1fb69e66cSEugene Zelenko //===- llvm/lib/CodeGen/AsmPrinter/CodeViewDebug.cpp ----------------------===// 270f5bc99SReid Kleckner // 3*2946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4*2946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information. 5*2946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 670f5bc99SReid Kleckner // 770f5bc99SReid Kleckner //===----------------------------------------------------------------------===// 870f5bc99SReid Kleckner // 970f5bc99SReid Kleckner // This file contains support for writing Microsoft CodeView debug info. 1070f5bc99SReid Kleckner // 1170f5bc99SReid Kleckner //===----------------------------------------------------------------------===// 1270f5bc99SReid Kleckner 1370f5bc99SReid Kleckner #include "CodeViewDebug.h" 14032d2381SAdrian Prantl #include "DwarfExpression.h" 15fb69e66cSEugene Zelenko #include "llvm/ADT/APSInt.h" 16fb69e66cSEugene Zelenko #include "llvm/ADT/ArrayRef.h" 17fb69e66cSEugene Zelenko #include "llvm/ADT/DenseMap.h" 18fb69e66cSEugene Zelenko #include "llvm/ADT/DenseSet.h" 19fb69e66cSEugene Zelenko #include "llvm/ADT/MapVector.h" 20fb69e66cSEugene Zelenko #include "llvm/ADT/None.h" 21fb69e66cSEugene Zelenko #include "llvm/ADT/Optional.h" 22b3bde2eaSDavid Blaikie #include "llvm/ADT/STLExtras.h" 23fb69e66cSEugene Zelenko #include "llvm/ADT/SmallString.h" 24fb69e66cSEugene Zelenko #include "llvm/ADT/SmallVector.h" 25fb69e66cSEugene Zelenko #include "llvm/ADT/StringRef.h" 26156a7239SReid Kleckner #include "llvm/ADT/TinyPtrVector.h" 27fb69e66cSEugene Zelenko #include "llvm/ADT/Triple.h" 28fb69e66cSEugene Zelenko #include "llvm/ADT/Twine.h" 29264b5d9eSZachary Turner #include "llvm/BinaryFormat/COFF.h" 30264b5d9eSZachary Turner #include "llvm/BinaryFormat/Dwarf.h" 31fb69e66cSEugene Zelenko #include "llvm/CodeGen/AsmPrinter.h" 32fb69e66cSEugene Zelenko #include "llvm/CodeGen/LexicalScopes.h" 339ea2c012SReid Kleckner #include "llvm/CodeGen/MachineFrameInfo.h" 34fb69e66cSEugene Zelenko #include "llvm/CodeGen/MachineFunction.h" 35fb69e66cSEugene Zelenko #include "llvm/CodeGen/MachineInstr.h" 36fb69e66cSEugene Zelenko #include "llvm/CodeGen/MachineModuleInfo.h" 37fb69e66cSEugene Zelenko #include "llvm/CodeGen/MachineOperand.h" 38b3bde2eaSDavid Blaikie #include "llvm/CodeGen/TargetFrameLowering.h" 39b3bde2eaSDavid Blaikie #include "llvm/CodeGen/TargetRegisterInfo.h" 40b3bde2eaSDavid Blaikie #include "llvm/CodeGen/TargetSubtargetInfo.h" 41fb69e66cSEugene Zelenko #include "llvm/Config/llvm-config.h" 42c92e9469SReid Kleckner #include "llvm/DebugInfo/CodeView/CVTypeVisitor.h" 4370f5bc99SReid Kleckner #include "llvm/DebugInfo/CodeView/CodeView.h" 446900de1dSZachary Turner #include "llvm/DebugInfo/CodeView/ContinuationRecordBuilder.h" 458c099fe0SZachary Turner #include "llvm/DebugInfo/CodeView/DebugInlineeLinesSubsection.h" 465bf71d11SReid Kleckner #include "llvm/DebugInfo/CodeView/EnumTables.h" 472214ed89SReid Kleckner #include "llvm/DebugInfo/CodeView/Line.h" 4870f5bc99SReid Kleckner #include "llvm/DebugInfo/CodeView/SymbolRecord.h" 49629cb7d8SZachary Turner #include "llvm/DebugInfo/CodeView/TypeDumpVisitor.h" 50f3b9ba49SReid Kleckner #include "llvm/DebugInfo/CodeView/TypeIndex.h" 51f3b9ba49SReid Kleckner #include "llvm/DebugInfo/CodeView/TypeRecord.h" 52526f4f2aSZachary Turner #include "llvm/DebugInfo/CodeView/TypeTableCollection.h" 539319cbc0SDavid Majnemer #include "llvm/IR/Constants.h" 54fb69e66cSEugene Zelenko #include "llvm/IR/DataLayout.h" 55fb69e66cSEugene Zelenko #include "llvm/IR/DebugInfoMetadata.h" 56fb69e66cSEugene Zelenko #include "llvm/IR/DebugLoc.h" 57fb69e66cSEugene Zelenko #include "llvm/IR/Function.h" 58fb69e66cSEugene Zelenko #include "llvm/IR/GlobalValue.h" 59fb69e66cSEugene Zelenko #include "llvm/IR/GlobalVariable.h" 60fb69e66cSEugene Zelenko #include "llvm/IR/Metadata.h" 61fb69e66cSEugene Zelenko #include "llvm/IR/Module.h" 6246cb48c7SReid Kleckner #include "llvm/MC/MCAsmInfo.h" 63fb69e66cSEugene Zelenko #include "llvm/MC/MCContext.h" 645d122f87SReid Kleckner #include "llvm/MC/MCSectionCOFF.h" 65fb69e66cSEugene Zelenko #include "llvm/MC/MCStreamer.h" 6670f5bc99SReid Kleckner #include "llvm/MC/MCSymbol.h" 67264b5d9eSZachary Turner #include "llvm/Support/BinaryByteStream.h" 68264b5d9eSZachary Turner #include "llvm/Support/BinaryStreamReader.h" 69fb69e66cSEugene Zelenko #include "llvm/Support/Casting.h" 70048f8f99SZachary Turner #include "llvm/Support/CommandLine.h" 71fb69e66cSEugene Zelenko #include "llvm/Support/Compiler.h" 72fb69e66cSEugene Zelenko #include "llvm/Support/Endian.h" 73fb69e66cSEugene Zelenko #include "llvm/Support/Error.h" 74fb69e66cSEugene Zelenko #include "llvm/Support/ErrorHandling.h" 75048f8f99SZachary Turner #include "llvm/Support/FormatVariadic.h" 765bba1cafSZachary Turner #include "llvm/Support/Path.h" 77fb69e66cSEugene Zelenko #include "llvm/Support/SMLoc.h" 78b3bde2eaSDavid Blaikie #include "llvm/Support/ScopedPrinter.h" 796054e650SDavid Blaikie #include "llvm/Target/TargetLoweringObjectFile.h" 80fb69e66cSEugene Zelenko #include "llvm/Target/TargetMachine.h" 81fb69e66cSEugene Zelenko #include <algorithm> 82fb69e66cSEugene Zelenko #include <cassert> 83fb69e66cSEugene Zelenko #include <cctype> 84fb69e66cSEugene Zelenko #include <cstddef> 85fb69e66cSEugene Zelenko #include <cstdint> 86fb69e66cSEugene Zelenko #include <iterator> 87fb69e66cSEugene Zelenko #include <limits> 88fb69e66cSEugene Zelenko #include <string> 89fb69e66cSEugene Zelenko #include <utility> 90fb69e66cSEugene Zelenko #include <vector> 9170f5bc99SReid Kleckner 92f9c275feSReid Kleckner using namespace llvm; 9370f5bc99SReid Kleckner using namespace llvm::codeview; 9470f5bc99SReid Kleckner 959ea2c012SReid Kleckner static CPUType mapArchToCVCPUType(Triple::ArchType Type) { 969ea2c012SReid Kleckner switch (Type) { 979ea2c012SReid Kleckner case Triple::ArchType::x86: 989ea2c012SReid Kleckner return CPUType::Pentium3; 999ea2c012SReid Kleckner case Triple::ArchType::x86_64: 1009ea2c012SReid Kleckner return CPUType::X64; 1019ea2c012SReid Kleckner case Triple::ArchType::thumb: 1029ea2c012SReid Kleckner return CPUType::Thumb; 1039ea2c012SReid Kleckner case Triple::ArchType::aarch64: 1049ea2c012SReid Kleckner return CPUType::ARM64; 1059ea2c012SReid Kleckner default: 1069ea2c012SReid Kleckner report_fatal_error("target architecture doesn't map to a CodeView CPUType"); 1079ea2c012SReid Kleckner } 1089ea2c012SReid Kleckner } 1099ea2c012SReid Kleckner 110f9c275feSReid Kleckner CodeViewDebug::CodeViewDebug(AsmPrinter *AP) 111fb69e66cSEugene Zelenko : DebugHandlerBase(AP), OS(*Asm->OutStreamer), TypeTable(Allocator) { 112f9c275feSReid Kleckner // If module doesn't have named metadata anchors or COFF debug section 113f9c275feSReid Kleckner // is not available, skip any debug info related stuff. 114f9c275feSReid Kleckner if (!MMI->getModule()->getNamedMetadata("llvm.dbg.cu") || 115f9c275feSReid Kleckner !AP->getObjFileLowering().getCOFFDebugSymbolsSection()) { 116f9c275feSReid Kleckner Asm = nullptr; 1178763c0c5SMatthias Braun MMI->setDebugInfoAvailability(false); 118f9c275feSReid Kleckner return; 119f9c275feSReid Kleckner } 120f9c275feSReid Kleckner // Tell MMI that we have debug info. 121f9c275feSReid Kleckner MMI->setDebugInfoAvailability(true); 1229ea2c012SReid Kleckner 1239ea2c012SReid Kleckner TheCPU = 1249ea2c012SReid Kleckner mapArchToCVCPUType(Triple(MMI->getModule()->getTargetTriple()).getArch()); 12575557716SReid Kleckner 126b17464e4SBrock Wyma collectGlobalVariableInfo(); 127b17464e4SBrock Wyma 12875557716SReid Kleckner // Check if we should emit type record hashes. 12975557716SReid Kleckner ConstantInt *GH = mdconst::extract_or_null<ConstantInt>( 13075557716SReid Kleckner MMI->getModule()->getModuleFlag("CodeViewGHash")); 13175557716SReid Kleckner EmitDebugGlobalHashes = GH && !GH->isZero(); 132f9c275feSReid Kleckner } 13370f5bc99SReid Kleckner 1349533af4fSReid Kleckner StringRef CodeViewDebug::getFullFilepath(const DIFile *File) { 1359533af4fSReid Kleckner std::string &Filepath = FileToFilepathMap[File]; 13670f5bc99SReid Kleckner if (!Filepath.empty()) 13770f5bc99SReid Kleckner return Filepath; 13870f5bc99SReid Kleckner 1399533af4fSReid Kleckner StringRef Dir = File->getDirectory(), Filename = File->getFilename(); 1409533af4fSReid Kleckner 141cb8a666fSPeter Collingbourne // If this is a Unix-style path, just use it as is. Don't try to canonicalize 142cb8a666fSPeter Collingbourne // it textually because one of the path components could be a symlink. 1435bba1cafSZachary Turner if (Dir.startswith("/") || Filename.startswith("/")) { 1445bba1cafSZachary Turner if (llvm::sys::path::is_absolute(Filename, llvm::sys::path::Style::posix)) 1455bba1cafSZachary Turner return Filename; 146cb8a666fSPeter Collingbourne Filepath = Dir; 147cb8a666fSPeter Collingbourne if (Dir.back() != '/') 148cb8a666fSPeter Collingbourne Filepath += '/'; 149cb8a666fSPeter Collingbourne Filepath += Filename; 150cb8a666fSPeter Collingbourne return Filepath; 151cb8a666fSPeter Collingbourne } 152cb8a666fSPeter Collingbourne 15370f5bc99SReid Kleckner // Clang emits directory and relative filename info into the IR, but CodeView 15470f5bc99SReid Kleckner // operates on full paths. We could change Clang to emit full paths too, but 15570f5bc99SReid Kleckner // that would increase the IR size and probably not needed for other users. 15670f5bc99SReid Kleckner // For now, just concatenate and canonicalize the path here. 15770f5bc99SReid Kleckner if (Filename.find(':') == 1) 15870f5bc99SReid Kleckner Filepath = Filename; 15970f5bc99SReid Kleckner else 16070f5bc99SReid Kleckner Filepath = (Dir + "\\" + Filename).str(); 16170f5bc99SReid Kleckner 16270f5bc99SReid Kleckner // Canonicalize the path. We have to do it textually because we may no longer 16370f5bc99SReid Kleckner // have access the file in the filesystem. 16470f5bc99SReid Kleckner // First, replace all slashes with backslashes. 16570f5bc99SReid Kleckner std::replace(Filepath.begin(), Filepath.end(), '/', '\\'); 16670f5bc99SReid Kleckner 16770f5bc99SReid Kleckner // Remove all "\.\" with "\". 16870f5bc99SReid Kleckner size_t Cursor = 0; 16970f5bc99SReid Kleckner while ((Cursor = Filepath.find("\\.\\", Cursor)) != std::string::npos) 17070f5bc99SReid Kleckner Filepath.erase(Cursor, 2); 17170f5bc99SReid Kleckner 17270f5bc99SReid Kleckner // Replace all "\XXX\..\" with "\". Don't try too hard though as the original 17370f5bc99SReid Kleckner // path should be well-formatted, e.g. start with a drive letter, etc. 17470f5bc99SReid Kleckner Cursor = 0; 17570f5bc99SReid Kleckner while ((Cursor = Filepath.find("\\..\\", Cursor)) != std::string::npos) { 17670f5bc99SReid Kleckner // Something's wrong if the path starts with "\..\", abort. 17770f5bc99SReid Kleckner if (Cursor == 0) 17870f5bc99SReid Kleckner break; 17970f5bc99SReid Kleckner 18070f5bc99SReid Kleckner size_t PrevSlash = Filepath.rfind('\\', Cursor - 1); 18170f5bc99SReid Kleckner if (PrevSlash == std::string::npos) 18270f5bc99SReid Kleckner // Something's wrong, abort. 18370f5bc99SReid Kleckner break; 18470f5bc99SReid Kleckner 18570f5bc99SReid Kleckner Filepath.erase(PrevSlash, Cursor + 3 - PrevSlash); 18670f5bc99SReid Kleckner // The next ".." might be following the one we've just erased. 18770f5bc99SReid Kleckner Cursor = PrevSlash; 18870f5bc99SReid Kleckner } 18970f5bc99SReid Kleckner 19070f5bc99SReid Kleckner // Remove all duplicate backslashes. 19170f5bc99SReid Kleckner Cursor = 0; 19270f5bc99SReid Kleckner while ((Cursor = Filepath.find("\\\\", Cursor)) != std::string::npos) 19370f5bc99SReid Kleckner Filepath.erase(Cursor, 1); 19470f5bc99SReid Kleckner 19570f5bc99SReid Kleckner return Filepath; 19670f5bc99SReid Kleckner } 19770f5bc99SReid Kleckner 1982214ed89SReid Kleckner unsigned CodeViewDebug::maybeRecordFile(const DIFile *F) { 199bc6f52daSReid Kleckner StringRef FullPath = getFullFilepath(F); 2002214ed89SReid Kleckner unsigned NextId = FileIdMap.size() + 1; 201bc6f52daSReid Kleckner auto Insertion = FileIdMap.insert(std::make_pair(FullPath, NextId)); 2022214ed89SReid Kleckner if (Insertion.second) { 2032214ed89SReid Kleckner // We have to compute the full filepath and emit a .cv_file directive. 2047160384dSScott Linder ArrayRef<uint8_t> ChecksumAsBytes; 2057160384dSScott Linder FileChecksumKind CSKind = FileChecksumKind::None; 2067160384dSScott Linder if (F->getChecksum()) { 2077160384dSScott Linder std::string Checksum = fromHex(F->getChecksum()->Value); 20826fa1bf4SReid Kleckner void *CKMem = OS.getContext().allocate(Checksum.size(), 1); 20926fa1bf4SReid Kleckner memcpy(CKMem, Checksum.data(), Checksum.size()); 2107160384dSScott Linder ChecksumAsBytes = ArrayRef<uint8_t>( 2117160384dSScott Linder reinterpret_cast<const uint8_t *>(CKMem), Checksum.size()); 2127160384dSScott Linder switch (F->getChecksum()->Kind) { 2137160384dSScott Linder case DIFile::CSK_MD5: CSKind = FileChecksumKind::MD5; break; 2147160384dSScott Linder case DIFile::CSK_SHA1: CSKind = FileChecksumKind::SHA1; break; 2157160384dSScott Linder } 2167160384dSScott Linder } 21726fa1bf4SReid Kleckner bool Success = OS.EmitCVFileDirective(NextId, FullPath, ChecksumAsBytes, 2187160384dSScott Linder static_cast<unsigned>(CSKind)); 219a5b1eef8SReid Kleckner (void)Success; 220a5b1eef8SReid Kleckner assert(Success && ".cv_file directive failed"); 2212214ed89SReid Kleckner } 2222214ed89SReid Kleckner return Insertion.first->second; 2232214ed89SReid Kleckner } 2242214ed89SReid Kleckner 225876330d5SReid Kleckner CodeViewDebug::InlineSite & 226876330d5SReid Kleckner CodeViewDebug::getInlineSite(const DILocation *InlinedAt, 227876330d5SReid Kleckner const DISubprogram *Inlinee) { 228fbd7787dSReid Kleckner auto SiteInsertion = CurFn->InlineSites.insert({InlinedAt, InlineSite()}); 229fbd7787dSReid Kleckner InlineSite *Site = &SiteInsertion.first->second; 230fbd7787dSReid Kleckner if (SiteInsertion.second) { 231a9f4cc95SReid Kleckner unsigned ParentFuncId = CurFn->FuncId; 232a9f4cc95SReid Kleckner if (const DILocation *OuterIA = InlinedAt->getInlinedAt()) 233a9f4cc95SReid Kleckner ParentFuncId = 234a9f4cc95SReid Kleckner getInlineSite(OuterIA, InlinedAt->getScope()->getSubprogram()) 235a9f4cc95SReid Kleckner .SiteFuncId; 236a9f4cc95SReid Kleckner 237f9c275feSReid Kleckner Site->SiteFuncId = NextFuncId++; 238a9f4cc95SReid Kleckner OS.EmitCVInlineSiteIdDirective( 239a9f4cc95SReid Kleckner Site->SiteFuncId, ParentFuncId, maybeRecordFile(InlinedAt->getFile()), 240a9f4cc95SReid Kleckner InlinedAt->getLine(), InlinedAt->getColumn(), SMLoc()); 241876330d5SReid Kleckner Site->Inlinee = Inlinee; 2422280f932SReid Kleckner InlinedSubprograms.insert(Inlinee); 24375c3ebfaSDavid Majnemer getFuncIdForSubprogram(Inlinee); 244f3b9ba49SReid Kleckner } 245f9c275feSReid Kleckner return *Site; 246f3b9ba49SReid Kleckner } 247f3b9ba49SReid Kleckner 2486bdc24e7SDavid Majnemer static StringRef getPrettyScopeName(const DIScope *Scope) { 2496bdc24e7SDavid Majnemer StringRef ScopeName = Scope->getName(); 2506bdc24e7SDavid Majnemer if (!ScopeName.empty()) 2516bdc24e7SDavid Majnemer return ScopeName; 2526bdc24e7SDavid Majnemer 2536bdc24e7SDavid Majnemer switch (Scope->getTag()) { 2546bdc24e7SDavid Majnemer case dwarf::DW_TAG_enumeration_type: 2556bdc24e7SDavid Majnemer case dwarf::DW_TAG_class_type: 2566bdc24e7SDavid Majnemer case dwarf::DW_TAG_structure_type: 2576bdc24e7SDavid Majnemer case dwarf::DW_TAG_union_type: 2586bdc24e7SDavid Majnemer return "<unnamed-tag>"; 2596bdc24e7SDavid Majnemer case dwarf::DW_TAG_namespace: 2606bdc24e7SDavid Majnemer return "`anonymous namespace'"; 2616bdc24e7SDavid Majnemer } 2626bdc24e7SDavid Majnemer 2636bdc24e7SDavid Majnemer return StringRef(); 2646bdc24e7SDavid Majnemer } 2656bdc24e7SDavid Majnemer 2660c5d874bSReid Kleckner static const DISubprogram *getQualifiedNameComponents( 2670c5d874bSReid Kleckner const DIScope *Scope, SmallVectorImpl<StringRef> &QualifiedNameComponents) { 2680c5d874bSReid Kleckner const DISubprogram *ClosestSubprogram = nullptr; 2690c5d874bSReid Kleckner while (Scope != nullptr) { 2700c5d874bSReid Kleckner if (ClosestSubprogram == nullptr) 2710c5d874bSReid Kleckner ClosestSubprogram = dyn_cast<DISubprogram>(Scope); 2726bdc24e7SDavid Majnemer StringRef ScopeName = getPrettyScopeName(Scope); 2730c5d874bSReid Kleckner if (!ScopeName.empty()) 2740c5d874bSReid Kleckner QualifiedNameComponents.push_back(ScopeName); 2750c5d874bSReid Kleckner Scope = Scope->getScope().resolve(); 2760c5d874bSReid Kleckner } 2770c5d874bSReid Kleckner return ClosestSubprogram; 2780c5d874bSReid Kleckner } 2790c5d874bSReid Kleckner 2800c5d874bSReid Kleckner static std::string getQualifiedName(ArrayRef<StringRef> QualifiedNameComponents, 2810c5d874bSReid Kleckner StringRef TypeName) { 2820c5d874bSReid Kleckner std::string FullyQualifiedName; 283fb69e66cSEugene Zelenko for (StringRef QualifiedNameComponent : 284fb69e66cSEugene Zelenko llvm::reverse(QualifiedNameComponents)) { 2850c5d874bSReid Kleckner FullyQualifiedName.append(QualifiedNameComponent); 2860c5d874bSReid Kleckner FullyQualifiedName.append("::"); 2870c5d874bSReid Kleckner } 2880c5d874bSReid Kleckner FullyQualifiedName.append(TypeName); 2890c5d874bSReid Kleckner return FullyQualifiedName; 2900c5d874bSReid Kleckner } 2910c5d874bSReid Kleckner 2920c5d874bSReid Kleckner static std::string getFullyQualifiedName(const DIScope *Scope, StringRef Name) { 2930c5d874bSReid Kleckner SmallVector<StringRef, 5> QualifiedNameComponents; 2940c5d874bSReid Kleckner getQualifiedNameComponents(Scope, QualifiedNameComponents); 2950c5d874bSReid Kleckner return getQualifiedName(QualifiedNameComponents, Name); 2960c5d874bSReid Kleckner } 2970c5d874bSReid Kleckner 298b5af11dfSReid Kleckner struct CodeViewDebug::TypeLoweringScope { 299b5af11dfSReid Kleckner TypeLoweringScope(CodeViewDebug &CVD) : CVD(CVD) { ++CVD.TypeEmissionLevel; } 300b5af11dfSReid Kleckner ~TypeLoweringScope() { 301b5af11dfSReid Kleckner // Don't decrement TypeEmissionLevel until after emitting deferred types, so 302b5af11dfSReid Kleckner // inner TypeLoweringScopes don't attempt to emit deferred types. 303b5af11dfSReid Kleckner if (CVD.TypeEmissionLevel == 1) 304b5af11dfSReid Kleckner CVD.emitDeferredCompleteTypes(); 305b5af11dfSReid Kleckner --CVD.TypeEmissionLevel; 306b5af11dfSReid Kleckner } 307b5af11dfSReid Kleckner CodeViewDebug &CVD; 308b5af11dfSReid Kleckner }; 309b5af11dfSReid Kleckner 3106bdc24e7SDavid Majnemer static std::string getFullyQualifiedName(const DIScope *Ty) { 3116bdc24e7SDavid Majnemer const DIScope *Scope = Ty->getScope().resolve(); 3126bdc24e7SDavid Majnemer return getFullyQualifiedName(Scope, getPrettyScopeName(Ty)); 3136bdc24e7SDavid Majnemer } 3146bdc24e7SDavid Majnemer 3150c5d874bSReid Kleckner TypeIndex CodeViewDebug::getScopeIndex(const DIScope *Scope) { 3160c5d874bSReid Kleckner // No scope means global scope and that uses the zero index. 3170c5d874bSReid Kleckner if (!Scope || isa<DIFile>(Scope)) 3180c5d874bSReid Kleckner return TypeIndex(); 3190c5d874bSReid Kleckner 3200c5d874bSReid Kleckner assert(!isa<DIType>(Scope) && "shouldn't make a namespace scope for a type"); 3210c5d874bSReid Kleckner 3220c5d874bSReid Kleckner // Check if we've already translated this scope. 3230c5d874bSReid Kleckner auto I = TypeIndices.find({Scope, nullptr}); 3240c5d874bSReid Kleckner if (I != TypeIndices.end()) 3250c5d874bSReid Kleckner return I->second; 3260c5d874bSReid Kleckner 3270c5d874bSReid Kleckner // Build the fully qualified name of the scope. 3286bdc24e7SDavid Majnemer std::string ScopeName = getFullyQualifiedName(Scope); 3294efa0a42SZachary Turner StringIdRecord SID(TypeIndex(), ScopeName); 3306900de1dSZachary Turner auto TI = TypeTable.writeLeafType(SID); 3310c5d874bSReid Kleckner return recordTypeIndexForDINode(Scope, TI); 3320c5d874bSReid Kleckner } 3330c5d874bSReid Kleckner 33475c3ebfaSDavid Majnemer TypeIndex CodeViewDebug::getFuncIdForSubprogram(const DISubprogram *SP) { 33567f684e1SDavid Majnemer assert(SP); 3362280f932SReid Kleckner 33775c3ebfaSDavid Majnemer // Check if we've already translated this subprogram. 33876c9eb99SAmjad Aboud auto I = TypeIndices.find({SP, nullptr}); 33975c3ebfaSDavid Majnemer if (I != TypeIndices.end()) 34075c3ebfaSDavid Majnemer return I->second; 3412280f932SReid Kleckner 342ac945e27SReid Kleckner // The display name includes function template arguments. Drop them to match 343ac945e27SReid Kleckner // MSVC. 3449d2f019fSAdrian Prantl StringRef DisplayName = SP->getName().split('<').first; 34575c3ebfaSDavid Majnemer 3460c5d874bSReid Kleckner const DIScope *Scope = SP->getScope().resolve(); 3470c5d874bSReid Kleckner TypeIndex TI; 3480c5d874bSReid Kleckner if (const auto *Class = dyn_cast_or_null<DICompositeType>(Scope)) { 3490c5d874bSReid Kleckner // If the scope is a DICompositeType, then this must be a method. Member 3500c5d874bSReid Kleckner // function types take some special handling, and require access to the 3510c5d874bSReid Kleckner // subprogram. 3520c5d874bSReid Kleckner TypeIndex ClassType = getTypeIndex(Class); 3530c5d874bSReid Kleckner MemberFuncIdRecord MFuncId(ClassType, getMemberFunctionType(SP, Class), 3540c5d874bSReid Kleckner DisplayName); 3556900de1dSZachary Turner TI = TypeTable.writeLeafType(MFuncId); 3560c5d874bSReid Kleckner } else { 3570c5d874bSReid Kleckner // Otherwise, this must be a free function. 3580c5d874bSReid Kleckner TypeIndex ParentScope = getScopeIndex(Scope); 3590c5d874bSReid Kleckner FuncIdRecord FuncId(ParentScope, getTypeIndex(SP->getType()), DisplayName); 3606900de1dSZachary Turner TI = TypeTable.writeLeafType(FuncId); 3612280f932SReid Kleckner } 3622280f932SReid Kleckner 3630c5d874bSReid Kleckner return recordTypeIndexForDINode(SP, TI); 3640c5d874bSReid Kleckner } 3650c5d874bSReid Kleckner 366802b033dSAaron Smith static bool isTrivial(const DICompositeType *DCTy) { 367802b033dSAaron Smith return ((DCTy->getFlags() & DINode::FlagTrivial) == DINode::FlagTrivial); 368802b033dSAaron Smith } 369802b033dSAaron Smith 370802b033dSAaron Smith static FunctionOptions 371802b033dSAaron Smith getFunctionOptions(const DISubroutineType *Ty, 372802b033dSAaron Smith const DICompositeType *ClassTy = nullptr, 373802b033dSAaron Smith StringRef SPName = StringRef("")) { 374802b033dSAaron Smith FunctionOptions FO = FunctionOptions::None; 375802b033dSAaron Smith const DIType *ReturnTy = nullptr; 376802b033dSAaron Smith if (auto TypeArray = Ty->getTypeArray()) { 377802b033dSAaron Smith if (TypeArray.size()) 378802b033dSAaron Smith ReturnTy = TypeArray[0].resolve(); 379802b033dSAaron Smith } 380802b033dSAaron Smith 381802b033dSAaron Smith if (auto *ReturnDCTy = dyn_cast_or_null<DICompositeType>(ReturnTy)) { 382802b033dSAaron Smith if (!isTrivial(ReturnDCTy)) 383802b033dSAaron Smith FO |= FunctionOptions::CxxReturnUdt; 384802b033dSAaron Smith } 385802b033dSAaron Smith 386802b033dSAaron Smith // DISubroutineType is unnamed. Use DISubprogram's i.e. SPName in comparison. 387802b033dSAaron Smith if (ClassTy && !isTrivial(ClassTy) && SPName == ClassTy->getName()) { 388802b033dSAaron Smith FO |= FunctionOptions::Constructor; 389802b033dSAaron Smith 390802b033dSAaron Smith // TODO: put the FunctionOptions::ConstructorWithVirtualBases flag. 391802b033dSAaron Smith 392802b033dSAaron Smith } 393802b033dSAaron Smith return FO; 394802b033dSAaron Smith } 395802b033dSAaron Smith 3960c5d874bSReid Kleckner TypeIndex CodeViewDebug::getMemberFunctionType(const DISubprogram *SP, 3970c5d874bSReid Kleckner const DICompositeType *Class) { 398b5af11dfSReid Kleckner // Always use the method declaration as the key for the function type. The 399b5af11dfSReid Kleckner // method declaration contains the this adjustment. 400b5af11dfSReid Kleckner if (SP->getDeclaration()) 401b5af11dfSReid Kleckner SP = SP->getDeclaration(); 402b5af11dfSReid Kleckner assert(!SP->getDeclaration() && "should use declaration as key"); 403b5af11dfSReid Kleckner 4040c5d874bSReid Kleckner // Key the MemberFunctionRecord into the map as {SP, Class}. It won't collide 4050c5d874bSReid Kleckner // with the MemberFuncIdRecord, which is keyed in as {SP, nullptr}. 406b5af11dfSReid Kleckner auto I = TypeIndices.find({SP, Class}); 4070c5d874bSReid Kleckner if (I != TypeIndices.end()) 4080c5d874bSReid Kleckner return I->second; 4090c5d874bSReid Kleckner 410b5af11dfSReid Kleckner // Make sure complete type info for the class is emitted *after* the member 411b5af11dfSReid Kleckner // function type, as the complete class type is likely to reference this 412b5af11dfSReid Kleckner // member function type. 413b5af11dfSReid Kleckner TypeLoweringScope S(*this); 414d91bf399SAdrian McCarthy const bool IsStaticMethod = (SP->getFlags() & DINode::FlagStaticMember) != 0; 415802b033dSAaron Smith 416802b033dSAaron Smith FunctionOptions FO = getFunctionOptions(SP->getType(), Class, SP->getName()); 417d91bf399SAdrian McCarthy TypeIndex TI = lowerTypeMemberFunction( 418802b033dSAaron Smith SP->getType(), Class, SP->getThisAdjustment(), IsStaticMethod, FO); 4190c5d874bSReid Kleckner return recordTypeIndexForDINode(SP, TI, Class); 4200c5d874bSReid Kleckner } 4210c5d874bSReid Kleckner 422acee5685SAmjad Aboud TypeIndex CodeViewDebug::recordTypeIndexForDINode(const DINode *Node, 423acee5685SAmjad Aboud TypeIndex TI, 42476c9eb99SAmjad Aboud const DIType *ClassTy) { 42576c9eb99SAmjad Aboud auto InsertResult = TypeIndices.insert({{Node, ClassTy}, TI}); 426a8d57407SReid Kleckner (void)InsertResult; 427a8d57407SReid Kleckner assert(InsertResult.second && "DINode was already assigned a type index"); 4280c5d874bSReid Kleckner return TI; 429a8d57407SReid Kleckner } 430a8d57407SReid Kleckner 43176c9eb99SAmjad Aboud unsigned CodeViewDebug::getPointerSizeInBytes() { 43276c9eb99SAmjad Aboud return MMI->getModule()->getDataLayout().getPointerSizeInBits() / 8; 43376c9eb99SAmjad Aboud } 43476c9eb99SAmjad Aboud 435876330d5SReid Kleckner void CodeViewDebug::recordLocalVariable(LocalVariable &&Var, 4365a791ee4SReid Kleckner const LexicalScope *LS) { 4375a791ee4SReid Kleckner if (const DILocation *InlinedAt = LS->getInlinedAt()) { 438876330d5SReid Kleckner // This variable was inlined. Associate it with the InlineSite. 439876330d5SReid Kleckner const DISubprogram *Inlinee = Var.DIVar->getScope()->getSubprogram(); 440876330d5SReid Kleckner InlineSite &Site = getInlineSite(InlinedAt, Inlinee); 441876330d5SReid Kleckner Site.InlinedLocals.emplace_back(Var); 442876330d5SReid Kleckner } else { 4435a791ee4SReid Kleckner // This variable goes into the corresponding lexical scope. 4445a791ee4SReid Kleckner ScopeVariables[LS].emplace_back(Var); 445876330d5SReid Kleckner } 446876330d5SReid Kleckner } 447876330d5SReid Kleckner 448829365aeSReid Kleckner static void addLocIfNotPresent(SmallVectorImpl<const DILocation *> &Locs, 449829365aeSReid Kleckner const DILocation *Loc) { 450829365aeSReid Kleckner auto B = Locs.begin(), E = Locs.end(); 451829365aeSReid Kleckner if (std::find(B, E, Loc) == E) 452829365aeSReid Kleckner Locs.push_back(Loc); 453829365aeSReid Kleckner } 454829365aeSReid Kleckner 455bdc4956bSBenjamin Kramer void CodeViewDebug::maybeRecordLocation(const DebugLoc &DL, 45670f5bc99SReid Kleckner const MachineFunction *MF) { 4579533af4fSReid Kleckner // Skip this instruction if it has the same location as the previous one. 45845a74620SReid Kleckner if (!DL || DL == PrevInstLoc) 4599533af4fSReid Kleckner return; 4609533af4fSReid Kleckner 4619533af4fSReid Kleckner const DIScope *Scope = DL.get()->getScope(); 46270f5bc99SReid Kleckner if (!Scope) 46370f5bc99SReid Kleckner return; 4649533af4fSReid Kleckner 46570f5bc99SReid Kleckner // Skip this line if it is longer than the maximum we can record. 4662214ed89SReid Kleckner LineInfo LI(DL.getLine(), DL.getLine(), /*IsStatement=*/true); 4672214ed89SReid Kleckner if (LI.getStartLine() != DL.getLine() || LI.isAlwaysStepInto() || 4682214ed89SReid Kleckner LI.isNeverStepInto()) 46970f5bc99SReid Kleckner return; 47070f5bc99SReid Kleckner 4712214ed89SReid Kleckner ColumnInfo CI(DL.getCol(), /*EndColumn=*/0); 4722214ed89SReid Kleckner if (CI.getStartColumn() != DL.getCol()) 4732214ed89SReid Kleckner return; 47400d9639cSReid Kleckner 4752214ed89SReid Kleckner if (!CurFn->HaveLineInfo) 4762214ed89SReid Kleckner CurFn->HaveLineInfo = true; 4772214ed89SReid Kleckner unsigned FileId = 0; 47845a74620SReid Kleckner if (PrevInstLoc.get() && PrevInstLoc->getFile() == DL->getFile()) 4792214ed89SReid Kleckner FileId = CurFn->LastFileId; 4802214ed89SReid Kleckner else 4812214ed89SReid Kleckner FileId = CurFn->LastFileId = maybeRecordFile(DL->getFile()); 48245a74620SReid Kleckner PrevInstLoc = DL; 483f3b9ba49SReid Kleckner 484f3b9ba49SReid Kleckner unsigned FuncId = CurFn->FuncId; 485876330d5SReid Kleckner if (const DILocation *SiteLoc = DL->getInlinedAt()) { 486829365aeSReid Kleckner const DILocation *Loc = DL.get(); 487829365aeSReid Kleckner 488f3b9ba49SReid Kleckner // If this location was actually inlined from somewhere else, give it the ID 489f3b9ba49SReid Kleckner // of the inline call site. 490876330d5SReid Kleckner FuncId = 491876330d5SReid Kleckner getInlineSite(SiteLoc, Loc->getScope()->getSubprogram()).SiteFuncId; 492829365aeSReid Kleckner 493f3b9ba49SReid Kleckner // Ensure we have links in the tree of inline call sites. 494829365aeSReid Kleckner bool FirstLoc = true; 495829365aeSReid Kleckner while ((SiteLoc = Loc->getInlinedAt())) { 496876330d5SReid Kleckner InlineSite &Site = 497876330d5SReid Kleckner getInlineSite(SiteLoc, Loc->getScope()->getSubprogram()); 498829365aeSReid Kleckner if (!FirstLoc) 499829365aeSReid Kleckner addLocIfNotPresent(Site.ChildSites, Loc); 500829365aeSReid Kleckner FirstLoc = false; 501829365aeSReid Kleckner Loc = SiteLoc; 502f3b9ba49SReid Kleckner } 503829365aeSReid Kleckner addLocIfNotPresent(CurFn->ChildSites, Loc); 504f3b9ba49SReid Kleckner } 505f3b9ba49SReid Kleckner 506dac21b43SReid Kleckner OS.EmitCVLocDirective(FuncId, FileId, DL.getLine(), DL.getCol(), 507a9f4cc95SReid Kleckner /*PrologueEnd=*/false, /*IsStmt=*/false, 508a9f4cc95SReid Kleckner DL->getFilename(), SMLoc()); 50970f5bc99SReid Kleckner } 51070f5bc99SReid Kleckner 5115d122f87SReid Kleckner void CodeViewDebug::emitCodeViewMagicVersion() { 5125d122f87SReid Kleckner OS.EmitValueToAlignment(4); 5135d122f87SReid Kleckner OS.AddComment("Debug section magic"); 5145d122f87SReid Kleckner OS.EmitIntValue(COFF::DEBUG_SECTION_MAGIC, 4); 5155d122f87SReid Kleckner } 5165d122f87SReid Kleckner 51770f5bc99SReid Kleckner void CodeViewDebug::endModule() { 5186f3406dfSReid Kleckner if (!Asm || !MMI->hasDebugInfo()) 51970f5bc99SReid Kleckner return; 52070f5bc99SReid Kleckner 52170f5bc99SReid Kleckner assert(Asm != nullptr); 52270f5bc99SReid Kleckner 52370f5bc99SReid Kleckner // The COFF .debug$S section consists of several subsections, each starting 52470f5bc99SReid Kleckner // with a 4-byte control code (e.g. 0xF1, 0xF2, etc) and then a 4-byte length 52570f5bc99SReid Kleckner // of the payload followed by the payload itself. The subsections are 4-byte 52670f5bc99SReid Kleckner // aligned. 52770f5bc99SReid Kleckner 5286f3406dfSReid Kleckner // Use the generic .debug$S section, and make a subsection for all the inlined 5296f3406dfSReid Kleckner // subprograms. 5306f3406dfSReid Kleckner switchToDebugSectionForSymbol(nullptr); 5314333daabSAdrian McCarthy 5328c099fe0SZachary Turner MCSymbol *CompilerInfo = beginCVSubsection(DebugSubsectionKind::Symbols); 5334333daabSAdrian McCarthy emitCompilerInformation(); 5344333daabSAdrian McCarthy endCVSubsection(CompilerInfo); 5354333daabSAdrian McCarthy 5365d122f87SReid Kleckner emitInlineeLinesSubsection(); 5371fcd610cSReid Kleckner 5382214ed89SReid Kleckner // Emit per-function debug information. 5392214ed89SReid Kleckner for (auto &P : FnDebugInfo) 540577be0feSDavid Majnemer if (!P.first->isDeclarationForLinker()) 54155baeefdSReid Kleckner emitDebugInfoForFunction(P.first, *P.second); 54270f5bc99SReid Kleckner 5436f3406dfSReid Kleckner // Emit global variable debug information. 5443128b10cSDavid Majnemer setCurrentSubprogram(nullptr); 5456f3406dfSReid Kleckner emitDebugInfoForGlobals(); 5466f3406dfSReid Kleckner 547b510b458SHans Wennborg // Emit retained types. 548b510b458SHans Wennborg emitDebugInfoForRetainedTypes(); 549b510b458SHans Wennborg 5505d122f87SReid Kleckner // Switch back to the generic .debug$S section after potentially processing 5515d122f87SReid Kleckner // comdat symbol sections. 5525d122f87SReid Kleckner switchToDebugSectionForSymbol(nullptr); 5535d122f87SReid Kleckner 5543128b10cSDavid Majnemer // Emit UDT records for any types used by global variables. 5553128b10cSDavid Majnemer if (!GlobalUDTs.empty()) { 5568c099fe0SZachary Turner MCSymbol *SymbolsEnd = beginCVSubsection(DebugSubsectionKind::Symbols); 5573128b10cSDavid Majnemer emitDebugInfoForUDTs(GlobalUDTs); 5583128b10cSDavid Majnemer endCVSubsection(SymbolsEnd); 5593128b10cSDavid Majnemer } 5603128b10cSDavid Majnemer 56170f5bc99SReid Kleckner // This subsection holds a file index to offset in string table table. 562dac21b43SReid Kleckner OS.AddComment("File index to string table offset subsection"); 563dac21b43SReid Kleckner OS.EmitCVFileChecksumsDirective(); 56470f5bc99SReid Kleckner 56570f5bc99SReid Kleckner // This subsection holds the string table. 566dac21b43SReid Kleckner OS.AddComment("String table"); 567dac21b43SReid Kleckner OS.EmitCVStringTableDirective(); 56870f5bc99SReid Kleckner 569810687cbSReid Kleckner // Emit S_BUILDINFO, which points to LF_BUILDINFO. Put this in its own symbol 570810687cbSReid Kleckner // subsection in the generic .debug$S section at the end. There is no 571810687cbSReid Kleckner // particular reason for this ordering other than to match MSVC. 572810687cbSReid Kleckner emitBuildInfo(); 573810687cbSReid Kleckner 574048f8f99SZachary Turner // Emit type information and hashes last, so that any types we translate while 575048f8f99SZachary Turner // emitting function info are included. 5765acacbb0SReid Kleckner emitTypeInformation(); 5775acacbb0SReid Kleckner 578048f8f99SZachary Turner if (EmitDebugGlobalHashes) 579048f8f99SZachary Turner emitTypeGlobalHashes(); 580048f8f99SZachary Turner 58170f5bc99SReid Kleckner clear(); 58270f5bc99SReid Kleckner } 58370f5bc99SReid Kleckner 58419e17b39SBrock Wyma static void emitNullTerminatedSymbolName(MCStreamer &OS, StringRef S, 58519e17b39SBrock Wyma unsigned MaxFixedRecordLength = 0xF00) { 586bb96df60SReid Kleckner // The maximum CV record length is 0xFF00. Most of the strings we emit appear 587bb96df60SReid Kleckner // after a fixed length portion of the record. The fixed length portion should 588bb96df60SReid Kleckner // always be less than 0xF00 (3840) bytes, so truncate the string so that the 589bb96df60SReid Kleckner // overall record size is less than the maximum allowed. 590bb96df60SReid Kleckner SmallString<32> NullTerminatedString( 591bb96df60SReid Kleckner S.take_front(MaxRecordLength - MaxFixedRecordLength - 1)); 592b9456a5eSDavid Majnemer NullTerminatedString.push_back('\0'); 593b9456a5eSDavid Majnemer OS.EmitBytes(NullTerminatedString); 594b9456a5eSDavid Majnemer } 595b9456a5eSDavid Majnemer 596f3b9ba49SReid Kleckner void CodeViewDebug::emitTypeInformation() { 5972280f932SReid Kleckner if (TypeTable.empty()) 598fbd7787dSReid Kleckner return; 599fbd7787dSReid Kleckner 600d9e96741SAlexandre Ganea // Start the .debug$T or .debug$P section with 0x4. 601dac21b43SReid Kleckner OS.SwitchSection(Asm->getObjFileLowering().getCOFFDebugTypesSection()); 6025d122f87SReid Kleckner emitCodeViewMagicVersion(); 603f3b9ba49SReid Kleckner 604fbdbe9e2SReid Kleckner SmallString<8> CommentPrefix; 605fbdbe9e2SReid Kleckner if (OS.isVerboseAsm()) { 606fbdbe9e2SReid Kleckner CommentPrefix += '\t'; 607fbdbe9e2SReid Kleckner CommentPrefix += Asm->MAI->getCommentString(); 608fbdbe9e2SReid Kleckner CommentPrefix += ' '; 609fbdbe9e2SReid Kleckner } 610fbdbe9e2SReid Kleckner 611526f4f2aSZachary Turner TypeTableCollection Table(TypeTable.records()); 612526f4f2aSZachary Turner Optional<TypeIndex> B = Table.getFirst(); 613526f4f2aSZachary Turner while (B) { 614526f4f2aSZachary Turner // This will fail if the record data is invalid. 615526f4f2aSZachary Turner CVType Record = Table.getType(*B); 616526f4f2aSZachary Turner 617fbdbe9e2SReid Kleckner if (OS.isVerboseAsm()) { 618fbdbe9e2SReid Kleckner // Emit a block comment describing the type record for readability. 619fbdbe9e2SReid Kleckner SmallString<512> CommentBlock; 620fbdbe9e2SReid Kleckner raw_svector_ostream CommentOS(CommentBlock); 621fbdbe9e2SReid Kleckner ScopedPrinter SP(CommentOS); 622fbdbe9e2SReid Kleckner SP.setPrefix(CommentPrefix); 623526f4f2aSZachary Turner TypeDumpVisitor TDV(Table, &SP, false); 624526f4f2aSZachary Turner 625526f4f2aSZachary Turner Error E = codeview::visitTypeRecord(Record, *B, TDV); 626c92e9469SReid Kleckner if (E) { 627c92e9469SReid Kleckner logAllUnhandledErrors(std::move(E), errs(), "error: "); 628c92e9469SReid Kleckner llvm_unreachable("produced malformed type record"); 629c92e9469SReid Kleckner } 630fbdbe9e2SReid Kleckner // emitRawComment will insert its own tab and comment string before 631fbdbe9e2SReid Kleckner // the first line, so strip off our first one. It also prints its own 632fbdbe9e2SReid Kleckner // newline. 633fbdbe9e2SReid Kleckner OS.emitRawComment( 634fbdbe9e2SReid Kleckner CommentOS.str().drop_front(CommentPrefix.size() - 1).rtrim()); 635c92e9469SReid Kleckner } 636526f4f2aSZachary Turner OS.EmitBinaryData(Record.str_data()); 637526f4f2aSZachary Turner B = Table.getNext(*B); 6381dfcf8d9SZachary Turner } 639f3b9ba49SReid Kleckner } 640f3b9ba49SReid Kleckner 641048f8f99SZachary Turner void CodeViewDebug::emitTypeGlobalHashes() { 642048f8f99SZachary Turner if (TypeTable.empty()) 643048f8f99SZachary Turner return; 644048f8f99SZachary Turner 645048f8f99SZachary Turner // Start the .debug$H section with the version and hash algorithm, currently 646048f8f99SZachary Turner // hardcoded to version 0, SHA1. 647048f8f99SZachary Turner OS.SwitchSection(Asm->getObjFileLowering().getCOFFGlobalTypeHashesSection()); 648048f8f99SZachary Turner 649048f8f99SZachary Turner OS.EmitValueToAlignment(4); 650048f8f99SZachary Turner OS.AddComment("Magic"); 651048f8f99SZachary Turner OS.EmitIntValue(COFF::DEBUG_HASHES_SECTION_MAGIC, 4); 652048f8f99SZachary Turner OS.AddComment("Section Version"); 653048f8f99SZachary Turner OS.EmitIntValue(0, 2); 654048f8f99SZachary Turner OS.AddComment("Hash Algorithm"); 655c762666eSZachary Turner OS.EmitIntValue(uint16_t(GlobalTypeHashAlg::SHA1_8), 2); 656048f8f99SZachary Turner 657048f8f99SZachary Turner TypeIndex TI(TypeIndex::FirstNonSimpleIndex); 658048f8f99SZachary Turner for (const auto &GHR : TypeTable.hashes()) { 659048f8f99SZachary Turner if (OS.isVerboseAsm()) { 660048f8f99SZachary Turner // Emit an EOL-comment describing which TypeIndex this hash corresponds 661048f8f99SZachary Turner // to, as well as the stringified SHA1 hash. 662048f8f99SZachary Turner SmallString<32> Comment; 663048f8f99SZachary Turner raw_svector_ostream CommentOS(Comment); 664048f8f99SZachary Turner CommentOS << formatv("{0:X+} [{1}]", TI.getIndex(), GHR); 665048f8f99SZachary Turner OS.AddComment(Comment); 666048f8f99SZachary Turner ++TI; 667048f8f99SZachary Turner } 668c762666eSZachary Turner assert(GHR.Hash.size() == 8); 669048f8f99SZachary Turner StringRef S(reinterpret_cast<const char *>(GHR.Hash.data()), 670048f8f99SZachary Turner GHR.Hash.size()); 671048f8f99SZachary Turner OS.EmitBinaryData(S); 672048f8f99SZachary Turner } 673048f8f99SZachary Turner } 674048f8f99SZachary Turner 675c64acfd4SAdrian McCarthy static SourceLanguage MapDWLangToCVLang(unsigned DWLang) { 676c64acfd4SAdrian McCarthy switch (DWLang) { 677c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C: 678c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C89: 679c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C99: 680c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C11: 681c64acfd4SAdrian McCarthy case dwarf::DW_LANG_ObjC: 682c64acfd4SAdrian McCarthy return SourceLanguage::C; 683c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C_plus_plus: 684c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C_plus_plus_03: 685c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C_plus_plus_11: 686c64acfd4SAdrian McCarthy case dwarf::DW_LANG_C_plus_plus_14: 687c64acfd4SAdrian McCarthy return SourceLanguage::Cpp; 688c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Fortran77: 689c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Fortran90: 690c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Fortran03: 691c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Fortran08: 692c64acfd4SAdrian McCarthy return SourceLanguage::Fortran; 693c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Pascal83: 694c64acfd4SAdrian McCarthy return SourceLanguage::Pascal; 695c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Cobol74: 696c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Cobol85: 697c64acfd4SAdrian McCarthy return SourceLanguage::Cobol; 698c64acfd4SAdrian McCarthy case dwarf::DW_LANG_Java: 699c64acfd4SAdrian McCarthy return SourceLanguage::Java; 700898ddf61SReid Kleckner case dwarf::DW_LANG_D: 701898ddf61SReid Kleckner return SourceLanguage::D; 702c64acfd4SAdrian McCarthy default: 703c64acfd4SAdrian McCarthy // There's no CodeView representation for this language, and CV doesn't 704c64acfd4SAdrian McCarthy // have an "unknown" option for the language field, so we'll use MASM, 705c64acfd4SAdrian McCarthy // as it's very low level. 706c64acfd4SAdrian McCarthy return SourceLanguage::Masm; 707c64acfd4SAdrian McCarthy } 708c64acfd4SAdrian McCarthy } 709c64acfd4SAdrian McCarthy 7107f6b2534SReid Kleckner namespace { 711c64acfd4SAdrian McCarthy struct Version { 712c64acfd4SAdrian McCarthy int Part[4]; 713c64acfd4SAdrian McCarthy }; 7147f6b2534SReid Kleckner } // end anonymous namespace 715c64acfd4SAdrian McCarthy 716c64acfd4SAdrian McCarthy // Takes a StringRef like "clang 4.0.0.0 (other nonsense 123)" and parses out 717c64acfd4SAdrian McCarthy // the version number. 718c64acfd4SAdrian McCarthy static Version parseVersion(StringRef Name) { 719ad8ac54dSAdrian McCarthy Version V = {{0}}; 720c64acfd4SAdrian McCarthy int N = 0; 721c64acfd4SAdrian McCarthy for (const char C : Name) { 722c64acfd4SAdrian McCarthy if (isdigit(C)) { 723c64acfd4SAdrian McCarthy V.Part[N] *= 10; 724c64acfd4SAdrian McCarthy V.Part[N] += C - '0'; 725c64acfd4SAdrian McCarthy } else if (C == '.') { 726c64acfd4SAdrian McCarthy ++N; 727c64acfd4SAdrian McCarthy if (N >= 4) 728c64acfd4SAdrian McCarthy return V; 729c64acfd4SAdrian McCarthy } else if (N > 0) 730c64acfd4SAdrian McCarthy return V; 731c64acfd4SAdrian McCarthy } 732c64acfd4SAdrian McCarthy return V; 733c64acfd4SAdrian McCarthy } 734c64acfd4SAdrian McCarthy 735c64acfd4SAdrian McCarthy void CodeViewDebug::emitCompilerInformation() { 7365bf71d11SReid Kleckner MCSymbol *CompilerEnd = beginSymbolRecord(SymbolKind::S_COMPILE3); 737c64acfd4SAdrian McCarthy uint32_t Flags = 0; 738c64acfd4SAdrian McCarthy 739c64acfd4SAdrian McCarthy NamedMDNode *CUs = MMI->getModule()->getNamedMetadata("llvm.dbg.cu"); 740c64acfd4SAdrian McCarthy const MDNode *Node = *CUs->operands().begin(); 741c64acfd4SAdrian McCarthy const auto *CU = cast<DICompileUnit>(Node); 742c64acfd4SAdrian McCarthy 743c64acfd4SAdrian McCarthy // The low byte of the flags indicates the source language. 744c64acfd4SAdrian McCarthy Flags = MapDWLangToCVLang(CU->getSourceLanguage()); 745c64acfd4SAdrian McCarthy // TODO: Figure out which other flags need to be set. 746c64acfd4SAdrian McCarthy 747c64acfd4SAdrian McCarthy OS.AddComment("Flags and language"); 748c64acfd4SAdrian McCarthy OS.EmitIntValue(Flags, 4); 749c64acfd4SAdrian McCarthy 750c64acfd4SAdrian McCarthy OS.AddComment("CPUType"); 7519ea2c012SReid Kleckner OS.EmitIntValue(static_cast<uint64_t>(TheCPU), 2); 752c64acfd4SAdrian McCarthy 753c64acfd4SAdrian McCarthy StringRef CompilerVersion = CU->getProducer(); 754c64acfd4SAdrian McCarthy Version FrontVer = parseVersion(CompilerVersion); 755c64acfd4SAdrian McCarthy OS.AddComment("Frontend version"); 756c64acfd4SAdrian McCarthy for (int N = 0; N < 4; ++N) 757c64acfd4SAdrian McCarthy OS.EmitIntValue(FrontVer.Part[N], 2); 758c64acfd4SAdrian McCarthy 759c64acfd4SAdrian McCarthy // Some Microsoft tools, like Binscope, expect a backend version number of at 760c64acfd4SAdrian McCarthy // least 8.something, so we'll coerce the LLVM version into a form that 761c64acfd4SAdrian McCarthy // guarantees it'll be big enough without really lying about the version. 762d1185fc0SAdrian McCarthy int Major = 1000 * LLVM_VERSION_MAJOR + 763c64acfd4SAdrian McCarthy 10 * LLVM_VERSION_MINOR + 764d1185fc0SAdrian McCarthy LLVM_VERSION_PATCH; 765d1185fc0SAdrian McCarthy // Clamp it for builds that use unusually large version numbers. 766d1185fc0SAdrian McCarthy Major = std::min<int>(Major, std::numeric_limits<uint16_t>::max()); 767d1185fc0SAdrian McCarthy Version BackVer = {{ Major, 0, 0, 0 }}; 768c64acfd4SAdrian McCarthy OS.AddComment("Backend version"); 769c64acfd4SAdrian McCarthy for (int N = 0; N < 4; ++N) 770c64acfd4SAdrian McCarthy OS.EmitIntValue(BackVer.Part[N], 2); 771c64acfd4SAdrian McCarthy 772c64acfd4SAdrian McCarthy OS.AddComment("Null-terminated compiler version string"); 773c64acfd4SAdrian McCarthy emitNullTerminatedSymbolName(OS, CompilerVersion); 774c64acfd4SAdrian McCarthy 7755bf71d11SReid Kleckner endSymbolRecord(CompilerEnd); 776c64acfd4SAdrian McCarthy } 777c64acfd4SAdrian McCarthy 778810687cbSReid Kleckner static TypeIndex getStringIdTypeIdx(GlobalTypeTableBuilder &TypeTable, 779810687cbSReid Kleckner StringRef S) { 780810687cbSReid Kleckner StringIdRecord SIR(TypeIndex(0x0), S); 781810687cbSReid Kleckner return TypeTable.writeLeafType(SIR); 782810687cbSReid Kleckner } 783810687cbSReid Kleckner 784810687cbSReid Kleckner void CodeViewDebug::emitBuildInfo() { 785810687cbSReid Kleckner // First, make LF_BUILDINFO. It's a sequence of strings with various bits of 786810687cbSReid Kleckner // build info. The known prefix is: 787810687cbSReid Kleckner // - Absolute path of current directory 788810687cbSReid Kleckner // - Compiler path 789810687cbSReid Kleckner // - Main source file path, relative to CWD or absolute 790810687cbSReid Kleckner // - Type server PDB file 791810687cbSReid Kleckner // - Canonical compiler command line 792810687cbSReid Kleckner // If frontend and backend compilation are separated (think llc or LTO), it's 793810687cbSReid Kleckner // not clear if the compiler path should refer to the executable for the 794810687cbSReid Kleckner // frontend or the backend. Leave it blank for now. 795810687cbSReid Kleckner TypeIndex BuildInfoArgs[BuildInfoRecord::MaxArgs] = {}; 796810687cbSReid Kleckner NamedMDNode *CUs = MMI->getModule()->getNamedMetadata("llvm.dbg.cu"); 797810687cbSReid Kleckner const MDNode *Node = *CUs->operands().begin(); // FIXME: Multiple CUs. 798810687cbSReid Kleckner const auto *CU = cast<DICompileUnit>(Node); 799810687cbSReid Kleckner const DIFile *MainSourceFile = CU->getFile(); 800810687cbSReid Kleckner BuildInfoArgs[BuildInfoRecord::CurrentDirectory] = 801810687cbSReid Kleckner getStringIdTypeIdx(TypeTable, MainSourceFile->getDirectory()); 802810687cbSReid Kleckner BuildInfoArgs[BuildInfoRecord::SourceFile] = 803810687cbSReid Kleckner getStringIdTypeIdx(TypeTable, MainSourceFile->getFilename()); 804810687cbSReid Kleckner // FIXME: Path to compiler and command line. PDB is intentionally blank unless 805810687cbSReid Kleckner // we implement /Zi type servers. 806810687cbSReid Kleckner BuildInfoRecord BIR(BuildInfoArgs); 807810687cbSReid Kleckner TypeIndex BuildInfoIndex = TypeTable.writeLeafType(BIR); 808810687cbSReid Kleckner 809810687cbSReid Kleckner // Make a new .debug$S subsection for the S_BUILDINFO record, which points 810810687cbSReid Kleckner // from the module symbols into the type stream. 8115bf71d11SReid Kleckner MCSymbol *BISubsecEnd = beginCVSubsection(DebugSubsectionKind::Symbols); 8125bf71d11SReid Kleckner MCSymbol *BIEnd = beginSymbolRecord(SymbolKind::S_BUILDINFO); 813810687cbSReid Kleckner OS.AddComment("LF_BUILDINFO index"); 814810687cbSReid Kleckner OS.EmitIntValue(BuildInfoIndex.getIndex(), 4); 8155bf71d11SReid Kleckner endSymbolRecord(BIEnd); 8165bf71d11SReid Kleckner endCVSubsection(BISubsecEnd); 817810687cbSReid Kleckner } 818810687cbSReid Kleckner 8195d122f87SReid Kleckner void CodeViewDebug::emitInlineeLinesSubsection() { 8201fcd610cSReid Kleckner if (InlinedSubprograms.empty()) 8211fcd610cSReid Kleckner return; 8221fcd610cSReid Kleckner 8231fcd610cSReid Kleckner OS.AddComment("Inlinee lines subsection"); 8248c099fe0SZachary Turner MCSymbol *InlineEnd = beginCVSubsection(DebugSubsectionKind::InlineeLines); 8251fcd610cSReid Kleckner 82626fa1bf4SReid Kleckner // We emit the checksum info for files. This is used by debuggers to 82726fa1bf4SReid Kleckner // determine if a pdb matches the source before loading it. Visual Studio, 82826fa1bf4SReid Kleckner // for instance, will display a warning that the breakpoints are not valid if 82926fa1bf4SReid Kleckner // the pdb does not match the source. 83030579ec8SDavid Majnemer OS.AddComment("Inlinee lines signature"); 8311fcd610cSReid Kleckner OS.EmitIntValue(unsigned(InlineeLinesSignature::Normal), 4); 8321fcd610cSReid Kleckner 8331fcd610cSReid Kleckner for (const DISubprogram *SP : InlinedSubprograms) { 83476c9eb99SAmjad Aboud assert(TypeIndices.count({SP, nullptr})); 83576c9eb99SAmjad Aboud TypeIndex InlineeIdx = TypeIndices[{SP, nullptr}]; 8362280f932SReid Kleckner 83730579ec8SDavid Majnemer OS.AddBlankLine(); 8381fcd610cSReid Kleckner unsigned FileId = maybeRecordFile(SP->getFile()); 8399d2f019fSAdrian Prantl OS.AddComment("Inlined function " + SP->getName() + " starts at " + 8401fcd610cSReid Kleckner SP->getFilename() + Twine(':') + Twine(SP->getLine())); 84130579ec8SDavid Majnemer OS.AddBlankLine(); 84230579ec8SDavid Majnemer OS.AddComment("Type index of inlined function"); 8432280f932SReid Kleckner OS.EmitIntValue(InlineeIdx.getIndex(), 4); 84430579ec8SDavid Majnemer OS.AddComment("Offset into filechecksum table"); 84526fa1bf4SReid Kleckner OS.EmitCVFileChecksumOffsetDirective(FileId); 84630579ec8SDavid Majnemer OS.AddComment("Starting line number"); 8471fcd610cSReid Kleckner OS.EmitIntValue(SP->getLine(), 4); 8481fcd610cSReid Kleckner } 8491fcd610cSReid Kleckner 8506f3406dfSReid Kleckner endCVSubsection(InlineEnd); 8511fcd610cSReid Kleckner } 8521fcd610cSReid Kleckner 853f3b9ba49SReid Kleckner void CodeViewDebug::emitInlinedCallSite(const FunctionInfo &FI, 854f3b9ba49SReid Kleckner const DILocation *InlinedAt, 855f3b9ba49SReid Kleckner const InlineSite &Site) { 85676c9eb99SAmjad Aboud assert(TypeIndices.count({Site.Inlinee, nullptr})); 85776c9eb99SAmjad Aboud TypeIndex InlineeIdx = TypeIndices[{Site.Inlinee, nullptr}]; 858f3b9ba49SReid Kleckner 859f3b9ba49SReid Kleckner // SymbolRecord 8605bf71d11SReid Kleckner MCSymbol *InlineEnd = beginSymbolRecord(SymbolKind::S_INLINESITE); 861f3b9ba49SReid Kleckner 862dac21b43SReid Kleckner OS.AddComment("PtrParent"); 863dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 864dac21b43SReid Kleckner OS.AddComment("PtrEnd"); 865dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 866dac21b43SReid Kleckner OS.AddComment("Inlinee type index"); 8672280f932SReid Kleckner OS.EmitIntValue(InlineeIdx.getIndex(), 4); 868f3b9ba49SReid Kleckner 8691fcd610cSReid Kleckner unsigned FileId = maybeRecordFile(Site.Inlinee->getFile()); 8701fcd610cSReid Kleckner unsigned StartLineNum = Site.Inlinee->getLine(); 8711fcd610cSReid Kleckner 8721fcd610cSReid Kleckner OS.EmitCVInlineLinetableDirective(Site.SiteFuncId, FileId, StartLineNum, 873a9f4cc95SReid Kleckner FI.Begin, FI.End); 874f3b9ba49SReid Kleckner 8755bf71d11SReid Kleckner endSymbolRecord(InlineEnd); 876f3b9ba49SReid Kleckner 8779ea2c012SReid Kleckner emitLocalVariableList(FI, Site.InlinedLocals); 878f9c275feSReid Kleckner 879f3b9ba49SReid Kleckner // Recurse on child inlined call sites before closing the scope. 880f3b9ba49SReid Kleckner for (const DILocation *ChildSite : Site.ChildSites) { 881f3b9ba49SReid Kleckner auto I = FI.InlineSites.find(ChildSite); 882f3b9ba49SReid Kleckner assert(I != FI.InlineSites.end() && 883f3b9ba49SReid Kleckner "child site not in function inline site map"); 884f3b9ba49SReid Kleckner emitInlinedCallSite(FI, ChildSite, I->second); 885f3b9ba49SReid Kleckner } 886f3b9ba49SReid Kleckner 887f3b9ba49SReid Kleckner // Close the scope. 8885bf71d11SReid Kleckner emitEndSymbolRecord(SymbolKind::S_INLINESITE_END); 889f3b9ba49SReid Kleckner } 890f3b9ba49SReid Kleckner 8915d122f87SReid Kleckner void CodeViewDebug::switchToDebugSectionForSymbol(const MCSymbol *GVSym) { 8925d122f87SReid Kleckner // If we have a symbol, it may be in a section that is COMDAT. If so, find the 8935d122f87SReid Kleckner // comdat key. A section may be comdat because of -ffunction-sections or 8945d122f87SReid Kleckner // because it is comdat in the IR. 8955d122f87SReid Kleckner MCSectionCOFF *GVSec = 8965d122f87SReid Kleckner GVSym ? dyn_cast<MCSectionCOFF>(&GVSym->getSection()) : nullptr; 8975d122f87SReid Kleckner const MCSymbol *KeySym = GVSec ? GVSec->getCOMDATSymbol() : nullptr; 8985d122f87SReid Kleckner 8995d122f87SReid Kleckner MCSectionCOFF *DebugSec = cast<MCSectionCOFF>( 9005d122f87SReid Kleckner Asm->getObjFileLowering().getCOFFDebugSymbolsSection()); 9015d122f87SReid Kleckner DebugSec = OS.getContext().getAssociativeCOFFSection(DebugSec, KeySym); 9025d122f87SReid Kleckner 9035d122f87SReid Kleckner OS.SwitchSection(DebugSec); 9045d122f87SReid Kleckner 9055d122f87SReid Kleckner // Emit the magic version number if this is the first time we've switched to 9065d122f87SReid Kleckner // this section. 9075d122f87SReid Kleckner if (ComdatDebugSections.insert(DebugSec).second) 9085d122f87SReid Kleckner emitCodeViewMagicVersion(); 9095d122f87SReid Kleckner } 9105d122f87SReid Kleckner 91194ece8fbSBrock Wyma // Emit an S_THUNK32/S_END symbol pair for a thunk routine. 91294ece8fbSBrock Wyma // The only supported thunk ordinal is currently the standard type. 91394ece8fbSBrock Wyma void CodeViewDebug::emitDebugInfoForThunk(const Function *GV, 91494ece8fbSBrock Wyma FunctionInfo &FI, 91594ece8fbSBrock Wyma const MCSymbol *Fn) { 91694ece8fbSBrock Wyma std::string FuncName = GlobalValue::dropLLVMManglingEscape(GV->getName()); 91794ece8fbSBrock Wyma const ThunkOrdinal ordinal = ThunkOrdinal::Standard; // Only supported kind. 91894ece8fbSBrock Wyma 91994ece8fbSBrock Wyma OS.AddComment("Symbol subsection for " + Twine(FuncName)); 92094ece8fbSBrock Wyma MCSymbol *SymbolsEnd = beginCVSubsection(DebugSubsectionKind::Symbols); 92194ece8fbSBrock Wyma 92294ece8fbSBrock Wyma // Emit S_THUNK32 9235bf71d11SReid Kleckner MCSymbol *ThunkRecordEnd = beginSymbolRecord(SymbolKind::S_THUNK32); 92494ece8fbSBrock Wyma OS.AddComment("PtrParent"); 92594ece8fbSBrock Wyma OS.EmitIntValue(0, 4); 92694ece8fbSBrock Wyma OS.AddComment("PtrEnd"); 92794ece8fbSBrock Wyma OS.EmitIntValue(0, 4); 92894ece8fbSBrock Wyma OS.AddComment("PtrNext"); 92994ece8fbSBrock Wyma OS.EmitIntValue(0, 4); 93094ece8fbSBrock Wyma OS.AddComment("Thunk section relative address"); 93194ece8fbSBrock Wyma OS.EmitCOFFSecRel32(Fn, /*Offset=*/0); 93294ece8fbSBrock Wyma OS.AddComment("Thunk section index"); 93394ece8fbSBrock Wyma OS.EmitCOFFSectionIndex(Fn); 93494ece8fbSBrock Wyma OS.AddComment("Code size"); 93594ece8fbSBrock Wyma OS.emitAbsoluteSymbolDiff(FI.End, Fn, 2); 93694ece8fbSBrock Wyma OS.AddComment("Ordinal"); 93794ece8fbSBrock Wyma OS.EmitIntValue(unsigned(ordinal), 1); 93894ece8fbSBrock Wyma OS.AddComment("Function name"); 93994ece8fbSBrock Wyma emitNullTerminatedSymbolName(OS, FuncName); 94094ece8fbSBrock Wyma // Additional fields specific to the thunk ordinal would go here. 9415bf71d11SReid Kleckner endSymbolRecord(ThunkRecordEnd); 94294ece8fbSBrock Wyma 94394ece8fbSBrock Wyma // Local variables/inlined routines are purposely omitted here. The point of 94494ece8fbSBrock Wyma // marking this as a thunk is so Visual Studio will NOT stop in this routine. 94594ece8fbSBrock Wyma 94694ece8fbSBrock Wyma // Emit S_PROC_ID_END 9475bf71d11SReid Kleckner emitEndSymbolRecord(SymbolKind::S_PROC_ID_END); 94894ece8fbSBrock Wyma 94994ece8fbSBrock Wyma endCVSubsection(SymbolsEnd); 95094ece8fbSBrock Wyma } 95194ece8fbSBrock Wyma 9522214ed89SReid Kleckner void CodeViewDebug::emitDebugInfoForFunction(const Function *GV, 9532214ed89SReid Kleckner FunctionInfo &FI) { 95431cc1ebbSBrock Wyma // For each function there is a separate subsection which holds the PC to 95531cc1ebbSBrock Wyma // file:line table. 95670f5bc99SReid Kleckner const MCSymbol *Fn = Asm->getSymbol(GV); 95770f5bc99SReid Kleckner assert(Fn); 95870f5bc99SReid Kleckner 9595d122f87SReid Kleckner // Switch to the to a comdat section, if appropriate. 9605d122f87SReid Kleckner switchToDebugSectionForSymbol(Fn); 9615d122f87SReid Kleckner 962ac945e27SReid Kleckner std::string FuncName; 9633128b10cSDavid Majnemer auto *SP = GV->getSubprogram(); 96467f684e1SDavid Majnemer assert(SP); 9653128b10cSDavid Majnemer setCurrentSubprogram(SP); 966ac945e27SReid Kleckner 96794ece8fbSBrock Wyma if (SP->isThunk()) { 96894ece8fbSBrock Wyma emitDebugInfoForThunk(GV, FI, Fn); 96994ece8fbSBrock Wyma return; 97094ece8fbSBrock Wyma } 97194ece8fbSBrock Wyma 972ac945e27SReid Kleckner // If we have a display name, build the fully qualified name by walking the 973ac945e27SReid Kleckner // chain of scopes. 9749d2f019fSAdrian Prantl if (!SP->getName().empty()) 9750c5d874bSReid Kleckner FuncName = 9769d2f019fSAdrian Prantl getFullyQualifiedName(SP->getScope().resolve(), SP->getName()); 97770f5bc99SReid Kleckner 97870f5bc99SReid Kleckner // If our DISubprogram name is empty, use the mangled name. 97970f5bc99SReid Kleckner if (FuncName.empty()) 9806f0ecca3SPeter Collingbourne FuncName = GlobalValue::dropLLVMManglingEscape(GV->getName()); 98170f5bc99SReid Kleckner 9829cdd4df8SReid Kleckner // Emit FPO data, but only on 32-bit x86. No other platforms use it. 9839cdd4df8SReid Kleckner if (Triple(MMI->getModule()->getTargetTriple()).getArch() == Triple::x86) 9849cdd4df8SReid Kleckner OS.EmitCVFPOData(Fn); 9859cdd4df8SReid Kleckner 98670f5bc99SReid Kleckner // Emit a symbol subsection, required by VS2012+ to find function boundaries. 987dac21b43SReid Kleckner OS.AddComment("Symbol subsection for " + Twine(FuncName)); 9888c099fe0SZachary Turner MCSymbol *SymbolsEnd = beginCVSubsection(DebugSubsectionKind::Symbols); 98970f5bc99SReid Kleckner { 9905bf71d11SReid Kleckner SymbolKind ProcKind = GV->hasLocalLinkage() ? SymbolKind::S_LPROC32_ID 9915bf71d11SReid Kleckner : SymbolKind::S_GPROC32_ID; 9925bf71d11SReid Kleckner MCSymbol *ProcRecordEnd = beginSymbolRecord(ProcKind); 99370f5bc99SReid Kleckner 99430579ec8SDavid Majnemer // These fields are filled in by tools like CVPACK which run after the fact. 995dac21b43SReid Kleckner OS.AddComment("PtrParent"); 996dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 997dac21b43SReid Kleckner OS.AddComment("PtrEnd"); 998dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 999dac21b43SReid Kleckner OS.AddComment("PtrNext"); 1000dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 100170f5bc99SReid Kleckner // This is the important bit that tells the debugger where the function 100270f5bc99SReid Kleckner // code is located and what's its size: 1003dac21b43SReid Kleckner OS.AddComment("Code size"); 1004eb3bcdd2SReid Kleckner OS.emitAbsoluteSymbolDiff(FI.End, Fn, 4); 1005dac21b43SReid Kleckner OS.AddComment("Offset after prologue"); 1006dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 1007dac21b43SReid Kleckner OS.AddComment("Offset before epilogue"); 1008dac21b43SReid Kleckner OS.EmitIntValue(0, 4); 1009dac21b43SReid Kleckner OS.AddComment("Function type index"); 101075c3ebfaSDavid Majnemer OS.EmitIntValue(getFuncIdForSubprogram(GV->getSubprogram()).getIndex(), 4); 1011dac21b43SReid Kleckner OS.AddComment("Function section relative address"); 1012f7d84ee6SKeno Fischer OS.EmitCOFFSecRel32(Fn, /*Offset=*/0); 1013dac21b43SReid Kleckner OS.AddComment("Function section index"); 1014dac21b43SReid Kleckner OS.EmitCOFFSectionIndex(Fn); 1015dac21b43SReid Kleckner OS.AddComment("Flags"); 1016dac21b43SReid Kleckner OS.EmitIntValue(0, 1); 101770f5bc99SReid Kleckner // Emit the function display name as a null-terminated string. 1018dac21b43SReid Kleckner OS.AddComment("Function name"); 10191256125fSDavid Majnemer // Truncate the name so we won't overflow the record length field. 1020b9456a5eSDavid Majnemer emitNullTerminatedSymbolName(OS, FuncName); 10215bf71d11SReid Kleckner endSymbolRecord(ProcRecordEnd); 102270f5bc99SReid Kleckner 10235bf71d11SReid Kleckner MCSymbol *FrameProcEnd = beginSymbolRecord(SymbolKind::S_FRAMEPROC); 10249ea2c012SReid Kleckner // Subtract out the CSR size since MSVC excludes that and we include it. 10259ea2c012SReid Kleckner OS.AddComment("FrameSize"); 10269ea2c012SReid Kleckner OS.EmitIntValue(FI.FrameSize - FI.CSRSize, 4); 10279ea2c012SReid Kleckner OS.AddComment("Padding"); 10289ea2c012SReid Kleckner OS.EmitIntValue(0, 4); 10299ea2c012SReid Kleckner OS.AddComment("Offset of padding"); 10309ea2c012SReid Kleckner OS.EmitIntValue(0, 4); 10319ea2c012SReid Kleckner OS.AddComment("Bytes of callee saved registers"); 10329ea2c012SReid Kleckner OS.EmitIntValue(FI.CSRSize, 4); 10339ea2c012SReid Kleckner OS.AddComment("Exception handler offset"); 10349ea2c012SReid Kleckner OS.EmitIntValue(0, 4); 10359ea2c012SReid Kleckner OS.AddComment("Exception handler section"); 10369ea2c012SReid Kleckner OS.EmitIntValue(0, 2); 10379ea2c012SReid Kleckner OS.AddComment("Flags (defines frame register)"); 10389ea2c012SReid Kleckner OS.EmitIntValue(uint32_t(FI.FrameProcOpts), 4); 10395bf71d11SReid Kleckner endSymbolRecord(FrameProcEnd); 10409ea2c012SReid Kleckner 10419ea2c012SReid Kleckner emitLocalVariableList(FI, FI.Locals); 1042b17464e4SBrock Wyma emitGlobalVariableList(FI.Globals); 10435a791ee4SReid Kleckner emitLexicalBlockList(FI.ChildBlocks, FI); 1044f9c275feSReid Kleckner 1045f3b9ba49SReid Kleckner // Emit inlined call site information. Only emit functions inlined directly 1046f3b9ba49SReid Kleckner // into the parent function. We'll emit the other sites recursively as part 1047f3b9ba49SReid Kleckner // of their parent inline site. 1048f9c275feSReid Kleckner for (const DILocation *InlinedAt : FI.ChildSites) { 1049f9c275feSReid Kleckner auto I = FI.InlineSites.find(InlinedAt); 1050f9c275feSReid Kleckner assert(I != FI.InlineSites.end() && 1051f9c275feSReid Kleckner "child site not in function inline site map"); 1052f9c275feSReid Kleckner emitInlinedCallSite(FI, InlinedAt, I->second); 1053f3b9ba49SReid Kleckner } 1054f3b9ba49SReid Kleckner 1055e33c94f1SReid Kleckner for (auto Annot : FI.Annotations) { 1056e33c94f1SReid Kleckner MCSymbol *Label = Annot.first; 1057e33c94f1SReid Kleckner MDTuple *Strs = cast<MDTuple>(Annot.second); 10585bf71d11SReid Kleckner MCSymbol *AnnotEnd = beginSymbolRecord(SymbolKind::S_ANNOTATION); 1059e33c94f1SReid Kleckner OS.EmitCOFFSecRel32(Label, /*Offset=*/0); 1060e33c94f1SReid Kleckner // FIXME: Make sure we don't overflow the max record size. 1061e33c94f1SReid Kleckner OS.EmitCOFFSectionIndex(Label); 1062e33c94f1SReid Kleckner OS.EmitIntValue(Strs->getNumOperands(), 2); 1063e33c94f1SReid Kleckner for (Metadata *MD : Strs->operands()) { 1064e33c94f1SReid Kleckner // MDStrings are null terminated, so we can do EmitBytes and get the 1065e33c94f1SReid Kleckner // nice .asciz directive. 1066e33c94f1SReid Kleckner StringRef Str = cast<MDString>(MD)->getString(); 1067e33c94f1SReid Kleckner assert(Str.data()[Str.size()] == '\0' && "non-nullterminated MDString"); 1068e33c94f1SReid Kleckner OS.EmitBytes(StringRef(Str.data(), Str.size() + 1)); 1069e33c94f1SReid Kleckner } 10705bf71d11SReid Kleckner endSymbolRecord(AnnotEnd); 1071e33c94f1SReid Kleckner } 1072e33c94f1SReid Kleckner 10733128b10cSDavid Majnemer if (SP != nullptr) 10743128b10cSDavid Majnemer emitDebugInfoForUDTs(LocalUDTs); 10753128b10cSDavid Majnemer 107670f5bc99SReid Kleckner // We're done with this function. 10775bf71d11SReid Kleckner emitEndSymbolRecord(SymbolKind::S_PROC_ID_END); 107870f5bc99SReid Kleckner } 10796f3406dfSReid Kleckner endCVSubsection(SymbolsEnd); 108070f5bc99SReid Kleckner 10812214ed89SReid Kleckner // We have an assembler directive that takes care of the whole line table. 1082dac21b43SReid Kleckner OS.EmitCVLinetableDirective(FI.FuncId, Fn, FI.End); 108370f5bc99SReid Kleckner } 108470f5bc99SReid Kleckner 1085876330d5SReid Kleckner CodeViewDebug::LocalVarDefRange 1086876330d5SReid Kleckner CodeViewDebug::createDefRangeMem(uint16_t CVRegister, int Offset) { 1087876330d5SReid Kleckner LocalVarDefRange DR; 1088c6a2f214SAaron Ballman DR.InMemory = -1; 1089876330d5SReid Kleckner DR.DataOffset = Offset; 1090876330d5SReid Kleckner assert(DR.DataOffset == Offset && "truncation"); 10912b3e6428SReid Kleckner DR.IsSubfield = 0; 1092876330d5SReid Kleckner DR.StructOffset = 0; 1093876330d5SReid Kleckner DR.CVRegister = CVRegister; 1094876330d5SReid Kleckner return DR; 1095876330d5SReid Kleckner } 1096876330d5SReid Kleckner 1097ef331effSMatthias Braun void CodeViewDebug::collectVariableInfoFromMFTable( 1098760c1ab1SHsiangkai Wang DenseSet<InlinedEntity> &Processed) { 1099ef331effSMatthias Braun const MachineFunction &MF = *Asm->MF; 1100ef331effSMatthias Braun const TargetSubtargetInfo &TSI = MF.getSubtarget(); 1101876330d5SReid Kleckner const TargetFrameLowering *TFI = TSI.getFrameLowering(); 1102876330d5SReid Kleckner const TargetRegisterInfo *TRI = TSI.getRegisterInfo(); 1103876330d5SReid Kleckner 1104ef331effSMatthias Braun for (const MachineFunction::VariableDbgInfo &VI : MF.getVariableDbgInfo()) { 1105f9c275feSReid Kleckner if (!VI.Var) 1106f9c275feSReid Kleckner continue; 1107f9c275feSReid Kleckner assert(VI.Var->isValidLocationForIntrinsic(VI.Loc) && 1108f9c275feSReid Kleckner "Expected inlined-at fields to agree"); 1109f9c275feSReid Kleckner 1110760c1ab1SHsiangkai Wang Processed.insert(InlinedEntity(VI.Var, VI.Loc->getInlinedAt())); 1111f9c275feSReid Kleckner LexicalScope *Scope = LScopes.findLexicalScope(VI.Loc); 1112f9c275feSReid Kleckner 1113f9c275feSReid Kleckner // If variable scope is not found then skip this variable. 1114f9c275feSReid Kleckner if (!Scope) 1115f9c275feSReid Kleckner continue; 1116f9c275feSReid Kleckner 1117b5fced73SReid Kleckner // If the variable has an attached offset expression, extract it. 1118b5fced73SReid Kleckner // FIXME: Try to handle DW_OP_deref as well. 1119b5fced73SReid Kleckner int64_t ExprOffset = 0; 1120b5fced73SReid Kleckner if (VI.Expr) 1121b5fced73SReid Kleckner if (!VI.Expr->extractIfOffset(ExprOffset)) 1122b5fced73SReid Kleckner continue; 1123b5fced73SReid Kleckner 1124f9c275feSReid Kleckner // Get the frame register used and the offset. 1125f9c275feSReid Kleckner unsigned FrameReg = 0; 1126876330d5SReid Kleckner int FrameOffset = TFI->getFrameIndexReference(*Asm->MF, VI.Slot, FrameReg); 1127876330d5SReid Kleckner uint16_t CVReg = TRI->getCodeViewRegNum(FrameReg); 1128f9c275feSReid Kleckner 1129f9c275feSReid Kleckner // Calculate the label ranges. 1130b5fced73SReid Kleckner LocalVarDefRange DefRange = 1131b5fced73SReid Kleckner createDefRangeMem(CVReg, FrameOffset + ExprOffset); 1132f9c275feSReid Kleckner for (const InsnRange &Range : Scope->getRanges()) { 1133f9c275feSReid Kleckner const MCSymbol *Begin = getLabelBeforeInsn(Range.first); 1134f9c275feSReid Kleckner const MCSymbol *End = getLabelAfterInsn(Range.second); 1135876330d5SReid Kleckner End = End ? End : Asm->getFunctionEnd(); 1136876330d5SReid Kleckner DefRange.Ranges.emplace_back(Begin, End); 1137f9c275feSReid Kleckner } 1138f9c275feSReid Kleckner 1139876330d5SReid Kleckner LocalVariable Var; 1140876330d5SReid Kleckner Var.DIVar = VI.Var; 1141876330d5SReid Kleckner Var.DefRanges.emplace_back(std::move(DefRange)); 11425a791ee4SReid Kleckner recordLocalVariable(std::move(Var), Scope); 1143f9c275feSReid Kleckner } 1144f9c275feSReid Kleckner } 1145876330d5SReid Kleckner 114608f5fd51SReid Kleckner static bool canUseReferenceType(const DbgVariableLocation &Loc) { 114708f5fd51SReid Kleckner return !Loc.LoadChain.empty() && Loc.LoadChain.back() == 0; 114808f5fd51SReid Kleckner } 114908f5fd51SReid Kleckner 115008f5fd51SReid Kleckner static bool needsReferenceType(const DbgVariableLocation &Loc) { 115108f5fd51SReid Kleckner return Loc.LoadChain.size() == 2 && Loc.LoadChain.back() == 0; 115208f5fd51SReid Kleckner } 115308f5fd51SReid Kleckner 1154223303c5SBob Haarman void CodeViewDebug::calculateRanges( 1155223303c5SBob Haarman LocalVariable &Var, const DbgValueHistoryMap::InstrRanges &Ranges) { 1156223303c5SBob Haarman const TargetRegisterInfo *TRI = Asm->MF->getSubtarget().getRegisterInfo(); 1157223303c5SBob Haarman 115808f5fd51SReid Kleckner // Calculate the definition ranges. 1159223303c5SBob Haarman for (auto I = Ranges.begin(), E = Ranges.end(); I != E; ++I) { 1160223303c5SBob Haarman const InsnRange &Range = *I; 1161223303c5SBob Haarman const MachineInstr *DVInst = Range.first; 1162223303c5SBob Haarman assert(DVInst->isDebugValue() && "Invalid History entry"); 1163223303c5SBob Haarman // FIXME: Find a way to represent constant variables, since they are 1164223303c5SBob Haarman // relatively common. 11651a4cbbe4SBob Haarman Optional<DbgVariableLocation> Location = 11661a4cbbe4SBob Haarman DbgVariableLocation::extractFromMachineInstruction(*DVInst); 11671a4cbbe4SBob Haarman if (!Location) 1168a88bce1bSBob Haarman continue; 1169223303c5SBob Haarman 117008f5fd51SReid Kleckner // CodeView can only express variables in register and variables in memory 117108f5fd51SReid Kleckner // at a constant offset from a register. However, for variables passed 117208f5fd51SReid Kleckner // indirectly by pointer, it is common for that pointer to be spilled to a 117308f5fd51SReid Kleckner // stack location. For the special case of one offseted load followed by a 117408f5fd51SReid Kleckner // zero offset load (a pointer spilled to the stack), we change the type of 117508f5fd51SReid Kleckner // the local variable from a value type to a reference type. This tricks the 117608f5fd51SReid Kleckner // debugger into doing the load for us. 117708f5fd51SReid Kleckner if (Var.UseReferenceType) { 117808f5fd51SReid Kleckner // We're using a reference type. Drop the last zero offset load. 117908f5fd51SReid Kleckner if (canUseReferenceType(*Location)) 118008f5fd51SReid Kleckner Location->LoadChain.pop_back(); 1181223303c5SBob Haarman else 11821a4cbbe4SBob Haarman continue; 118308f5fd51SReid Kleckner } else if (needsReferenceType(*Location)) { 118408f5fd51SReid Kleckner // This location can't be expressed without switching to a reference type. 118508f5fd51SReid Kleckner // Start over using that. 118608f5fd51SReid Kleckner Var.UseReferenceType = true; 1187223303c5SBob Haarman Var.DefRanges.clear(); 1188223303c5SBob Haarman calculateRanges(Var, Ranges); 1189223303c5SBob Haarman return; 1190223303c5SBob Haarman } 1191223303c5SBob Haarman 119208f5fd51SReid Kleckner // We can only handle a register or an offseted load of a register. 119308f5fd51SReid Kleckner if (Location->Register == 0 || Location->LoadChain.size() > 1) 1194223303c5SBob Haarman continue; 1195223303c5SBob Haarman { 1196223303c5SBob Haarman LocalVarDefRange DR; 11971a4cbbe4SBob Haarman DR.CVRegister = TRI->getCodeViewRegNum(Location->Register); 119808f5fd51SReid Kleckner DR.InMemory = !Location->LoadChain.empty(); 119908f5fd51SReid Kleckner DR.DataOffset = 120008f5fd51SReid Kleckner !Location->LoadChain.empty() ? Location->LoadChain.back() : 0; 12011a4cbbe4SBob Haarman if (Location->FragmentInfo) { 1202223303c5SBob Haarman DR.IsSubfield = true; 12031a4cbbe4SBob Haarman DR.StructOffset = Location->FragmentInfo->OffsetInBits / 8; 1204223303c5SBob Haarman } else { 1205223303c5SBob Haarman DR.IsSubfield = false; 1206223303c5SBob Haarman DR.StructOffset = 0; 1207223303c5SBob Haarman } 1208223303c5SBob Haarman 1209223303c5SBob Haarman if (Var.DefRanges.empty() || 1210223303c5SBob Haarman Var.DefRanges.back().isDifferentLocation(DR)) { 1211223303c5SBob Haarman Var.DefRanges.emplace_back(std::move(DR)); 1212223303c5SBob Haarman } 1213223303c5SBob Haarman } 1214223303c5SBob Haarman 1215223303c5SBob Haarman // Compute the label range. 1216223303c5SBob Haarman const MCSymbol *Begin = getLabelBeforeInsn(Range.first); 1217223303c5SBob Haarman const MCSymbol *End = getLabelAfterInsn(Range.second); 1218223303c5SBob Haarman if (!End) { 1219223303c5SBob Haarman // This range is valid until the next overlapping bitpiece. In the 1220223303c5SBob Haarman // common case, ranges will not be bitpieces, so they will overlap. 1221223303c5SBob Haarman auto J = std::next(I); 1222223303c5SBob Haarman const DIExpression *DIExpr = DVInst->getDebugExpression(); 1223223303c5SBob Haarman while (J != E && 1224a223f815SBjorn Pettersson !DIExpr->fragmentsOverlap(J->first->getDebugExpression())) 1225223303c5SBob Haarman ++J; 1226223303c5SBob Haarman if (J != E) 1227223303c5SBob Haarman End = getLabelBeforeInsn(J->first); 1228223303c5SBob Haarman else 1229223303c5SBob Haarman End = Asm->getFunctionEnd(); 1230223303c5SBob Haarman } 1231223303c5SBob Haarman 1232223303c5SBob Haarman // If the last range end is our begin, just extend the last range. 1233223303c5SBob Haarman // Otherwise make a new range. 1234223303c5SBob Haarman SmallVectorImpl<std::pair<const MCSymbol *, const MCSymbol *>> &R = 1235223303c5SBob Haarman Var.DefRanges.back().Ranges; 1236223303c5SBob Haarman if (!R.empty() && R.back().second == Begin) 1237223303c5SBob Haarman R.back().second = End; 1238223303c5SBob Haarman else 1239223303c5SBob Haarman R.emplace_back(Begin, End); 1240223303c5SBob Haarman 1241223303c5SBob Haarman // FIXME: Do more range combining. 1242223303c5SBob Haarman } 1243223303c5SBob Haarman } 1244223303c5SBob Haarman 1245876330d5SReid Kleckner void CodeViewDebug::collectVariableInfo(const DISubprogram *SP) { 1246760c1ab1SHsiangkai Wang DenseSet<InlinedEntity> Processed; 1247876330d5SReid Kleckner // Grab the variable info that was squirreled away in the MMI side-table. 1248ef331effSMatthias Braun collectVariableInfoFromMFTable(Processed); 1249876330d5SReid Kleckner 1250876330d5SReid Kleckner for (const auto &I : DbgValues) { 1251760c1ab1SHsiangkai Wang InlinedEntity IV = I.first; 1252876330d5SReid Kleckner if (Processed.count(IV)) 1253876330d5SReid Kleckner continue; 1254760c1ab1SHsiangkai Wang const DILocalVariable *DIVar = cast<DILocalVariable>(IV.first); 1255876330d5SReid Kleckner const DILocation *InlinedAt = IV.second; 1256876330d5SReid Kleckner 1257876330d5SReid Kleckner // Instruction ranges, specifying where IV is accessible. 1258876330d5SReid Kleckner const auto &Ranges = I.second; 1259876330d5SReid Kleckner 1260876330d5SReid Kleckner LexicalScope *Scope = nullptr; 1261876330d5SReid Kleckner if (InlinedAt) 1262876330d5SReid Kleckner Scope = LScopes.findInlinedScope(DIVar->getScope(), InlinedAt); 1263876330d5SReid Kleckner else 1264876330d5SReid Kleckner Scope = LScopes.findLexicalScope(DIVar->getScope()); 1265876330d5SReid Kleckner // If variable scope is not found then skip this variable. 1266876330d5SReid Kleckner if (!Scope) 1267876330d5SReid Kleckner continue; 1268876330d5SReid Kleckner 1269876330d5SReid Kleckner LocalVariable Var; 1270876330d5SReid Kleckner Var.DIVar = DIVar; 1271876330d5SReid Kleckner 1272223303c5SBob Haarman calculateRanges(Var, Ranges); 12735a791ee4SReid Kleckner recordLocalVariable(std::move(Var), Scope); 1274876330d5SReid Kleckner } 1275f9c275feSReid Kleckner } 1276f9c275feSReid Kleckner 1277b2fbb4b2SDavid Blaikie void CodeViewDebug::beginFunctionImpl(const MachineFunction *MF) { 12789ea2c012SReid Kleckner const TargetSubtargetInfo &TSI = MF->getSubtarget(); 12799ea2c012SReid Kleckner const TargetRegisterInfo *TRI = TSI.getRegisterInfo(); 12809ea2c012SReid Kleckner const MachineFrameInfo &MFI = MF->getFrameInfo(); 1281f1caa283SMatthias Braun const Function &GV = MF->getFunction(); 128255baeefdSReid Kleckner auto Insertion = FnDebugInfo.insert({&GV, llvm::make_unique<FunctionInfo>()}); 1283e9dc30d2SReid Kleckner assert(Insertion.second && "function already has info"); 128455baeefdSReid Kleckner CurFn = Insertion.first->second.get(); 12852214ed89SReid Kleckner CurFn->FuncId = NextFuncId++; 12861fcd610cSReid Kleckner CurFn->Begin = Asm->getFunctionBegin(); 128770f5bc99SReid Kleckner 12889ea2c012SReid Kleckner // The S_FRAMEPROC record reports the stack size, and how many bytes of 12899ea2c012SReid Kleckner // callee-saved registers were used. For targets that don't use a PUSH 12909ea2c012SReid Kleckner // instruction (AArch64), this will be zero. 12919ea2c012SReid Kleckner CurFn->CSRSize = MFI.getCVBytesOfCalleeSavedRegisters(); 12929ea2c012SReid Kleckner CurFn->FrameSize = MFI.getStackSize(); 12932bcb288aSReid Kleckner CurFn->OffsetAdjustment = MFI.getOffsetAdjustment(); 1294d5e4ec74SReid Kleckner CurFn->HasStackRealignment = TRI->needsStackRealignment(*MF); 12959ea2c012SReid Kleckner 12969ea2c012SReid Kleckner // For this function S_FRAMEPROC record, figure out which codeview register 12979ea2c012SReid Kleckner // will be the frame pointer. 12989ea2c012SReid Kleckner CurFn->EncodedParamFramePtrReg = EncodedFramePtrReg::None; // None. 12999ea2c012SReid Kleckner CurFn->EncodedLocalFramePtrReg = EncodedFramePtrReg::None; // None. 13009ea2c012SReid Kleckner if (CurFn->FrameSize > 0) { 13019ea2c012SReid Kleckner if (!TSI.getFrameLowering()->hasFP(*MF)) { 13029ea2c012SReid Kleckner CurFn->EncodedLocalFramePtrReg = EncodedFramePtrReg::StackPtr; 13039ea2c012SReid Kleckner CurFn->EncodedParamFramePtrReg = EncodedFramePtrReg::StackPtr; 13049ea2c012SReid Kleckner } else { 13059ea2c012SReid Kleckner // If there is an FP, parameters are always relative to it. 13069ea2c012SReid Kleckner CurFn->EncodedParamFramePtrReg = EncodedFramePtrReg::FramePtr; 1307d5e4ec74SReid Kleckner if (CurFn->HasStackRealignment) { 13089ea2c012SReid Kleckner // If the stack needs realignment, locals are relative to SP or VFRAME. 13099ea2c012SReid Kleckner CurFn->EncodedLocalFramePtrReg = EncodedFramePtrReg::StackPtr; 13109ea2c012SReid Kleckner } else { 13119ea2c012SReid Kleckner // Otherwise, locals are relative to EBP, and we probably have VLAs or 13129ea2c012SReid Kleckner // other stack adjustments. 13139ea2c012SReid Kleckner CurFn->EncodedLocalFramePtrReg = EncodedFramePtrReg::FramePtr; 13149ea2c012SReid Kleckner } 13159ea2c012SReid Kleckner } 13169ea2c012SReid Kleckner } 13179ea2c012SReid Kleckner 13189ea2c012SReid Kleckner // Compute other frame procedure options. 13199ea2c012SReid Kleckner FrameProcedureOptions FPO = FrameProcedureOptions::None; 13209ea2c012SReid Kleckner if (MFI.hasVarSizedObjects()) 13219ea2c012SReid Kleckner FPO |= FrameProcedureOptions::HasAlloca; 13229ea2c012SReid Kleckner if (MF->exposesReturnsTwice()) 13239ea2c012SReid Kleckner FPO |= FrameProcedureOptions::HasSetJmp; 13249ea2c012SReid Kleckner // FIXME: Set HasLongJmp if we ever track that info. 13259ea2c012SReid Kleckner if (MF->hasInlineAsm()) 13269ea2c012SReid Kleckner FPO |= FrameProcedureOptions::HasInlineAssembly; 13279ea2c012SReid Kleckner if (GV.hasPersonalityFn()) { 13289ea2c012SReid Kleckner if (isAsynchronousEHPersonality( 13299ea2c012SReid Kleckner classifyEHPersonality(GV.getPersonalityFn()))) 13309ea2c012SReid Kleckner FPO |= FrameProcedureOptions::HasStructuredExceptionHandling; 13319ea2c012SReid Kleckner else 13329ea2c012SReid Kleckner FPO |= FrameProcedureOptions::HasExceptionHandling; 13339ea2c012SReid Kleckner } 13349ea2c012SReid Kleckner if (GV.hasFnAttribute(Attribute::InlineHint)) 13359ea2c012SReid Kleckner FPO |= FrameProcedureOptions::MarkedInline; 13369ea2c012SReid Kleckner if (GV.hasFnAttribute(Attribute::Naked)) 13379ea2c012SReid Kleckner FPO |= FrameProcedureOptions::Naked; 13389ea2c012SReid Kleckner if (MFI.hasStackProtectorIndex()) 13399ea2c012SReid Kleckner FPO |= FrameProcedureOptions::SecurityChecks; 13409ea2c012SReid Kleckner FPO |= FrameProcedureOptions(uint32_t(CurFn->EncodedLocalFramePtrReg) << 14U); 13419ea2c012SReid Kleckner FPO |= FrameProcedureOptions(uint32_t(CurFn->EncodedParamFramePtrReg) << 16U); 13429ea2c012SReid Kleckner if (Asm->TM.getOptLevel() != CodeGenOpt::None && !GV.optForSize() && 13439ea2c012SReid Kleckner !GV.hasFnAttribute(Attribute::OptimizeNone)) 13449ea2c012SReid Kleckner FPO |= FrameProcedureOptions::OptimizedForSpeed; 13459ea2c012SReid Kleckner // FIXME: Set GuardCfg when it is implemented. 13469ea2c012SReid Kleckner CurFn->FrameProcOpts = FPO; 13479ea2c012SReid Kleckner 1348a9f4cc95SReid Kleckner OS.EmitCVFuncIdDirective(CurFn->FuncId); 1349a9f4cc95SReid Kleckner 1350f9c275feSReid Kleckner // Find the end of the function prolog. First known non-DBG_VALUE and 1351f9c275feSReid Kleckner // non-frame setup location marks the beginning of the function body. 135270f5bc99SReid Kleckner // FIXME: is there a simpler a way to do this? Can we just search 135370f5bc99SReid Kleckner // for the first instruction of the function, not the last of the prolog? 135470f5bc99SReid Kleckner DebugLoc PrologEndLoc; 135570f5bc99SReid Kleckner bool EmptyPrologue = true; 135670f5bc99SReid Kleckner for (const auto &MBB : *MF) { 135770f5bc99SReid Kleckner for (const auto &MI : MBB) { 1358fb31da13SAdrian Prantl if (!MI.isMetaInstruction() && !MI.getFlag(MachineInstr::FrameSetup) && 1359f9c275feSReid Kleckner MI.getDebugLoc()) { 136070f5bc99SReid Kleckner PrologEndLoc = MI.getDebugLoc(); 136170f5bc99SReid Kleckner break; 1362fb31da13SAdrian Prantl } else if (!MI.isMetaInstruction()) { 136370f5bc99SReid Kleckner EmptyPrologue = false; 136470f5bc99SReid Kleckner } 136570f5bc99SReid Kleckner } 1366f9c275feSReid Kleckner } 1367f9c275feSReid Kleckner 136870f5bc99SReid Kleckner // Record beginning of function if we have a non-empty prologue. 136970f5bc99SReid Kleckner if (PrologEndLoc && !EmptyPrologue) { 137070f5bc99SReid Kleckner DebugLoc FnStartDL = PrologEndLoc.getFnDebugLoc(); 137170f5bc99SReid Kleckner maybeRecordLocation(FnStartDL, MF); 137270f5bc99SReid Kleckner } 137370f5bc99SReid Kleckner } 137470f5bc99SReid Kleckner 1375a7b04174SZachary Turner static bool shouldEmitUdt(const DIType *T) { 137637c74749SZachary Turner if (!T) 137737c74749SZachary Turner return false; 137837c74749SZachary Turner 137937c74749SZachary Turner // MSVC does not emit UDTs for typedefs that are scoped to classes. 138037c74749SZachary Turner if (T->getTag() == dwarf::DW_TAG_typedef) { 138137c74749SZachary Turner if (DIScope *Scope = T->getScope().resolve()) { 138237c74749SZachary Turner switch (Scope->getTag()) { 138337c74749SZachary Turner case dwarf::DW_TAG_structure_type: 138437c74749SZachary Turner case dwarf::DW_TAG_class_type: 138537c74749SZachary Turner case dwarf::DW_TAG_union_type: 138637c74749SZachary Turner return false; 138737c74749SZachary Turner } 138837c74749SZachary Turner } 138937c74749SZachary Turner } 139037c74749SZachary Turner 1391a7b04174SZachary Turner while (true) { 1392a7b04174SZachary Turner if (!T || T->isForwardDecl()) 1393a7b04174SZachary Turner return false; 1394a7b04174SZachary Turner 1395a7b04174SZachary Turner const DIDerivedType *DT = dyn_cast<DIDerivedType>(T); 1396a7b04174SZachary Turner if (!DT) 1397a7b04174SZachary Turner return true; 1398a7b04174SZachary Turner T = DT->getBaseType().resolve(); 1399a7b04174SZachary Turner } 1400a7b04174SZachary Turner return true; 1401a7b04174SZachary Turner } 1402a7b04174SZachary Turner 1403a7b04174SZachary Turner void CodeViewDebug::addToUDTs(const DIType *Ty) { 1404ad56ea31SReid Kleckner // Don't record empty UDTs. 1405ad56ea31SReid Kleckner if (Ty->getName().empty()) 1406ad56ea31SReid Kleckner return; 1407a7b04174SZachary Turner if (!shouldEmitUdt(Ty)) 1408a7b04174SZachary Turner return; 1409ad56ea31SReid Kleckner 14104b63a98dSHans Wennborg SmallVector<StringRef, 5> QualifiedNameComponents; 14114b63a98dSHans Wennborg const DISubprogram *ClosestSubprogram = getQualifiedNameComponents( 14124b63a98dSHans Wennborg Ty->getScope().resolve(), QualifiedNameComponents); 14134b63a98dSHans Wennborg 14144b63a98dSHans Wennborg std::string FullyQualifiedName = 14156bdc24e7SDavid Majnemer getQualifiedName(QualifiedNameComponents, getPrettyScopeName(Ty)); 14164b63a98dSHans Wennborg 1417a7b04174SZachary Turner if (ClosestSubprogram == nullptr) { 1418a7b04174SZachary Turner GlobalUDTs.emplace_back(std::move(FullyQualifiedName), Ty); 1419a7b04174SZachary Turner } else if (ClosestSubprogram == CurrentSubprogram) { 1420a7b04174SZachary Turner LocalUDTs.emplace_back(std::move(FullyQualifiedName), Ty); 1421a7b04174SZachary Turner } 14224b63a98dSHans Wennborg 14234b63a98dSHans Wennborg // TODO: What if the ClosestSubprogram is neither null or the current 14244b63a98dSHans Wennborg // subprogram? Currently, the UDT just gets dropped on the floor. 14254b63a98dSHans Wennborg // 14264b63a98dSHans Wennborg // The current behavior is not desirable. To get maximal fidelity, we would 14274b63a98dSHans Wennborg // need to perform all type translation before beginning emission of .debug$S 14284b63a98dSHans Wennborg // and then make LocalUDTs a member of FunctionInfo 14294b63a98dSHans Wennborg } 14304b63a98dSHans Wennborg 143176c9eb99SAmjad Aboud TypeIndex CodeViewDebug::lowerType(const DIType *Ty, const DIType *ClassTy) { 14325acacbb0SReid Kleckner // Generic dispatch for lowering an unknown type. 14335acacbb0SReid Kleckner switch (Ty->getTag()) { 1434f3c3c132SAdrian McCarthy case dwarf::DW_TAG_array_type: 1435f3c3c132SAdrian McCarthy return lowerTypeArray(cast<DICompositeType>(Ty)); 1436d065e23dSDavid Majnemer case dwarf::DW_TAG_typedef: 1437d065e23dSDavid Majnemer return lowerTypeAlias(cast<DIDerivedType>(Ty)); 14385acacbb0SReid Kleckner case dwarf::DW_TAG_base_type: 14395acacbb0SReid Kleckner return lowerTypeBasic(cast<DIBasicType>(Ty)); 14405acacbb0SReid Kleckner case dwarf::DW_TAG_pointer_type: 14419dac4731SReid Kleckner if (cast<DIDerivedType>(Ty)->getName() == "__vtbl_ptr_type") 14429dac4731SReid Kleckner return lowerTypeVFTableShape(cast<DIDerivedType>(Ty)); 14439dac4731SReid Kleckner LLVM_FALLTHROUGH; 14445acacbb0SReid Kleckner case dwarf::DW_TAG_reference_type: 14455acacbb0SReid Kleckner case dwarf::DW_TAG_rvalue_reference_type: 14465acacbb0SReid Kleckner return lowerTypePointer(cast<DIDerivedType>(Ty)); 14475acacbb0SReid Kleckner case dwarf::DW_TAG_ptr_to_member_type: 14485acacbb0SReid Kleckner return lowerTypeMemberPointer(cast<DIDerivedType>(Ty)); 14493acdc677SReid Kleckner case dwarf::DW_TAG_restrict_type: 14505acacbb0SReid Kleckner case dwarf::DW_TAG_const_type: 14515acacbb0SReid Kleckner case dwarf::DW_TAG_volatile_type: 1452e1156c2eSVictor Leschuk // TODO: add support for DW_TAG_atomic_type here 14535acacbb0SReid Kleckner return lowerTypeModifier(cast<DIDerivedType>(Ty)); 145475c3ebfaSDavid Majnemer case dwarf::DW_TAG_subroutine_type: 14550c5d874bSReid Kleckner if (ClassTy) { 14560c5d874bSReid Kleckner // The member function type of a member function pointer has no 14570c5d874bSReid Kleckner // ThisAdjustment. 14580c5d874bSReid Kleckner return lowerTypeMemberFunction(cast<DISubroutineType>(Ty), ClassTy, 1459d91bf399SAdrian McCarthy /*ThisAdjustment=*/0, 1460d91bf399SAdrian McCarthy /*IsStaticMethod=*/false); 14610c5d874bSReid Kleckner } 146275c3ebfaSDavid Majnemer return lowerTypeFunction(cast<DISubroutineType>(Ty)); 1463979cb888SDavid Majnemer case dwarf::DW_TAG_enumeration_type: 1464979cb888SDavid Majnemer return lowerTypeEnum(cast<DICompositeType>(Ty)); 1465a8d57407SReid Kleckner case dwarf::DW_TAG_class_type: 1466a8d57407SReid Kleckner case dwarf::DW_TAG_structure_type: 1467a8d57407SReid Kleckner return lowerTypeClass(cast<DICompositeType>(Ty)); 1468a8d57407SReid Kleckner case dwarf::DW_TAG_union_type: 1469a8d57407SReid Kleckner return lowerTypeUnion(cast<DICompositeType>(Ty)); 1470a73fa2a0SAaron Smith case dwarf::DW_TAG_unspecified_type: 147156a5a0c3SZachary Turner if (Ty->getName() == "decltype(nullptr)") 147256a5a0c3SZachary Turner return TypeIndex::NullptrT(); 1473a73fa2a0SAaron Smith return TypeIndex::None(); 14745acacbb0SReid Kleckner default: 14755acacbb0SReid Kleckner // Use the null type index. 14765acacbb0SReid Kleckner return TypeIndex(); 14775acacbb0SReid Kleckner } 14785acacbb0SReid Kleckner } 14795acacbb0SReid Kleckner 1480d065e23dSDavid Majnemer TypeIndex CodeViewDebug::lowerTypeAlias(const DIDerivedType *Ty) { 1481d065e23dSDavid Majnemer DITypeRef UnderlyingTypeRef = Ty->getBaseType(); 1482d065e23dSDavid Majnemer TypeIndex UnderlyingTypeIndex = getTypeIndex(UnderlyingTypeRef); 14833128b10cSDavid Majnemer StringRef TypeName = Ty->getName(); 14843128b10cSDavid Majnemer 1485a7b04174SZachary Turner addToUDTs(Ty); 14863128b10cSDavid Majnemer 1487d065e23dSDavid Majnemer if (UnderlyingTypeIndex == TypeIndex(SimpleTypeKind::Int32Long) && 14883128b10cSDavid Majnemer TypeName == "HRESULT") 1489d065e23dSDavid Majnemer return TypeIndex(SimpleTypeKind::HResult); 14908c46a4ceSDavid Majnemer if (UnderlyingTypeIndex == TypeIndex(SimpleTypeKind::UInt16Short) && 14913128b10cSDavid Majnemer TypeName == "wchar_t") 14928c46a4ceSDavid Majnemer return TypeIndex(SimpleTypeKind::WideCharacter); 14934b63a98dSHans Wennborg 1494d065e23dSDavid Majnemer return UnderlyingTypeIndex; 1495d065e23dSDavid Majnemer } 1496d065e23dSDavid Majnemer 1497f3c3c132SAdrian McCarthy TypeIndex CodeViewDebug::lowerTypeArray(const DICompositeType *Ty) { 1498f3c3c132SAdrian McCarthy DITypeRef ElementTypeRef = Ty->getBaseType(); 1499f3c3c132SAdrian McCarthy TypeIndex ElementTypeIndex = getTypeIndex(ElementTypeRef); 1500f3c3c132SAdrian McCarthy // IndexType is size_t, which depends on the bitness of the target. 150141e5ac4fSMatt Arsenault TypeIndex IndexType = getPointerSizeInBytes() == 8 1502f3c3c132SAdrian McCarthy ? TypeIndex(SimpleTypeKind::UInt64Quad) 1503f3c3c132SAdrian McCarthy : TypeIndex(SimpleTypeKind::UInt32Long); 1504acee5685SAmjad Aboud 1505acee5685SAmjad Aboud uint64_t ElementSize = getBaseTypeSize(ElementTypeRef) / 8; 1506acee5685SAmjad Aboud 1507acee5685SAmjad Aboud // Add subranges to array type. 1508acee5685SAmjad Aboud DINodeArray Elements = Ty->getElements(); 1509acee5685SAmjad Aboud for (int i = Elements.size() - 1; i >= 0; --i) { 1510acee5685SAmjad Aboud const DINode *Element = Elements[i]; 1511acee5685SAmjad Aboud assert(Element->getTag() == dwarf::DW_TAG_subrange_type); 1512acee5685SAmjad Aboud 1513acee5685SAmjad Aboud const DISubrange *Subrange = cast<DISubrange>(Element); 1514acee5685SAmjad Aboud assert(Subrange->getLowerBound() == 0 && 1515acee5685SAmjad Aboud "codeview doesn't support subranges with lower bounds"); 1516fdf40917SSander de Smalen int64_t Count = -1; 1517fdf40917SSander de Smalen if (auto *CI = Subrange->getCount().dyn_cast<ConstantInt*>()) 1518fdf40917SSander de Smalen Count = CI->getSExtValue(); 1519acee5685SAmjad Aboud 1520cd7bba02SReid Kleckner // Forward declarations of arrays without a size and VLAs use a count of -1. 1521cd7bba02SReid Kleckner // Emit a count of zero in these cases to match what MSVC does for arrays 1522cd7bba02SReid Kleckner // without a size. MSVC doesn't support VLAs, so it's not clear what we 1523cd7bba02SReid Kleckner // should do for them even if we could distinguish them. 15246b78e163SReid Kleckner if (Count == -1) 152589af112cSReid Kleckner Count = 0; 1526acee5685SAmjad Aboud 1527acee5685SAmjad Aboud // Update the element size and element type index for subsequent subranges. 1528acee5685SAmjad Aboud ElementSize *= Count; 15291076288eSReid Kleckner 15301076288eSReid Kleckner // If this is the outermost array, use the size from the array. It will be 15316b78e163SReid Kleckner // more accurate if we had a VLA or an incomplete element type size. 15321076288eSReid Kleckner uint64_t ArraySize = 15331076288eSReid Kleckner (i == 0 && ElementSize == 0) ? Ty->getSizeInBits() / 8 : ElementSize; 15341076288eSReid Kleckner 15351076288eSReid Kleckner StringRef Name = (i == 0) ? Ty->getName() : ""; 15364efa0a42SZachary Turner ArrayRecord AR(ElementTypeIndex, IndexType, ArraySize, Name); 15376900de1dSZachary Turner ElementTypeIndex = TypeTable.writeLeafType(AR); 1538acee5685SAmjad Aboud } 1539acee5685SAmjad Aboud 1540acee5685SAmjad Aboud return ElementTypeIndex; 1541f3c3c132SAdrian McCarthy } 1542f3c3c132SAdrian McCarthy 15435acacbb0SReid Kleckner TypeIndex CodeViewDebug::lowerTypeBasic(const DIBasicType *Ty) { 15445acacbb0SReid Kleckner TypeIndex Index; 15455acacbb0SReid Kleckner dwarf::TypeKind Kind; 15465acacbb0SReid Kleckner uint32_t ByteSize; 15475acacbb0SReid Kleckner 15485acacbb0SReid Kleckner Kind = static_cast<dwarf::TypeKind>(Ty->getEncoding()); 1549afefa673SDavid Majnemer ByteSize = Ty->getSizeInBits() / 8; 15505acacbb0SReid Kleckner 15515acacbb0SReid Kleckner SimpleTypeKind STK = SimpleTypeKind::None; 15525acacbb0SReid Kleckner switch (Kind) { 15535acacbb0SReid Kleckner case dwarf::DW_ATE_address: 15545acacbb0SReid Kleckner // FIXME: Translate 15555acacbb0SReid Kleckner break; 15565acacbb0SReid Kleckner case dwarf::DW_ATE_boolean: 15575acacbb0SReid Kleckner switch (ByteSize) { 15585acacbb0SReid Kleckner case 1: STK = SimpleTypeKind::Boolean8; break; 15595acacbb0SReid Kleckner case 2: STK = SimpleTypeKind::Boolean16; break; 15605acacbb0SReid Kleckner case 4: STK = SimpleTypeKind::Boolean32; break; 15615acacbb0SReid Kleckner case 8: STK = SimpleTypeKind::Boolean64; break; 15621c2cb1ddSDavid Majnemer case 16: STK = SimpleTypeKind::Boolean128; break; 15635acacbb0SReid Kleckner } 15645acacbb0SReid Kleckner break; 15655acacbb0SReid Kleckner case dwarf::DW_ATE_complex_float: 15665acacbb0SReid Kleckner switch (ByteSize) { 15671c2cb1ddSDavid Majnemer case 2: STK = SimpleTypeKind::Complex16; break; 15685acacbb0SReid Kleckner case 4: STK = SimpleTypeKind::Complex32; break; 15695acacbb0SReid Kleckner case 8: STK = SimpleTypeKind::Complex64; break; 15705acacbb0SReid Kleckner case 10: STK = SimpleTypeKind::Complex80; break; 15715acacbb0SReid Kleckner case 16: STK = SimpleTypeKind::Complex128; break; 15725acacbb0SReid Kleckner } 15735acacbb0SReid Kleckner break; 15745acacbb0SReid Kleckner case dwarf::DW_ATE_float: 15755acacbb0SReid Kleckner switch (ByteSize) { 15761c2cb1ddSDavid Majnemer case 2: STK = SimpleTypeKind::Float16; break; 15775acacbb0SReid Kleckner case 4: STK = SimpleTypeKind::Float32; break; 15785acacbb0SReid Kleckner case 6: STK = SimpleTypeKind::Float48; break; 15795acacbb0SReid Kleckner case 8: STK = SimpleTypeKind::Float64; break; 15805acacbb0SReid Kleckner case 10: STK = SimpleTypeKind::Float80; break; 15815acacbb0SReid Kleckner case 16: STK = SimpleTypeKind::Float128; break; 15825acacbb0SReid Kleckner } 15835acacbb0SReid Kleckner break; 15845acacbb0SReid Kleckner case dwarf::DW_ATE_signed: 15855acacbb0SReid Kleckner switch (ByteSize) { 1586e45b2c7dSReid Kleckner case 1: STK = SimpleTypeKind::SignedCharacter; break; 15875acacbb0SReid Kleckner case 2: STK = SimpleTypeKind::Int16Short; break; 15885acacbb0SReid Kleckner case 4: STK = SimpleTypeKind::Int32; break; 15891c2cb1ddSDavid Majnemer case 8: STK = SimpleTypeKind::Int64Quad; break; 15901c2cb1ddSDavid Majnemer case 16: STK = SimpleTypeKind::Int128Oct; break; 15915acacbb0SReid Kleckner } 15925acacbb0SReid Kleckner break; 15935acacbb0SReid Kleckner case dwarf::DW_ATE_unsigned: 15945acacbb0SReid Kleckner switch (ByteSize) { 1595e45b2c7dSReid Kleckner case 1: STK = SimpleTypeKind::UnsignedCharacter; break; 15965acacbb0SReid Kleckner case 2: STK = SimpleTypeKind::UInt16Short; break; 15975acacbb0SReid Kleckner case 4: STK = SimpleTypeKind::UInt32; break; 15981c2cb1ddSDavid Majnemer case 8: STK = SimpleTypeKind::UInt64Quad; break; 15991c2cb1ddSDavid Majnemer case 16: STK = SimpleTypeKind::UInt128Oct; break; 16005acacbb0SReid Kleckner } 16015acacbb0SReid Kleckner break; 16025acacbb0SReid Kleckner case dwarf::DW_ATE_UTF: 16035acacbb0SReid Kleckner switch (ByteSize) { 16045acacbb0SReid Kleckner case 2: STK = SimpleTypeKind::Character16; break; 16055acacbb0SReid Kleckner case 4: STK = SimpleTypeKind::Character32; break; 16065acacbb0SReid Kleckner } 16075acacbb0SReid Kleckner break; 16085acacbb0SReid Kleckner case dwarf::DW_ATE_signed_char: 16095acacbb0SReid Kleckner if (ByteSize == 1) 16105acacbb0SReid Kleckner STK = SimpleTypeKind::SignedCharacter; 16115acacbb0SReid Kleckner break; 16125acacbb0SReid Kleckner case dwarf::DW_ATE_unsigned_char: 16135acacbb0SReid Kleckner if (ByteSize == 1) 16145acacbb0SReid Kleckner STK = SimpleTypeKind::UnsignedCharacter; 16155acacbb0SReid Kleckner break; 16165acacbb0SReid Kleckner default: 16175acacbb0SReid Kleckner break; 16185acacbb0SReid Kleckner } 16195acacbb0SReid Kleckner 16205acacbb0SReid Kleckner // Apply some fixups based on the source-level type name. 16215acacbb0SReid Kleckner if (STK == SimpleTypeKind::Int32 && Ty->getName() == "long int") 16225acacbb0SReid Kleckner STK = SimpleTypeKind::Int32Long; 16235acacbb0SReid Kleckner if (STK == SimpleTypeKind::UInt32 && Ty->getName() == "long unsigned int") 16245acacbb0SReid Kleckner STK = SimpleTypeKind::UInt32Long; 16258c46a4ceSDavid Majnemer if (STK == SimpleTypeKind::UInt16Short && 16268c46a4ceSDavid Majnemer (Ty->getName() == "wchar_t" || Ty->getName() == "__wchar_t")) 16275acacbb0SReid Kleckner STK = SimpleTypeKind::WideCharacter; 16285acacbb0SReid Kleckner if ((STK == SimpleTypeKind::SignedCharacter || 16295acacbb0SReid Kleckner STK == SimpleTypeKind::UnsignedCharacter) && 16305acacbb0SReid Kleckner Ty->getName() == "char") 16315acacbb0SReid Kleckner STK = SimpleTypeKind::NarrowCharacter; 16325acacbb0SReid Kleckner 16335acacbb0SReid Kleckner return TypeIndex(STK); 16345acacbb0SReid Kleckner } 16355acacbb0SReid Kleckner 16363acdc677SReid Kleckner TypeIndex CodeViewDebug::lowerTypePointer(const DIDerivedType *Ty, 16373acdc677SReid Kleckner PointerOptions PO) { 16385acacbb0SReid Kleckner TypeIndex PointeeTI = getTypeIndex(Ty->getBaseType()); 16395acacbb0SReid Kleckner 16403acdc677SReid Kleckner // Pointers to simple types without any options can use SimpleTypeMode, rather 16413acdc677SReid Kleckner // than having a dedicated pointer type record. 16423acdc677SReid Kleckner if (PointeeTI.isSimple() && PO == PointerOptions::None && 16435acacbb0SReid Kleckner PointeeTI.getSimpleMode() == SimpleTypeMode::Direct && 16445acacbb0SReid Kleckner Ty->getTag() == dwarf::DW_TAG_pointer_type) { 16455acacbb0SReid Kleckner SimpleTypeMode Mode = Ty->getSizeInBits() == 64 16465acacbb0SReid Kleckner ? SimpleTypeMode::NearPointer64 16475acacbb0SReid Kleckner : SimpleTypeMode::NearPointer32; 16485acacbb0SReid Kleckner return TypeIndex(PointeeTI.getSimpleKind(), Mode); 16495acacbb0SReid Kleckner } 16505acacbb0SReid Kleckner 16515acacbb0SReid Kleckner PointerKind PK = 16525acacbb0SReid Kleckner Ty->getSizeInBits() == 64 ? PointerKind::Near64 : PointerKind::Near32; 16535acacbb0SReid Kleckner PointerMode PM = PointerMode::Pointer; 16545acacbb0SReid Kleckner switch (Ty->getTag()) { 16555acacbb0SReid Kleckner default: llvm_unreachable("not a pointer tag type"); 16565acacbb0SReid Kleckner case dwarf::DW_TAG_pointer_type: 16575acacbb0SReid Kleckner PM = PointerMode::Pointer; 16585acacbb0SReid Kleckner break; 16595acacbb0SReid Kleckner case dwarf::DW_TAG_reference_type: 16605acacbb0SReid Kleckner PM = PointerMode::LValueReference; 16615acacbb0SReid Kleckner break; 16625acacbb0SReid Kleckner case dwarf::DW_TAG_rvalue_reference_type: 16635acacbb0SReid Kleckner PM = PointerMode::RValueReference; 16645acacbb0SReid Kleckner break; 16655acacbb0SReid Kleckner } 16663acdc677SReid Kleckner 16673826566cSZachary Turner if (Ty->isObjectPointer()) 16683826566cSZachary Turner PO |= PointerOptions::Const; 16693826566cSZachary Turner 16705acacbb0SReid Kleckner PointerRecord PR(PointeeTI, PK, PM, PO, Ty->getSizeInBits() / 8); 16716900de1dSZachary Turner return TypeTable.writeLeafType(PR); 16725acacbb0SReid Kleckner } 16735acacbb0SReid Kleckner 16746fa1546aSReid Kleckner static PointerToMemberRepresentation 16756fa1546aSReid Kleckner translatePtrToMemberRep(unsigned SizeInBytes, bool IsPMF, unsigned Flags) { 16766fa1546aSReid Kleckner // SizeInBytes being zero generally implies that the member pointer type was 16776fa1546aSReid Kleckner // incomplete, which can happen if it is part of a function prototype. In this 16786fa1546aSReid Kleckner // case, use the unknown model instead of the general model. 1679604105bbSReid Kleckner if (IsPMF) { 1680604105bbSReid Kleckner switch (Flags & DINode::FlagPtrToMemberRep) { 1681604105bbSReid Kleckner case 0: 16826fa1546aSReid Kleckner return SizeInBytes == 0 ? PointerToMemberRepresentation::Unknown 16836fa1546aSReid Kleckner : PointerToMemberRepresentation::GeneralFunction; 1684604105bbSReid Kleckner case DINode::FlagSingleInheritance: 1685604105bbSReid Kleckner return PointerToMemberRepresentation::SingleInheritanceFunction; 1686604105bbSReid Kleckner case DINode::FlagMultipleInheritance: 1687604105bbSReid Kleckner return PointerToMemberRepresentation::MultipleInheritanceFunction; 1688604105bbSReid Kleckner case DINode::FlagVirtualInheritance: 1689604105bbSReid Kleckner return PointerToMemberRepresentation::VirtualInheritanceFunction; 1690604105bbSReid Kleckner } 1691604105bbSReid Kleckner } else { 1692604105bbSReid Kleckner switch (Flags & DINode::FlagPtrToMemberRep) { 1693604105bbSReid Kleckner case 0: 16946fa1546aSReid Kleckner return SizeInBytes == 0 ? PointerToMemberRepresentation::Unknown 16956fa1546aSReid Kleckner : PointerToMemberRepresentation::GeneralData; 1696604105bbSReid Kleckner case DINode::FlagSingleInheritance: 1697604105bbSReid Kleckner return PointerToMemberRepresentation::SingleInheritanceData; 1698604105bbSReid Kleckner case DINode::FlagMultipleInheritance: 1699604105bbSReid Kleckner return PointerToMemberRepresentation::MultipleInheritanceData; 1700604105bbSReid Kleckner case DINode::FlagVirtualInheritance: 1701604105bbSReid Kleckner return PointerToMemberRepresentation::VirtualInheritanceData; 1702604105bbSReid Kleckner } 1703604105bbSReid Kleckner } 1704604105bbSReid Kleckner llvm_unreachable("invalid ptr to member representation"); 1705604105bbSReid Kleckner } 1706604105bbSReid Kleckner 17073acdc677SReid Kleckner TypeIndex CodeViewDebug::lowerTypeMemberPointer(const DIDerivedType *Ty, 17083acdc677SReid Kleckner PointerOptions PO) { 17095acacbb0SReid Kleckner assert(Ty->getTag() == dwarf::DW_TAG_ptr_to_member_type); 17105acacbb0SReid Kleckner TypeIndex ClassTI = getTypeIndex(Ty->getClassType()); 171176c9eb99SAmjad Aboud TypeIndex PointeeTI = getTypeIndex(Ty->getBaseType(), Ty->getClassType()); 171241e5ac4fSMatt Arsenault PointerKind PK = getPointerSizeInBytes() == 8 ? PointerKind::Near64 17135acacbb0SReid Kleckner : PointerKind::Near32; 1714604105bbSReid Kleckner bool IsPMF = isa<DISubroutineType>(Ty->getBaseType()); 1715604105bbSReid Kleckner PointerMode PM = IsPMF ? PointerMode::PointerToMemberFunction 17165acacbb0SReid Kleckner : PointerMode::PointerToDataMember; 17173acdc677SReid Kleckner 17186fa1546aSReid Kleckner assert(Ty->getSizeInBits() / 8 <= 0xff && "pointer size too big"); 17196fa1546aSReid Kleckner uint8_t SizeInBytes = Ty->getSizeInBits() / 8; 17206fa1546aSReid Kleckner MemberPointerInfo MPI( 17216fa1546aSReid Kleckner ClassTI, translatePtrToMemberRep(SizeInBytes, IsPMF, Ty->getFlags())); 1722604105bbSReid Kleckner PointerRecord PR(PointeeTI, PK, PM, PO, SizeInBytes, MPI); 17236900de1dSZachary Turner return TypeTable.writeLeafType(PR); 17245acacbb0SReid Kleckner } 17255acacbb0SReid Kleckner 1726de3d8b50SReid Kleckner /// Given a DWARF calling convention, get the CodeView equivalent. If we don't 1727de3d8b50SReid Kleckner /// have a translation, use the NearC convention. 1728de3d8b50SReid Kleckner static CallingConvention dwarfCCToCodeView(unsigned DwarfCC) { 1729de3d8b50SReid Kleckner switch (DwarfCC) { 1730de3d8b50SReid Kleckner case dwarf::DW_CC_normal: return CallingConvention::NearC; 1731de3d8b50SReid Kleckner case dwarf::DW_CC_BORLAND_msfastcall: return CallingConvention::NearFast; 1732de3d8b50SReid Kleckner case dwarf::DW_CC_BORLAND_thiscall: return CallingConvention::ThisCall; 1733de3d8b50SReid Kleckner case dwarf::DW_CC_BORLAND_stdcall: return CallingConvention::NearStdCall; 1734de3d8b50SReid Kleckner case dwarf::DW_CC_BORLAND_pascal: return CallingConvention::NearPascal; 1735de3d8b50SReid Kleckner case dwarf::DW_CC_LLVM_vectorcall: return CallingConvention::NearVector; 1736de3d8b50SReid Kleckner } 1737de3d8b50SReid Kleckner return CallingConvention::NearC; 1738de3d8b50SReid Kleckner } 1739de3d8b50SReid Kleckner 17405acacbb0SReid Kleckner TypeIndex CodeViewDebug::lowerTypeModifier(const DIDerivedType *Ty) { 17415acacbb0SReid Kleckner ModifierOptions Mods = ModifierOptions::None; 17423acdc677SReid Kleckner PointerOptions PO = PointerOptions::None; 17435acacbb0SReid Kleckner bool IsModifier = true; 17445acacbb0SReid Kleckner const DIType *BaseTy = Ty; 1745b9c80fd8SReid Kleckner while (IsModifier && BaseTy) { 1746e1156c2eSVictor Leschuk // FIXME: Need to add DWARF tags for __unaligned and _Atomic 17475acacbb0SReid Kleckner switch (BaseTy->getTag()) { 17485acacbb0SReid Kleckner case dwarf::DW_TAG_const_type: 17495acacbb0SReid Kleckner Mods |= ModifierOptions::Const; 17503acdc677SReid Kleckner PO |= PointerOptions::Const; 17515acacbb0SReid Kleckner break; 17525acacbb0SReid Kleckner case dwarf::DW_TAG_volatile_type: 17535acacbb0SReid Kleckner Mods |= ModifierOptions::Volatile; 17543acdc677SReid Kleckner PO |= PointerOptions::Volatile; 17553acdc677SReid Kleckner break; 17563acdc677SReid Kleckner case dwarf::DW_TAG_restrict_type: 17573acdc677SReid Kleckner // Only pointer types be marked with __restrict. There is no known flag 17583acdc677SReid Kleckner // for __restrict in LF_MODIFIER records. 17593acdc677SReid Kleckner PO |= PointerOptions::Restrict; 17605acacbb0SReid Kleckner break; 17615acacbb0SReid Kleckner default: 17625acacbb0SReid Kleckner IsModifier = false; 17635acacbb0SReid Kleckner break; 17645acacbb0SReid Kleckner } 17655acacbb0SReid Kleckner if (IsModifier) 17665acacbb0SReid Kleckner BaseTy = cast<DIDerivedType>(BaseTy)->getBaseType().resolve(); 17675acacbb0SReid Kleckner } 17683acdc677SReid Kleckner 17693acdc677SReid Kleckner // Check if the inner type will use an LF_POINTER record. If so, the 17703acdc677SReid Kleckner // qualifiers will go in the LF_POINTER record. This comes up for types like 17713acdc677SReid Kleckner // 'int *const' and 'int *__restrict', not the more common cases like 'const 17723acdc677SReid Kleckner // char *'. 17733acdc677SReid Kleckner if (BaseTy) { 17743acdc677SReid Kleckner switch (BaseTy->getTag()) { 17753acdc677SReid Kleckner case dwarf::DW_TAG_pointer_type: 17763acdc677SReid Kleckner case dwarf::DW_TAG_reference_type: 17773acdc677SReid Kleckner case dwarf::DW_TAG_rvalue_reference_type: 17783acdc677SReid Kleckner return lowerTypePointer(cast<DIDerivedType>(BaseTy), PO); 17793acdc677SReid Kleckner case dwarf::DW_TAG_ptr_to_member_type: 17803acdc677SReid Kleckner return lowerTypeMemberPointer(cast<DIDerivedType>(BaseTy), PO); 17813acdc677SReid Kleckner default: 17823acdc677SReid Kleckner break; 17833acdc677SReid Kleckner } 17843acdc677SReid Kleckner } 17853acdc677SReid Kleckner 17865acacbb0SReid Kleckner TypeIndex ModifiedTI = getTypeIndex(BaseTy); 17873acdc677SReid Kleckner 17883acdc677SReid Kleckner // Return the base type index if there aren't any modifiers. For example, the 17893acdc677SReid Kleckner // metadata could contain restrict wrappers around non-pointer types. 17903acdc677SReid Kleckner if (Mods == ModifierOptions::None) 17913acdc677SReid Kleckner return ModifiedTI; 17923acdc677SReid Kleckner 17934efa0a42SZachary Turner ModifierRecord MR(ModifiedTI, Mods); 17946900de1dSZachary Turner return TypeTable.writeLeafType(MR); 17955acacbb0SReid Kleckner } 17965acacbb0SReid Kleckner 179775c3ebfaSDavid Majnemer TypeIndex CodeViewDebug::lowerTypeFunction(const DISubroutineType *Ty) { 179875c3ebfaSDavid Majnemer SmallVector<TypeIndex, 8> ReturnAndArgTypeIndices; 179975c3ebfaSDavid Majnemer for (DITypeRef ArgTypeRef : Ty->getTypeArray()) 180075c3ebfaSDavid Majnemer ReturnAndArgTypeIndices.push_back(getTypeIndex(ArgTypeRef)); 180175c3ebfaSDavid Majnemer 1802a73fa2a0SAaron Smith // MSVC uses type none for variadic argument. 1803a73fa2a0SAaron Smith if (ReturnAndArgTypeIndices.size() > 1 && 1804a73fa2a0SAaron Smith ReturnAndArgTypeIndices.back() == TypeIndex::Void()) { 1805a73fa2a0SAaron Smith ReturnAndArgTypeIndices.back() = TypeIndex::None(); 1806a73fa2a0SAaron Smith } 180775c3ebfaSDavid Majnemer TypeIndex ReturnTypeIndex = TypeIndex::Void(); 180875c3ebfaSDavid Majnemer ArrayRef<TypeIndex> ArgTypeIndices = None; 180975c3ebfaSDavid Majnemer if (!ReturnAndArgTypeIndices.empty()) { 181075c3ebfaSDavid Majnemer auto ReturnAndArgTypesRef = makeArrayRef(ReturnAndArgTypeIndices); 181175c3ebfaSDavid Majnemer ReturnTypeIndex = ReturnAndArgTypesRef.front(); 181275c3ebfaSDavid Majnemer ArgTypeIndices = ReturnAndArgTypesRef.drop_front(); 181375c3ebfaSDavid Majnemer } 181475c3ebfaSDavid Majnemer 181575c3ebfaSDavid Majnemer ArgListRecord ArgListRec(TypeRecordKind::ArgList, ArgTypeIndices); 18166900de1dSZachary Turner TypeIndex ArgListIndex = TypeTable.writeLeafType(ArgListRec); 181775c3ebfaSDavid Majnemer 1818de3d8b50SReid Kleckner CallingConvention CC = dwarfCCToCodeView(Ty->getCC()); 1819de3d8b50SReid Kleckner 1820802b033dSAaron Smith FunctionOptions FO = getFunctionOptions(Ty); 1821802b033dSAaron Smith ProcedureRecord Procedure(ReturnTypeIndex, CC, FO, ArgTypeIndices.size(), 1822802b033dSAaron Smith ArgListIndex); 18236900de1dSZachary Turner return TypeTable.writeLeafType(Procedure); 182475c3ebfaSDavid Majnemer } 182575c3ebfaSDavid Majnemer 182676c9eb99SAmjad Aboud TypeIndex CodeViewDebug::lowerTypeMemberFunction(const DISubroutineType *Ty, 18270c5d874bSReid Kleckner const DIType *ClassTy, 1828d91bf399SAdrian McCarthy int ThisAdjustment, 1829802b033dSAaron Smith bool IsStaticMethod, 1830802b033dSAaron Smith FunctionOptions FO) { 183176c9eb99SAmjad Aboud // Lower the containing class type. 183276c9eb99SAmjad Aboud TypeIndex ClassType = getTypeIndex(ClassTy); 183376c9eb99SAmjad Aboud 1834c68f8957SZachary Turner DITypeRefArray ReturnAndArgs = Ty->getTypeArray(); 1835c68f8957SZachary Turner 1836c68f8957SZachary Turner unsigned Index = 0; 1837c68f8957SZachary Turner SmallVector<TypeIndex, 8> ArgTypeIndices; 1838c68f8957SZachary Turner TypeIndex ReturnTypeIndex = getTypeIndex(ReturnAndArgs[Index++]); 1839c68f8957SZachary Turner 1840c168c6f8SReid Kleckner // If the first argument is a pointer type and this isn't a static method, 1841c168c6f8SReid Kleckner // treat it as the special 'this' parameter, which is encoded separately from 1842c168c6f8SReid Kleckner // the arguments. 1843c68f8957SZachary Turner TypeIndex ThisTypeIndex; 1844c168c6f8SReid Kleckner if (!IsStaticMethod && ReturnAndArgs.size() > Index) { 1845c168c6f8SReid Kleckner if (const DIDerivedType *PtrTy = 1846c168c6f8SReid Kleckner dyn_cast_or_null<DIDerivedType>(ReturnAndArgs[Index].resolve())) { 1847c168c6f8SReid Kleckner if (PtrTy->getTag() == dwarf::DW_TAG_pointer_type) { 1848c168c6f8SReid Kleckner ThisTypeIndex = getTypeIndexForThisPtr(PtrTy, Ty); 1849c168c6f8SReid Kleckner Index++; 1850c168c6f8SReid Kleckner } 1851c168c6f8SReid Kleckner } 1852c168c6f8SReid Kleckner } 1853c68f8957SZachary Turner 1854c68f8957SZachary Turner while (Index < ReturnAndArgs.size()) 1855c68f8957SZachary Turner ArgTypeIndices.push_back(getTypeIndex(ReturnAndArgs[Index++])); 185676c9eb99SAmjad Aboud 1857a73fa2a0SAaron Smith // MSVC uses type none for variadic argument. 1858c68f8957SZachary Turner if (!ArgTypeIndices.empty() && ArgTypeIndices.back() == TypeIndex::Void()) 1859c68f8957SZachary Turner ArgTypeIndices.back() = TypeIndex::None(); 186076c9eb99SAmjad Aboud 186176c9eb99SAmjad Aboud ArgListRecord ArgListRec(TypeRecordKind::ArgList, ArgTypeIndices); 18626900de1dSZachary Turner TypeIndex ArgListIndex = TypeTable.writeLeafType(ArgListRec); 186376c9eb99SAmjad Aboud 186476c9eb99SAmjad Aboud CallingConvention CC = dwarfCCToCodeView(Ty->getCC()); 186576c9eb99SAmjad Aboud 1866802b033dSAaron Smith MemberFunctionRecord MFR(ReturnTypeIndex, ClassType, ThisTypeIndex, CC, FO, 1867802b033dSAaron Smith ArgTypeIndices.size(), ArgListIndex, ThisAdjustment); 18686900de1dSZachary Turner return TypeTable.writeLeafType(MFR); 186976c9eb99SAmjad Aboud } 187076c9eb99SAmjad Aboud 18719dac4731SReid Kleckner TypeIndex CodeViewDebug::lowerTypeVFTableShape(const DIDerivedType *Ty) { 1872dc77b2e9SKonstantin Zhuravlyov unsigned VSlotCount = 1873dc77b2e9SKonstantin Zhuravlyov Ty->getSizeInBits() / (8 * Asm->MAI->getCodePointerSize()); 18749dac4731SReid Kleckner SmallVector<VFTableSlotKind, 4> Slots(VSlotCount, VFTableSlotKind::Near); 18754efa0a42SZachary Turner 18764efa0a42SZachary Turner VFTableShapeRecord VFTSR(Slots); 18776900de1dSZachary Turner return TypeTable.writeLeafType(VFTSR); 18789dac4731SReid Kleckner } 18799dac4731SReid Kleckner 188076c9eb99SAmjad Aboud static MemberAccess translateAccessFlags(unsigned RecordTag, unsigned Flags) { 188176c9eb99SAmjad Aboud switch (Flags & DINode::FlagAccessibility) { 1882a8d57407SReid Kleckner case DINode::FlagPrivate: return MemberAccess::Private; 1883a8d57407SReid Kleckner case DINode::FlagPublic: return MemberAccess::Public; 1884a8d57407SReid Kleckner case DINode::FlagProtected: return MemberAccess::Protected; 1885a8d57407SReid Kleckner case 0: 1886a8d57407SReid Kleckner // If there was no explicit access control, provide the default for the tag. 1887a8d57407SReid Kleckner return RecordTag == dwarf::DW_TAG_class_type ? MemberAccess::Private 1888a8d57407SReid Kleckner : MemberAccess::Public; 1889a8d57407SReid Kleckner } 1890a8d57407SReid Kleckner llvm_unreachable("access flags are exclusive"); 1891a8d57407SReid Kleckner } 1892a8d57407SReid Kleckner 189376c9eb99SAmjad Aboud static MethodOptions translateMethodOptionFlags(const DISubprogram *SP) { 189476c9eb99SAmjad Aboud if (SP->isArtificial()) 189576c9eb99SAmjad Aboud return MethodOptions::CompilerGenerated; 189676c9eb99SAmjad Aboud 189776c9eb99SAmjad Aboud // FIXME: Handle other MethodOptions. 189876c9eb99SAmjad Aboud 189976c9eb99SAmjad Aboud return MethodOptions::None; 190076c9eb99SAmjad Aboud } 190176c9eb99SAmjad Aboud 190276c9eb99SAmjad Aboud static MethodKind translateMethodKindFlags(const DISubprogram *SP, 190376c9eb99SAmjad Aboud bool Introduced) { 1904d91bf399SAdrian McCarthy if (SP->getFlags() & DINode::FlagStaticMember) 1905d91bf399SAdrian McCarthy return MethodKind::Static; 1906d91bf399SAdrian McCarthy 190776c9eb99SAmjad Aboud switch (SP->getVirtuality()) { 190876c9eb99SAmjad Aboud case dwarf::DW_VIRTUALITY_none: 190976c9eb99SAmjad Aboud break; 191076c9eb99SAmjad Aboud case dwarf::DW_VIRTUALITY_virtual: 191176c9eb99SAmjad Aboud return Introduced ? MethodKind::IntroducingVirtual : MethodKind::Virtual; 191276c9eb99SAmjad Aboud case dwarf::DW_VIRTUALITY_pure_virtual: 191376c9eb99SAmjad Aboud return Introduced ? MethodKind::PureIntroducingVirtual 191476c9eb99SAmjad Aboud : MethodKind::PureVirtual; 191576c9eb99SAmjad Aboud default: 191676c9eb99SAmjad Aboud llvm_unreachable("unhandled virtuality case"); 191776c9eb99SAmjad Aboud } 191876c9eb99SAmjad Aboud 191976c9eb99SAmjad Aboud return MethodKind::Vanilla; 192076c9eb99SAmjad Aboud } 192176c9eb99SAmjad Aboud 1922a8d57407SReid Kleckner static TypeRecordKind getRecordKind(const DICompositeType *Ty) { 1923a8d57407SReid Kleckner switch (Ty->getTag()) { 1924a8d57407SReid Kleckner case dwarf::DW_TAG_class_type: return TypeRecordKind::Class; 1925a8d57407SReid Kleckner case dwarf::DW_TAG_structure_type: return TypeRecordKind::Struct; 1926a8d57407SReid Kleckner } 1927a8d57407SReid Kleckner llvm_unreachable("unexpected tag"); 1928a8d57407SReid Kleckner } 1929a8d57407SReid Kleckner 1930e092dad7SReid Kleckner /// Return ClassOptions that should be present on both the forward declaration 1931e092dad7SReid Kleckner /// and the defintion of a tag type. 1932e092dad7SReid Kleckner static ClassOptions getCommonClassOptions(const DICompositeType *Ty) { 1933e092dad7SReid Kleckner ClassOptions CO = ClassOptions::None; 1934e092dad7SReid Kleckner 1935e092dad7SReid Kleckner // MSVC always sets this flag, even for local types. Clang doesn't always 1936a8d57407SReid Kleckner // appear to give every type a linkage name, which may be problematic for us. 1937a8d57407SReid Kleckner // FIXME: Investigate the consequences of not following them here. 1938e092dad7SReid Kleckner if (!Ty->getIdentifier().empty()) 1939e092dad7SReid Kleckner CO |= ClassOptions::HasUniqueName; 1940e092dad7SReid Kleckner 1941e092dad7SReid Kleckner // Put the Nested flag on a type if it appears immediately inside a tag type. 1942e092dad7SReid Kleckner // Do not walk the scope chain. Do not attempt to compute ContainsNestedClass 1943e092dad7SReid Kleckner // here. That flag is only set on definitions, and not forward declarations. 1944e092dad7SReid Kleckner const DIScope *ImmediateScope = Ty->getScope().resolve(); 1945e092dad7SReid Kleckner if (ImmediateScope && isa<DICompositeType>(ImmediateScope)) 1946e092dad7SReid Kleckner CO |= ClassOptions::Nested; 1947e092dad7SReid Kleckner 1948da0602c1SAaron Smith // Put the Scoped flag on function-local types. MSVC puts this flag for enum 1949da0602c1SAaron Smith // type only when it has an immediate function scope. Clang never puts enums 1950da0602c1SAaron Smith // inside DILexicalBlock scopes. Enum types, as generated by clang, are 1951da0602c1SAaron Smith // always in function, class, or file scopes. 1952da0602c1SAaron Smith if (Ty->getTag() == dwarf::DW_TAG_enumeration_type) { 1953da0602c1SAaron Smith if (ImmediateScope && isa<DISubprogram>(ImmediateScope)) 1954da0602c1SAaron Smith CO |= ClassOptions::Scoped; 1955da0602c1SAaron Smith } else { 1956e092dad7SReid Kleckner for (const DIScope *Scope = ImmediateScope; Scope != nullptr; 1957e092dad7SReid Kleckner Scope = Scope->getScope().resolve()) { 1958e092dad7SReid Kleckner if (isa<DISubprogram>(Scope)) { 1959e092dad7SReid Kleckner CO |= ClassOptions::Scoped; 1960e092dad7SReid Kleckner break; 1961e092dad7SReid Kleckner } 1962e092dad7SReid Kleckner } 1963da0602c1SAaron Smith } 1964e092dad7SReid Kleckner 1965e092dad7SReid Kleckner return CO; 1966a8d57407SReid Kleckner } 1967a8d57407SReid Kleckner 1968122d9e79SAaron Smith void CodeViewDebug::addUDTSrcLine(const DIType *Ty, TypeIndex TI) { 1969122d9e79SAaron Smith switch (Ty->getTag()) { 1970122d9e79SAaron Smith case dwarf::DW_TAG_class_type: 1971122d9e79SAaron Smith case dwarf::DW_TAG_structure_type: 1972122d9e79SAaron Smith case dwarf::DW_TAG_union_type: 1973122d9e79SAaron Smith case dwarf::DW_TAG_enumeration_type: 1974122d9e79SAaron Smith break; 1975122d9e79SAaron Smith default: 1976122d9e79SAaron Smith return; 1977122d9e79SAaron Smith } 1978122d9e79SAaron Smith 1979122d9e79SAaron Smith if (const auto *File = Ty->getFile()) { 1980122d9e79SAaron Smith StringIdRecord SIDR(TypeIndex(0x0), getFullFilepath(File)); 1981122d9e79SAaron Smith TypeIndex SIDI = TypeTable.writeLeafType(SIDR); 1982122d9e79SAaron Smith 1983122d9e79SAaron Smith UdtSourceLineRecord USLR(TI, SIDI, Ty->getLine()); 1984122d9e79SAaron Smith TypeTable.writeLeafType(USLR); 1985122d9e79SAaron Smith } 1986122d9e79SAaron Smith } 1987122d9e79SAaron Smith 1988979cb888SDavid Majnemer TypeIndex CodeViewDebug::lowerTypeEnum(const DICompositeType *Ty) { 1989e092dad7SReid Kleckner ClassOptions CO = getCommonClassOptions(Ty); 1990979cb888SDavid Majnemer TypeIndex FTI; 1991da9548f9SDavid Majnemer unsigned EnumeratorCount = 0; 1992979cb888SDavid Majnemer 1993da9548f9SDavid Majnemer if (Ty->isForwardDecl()) { 1994979cb888SDavid Majnemer CO |= ClassOptions::ForwardReference; 1995da9548f9SDavid Majnemer } else { 19966900de1dSZachary Turner ContinuationRecordBuilder ContinuationBuilder; 19976900de1dSZachary Turner ContinuationBuilder.begin(ContinuationRecordKind::FieldList); 1998da9548f9SDavid Majnemer for (const DINode *Element : Ty->getElements()) { 1999da9548f9SDavid Majnemer // We assume that the frontend provides all members in source declaration 2000da9548f9SDavid Majnemer // order, which is what MSVC does. 2001da9548f9SDavid Majnemer if (auto *Enumerator = dyn_cast_or_null<DIEnumerator>(Element)) { 20024efa0a42SZachary Turner EnumeratorRecord ER(MemberAccess::Public, 20034efa0a42SZachary Turner APSInt::getUnsigned(Enumerator->getValue()), 20044efa0a42SZachary Turner Enumerator->getName()); 20056900de1dSZachary Turner ContinuationBuilder.writeMemberType(ER); 2006da9548f9SDavid Majnemer EnumeratorCount++; 2007da9548f9SDavid Majnemer } 2008da9548f9SDavid Majnemer } 20096900de1dSZachary Turner FTI = TypeTable.insertRecord(ContinuationBuilder); 2010da9548f9SDavid Majnemer } 2011979cb888SDavid Majnemer 20126bdc24e7SDavid Majnemer std::string FullName = getFullyQualifiedName(Ty); 20130c5d874bSReid Kleckner 20144efa0a42SZachary Turner EnumRecord ER(EnumeratorCount, CO, FTI, FullName, Ty->getIdentifier(), 20154efa0a42SZachary Turner getTypeIndex(Ty->getBaseType())); 2016122d9e79SAaron Smith TypeIndex EnumTI = TypeTable.writeLeafType(ER); 2017122d9e79SAaron Smith 2018122d9e79SAaron Smith addUDTSrcLine(Ty, EnumTI); 2019122d9e79SAaron Smith 2020122d9e79SAaron Smith return EnumTI; 2021979cb888SDavid Majnemer } 2022979cb888SDavid Majnemer 202376c9eb99SAmjad Aboud //===----------------------------------------------------------------------===// 202476c9eb99SAmjad Aboud // ClassInfo 202576c9eb99SAmjad Aboud //===----------------------------------------------------------------------===// 202676c9eb99SAmjad Aboud 202776c9eb99SAmjad Aboud struct llvm::ClassInfo { 202876c9eb99SAmjad Aboud struct MemberInfo { 202976c9eb99SAmjad Aboud const DIDerivedType *MemberTypeNode; 203008bd744cSDavid Majnemer uint64_t BaseOffset; 203176c9eb99SAmjad Aboud }; 203276c9eb99SAmjad Aboud // [MemberInfo] 2033fb69e66cSEugene Zelenko using MemberList = std::vector<MemberInfo>; 203476c9eb99SAmjad Aboud 2035fb69e66cSEugene Zelenko using MethodsList = TinyPtrVector<const DISubprogram *>; 203676c9eb99SAmjad Aboud // MethodName -> MethodsList 2037fb69e66cSEugene Zelenko using MethodsMap = MapVector<MDString *, MethodsList>; 203876c9eb99SAmjad Aboud 20399f7f3e1eSReid Kleckner /// Base classes. 20409f7f3e1eSReid Kleckner std::vector<const DIDerivedType *> Inheritance; 20419f7f3e1eSReid Kleckner 204276c9eb99SAmjad Aboud /// Direct members. 204376c9eb99SAmjad Aboud MemberList Members; 204476c9eb99SAmjad Aboud // Direct overloaded methods gathered by name. 204576c9eb99SAmjad Aboud MethodsMap Methods; 2046820ca540SAdrian McCarthy 20479dac4731SReid Kleckner TypeIndex VShapeTI; 20489dac4731SReid Kleckner 2049e2e82061SReid Kleckner std::vector<const DIType *> NestedTypes; 205076c9eb99SAmjad Aboud }; 205176c9eb99SAmjad Aboud 205276c9eb99SAmjad Aboud void CodeViewDebug::clear() { 205376c9eb99SAmjad Aboud assert(CurFn == nullptr); 205476c9eb99SAmjad Aboud FileIdMap.clear(); 205576c9eb99SAmjad Aboud FnDebugInfo.clear(); 205676c9eb99SAmjad Aboud FileToFilepathMap.clear(); 205776c9eb99SAmjad Aboud LocalUDTs.clear(); 205876c9eb99SAmjad Aboud GlobalUDTs.clear(); 205976c9eb99SAmjad Aboud TypeIndices.clear(); 206076c9eb99SAmjad Aboud CompleteTypeIndices.clear(); 2061b17464e4SBrock Wyma ScopeGlobals.clear(); 206276c9eb99SAmjad Aboud } 206376c9eb99SAmjad Aboud 206476c9eb99SAmjad Aboud void CodeViewDebug::collectMemberInfo(ClassInfo &Info, 206576c9eb99SAmjad Aboud const DIDerivedType *DDTy) { 206676c9eb99SAmjad Aboud if (!DDTy->getName().empty()) { 206776c9eb99SAmjad Aboud Info.Members.push_back({DDTy, 0}); 206876c9eb99SAmjad Aboud return; 206976c9eb99SAmjad Aboud } 207003303a3bSShoaib Meenai 207103303a3bSShoaib Meenai // An unnamed member may represent a nested struct or union. Attempt to 207203303a3bSShoaib Meenai // interpret the unnamed member as a DICompositeType possibly wrapped in 207303303a3bSShoaib Meenai // qualifier types. Add all the indirect fields to the current record if that 207403303a3bSShoaib Meenai // succeeds, and drop the member if that fails. 207576c9eb99SAmjad Aboud assert((DDTy->getOffsetInBits() % 8) == 0 && "Unnamed bitfield member!"); 207608bd744cSDavid Majnemer uint64_t Offset = DDTy->getOffsetInBits(); 207776c9eb99SAmjad Aboud const DIType *Ty = DDTy->getBaseType().resolve(); 207803303a3bSShoaib Meenai bool FullyResolved = false; 207903303a3bSShoaib Meenai while (!FullyResolved) { 208003303a3bSShoaib Meenai switch (Ty->getTag()) { 208103303a3bSShoaib Meenai case dwarf::DW_TAG_const_type: 208203303a3bSShoaib Meenai case dwarf::DW_TAG_volatile_type: 208303303a3bSShoaib Meenai // FIXME: we should apply the qualifier types to the indirect fields 208403303a3bSShoaib Meenai // rather than dropping them. 208503303a3bSShoaib Meenai Ty = cast<DIDerivedType>(Ty)->getBaseType().resolve(); 208603303a3bSShoaib Meenai break; 208703303a3bSShoaib Meenai default: 208803303a3bSShoaib Meenai FullyResolved = true; 208903303a3bSShoaib Meenai break; 209003303a3bSShoaib Meenai } 209103303a3bSShoaib Meenai } 209203303a3bSShoaib Meenai 209303303a3bSShoaib Meenai const DICompositeType *DCTy = dyn_cast<DICompositeType>(Ty); 209403303a3bSShoaib Meenai if (!DCTy) 209503303a3bSShoaib Meenai return; 209603303a3bSShoaib Meenai 20971ab7eac8SReid Kleckner ClassInfo NestedInfo = collectClassInfo(DCTy); 20981ab7eac8SReid Kleckner for (const ClassInfo::MemberInfo &IndirectField : NestedInfo.Members) 209976c9eb99SAmjad Aboud Info.Members.push_back( 21001ab7eac8SReid Kleckner {IndirectField.MemberTypeNode, IndirectField.BaseOffset + Offset}); 210176c9eb99SAmjad Aboud } 210276c9eb99SAmjad Aboud 21031ab7eac8SReid Kleckner ClassInfo CodeViewDebug::collectClassInfo(const DICompositeType *Ty) { 21041ab7eac8SReid Kleckner ClassInfo Info; 210576c9eb99SAmjad Aboud // Add elements to structure type. 210676c9eb99SAmjad Aboud DINodeArray Elements = Ty->getElements(); 210776c9eb99SAmjad Aboud for (auto *Element : Elements) { 210876c9eb99SAmjad Aboud // We assume that the frontend provides all members in source declaration 210976c9eb99SAmjad Aboud // order, which is what MSVC does. 211076c9eb99SAmjad Aboud if (!Element) 211176c9eb99SAmjad Aboud continue; 211276c9eb99SAmjad Aboud if (auto *SP = dyn_cast<DISubprogram>(Element)) { 2113156a7239SReid Kleckner Info.Methods[SP->getRawName()].push_back(SP); 211476c9eb99SAmjad Aboud } else if (auto *DDTy = dyn_cast<DIDerivedType>(Element)) { 21159f7f3e1eSReid Kleckner if (DDTy->getTag() == dwarf::DW_TAG_member) { 21161ab7eac8SReid Kleckner collectMemberInfo(Info, DDTy); 21179f7f3e1eSReid Kleckner } else if (DDTy->getTag() == dwarf::DW_TAG_inheritance) { 21189f7f3e1eSReid Kleckner Info.Inheritance.push_back(DDTy); 21199dac4731SReid Kleckner } else if (DDTy->getTag() == dwarf::DW_TAG_pointer_type && 21209dac4731SReid Kleckner DDTy->getName() == "__vtbl_ptr_type") { 21219dac4731SReid Kleckner Info.VShapeTI = getTypeIndex(DDTy); 2122e2e82061SReid Kleckner } else if (DDTy->getTag() == dwarf::DW_TAG_typedef) { 2123e2e82061SReid Kleckner Info.NestedTypes.push_back(DDTy); 212476c9eb99SAmjad Aboud } else if (DDTy->getTag() == dwarf::DW_TAG_friend) { 212576c9eb99SAmjad Aboud // Ignore friend members. It appears that MSVC emitted info about 212676c9eb99SAmjad Aboud // friends in the past, but modern versions do not. 212776c9eb99SAmjad Aboud } 2128820ca540SAdrian McCarthy } else if (auto *Composite = dyn_cast<DICompositeType>(Element)) { 2129e2e82061SReid Kleckner Info.NestedTypes.push_back(Composite); 213076c9eb99SAmjad Aboud } 213176c9eb99SAmjad Aboud // Skip other unrecognized kinds of elements. 213276c9eb99SAmjad Aboud } 21331ab7eac8SReid Kleckner return Info; 213476c9eb99SAmjad Aboud } 213576c9eb99SAmjad Aboud 2136b60532f8SBrock Wyma static bool shouldAlwaysEmitCompleteClassType(const DICompositeType *Ty) { 2137b60532f8SBrock Wyma // This routine is used by lowerTypeClass and lowerTypeUnion to determine 2138b60532f8SBrock Wyma // if a complete type should be emitted instead of a forward reference. 2139b60532f8SBrock Wyma return Ty->getName().empty() && Ty->getIdentifier().empty() && 2140b60532f8SBrock Wyma !Ty->isForwardDecl(); 2141b60532f8SBrock Wyma } 2142b60532f8SBrock Wyma 2143a8d57407SReid Kleckner TypeIndex CodeViewDebug::lowerTypeClass(const DICompositeType *Ty) { 2144b60532f8SBrock Wyma // Emit the complete type for unnamed structs. C++ classes with methods 2145b60532f8SBrock Wyma // which have a circular reference back to the class type are expected to 2146b60532f8SBrock Wyma // be named by the front-end and should not be "unnamed". C unnamed 2147b60532f8SBrock Wyma // structs should not have circular references. 2148b60532f8SBrock Wyma if (shouldAlwaysEmitCompleteClassType(Ty)) { 2149b60532f8SBrock Wyma // If this unnamed complete type is already in the process of being defined 2150b60532f8SBrock Wyma // then the description of the type is malformed and cannot be emitted 2151b60532f8SBrock Wyma // into CodeView correctly so report a fatal error. 2152b60532f8SBrock Wyma auto I = CompleteTypeIndices.find(Ty); 2153b60532f8SBrock Wyma if (I != CompleteTypeIndices.end() && I->second == TypeIndex()) 2154b60532f8SBrock Wyma report_fatal_error("cannot debug circular reference to unnamed type"); 2155b60532f8SBrock Wyma return getCompleteTypeIndex(Ty); 2156b60532f8SBrock Wyma } 2157b60532f8SBrock Wyma 2158a8d57407SReid Kleckner // First, construct the forward decl. Don't look into Ty to compute the 2159a8d57407SReid Kleckner // forward decl options, since it might not be available in all TUs. 2160a8d57407SReid Kleckner TypeRecordKind Kind = getRecordKind(Ty); 2161a8d57407SReid Kleckner ClassOptions CO = 2162e092dad7SReid Kleckner ClassOptions::ForwardReference | getCommonClassOptions(Ty); 21636bdc24e7SDavid Majnemer std::string FullName = getFullyQualifiedName(Ty); 21644efa0a42SZachary Turner ClassRecord CR(Kind, 0, CO, TypeIndex(), TypeIndex(), TypeIndex(), 0, 21654efa0a42SZachary Turner FullName, Ty->getIdentifier()); 21666900de1dSZachary Turner TypeIndex FwdDeclTI = TypeTable.writeLeafType(CR); 2167643dd836SReid Kleckner if (!Ty->isForwardDecl()) 2168643dd836SReid Kleckner DeferredCompleteTypes.push_back(Ty); 2169a8d57407SReid Kleckner return FwdDeclTI; 2170a8d57407SReid Kleckner } 2171a8d57407SReid Kleckner 2172a8d57407SReid Kleckner TypeIndex CodeViewDebug::lowerCompleteTypeClass(const DICompositeType *Ty) { 2173a8d57407SReid Kleckner // Construct the field list and complete type record. 2174a8d57407SReid Kleckner TypeRecordKind Kind = getRecordKind(Ty); 2175e092dad7SReid Kleckner ClassOptions CO = getCommonClassOptions(Ty); 217676c9eb99SAmjad Aboud TypeIndex FieldTI; 217776c9eb99SAmjad Aboud TypeIndex VShapeTI; 2178a8d57407SReid Kleckner unsigned FieldCount; 2179820ca540SAdrian McCarthy bool ContainsNestedClass; 2180820ca540SAdrian McCarthy std::tie(FieldTI, VShapeTI, FieldCount, ContainsNestedClass) = 2181820ca540SAdrian McCarthy lowerRecordFieldList(Ty); 2182820ca540SAdrian McCarthy 2183820ca540SAdrian McCarthy if (ContainsNestedClass) 2184820ca540SAdrian McCarthy CO |= ClassOptions::ContainsNestedClass; 2185a8d57407SReid Kleckner 21866bdc24e7SDavid Majnemer std::string FullName = getFullyQualifiedName(Ty); 21870c5d874bSReid Kleckner 2188a8d57407SReid Kleckner uint64_t SizeInBytes = Ty->getSizeInBits() / 8; 21899a519a09SHans Wennborg 21904efa0a42SZachary Turner ClassRecord CR(Kind, FieldCount, CO, FieldTI, TypeIndex(), VShapeTI, 21914efa0a42SZachary Turner SizeInBytes, FullName, Ty->getIdentifier()); 21926900de1dSZachary Turner TypeIndex ClassTI = TypeTable.writeLeafType(CR); 21939a519a09SHans Wennborg 2194122d9e79SAaron Smith addUDTSrcLine(Ty, ClassTI); 21959a519a09SHans Wennborg 2196a7b04174SZachary Turner addToUDTs(Ty); 21974b63a98dSHans Wennborg 21989a519a09SHans Wennborg return ClassTI; 2199a8d57407SReid Kleckner } 2200a8d57407SReid Kleckner 2201a8d57407SReid Kleckner TypeIndex CodeViewDebug::lowerTypeUnion(const DICompositeType *Ty) { 2202b60532f8SBrock Wyma // Emit the complete type for unnamed unions. 2203b60532f8SBrock Wyma if (shouldAlwaysEmitCompleteClassType(Ty)) 2204b60532f8SBrock Wyma return getCompleteTypeIndex(Ty); 2205b60532f8SBrock Wyma 2206a8d57407SReid Kleckner ClassOptions CO = 2207e092dad7SReid Kleckner ClassOptions::ForwardReference | getCommonClassOptions(Ty); 22086bdc24e7SDavid Majnemer std::string FullName = getFullyQualifiedName(Ty); 22094efa0a42SZachary Turner UnionRecord UR(0, CO, TypeIndex(), 0, FullName, Ty->getIdentifier()); 22106900de1dSZachary Turner TypeIndex FwdDeclTI = TypeTable.writeLeafType(UR); 2211643dd836SReid Kleckner if (!Ty->isForwardDecl()) 2212643dd836SReid Kleckner DeferredCompleteTypes.push_back(Ty); 2213a8d57407SReid Kleckner return FwdDeclTI; 2214a8d57407SReid Kleckner } 2215a8d57407SReid Kleckner 2216a8d57407SReid Kleckner TypeIndex CodeViewDebug::lowerCompleteTypeUnion(const DICompositeType *Ty) { 2217e1e7372eSDavid Majnemer ClassOptions CO = ClassOptions::Sealed | getCommonClassOptions(Ty); 221876c9eb99SAmjad Aboud TypeIndex FieldTI; 2219a8d57407SReid Kleckner unsigned FieldCount; 2220820ca540SAdrian McCarthy bool ContainsNestedClass; 2221820ca540SAdrian McCarthy std::tie(FieldTI, std::ignore, FieldCount, ContainsNestedClass) = 2222820ca540SAdrian McCarthy lowerRecordFieldList(Ty); 2223820ca540SAdrian McCarthy 2224820ca540SAdrian McCarthy if (ContainsNestedClass) 2225820ca540SAdrian McCarthy CO |= ClassOptions::ContainsNestedClass; 2226820ca540SAdrian McCarthy 2227a8d57407SReid Kleckner uint64_t SizeInBytes = Ty->getSizeInBits() / 8; 22286bdc24e7SDavid Majnemer std::string FullName = getFullyQualifiedName(Ty); 22299a519a09SHans Wennborg 22304efa0a42SZachary Turner UnionRecord UR(FieldCount, CO, FieldTI, SizeInBytes, FullName, 22314efa0a42SZachary Turner Ty->getIdentifier()); 22326900de1dSZachary Turner TypeIndex UnionTI = TypeTable.writeLeafType(UR); 22339a519a09SHans Wennborg 2234122d9e79SAaron Smith addUDTSrcLine(Ty, UnionTI); 22359a519a09SHans Wennborg 2236a7b04174SZachary Turner addToUDTs(Ty); 22374b63a98dSHans Wennborg 22389a519a09SHans Wennborg return UnionTI; 2239a8d57407SReid Kleckner } 2240a8d57407SReid Kleckner 2241820ca540SAdrian McCarthy std::tuple<TypeIndex, TypeIndex, unsigned, bool> 2242a8d57407SReid Kleckner CodeViewDebug::lowerRecordFieldList(const DICompositeType *Ty) { 2243a8d57407SReid Kleckner // Manually count members. MSVC appears to count everything that generates a 2244a8d57407SReid Kleckner // field list record. Each individual overload in a method overload group 2245a8d57407SReid Kleckner // contributes to this count, even though the overload group is a single field 2246a8d57407SReid Kleckner // list record. 2247a8d57407SReid Kleckner unsigned MemberCount = 0; 22481ab7eac8SReid Kleckner ClassInfo Info = collectClassInfo(Ty); 22496900de1dSZachary Turner ContinuationRecordBuilder ContinuationBuilder; 22506900de1dSZachary Turner ContinuationBuilder.begin(ContinuationRecordKind::FieldList); 225176c9eb99SAmjad Aboud 22529f7f3e1eSReid Kleckner // Create base classes. 22539f7f3e1eSReid Kleckner for (const DIDerivedType *I : Info.Inheritance) { 22549f7f3e1eSReid Kleckner if (I->getFlags() & DINode::FlagVirtual) { 22559f7f3e1eSReid Kleckner // Virtual base. 22563db2b108SBrock Wyma unsigned VBPtrOffset = I->getVBPtrOffset(); 22579f7f3e1eSReid Kleckner // FIXME: Despite the accessor name, the offset is really in bytes. 22589f7f3e1eSReid Kleckner unsigned VBTableIndex = I->getOffsetInBits() / 4; 225926a87bd0SBob Haarman auto RecordKind = (I->getFlags() & DINode::FlagIndirectVirtualBase) == DINode::FlagIndirectVirtualBase 226026a87bd0SBob Haarman ? TypeRecordKind::IndirectVirtualBaseClass 226126a87bd0SBob Haarman : TypeRecordKind::VirtualBaseClass; 22624efa0a42SZachary Turner VirtualBaseClassRecord VBCR( 226326a87bd0SBob Haarman RecordKind, translateAccessFlags(Ty->getTag(), I->getFlags()), 22649f7f3e1eSReid Kleckner getTypeIndex(I->getBaseType()), getVBPTypeIndex(), VBPtrOffset, 22654efa0a42SZachary Turner VBTableIndex); 22664efa0a42SZachary Turner 22676900de1dSZachary Turner ContinuationBuilder.writeMemberType(VBCR); 22684536c1f5SBrock Wyma MemberCount++; 22699f7f3e1eSReid Kleckner } else { 22709f7f3e1eSReid Kleckner assert(I->getOffsetInBits() % 8 == 0 && 22719f7f3e1eSReid Kleckner "bases must be on byte boundaries"); 22724efa0a42SZachary Turner BaseClassRecord BCR(translateAccessFlags(Ty->getTag(), I->getFlags()), 22734efa0a42SZachary Turner getTypeIndex(I->getBaseType()), 22744efa0a42SZachary Turner I->getOffsetInBits() / 8); 22756900de1dSZachary Turner ContinuationBuilder.writeMemberType(BCR); 22764536c1f5SBrock Wyma MemberCount++; 22779f7f3e1eSReid Kleckner } 22789f7f3e1eSReid Kleckner } 22799f7f3e1eSReid Kleckner 228076c9eb99SAmjad Aboud // Create members. 228176c9eb99SAmjad Aboud for (ClassInfo::MemberInfo &MemberInfo : Info.Members) { 228276c9eb99SAmjad Aboud const DIDerivedType *Member = MemberInfo.MemberTypeNode; 228376c9eb99SAmjad Aboud TypeIndex MemberBaseType = getTypeIndex(Member->getBaseType()); 22849319cbc0SDavid Majnemer StringRef MemberName = Member->getName(); 22859319cbc0SDavid Majnemer MemberAccess Access = 22869319cbc0SDavid Majnemer translateAccessFlags(Ty->getTag(), Member->getFlags()); 228776c9eb99SAmjad Aboud 2288a8d57407SReid Kleckner if (Member->isStaticMember()) { 22894efa0a42SZachary Turner StaticDataMemberRecord SDMR(Access, MemberBaseType, MemberName); 22906900de1dSZachary Turner ContinuationBuilder.writeMemberType(SDMR); 2291a8d57407SReid Kleckner MemberCount++; 229276c9eb99SAmjad Aboud continue; 2293a8d57407SReid Kleckner } 2294a8d57407SReid Kleckner 22959dac4731SReid Kleckner // Virtual function pointer member. 22969dac4731SReid Kleckner if ((Member->getFlags() & DINode::FlagArtificial) && 22979dac4731SReid Kleckner Member->getName().startswith("_vptr$")) { 22984efa0a42SZachary Turner VFPtrRecord VFPR(getTypeIndex(Member->getBaseType())); 22996900de1dSZachary Turner ContinuationBuilder.writeMemberType(VFPR); 23009dac4731SReid Kleckner MemberCount++; 23019dac4731SReid Kleckner continue; 23029dac4731SReid Kleckner } 23039dac4731SReid Kleckner 23049319cbc0SDavid Majnemer // Data member. 230508bd744cSDavid Majnemer uint64_t MemberOffsetInBits = 230608bd744cSDavid Majnemer Member->getOffsetInBits() + MemberInfo.BaseOffset; 23079319cbc0SDavid Majnemer if (Member->isBitField()) { 23089319cbc0SDavid Majnemer uint64_t StartBitOffset = MemberOffsetInBits; 23099319cbc0SDavid Majnemer if (const auto *CI = 23109319cbc0SDavid Majnemer dyn_cast_or_null<ConstantInt>(Member->getStorageOffsetInBits())) { 231108bd744cSDavid Majnemer MemberOffsetInBits = CI->getZExtValue() + MemberInfo.BaseOffset; 23129319cbc0SDavid Majnemer } 23139319cbc0SDavid Majnemer StartBitOffset -= MemberOffsetInBits; 23144efa0a42SZachary Turner BitFieldRecord BFR(MemberBaseType, Member->getSizeInBits(), 23154efa0a42SZachary Turner StartBitOffset); 23166900de1dSZachary Turner MemberBaseType = TypeTable.writeLeafType(BFR); 23179319cbc0SDavid Majnemer } 23189319cbc0SDavid Majnemer uint64_t MemberOffsetInBytes = MemberOffsetInBits / 8; 23194efa0a42SZachary Turner DataMemberRecord DMR(Access, MemberBaseType, MemberOffsetInBytes, 23204efa0a42SZachary Turner MemberName); 23216900de1dSZachary Turner ContinuationBuilder.writeMemberType(DMR); 232276c9eb99SAmjad Aboud MemberCount++; 232376c9eb99SAmjad Aboud } 232476c9eb99SAmjad Aboud 232576c9eb99SAmjad Aboud // Create methods 232676c9eb99SAmjad Aboud for (auto &MethodItr : Info.Methods) { 232776c9eb99SAmjad Aboud StringRef Name = MethodItr.first->getString(); 232876c9eb99SAmjad Aboud 232976c9eb99SAmjad Aboud std::vector<OneMethodRecord> Methods; 2330156a7239SReid Kleckner for (const DISubprogram *SP : MethodItr.second) { 2331156a7239SReid Kleckner TypeIndex MethodType = getMemberFunctionType(SP, Ty); 2332156a7239SReid Kleckner bool Introduced = SP->getFlags() & DINode::FlagIntroducedVirtual; 233376c9eb99SAmjad Aboud 233476c9eb99SAmjad Aboud unsigned VFTableOffset = -1; 233576c9eb99SAmjad Aboud if (Introduced) 233676c9eb99SAmjad Aboud VFTableOffset = SP->getVirtualIndex() * getPointerSizeInBytes(); 233776c9eb99SAmjad Aboud 23387251ede7SZachary Turner Methods.push_back(OneMethodRecord( 23397251ede7SZachary Turner MethodType, translateAccessFlags(Ty->getTag(), SP->getFlags()), 23407251ede7SZachary Turner translateMethodKindFlags(SP, Introduced), 23417251ede7SZachary Turner translateMethodOptionFlags(SP), VFTableOffset, Name)); 234276c9eb99SAmjad Aboud MemberCount++; 234376c9eb99SAmjad Aboud } 2344fb69e66cSEugene Zelenko assert(!Methods.empty() && "Empty methods map entry"); 234576c9eb99SAmjad Aboud if (Methods.size() == 1) 23466900de1dSZachary Turner ContinuationBuilder.writeMemberType(Methods[0]); 234776c9eb99SAmjad Aboud else { 23486900de1dSZachary Turner // FIXME: Make this use its own ContinuationBuilder so that 23496900de1dSZachary Turner // MethodOverloadList can be split correctly. 23504efa0a42SZachary Turner MethodOverloadListRecord MOLR(Methods); 23516900de1dSZachary Turner TypeIndex MethodList = TypeTable.writeLeafType(MOLR); 23526900de1dSZachary Turner 23534efa0a42SZachary Turner OverloadedMethodRecord OMR(Methods.size(), MethodList, Name); 23546900de1dSZachary Turner ContinuationBuilder.writeMemberType(OMR); 235576c9eb99SAmjad Aboud } 235676c9eb99SAmjad Aboud } 2357820ca540SAdrian McCarthy 2358820ca540SAdrian McCarthy // Create nested classes. 2359e2e82061SReid Kleckner for (const DIType *Nested : Info.NestedTypes) { 2360820ca540SAdrian McCarthy NestedTypeRecord R(getTypeIndex(DITypeRef(Nested)), Nested->getName()); 23616900de1dSZachary Turner ContinuationBuilder.writeMemberType(R); 2362820ca540SAdrian McCarthy MemberCount++; 2363820ca540SAdrian McCarthy } 2364820ca540SAdrian McCarthy 23656900de1dSZachary Turner TypeIndex FieldTI = TypeTable.insertRecord(ContinuationBuilder); 23669dac4731SReid Kleckner return std::make_tuple(FieldTI, Info.VShapeTI, MemberCount, 2367e2e82061SReid Kleckner !Info.NestedTypes.empty()); 236876c9eb99SAmjad Aboud } 236976c9eb99SAmjad Aboud 23709f7f3e1eSReid Kleckner TypeIndex CodeViewDebug::getVBPTypeIndex() { 23719f7f3e1eSReid Kleckner if (!VBPType.getIndex()) { 23729f7f3e1eSReid Kleckner // Make a 'const int *' type. 23739f7f3e1eSReid Kleckner ModifierRecord MR(TypeIndex::Int32(), ModifierOptions::Const); 23746900de1dSZachary Turner TypeIndex ModifiedTI = TypeTable.writeLeafType(MR); 23759f7f3e1eSReid Kleckner 23769f7f3e1eSReid Kleckner PointerKind PK = getPointerSizeInBytes() == 8 ? PointerKind::Near64 23779f7f3e1eSReid Kleckner : PointerKind::Near32; 23789f7f3e1eSReid Kleckner PointerMode PM = PointerMode::Pointer; 23799f7f3e1eSReid Kleckner PointerOptions PO = PointerOptions::None; 23809f7f3e1eSReid Kleckner PointerRecord PR(ModifiedTI, PK, PM, PO, getPointerSizeInBytes()); 23816900de1dSZachary Turner VBPType = TypeTable.writeLeafType(PR); 23829f7f3e1eSReid Kleckner } 23839f7f3e1eSReid Kleckner 23849f7f3e1eSReid Kleckner return VBPType; 23859f7f3e1eSReid Kleckner } 23869f7f3e1eSReid Kleckner 238776c9eb99SAmjad Aboud TypeIndex CodeViewDebug::getTypeIndex(DITypeRef TypeRef, DITypeRef ClassTyRef) { 23885acacbb0SReid Kleckner const DIType *Ty = TypeRef.resolve(); 238976c9eb99SAmjad Aboud const DIType *ClassTy = ClassTyRef.resolve(); 23905acacbb0SReid Kleckner 23915acacbb0SReid Kleckner // The null DIType is the void type. Don't try to hash it. 23925acacbb0SReid Kleckner if (!Ty) 23935acacbb0SReid Kleckner return TypeIndex::Void(); 23945acacbb0SReid Kleckner 2395a8d57407SReid Kleckner // Check if we've already translated this type. Don't try to do a 2396a8d57407SReid Kleckner // get-or-create style insertion that caches the hash lookup across the 2397a8d57407SReid Kleckner // lowerType call. It will update the TypeIndices map. 239876c9eb99SAmjad Aboud auto I = TypeIndices.find({Ty, ClassTy}); 23995acacbb0SReid Kleckner if (I != TypeIndices.end()) 24005acacbb0SReid Kleckner return I->second; 24015acacbb0SReid Kleckner 2402643dd836SReid Kleckner TypeLoweringScope S(*this); 2403b5af11dfSReid Kleckner TypeIndex TI = lowerType(Ty, ClassTy); 2404b5af11dfSReid Kleckner return recordTypeIndexForDINode(Ty, TI, ClassTy); 2405a8d57407SReid Kleckner } 2406a8d57407SReid Kleckner 2407c68f8957SZachary Turner codeview::TypeIndex 2408c168c6f8SReid Kleckner CodeViewDebug::getTypeIndexForThisPtr(const DIDerivedType *PtrTy, 2409c68f8957SZachary Turner const DISubroutineType *SubroutineTy) { 2410c168c6f8SReid Kleckner assert(PtrTy->getTag() == dwarf::DW_TAG_pointer_type && 2411c168c6f8SReid Kleckner "this type must be a pointer type"); 2412c68f8957SZachary Turner 2413c68f8957SZachary Turner PointerOptions Options = PointerOptions::None; 2414c68f8957SZachary Turner if (SubroutineTy->getFlags() & DINode::DIFlags::FlagLValueReference) 2415c68f8957SZachary Turner Options = PointerOptions::LValueRefThisPointer; 2416c68f8957SZachary Turner else if (SubroutineTy->getFlags() & DINode::DIFlags::FlagRValueReference) 2417c68f8957SZachary Turner Options = PointerOptions::RValueRefThisPointer; 2418c68f8957SZachary Turner 2419c68f8957SZachary Turner // Check if we've already translated this type. If there is no ref qualifier 2420c68f8957SZachary Turner // on the function then we look up this pointer type with no associated class 2421c68f8957SZachary Turner // so that the TypeIndex for the this pointer can be shared with the type 2422c68f8957SZachary Turner // index for other pointers to this class type. If there is a ref qualifier 2423c68f8957SZachary Turner // then we lookup the pointer using the subroutine as the parent type. 2424c168c6f8SReid Kleckner auto I = TypeIndices.find({PtrTy, SubroutineTy}); 2425c68f8957SZachary Turner if (I != TypeIndices.end()) 2426c68f8957SZachary Turner return I->second; 2427c68f8957SZachary Turner 2428c68f8957SZachary Turner TypeLoweringScope S(*this); 2429c168c6f8SReid Kleckner TypeIndex TI = lowerTypePointer(PtrTy, Options); 2430c168c6f8SReid Kleckner return recordTypeIndexForDINode(PtrTy, TI, SubroutineTy); 2431c68f8957SZachary Turner } 2432c68f8957SZachary Turner 2433223303c5SBob Haarman TypeIndex CodeViewDebug::getTypeIndexForReferenceTo(DITypeRef TypeRef) { 2434223303c5SBob Haarman DIType *Ty = TypeRef.resolve(); 2435223303c5SBob Haarman PointerRecord PR(getTypeIndex(Ty), 2436223303c5SBob Haarman getPointerSizeInBytes() == 8 ? PointerKind::Near64 2437223303c5SBob Haarman : PointerKind::Near32, 2438223303c5SBob Haarman PointerMode::LValueReference, PointerOptions::None, 2439223303c5SBob Haarman Ty->getSizeInBits() / 8); 24406900de1dSZachary Turner return TypeTable.writeLeafType(PR); 2441223303c5SBob Haarman } 2442223303c5SBob Haarman 2443a8d57407SReid Kleckner TypeIndex CodeViewDebug::getCompleteTypeIndex(DITypeRef TypeRef) { 2444a8d57407SReid Kleckner const DIType *Ty = TypeRef.resolve(); 2445a8d57407SReid Kleckner 2446a8d57407SReid Kleckner // The null DIType is the void type. Don't try to hash it. 2447a8d57407SReid Kleckner if (!Ty) 2448a8d57407SReid Kleckner return TypeIndex::Void(); 2449a8d57407SReid Kleckner 24509571c806SReid Kleckner // Look through typedefs when getting the complete type index. Call 24519571c806SReid Kleckner // getTypeIndex on the typdef to ensure that any UDTs are accumulated and are 24529571c806SReid Kleckner // emitted only once. 24539571c806SReid Kleckner if (Ty->getTag() == dwarf::DW_TAG_typedef) 24549571c806SReid Kleckner (void)getTypeIndex(Ty); 24559571c806SReid Kleckner while (Ty->getTag() == dwarf::DW_TAG_typedef) 24569571c806SReid Kleckner Ty = cast<DIDerivedType>(Ty)->getBaseType().resolve(); 24579571c806SReid Kleckner 2458a8d57407SReid Kleckner // If this is a non-record type, the complete type index is the same as the 2459a8d57407SReid Kleckner // normal type index. Just call getTypeIndex. 2460a8d57407SReid Kleckner switch (Ty->getTag()) { 2461a8d57407SReid Kleckner case dwarf::DW_TAG_class_type: 2462a8d57407SReid Kleckner case dwarf::DW_TAG_structure_type: 2463a8d57407SReid Kleckner case dwarf::DW_TAG_union_type: 2464a8d57407SReid Kleckner break; 2465a8d57407SReid Kleckner default: 2466a8d57407SReid Kleckner return getTypeIndex(Ty); 2467a8d57407SReid Kleckner } 2468a8d57407SReid Kleckner 2469b60532f8SBrock Wyma // Check if we've already translated the complete record type. 2470a8d57407SReid Kleckner const auto *CTy = cast<DICompositeType>(Ty); 2471a8d57407SReid Kleckner auto InsertResult = CompleteTypeIndices.insert({CTy, TypeIndex()}); 2472a8d57407SReid Kleckner if (!InsertResult.second) 2473a8d57407SReid Kleckner return InsertResult.first->second; 2474a8d57407SReid Kleckner 2475643dd836SReid Kleckner TypeLoweringScope S(*this); 2476643dd836SReid Kleckner 2477a8d57407SReid Kleckner // Make sure the forward declaration is emitted first. It's unclear if this 2478a8d57407SReid Kleckner // is necessary, but MSVC does it, and we should follow suit until we can show 2479a8d57407SReid Kleckner // otherwise. 2480b60532f8SBrock Wyma // We only emit a forward declaration for named types. 2481b60532f8SBrock Wyma if (!CTy->getName().empty() || !CTy->getIdentifier().empty()) { 2482a8d57407SReid Kleckner TypeIndex FwdDeclTI = getTypeIndex(CTy); 2483a8d57407SReid Kleckner 2484b60532f8SBrock Wyma // Just use the forward decl if we don't have complete type info. This 2485b60532f8SBrock Wyma // might happen if the frontend is using modules and expects the complete 2486b60532f8SBrock Wyma // definition to be emitted elsewhere. 2487a8d57407SReid Kleckner if (CTy->isForwardDecl()) 2488a8d57407SReid Kleckner return FwdDeclTI; 2489b60532f8SBrock Wyma } 2490a8d57407SReid Kleckner 2491a8d57407SReid Kleckner TypeIndex TI; 2492a8d57407SReid Kleckner switch (CTy->getTag()) { 2493a8d57407SReid Kleckner case dwarf::DW_TAG_class_type: 2494a8d57407SReid Kleckner case dwarf::DW_TAG_structure_type: 2495a8d57407SReid Kleckner TI = lowerCompleteTypeClass(CTy); 2496a8d57407SReid Kleckner break; 2497a8d57407SReid Kleckner case dwarf::DW_TAG_union_type: 2498a8d57407SReid Kleckner TI = lowerCompleteTypeUnion(CTy); 2499a8d57407SReid Kleckner break; 2500a8d57407SReid Kleckner default: 2501a8d57407SReid Kleckner llvm_unreachable("not a record"); 2502a8d57407SReid Kleckner } 2503a8d57407SReid Kleckner 2504b60532f8SBrock Wyma // Update the type index associated with this CompositeType. This cannot 2505b60532f8SBrock Wyma // use the 'InsertResult' iterator above because it is potentially 2506b60532f8SBrock Wyma // invalidated by map insertions which can occur while lowering the class 2507b60532f8SBrock Wyma // type above. 2508b60532f8SBrock Wyma CompleteTypeIndices[CTy] = TI; 25095acacbb0SReid Kleckner return TI; 25105acacbb0SReid Kleckner } 25115acacbb0SReid Kleckner 2512643dd836SReid Kleckner /// Emit all the deferred complete record types. Try to do this in FIFO order, 2513acee5685SAmjad Aboud /// and do this until fixpoint, as each complete record type typically 2514acee5685SAmjad Aboud /// references 2515643dd836SReid Kleckner /// many other record types. 2516643dd836SReid Kleckner void CodeViewDebug::emitDeferredCompleteTypes() { 2517643dd836SReid Kleckner SmallVector<const DICompositeType *, 4> TypesToEmit; 2518643dd836SReid Kleckner while (!DeferredCompleteTypes.empty()) { 2519643dd836SReid Kleckner std::swap(DeferredCompleteTypes, TypesToEmit); 2520643dd836SReid Kleckner for (const DICompositeType *RecordTy : TypesToEmit) 2521643dd836SReid Kleckner getCompleteTypeIndex(RecordTy); 2522643dd836SReid Kleckner TypesToEmit.clear(); 2523643dd836SReid Kleckner } 2524643dd836SReid Kleckner } 2525643dd836SReid Kleckner 25269ea2c012SReid Kleckner void CodeViewDebug::emitLocalVariableList(const FunctionInfo &FI, 25279ea2c012SReid Kleckner ArrayRef<LocalVariable> Locals) { 252810dd55c5SReid Kleckner // Get the sorted list of parameters and emit them first. 252910dd55c5SReid Kleckner SmallVector<const LocalVariable *, 6> Params; 253010dd55c5SReid Kleckner for (const LocalVariable &L : Locals) 253110dd55c5SReid Kleckner if (L.DIVar->isParameter()) 253210dd55c5SReid Kleckner Params.push_back(&L); 25330cac726aSFangrui Song llvm::sort(Params, [](const LocalVariable *L, const LocalVariable *R) { 253410dd55c5SReid Kleckner return L->DIVar->getArg() < R->DIVar->getArg(); 253510dd55c5SReid Kleckner }); 253610dd55c5SReid Kleckner for (const LocalVariable *L : Params) 25379ea2c012SReid Kleckner emitLocalVariable(FI, *L); 253810dd55c5SReid Kleckner 253910dd55c5SReid Kleckner // Next emit all non-parameters in the order that we found them. 254010dd55c5SReid Kleckner for (const LocalVariable &L : Locals) 254110dd55c5SReid Kleckner if (!L.DIVar->isParameter()) 25429ea2c012SReid Kleckner emitLocalVariable(FI, L); 254310dd55c5SReid Kleckner } 254410dd55c5SReid Kleckner 25458d7c421aSReid Kleckner /// Only call this on endian-specific types like ulittle16_t and little32_t, or 25468d7c421aSReid Kleckner /// structs composed of them. 25478d7c421aSReid Kleckner template <typename T> 25488d7c421aSReid Kleckner static void copyBytesForDefRange(SmallString<20> &BytePrefix, 25498d7c421aSReid Kleckner SymbolKind SymKind, const T &DefRangeHeader) { 25508d7c421aSReid Kleckner BytePrefix.resize(2 + sizeof(T)); 25518d7c421aSReid Kleckner ulittle16_t SymKindLE = ulittle16_t(SymKind); 25528d7c421aSReid Kleckner memcpy(&BytePrefix[0], &SymKindLE, 2); 25538d7c421aSReid Kleckner memcpy(&BytePrefix[2], &DefRangeHeader, sizeof(T)); 25548d7c421aSReid Kleckner } 25558d7c421aSReid Kleckner 25569ea2c012SReid Kleckner void CodeViewDebug::emitLocalVariable(const FunctionInfo &FI, 25579ea2c012SReid Kleckner const LocalVariable &Var) { 2558f9c275feSReid Kleckner // LocalSym record, see SymbolRecord.h for more info. 25595bf71d11SReid Kleckner MCSymbol *LocalEnd = beginSymbolRecord(SymbolKind::S_LOCAL); 2560f9c275feSReid Kleckner 256163a2846eSZachary Turner LocalSymFlags Flags = LocalSymFlags::None; 2562f9c275feSReid Kleckner if (Var.DIVar->isParameter()) 256363a2846eSZachary Turner Flags |= LocalSymFlags::IsParameter; 2564876330d5SReid Kleckner if (Var.DefRanges.empty()) 256563a2846eSZachary Turner Flags |= LocalSymFlags::IsOptimizedOut; 2566f9c275feSReid Kleckner 2567f9c275feSReid Kleckner OS.AddComment("TypeIndex"); 256808f5fd51SReid Kleckner TypeIndex TI = Var.UseReferenceType 256908f5fd51SReid Kleckner ? getTypeIndexForReferenceTo(Var.DIVar->getType()) 2570223303c5SBob Haarman : getCompleteTypeIndex(Var.DIVar->getType()); 25715acacbb0SReid Kleckner OS.EmitIntValue(TI.getIndex(), 4); 2572f9c275feSReid Kleckner OS.AddComment("Flags"); 257363a2846eSZachary Turner OS.EmitIntValue(static_cast<uint16_t>(Flags), 2); 25741256125fSDavid Majnemer // Truncate the name so we won't overflow the record length field. 2575b9456a5eSDavid Majnemer emitNullTerminatedSymbolName(OS, Var.DIVar->getName()); 25765bf71d11SReid Kleckner endSymbolRecord(LocalEnd); 2577f9c275feSReid Kleckner 2578876330d5SReid Kleckner // Calculate the on disk prefix of the appropriate def range record. The 2579876330d5SReid Kleckner // records and on disk formats are described in SymbolRecords.h. BytePrefix 2580876330d5SReid Kleckner // should be big enough to hold all forms without memory allocation. 2581876330d5SReid Kleckner SmallString<20> BytePrefix; 2582876330d5SReid Kleckner for (const LocalVarDefRange &DefRange : Var.DefRanges) { 2583876330d5SReid Kleckner BytePrefix.clear(); 2584876330d5SReid Kleckner if (DefRange.InMemory) { 25859ea2c012SReid Kleckner int Offset = DefRange.DataOffset; 25869ea2c012SReid Kleckner unsigned Reg = DefRange.CVRegister; 25879ea2c012SReid Kleckner 2588d5e4ec74SReid Kleckner // 32-bit x86 call sequences often use PUSH instructions, which disrupt 25899ea2c012SReid Kleckner // ESP-relative offsets. Use the virtual frame pointer, VFRAME or $T0, 25902bcb288aSReid Kleckner // instead. In frames without stack realignment, $T0 will be the CFA. 25919ea2c012SReid Kleckner if (RegisterId(Reg) == RegisterId::ESP) { 25929ea2c012SReid Kleckner Reg = unsigned(RegisterId::VFRAME); 25932bcb288aSReid Kleckner Offset += FI.OffsetAdjustment; 25949ea2c012SReid Kleckner } 25959ea2c012SReid Kleckner 25969ea2c012SReid Kleckner // If we can use the chosen frame pointer for the frame and this isn't a 25979ea2c012SReid Kleckner // sliced aggregate, use the smaller S_DEFRANGE_FRAMEPOINTER_REL record. 25989ea2c012SReid Kleckner // Otherwise, use S_DEFRANGE_REGISTER_REL. 25999ea2c012SReid Kleckner EncodedFramePtrReg EncFP = encodeFramePtrReg(RegisterId(Reg), TheCPU); 26009ea2c012SReid Kleckner if (!DefRange.IsSubfield && EncFP != EncodedFramePtrReg::None && 26019ea2c012SReid Kleckner (bool(Flags & LocalSymFlags::IsParameter) 26029ea2c012SReid Kleckner ? (EncFP == FI.EncodedParamFramePtrReg) 26039ea2c012SReid Kleckner : (EncFP == FI.EncodedLocalFramePtrReg))) { 26049ea2c012SReid Kleckner little32_t FPOffset = little32_t(Offset); 26058d7c421aSReid Kleckner copyBytesForDefRange(BytePrefix, S_DEFRANGE_FRAMEPOINTER_REL, FPOffset); 26069ea2c012SReid Kleckner } else { 26072b3e6428SReid Kleckner uint16_t RegRelFlags = 0; 26082b3e6428SReid Kleckner if (DefRange.IsSubfield) { 26092b3e6428SReid Kleckner RegRelFlags = DefRangeRegisterRelSym::IsSubfieldFlag | 26102b3e6428SReid Kleckner (DefRange.StructOffset 26112b3e6428SReid Kleckner << DefRangeRegisterRelSym::OffsetInParentShift); 26122b3e6428SReid Kleckner } 26139ea2c012SReid Kleckner DefRangeRegisterRelSym::Header DRHdr; 26149ea2c012SReid Kleckner DRHdr.Register = Reg; 26159ea2c012SReid Kleckner DRHdr.Flags = RegRelFlags; 26169ea2c012SReid Kleckner DRHdr.BasePointerOffset = Offset; 26178d7c421aSReid Kleckner copyBytesForDefRange(BytePrefix, S_DEFRANGE_REGISTER_REL, DRHdr); 26189ea2c012SReid Kleckner } 2619876330d5SReid Kleckner } else { 2620876330d5SReid Kleckner assert(DefRange.DataOffset == 0 && "unexpected offset into register"); 26212b3e6428SReid Kleckner if (DefRange.IsSubfield) { 26228d7c421aSReid Kleckner DefRangeSubfieldRegisterSym::Header DRHdr; 26238d7c421aSReid Kleckner DRHdr.Register = DefRange.CVRegister; 26248d7c421aSReid Kleckner DRHdr.MayHaveNoName = 0; 26258d7c421aSReid Kleckner DRHdr.OffsetInParent = DefRange.StructOffset; 26268d7c421aSReid Kleckner copyBytesForDefRange(BytePrefix, S_DEFRANGE_SUBFIELD_REGISTER, DRHdr); 26272b3e6428SReid Kleckner } else { 26288d7c421aSReid Kleckner DefRangeRegisterSym::Header DRHdr; 26298d7c421aSReid Kleckner DRHdr.Register = DefRange.CVRegister; 26308d7c421aSReid Kleckner DRHdr.MayHaveNoName = 0; 26318d7c421aSReid Kleckner copyBytesForDefRange(BytePrefix, S_DEFRANGE_REGISTER, DRHdr); 26322b3e6428SReid Kleckner } 2633876330d5SReid Kleckner } 2634876330d5SReid Kleckner OS.EmitCVDefRangeDirective(DefRange.Ranges, BytePrefix); 2635876330d5SReid Kleckner } 2636f9c275feSReid Kleckner } 2637f9c275feSReid Kleckner 26385a791ee4SReid Kleckner void CodeViewDebug::emitLexicalBlockList(ArrayRef<LexicalBlock *> Blocks, 26395a791ee4SReid Kleckner const FunctionInfo& FI) { 26405a791ee4SReid Kleckner for (LexicalBlock *Block : Blocks) 26415a791ee4SReid Kleckner emitLexicalBlock(*Block, FI); 26425a791ee4SReid Kleckner } 26435a791ee4SReid Kleckner 26445a791ee4SReid Kleckner /// Emit an S_BLOCK32 and S_END record pair delimiting the contents of a 26455a791ee4SReid Kleckner /// lexical block scope. 26465a791ee4SReid Kleckner void CodeViewDebug::emitLexicalBlock(const LexicalBlock &Block, 26475a791ee4SReid Kleckner const FunctionInfo& FI) { 26485bf71d11SReid Kleckner MCSymbol *RecordEnd = beginSymbolRecord(SymbolKind::S_BLOCK32); 26495a791ee4SReid Kleckner OS.AddComment("PtrParent"); 26505a791ee4SReid Kleckner OS.EmitIntValue(0, 4); // PtrParent 26515a791ee4SReid Kleckner OS.AddComment("PtrEnd"); 26525a791ee4SReid Kleckner OS.EmitIntValue(0, 4); // PtrEnd 26535a791ee4SReid Kleckner OS.AddComment("Code size"); 26545a791ee4SReid Kleckner OS.emitAbsoluteSymbolDiff(Block.End, Block.Begin, 4); // Code Size 26555a791ee4SReid Kleckner OS.AddComment("Function section relative address"); 26565a791ee4SReid Kleckner OS.EmitCOFFSecRel32(Block.Begin, /*Offset=*/0); // Func Offset 26575a791ee4SReid Kleckner OS.AddComment("Function section index"); 26585a791ee4SReid Kleckner OS.EmitCOFFSectionIndex(FI.Begin); // Func Symbol 26595a791ee4SReid Kleckner OS.AddComment("Lexical block name"); 26605a791ee4SReid Kleckner emitNullTerminatedSymbolName(OS, Block.Name); // Name 26615bf71d11SReid Kleckner endSymbolRecord(RecordEnd); 26625a791ee4SReid Kleckner 26635a791ee4SReid Kleckner // Emit variables local to this lexical block. 26649ea2c012SReid Kleckner emitLocalVariableList(FI, Block.Locals); 2665b17464e4SBrock Wyma emitGlobalVariableList(Block.Globals); 26665a791ee4SReid Kleckner 26675a791ee4SReid Kleckner // Emit lexical blocks contained within this block. 26685a791ee4SReid Kleckner emitLexicalBlockList(Block.Children, FI); 26695a791ee4SReid Kleckner 26705a791ee4SReid Kleckner // Close the lexical block scope. 26715bf71d11SReid Kleckner emitEndSymbolRecord(SymbolKind::S_END); 26725a791ee4SReid Kleckner } 26735a791ee4SReid Kleckner 26745a791ee4SReid Kleckner /// Convenience routine for collecting lexical block information for a list 26755a791ee4SReid Kleckner /// of lexical scopes. 26765a791ee4SReid Kleckner void CodeViewDebug::collectLexicalBlockInfo( 26775a791ee4SReid Kleckner SmallVectorImpl<LexicalScope *> &Scopes, 26785a791ee4SReid Kleckner SmallVectorImpl<LexicalBlock *> &Blocks, 2679b17464e4SBrock Wyma SmallVectorImpl<LocalVariable> &Locals, 2680b17464e4SBrock Wyma SmallVectorImpl<CVGlobalVariable> &Globals) { 26815a791ee4SReid Kleckner for (LexicalScope *Scope : Scopes) 2682b17464e4SBrock Wyma collectLexicalBlockInfo(*Scope, Blocks, Locals, Globals); 26835a791ee4SReid Kleckner } 26845a791ee4SReid Kleckner 26855a791ee4SReid Kleckner /// Populate the lexical blocks and local variable lists of the parent with 26865a791ee4SReid Kleckner /// information about the specified lexical scope. 26875a791ee4SReid Kleckner void CodeViewDebug::collectLexicalBlockInfo( 26885a791ee4SReid Kleckner LexicalScope &Scope, 26895a791ee4SReid Kleckner SmallVectorImpl<LexicalBlock *> &ParentBlocks, 2690b17464e4SBrock Wyma SmallVectorImpl<LocalVariable> &ParentLocals, 2691b17464e4SBrock Wyma SmallVectorImpl<CVGlobalVariable> &ParentGlobals) { 26925a791ee4SReid Kleckner if (Scope.isAbstractScope()) 26935a791ee4SReid Kleckner return; 26945a791ee4SReid Kleckner 2695b17464e4SBrock Wyma // Gather information about the lexical scope including local variables, 2696b17464e4SBrock Wyma // global variables, and address ranges. 2697b17464e4SBrock Wyma bool IgnoreScope = false; 2698b17464e4SBrock Wyma auto LI = ScopeVariables.find(&Scope); 2699b17464e4SBrock Wyma SmallVectorImpl<LocalVariable> *Locals = 2700b17464e4SBrock Wyma LI != ScopeVariables.end() ? &LI->second : nullptr; 2701b17464e4SBrock Wyma auto GI = ScopeGlobals.find(Scope.getScopeNode()); 2702b17464e4SBrock Wyma SmallVectorImpl<CVGlobalVariable> *Globals = 2703b17464e4SBrock Wyma GI != ScopeGlobals.end() ? GI->second.get() : nullptr; 27045a791ee4SReid Kleckner const DILexicalBlock *DILB = dyn_cast<DILexicalBlock>(Scope.getScopeNode()); 27055a791ee4SReid Kleckner const SmallVectorImpl<InsnRange> &Ranges = Scope.getRanges(); 2706b17464e4SBrock Wyma 2707b17464e4SBrock Wyma // Ignore lexical scopes which do not contain variables. 2708b17464e4SBrock Wyma if (!Locals && !Globals) 2709b17464e4SBrock Wyma IgnoreScope = true; 2710b17464e4SBrock Wyma 2711b17464e4SBrock Wyma // Ignore lexical scopes which are not lexical blocks. 2712b17464e4SBrock Wyma if (!DILB) 2713b17464e4SBrock Wyma IgnoreScope = true; 2714b17464e4SBrock Wyma 2715b17464e4SBrock Wyma // Ignore scopes which have too many address ranges to represent in the 2716b17464e4SBrock Wyma // current CodeView format or do not have a valid address range. 27175a791ee4SReid Kleckner // 27185a791ee4SReid Kleckner // For lexical scopes with multiple address ranges you may be tempted to 27195a791ee4SReid Kleckner // construct a single range covering every instruction where the block is 27205a791ee4SReid Kleckner // live and everything in between. Unfortunately, Visual Studio only 27215a791ee4SReid Kleckner // displays variables from the first matching lexical block scope. If the 27225a791ee4SReid Kleckner // first lexical block contains exception handling code or cold code which 27235a791ee4SReid Kleckner // is moved to the bottom of the routine creating a single range covering 27245a791ee4SReid Kleckner // nearly the entire routine, then it will hide all other lexical blocks 27255a791ee4SReid Kleckner // and the variables they contain. 2726b17464e4SBrock Wyma if (Ranges.size() != 1 || !getLabelAfterInsn(Ranges.front().second)) 2727b17464e4SBrock Wyma IgnoreScope = true; 2728b17464e4SBrock Wyma 2729b17464e4SBrock Wyma if (IgnoreScope) { 2730b17464e4SBrock Wyma // This scope can be safely ignored and eliminating it will reduce the 2731b17464e4SBrock Wyma // size of the debug information. Be sure to collect any variable and scope 2732b17464e4SBrock Wyma // information from the this scope or any of its children and collapse them 2733b17464e4SBrock Wyma // into the parent scope. 2734b17464e4SBrock Wyma if (Locals) 2735b17464e4SBrock Wyma ParentLocals.append(Locals->begin(), Locals->end()); 2736b17464e4SBrock Wyma if (Globals) 2737b17464e4SBrock Wyma ParentGlobals.append(Globals->begin(), Globals->end()); 2738b17464e4SBrock Wyma collectLexicalBlockInfo(Scope.getChildren(), 2739b17464e4SBrock Wyma ParentBlocks, 2740b17464e4SBrock Wyma ParentLocals, 2741b17464e4SBrock Wyma ParentGlobals); 27425a791ee4SReid Kleckner return; 27435a791ee4SReid Kleckner } 27445a791ee4SReid Kleckner 27455a791ee4SReid Kleckner // Create a new CodeView lexical block for this lexical scope. If we've 27465a791ee4SReid Kleckner // seen this DILexicalBlock before then the scope tree is malformed and 27475a791ee4SReid Kleckner // we can handle this gracefully by not processing it a second time. 27485a791ee4SReid Kleckner auto BlockInsertion = CurFn->LexicalBlocks.insert({DILB, LexicalBlock()}); 27495a791ee4SReid Kleckner if (!BlockInsertion.second) 27505a791ee4SReid Kleckner return; 27515a791ee4SReid Kleckner 2752b17464e4SBrock Wyma // Create a lexical block containing the variables and collect the the 2753b17464e4SBrock Wyma // lexical block information for the children. 27545a791ee4SReid Kleckner const InsnRange &Range = Ranges.front(); 27555a791ee4SReid Kleckner assert(Range.first && Range.second); 27565a791ee4SReid Kleckner LexicalBlock &Block = BlockInsertion.first->second; 27575a791ee4SReid Kleckner Block.Begin = getLabelBeforeInsn(Range.first); 27585a791ee4SReid Kleckner Block.End = getLabelAfterInsn(Range.second); 27595a791ee4SReid Kleckner assert(Block.Begin && "missing label for scope begin"); 27605a791ee4SReid Kleckner assert(Block.End && "missing label for scope end"); 27615a791ee4SReid Kleckner Block.Name = DILB->getName(); 2762b17464e4SBrock Wyma if (Locals) 2763b17464e4SBrock Wyma Block.Locals = std::move(*Locals); 2764b17464e4SBrock Wyma if (Globals) 2765b17464e4SBrock Wyma Block.Globals = std::move(*Globals); 27665a791ee4SReid Kleckner ParentBlocks.push_back(&Block); 2767b17464e4SBrock Wyma collectLexicalBlockInfo(Scope.getChildren(), 2768b17464e4SBrock Wyma Block.Children, 2769b17464e4SBrock Wyma Block.Locals, 2770b17464e4SBrock Wyma Block.Globals); 27715a791ee4SReid Kleckner } 27725a791ee4SReid Kleckner 2773b2fbb4b2SDavid Blaikie void CodeViewDebug::endFunctionImpl(const MachineFunction *MF) { 2774f1caa283SMatthias Braun const Function &GV = MF->getFunction(); 2775f1caa283SMatthias Braun assert(FnDebugInfo.count(&GV)); 277655baeefdSReid Kleckner assert(CurFn == FnDebugInfo[&GV].get()); 277770f5bc99SReid Kleckner 2778f1caa283SMatthias Braun collectVariableInfo(GV.getSubprogram()); 2779876330d5SReid Kleckner 27805a791ee4SReid Kleckner // Build the lexical block structure to emit for this routine. 27815a791ee4SReid Kleckner if (LexicalScope *CFS = LScopes.getCurrentFunctionScope()) 2782b17464e4SBrock Wyma collectLexicalBlockInfo(*CFS, 2783b17464e4SBrock Wyma CurFn->ChildBlocks, 2784b17464e4SBrock Wyma CurFn->Locals, 2785b17464e4SBrock Wyma CurFn->Globals); 27865a791ee4SReid Kleckner 27875a791ee4SReid Kleckner // Clear the scope and variable information from the map which will not be 27885a791ee4SReid Kleckner // valid after we have finished processing this routine. This also prepares 27895a791ee4SReid Kleckner // the map for the subsequent routine. 27905a791ee4SReid Kleckner ScopeVariables.clear(); 27915a791ee4SReid Kleckner 27922214ed89SReid Kleckner // Don't emit anything if we don't have any line tables. 279394ece8fbSBrock Wyma // Thunks are compiler-generated and probably won't have source correlation. 279494ece8fbSBrock Wyma if (!CurFn->HaveLineInfo && !GV.getSubprogram()->isThunk()) { 2795f1caa283SMatthias Braun FnDebugInfo.erase(&GV); 2796f9c275feSReid Kleckner CurFn = nullptr; 2797f9c275feSReid Kleckner return; 279870f5bc99SReid Kleckner } 2799f9c275feSReid Kleckner 2800e33c94f1SReid Kleckner CurFn->Annotations = MF->getCodeViewAnnotations(); 2801e33c94f1SReid Kleckner 2802f9c275feSReid Kleckner CurFn->End = Asm->getFunctionEnd(); 2803f9c275feSReid Kleckner 280470f5bc99SReid Kleckner CurFn = nullptr; 280570f5bc99SReid Kleckner } 280670f5bc99SReid Kleckner 280770f5bc99SReid Kleckner void CodeViewDebug::beginInstruction(const MachineInstr *MI) { 2808f9c275feSReid Kleckner DebugHandlerBase::beginInstruction(MI); 2809f9c275feSReid Kleckner 2810801bf7ebSShiva Chen // Ignore DBG_VALUE and DBG_LABEL locations and function prologue. 2811801bf7ebSShiva Chen if (!Asm || !CurFn || MI->isDebugInstr() || 281267f684e1SDavid Majnemer MI->getFlag(MachineInstr::FrameSetup)) 281370f5bc99SReid Kleckner return; 281445a74620SReid Kleckner 281545a74620SReid Kleckner // If the first instruction of a new MBB has no location, find the first 281645a74620SReid Kleckner // instruction with a location and use that. 281770f5bc99SReid Kleckner DebugLoc DL = MI->getDebugLoc(); 281845a74620SReid Kleckner if (!DL && MI->getParent() != PrevInstBB) { 281945a74620SReid Kleckner for (const auto &NextMI : *MI->getParent()) { 2820801bf7ebSShiva Chen if (NextMI.isDebugInstr()) 28212de471dcSReid Kleckner continue; 282245a74620SReid Kleckner DL = NextMI.getDebugLoc(); 282345a74620SReid Kleckner if (DL) 282445a74620SReid Kleckner break; 282545a74620SReid Kleckner } 282645a74620SReid Kleckner } 282745a74620SReid Kleckner PrevInstBB = MI->getParent(); 282845a74620SReid Kleckner 282945a74620SReid Kleckner // If we still don't have a debug location, don't record a location. 283045a74620SReid Kleckner if (!DL) 283170f5bc99SReid Kleckner return; 283245a74620SReid Kleckner 283370f5bc99SReid Kleckner maybeRecordLocation(DL, Asm->MF); 283470f5bc99SReid Kleckner } 28356f3406dfSReid Kleckner 28368c099fe0SZachary Turner MCSymbol *CodeViewDebug::beginCVSubsection(DebugSubsectionKind Kind) { 28376f3406dfSReid Kleckner MCSymbol *BeginLabel = MMI->getContext().createTempSymbol(), 28386f3406dfSReid Kleckner *EndLabel = MMI->getContext().createTempSymbol(); 28396f3406dfSReid Kleckner OS.EmitIntValue(unsigned(Kind), 4); 28406f3406dfSReid Kleckner OS.AddComment("Subsection size"); 28416f3406dfSReid Kleckner OS.emitAbsoluteSymbolDiff(EndLabel, BeginLabel, 4); 28426f3406dfSReid Kleckner OS.EmitLabel(BeginLabel); 28436f3406dfSReid Kleckner return EndLabel; 28446f3406dfSReid Kleckner } 28456f3406dfSReid Kleckner 28466f3406dfSReid Kleckner void CodeViewDebug::endCVSubsection(MCSymbol *EndLabel) { 28476f3406dfSReid Kleckner OS.EmitLabel(EndLabel); 28486f3406dfSReid Kleckner // Every subsection must be aligned to a 4-byte boundary. 28496f3406dfSReid Kleckner OS.EmitValueToAlignment(4); 28506f3406dfSReid Kleckner } 28516f3406dfSReid Kleckner 28525bf71d11SReid Kleckner static StringRef getSymbolName(SymbolKind SymKind) { 28535bf71d11SReid Kleckner for (const EnumEntry<SymbolKind> &EE : getSymbolTypeNames()) 28545bf71d11SReid Kleckner if (EE.Value == SymKind) 28555bf71d11SReid Kleckner return EE.Name; 28565bf71d11SReid Kleckner return ""; 28575bf71d11SReid Kleckner } 28585bf71d11SReid Kleckner 28595bf71d11SReid Kleckner MCSymbol *CodeViewDebug::beginSymbolRecord(SymbolKind SymKind) { 28605bf71d11SReid Kleckner MCSymbol *BeginLabel = MMI->getContext().createTempSymbol(), 28615bf71d11SReid Kleckner *EndLabel = MMI->getContext().createTempSymbol(); 28625bf71d11SReid Kleckner OS.AddComment("Record length"); 28635bf71d11SReid Kleckner OS.emitAbsoluteSymbolDiff(EndLabel, BeginLabel, 2); 28645bf71d11SReid Kleckner OS.EmitLabel(BeginLabel); 28655bf71d11SReid Kleckner if (OS.isVerboseAsm()) 28665bf71d11SReid Kleckner OS.AddComment("Record kind: " + getSymbolName(SymKind)); 28675bf71d11SReid Kleckner OS.EmitIntValue(unsigned(SymKind), 2); 28685bf71d11SReid Kleckner return EndLabel; 28695bf71d11SReid Kleckner } 28705bf71d11SReid Kleckner 28715bf71d11SReid Kleckner void CodeViewDebug::endSymbolRecord(MCSymbol *SymEnd) { 28724ab50b85SReid Kleckner // MSVC does not pad out symbol records to four bytes, but LLVM does to avoid 28734ab50b85SReid Kleckner // an extra copy of every symbol record in LLD. This increases object file 28744ab50b85SReid Kleckner // size by less than 1% in the clang build, and is compatible with the Visual 28754ab50b85SReid Kleckner // C++ linker. 287653ce0596SReid Kleckner OS.EmitValueToAlignment(4); 28775bf71d11SReid Kleckner OS.EmitLabel(SymEnd); 28785bf71d11SReid Kleckner } 28795bf71d11SReid Kleckner 28805bf71d11SReid Kleckner void CodeViewDebug::emitEndSymbolRecord(SymbolKind EndKind) { 28815bf71d11SReid Kleckner OS.AddComment("Record length"); 28825bf71d11SReid Kleckner OS.EmitIntValue(2, 2); 28835bf71d11SReid Kleckner if (OS.isVerboseAsm()) 28845bf71d11SReid Kleckner OS.AddComment("Record kind: " + getSymbolName(EndKind)); 28855bf71d11SReid Kleckner OS.EmitIntValue(unsigned(EndKind), 2); // Record Kind 28865bf71d11SReid Kleckner } 28875bf71d11SReid Kleckner 28883128b10cSDavid Majnemer void CodeViewDebug::emitDebugInfoForUDTs( 2889a7b04174SZachary Turner ArrayRef<std::pair<std::string, const DIType *>> UDTs) { 2890a7b04174SZachary Turner for (const auto &UDT : UDTs) { 2891a7b04174SZachary Turner const DIType *T = UDT.second; 2892a7b04174SZachary Turner assert(shouldEmitUdt(T)); 2893a7b04174SZachary Turner 28945bf71d11SReid Kleckner MCSymbol *UDTRecordEnd = beginSymbolRecord(SymbolKind::S_UDT); 28953128b10cSDavid Majnemer OS.AddComment("Type"); 2896a7b04174SZachary Turner OS.EmitIntValue(getCompleteTypeIndex(T).getIndex(), 4); 28973128b10cSDavid Majnemer emitNullTerminatedSymbolName(OS, UDT.first); 28985bf71d11SReid Kleckner endSymbolRecord(UDTRecordEnd); 28993128b10cSDavid Majnemer } 29003128b10cSDavid Majnemer } 29013128b10cSDavid Majnemer 2902b17464e4SBrock Wyma void CodeViewDebug::collectGlobalVariableInfo() { 2903bceaaa96SAdrian Prantl DenseMap<const DIGlobalVariableExpression *, const GlobalVariable *> 2904bceaaa96SAdrian Prantl GlobalMap; 2905d4135bbcSPeter Collingbourne for (const GlobalVariable &GV : MMI->getModule()->globals()) { 2906bceaaa96SAdrian Prantl SmallVector<DIGlobalVariableExpression *, 1> GVEs; 2907bceaaa96SAdrian Prantl GV.getDebugInfo(GVEs); 2908bceaaa96SAdrian Prantl for (const auto *GVE : GVEs) 2909bceaaa96SAdrian Prantl GlobalMap[GVE] = &GV; 2910d4135bbcSPeter Collingbourne } 2911d4135bbcSPeter Collingbourne 29126f3406dfSReid Kleckner NamedMDNode *CUs = MMI->getModule()->getNamedMetadata("llvm.dbg.cu"); 29136f3406dfSReid Kleckner for (const MDNode *Node : CUs->operands()) { 29146f3406dfSReid Kleckner const auto *CU = cast<DICompileUnit>(Node); 2915b17464e4SBrock Wyma for (const auto *GVE : CU->getGlobalVariables()) { 2916b17464e4SBrock Wyma const auto *GV = GlobalMap.lookup(GVE); 2917b17464e4SBrock Wyma if (!GV || GV->isDeclarationForLinker()) 2918b17464e4SBrock Wyma continue; 2919b17464e4SBrock Wyma const DIGlobalVariable *DIGV = GVE->getVariable(); 2920b17464e4SBrock Wyma DIScope *Scope = DIGV->getScope(); 2921b17464e4SBrock Wyma SmallVector<CVGlobalVariable, 1> *VariableList; 2922b17464e4SBrock Wyma if (Scope && isa<DILocalScope>(Scope)) { 2923b17464e4SBrock Wyma // Locate a global variable list for this scope, creating one if 2924b17464e4SBrock Wyma // necessary. 2925b17464e4SBrock Wyma auto Insertion = ScopeGlobals.insert( 2926b17464e4SBrock Wyma {Scope, std::unique_ptr<GlobalVariableList>()}); 2927b17464e4SBrock Wyma if (Insertion.second) 2928b17464e4SBrock Wyma Insertion.first->second = llvm::make_unique<GlobalVariableList>(); 2929b17464e4SBrock Wyma VariableList = Insertion.first->second.get(); 2930b17464e4SBrock Wyma } else if (GV->hasComdat()) 2931b17464e4SBrock Wyma // Emit this global variable into a COMDAT section. 2932b17464e4SBrock Wyma VariableList = &ComdatVariables; 2933b17464e4SBrock Wyma else 2934b17464e4SBrock Wyma // Emit this globla variable in a single global symbol section. 2935b17464e4SBrock Wyma VariableList = &GlobalVariables; 2936b17464e4SBrock Wyma CVGlobalVariable CVGV = {DIGV, GV}; 2937b17464e4SBrock Wyma VariableList->emplace_back(std::move(CVGV)); 2938b17464e4SBrock Wyma } 2939b17464e4SBrock Wyma } 2940b17464e4SBrock Wyma } 29416f3406dfSReid Kleckner 2942b17464e4SBrock Wyma void CodeViewDebug::emitDebugInfoForGlobals() { 29436f3406dfSReid Kleckner // First, emit all globals that are not in a comdat in a single symbol 29446f3406dfSReid Kleckner // substream. MSVC doesn't like it if the substream is empty, so only open 29456f3406dfSReid Kleckner // it if we have at least one global to emit. 29466f3406dfSReid Kleckner switchToDebugSectionForSymbol(nullptr); 2947b17464e4SBrock Wyma if (!GlobalVariables.empty()) { 29486f3406dfSReid Kleckner OS.AddComment("Symbol subsection for globals"); 2949b17464e4SBrock Wyma MCSymbol *EndLabel = beginCVSubsection(DebugSubsectionKind::Symbols); 2950b17464e4SBrock Wyma emitGlobalVariableList(GlobalVariables); 29516f3406dfSReid Kleckner endCVSubsection(EndLabel); 2952b17464e4SBrock Wyma } 29536f3406dfSReid Kleckner 29546f3406dfSReid Kleckner // Second, emit each global that is in a comdat into its own .debug$S 29556f3406dfSReid Kleckner // section along with its own symbol substream. 2956b17464e4SBrock Wyma for (const CVGlobalVariable &CVGV : ComdatVariables) { 2957b17464e4SBrock Wyma MCSymbol *GVSym = Asm->getSymbol(CVGV.GV); 29586f3406dfSReid Kleckner OS.AddComment("Symbol subsection for " + 2959b17464e4SBrock Wyma Twine(GlobalValue::dropLLVMManglingEscape(CVGV.GV->getName()))); 29606f3406dfSReid Kleckner switchToDebugSectionForSymbol(GVSym); 2961b17464e4SBrock Wyma MCSymbol *EndLabel = beginCVSubsection(DebugSubsectionKind::Symbols); 2962bceaaa96SAdrian Prantl // FIXME: emitDebugInfoForGlobal() doesn't handle DIExpressions. 2963b17464e4SBrock Wyma emitDebugInfoForGlobal(CVGV.DIGV, CVGV.GV, GVSym); 29646f3406dfSReid Kleckner endCVSubsection(EndLabel); 29656f3406dfSReid Kleckner } 29666f3406dfSReid Kleckner } 29676f3406dfSReid Kleckner 2968b510b458SHans Wennborg void CodeViewDebug::emitDebugInfoForRetainedTypes() { 2969b510b458SHans Wennborg NamedMDNode *CUs = MMI->getModule()->getNamedMetadata("llvm.dbg.cu"); 2970b510b458SHans Wennborg for (const MDNode *Node : CUs->operands()) { 2971b510b458SHans Wennborg for (auto *Ty : cast<DICompileUnit>(Node)->getRetainedTypes()) { 2972b510b458SHans Wennborg if (DIType *RT = dyn_cast<DIType>(Ty)) { 2973b510b458SHans Wennborg getTypeIndex(RT); 2974b510b458SHans Wennborg // FIXME: Add to global/local DTU list. 2975b510b458SHans Wennborg } 2976b510b458SHans Wennborg } 2977b510b458SHans Wennborg } 2978b510b458SHans Wennborg } 2979b510b458SHans Wennborg 2980b17464e4SBrock Wyma // Emit each global variable in the specified array. 2981b17464e4SBrock Wyma void CodeViewDebug::emitGlobalVariableList(ArrayRef<CVGlobalVariable> Globals) { 2982b17464e4SBrock Wyma for (const CVGlobalVariable &CVGV : Globals) { 2983b17464e4SBrock Wyma MCSymbol *GVSym = Asm->getSymbol(CVGV.GV); 2984b17464e4SBrock Wyma // FIXME: emitDebugInfoForGlobal() doesn't handle DIExpressions. 2985b17464e4SBrock Wyma emitDebugInfoForGlobal(CVGV.DIGV, CVGV.GV, GVSym); 2986b17464e4SBrock Wyma } 2987b17464e4SBrock Wyma } 2988b17464e4SBrock Wyma 29896f3406dfSReid Kleckner void CodeViewDebug::emitDebugInfoForGlobal(const DIGlobalVariable *DIGV, 2990d4135bbcSPeter Collingbourne const GlobalVariable *GV, 29916f3406dfSReid Kleckner MCSymbol *GVSym) { 29925bf71d11SReid Kleckner // DataSym record, see SymbolRecord.h for more info. Thread local data 29935bf71d11SReid Kleckner // happens to have the same format as global data. 29945bf71d11SReid Kleckner SymbolKind DataSym = GV->isThreadLocal() 29955bf71d11SReid Kleckner ? (DIGV->isLocalToUnit() ? SymbolKind::S_LTHREAD32 29965bf71d11SReid Kleckner : SymbolKind::S_GTHREAD32) 29975bf71d11SReid Kleckner : (DIGV->isLocalToUnit() ? SymbolKind::S_LDATA32 29985bf71d11SReid Kleckner : SymbolKind::S_GDATA32); 29995bf71d11SReid Kleckner MCSymbol *DataEnd = beginSymbolRecord(DataSym); 30006f3406dfSReid Kleckner OS.AddComment("Type"); 30016f3406dfSReid Kleckner OS.EmitIntValue(getCompleteTypeIndex(DIGV->getType()).getIndex(), 4); 30026f3406dfSReid Kleckner OS.AddComment("DataOffset"); 3003f7d84ee6SKeno Fischer OS.EmitCOFFSecRel32(GVSym, /*Offset=*/0); 30046f3406dfSReid Kleckner OS.AddComment("Segment"); 30056f3406dfSReid Kleckner OS.EmitCOFFSectionIndex(GVSym); 30066f3406dfSReid Kleckner OS.AddComment("Name"); 30075bf71d11SReid Kleckner const unsigned LengthOfDataRecord = 12; 30085bf71d11SReid Kleckner emitNullTerminatedSymbolName(OS, DIGV->getName(), LengthOfDataRecord); 30095bf71d11SReid Kleckner endSymbolRecord(DataEnd); 30106f3406dfSReid Kleckner } 3011