1 //===-- SymbolFile.cpp ----------------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8
9 #include "lldb/Symbol/SymbolFile.h"
10
11 #include "lldb/Core/Module.h"
12 #include "lldb/Core/PluginManager.h"
13 #include "lldb/Symbol/CompileUnit.h"
14 #include "lldb/Symbol/ObjectFile.h"
15 #include "lldb/Symbol/SymbolFileOnDemand.h"
16 #include "lldb/Symbol/TypeMap.h"
17 #include "lldb/Symbol/TypeSystem.h"
18 #include "lldb/Symbol/VariableList.h"
19 #include "lldb/Utility/Log.h"
20 #include "lldb/Utility/StreamString.h"
21 #include "lldb/lldb-private.h"
22
23 #include <future>
24
25 using namespace lldb_private;
26 using namespace lldb;
27
28 char SymbolFile::ID;
29 char SymbolFileCommon::ID;
30
PreloadSymbols()31 void SymbolFile::PreloadSymbols() {
32 // No-op for most implementations.
33 }
34
GetModuleMutex() const35 std::recursive_mutex &SymbolFile::GetModuleMutex() const {
36 return GetObjectFile()->GetModule()->GetMutex();
37 }
38
FindPlugin(ObjectFileSP objfile_sp)39 SymbolFile *SymbolFile::FindPlugin(ObjectFileSP objfile_sp) {
40 std::unique_ptr<SymbolFile> best_symfile_up;
41 if (objfile_sp != nullptr) {
42
43 // We need to test the abilities of this section list. So create what it
44 // would be with this new objfile_sp.
45 lldb::ModuleSP module_sp(objfile_sp->GetModule());
46 if (module_sp) {
47 // Default to the main module section list.
48 ObjectFile *module_obj_file = module_sp->GetObjectFile();
49 if (module_obj_file != objfile_sp.get()) {
50 // Make sure the main object file's sections are created
51 module_obj_file->GetSectionList();
52 objfile_sp->CreateSections(*module_sp->GetUnifiedSectionList());
53 }
54 }
55
56 // TODO: Load any plug-ins in the appropriate plug-in search paths and
57 // iterate over all of them to find the best one for the job.
58
59 uint32_t best_symfile_abilities = 0;
60
61 SymbolFileCreateInstance create_callback;
62 for (uint32_t idx = 0;
63 (create_callback = PluginManager::GetSymbolFileCreateCallbackAtIndex(
64 idx)) != nullptr;
65 ++idx) {
66 std::unique_ptr<SymbolFile> curr_symfile_up(create_callback(objfile_sp));
67
68 if (curr_symfile_up) {
69 const uint32_t sym_file_abilities = curr_symfile_up->GetAbilities();
70 if (sym_file_abilities > best_symfile_abilities) {
71 best_symfile_abilities = sym_file_abilities;
72 best_symfile_up.reset(curr_symfile_up.release());
73 // If any symbol file parser has all of the abilities, then we should
74 // just stop looking.
75 if ((kAllAbilities & sym_file_abilities) == kAllAbilities)
76 break;
77 }
78 }
79 }
80 if (best_symfile_up) {
81 // If symbol on-demand is enabled the winning symbol file parser is
82 // wrapped with SymbolFileOnDemand so that hydration of the debug info
83 // can be controlled to improve performance.
84 //
85 // Currently the supported on-demand symbol files include:
86 // executables, shared libraries and debug info files.
87 //
88 // To reduce unnecessary wrapping files with zero debug abilities are
89 // skipped.
90 ObjectFile::Type obj_file_type = objfile_sp->CalculateType();
91 if (ModuleList::GetGlobalModuleListProperties().GetLoadSymbolOnDemand() &&
92 best_symfile_abilities > 0 &&
93 (obj_file_type == ObjectFile::eTypeExecutable ||
94 obj_file_type == ObjectFile::eTypeSharedLibrary ||
95 obj_file_type == ObjectFile::eTypeDebugInfo)) {
96 best_symfile_up =
97 std::make_unique<SymbolFileOnDemand>(std::move(best_symfile_up));
98 }
99 // Let the winning symbol file parser initialize itself more completely
100 // now that it has been chosen
101 best_symfile_up->InitializeObject();
102 }
103 }
104 return best_symfile_up.release();
105 }
106
107 uint32_t
ResolveSymbolContext(const SourceLocationSpec & src_location_spec,lldb::SymbolContextItem resolve_scope,SymbolContextList & sc_list)108 SymbolFile::ResolveSymbolContext(const SourceLocationSpec &src_location_spec,
109 lldb::SymbolContextItem resolve_scope,
110 SymbolContextList &sc_list) {
111 return 0;
112 }
113
FindGlobalVariables(ConstString name,const CompilerDeclContext & parent_decl_ctx,uint32_t max_matches,VariableList & variables)114 void SymbolFile::FindGlobalVariables(ConstString name,
115 const CompilerDeclContext &parent_decl_ctx,
116 uint32_t max_matches,
117 VariableList &variables) {}
118
FindGlobalVariables(const RegularExpression & regex,uint32_t max_matches,VariableList & variables)119 void SymbolFile::FindGlobalVariables(const RegularExpression ®ex,
120 uint32_t max_matches,
121 VariableList &variables) {}
122
FindFunctions(ConstString name,const CompilerDeclContext & parent_decl_ctx,lldb::FunctionNameType name_type_mask,bool include_inlines,SymbolContextList & sc_list)123 void SymbolFile::FindFunctions(ConstString name,
124 const CompilerDeclContext &parent_decl_ctx,
125 lldb::FunctionNameType name_type_mask,
126 bool include_inlines,
127 SymbolContextList &sc_list) {}
128
FindFunctions(const RegularExpression & regex,bool include_inlines,SymbolContextList & sc_list)129 void SymbolFile::FindFunctions(const RegularExpression ®ex,
130 bool include_inlines,
131 SymbolContextList &sc_list) {}
132
GetMangledNamesForFunction(const std::string & scope_qualified_name,std::vector<ConstString> & mangled_names)133 void SymbolFile::GetMangledNamesForFunction(
134 const std::string &scope_qualified_name,
135 std::vector<ConstString> &mangled_names) {}
136
FindTypes(ConstString name,const CompilerDeclContext & parent_decl_ctx,uint32_t max_matches,llvm::DenseSet<lldb_private::SymbolFile * > & searched_symbol_files,TypeMap & types)137 void SymbolFile::FindTypes(
138 ConstString name, const CompilerDeclContext &parent_decl_ctx,
139 uint32_t max_matches,
140 llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files,
141 TypeMap &types) {}
142
FindTypes(llvm::ArrayRef<CompilerContext> pattern,LanguageSet languages,llvm::DenseSet<SymbolFile * > & searched_symbol_files,TypeMap & types)143 void SymbolFile::FindTypes(llvm::ArrayRef<CompilerContext> pattern,
144 LanguageSet languages,
145 llvm::DenseSet<SymbolFile *> &searched_symbol_files,
146 TypeMap &types) {}
147
AssertModuleLock()148 void SymbolFile::AssertModuleLock() {
149 // The code below is too expensive to leave enabled in release builds. It's
150 // enabled in debug builds or when the correct macro is set.
151 #if defined(LLDB_CONFIGURATION_DEBUG)
152 // We assert that we have to module lock by trying to acquire the lock from a
153 // different thread. Note that we must abort if the result is true to
154 // guarantee correctness.
155 assert(std::async(
156 std::launch::async,
157 [this] {
158 return this->GetModuleMutex().try_lock();
159 }).get() == false &&
160 "Module is not locked");
161 #endif
162 }
163
164 SymbolFile::RegisterInfoResolver::~RegisterInfoResolver() = default;
165
GetSymtab()166 Symtab *SymbolFileCommon::GetSymtab() {
167 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
168 if (m_symtab)
169 return m_symtab;
170
171 // Fetch the symtab from the main object file.
172 m_symtab = GetMainObjectFile()->GetSymtab();
173
174 // Then add our symbols to it.
175 if (m_symtab)
176 AddSymbols(*m_symtab);
177
178 return m_symtab;
179 }
180
GetMainObjectFile()181 ObjectFile *SymbolFileCommon::GetMainObjectFile() {
182 return m_objfile_sp->GetModule()->GetObjectFile();
183 }
184
SectionFileAddressesChanged()185 void SymbolFileCommon::SectionFileAddressesChanged() {
186 ObjectFile *module_objfile = GetMainObjectFile();
187 ObjectFile *symfile_objfile = GetObjectFile();
188 if (symfile_objfile != module_objfile)
189 symfile_objfile->SectionFileAddressesChanged();
190 if (m_symtab)
191 m_symtab->SectionFileAddressesChanged();
192 }
193
GetNumCompileUnits()194 uint32_t SymbolFileCommon::GetNumCompileUnits() {
195 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
196 if (!m_compile_units) {
197 // Create an array of compile unit shared pointers -- which will each
198 // remain NULL until someone asks for the actual compile unit information.
199 m_compile_units.emplace(CalculateNumCompileUnits());
200 }
201 return m_compile_units->size();
202 }
203
GetCompileUnitAtIndex(uint32_t idx)204 CompUnitSP SymbolFileCommon::GetCompileUnitAtIndex(uint32_t idx) {
205 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
206 uint32_t num = GetNumCompileUnits();
207 if (idx >= num)
208 return nullptr;
209 lldb::CompUnitSP &cu_sp = (*m_compile_units)[idx];
210 if (!cu_sp)
211 cu_sp = ParseCompileUnitAtIndex(idx);
212 return cu_sp;
213 }
214
SetCompileUnitAtIndex(uint32_t idx,const CompUnitSP & cu_sp)215 void SymbolFileCommon::SetCompileUnitAtIndex(uint32_t idx,
216 const CompUnitSP &cu_sp) {
217 std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
218 const size_t num_compile_units = GetNumCompileUnits();
219 assert(idx < num_compile_units);
220 (void)num_compile_units;
221
222 // Fire off an assertion if this compile unit already exists for now. The
223 // partial parsing should take care of only setting the compile unit
224 // once, so if this assertion fails, we need to make sure that we don't
225 // have a race condition, or have a second parse of the same compile
226 // unit.
227 assert((*m_compile_units)[idx] == nullptr);
228 (*m_compile_units)[idx] = cu_sp;
229 }
230
231 llvm::Expected<TypeSystem &>
GetTypeSystemForLanguage(lldb::LanguageType language)232 SymbolFileCommon::GetTypeSystemForLanguage(lldb::LanguageType language) {
233 auto type_system_or_err =
234 m_objfile_sp->GetModule()->GetTypeSystemForLanguage(language);
235 if (type_system_or_err) {
236 type_system_or_err->SetSymbolFile(this);
237 }
238 return type_system_or_err;
239 }
240
GetDebugInfoSize()241 uint64_t SymbolFileCommon::GetDebugInfoSize() {
242 if (!m_objfile_sp)
243 return 0;
244 ModuleSP module_sp(m_objfile_sp->GetModule());
245 if (!module_sp)
246 return 0;
247 const SectionList *section_list = module_sp->GetSectionList();
248 if (section_list)
249 return section_list->GetDebugInfoSize();
250 return 0;
251 }
252
Dump(Stream & s)253 void SymbolFileCommon::Dump(Stream &s) {
254 s.Format("SymbolFile {0} ({1})\n", GetPluginName(),
255 GetMainObjectFile()->GetFileSpec());
256 s.PutCString("Types:\n");
257 m_type_list.Dump(&s, /*show_context*/ false);
258 s.PutChar('\n');
259
260 s.PutCString("Compile units:\n");
261 if (m_compile_units) {
262 for (const CompUnitSP &cu_sp : *m_compile_units) {
263 // We currently only dump the compile units that have been parsed
264 if (cu_sp)
265 cu_sp->Dump(&s, /*show_context*/ false);
266 }
267 }
268 s.PutChar('\n');
269
270 if (Symtab *symtab = GetSymtab())
271 symtab->Dump(&s, nullptr, eSortOrderNone);
272 }
273