1 //===-- SymbolFileDWARFDebugMap.cpp -----------------------------*- C++ -*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "SymbolFileDWARFDebugMap.h"
10 #include "DWARFDebugAranges.h"
11 
12 #include "lldb/Core/Module.h"
13 #include "lldb/Core/ModuleList.h"
14 #include "lldb/Core/PluginManager.h"
15 #include "lldb/Core/Section.h"
16 #include "lldb/Host/FileSystem.h"
17 #include "lldb/Utility/RangeMap.h"
18 #include "lldb/Utility/RegularExpression.h"
19 #include "lldb/Utility/Timer.h"
20 
21 //#define DEBUG_OSO_DMAP // DO NOT CHECKIN WITH THIS NOT COMMENTED OUT
22 #if defined(DEBUG_OSO_DMAP)
23 #include "lldb/Core/StreamFile.h"
24 #endif
25 
26 #include "lldb/Symbol/CompileUnit.h"
27 #include "lldb/Symbol/LineTable.h"
28 #include "lldb/Symbol/ObjectFile.h"
29 #include "lldb/Symbol/SymbolVendor.h"
30 #include "lldb/Symbol/TypeMap.h"
31 #include "lldb/Symbol/VariableList.h"
32 #include "llvm/Support/ScopedPrinter.h"
33 
34 #include "LogChannelDWARF.h"
35 #include "SymbolFileDWARF.h"
36 
37 #include <memory>
38 
39 using namespace lldb;
40 using namespace lldb_private;
41 
42 // Subclass lldb_private::Module so we can intercept the
43 // "Module::GetObjectFile()" (so we can fixup the object file sections) and
44 // also for "Module::GetSymbolFile()" (so we can fixup the symbol file id.
45 
46 const SymbolFileDWARFDebugMap::FileRangeMap &
47 SymbolFileDWARFDebugMap::CompileUnitInfo::GetFileRangeMap(
48     SymbolFileDWARFDebugMap *exe_symfile) {
49   if (file_range_map_valid)
50     return file_range_map;
51 
52   file_range_map_valid = true;
53 
54   Module *oso_module = exe_symfile->GetModuleByCompUnitInfo(this);
55   if (!oso_module)
56     return file_range_map;
57 
58   ObjectFile *oso_objfile = oso_module->GetObjectFile();
59   if (!oso_objfile)
60     return file_range_map;
61 
62   Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_MAP));
63   LLDB_LOGF(
64       log,
65       "%p: SymbolFileDWARFDebugMap::CompileUnitInfo::GetFileRangeMap ('%s')",
66       static_cast<void *>(this),
67       oso_module->GetSpecificationDescription().c_str());
68 
69   std::vector<SymbolFileDWARFDebugMap::CompileUnitInfo *> cu_infos;
70   if (exe_symfile->GetCompUnitInfosForModule(oso_module, cu_infos)) {
71     for (auto comp_unit_info : cu_infos) {
72       Symtab *exe_symtab = exe_symfile->GetObjectFile()->GetSymtab();
73       ModuleSP oso_module_sp(oso_objfile->GetModule());
74       Symtab *oso_symtab = oso_objfile->GetSymtab();
75 
76       /// const uint32_t fun_resolve_flags = SymbolContext::Module |
77       /// eSymbolContextCompUnit | eSymbolContextFunction;
78       // SectionList *oso_sections = oso_objfile->Sections();
79       // Now we need to make sections that map from zero based object file
80       // addresses to where things ended up in the main executable.
81 
82       assert(comp_unit_info->first_symbol_index != UINT32_MAX);
83       // End index is one past the last valid symbol index
84       const uint32_t oso_end_idx = comp_unit_info->last_symbol_index + 1;
85       for (uint32_t idx = comp_unit_info->first_symbol_index +
86                           2; // Skip the N_SO and N_OSO
87            idx < oso_end_idx; ++idx) {
88         Symbol *exe_symbol = exe_symtab->SymbolAtIndex(idx);
89         if (exe_symbol) {
90           if (!exe_symbol->IsDebug())
91             continue;
92 
93           switch (exe_symbol->GetType()) {
94           default:
95             break;
96 
97           case eSymbolTypeCode: {
98             // For each N_FUN, or function that we run into in the debug map we
99             // make a new section that we add to the sections found in the .o
100             // file. This new section has the file address set to what the
101             // addresses are in the .o file, and the load address is adjusted
102             // to match where it ended up in the final executable! We do this
103             // before we parse any dwarf info so that when it goes get parsed
104             // all section/offset addresses that get registered will resolve
105             // correctly to the new addresses in the main executable.
106 
107             // First we find the original symbol in the .o file's symbol table
108             Symbol *oso_fun_symbol = oso_symtab->FindFirstSymbolWithNameAndType(
109                 exe_symbol->GetMangled().GetName(lldb::eLanguageTypeUnknown,
110                                                  Mangled::ePreferMangled),
111                 eSymbolTypeCode, Symtab::eDebugNo, Symtab::eVisibilityAny);
112             if (oso_fun_symbol) {
113               // Add the inverse OSO file address to debug map entry mapping
114               exe_symfile->AddOSOFileRange(
115                   this, exe_symbol->GetAddressRef().GetFileAddress(),
116                   exe_symbol->GetByteSize(),
117                   oso_fun_symbol->GetAddressRef().GetFileAddress(),
118                   oso_fun_symbol->GetByteSize());
119             }
120           } break;
121 
122           case eSymbolTypeData: {
123             // For each N_GSYM we remap the address for the global by making a
124             // new section that we add to the sections found in the .o file.
125             // This new section has the file address set to what the addresses
126             // are in the .o file, and the load address is adjusted to match
127             // where it ended up in the final executable! We do this before we
128             // parse any dwarf info so that when it goes get parsed all
129             // section/offset addresses that get registered will resolve
130             // correctly to the new addresses in the main executable. We
131             // initially set the section size to be 1 byte, but will need to
132             // fix up these addresses further after all globals have been
133             // parsed to span the gaps, or we can find the global variable
134             // sizes from the DWARF info as we are parsing.
135 
136             // Next we find the non-stab entry that corresponds to the N_GSYM
137             // in the .o file
138             Symbol *oso_gsym_symbol =
139                 oso_symtab->FindFirstSymbolWithNameAndType(
140                     exe_symbol->GetMangled().GetName(lldb::eLanguageTypeUnknown,
141                                                      Mangled::ePreferMangled),
142                     eSymbolTypeData, Symtab::eDebugNo, Symtab::eVisibilityAny);
143             if (exe_symbol && oso_gsym_symbol && exe_symbol->ValueIsAddress() &&
144                 oso_gsym_symbol->ValueIsAddress()) {
145               // Add the inverse OSO file address to debug map entry mapping
146               exe_symfile->AddOSOFileRange(
147                   this, exe_symbol->GetAddressRef().GetFileAddress(),
148                   exe_symbol->GetByteSize(),
149                   oso_gsym_symbol->GetAddressRef().GetFileAddress(),
150                   oso_gsym_symbol->GetByteSize());
151             }
152           } break;
153           }
154         }
155       }
156 
157       exe_symfile->FinalizeOSOFileRanges(this);
158       // We don't need the symbols anymore for the .o files
159       oso_objfile->ClearSymtab();
160     }
161   }
162   return file_range_map;
163 }
164 
165 class DebugMapModule : public Module {
166 public:
167   DebugMapModule(const ModuleSP &exe_module_sp, uint32_t cu_idx,
168                  const FileSpec &file_spec, const ArchSpec &arch,
169                  const ConstString *object_name, off_t object_offset,
170                  const llvm::sys::TimePoint<> object_mod_time)
171       : Module(file_spec, arch, object_name, object_offset, object_mod_time),
172         m_exe_module_wp(exe_module_sp), m_cu_idx(cu_idx) {}
173 
174   ~DebugMapModule() override = default;
175 
176   SymbolFile *
177   GetSymbolFile(bool can_create = true,
178                 lldb_private::Stream *feedback_strm = nullptr) override {
179     // Scope for locker
180     if (m_symfile_up.get() || !can_create)
181       return m_symfile_up ? m_symfile_up->GetSymbolFile() : nullptr;
182 
183     ModuleSP exe_module_sp(m_exe_module_wp.lock());
184     if (exe_module_sp) {
185       // Now get the object file outside of a locking scope
186       ObjectFile *oso_objfile = GetObjectFile();
187       if (oso_objfile) {
188         std::lock_guard<std::recursive_mutex> guard(m_mutex);
189         if (SymbolFile *symfile =
190                 Module::GetSymbolFile(can_create, feedback_strm)) {
191           // Set a pointer to this class to set our OSO DWARF file know that
192           // the DWARF is being used along with a debug map and that it will
193           // have the remapped sections that we do below.
194           SymbolFileDWARF *oso_symfile =
195               SymbolFileDWARFDebugMap::GetSymbolFileAsSymbolFileDWARF(symfile);
196 
197           if (!oso_symfile)
198             return nullptr;
199 
200           ObjectFile *exe_objfile = exe_module_sp->GetObjectFile();
201           SymbolFile *exe_symfile = exe_module_sp->GetSymbolFile();
202 
203           if (exe_objfile && exe_symfile) {
204             oso_symfile->SetDebugMapModule(exe_module_sp);
205             // Set the ID of the symbol file DWARF to the index of the OSO
206             // shifted left by 32 bits to provide a unique prefix for any
207             // UserID's that get created in the symbol file.
208             oso_symfile->SetID(((uint64_t)m_cu_idx + 1ull) << 32ull);
209           }
210           return symfile;
211         }
212       }
213     }
214     return nullptr;
215   }
216 
217 protected:
218   ModuleWP m_exe_module_wp;
219   const uint32_t m_cu_idx;
220 };
221 
222 void SymbolFileDWARFDebugMap::Initialize() {
223   PluginManager::RegisterPlugin(GetPluginNameStatic(),
224                                 GetPluginDescriptionStatic(), CreateInstance);
225 }
226 
227 void SymbolFileDWARFDebugMap::Terminate() {
228   PluginManager::UnregisterPlugin(CreateInstance);
229 }
230 
231 lldb_private::ConstString SymbolFileDWARFDebugMap::GetPluginNameStatic() {
232   static ConstString g_name("dwarf-debugmap");
233   return g_name;
234 }
235 
236 const char *SymbolFileDWARFDebugMap::GetPluginDescriptionStatic() {
237   return "DWARF and DWARF3 debug symbol file reader (debug map).";
238 }
239 
240 SymbolFile *SymbolFileDWARFDebugMap::CreateInstance(ObjectFileSP objfile_sp) {
241   return new SymbolFileDWARFDebugMap(std::move(objfile_sp));
242 }
243 
244 SymbolFileDWARFDebugMap::SymbolFileDWARFDebugMap(ObjectFileSP objfile_sp)
245     : SymbolFile(std::move(objfile_sp)), m_flags(), m_compile_unit_infos(),
246       m_func_indexes(), m_glob_indexes(),
247       m_supports_DW_AT_APPLE_objc_complete_type(eLazyBoolCalculate) {}
248 
249 SymbolFileDWARFDebugMap::~SymbolFileDWARFDebugMap() {}
250 
251 void SymbolFileDWARFDebugMap::InitializeObject() {}
252 
253 void SymbolFileDWARFDebugMap::InitOSO() {
254   if (m_flags.test(kHaveInitializedOSOs))
255     return;
256 
257   m_flags.set(kHaveInitializedOSOs);
258 
259   // If the object file has been stripped, there is no sense in looking further
260   // as all of the debug symbols for the debug map will not be available
261   if (m_objfile_sp->IsStripped())
262     return;
263 
264   // Also make sure the file type is some sort of executable. Core files, debug
265   // info files (dSYM), object files (.o files), and stub libraries all can
266   switch (m_objfile_sp->GetType()) {
267   case ObjectFile::eTypeInvalid:
268   case ObjectFile::eTypeCoreFile:
269   case ObjectFile::eTypeDebugInfo:
270   case ObjectFile::eTypeObjectFile:
271   case ObjectFile::eTypeStubLibrary:
272   case ObjectFile::eTypeUnknown:
273   case ObjectFile::eTypeJIT:
274     return;
275 
276   case ObjectFile::eTypeExecutable:
277   case ObjectFile::eTypeDynamicLinker:
278   case ObjectFile::eTypeSharedLibrary:
279     break;
280   }
281 
282   // In order to get the abilities of this plug-in, we look at the list of
283   // N_OSO entries (object files) from the symbol table and make sure that
284   // these files exist and also contain valid DWARF. If we get any of that then
285   // we return the abilities of the first N_OSO's DWARF.
286 
287   Symtab *symtab = m_objfile_sp->GetSymtab();
288   if (symtab) {
289     Log *log(LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_MAP));
290 
291     std::vector<uint32_t> oso_indexes;
292     // When a mach-o symbol is encoded, the n_type field is encoded in bits
293     // 23:16, and the n_desc field is encoded in bits 15:0.
294     //
295     // To find all N_OSO entries that are part of the DWARF + debug map we find
296     // only object file symbols with the flags value as follows: bits 23:16 ==
297     // 0x66 (N_OSO) bits 15: 0 == 0x0001 (specifies this is a debug map object
298     // file)
299     const uint32_t k_oso_symbol_flags_value = 0x660001u;
300 
301     const uint32_t oso_index_count =
302         symtab->AppendSymbolIndexesWithTypeAndFlagsValue(
303             eSymbolTypeObjectFile, k_oso_symbol_flags_value, oso_indexes);
304 
305     if (oso_index_count > 0) {
306       symtab->AppendSymbolIndexesWithType(eSymbolTypeCode, Symtab::eDebugYes,
307                                           Symtab::eVisibilityAny,
308                                           m_func_indexes);
309       symtab->AppendSymbolIndexesWithType(eSymbolTypeData, Symtab::eDebugYes,
310                                           Symtab::eVisibilityAny,
311                                           m_glob_indexes);
312 
313       symtab->SortSymbolIndexesByValue(m_func_indexes, true);
314       symtab->SortSymbolIndexesByValue(m_glob_indexes, true);
315 
316       for (uint32_t sym_idx : m_func_indexes) {
317         const Symbol *symbol = symtab->SymbolAtIndex(sym_idx);
318         lldb::addr_t file_addr = symbol->GetAddressRef().GetFileAddress();
319         lldb::addr_t byte_size = symbol->GetByteSize();
320         DebugMap::Entry debug_map_entry(
321             file_addr, byte_size, OSOEntry(sym_idx, LLDB_INVALID_ADDRESS));
322         m_debug_map.Append(debug_map_entry);
323       }
324       for (uint32_t sym_idx : m_glob_indexes) {
325         const Symbol *symbol = symtab->SymbolAtIndex(sym_idx);
326         lldb::addr_t file_addr = symbol->GetAddressRef().GetFileAddress();
327         lldb::addr_t byte_size = symbol->GetByteSize();
328         DebugMap::Entry debug_map_entry(
329             file_addr, byte_size, OSOEntry(sym_idx, LLDB_INVALID_ADDRESS));
330         m_debug_map.Append(debug_map_entry);
331       }
332       m_debug_map.Sort();
333 
334       m_compile_unit_infos.resize(oso_index_count);
335 
336       for (uint32_t i = 0; i < oso_index_count; ++i) {
337         const uint32_t so_idx = oso_indexes[i] - 1;
338         const uint32_t oso_idx = oso_indexes[i];
339         const Symbol *so_symbol = symtab->SymbolAtIndex(so_idx);
340         const Symbol *oso_symbol = symtab->SymbolAtIndex(oso_idx);
341         if (so_symbol && oso_symbol &&
342             so_symbol->GetType() == eSymbolTypeSourceFile &&
343             oso_symbol->GetType() == eSymbolTypeObjectFile) {
344           m_compile_unit_infos[i].so_file.SetFile(
345               so_symbol->GetName().AsCString(), FileSpec::Style::native);
346           m_compile_unit_infos[i].oso_path = oso_symbol->GetName();
347           m_compile_unit_infos[i].oso_mod_time =
348               llvm::sys::toTimePoint(oso_symbol->GetIntegerValue(0));
349           uint32_t sibling_idx = so_symbol->GetSiblingIndex();
350           // The sibling index can't be less that or equal to the current index
351           // "i"
352           if (sibling_idx == UINT32_MAX) {
353             m_objfile_sp->GetModule()->ReportError(
354                 "N_SO in symbol with UID %u has invalid sibling in debug map, "
355                 "please file a bug and attach the binary listed in this error",
356                 so_symbol->GetID());
357           } else {
358             const Symbol *last_symbol = symtab->SymbolAtIndex(sibling_idx - 1);
359             m_compile_unit_infos[i].first_symbol_index = so_idx;
360             m_compile_unit_infos[i].last_symbol_index = sibling_idx - 1;
361             m_compile_unit_infos[i].first_symbol_id = so_symbol->GetID();
362             m_compile_unit_infos[i].last_symbol_id = last_symbol->GetID();
363 
364             LLDB_LOGF(log, "Initialized OSO 0x%8.8x: file=%s", i,
365                       oso_symbol->GetName().GetCString());
366           }
367         } else {
368           if (oso_symbol == nullptr)
369             m_objfile_sp->GetModule()->ReportError(
370                 "N_OSO symbol[%u] can't be found, please file a bug and attach "
371                 "the binary listed in this error",
372                 oso_idx);
373           else if (so_symbol == nullptr)
374             m_objfile_sp->GetModule()->ReportError(
375                 "N_SO not found for N_OSO symbol[%u], please file a bug and "
376                 "attach the binary listed in this error",
377                 oso_idx);
378           else if (so_symbol->GetType() != eSymbolTypeSourceFile)
379             m_objfile_sp->GetModule()->ReportError(
380                 "N_SO has incorrect symbol type (%u) for N_OSO symbol[%u], "
381                 "please file a bug and attach the binary listed in this error",
382                 so_symbol->GetType(), oso_idx);
383           else if (oso_symbol->GetType() != eSymbolTypeSourceFile)
384             m_objfile_sp->GetModule()->ReportError(
385                 "N_OSO has incorrect symbol type (%u) for N_OSO symbol[%u], "
386                 "please file a bug and attach the binary listed in this error",
387                 oso_symbol->GetType(), oso_idx);
388         }
389       }
390     }
391   }
392 }
393 
394 Module *SymbolFileDWARFDebugMap::GetModuleByOSOIndex(uint32_t oso_idx) {
395   const uint32_t cu_count = GetNumCompileUnits();
396   if (oso_idx < cu_count)
397     return GetModuleByCompUnitInfo(&m_compile_unit_infos[oso_idx]);
398   return nullptr;
399 }
400 
401 Module *SymbolFileDWARFDebugMap::GetModuleByCompUnitInfo(
402     CompileUnitInfo *comp_unit_info) {
403   if (!comp_unit_info->oso_sp) {
404     auto pos = m_oso_map.find(
405         {comp_unit_info->oso_path, comp_unit_info->oso_mod_time});
406     if (pos != m_oso_map.end()) {
407       comp_unit_info->oso_sp = pos->second;
408     } else {
409       ObjectFile *obj_file = GetObjectFile();
410       comp_unit_info->oso_sp = std::make_shared<OSOInfo>();
411       m_oso_map[{comp_unit_info->oso_path, comp_unit_info->oso_mod_time}] =
412           comp_unit_info->oso_sp;
413       const char *oso_path = comp_unit_info->oso_path.GetCString();
414       FileSpec oso_file(oso_path);
415       ConstString oso_object;
416       if (FileSystem::Instance().Exists(oso_file)) {
417         // The modification time returned by the FS can have a higher precision
418         // than the one from the CU.
419         auto oso_mod_time = std::chrono::time_point_cast<std::chrono::seconds>(
420             FileSystem::Instance().GetModificationTime(oso_file));
421         // A timestamp of 0 means that the linker was in deterministic mode. In
422         // that case, we should skip the check against the filesystem last
423         // modification timestamp, since it will never match.
424         if (comp_unit_info->oso_mod_time != llvm::sys::TimePoint<>() &&
425             oso_mod_time != comp_unit_info->oso_mod_time) {
426           obj_file->GetModule()->ReportError(
427               "debug map object file '%s' has changed (actual time is "
428               "%s, debug map time is %s"
429               ") since this executable was linked, file will be ignored",
430               oso_file.GetPath().c_str(), llvm::to_string(oso_mod_time).c_str(),
431               llvm::to_string(comp_unit_info->oso_mod_time).c_str());
432           return nullptr;
433         }
434 
435       } else {
436         const bool must_exist = true;
437 
438         if (!ObjectFile::SplitArchivePathWithObject(oso_path, oso_file,
439                                                     oso_object, must_exist)) {
440           return nullptr;
441         }
442       }
443       // Always create a new module for .o files. Why? Because we use the debug
444       // map, to add new sections to each .o file and even though a .o file
445       // might not have changed, the sections that get added to the .o file can
446       // change.
447       ArchSpec oso_arch;
448       // Only adopt the architecture from the module (not the vendor or OS)
449       // since .o files for "i386-apple-ios" will historically show up as "i386
450       // -apple-macosx" due to the lack of a LC_VERSION_MIN_MACOSX or
451       // LC_VERSION_MIN_IPHONEOS load command...
452       oso_arch.SetTriple(m_objfile_sp->GetModule()
453                              ->GetArchitecture()
454                              .GetTriple()
455                              .getArchName()
456                              .str()
457                              .c_str());
458       comp_unit_info->oso_sp->module_sp = std::make_shared<DebugMapModule>(
459           obj_file->GetModule(), GetCompUnitInfoIndex(comp_unit_info), oso_file,
460           oso_arch, oso_object ? &oso_object : nullptr, 0,
461           oso_object ? comp_unit_info->oso_mod_time : llvm::sys::TimePoint<>());
462     }
463   }
464   if (comp_unit_info->oso_sp)
465     return comp_unit_info->oso_sp->module_sp.get();
466   return nullptr;
467 }
468 
469 bool SymbolFileDWARFDebugMap::GetFileSpecForSO(uint32_t oso_idx,
470                                                FileSpec &file_spec) {
471   if (oso_idx < m_compile_unit_infos.size()) {
472     if (m_compile_unit_infos[oso_idx].so_file) {
473       file_spec = m_compile_unit_infos[oso_idx].so_file;
474       return true;
475     }
476   }
477   return false;
478 }
479 
480 ObjectFile *SymbolFileDWARFDebugMap::GetObjectFileByOSOIndex(uint32_t oso_idx) {
481   Module *oso_module = GetModuleByOSOIndex(oso_idx);
482   if (oso_module)
483     return oso_module->GetObjectFile();
484   return nullptr;
485 }
486 
487 SymbolFileDWARF *
488 SymbolFileDWARFDebugMap::GetSymbolFile(const SymbolContext &sc) {
489   return GetSymbolFile(*sc.comp_unit);
490 }
491 
492 SymbolFileDWARF *
493 SymbolFileDWARFDebugMap::GetSymbolFile(const CompileUnit &comp_unit) {
494   CompileUnitInfo *comp_unit_info = GetCompUnitInfo(comp_unit);
495   if (comp_unit_info)
496     return GetSymbolFileByCompUnitInfo(comp_unit_info);
497   return nullptr;
498 }
499 
500 ObjectFile *SymbolFileDWARFDebugMap::GetObjectFileByCompUnitInfo(
501     CompileUnitInfo *comp_unit_info) {
502   Module *oso_module = GetModuleByCompUnitInfo(comp_unit_info);
503   if (oso_module)
504     return oso_module->GetObjectFile();
505   return nullptr;
506 }
507 
508 uint32_t SymbolFileDWARFDebugMap::GetCompUnitInfoIndex(
509     const CompileUnitInfo *comp_unit_info) {
510   if (!m_compile_unit_infos.empty()) {
511     const CompileUnitInfo *first_comp_unit_info = &m_compile_unit_infos.front();
512     const CompileUnitInfo *last_comp_unit_info = &m_compile_unit_infos.back();
513     if (first_comp_unit_info <= comp_unit_info &&
514         comp_unit_info <= last_comp_unit_info)
515       return comp_unit_info - first_comp_unit_info;
516   }
517   return UINT32_MAX;
518 }
519 
520 SymbolFileDWARF *
521 SymbolFileDWARFDebugMap::GetSymbolFileByOSOIndex(uint32_t oso_idx) {
522   unsigned size = m_compile_unit_infos.size();
523   if (oso_idx < size)
524     return GetSymbolFileByCompUnitInfo(&m_compile_unit_infos[oso_idx]);
525   return nullptr;
526 }
527 
528 SymbolFileDWARF *
529 SymbolFileDWARFDebugMap::GetSymbolFileAsSymbolFileDWARF(SymbolFile *sym_file) {
530   if (sym_file &&
531       sym_file->GetPluginName() == SymbolFileDWARF::GetPluginNameStatic())
532     return (SymbolFileDWARF *)sym_file;
533   return nullptr;
534 }
535 
536 SymbolFileDWARF *SymbolFileDWARFDebugMap::GetSymbolFileByCompUnitInfo(
537     CompileUnitInfo *comp_unit_info) {
538   if (Module *oso_module = GetModuleByCompUnitInfo(comp_unit_info))
539     return GetSymbolFileAsSymbolFileDWARF(oso_module->GetSymbolFile());
540   return nullptr;
541 }
542 
543 uint32_t SymbolFileDWARFDebugMap::CalculateAbilities() {
544   // In order to get the abilities of this plug-in, we look at the list of
545   // N_OSO entries (object files) from the symbol table and make sure that
546   // these files exist and also contain valid DWARF. If we get any of that then
547   // we return the abilities of the first N_OSO's DWARF.
548 
549   const uint32_t oso_index_count = GetNumCompileUnits();
550   if (oso_index_count > 0) {
551     InitOSO();
552     if (!m_compile_unit_infos.empty()) {
553       return SymbolFile::CompileUnits | SymbolFile::Functions |
554              SymbolFile::Blocks | SymbolFile::GlobalVariables |
555              SymbolFile::LocalVariables | SymbolFile::VariableTypes |
556              SymbolFile::LineTables;
557     }
558   }
559   return 0;
560 }
561 
562 uint32_t SymbolFileDWARFDebugMap::CalculateNumCompileUnits() {
563   InitOSO();
564   return m_compile_unit_infos.size();
565 }
566 
567 CompUnitSP SymbolFileDWARFDebugMap::ParseCompileUnitAtIndex(uint32_t cu_idx) {
568   CompUnitSP comp_unit_sp;
569   const uint32_t cu_count = GetNumCompileUnits();
570 
571   if (cu_idx < cu_count) {
572     Module *oso_module = GetModuleByCompUnitInfo(&m_compile_unit_infos[cu_idx]);
573     if (oso_module) {
574       FileSpec so_file_spec;
575       if (GetFileSpecForSO(cu_idx, so_file_spec)) {
576         // User zero as the ID to match the compile unit at offset zero in each
577         // .o file since each .o file can only have one compile unit for now.
578         lldb::user_id_t cu_id = 0;
579         m_compile_unit_infos[cu_idx].compile_unit_sp =
580             std::make_shared<CompileUnit>(
581                 m_objfile_sp->GetModule(), nullptr, so_file_spec, cu_id,
582                 eLanguageTypeUnknown, eLazyBoolCalculate);
583 
584         if (m_compile_unit_infos[cu_idx].compile_unit_sp) {
585           SetCompileUnitAtIndex(cu_idx,
586                                 m_compile_unit_infos[cu_idx].compile_unit_sp);
587         }
588       }
589     }
590     comp_unit_sp = m_compile_unit_infos[cu_idx].compile_unit_sp;
591   }
592 
593   return comp_unit_sp;
594 }
595 
596 SymbolFileDWARFDebugMap::CompileUnitInfo *
597 SymbolFileDWARFDebugMap::GetCompUnitInfo(const SymbolContext &sc) {
598   return GetCompUnitInfo(*sc.comp_unit);
599 }
600 
601 SymbolFileDWARFDebugMap::CompileUnitInfo *
602 SymbolFileDWARFDebugMap::GetCompUnitInfo(const CompileUnit &comp_unit) {
603   const uint32_t cu_count = GetNumCompileUnits();
604   for (uint32_t i = 0; i < cu_count; ++i) {
605     if (comp_unit == m_compile_unit_infos[i].compile_unit_sp.get())
606       return &m_compile_unit_infos[i];
607   }
608   return nullptr;
609 }
610 
611 size_t SymbolFileDWARFDebugMap::GetCompUnitInfosForModule(
612     const lldb_private::Module *module,
613     std::vector<CompileUnitInfo *> &cu_infos) {
614   const uint32_t cu_count = GetNumCompileUnits();
615   for (uint32_t i = 0; i < cu_count; ++i) {
616     if (module == GetModuleByCompUnitInfo(&m_compile_unit_infos[i]))
617       cu_infos.push_back(&m_compile_unit_infos[i]);
618   }
619   return cu_infos.size();
620 }
621 
622 lldb::LanguageType
623 SymbolFileDWARFDebugMap::ParseLanguage(CompileUnit &comp_unit) {
624   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
625   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
626   if (oso_dwarf)
627     return oso_dwarf->ParseLanguage(comp_unit);
628   return eLanguageTypeUnknown;
629 }
630 
631 size_t SymbolFileDWARFDebugMap::ParseFunctions(CompileUnit &comp_unit) {
632   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
633   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
634   if (oso_dwarf)
635     return oso_dwarf->ParseFunctions(comp_unit);
636   return 0;
637 }
638 
639 bool SymbolFileDWARFDebugMap::ParseLineTable(CompileUnit &comp_unit) {
640   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
641   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
642   if (oso_dwarf)
643     return oso_dwarf->ParseLineTable(comp_unit);
644   return false;
645 }
646 
647 bool SymbolFileDWARFDebugMap::ParseDebugMacros(CompileUnit &comp_unit) {
648   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
649   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
650   if (oso_dwarf)
651     return oso_dwarf->ParseDebugMacros(comp_unit);
652   return false;
653 }
654 
655 bool SymbolFileDWARFDebugMap::ParseSupportFiles(CompileUnit &comp_unit,
656                                                 FileSpecList &support_files) {
657   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
658   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
659   if (oso_dwarf)
660     return oso_dwarf->ParseSupportFiles(comp_unit, support_files);
661   return false;
662 }
663 
664 bool SymbolFileDWARFDebugMap::ParseIsOptimized(CompileUnit &comp_unit) {
665   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
666   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
667   if (oso_dwarf)
668     return oso_dwarf->ParseIsOptimized(comp_unit);
669   return false;
670 }
671 
672 bool SymbolFileDWARFDebugMap::ParseImportedModules(
673     const SymbolContext &sc, std::vector<SourceModule> &imported_modules) {
674   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
675   SymbolFileDWARF *oso_dwarf = GetSymbolFile(sc);
676   if (oso_dwarf)
677     return oso_dwarf->ParseImportedModules(sc, imported_modules);
678   return false;
679 }
680 
681 size_t SymbolFileDWARFDebugMap::ParseBlocksRecursive(Function &func) {
682   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
683   CompileUnit *comp_unit = func.GetCompileUnit();
684   if (!comp_unit)
685     return 0;
686 
687   SymbolFileDWARF *oso_dwarf = GetSymbolFile(*comp_unit);
688   if (oso_dwarf)
689     return oso_dwarf->ParseBlocksRecursive(func);
690   return 0;
691 }
692 
693 size_t SymbolFileDWARFDebugMap::ParseTypes(CompileUnit &comp_unit) {
694   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
695   SymbolFileDWARF *oso_dwarf = GetSymbolFile(comp_unit);
696   if (oso_dwarf)
697     return oso_dwarf->ParseTypes(comp_unit);
698   return 0;
699 }
700 
701 size_t
702 SymbolFileDWARFDebugMap::ParseVariablesForContext(const SymbolContext &sc) {
703   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
704   SymbolFileDWARF *oso_dwarf = GetSymbolFile(sc);
705   if (oso_dwarf)
706     return oso_dwarf->ParseVariablesForContext(sc);
707   return 0;
708 }
709 
710 Type *SymbolFileDWARFDebugMap::ResolveTypeUID(lldb::user_id_t type_uid) {
711   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
712   const uint64_t oso_idx = GetOSOIndexFromUserID(type_uid);
713   SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(oso_idx);
714   if (oso_dwarf)
715     return oso_dwarf->ResolveTypeUID(type_uid);
716   return nullptr;
717 }
718 
719 llvm::Optional<SymbolFile::ArrayInfo>
720 SymbolFileDWARFDebugMap::GetDynamicArrayInfoForUID(
721     lldb::user_id_t type_uid, const lldb_private::ExecutionContext *exe_ctx) {
722   const uint64_t oso_idx = GetOSOIndexFromUserID(type_uid);
723   SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(oso_idx);
724   if (oso_dwarf)
725     return oso_dwarf->GetDynamicArrayInfoForUID(type_uid, exe_ctx);
726   return llvm::None;
727 }
728 
729 bool SymbolFileDWARFDebugMap::CompleteType(CompilerType &compiler_type) {
730   bool success = false;
731   if (compiler_type) {
732     ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
733       if (oso_dwarf->HasForwardDeclForClangType(compiler_type)) {
734         oso_dwarf->CompleteType(compiler_type);
735         success = true;
736         return true;
737       }
738       return false;
739     });
740   }
741   return success;
742 }
743 
744 uint32_t
745 SymbolFileDWARFDebugMap::ResolveSymbolContext(const Address &exe_so_addr,
746                                               SymbolContextItem resolve_scope,
747                                               SymbolContext &sc) {
748   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
749   uint32_t resolved_flags = 0;
750   Symtab *symtab = m_objfile_sp->GetSymtab();
751   if (symtab) {
752     const addr_t exe_file_addr = exe_so_addr.GetFileAddress();
753 
754     const DebugMap::Entry *debug_map_entry =
755         m_debug_map.FindEntryThatContains(exe_file_addr);
756     if (debug_map_entry) {
757 
758       sc.symbol =
759           symtab->SymbolAtIndex(debug_map_entry->data.GetExeSymbolIndex());
760 
761       if (sc.symbol != nullptr) {
762         resolved_flags |= eSymbolContextSymbol;
763 
764         uint32_t oso_idx = 0;
765         CompileUnitInfo *comp_unit_info =
766             GetCompileUnitInfoForSymbolWithID(sc.symbol->GetID(), &oso_idx);
767         if (comp_unit_info) {
768           comp_unit_info->GetFileRangeMap(this);
769           Module *oso_module = GetModuleByCompUnitInfo(comp_unit_info);
770           if (oso_module) {
771             lldb::addr_t oso_file_addr =
772                 exe_file_addr - debug_map_entry->GetRangeBase() +
773                 debug_map_entry->data.GetOSOFileAddress();
774             Address oso_so_addr;
775             if (oso_module->ResolveFileAddress(oso_file_addr, oso_so_addr)) {
776               resolved_flags |=
777                   oso_module->GetSymbolFile()->ResolveSymbolContext(
778                       oso_so_addr, resolve_scope, sc);
779             }
780           }
781         }
782       }
783     }
784   }
785   return resolved_flags;
786 }
787 
788 uint32_t SymbolFileDWARFDebugMap::ResolveSymbolContext(
789     const FileSpec &file_spec, uint32_t line, bool check_inlines,
790     SymbolContextItem resolve_scope, SymbolContextList &sc_list) {
791   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
792   const uint32_t initial = sc_list.GetSize();
793   const uint32_t cu_count = GetNumCompileUnits();
794 
795   for (uint32_t i = 0; i < cu_count; ++i) {
796     // If we are checking for inlines, then we need to look through all compile
797     // units no matter if "file_spec" matches.
798     bool resolve = check_inlines;
799 
800     if (!resolve) {
801       FileSpec so_file_spec;
802       if (GetFileSpecForSO(i, so_file_spec)) {
803         // Match the full path if the incoming file_spec has a directory (not
804         // just a basename)
805         const bool full_match = (bool)file_spec.GetDirectory();
806         resolve = FileSpec::Equal(file_spec, so_file_spec, full_match);
807       }
808     }
809     if (resolve) {
810       SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(i);
811       if (oso_dwarf)
812         oso_dwarf->ResolveSymbolContext(file_spec, line, check_inlines,
813                                         resolve_scope, sc_list);
814     }
815   }
816   return sc_list.GetSize() - initial;
817 }
818 
819 uint32_t SymbolFileDWARFDebugMap::PrivateFindGlobalVariables(
820     ConstString name, const CompilerDeclContext *parent_decl_ctx,
821     const std::vector<uint32_t>
822         &indexes, // Indexes into the symbol table that match "name"
823     uint32_t max_matches, VariableList &variables) {
824   const uint32_t original_size = variables.GetSize();
825   const size_t match_count = indexes.size();
826   for (size_t i = 0; i < match_count; ++i) {
827     uint32_t oso_idx;
828     CompileUnitInfo *comp_unit_info =
829         GetCompileUnitInfoForSymbolWithIndex(indexes[i], &oso_idx);
830     if (comp_unit_info) {
831       SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(oso_idx);
832       if (oso_dwarf) {
833         if (oso_dwarf->FindGlobalVariables(name, parent_decl_ctx, max_matches,
834                                            variables))
835           if (variables.GetSize() > max_matches)
836             break;
837       }
838     }
839   }
840   return variables.GetSize() - original_size;
841 }
842 
843 uint32_t SymbolFileDWARFDebugMap::FindGlobalVariables(
844     ConstString name, const CompilerDeclContext *parent_decl_ctx,
845     uint32_t max_matches, VariableList &variables) {
846   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
847 
848   // Remember how many variables are in the list before we search.
849   const uint32_t original_size = variables.GetSize();
850 
851   uint32_t total_matches = 0;
852 
853   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
854     const uint32_t oso_matches = oso_dwarf->FindGlobalVariables(
855         name, parent_decl_ctx, max_matches, variables);
856     if (oso_matches > 0) {
857       total_matches += oso_matches;
858 
859       // Are we getting all matches?
860       if (max_matches == UINT32_MAX)
861         return false; // Yep, continue getting everything
862 
863       // If we have found enough matches, lets get out
864       if (max_matches >= total_matches)
865         return true;
866 
867       // Update the max matches for any subsequent calls to find globals in any
868       // other object files with DWARF
869       max_matches -= oso_matches;
870     }
871 
872     return false;
873   });
874 
875   // Return the number of variable that were appended to the list
876   return variables.GetSize() - original_size;
877 }
878 
879 uint32_t
880 SymbolFileDWARFDebugMap::FindGlobalVariables(const RegularExpression &regex,
881                                              uint32_t max_matches,
882                                              VariableList &variables) {
883   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
884   // Remember how many variables are in the list before we search.
885   const uint32_t original_size = variables.GetSize();
886 
887   uint32_t total_matches = 0;
888   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
889     const uint32_t oso_matches =
890         oso_dwarf->FindGlobalVariables(regex, max_matches, variables);
891     if (oso_matches > 0) {
892       total_matches += oso_matches;
893 
894       // Are we getting all matches?
895       if (max_matches == UINT32_MAX)
896         return false; // Yep, continue getting everything
897 
898       // If we have found enough matches, lets get out
899       if (max_matches >= total_matches)
900         return true;
901 
902       // Update the max matches for any subsequent calls to find globals in any
903       // other object files with DWARF
904       max_matches -= oso_matches;
905     }
906 
907     return false;
908   });
909 
910   // Return the number of variable that were appended to the list
911   return variables.GetSize() - original_size;
912 }
913 
914 int SymbolFileDWARFDebugMap::SymbolContainsSymbolWithIndex(
915     uint32_t *symbol_idx_ptr, const CompileUnitInfo *comp_unit_info) {
916   const uint32_t symbol_idx = *symbol_idx_ptr;
917 
918   if (symbol_idx < comp_unit_info->first_symbol_index)
919     return -1;
920 
921   if (symbol_idx <= comp_unit_info->last_symbol_index)
922     return 0;
923 
924   return 1;
925 }
926 
927 int SymbolFileDWARFDebugMap::SymbolContainsSymbolWithID(
928     user_id_t *symbol_idx_ptr, const CompileUnitInfo *comp_unit_info) {
929   const user_id_t symbol_id = *symbol_idx_ptr;
930 
931   if (symbol_id < comp_unit_info->first_symbol_id)
932     return -1;
933 
934   if (symbol_id <= comp_unit_info->last_symbol_id)
935     return 0;
936 
937   return 1;
938 }
939 
940 SymbolFileDWARFDebugMap::CompileUnitInfo *
941 SymbolFileDWARFDebugMap::GetCompileUnitInfoForSymbolWithIndex(
942     uint32_t symbol_idx, uint32_t *oso_idx_ptr) {
943   const uint32_t oso_index_count = m_compile_unit_infos.size();
944   CompileUnitInfo *comp_unit_info = nullptr;
945   if (oso_index_count) {
946     comp_unit_info = (CompileUnitInfo *)bsearch(
947         &symbol_idx, &m_compile_unit_infos[0], m_compile_unit_infos.size(),
948         sizeof(CompileUnitInfo),
949         (ComparisonFunction)SymbolContainsSymbolWithIndex);
950   }
951 
952   if (oso_idx_ptr) {
953     if (comp_unit_info != nullptr)
954       *oso_idx_ptr = comp_unit_info - &m_compile_unit_infos[0];
955     else
956       *oso_idx_ptr = UINT32_MAX;
957   }
958   return comp_unit_info;
959 }
960 
961 SymbolFileDWARFDebugMap::CompileUnitInfo *
962 SymbolFileDWARFDebugMap::GetCompileUnitInfoForSymbolWithID(
963     user_id_t symbol_id, uint32_t *oso_idx_ptr) {
964   const uint32_t oso_index_count = m_compile_unit_infos.size();
965   CompileUnitInfo *comp_unit_info = nullptr;
966   if (oso_index_count) {
967     comp_unit_info = (CompileUnitInfo *)::bsearch(
968         &symbol_id, &m_compile_unit_infos[0], m_compile_unit_infos.size(),
969         sizeof(CompileUnitInfo),
970         (ComparisonFunction)SymbolContainsSymbolWithID);
971   }
972 
973   if (oso_idx_ptr) {
974     if (comp_unit_info != nullptr)
975       *oso_idx_ptr = comp_unit_info - &m_compile_unit_infos[0];
976     else
977       *oso_idx_ptr = UINT32_MAX;
978   }
979   return comp_unit_info;
980 }
981 
982 static void RemoveFunctionsWithModuleNotEqualTo(const ModuleSP &module_sp,
983                                                 SymbolContextList &sc_list,
984                                                 uint32_t start_idx) {
985   // We found functions in .o files. Not all functions in the .o files will
986   // have made it into the final output file. The ones that did make it into
987   // the final output file will have a section whose module matches the module
988   // from the ObjectFile for this SymbolFile. When the modules don't match,
989   // then we have something that was in a .o file, but doesn't map to anything
990   // in the final executable.
991   uint32_t i = start_idx;
992   while (i < sc_list.GetSize()) {
993     SymbolContext sc;
994     sc_list.GetContextAtIndex(i, sc);
995     if (sc.function) {
996       const SectionSP section_sp(
997           sc.function->GetAddressRange().GetBaseAddress().GetSection());
998       if (section_sp->GetModule() != module_sp) {
999         sc_list.RemoveContextAtIndex(i);
1000         continue;
1001       }
1002     }
1003     ++i;
1004   }
1005 }
1006 
1007 uint32_t SymbolFileDWARFDebugMap::FindFunctions(
1008     ConstString name, const CompilerDeclContext *parent_decl_ctx,
1009     FunctionNameType name_type_mask, bool include_inlines, bool append,
1010     SymbolContextList &sc_list) {
1011   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1012   static Timer::Category func_cat(LLVM_PRETTY_FUNCTION);
1013   Timer scoped_timer(func_cat,
1014                      "SymbolFileDWARFDebugMap::FindFunctions (name = %s)",
1015                      name.GetCString());
1016 
1017   uint32_t initial_size = 0;
1018   if (append)
1019     initial_size = sc_list.GetSize();
1020   else
1021     sc_list.Clear();
1022 
1023   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1024     uint32_t sc_idx = sc_list.GetSize();
1025     if (oso_dwarf->FindFunctions(name, parent_decl_ctx, name_type_mask,
1026                                  include_inlines, true, sc_list)) {
1027       RemoveFunctionsWithModuleNotEqualTo(m_objfile_sp->GetModule(), sc_list,
1028                                           sc_idx);
1029     }
1030     return false;
1031   });
1032 
1033   return sc_list.GetSize() - initial_size;
1034 }
1035 
1036 uint32_t SymbolFileDWARFDebugMap::FindFunctions(const RegularExpression &regex,
1037                                                 bool include_inlines,
1038                                                 bool append,
1039                                                 SymbolContextList &sc_list) {
1040   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1041   static Timer::Category func_cat(LLVM_PRETTY_FUNCTION);
1042   Timer scoped_timer(func_cat,
1043                      "SymbolFileDWARFDebugMap::FindFunctions (regex = '%s')",
1044                      regex.GetText().str().c_str());
1045 
1046   uint32_t initial_size = 0;
1047   if (append)
1048     initial_size = sc_list.GetSize();
1049   else
1050     sc_list.Clear();
1051 
1052   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1053     uint32_t sc_idx = sc_list.GetSize();
1054 
1055     if (oso_dwarf->FindFunctions(regex, include_inlines, true, sc_list)) {
1056       RemoveFunctionsWithModuleNotEqualTo(m_objfile_sp->GetModule(), sc_list,
1057                                           sc_idx);
1058     }
1059     return false;
1060   });
1061 
1062   return sc_list.GetSize() - initial_size;
1063 }
1064 
1065 size_t SymbolFileDWARFDebugMap::GetTypes(SymbolContextScope *sc_scope,
1066                                          lldb::TypeClass type_mask,
1067                                          TypeList &type_list) {
1068   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1069   static Timer::Category func_cat(LLVM_PRETTY_FUNCTION);
1070   Timer scoped_timer(func_cat,
1071                      "SymbolFileDWARFDebugMap::GetTypes (type_mask = 0x%8.8x)",
1072                      type_mask);
1073 
1074   uint32_t initial_size = type_list.GetSize();
1075   SymbolFileDWARF *oso_dwarf = nullptr;
1076   if (sc_scope) {
1077     SymbolContext sc;
1078     sc_scope->CalculateSymbolContext(&sc);
1079 
1080     CompileUnitInfo *cu_info = GetCompUnitInfo(sc);
1081     if (cu_info) {
1082       oso_dwarf = GetSymbolFileByCompUnitInfo(cu_info);
1083       if (oso_dwarf)
1084         oso_dwarf->GetTypes(sc_scope, type_mask, type_list);
1085     }
1086   } else {
1087     ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1088       oso_dwarf->GetTypes(sc_scope, type_mask, type_list);
1089       return false;
1090     });
1091   }
1092   return type_list.GetSize() - initial_size;
1093 }
1094 
1095 std::vector<lldb_private::CallEdge>
1096 SymbolFileDWARFDebugMap::ParseCallEdgesInFunction(UserID func_id) {
1097   uint32_t oso_idx = GetOSOIndexFromUserID(func_id.GetID());
1098   SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(oso_idx);
1099   if (oso_dwarf)
1100     return oso_dwarf->ParseCallEdgesInFunction(func_id);
1101   return {};
1102 }
1103 
1104 TypeSP SymbolFileDWARFDebugMap::FindDefinitionTypeForDWARFDeclContext(
1105     const DWARFDeclContext &die_decl_ctx) {
1106   TypeSP type_sp;
1107   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1108     type_sp = oso_dwarf->FindDefinitionTypeForDWARFDeclContext(die_decl_ctx);
1109     return ((bool)type_sp);
1110   });
1111   return type_sp;
1112 }
1113 
1114 bool SymbolFileDWARFDebugMap::Supports_DW_AT_APPLE_objc_complete_type(
1115     SymbolFileDWARF *skip_dwarf_oso) {
1116   if (m_supports_DW_AT_APPLE_objc_complete_type == eLazyBoolCalculate) {
1117     m_supports_DW_AT_APPLE_objc_complete_type = eLazyBoolNo;
1118     ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1119       if (skip_dwarf_oso != oso_dwarf &&
1120           oso_dwarf->Supports_DW_AT_APPLE_objc_complete_type(nullptr)) {
1121         m_supports_DW_AT_APPLE_objc_complete_type = eLazyBoolYes;
1122         return true;
1123       }
1124       return false;
1125     });
1126   }
1127   return m_supports_DW_AT_APPLE_objc_complete_type == eLazyBoolYes;
1128 }
1129 
1130 TypeSP SymbolFileDWARFDebugMap::FindCompleteObjCDefinitionTypeForDIE(
1131     const DWARFDIE &die, ConstString type_name,
1132     bool must_be_implementation) {
1133   // If we have a debug map, we will have an Objective-C symbol whose name is
1134   // the type name and whose type is eSymbolTypeObjCClass. If we can find that
1135   // symbol and find its containing parent, we can locate the .o file that will
1136   // contain the implementation definition since it will be scoped inside the
1137   // N_SO and we can then locate the SymbolFileDWARF that corresponds to that
1138   // N_SO.
1139   SymbolFileDWARF *oso_dwarf = nullptr;
1140   TypeSP type_sp;
1141   ObjectFile *module_objfile = m_objfile_sp->GetModule()->GetObjectFile();
1142   if (module_objfile) {
1143     Symtab *symtab = module_objfile->GetSymtab();
1144     if (symtab) {
1145       Symbol *objc_class_symbol = symtab->FindFirstSymbolWithNameAndType(
1146           type_name, eSymbolTypeObjCClass, Symtab::eDebugAny,
1147           Symtab::eVisibilityAny);
1148       if (objc_class_symbol) {
1149         // Get the N_SO symbol that contains the objective C class symbol as
1150         // this should be the .o file that contains the real definition...
1151         const Symbol *source_file_symbol = symtab->GetParent(objc_class_symbol);
1152 
1153         if (source_file_symbol &&
1154             source_file_symbol->GetType() == eSymbolTypeSourceFile) {
1155           const uint32_t source_file_symbol_idx =
1156               symtab->GetIndexForSymbol(source_file_symbol);
1157           if (source_file_symbol_idx != UINT32_MAX) {
1158             CompileUnitInfo *compile_unit_info =
1159                 GetCompileUnitInfoForSymbolWithIndex(source_file_symbol_idx,
1160                                                      nullptr);
1161             if (compile_unit_info) {
1162               oso_dwarf = GetSymbolFileByCompUnitInfo(compile_unit_info);
1163               if (oso_dwarf) {
1164                 TypeSP type_sp(oso_dwarf->FindCompleteObjCDefinitionTypeForDIE(
1165                     die, type_name, must_be_implementation));
1166                 if (type_sp) {
1167                   return type_sp;
1168                 }
1169               }
1170             }
1171           }
1172         }
1173       }
1174     }
1175   }
1176 
1177   // Only search all .o files for the definition if we don't need the
1178   // implementation because otherwise, with a valid debug map we should have
1179   // the ObjC class symbol and the code above should have found it.
1180   if (!must_be_implementation) {
1181     TypeSP type_sp;
1182 
1183     ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1184       type_sp = oso_dwarf->FindCompleteObjCDefinitionTypeForDIE(
1185           die, type_name, must_be_implementation);
1186       return (bool)type_sp;
1187     });
1188 
1189     return type_sp;
1190   }
1191   return TypeSP();
1192 }
1193 
1194 uint32_t SymbolFileDWARFDebugMap::FindTypes(
1195     ConstString name, const CompilerDeclContext *parent_decl_ctx,
1196     bool append, uint32_t max_matches,
1197     llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files,
1198     TypeMap &types) {
1199   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1200   if (!append)
1201     types.Clear();
1202 
1203   const uint32_t initial_types_size = types.GetSize();
1204 
1205   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1206     oso_dwarf->FindTypes(name, parent_decl_ctx, append, max_matches,
1207                          searched_symbol_files, types);
1208     return types.GetSize() >= max_matches;
1209   });
1210 
1211   return types.GetSize() - initial_types_size;
1212 }
1213 
1214 //
1215 // uint32_t
1216 // SymbolFileDWARFDebugMap::FindTypes (const SymbolContext& sc, const
1217 // RegularExpression& regex, bool append, uint32_t max_matches, Type::Encoding
1218 // encoding, lldb::user_id_t udt_uid, TypeList& types)
1219 //{
1220 //  SymbolFileDWARF *oso_dwarf = GetSymbolFile (sc);
1221 //  if (oso_dwarf)
1222 //      return oso_dwarf->FindTypes (sc, regex, append, max_matches, encoding,
1223 //      udt_uid, types);
1224 //  return 0;
1225 //}
1226 
1227 CompilerDeclContext SymbolFileDWARFDebugMap::FindNamespace(
1228     lldb_private::ConstString name,
1229     const CompilerDeclContext *parent_decl_ctx) {
1230   std::lock_guard<std::recursive_mutex> guard(GetModuleMutex());
1231   CompilerDeclContext matching_namespace;
1232 
1233   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1234     matching_namespace = oso_dwarf->FindNamespace(name, parent_decl_ctx);
1235 
1236     return (bool)matching_namespace;
1237   });
1238 
1239   return matching_namespace;
1240 }
1241 
1242 void SymbolFileDWARFDebugMap::DumpClangAST(Stream &s) {
1243   ForEachSymbolFile([&s](SymbolFileDWARF *oso_dwarf) -> bool {
1244     oso_dwarf->DumpClangAST(s);
1245     return true;
1246   });
1247 }
1248 
1249 // PluginInterface protocol
1250 lldb_private::ConstString SymbolFileDWARFDebugMap::GetPluginName() {
1251   return GetPluginNameStatic();
1252 }
1253 
1254 uint32_t SymbolFileDWARFDebugMap::GetPluginVersion() { return 1; }
1255 
1256 lldb::CompUnitSP
1257 SymbolFileDWARFDebugMap::GetCompileUnit(SymbolFileDWARF *oso_dwarf) {
1258   if (oso_dwarf) {
1259     const uint32_t cu_count = GetNumCompileUnits();
1260     for (uint32_t cu_idx = 0; cu_idx < cu_count; ++cu_idx) {
1261       SymbolFileDWARF *oso_symfile =
1262           GetSymbolFileByCompUnitInfo(&m_compile_unit_infos[cu_idx]);
1263       if (oso_symfile == oso_dwarf) {
1264         if (!m_compile_unit_infos[cu_idx].compile_unit_sp)
1265           m_compile_unit_infos[cu_idx].compile_unit_sp =
1266               ParseCompileUnitAtIndex(cu_idx);
1267 
1268         return m_compile_unit_infos[cu_idx].compile_unit_sp;
1269       }
1270     }
1271   }
1272   llvm_unreachable("this shouldn't happen");
1273 }
1274 
1275 SymbolFileDWARFDebugMap::CompileUnitInfo *
1276 SymbolFileDWARFDebugMap::GetCompileUnitInfo(SymbolFileDWARF *oso_dwarf) {
1277   if (oso_dwarf) {
1278     const uint32_t cu_count = GetNumCompileUnits();
1279     for (uint32_t cu_idx = 0; cu_idx < cu_count; ++cu_idx) {
1280       SymbolFileDWARF *oso_symfile =
1281           GetSymbolFileByCompUnitInfo(&m_compile_unit_infos[cu_idx]);
1282       if (oso_symfile == oso_dwarf) {
1283         return &m_compile_unit_infos[cu_idx];
1284       }
1285     }
1286   }
1287   return nullptr;
1288 }
1289 
1290 void SymbolFileDWARFDebugMap::SetCompileUnit(SymbolFileDWARF *oso_dwarf,
1291                                              const CompUnitSP &cu_sp) {
1292   if (oso_dwarf) {
1293     const uint32_t cu_count = GetNumCompileUnits();
1294     for (uint32_t cu_idx = 0; cu_idx < cu_count; ++cu_idx) {
1295       SymbolFileDWARF *oso_symfile =
1296           GetSymbolFileByCompUnitInfo(&m_compile_unit_infos[cu_idx]);
1297       if (oso_symfile == oso_dwarf) {
1298         if (m_compile_unit_infos[cu_idx].compile_unit_sp) {
1299           assert(m_compile_unit_infos[cu_idx].compile_unit_sp.get() ==
1300                  cu_sp.get());
1301         } else {
1302           m_compile_unit_infos[cu_idx].compile_unit_sp = cu_sp;
1303           SetCompileUnitAtIndex(cu_idx, cu_sp);
1304         }
1305       }
1306     }
1307   }
1308 }
1309 
1310 CompilerDeclContext
1311 SymbolFileDWARFDebugMap::GetDeclContextForUID(lldb::user_id_t type_uid) {
1312   const uint64_t oso_idx = GetOSOIndexFromUserID(type_uid);
1313   SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(oso_idx);
1314   if (oso_dwarf)
1315     return oso_dwarf->GetDeclContextForUID(type_uid);
1316   return CompilerDeclContext();
1317 }
1318 
1319 CompilerDeclContext
1320 SymbolFileDWARFDebugMap::GetDeclContextContainingUID(lldb::user_id_t type_uid) {
1321   const uint64_t oso_idx = GetOSOIndexFromUserID(type_uid);
1322   SymbolFileDWARF *oso_dwarf = GetSymbolFileByOSOIndex(oso_idx);
1323   if (oso_dwarf)
1324     return oso_dwarf->GetDeclContextContainingUID(type_uid);
1325   return CompilerDeclContext();
1326 }
1327 
1328 void SymbolFileDWARFDebugMap::ParseDeclsForContext(
1329     lldb_private::CompilerDeclContext decl_ctx) {
1330   ForEachSymbolFile([&](SymbolFileDWARF *oso_dwarf) -> bool {
1331     oso_dwarf->ParseDeclsForContext(decl_ctx);
1332     return true; // Keep iterating
1333   });
1334 }
1335 
1336 bool SymbolFileDWARFDebugMap::AddOSOFileRange(CompileUnitInfo *cu_info,
1337                                               lldb::addr_t exe_file_addr,
1338                                               lldb::addr_t exe_byte_size,
1339                                               lldb::addr_t oso_file_addr,
1340                                               lldb::addr_t oso_byte_size) {
1341   const uint32_t debug_map_idx =
1342       m_debug_map.FindEntryIndexThatContains(exe_file_addr);
1343   if (debug_map_idx != UINT32_MAX) {
1344     DebugMap::Entry *debug_map_entry =
1345         m_debug_map.FindEntryThatContains(exe_file_addr);
1346     debug_map_entry->data.SetOSOFileAddress(oso_file_addr);
1347     addr_t range_size = std::min<addr_t>(exe_byte_size, oso_byte_size);
1348     if (range_size == 0) {
1349       range_size = std::max<addr_t>(exe_byte_size, oso_byte_size);
1350       if (range_size == 0)
1351         range_size = 1;
1352     }
1353     cu_info->file_range_map.Append(
1354         FileRangeMap::Entry(oso_file_addr, range_size, exe_file_addr));
1355     return true;
1356   }
1357   return false;
1358 }
1359 
1360 void SymbolFileDWARFDebugMap::FinalizeOSOFileRanges(CompileUnitInfo *cu_info) {
1361   cu_info->file_range_map.Sort();
1362 #if defined(DEBUG_OSO_DMAP)
1363   const FileRangeMap &oso_file_range_map = cu_info->GetFileRangeMap(this);
1364   const size_t n = oso_file_range_map.GetSize();
1365   printf("SymbolFileDWARFDebugMap::FinalizeOSOFileRanges (cu_info = %p) %s\n",
1366          cu_info, cu_info->oso_sp->module_sp->GetFileSpec().GetPath().c_str());
1367   for (size_t i = 0; i < n; ++i) {
1368     const FileRangeMap::Entry &entry = oso_file_range_map.GetEntryRef(i);
1369     printf("oso [0x%16.16" PRIx64 " - 0x%16.16" PRIx64
1370            ") ==> exe [0x%16.16" PRIx64 " - 0x%16.16" PRIx64 ")\n",
1371            entry.GetRangeBase(), entry.GetRangeEnd(), entry.data,
1372            entry.data + entry.GetByteSize());
1373   }
1374 #endif
1375 }
1376 
1377 lldb::addr_t
1378 SymbolFileDWARFDebugMap::LinkOSOFileAddress(SymbolFileDWARF *oso_symfile,
1379                                             lldb::addr_t oso_file_addr) {
1380   CompileUnitInfo *cu_info = GetCompileUnitInfo(oso_symfile);
1381   if (cu_info) {
1382     const FileRangeMap::Entry *oso_range_entry =
1383         cu_info->GetFileRangeMap(this).FindEntryThatContains(oso_file_addr);
1384     if (oso_range_entry) {
1385       const DebugMap::Entry *debug_map_entry =
1386           m_debug_map.FindEntryThatContains(oso_range_entry->data);
1387       if (debug_map_entry) {
1388         const lldb::addr_t offset =
1389             oso_file_addr - oso_range_entry->GetRangeBase();
1390         const lldb::addr_t exe_file_addr =
1391             debug_map_entry->GetRangeBase() + offset;
1392         return exe_file_addr;
1393       }
1394     }
1395   }
1396   return LLDB_INVALID_ADDRESS;
1397 }
1398 
1399 bool SymbolFileDWARFDebugMap::LinkOSOAddress(Address &addr) {
1400   // Make sure this address hasn't been fixed already
1401   Module *exe_module = GetObjectFile()->GetModule().get();
1402   Module *addr_module = addr.GetModule().get();
1403   if (addr_module == exe_module)
1404     return true; // Address is already in terms of the main executable module
1405 
1406   CompileUnitInfo *cu_info = GetCompileUnitInfo(
1407       GetSymbolFileAsSymbolFileDWARF(addr_module->GetSymbolFile()));
1408   if (cu_info) {
1409     const lldb::addr_t oso_file_addr = addr.GetFileAddress();
1410     const FileRangeMap::Entry *oso_range_entry =
1411         cu_info->GetFileRangeMap(this).FindEntryThatContains(oso_file_addr);
1412     if (oso_range_entry) {
1413       const DebugMap::Entry *debug_map_entry =
1414           m_debug_map.FindEntryThatContains(oso_range_entry->data);
1415       if (debug_map_entry) {
1416         const lldb::addr_t offset =
1417             oso_file_addr - oso_range_entry->GetRangeBase();
1418         const lldb::addr_t exe_file_addr =
1419             debug_map_entry->GetRangeBase() + offset;
1420         return exe_module->ResolveFileAddress(exe_file_addr, addr);
1421       }
1422     }
1423   }
1424   return true;
1425 }
1426 
1427 LineTable *SymbolFileDWARFDebugMap::LinkOSOLineTable(SymbolFileDWARF *oso_dwarf,
1428                                                      LineTable *line_table) {
1429   CompileUnitInfo *cu_info = GetCompileUnitInfo(oso_dwarf);
1430   if (cu_info)
1431     return line_table->LinkLineTable(cu_info->GetFileRangeMap(this));
1432   return nullptr;
1433 }
1434 
1435 size_t
1436 SymbolFileDWARFDebugMap::AddOSOARanges(SymbolFileDWARF *dwarf2Data,
1437                                        DWARFDebugAranges *debug_aranges) {
1438   size_t num_line_entries_added = 0;
1439   if (debug_aranges && dwarf2Data) {
1440     CompileUnitInfo *compile_unit_info = GetCompileUnitInfo(dwarf2Data);
1441     if (compile_unit_info) {
1442       const FileRangeMap &file_range_map =
1443           compile_unit_info->GetFileRangeMap(this);
1444       for (size_t idx = 0; idx < file_range_map.GetSize(); idx++) {
1445         const FileRangeMap::Entry *entry = file_range_map.GetEntryAtIndex(idx);
1446         if (entry) {
1447           debug_aranges->AppendRange(dwarf2Data->GetID(), entry->GetRangeBase(),
1448                                      entry->GetRangeEnd());
1449           num_line_entries_added++;
1450         }
1451       }
1452     }
1453   }
1454   return num_line_entries_added;
1455 }
1456