1 //===-- Function.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 "lldb/Symbol/Function.h" 10 #include "lldb/Core/Disassembler.h" 11 #include "lldb/Core/Module.h" 12 #include "lldb/Core/ModuleList.h" 13 #include "lldb/Core/Section.h" 14 #include "lldb/Host/Host.h" 15 #include "lldb/Symbol/CompileUnit.h" 16 #include "lldb/Symbol/CompilerType.h" 17 #include "lldb/Symbol/LineTable.h" 18 #include "lldb/Symbol/SymbolFile.h" 19 #include "lldb/Target/Language.h" 20 #include "lldb/Target/Target.h" 21 #include "lldb/Utility/Log.h" 22 #include "llvm/Support/Casting.h" 23 24 using namespace lldb; 25 using namespace lldb_private; 26 27 // Basic function information is contained in the FunctionInfo class. It is 28 // designed to contain the name, linkage name, and declaration location. 29 FunctionInfo::FunctionInfo(const char *name, const Declaration *decl_ptr) 30 : m_name(name), m_declaration(decl_ptr) {} 31 32 FunctionInfo::FunctionInfo(ConstString name, const Declaration *decl_ptr) 33 : m_name(name), m_declaration(decl_ptr) {} 34 35 FunctionInfo::~FunctionInfo() = default; 36 37 void FunctionInfo::Dump(Stream *s, bool show_fullpaths) const { 38 if (m_name) 39 *s << ", name = \"" << m_name << "\""; 40 m_declaration.Dump(s, show_fullpaths); 41 } 42 43 int FunctionInfo::Compare(const FunctionInfo &a, const FunctionInfo &b) { 44 int result = ConstString::Compare(a.GetName(), b.GetName()); 45 if (result) 46 return result; 47 48 return Declaration::Compare(a.m_declaration, b.m_declaration); 49 } 50 51 Declaration &FunctionInfo::GetDeclaration() { return m_declaration; } 52 53 const Declaration &FunctionInfo::GetDeclaration() const { 54 return m_declaration; 55 } 56 57 ConstString FunctionInfo::GetName() const { return m_name; } 58 59 size_t FunctionInfo::MemorySize() const { 60 return m_name.MemorySize() + m_declaration.MemorySize(); 61 } 62 63 InlineFunctionInfo::InlineFunctionInfo(const char *name, 64 llvm::StringRef mangled, 65 const Declaration *decl_ptr, 66 const Declaration *call_decl_ptr) 67 : FunctionInfo(name, decl_ptr), m_mangled(mangled), 68 m_call_decl(call_decl_ptr) {} 69 70 InlineFunctionInfo::InlineFunctionInfo(ConstString name, 71 const Mangled &mangled, 72 const Declaration *decl_ptr, 73 const Declaration *call_decl_ptr) 74 : FunctionInfo(name, decl_ptr), m_mangled(mangled), 75 m_call_decl(call_decl_ptr) {} 76 77 InlineFunctionInfo::~InlineFunctionInfo() = default; 78 79 void InlineFunctionInfo::Dump(Stream *s, bool show_fullpaths) const { 80 FunctionInfo::Dump(s, show_fullpaths); 81 if (m_mangled) 82 m_mangled.Dump(s); 83 } 84 85 void InlineFunctionInfo::DumpStopContext(Stream *s) const { 86 // s->Indent("[inlined] "); 87 s->Indent(); 88 if (m_mangled) 89 s->PutCString(m_mangled.GetName().AsCString()); 90 else 91 s->PutCString(m_name.AsCString()); 92 } 93 94 ConstString InlineFunctionInfo::GetName() const { 95 if (m_mangled) 96 return m_mangled.GetName(); 97 return m_name; 98 } 99 100 ConstString InlineFunctionInfo::GetDisplayName() const { 101 if (m_mangled) 102 return m_mangled.GetDisplayDemangledName(); 103 return m_name; 104 } 105 106 Declaration &InlineFunctionInfo::GetCallSite() { return m_call_decl; } 107 108 const Declaration &InlineFunctionInfo::GetCallSite() const { 109 return m_call_decl; 110 } 111 112 Mangled &InlineFunctionInfo::GetMangled() { return m_mangled; } 113 114 const Mangled &InlineFunctionInfo::GetMangled() const { return m_mangled; } 115 116 size_t InlineFunctionInfo::MemorySize() const { 117 return FunctionInfo::MemorySize() + m_mangled.MemorySize(); 118 } 119 120 /// @name Call site related structures 121 /// @{ 122 123 lldb::addr_t CallEdge::GetLoadAddress(lldb::addr_t unresolved_pc, 124 Function &caller, Target &target) { 125 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 126 127 const Address &caller_start_addr = caller.GetAddressRange().GetBaseAddress(); 128 129 ModuleSP caller_module_sp = caller_start_addr.GetModule(); 130 if (!caller_module_sp) { 131 LLDB_LOG(log, "GetLoadAddress: cannot get Module for caller"); 132 return LLDB_INVALID_ADDRESS; 133 } 134 135 SectionList *section_list = caller_module_sp->GetSectionList(); 136 if (!section_list) { 137 LLDB_LOG(log, "GetLoadAddress: cannot get SectionList for Module"); 138 return LLDB_INVALID_ADDRESS; 139 } 140 141 Address the_addr = Address(unresolved_pc, section_list); 142 lldb::addr_t load_addr = the_addr.GetLoadAddress(&target); 143 return load_addr; 144 } 145 146 lldb::addr_t CallEdge::GetReturnPCAddress(Function &caller, 147 Target &target) const { 148 return GetLoadAddress(GetUnresolvedReturnPCAddress(), caller, target); 149 } 150 151 void DirectCallEdge::ParseSymbolFileAndResolve(ModuleList &images) { 152 if (resolved) 153 return; 154 155 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 156 LLDB_LOG(log, "DirectCallEdge: Lazily parsing the call graph for {0}", 157 lazy_callee.symbol_name); 158 159 auto resolve_lazy_callee = [&]() -> Function * { 160 ConstString callee_name{lazy_callee.symbol_name}; 161 SymbolContextList sc_list; 162 images.FindFunctionSymbols(callee_name, eFunctionNameTypeAuto, sc_list); 163 size_t num_matches = sc_list.GetSize(); 164 if (num_matches == 0 || !sc_list[0].symbol) { 165 LLDB_LOG(log, 166 "DirectCallEdge: Found no symbols for {0}, cannot resolve it", 167 callee_name); 168 return nullptr; 169 } 170 Address callee_addr = sc_list[0].symbol->GetAddress(); 171 if (!callee_addr.IsValid()) { 172 LLDB_LOG(log, "DirectCallEdge: Invalid symbol address"); 173 return nullptr; 174 } 175 Function *f = callee_addr.CalculateSymbolContextFunction(); 176 if (!f) { 177 LLDB_LOG(log, "DirectCallEdge: Could not find complete function"); 178 return nullptr; 179 } 180 return f; 181 }; 182 lazy_callee.def = resolve_lazy_callee(); 183 resolved = true; 184 } 185 186 Function *DirectCallEdge::GetCallee(ModuleList &images, ExecutionContext &) { 187 ParseSymbolFileAndResolve(images); 188 assert(resolved && "Did not resolve lazy callee"); 189 return lazy_callee.def; 190 } 191 192 Function *IndirectCallEdge::GetCallee(ModuleList &images, 193 ExecutionContext &exe_ctx) { 194 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 195 Status error; 196 Value callee_addr_val; 197 if (!call_target.Evaluate(&exe_ctx, exe_ctx.GetRegisterContext(), 198 /*loclist_base_addr=*/LLDB_INVALID_ADDRESS, 199 /*initial_value_ptr=*/nullptr, 200 /*object_address_ptr=*/nullptr, callee_addr_val, 201 &error)) { 202 LLDB_LOGF(log, "IndirectCallEdge: Could not evaluate expression: %s", 203 error.AsCString()); 204 return nullptr; 205 } 206 207 addr_t raw_addr = callee_addr_val.GetScalar().ULongLong(LLDB_INVALID_ADDRESS); 208 if (raw_addr == LLDB_INVALID_ADDRESS) { 209 LLDB_LOG(log, "IndirectCallEdge: Could not extract address from scalar"); 210 return nullptr; 211 } 212 213 Address callee_addr; 214 if (!exe_ctx.GetTargetPtr()->ResolveLoadAddress(raw_addr, callee_addr)) { 215 LLDB_LOG(log, "IndirectCallEdge: Could not resolve callee's load address"); 216 return nullptr; 217 } 218 219 Function *f = callee_addr.CalculateSymbolContextFunction(); 220 if (!f) { 221 LLDB_LOG(log, "IndirectCallEdge: Could not find complete function"); 222 return nullptr; 223 } 224 225 return f; 226 } 227 228 /// @} 229 230 // 231 Function::Function(CompileUnit *comp_unit, lldb::user_id_t func_uid, 232 lldb::user_id_t type_uid, const Mangled &mangled, Type *type, 233 const AddressRange &range) 234 : UserID(func_uid), m_comp_unit(comp_unit), m_type_uid(type_uid), 235 m_type(type), m_mangled(mangled), m_block(func_uid), m_range(range), 236 m_frame_base(), m_flags(), m_prologue_byte_size(0) { 237 m_block.SetParentScope(this); 238 assert(comp_unit != nullptr); 239 } 240 241 Function::~Function() = default; 242 243 void Function::GetStartLineSourceInfo(FileSpec &source_file, 244 uint32_t &line_no) { 245 line_no = 0; 246 source_file.Clear(); 247 248 if (m_comp_unit == nullptr) 249 return; 250 251 // Initialize m_type if it hasn't been initialized already 252 GetType(); 253 254 if (m_type != nullptr && m_type->GetDeclaration().GetLine() != 0) { 255 source_file = m_type->GetDeclaration().GetFile(); 256 line_no = m_type->GetDeclaration().GetLine(); 257 } else { 258 LineTable *line_table = m_comp_unit->GetLineTable(); 259 if (line_table == nullptr) 260 return; 261 262 LineEntry line_entry; 263 if (line_table->FindLineEntryByAddress(GetAddressRange().GetBaseAddress(), 264 line_entry, nullptr)) { 265 line_no = line_entry.line; 266 source_file = line_entry.file; 267 } 268 } 269 } 270 271 void Function::GetEndLineSourceInfo(FileSpec &source_file, uint32_t &line_no) { 272 line_no = 0; 273 source_file.Clear(); 274 275 // The -1 is kind of cheesy, but I want to get the last line entry for the 276 // given function, not the first entry of the next. 277 Address scratch_addr(GetAddressRange().GetBaseAddress()); 278 scratch_addr.SetOffset(scratch_addr.GetOffset() + 279 GetAddressRange().GetByteSize() - 1); 280 281 LineTable *line_table = m_comp_unit->GetLineTable(); 282 if (line_table == nullptr) 283 return; 284 285 LineEntry line_entry; 286 if (line_table->FindLineEntryByAddress(scratch_addr, line_entry, nullptr)) { 287 line_no = line_entry.line; 288 source_file = line_entry.file; 289 } 290 } 291 292 llvm::ArrayRef<std::unique_ptr<CallEdge>> Function::GetCallEdges() { 293 std::lock_guard<std::mutex> guard(m_call_edges_lock); 294 295 if (m_call_edges_resolved) 296 return m_call_edges; 297 298 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 299 LLDB_LOG(log, "GetCallEdges: Attempting to parse call site info for {0}", 300 GetDisplayName()); 301 302 m_call_edges_resolved = true; 303 304 // Find the SymbolFile which provided this function's definition. 305 Block &block = GetBlock(/*can_create*/true); 306 SymbolFile *sym_file = block.GetSymbolFile(); 307 if (!sym_file) 308 return llvm::None; 309 310 // Lazily read call site information from the SymbolFile. 311 m_call_edges = sym_file->ParseCallEdgesInFunction(GetID()); 312 313 // Sort the call edges to speed up return_pc lookups. 314 llvm::sort(m_call_edges, [](const std::unique_ptr<CallEdge> &LHS, 315 const std::unique_ptr<CallEdge> &RHS) { 316 return LHS->GetSortKey() < RHS->GetSortKey(); 317 }); 318 319 return m_call_edges; 320 } 321 322 llvm::ArrayRef<std::unique_ptr<CallEdge>> Function::GetTailCallingEdges() { 323 // Tail calling edges are sorted at the end of the list. Find them by dropping 324 // all non-tail-calls. 325 return GetCallEdges().drop_until( 326 [](const std::unique_ptr<CallEdge> &edge) { return edge->IsTailCall(); }); 327 } 328 329 CallEdge *Function::GetCallEdgeForReturnAddress(addr_t return_pc, 330 Target &target) { 331 auto edges = GetCallEdges(); 332 auto edge_it = 333 llvm::partition_point(edges, [&](const std::unique_ptr<CallEdge> &edge) { 334 return std::make_pair(edge->IsTailCall(), 335 edge->GetReturnPCAddress(*this, target)) < 336 std::make_pair(false, return_pc); 337 }); 338 if (edge_it == edges.end() || 339 edge_it->get()->GetReturnPCAddress(*this, target) != return_pc) 340 return nullptr; 341 return edge_it->get(); 342 } 343 344 Block &Function::GetBlock(bool can_create) { 345 if (!m_block.BlockInfoHasBeenParsed() && can_create) { 346 ModuleSP module_sp = CalculateSymbolContextModule(); 347 if (module_sp) { 348 module_sp->GetSymbolFile()->ParseBlocksRecursive(*this); 349 } else { 350 Host::SystemLog(Host::eSystemLogError, 351 "error: unable to find module " 352 "shared pointer for function '%s' " 353 "in %s\n", 354 GetName().GetCString(), 355 m_comp_unit->GetPrimaryFile().GetPath().c_str()); 356 } 357 m_block.SetBlockInfoHasBeenParsed(true, true); 358 } 359 return m_block; 360 } 361 362 CompileUnit *Function::GetCompileUnit() { return m_comp_unit; } 363 364 const CompileUnit *Function::GetCompileUnit() const { return m_comp_unit; } 365 366 void Function::GetDescription(Stream *s, lldb::DescriptionLevel level, 367 Target *target) { 368 ConstString name = GetName(); 369 ConstString mangled = m_mangled.GetMangledName(); 370 371 *s << "id = " << (const UserID &)*this; 372 if (name) 373 s->AsRawOstream() << ", name = \"" << name << '"'; 374 if (mangled) 375 s->AsRawOstream() << ", mangled = \"" << mangled << '"'; 376 *s << ", range = "; 377 Address::DumpStyle fallback_style; 378 if (level == eDescriptionLevelVerbose) 379 fallback_style = Address::DumpStyleModuleWithFileAddress; 380 else 381 fallback_style = Address::DumpStyleFileAddress; 382 GetAddressRange().Dump(s, target, Address::DumpStyleLoadAddress, 383 fallback_style); 384 } 385 386 void Function::Dump(Stream *s, bool show_context) const { 387 s->Printf("%p: ", static_cast<const void *>(this)); 388 s->Indent(); 389 *s << "Function" << static_cast<const UserID &>(*this); 390 391 m_mangled.Dump(s); 392 393 if (m_type) 394 s->Printf(", type = %p", static_cast<void *>(m_type)); 395 else if (m_type_uid != LLDB_INVALID_UID) 396 s->Printf(", type_uid = 0x%8.8" PRIx64, m_type_uid); 397 398 s->EOL(); 399 // Dump the root object 400 if (m_block.BlockInfoHasBeenParsed()) 401 m_block.Dump(s, m_range.GetBaseAddress().GetFileAddress(), INT_MAX, 402 show_context); 403 } 404 405 void Function::CalculateSymbolContext(SymbolContext *sc) { 406 sc->function = this; 407 m_comp_unit->CalculateSymbolContext(sc); 408 } 409 410 ModuleSP Function::CalculateSymbolContextModule() { 411 SectionSP section_sp(m_range.GetBaseAddress().GetSection()); 412 if (section_sp) 413 return section_sp->GetModule(); 414 415 return this->GetCompileUnit()->GetModule(); 416 } 417 418 CompileUnit *Function::CalculateSymbolContextCompileUnit() { 419 return this->GetCompileUnit(); 420 } 421 422 Function *Function::CalculateSymbolContextFunction() { return this; } 423 424 lldb::DisassemblerSP Function::GetInstructions(const ExecutionContext &exe_ctx, 425 const char *flavor, 426 bool prefer_file_cache) { 427 ModuleSP module_sp(GetAddressRange().GetBaseAddress().GetModule()); 428 if (module_sp && exe_ctx.HasTargetScope()) { 429 return Disassembler::DisassembleRange(module_sp->GetArchitecture(), nullptr, 430 flavor, exe_ctx.GetTargetRef(), 431 GetAddressRange(), !prefer_file_cache); 432 } 433 return lldb::DisassemblerSP(); 434 } 435 436 bool Function::GetDisassembly(const ExecutionContext &exe_ctx, 437 const char *flavor, Stream &strm, 438 bool prefer_file_cache) { 439 lldb::DisassemblerSP disassembler_sp = 440 GetInstructions(exe_ctx, flavor, prefer_file_cache); 441 if (disassembler_sp) { 442 const bool show_address = true; 443 const bool show_bytes = false; 444 disassembler_sp->GetInstructionList().Dump(&strm, show_address, show_bytes, 445 &exe_ctx); 446 return true; 447 } 448 return false; 449 } 450 451 // Symbol * 452 // Function::CalculateSymbolContextSymbol () 453 //{ 454 // return // TODO: find the symbol for the function??? 455 //} 456 457 void Function::DumpSymbolContext(Stream *s) { 458 m_comp_unit->DumpSymbolContext(s); 459 s->Printf(", Function{0x%8.8" PRIx64 "}", GetID()); 460 } 461 462 size_t Function::MemorySize() const { 463 size_t mem_size = sizeof(Function) + m_block.MemorySize(); 464 return mem_size; 465 } 466 467 bool Function::GetIsOptimized() { 468 bool result = false; 469 470 // Currently optimization is only indicted by the vendor extension 471 // DW_AT_APPLE_optimized which is set on a compile unit level. 472 if (m_comp_unit) { 473 result = m_comp_unit->GetIsOptimized(); 474 } 475 return result; 476 } 477 478 bool Function::IsTopLevelFunction() { 479 bool result = false; 480 481 if (Language *language = Language::FindPlugin(GetLanguage())) 482 result = language->IsTopLevelFunction(*this); 483 484 return result; 485 } 486 487 ConstString Function::GetDisplayName() const { 488 return m_mangled.GetDisplayDemangledName(); 489 } 490 491 CompilerDeclContext Function::GetDeclContext() { 492 ModuleSP module_sp = CalculateSymbolContextModule(); 493 494 if (module_sp) { 495 if (SymbolFile *sym_file = module_sp->GetSymbolFile()) 496 return sym_file->GetDeclContextForUID(GetID()); 497 } 498 return CompilerDeclContext(); 499 } 500 501 Type *Function::GetType() { 502 if (m_type == nullptr) { 503 SymbolContext sc; 504 505 CalculateSymbolContext(&sc); 506 507 if (!sc.module_sp) 508 return nullptr; 509 510 SymbolFile *sym_file = sc.module_sp->GetSymbolFile(); 511 512 if (sym_file == nullptr) 513 return nullptr; 514 515 m_type = sym_file->ResolveTypeUID(m_type_uid); 516 } 517 return m_type; 518 } 519 520 const Type *Function::GetType() const { return m_type; } 521 522 CompilerType Function::GetCompilerType() { 523 Type *function_type = GetType(); 524 if (function_type) 525 return function_type->GetFullCompilerType(); 526 return CompilerType(); 527 } 528 529 uint32_t Function::GetPrologueByteSize() { 530 if (m_prologue_byte_size == 0 && 531 m_flags.IsClear(flagsCalculatedPrologueSize)) { 532 m_flags.Set(flagsCalculatedPrologueSize); 533 LineTable *line_table = m_comp_unit->GetLineTable(); 534 uint32_t prologue_end_line_idx = 0; 535 536 if (line_table) { 537 LineEntry first_line_entry; 538 uint32_t first_line_entry_idx = UINT32_MAX; 539 if (line_table->FindLineEntryByAddress(GetAddressRange().GetBaseAddress(), 540 first_line_entry, 541 &first_line_entry_idx)) { 542 // Make sure the first line entry isn't already the end of the prologue 543 addr_t prologue_end_file_addr = LLDB_INVALID_ADDRESS; 544 addr_t line_zero_end_file_addr = LLDB_INVALID_ADDRESS; 545 546 if (first_line_entry.is_prologue_end) { 547 prologue_end_file_addr = 548 first_line_entry.range.GetBaseAddress().GetFileAddress(); 549 prologue_end_line_idx = first_line_entry_idx; 550 } else { 551 // Check the first few instructions and look for one that has 552 // is_prologue_end set to true. 553 const uint32_t last_line_entry_idx = first_line_entry_idx + 6; 554 for (uint32_t idx = first_line_entry_idx + 1; 555 idx < last_line_entry_idx; ++idx) { 556 LineEntry line_entry; 557 if (line_table->GetLineEntryAtIndex(idx, line_entry)) { 558 if (line_entry.is_prologue_end) { 559 prologue_end_file_addr = 560 line_entry.range.GetBaseAddress().GetFileAddress(); 561 prologue_end_line_idx = idx; 562 break; 563 } 564 } 565 } 566 } 567 568 // If we didn't find the end of the prologue in the line tables, then 569 // just use the end address of the first line table entry 570 if (prologue_end_file_addr == LLDB_INVALID_ADDRESS) { 571 // Check the first few instructions and look for one that has a line 572 // number that's different than the first entry. 573 uint32_t last_line_entry_idx = first_line_entry_idx + 6; 574 for (uint32_t idx = first_line_entry_idx + 1; 575 idx < last_line_entry_idx; ++idx) { 576 LineEntry line_entry; 577 if (line_table->GetLineEntryAtIndex(idx, line_entry)) { 578 if (line_entry.line != first_line_entry.line) { 579 prologue_end_file_addr = 580 line_entry.range.GetBaseAddress().GetFileAddress(); 581 prologue_end_line_idx = idx; 582 break; 583 } 584 } 585 } 586 587 if (prologue_end_file_addr == LLDB_INVALID_ADDRESS) { 588 prologue_end_file_addr = 589 first_line_entry.range.GetBaseAddress().GetFileAddress() + 590 first_line_entry.range.GetByteSize(); 591 prologue_end_line_idx = first_line_entry_idx; 592 } 593 } 594 595 const addr_t func_start_file_addr = 596 m_range.GetBaseAddress().GetFileAddress(); 597 const addr_t func_end_file_addr = 598 func_start_file_addr + m_range.GetByteSize(); 599 600 // Now calculate the offset to pass the subsequent line 0 entries. 601 uint32_t first_non_zero_line = prologue_end_line_idx; 602 while (true) { 603 LineEntry line_entry; 604 if (line_table->GetLineEntryAtIndex(first_non_zero_line, 605 line_entry)) { 606 if (line_entry.line != 0) 607 break; 608 } 609 if (line_entry.range.GetBaseAddress().GetFileAddress() >= 610 func_end_file_addr) 611 break; 612 613 first_non_zero_line++; 614 } 615 616 if (first_non_zero_line > prologue_end_line_idx) { 617 LineEntry first_non_zero_entry; 618 if (line_table->GetLineEntryAtIndex(first_non_zero_line, 619 first_non_zero_entry)) { 620 line_zero_end_file_addr = 621 first_non_zero_entry.range.GetBaseAddress().GetFileAddress(); 622 } 623 } 624 625 // Verify that this prologue end file address in the function's address 626 // range just to be sure 627 if (func_start_file_addr < prologue_end_file_addr && 628 prologue_end_file_addr < func_end_file_addr) { 629 m_prologue_byte_size = prologue_end_file_addr - func_start_file_addr; 630 } 631 632 if (prologue_end_file_addr < line_zero_end_file_addr && 633 line_zero_end_file_addr < func_end_file_addr) { 634 m_prologue_byte_size += 635 line_zero_end_file_addr - prologue_end_file_addr; 636 } 637 } 638 } 639 } 640 641 return m_prologue_byte_size; 642 } 643 644 lldb::LanguageType Function::GetLanguage() const { 645 lldb::LanguageType lang = m_mangled.GuessLanguage(); 646 if (lang != lldb::eLanguageTypeUnknown) 647 return lang; 648 649 if (m_comp_unit) 650 return m_comp_unit->GetLanguage(); 651 652 return lldb::eLanguageTypeUnknown; 653 } 654 655 ConstString Function::GetName() const { 656 return m_mangled.GetName(); 657 } 658 659 ConstString Function::GetNameNoArguments() const { 660 return m_mangled.GetName(Mangled::ePreferDemangledWithoutArguments); 661 } 662