forked from OSchip/llvm-project
703 lines
24 KiB
C++
703 lines
24 KiB
C++
//===-- SymbolFilePDB.cpp ---------------------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "SymbolFilePDB.h"
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#include "clang/Lex/Lexer.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/PluginManager.h"
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#include "lldb/Symbol/ClangASTContext.h"
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#include "lldb/Symbol/CompileUnit.h"
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#include "lldb/Symbol/LineTable.h"
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#include "lldb/Symbol/ObjectFile.h"
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#include "lldb/Symbol/SymbolContext.h"
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#include "lldb/Symbol/TypeMap.h"
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#include "llvm/DebugInfo/PDB/GenericError.h"
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#include "llvm/DebugInfo/PDB/IPDBEnumChildren.h"
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#include "llvm/DebugInfo/PDB/IPDBLineNumber.h"
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#include "llvm/DebugInfo/PDB/IPDBSourceFile.h"
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#include "llvm/DebugInfo/PDB/PDBSymbol.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolCompiland.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolCompilandDetails.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolExe.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolFunc.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolFuncDebugEnd.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolFuncDebugStart.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolTypeEnum.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolTypeTypedef.h"
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#include "llvm/DebugInfo/PDB/PDBSymbolTypeUDT.h"
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#include "Plugins/SymbolFile/PDB/PDBASTParser.h"
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#include <regex>
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using namespace lldb_private;
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using namespace llvm::pdb;
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namespace {
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lldb::LanguageType TranslateLanguage(PDB_Lang lang) {
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switch (lang) {
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case PDB_Lang::Cpp:
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return lldb::LanguageType::eLanguageTypeC_plus_plus;
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case PDB_Lang::C:
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return lldb::LanguageType::eLanguageTypeC;
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default:
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return lldb::LanguageType::eLanguageTypeUnknown;
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}
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}
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bool ShouldAddLine(uint32_t requested_line, uint32_t actual_line,
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uint32_t addr_length) {
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return ((requested_line == 0 || actual_line == requested_line) &&
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addr_length > 0);
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}
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}
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void SymbolFilePDB::Initialize() {
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PluginManager::RegisterPlugin(GetPluginNameStatic(),
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GetPluginDescriptionStatic(), CreateInstance,
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DebuggerInitialize);
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}
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void SymbolFilePDB::Terminate() {
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PluginManager::UnregisterPlugin(CreateInstance);
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}
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void SymbolFilePDB::DebuggerInitialize(lldb_private::Debugger &debugger) {}
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lldb_private::ConstString SymbolFilePDB::GetPluginNameStatic() {
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static ConstString g_name("pdb");
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return g_name;
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}
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const char *SymbolFilePDB::GetPluginDescriptionStatic() {
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return "Microsoft PDB debug symbol file reader.";
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}
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lldb_private::SymbolFile *
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SymbolFilePDB::CreateInstance(lldb_private::ObjectFile *obj_file) {
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return new SymbolFilePDB(obj_file);
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}
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SymbolFilePDB::SymbolFilePDB(lldb_private::ObjectFile *object_file)
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: SymbolFile(object_file), m_cached_compile_unit_count(0) {}
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SymbolFilePDB::~SymbolFilePDB() {}
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uint32_t SymbolFilePDB::CalculateAbilities() {
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if (!m_session_up) {
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// Lazily load and match the PDB file, but only do this once.
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std::string exePath = m_obj_file->GetFileSpec().GetPath();
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auto error = loadDataForEXE(PDB_ReaderType::DIA, llvm::StringRef(exePath),
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m_session_up);
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if (error) {
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llvm::consumeError(std::move(error));
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return 0;
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}
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}
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return CompileUnits | LineTables;
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}
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void SymbolFilePDB::InitializeObject() {
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lldb::addr_t obj_load_address = m_obj_file->GetFileOffset();
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m_session_up->setLoadAddress(obj_load_address);
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TypeSystem *type_system =
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GetTypeSystemForLanguage(lldb::eLanguageTypeC_plus_plus);
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ClangASTContext *clang_type_system =
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llvm::dyn_cast_or_null<ClangASTContext>(type_system);
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m_tu_decl_ctx_up = llvm::make_unique<CompilerDeclContext>(
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type_system, clang_type_system->GetTranslationUnitDecl());
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}
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uint32_t SymbolFilePDB::GetNumCompileUnits() {
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if (m_cached_compile_unit_count == 0) {
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auto global = m_session_up->getGlobalScope();
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auto compilands = global->findAllChildren<PDBSymbolCompiland>();
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m_cached_compile_unit_count = compilands->getChildCount();
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// The linker can inject an additional "dummy" compilation unit into the
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// PDB.
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// Ignore this special compile unit for our purposes, if it is there. It is
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// always the last one.
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auto last_cu = compilands->getChildAtIndex(m_cached_compile_unit_count - 1);
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std::string name = last_cu->getName();
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if (name == "* Linker *")
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--m_cached_compile_unit_count;
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}
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return m_cached_compile_unit_count;
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}
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lldb::CompUnitSP SymbolFilePDB::ParseCompileUnitAtIndex(uint32_t index) {
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auto global = m_session_up->getGlobalScope();
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auto compilands = global->findAllChildren<PDBSymbolCompiland>();
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auto cu = compilands->getChildAtIndex(index);
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uint32_t id = cu->getSymIndexId();
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return ParseCompileUnitForSymIndex(id);
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}
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lldb::LanguageType
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SymbolFilePDB::ParseCompileUnitLanguage(const lldb_private::SymbolContext &sc) {
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// What fields should I expect to be filled out on the SymbolContext? Is it
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// safe to assume that `sc.comp_unit` is valid?
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if (!sc.comp_unit)
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return lldb::eLanguageTypeUnknown;
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auto cu = m_session_up->getConcreteSymbolById<PDBSymbolCompiland>(
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sc.comp_unit->GetID());
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if (!cu)
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return lldb::eLanguageTypeUnknown;
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auto details = cu->findOneChild<PDBSymbolCompilandDetails>();
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if (!details)
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return lldb::eLanguageTypeUnknown;
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return TranslateLanguage(details->getLanguage());
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}
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size_t SymbolFilePDB::ParseCompileUnitFunctions(
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const lldb_private::SymbolContext &sc) {
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// TODO: Implement this
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return size_t();
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}
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bool SymbolFilePDB::ParseCompileUnitLineTable(
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const lldb_private::SymbolContext &sc) {
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return ParseCompileUnitLineTable(sc, 0);
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}
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bool SymbolFilePDB::ParseCompileUnitDebugMacros(
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const lldb_private::SymbolContext &sc) {
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// PDB doesn't contain information about macros
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return false;
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}
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bool SymbolFilePDB::ParseCompileUnitSupportFiles(
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const lldb_private::SymbolContext &sc,
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lldb_private::FileSpecList &support_files) {
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if (!sc.comp_unit)
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return false;
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// In theory this is unnecessary work for us, because all of this information
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// is easily
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// (and quickly) accessible from DebugInfoPDB, so caching it a second time
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// seems like a waste.
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// Unfortunately, there's no good way around this short of a moderate
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// refactor, since SymbolVendor
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// depends on being able to cache this list.
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auto cu = m_session_up->getConcreteSymbolById<PDBSymbolCompiland>(
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sc.comp_unit->GetID());
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if (!cu)
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return false;
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auto files = m_session_up->getSourceFilesForCompiland(*cu);
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if (!files || files->getChildCount() == 0)
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return false;
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while (auto file = files->getNext()) {
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FileSpec spec(file->getFileName(), false);
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support_files.Append(spec);
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}
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return true;
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}
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bool SymbolFilePDB::ParseImportedModules(
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const lldb_private::SymbolContext &sc,
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std::vector<lldb_private::ConstString> &imported_modules) {
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// PDB does not yet support module debug info
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return false;
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}
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size_t
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SymbolFilePDB::ParseFunctionBlocks(const lldb_private::SymbolContext &sc) {
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// TODO: Implement this
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return size_t();
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}
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size_t SymbolFilePDB::ParseTypes(const lldb_private::SymbolContext &sc) {
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// TODO: Implement this
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return size_t();
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}
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size_t
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SymbolFilePDB::ParseVariablesForContext(const lldb_private::SymbolContext &sc) {
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// TODO: Implement this
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return size_t();
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}
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lldb_private::Type *SymbolFilePDB::ResolveTypeUID(lldb::user_id_t type_uid) {
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auto find_result = m_types.find(type_uid);
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if (find_result != m_types.end())
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return find_result->second.get();
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TypeSystem *type_system =
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GetTypeSystemForLanguage(lldb::eLanguageTypeC_plus_plus);
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ClangASTContext *clang_type_system =
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llvm::dyn_cast_or_null<ClangASTContext>(type_system);
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if (!clang_type_system)
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return nullptr;
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PDBASTParser *pdb =
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llvm::dyn_cast<PDBASTParser>(clang_type_system->GetPDBParser());
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if (!pdb)
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return nullptr;
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auto pdb_type = m_session_up->getSymbolById(type_uid);
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if (pdb_type == nullptr)
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return nullptr;
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lldb::TypeSP result = pdb->CreateLLDBTypeFromPDBType(*pdb_type);
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m_types.insert(std::make_pair(type_uid, result));
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return result.get();
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}
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bool SymbolFilePDB::CompleteType(lldb_private::CompilerType &compiler_type) {
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// TODO: Implement this
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return false;
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}
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lldb_private::CompilerDecl SymbolFilePDB::GetDeclForUID(lldb::user_id_t uid) {
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return lldb_private::CompilerDecl();
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}
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lldb_private::CompilerDeclContext
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SymbolFilePDB::GetDeclContextForUID(lldb::user_id_t uid) {
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// PDB always uses the translation unit decl context for everything. We can
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// improve this later
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// but it's not easy because PDB doesn't provide a high enough level of type
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// fidelity in this area.
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return *m_tu_decl_ctx_up;
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}
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lldb_private::CompilerDeclContext
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SymbolFilePDB::GetDeclContextContainingUID(lldb::user_id_t uid) {
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return *m_tu_decl_ctx_up;
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}
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void SymbolFilePDB::ParseDeclsForContext(
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lldb_private::CompilerDeclContext decl_ctx) {}
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uint32_t
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SymbolFilePDB::ResolveSymbolContext(const lldb_private::Address &so_addr,
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uint32_t resolve_scope,
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lldb_private::SymbolContext &sc) {
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return uint32_t();
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}
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uint32_t SymbolFilePDB::ResolveSymbolContext(
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const lldb_private::FileSpec &file_spec, uint32_t line, bool check_inlines,
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uint32_t resolve_scope, lldb_private::SymbolContextList &sc_list) {
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if (resolve_scope & lldb::eSymbolContextCompUnit) {
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// Locate all compilation units with line numbers referencing the specified
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// file. For example, if
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// `file_spec` is <vector>, then this should return all source files and
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// header files that reference
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// <vector>, either directly or indirectly.
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auto compilands = m_session_up->findCompilandsForSourceFile(
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file_spec.GetPath(), PDB_NameSearchFlags::NS_CaseInsensitive);
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// For each one, either find get its previously parsed data, or parse it
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// afresh and add it to
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// the symbol context list.
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while (auto compiland = compilands->getNext()) {
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// If we're not checking inlines, then don't add line information for this
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// file unless the FileSpec
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// matches.
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if (!check_inlines) {
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// `getSourceFileName` returns the basename of the original source file
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// used to generate this compiland.
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// It does not return the full path. Currently the only way to get that
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// is to do a basename lookup to
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// get the IPDBSourceFile, but this is ambiguous in the case of two
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// source files with the same name
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// contributing to the same compiland. This is a moderately extreme
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// edge case, so we consider this ok
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// for now, although we need to find a long term solution.
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std::string source_file = compiland->getSourceFileName();
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auto pdb_file = m_session_up->findOneSourceFile(
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compiland.get(), source_file,
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PDB_NameSearchFlags::NS_CaseInsensitive);
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source_file = pdb_file->getFileName();
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FileSpec this_spec(source_file, false, FileSpec::ePathSyntaxWindows);
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if (!file_spec.FileEquals(this_spec))
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continue;
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}
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SymbolContext sc;
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auto cu = ParseCompileUnitForSymIndex(compiland->getSymIndexId());
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sc.comp_unit = cu.get();
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sc.module_sp = cu->GetModule();
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sc_list.Append(sc);
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// If we were asked to resolve line entries, add all entries to the line
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// table that match the requested
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// line (or all lines if `line` == 0)
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if (resolve_scope & lldb::eSymbolContextLineEntry)
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ParseCompileUnitLineTable(sc, line);
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}
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}
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return sc_list.GetSize();
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}
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uint32_t SymbolFilePDB::FindGlobalVariables(
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const lldb_private::ConstString &name,
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const lldb_private::CompilerDeclContext *parent_decl_ctx, bool append,
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uint32_t max_matches, lldb_private::VariableList &variables) {
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return uint32_t();
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}
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uint32_t
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SymbolFilePDB::FindGlobalVariables(const lldb_private::RegularExpression ®ex,
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bool append, uint32_t max_matches,
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lldb_private::VariableList &variables) {
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return uint32_t();
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}
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uint32_t SymbolFilePDB::FindFunctions(
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const lldb_private::ConstString &name,
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const lldb_private::CompilerDeclContext *parent_decl_ctx,
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uint32_t name_type_mask, bool include_inlines, bool append,
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lldb_private::SymbolContextList &sc_list) {
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return uint32_t();
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}
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uint32_t
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SymbolFilePDB::FindFunctions(const lldb_private::RegularExpression ®ex,
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bool include_inlines, bool append,
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lldb_private::SymbolContextList &sc_list) {
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return uint32_t();
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}
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void SymbolFilePDB::GetMangledNamesForFunction(
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const std::string &scope_qualified_name,
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std::vector<lldb_private::ConstString> &mangled_names) {}
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uint32_t SymbolFilePDB::FindTypes(
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const lldb_private::SymbolContext &sc,
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const lldb_private::ConstString &name,
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const lldb_private::CompilerDeclContext *parent_decl_ctx, bool append,
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uint32_t max_matches,
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llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files,
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lldb_private::TypeMap &types) {
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if (!append)
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types.Clear();
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if (!name)
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return 0;
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searched_symbol_files.clear();
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searched_symbol_files.insert(this);
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std::string name_str = name.AsCString();
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// If this might be a regex, we have to return EVERY symbol and process them
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// one by one, which is going
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// to destroy performance on large PDB files. So try really hard not to use a
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// regex match.
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if (name_str.find_first_of("[]?*.-+\\") != std::string::npos)
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FindTypesByRegex(name_str, max_matches, types);
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else
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FindTypesByName(name_str, max_matches, types);
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return types.GetSize();
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}
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void SymbolFilePDB::FindTypesByRegex(const std::string ®ex,
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uint32_t max_matches,
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lldb_private::TypeMap &types) {
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// When searching by regex, we need to go out of our way to limit the search
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// space as much as possible, since
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// the way this is implemented is by searching EVERYTHING in the PDB and
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// manually doing a regex compare. PDB
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// library isn't optimized for regex searches or searches across multiple
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// symbol types at the same time, so the
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// best we can do is to search enums, then typedefs, then classes one by one,
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// and do a regex compare against all
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// of them.
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PDB_SymType tags_to_search[] = {PDB_SymType::Enum, PDB_SymType::Typedef,
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PDB_SymType::UDT};
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auto global = m_session_up->getGlobalScope();
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std::unique_ptr<IPDBEnumSymbols> results;
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std::regex re(regex);
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uint32_t matches = 0;
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for (auto tag : tags_to_search) {
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results = global->findAllChildren(tag);
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while (auto result = results->getNext()) {
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if (max_matches > 0 && matches >= max_matches)
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break;
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std::string type_name;
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if (auto enum_type = llvm::dyn_cast<PDBSymbolTypeEnum>(result.get()))
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type_name = enum_type->getName();
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else if (auto typedef_type =
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llvm::dyn_cast<PDBSymbolTypeTypedef>(result.get()))
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type_name = typedef_type->getName();
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else if (auto class_type = llvm::dyn_cast<PDBSymbolTypeUDT>(result.get()))
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type_name = class_type->getName();
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else {
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// We're only looking for types that have names. Skip symbols, as well
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// as
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// unnamed types such as arrays, pointers, etc.
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continue;
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}
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if (!std::regex_match(type_name, re))
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continue;
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// This should cause the type to get cached and stored in the `m_types`
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// lookup.
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if (!ResolveTypeUID(result->getSymIndexId()))
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continue;
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auto iter = m_types.find(result->getSymIndexId());
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if (iter == m_types.end())
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continue;
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types.Insert(iter->second);
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++matches;
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}
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}
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}
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void SymbolFilePDB::FindTypesByName(const std::string &name,
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uint32_t max_matches,
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lldb_private::TypeMap &types) {
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auto global = m_session_up->getGlobalScope();
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std::unique_ptr<IPDBEnumSymbols> results;
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results = global->findChildren(PDB_SymType::None, name,
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PDB_NameSearchFlags::NS_Default);
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uint32_t matches = 0;
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while (auto result = results->getNext()) {
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if (max_matches > 0 && matches >= max_matches)
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break;
|
|
switch (result->getSymTag()) {
|
|
case PDB_SymType::Enum:
|
|
case PDB_SymType::UDT:
|
|
case PDB_SymType::Typedef:
|
|
break;
|
|
default:
|
|
// We're only looking for types that have names. Skip symbols, as well as
|
|
// unnamed types such as arrays, pointers, etc.
|
|
continue;
|
|
}
|
|
|
|
// This should cause the type to get cached and stored in the `m_types`
|
|
// lookup.
|
|
if (!ResolveTypeUID(result->getSymIndexId()))
|
|
continue;
|
|
|
|
auto iter = m_types.find(result->getSymIndexId());
|
|
if (iter == m_types.end())
|
|
continue;
|
|
types.Insert(iter->second);
|
|
++matches;
|
|
}
|
|
}
|
|
|
|
size_t SymbolFilePDB::FindTypes(
|
|
const std::vector<lldb_private::CompilerContext> &contexts, bool append,
|
|
lldb_private::TypeMap &types) {
|
|
return 0;
|
|
}
|
|
|
|
lldb_private::TypeList *SymbolFilePDB::GetTypeList() { return nullptr; }
|
|
|
|
size_t SymbolFilePDB::GetTypes(lldb_private::SymbolContextScope *sc_scope,
|
|
uint32_t type_mask,
|
|
lldb_private::TypeList &type_list) {
|
|
return size_t();
|
|
}
|
|
|
|
lldb_private::TypeSystem *
|
|
SymbolFilePDB::GetTypeSystemForLanguage(lldb::LanguageType language) {
|
|
auto type_system =
|
|
m_obj_file->GetModule()->GetTypeSystemForLanguage(language);
|
|
if (type_system)
|
|
type_system->SetSymbolFile(this);
|
|
return type_system;
|
|
}
|
|
|
|
lldb_private::CompilerDeclContext SymbolFilePDB::FindNamespace(
|
|
const lldb_private::SymbolContext &sc,
|
|
const lldb_private::ConstString &name,
|
|
const lldb_private::CompilerDeclContext *parent_decl_ctx) {
|
|
return lldb_private::CompilerDeclContext();
|
|
}
|
|
|
|
lldb_private::ConstString SymbolFilePDB::GetPluginName() {
|
|
static ConstString g_name("pdb");
|
|
return g_name;
|
|
}
|
|
|
|
uint32_t SymbolFilePDB::GetPluginVersion() { return 1; }
|
|
|
|
IPDBSession &SymbolFilePDB::GetPDBSession() { return *m_session_up; }
|
|
|
|
const IPDBSession &SymbolFilePDB::GetPDBSession() const {
|
|
return *m_session_up;
|
|
}
|
|
|
|
lldb::CompUnitSP SymbolFilePDB::ParseCompileUnitForSymIndex(uint32_t id) {
|
|
auto found_cu = m_comp_units.find(id);
|
|
if (found_cu != m_comp_units.end())
|
|
return found_cu->second;
|
|
|
|
auto cu = m_session_up->getConcreteSymbolById<PDBSymbolCompiland>(id);
|
|
|
|
// `getSourceFileName` returns the basename of the original source file used
|
|
// to generate this compiland. It does
|
|
// not return the full path. Currently the only way to get that is to do a
|
|
// basename lookup to get the
|
|
// IPDBSourceFile, but this is ambiguous in the case of two source files with
|
|
// the same name contributing to the
|
|
// same compiland. This is a moderately extreme edge case, so we consider this
|
|
// ok for now, although we need to find
|
|
// a long term solution.
|
|
auto file =
|
|
m_session_up->findOneSourceFile(cu.get(), cu->getSourceFileName(),
|
|
PDB_NameSearchFlags::NS_CaseInsensitive);
|
|
std::string path = file->getFileName();
|
|
|
|
lldb::LanguageType lang;
|
|
auto details = cu->findOneChild<PDBSymbolCompilandDetails>();
|
|
if (!details)
|
|
lang = lldb::eLanguageTypeC_plus_plus;
|
|
else
|
|
lang = TranslateLanguage(details->getLanguage());
|
|
|
|
// Don't support optimized code for now, DebugInfoPDB does not return this
|
|
// information.
|
|
LazyBool optimized = eLazyBoolNo;
|
|
auto result = std::make_shared<CompileUnit>(
|
|
m_obj_file->GetModule(), nullptr, path.c_str(), id, lang, optimized);
|
|
m_comp_units.insert(std::make_pair(id, result));
|
|
return result;
|
|
}
|
|
|
|
bool SymbolFilePDB::ParseCompileUnitLineTable(
|
|
const lldb_private::SymbolContext &sc, uint32_t match_line) {
|
|
auto global = m_session_up->getGlobalScope();
|
|
auto cu = m_session_up->getConcreteSymbolById<PDBSymbolCompiland>(
|
|
sc.comp_unit->GetID());
|
|
|
|
// LineEntry needs the *index* of the file into the list of support files
|
|
// returned by
|
|
// ParseCompileUnitSupportFiles. But the underlying SDK gives us a globally
|
|
// unique
|
|
// idenfitifier in the namespace of the PDB. So, we have to do a mapping so
|
|
// that we
|
|
// can hand out indices.
|
|
llvm::DenseMap<uint32_t, uint32_t> index_map;
|
|
BuildSupportFileIdToSupportFileIndexMap(*cu, index_map);
|
|
auto line_table = llvm::make_unique<LineTable>(sc.comp_unit);
|
|
|
|
// Find contributions to `cu` from all source and header files.
|
|
std::string path = sc.comp_unit->GetPath();
|
|
auto files = m_session_up->getSourceFilesForCompiland(*cu);
|
|
|
|
// For each source and header file, create a LineSequence for contributions to
|
|
// the cu
|
|
// from that file, and add the sequence.
|
|
while (auto file = files->getNext()) {
|
|
std::unique_ptr<LineSequence> sequence(
|
|
line_table->CreateLineSequenceContainer());
|
|
auto lines = m_session_up->findLineNumbers(*cu, *file);
|
|
int entry_count = lines->getChildCount();
|
|
|
|
uint64_t prev_addr;
|
|
uint32_t prev_length;
|
|
uint32_t prev_line;
|
|
uint32_t prev_source_idx;
|
|
|
|
for (int i = 0; i < entry_count; ++i) {
|
|
auto line = lines->getChildAtIndex(i);
|
|
|
|
uint64_t lno = line->getLineNumber();
|
|
uint64_t addr = line->getVirtualAddress();
|
|
uint32_t length = line->getLength();
|
|
uint32_t source_id = line->getSourceFileId();
|
|
uint32_t col = line->getColumnNumber();
|
|
uint32_t source_idx = index_map[source_id];
|
|
|
|
// There was a gap between the current entry and the previous entry if the
|
|
// addresses don't perfectly line
|
|
// up.
|
|
bool is_gap = (i > 0) && (prev_addr + prev_length < addr);
|
|
|
|
// Before inserting the current entry, insert a terminal entry at the end
|
|
// of the previous entry's address
|
|
// range if the current entry resulted in a gap from the previous entry.
|
|
if (is_gap && ShouldAddLine(match_line, prev_line, prev_length)) {
|
|
line_table->AppendLineEntryToSequence(
|
|
sequence.get(), prev_addr + prev_length, prev_line, 0,
|
|
prev_source_idx, false, false, false, false, true);
|
|
}
|
|
|
|
if (ShouldAddLine(match_line, lno, length)) {
|
|
bool is_statement = line->isStatement();
|
|
bool is_prologue = false;
|
|
bool is_epilogue = false;
|
|
auto func =
|
|
m_session_up->findSymbolByAddress(addr, PDB_SymType::Function);
|
|
if (func) {
|
|
auto prologue = func->findOneChild<PDBSymbolFuncDebugStart>();
|
|
is_prologue = (addr == prologue->getVirtualAddress());
|
|
|
|
auto epilogue = func->findOneChild<PDBSymbolFuncDebugEnd>();
|
|
is_epilogue = (addr == epilogue->getVirtualAddress());
|
|
}
|
|
|
|
line_table->AppendLineEntryToSequence(sequence.get(), addr, lno, col,
|
|
source_idx, is_statement, false,
|
|
is_prologue, is_epilogue, false);
|
|
}
|
|
|
|
prev_addr = addr;
|
|
prev_length = length;
|
|
prev_line = lno;
|
|
prev_source_idx = source_idx;
|
|
}
|
|
|
|
if (entry_count > 0 && ShouldAddLine(match_line, prev_line, prev_length)) {
|
|
// The end is always a terminal entry, so insert it regardless.
|
|
line_table->AppendLineEntryToSequence(
|
|
sequence.get(), prev_addr + prev_length, prev_line, 0,
|
|
prev_source_idx, false, false, false, false, true);
|
|
}
|
|
|
|
line_table->InsertSequence(sequence.release());
|
|
}
|
|
|
|
sc.comp_unit->SetLineTable(line_table.release());
|
|
return true;
|
|
}
|
|
|
|
void SymbolFilePDB::BuildSupportFileIdToSupportFileIndexMap(
|
|
const PDBSymbolCompiland &cu,
|
|
llvm::DenseMap<uint32_t, uint32_t> &index_map) const {
|
|
// This is a hack, but we need to convert the source id into an index into the
|
|
// support
|
|
// files array. We don't want to do path comparisons to avoid basename / full
|
|
// path
|
|
// issues that may or may not even be a problem, so we use the globally unique
|
|
// source
|
|
// file identifiers. Ideally we could use the global identifiers everywhere,
|
|
// but LineEntry
|
|
// currently assumes indices.
|
|
auto source_files = m_session_up->getSourceFilesForCompiland(cu);
|
|
int index = 0;
|
|
|
|
while (auto file = source_files->getNext()) {
|
|
uint32_t source_id = file->getUniqueId();
|
|
index_map[source_id] = index++;
|
|
}
|
|
}
|