { 815 diagnostic_manager.PutString( 816 eDiagnosticSeverityError, 817 "need object pointer but don't know the language"); 818 return false; 819 } 820 821 Status object_ptr_error; 822 823 if (m_ctx_obj) { 824 AddressType address_type; 825 object_ptr = m_ctx_obj->GetAddressOf(false, &address_type); 826 if (object_ptr == LLDB_INVALID_ADDRESS || 827 address_type != eAddressTypeLoad) 828 object_ptr_error.SetErrorString("Can't get context object's " 829 "debuggee address"); 830 } else 831 object_ptr = GetObjectPointer(frame_sp, object_name, object_ptr_error); 832 833 if (!object_ptr_error.Success()) { 834 exe_ctx.GetTargetRef().GetDebugger().GetAsyncOutputStream()->Printf( 835 "warning: `%s' is not accessible (substituting 0)\n", 836 object_name.AsCString()); 837 object_ptr = 0; 838 } 839 840 if (m_in_objectivec_method) { 841 ConstString cmd_name("_cmd"); 842 843 cmd_ptr = GetObjectPointer(frame_sp, cmd_name, object_ptr_error); 844 845 if (!object_ptr_error.Success()) { 846 diagnostic_manager.Printf( 847 eDiagnosticSeverityWarning, 848 "couldn't get cmd pointer (substituting NULL): %s", 849 object_ptr_error.AsCString()); 850 cmd_ptr = 0; 851 } 852 } 853 854 args.push_back(object_ptr); 855 856 if (m_in_objectivec_method) 857 args.push_back(cmd_ptr); 858 859 args.push_back(struct_address); 860 } else { 861 args.push_back(struct_address); 862 } 863 return true; 864 } 865 866 lldb::ExpressionVariableSP ClangUserExpression::GetResultAfterDematerialization( 867 ExecutionContextScope *exe_scope) { 868 return m_result_delegate.GetVariable(); 869 } 870 871 void ClangUserExpression::ClangUserExpressionHelper::ResetDeclMap( 872 ExecutionContext &exe_ctx, 873 Materializer::PersistentVariableDelegate &delegate, 874 bool keep_result_in_memory, 875 ValueObject *ctx_obj) { 876 m_expr_decl_map_up.reset( 877 new ClangExpressionDeclMap(keep_result_in_memory, &delegate, exe_ctx, 878 ctx_obj)); 879 } 880 881 clang::ASTConsumer * 882 ClangUserExpression::ClangUserExpressionHelper::ASTTransformer( 883 clang::ASTConsumer *passthrough) { 884 m_result_synthesizer_up.reset( 885 new ASTResultSynthesizer(passthrough, m_top_level, m_target)); 886 887 return m_result_synthesizer_up.get(); 888 } 889 890 void ClangUserExpression::ClangUserExpressionHelper::CommitPersistentDecls() { 891 if (m_result_synthesizer_up) { 892 m_result_synthesizer_up->CommitPersistentDecls(); 893 } 894 } 895 896 ConstString ClangUserExpression::ResultDelegate::GetName() { 897 auto prefix = m_persistent_state->GetPersistentVariablePrefix(); 898 return m_persistent_state->GetNextPersistentVariableName(*m_target_sp, 899 prefix); 900 } 901 902 void ClangUserExpression::ResultDelegate::DidDematerialize( 903 lldb::ExpressionVariableSP &variable) { 904 m_variable = variable; 905 } 906 907 void ClangUserExpression::ResultDelegate::RegisterPersistentState( 908 PersistentExpressionState *persistent_state) { 909 m_persistent_state = persistent_state; 910 } 911 912 lldb::ExpressionVariableSP &ClangUserExpression::ResultDelegate::GetVariable() { 913 return m_variable; 914 } 915