1 //===-- Module.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/Core/Module.h"
10 
11 #include "lldb/Core/AddressRange.h"
12 #include "lldb/Core/AddressResolverFileLine.h"
13 #include "lldb/Core/Debugger.h"
14 #include "lldb/Core/FileSpecList.h"
15 #include "lldb/Core/Mangled.h"
16 #include "lldb/Core/ModuleSpec.h"
17 #include "lldb/Core/SearchFilter.h"
18 #include "lldb/Core/Section.h"
19 #include "lldb/Host/FileSystem.h"
20 #include "lldb/Host/Host.h"
21 #include "lldb/Host/HostInfo.h"
22 #include "lldb/Interpreter/CommandInterpreter.h"
23 #include "lldb/Interpreter/ScriptInterpreter.h"
24 #include "lldb/Symbol/CompileUnit.h"
25 #include "lldb/Symbol/Function.h"
26 #include "lldb/Symbol/ObjectFile.h"
27 #include "lldb/Symbol/Symbol.h"
28 #include "lldb/Symbol/SymbolContext.h"
29 #include "lldb/Symbol/SymbolFile.h"
30 #include "lldb/Symbol/SymbolVendor.h"
31 #include "lldb/Symbol/Symtab.h"
32 #include "lldb/Symbol/Type.h"
33 #include "lldb/Symbol/TypeList.h"
34 #include "lldb/Symbol/TypeMap.h"
35 #include "lldb/Symbol/TypeSystem.h"
36 #include "lldb/Target/Language.h"
37 #include "lldb/Target/Process.h"
38 #include "lldb/Target/Target.h"
39 #include "lldb/Utility/DataBufferHeap.h"
40 #include "lldb/Utility/LLDBAssert.h"
41 #include "lldb/Utility/Log.h"
42 #include "lldb/Utility/Logging.h"
43 #include "lldb/Utility/RegularExpression.h"
44 #include "lldb/Utility/Status.h"
45 #include "lldb/Utility/Stream.h"
46 #include "lldb/Utility/StreamString.h"
47 #include "lldb/Utility/Timer.h"
48 
49 #if defined(_WIN32)
50 #include "lldb/Host/windows/PosixApi.h"
51 #endif
52 
53 #include "Plugins/Language/CPlusPlus/CPlusPlusLanguage.h"
54 #include "Plugins/Language/ObjC/ObjCLanguage.h"
55 
56 #include "llvm/ADT/STLExtras.h"
57 #include "llvm/Support/Compiler.h"
58 #include "llvm/Support/FileSystem.h"
59 #include "llvm/Support/Signals.h"
60 #include "llvm/Support/raw_ostream.h"
61 
62 #include <assert.h>
63 #include <cstdint>
64 #include <inttypes.h>
65 #include <map>
66 #include <stdarg.h>
67 #include <string.h>
68 #include <type_traits>
69 #include <utility>
70 
71 namespace lldb_private {
72 class CompilerDeclContext;
73 }
74 namespace lldb_private {
75 class VariableList;
76 }
77 
78 using namespace lldb;
79 using namespace lldb_private;
80 
81 // Shared pointers to modules track module lifetimes in targets and in the
82 // global module, but this collection will track all module objects that are
83 // still alive
84 typedef std::vector<Module *> ModuleCollection;
85 
86 static ModuleCollection &GetModuleCollection() {
87   // This module collection needs to live past any module, so we could either
88   // make it a shared pointer in each module or just leak is.  Since it is only
89   // an empty vector by the time all the modules have gone away, we just leak
90   // it for now.  If we decide this is a big problem we can introduce a
91   // Finalize method that will tear everything down in a predictable order.
92 
93   static ModuleCollection *g_module_collection = nullptr;
94   if (g_module_collection == nullptr)
95     g_module_collection = new ModuleCollection();
96 
97   return *g_module_collection;
98 }
99 
100 std::recursive_mutex &Module::GetAllocationModuleCollectionMutex() {
101   // NOTE: The mutex below must be leaked since the global module list in
102   // the ModuleList class will get torn at some point, and we can't know if it
103   // will tear itself down before the "g_module_collection_mutex" below will.
104   // So we leak a Mutex object below to safeguard against that
105 
106   static std::recursive_mutex *g_module_collection_mutex = nullptr;
107   if (g_module_collection_mutex == nullptr)
108     g_module_collection_mutex = new std::recursive_mutex; // NOTE: known leak
109   return *g_module_collection_mutex;
110 }
111 
112 size_t Module::GetNumberAllocatedModules() {
113   std::lock_guard<std::recursive_mutex> guard(
114       GetAllocationModuleCollectionMutex());
115   return GetModuleCollection().size();
116 }
117 
118 Module *Module::GetAllocatedModuleAtIndex(size_t idx) {
119   std::lock_guard<std::recursive_mutex> guard(
120       GetAllocationModuleCollectionMutex());
121   ModuleCollection &modules = GetModuleCollection();
122   if (idx < modules.size())
123     return modules[idx];
124   return nullptr;
125 }
126 
127 Module::Module(const ModuleSpec &module_spec)
128     : m_object_offset(0), m_file_has_changed(false),
129       m_first_file_changed_log(false) {
130   // Scope for locker below...
131   {
132     std::lock_guard<std::recursive_mutex> guard(
133         GetAllocationModuleCollectionMutex());
134     GetModuleCollection().push_back(this);
135   }
136 
137   Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_OBJECT |
138                                                   LIBLLDB_LOG_MODULES));
139   if (log != nullptr)
140     LLDB_LOGF(log, "%p Module::Module((%s) '%s%s%s%s')",
141               static_cast<void *>(this),
142               module_spec.GetArchitecture().GetArchitectureName(),
143               module_spec.GetFileSpec().GetPath().c_str(),
144               module_spec.GetObjectName().IsEmpty() ? "" : "(",
145               module_spec.GetObjectName().IsEmpty()
146                   ? ""
147                   : module_spec.GetObjectName().AsCString(""),
148               module_spec.GetObjectName().IsEmpty() ? "" : ")");
149 
150   auto data_sp = module_spec.GetData();
151   lldb::offset_t file_size = 0;
152   if (data_sp)
153     file_size = data_sp->GetByteSize();
154 
155   // First extract all module specifications from the file using the local file
156   // path. If there are no specifications, then don't fill anything in
157   ModuleSpecList modules_specs;
158   if (ObjectFile::GetModuleSpecifications(
159           module_spec.GetFileSpec(), 0, file_size, modules_specs, data_sp) == 0)
160     return;
161 
162   // Now make sure that one of the module specifications matches what we just
163   // extract. We might have a module specification that specifies a file
164   // "/usr/lib/dyld" with UUID XXX, but we might have a local version of
165   // "/usr/lib/dyld" that has
166   // UUID YYY and we don't want those to match. If they don't match, just don't
167   // fill any ivars in so we don't accidentally grab the wrong file later since
168   // they don't match...
169   ModuleSpec matching_module_spec;
170   if (!modules_specs.FindMatchingModuleSpec(module_spec,
171                                             matching_module_spec)) {
172     if (log) {
173       LLDB_LOGF(log, "Found local object file but the specs didn't match");
174     }
175     return;
176   }
177 
178   // Set m_data_sp if it was initially provided in the ModuleSpec. Note that
179   // we cannot use the data_sp variable here, because it will have been
180   // modified by GetModuleSpecifications().
181   if (auto module_spec_data_sp = module_spec.GetData()) {
182     m_data_sp = module_spec_data_sp;
183     m_mod_time = {};
184   } else {
185     if (module_spec.GetFileSpec())
186       m_mod_time =
187           FileSystem::Instance().GetModificationTime(module_spec.GetFileSpec());
188     else if (matching_module_spec.GetFileSpec())
189       m_mod_time = FileSystem::Instance().GetModificationTime(
190           matching_module_spec.GetFileSpec());
191   }
192 
193   // Copy the architecture from the actual spec if we got one back, else use
194   // the one that was specified
195   if (matching_module_spec.GetArchitecture().IsValid())
196     m_arch = matching_module_spec.GetArchitecture();
197   else if (module_spec.GetArchitecture().IsValid())
198     m_arch = module_spec.GetArchitecture();
199 
200   // Copy the file spec over and use the specified one (if there was one) so we
201   // don't use a path that might have gotten resolved a path in
202   // 'matching_module_spec'
203   if (module_spec.GetFileSpec())
204     m_file = module_spec.GetFileSpec();
205   else if (matching_module_spec.GetFileSpec())
206     m_file = matching_module_spec.GetFileSpec();
207 
208   // Copy the platform file spec over
209   if (module_spec.GetPlatformFileSpec())
210     m_platform_file = module_spec.GetPlatformFileSpec();
211   else if (matching_module_spec.GetPlatformFileSpec())
212     m_platform_file = matching_module_spec.GetPlatformFileSpec();
213 
214   // Copy the symbol file spec over
215   if (module_spec.GetSymbolFileSpec())
216     m_symfile_spec = module_spec.GetSymbolFileSpec();
217   else if (matching_module_spec.GetSymbolFileSpec())
218     m_symfile_spec = matching_module_spec.GetSymbolFileSpec();
219 
220   // Copy the object name over
221   if (matching_module_spec.GetObjectName())
222     m_object_name = matching_module_spec.GetObjectName();
223   else
224     m_object_name = module_spec.GetObjectName();
225 
226   // Always trust the object offset (file offset) and object modification time
227   // (for mod time in a BSD static archive) of from the matching module
228   // specification
229   m_object_offset = matching_module_spec.GetObjectOffset();
230   m_object_mod_time = matching_module_spec.GetObjectModificationTime();
231 }
232 
233 Module::Module(const FileSpec &file_spec, const ArchSpec &arch,
234                const ConstString *object_name, lldb::offset_t object_offset,
235                const llvm::sys::TimePoint<> &object_mod_time)
236     : m_mod_time(FileSystem::Instance().GetModificationTime(file_spec)), m_arch(arch),
237       m_file(file_spec), m_object_offset(object_offset),
238       m_object_mod_time(object_mod_time), m_file_has_changed(false),
239       m_first_file_changed_log(false) {
240   // Scope for locker below...
241   {
242     std::lock_guard<std::recursive_mutex> guard(
243         GetAllocationModuleCollectionMutex());
244     GetModuleCollection().push_back(this);
245   }
246 
247   if (object_name)
248     m_object_name = *object_name;
249 
250   Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_OBJECT |
251                                                   LIBLLDB_LOG_MODULES));
252   if (log != nullptr)
253     LLDB_LOGF(log, "%p Module::Module((%s) '%s%s%s%s')",
254               static_cast<void *>(this), m_arch.GetArchitectureName(),
255               m_file.GetPath().c_str(), m_object_name.IsEmpty() ? "" : "(",
256               m_object_name.IsEmpty() ? "" : m_object_name.AsCString(""),
257               m_object_name.IsEmpty() ? "" : ")");
258 }
259 
260 Module::Module()
261     : m_object_offset(0), m_file_has_changed(false),
262       m_first_file_changed_log(false) {
263   std::lock_guard<std::recursive_mutex> guard(
264       GetAllocationModuleCollectionMutex());
265   GetModuleCollection().push_back(this);
266 }
267 
268 Module::~Module() {
269   // Lock our module down while we tear everything down to make sure we don't
270   // get any access to the module while it is being destroyed
271   std::lock_guard<std::recursive_mutex> guard(m_mutex);
272   // Scope for locker below...
273   {
274     std::lock_guard<std::recursive_mutex> guard(
275         GetAllocationModuleCollectionMutex());
276     ModuleCollection &modules = GetModuleCollection();
277     ModuleCollection::iterator end = modules.end();
278     ModuleCollection::iterator pos = std::find(modules.begin(), end, this);
279     assert(pos != end);
280     modules.erase(pos);
281   }
282   Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_OBJECT |
283                                                   LIBLLDB_LOG_MODULES));
284   if (log != nullptr)
285     LLDB_LOGF(log, "%p Module::~Module((%s) '%s%s%s%s')",
286               static_cast<void *>(this), m_arch.GetArchitectureName(),
287               m_file.GetPath().c_str(), m_object_name.IsEmpty() ? "" : "(",
288               m_object_name.IsEmpty() ? "" : m_object_name.AsCString(""),
289               m_object_name.IsEmpty() ? "" : ")");
290   // Release any auto pointers before we start tearing down our member
291   // variables since the object file and symbol files might need to make
292   // function calls back into this module object. The ordering is important
293   // here because symbol files can require the module object file. So we tear
294   // down the symbol file first, then the object file.
295   m_sections_up.reset();
296   m_symfile_up.reset();
297   m_objfile_sp.reset();
298 }
299 
300 ObjectFile *Module::GetMemoryObjectFile(const lldb::ProcessSP &process_sp,
301                                         lldb::addr_t header_addr, Status &error,
302                                         size_t size_to_read) {
303   if (m_objfile_sp) {
304     error.SetErrorString("object file already exists");
305   } else {
306     std::lock_guard<std::recursive_mutex> guard(m_mutex);
307     if (process_sp) {
308       m_did_load_objfile = true;
309       auto data_up = std::make_unique<DataBufferHeap>(size_to_read, 0);
310       Status readmem_error;
311       const size_t bytes_read =
312           process_sp->ReadMemory(header_addr, data_up->GetBytes(),
313                                  data_up->GetByteSize(), readmem_error);
314       if (bytes_read < size_to_read)
315         data_up->SetByteSize(bytes_read);
316       if (data_up->GetByteSize() > 0) {
317         DataBufferSP data_sp(data_up.release());
318         m_objfile_sp = ObjectFile::FindPlugin(shared_from_this(), process_sp,
319                                               header_addr, data_sp);
320         if (m_objfile_sp) {
321           StreamString s;
322           s.Printf("0x%16.16" PRIx64, header_addr);
323           m_object_name.SetString(s.GetString());
324 
325           // Once we get the object file, update our module with the object
326           // file's architecture since it might differ in vendor/os if some
327           // parts were unknown.
328           m_arch = m_objfile_sp->GetArchitecture();
329 
330           // Augment the arch with the target's information in case
331           // we are unable to extract the os/environment from memory.
332           m_arch.MergeFrom(process_sp->GetTarget().GetArchitecture());
333         } else {
334           error.SetErrorString("unable to find suitable object file plug-in");
335         }
336       } else {
337         error.SetErrorStringWithFormat("unable to read header from memory: %s",
338                                        readmem_error.AsCString());
339       }
340     } else {
341       error.SetErrorString("invalid process");
342     }
343   }
344   return m_objfile_sp.get();
345 }
346 
347 const lldb_private::UUID &Module::GetUUID() {
348   if (!m_did_set_uuid.load()) {
349     std::lock_guard<std::recursive_mutex> guard(m_mutex);
350     if (!m_did_set_uuid.load()) {
351       ObjectFile *obj_file = GetObjectFile();
352 
353       if (obj_file != nullptr) {
354         m_uuid = obj_file->GetUUID();
355         m_did_set_uuid = true;
356       }
357     }
358   }
359   return m_uuid;
360 }
361 
362 void Module::SetUUID(const lldb_private::UUID &uuid) {
363   std::lock_guard<std::recursive_mutex> guard(m_mutex);
364   if (!m_did_set_uuid) {
365     m_uuid = uuid;
366     m_did_set_uuid = true;
367   } else {
368     lldbassert(0 && "Attempting to overwrite the existing module UUID");
369   }
370 }
371 
372 llvm::Expected<TypeSystem &>
373 Module::GetTypeSystemForLanguage(LanguageType language) {
374   return m_type_system_map.GetTypeSystemForLanguage(language, this, true);
375 }
376 
377 void Module::ParseAllDebugSymbols() {
378   std::lock_guard<std::recursive_mutex> guard(m_mutex);
379   size_t num_comp_units = GetNumCompileUnits();
380   if (num_comp_units == 0)
381     return;
382 
383   SymbolFile *symbols = GetSymbolFile();
384 
385   for (size_t cu_idx = 0; cu_idx < num_comp_units; cu_idx++) {
386     SymbolContext sc;
387     sc.module_sp = shared_from_this();
388     sc.comp_unit = symbols->GetCompileUnitAtIndex(cu_idx).get();
389     if (!sc.comp_unit)
390       continue;
391 
392     symbols->ParseVariablesForContext(sc);
393 
394     symbols->ParseFunctions(*sc.comp_unit);
395 
396     sc.comp_unit->ForeachFunction([&sc, &symbols](const FunctionSP &f) {
397       symbols->ParseBlocksRecursive(*f);
398 
399       // Parse the variables for this function and all its blocks
400       sc.function = f.get();
401       symbols->ParseVariablesForContext(sc);
402       return false;
403     });
404 
405     // Parse all types for this compile unit
406     symbols->ParseTypes(*sc.comp_unit);
407   }
408 }
409 
410 void Module::CalculateSymbolContext(SymbolContext *sc) {
411   sc->module_sp = shared_from_this();
412 }
413 
414 ModuleSP Module::CalculateSymbolContextModule() { return shared_from_this(); }
415 
416 void Module::DumpSymbolContext(Stream *s) {
417   s->Printf(", Module{%p}", static_cast<void *>(this));
418 }
419 
420 size_t Module::GetNumCompileUnits() {
421   std::lock_guard<std::recursive_mutex> guard(m_mutex);
422   LLDB_SCOPED_TIMERF("Module::GetNumCompileUnits (module = %p)",
423                      static_cast<void *>(this));
424   if (SymbolFile *symbols = GetSymbolFile())
425     return symbols->GetNumCompileUnits();
426   return 0;
427 }
428 
429 CompUnitSP Module::GetCompileUnitAtIndex(size_t index) {
430   std::lock_guard<std::recursive_mutex> guard(m_mutex);
431   size_t num_comp_units = GetNumCompileUnits();
432   CompUnitSP cu_sp;
433 
434   if (index < num_comp_units) {
435     if (SymbolFile *symbols = GetSymbolFile())
436       cu_sp = symbols->GetCompileUnitAtIndex(index);
437   }
438   return cu_sp;
439 }
440 
441 bool Module::ResolveFileAddress(lldb::addr_t vm_addr, Address &so_addr) {
442   std::lock_guard<std::recursive_mutex> guard(m_mutex);
443   LLDB_SCOPED_TIMERF("Module::ResolveFileAddress (vm_addr = 0x%" PRIx64 ")",
444                      vm_addr);
445   SectionList *section_list = GetSectionList();
446   if (section_list)
447     return so_addr.ResolveAddressUsingFileSections(vm_addr, section_list);
448   return false;
449 }
450 
451 uint32_t Module::ResolveSymbolContextForAddress(
452     const Address &so_addr, lldb::SymbolContextItem resolve_scope,
453     SymbolContext &sc, bool resolve_tail_call_address) {
454   std::lock_guard<std::recursive_mutex> guard(m_mutex);
455   uint32_t resolved_flags = 0;
456 
457   // Clear the result symbol context in case we don't find anything, but don't
458   // clear the target
459   sc.Clear(false);
460 
461   // Get the section from the section/offset address.
462   SectionSP section_sp(so_addr.GetSection());
463 
464   // Make sure the section matches this module before we try and match anything
465   if (section_sp && section_sp->GetModule().get() == this) {
466     // If the section offset based address resolved itself, then this is the
467     // right module.
468     sc.module_sp = shared_from_this();
469     resolved_flags |= eSymbolContextModule;
470 
471     SymbolFile *symfile = GetSymbolFile();
472     if (!symfile)
473       return resolved_flags;
474 
475     // Resolve the compile unit, function, block, line table or line entry if
476     // requested.
477     if (resolve_scope & eSymbolContextCompUnit ||
478         resolve_scope & eSymbolContextFunction ||
479         resolve_scope & eSymbolContextBlock ||
480         resolve_scope & eSymbolContextLineEntry ||
481         resolve_scope & eSymbolContextVariable) {
482       resolved_flags |=
483           symfile->ResolveSymbolContext(so_addr, resolve_scope, sc);
484     }
485 
486     // Resolve the symbol if requested, but don't re-look it up if we've
487     // already found it.
488     if (resolve_scope & eSymbolContextSymbol &&
489         !(resolved_flags & eSymbolContextSymbol)) {
490       Symtab *symtab = symfile->GetSymtab();
491       if (symtab && so_addr.IsSectionOffset()) {
492         Symbol *matching_symbol = nullptr;
493 
494         symtab->ForEachSymbolContainingFileAddress(
495             so_addr.GetFileAddress(),
496             [&matching_symbol](Symbol *symbol) -> bool {
497               if (symbol->GetType() != eSymbolTypeInvalid) {
498                 matching_symbol = symbol;
499                 return false; // Stop iterating
500               }
501               return true; // Keep iterating
502             });
503         sc.symbol = matching_symbol;
504         if (!sc.symbol && resolve_scope & eSymbolContextFunction &&
505             !(resolved_flags & eSymbolContextFunction)) {
506           bool verify_unique = false; // No need to check again since
507                                       // ResolveSymbolContext failed to find a
508                                       // symbol at this address.
509           if (ObjectFile *obj_file = sc.module_sp->GetObjectFile())
510             sc.symbol =
511                 obj_file->ResolveSymbolForAddress(so_addr, verify_unique);
512         }
513 
514         if (sc.symbol) {
515           if (sc.symbol->IsSynthetic()) {
516             // We have a synthetic symbol so lets check if the object file from
517             // the symbol file in the symbol vendor is different than the
518             // object file for the module, and if so search its symbol table to
519             // see if we can come up with a better symbol. For example dSYM
520             // files on MacOSX have an unstripped symbol table inside of them.
521             ObjectFile *symtab_objfile = symtab->GetObjectFile();
522             if (symtab_objfile && symtab_objfile->IsStripped()) {
523               ObjectFile *symfile_objfile = symfile->GetObjectFile();
524               if (symfile_objfile != symtab_objfile) {
525                 Symtab *symfile_symtab = symfile_objfile->GetSymtab();
526                 if (symfile_symtab) {
527                   Symbol *symbol =
528                       symfile_symtab->FindSymbolContainingFileAddress(
529                           so_addr.GetFileAddress());
530                   if (symbol && !symbol->IsSynthetic()) {
531                     sc.symbol = symbol;
532                   }
533                 }
534               }
535             }
536           }
537           resolved_flags |= eSymbolContextSymbol;
538         }
539       }
540     }
541 
542     // For function symbols, so_addr may be off by one.  This is a convention
543     // consistent with FDE row indices in eh_frame sections, but requires extra
544     // logic here to permit symbol lookup for disassembly and unwind.
545     if (resolve_scope & eSymbolContextSymbol &&
546         !(resolved_flags & eSymbolContextSymbol) && resolve_tail_call_address &&
547         so_addr.IsSectionOffset()) {
548       Address previous_addr = so_addr;
549       previous_addr.Slide(-1);
550 
551       bool do_resolve_tail_call_address = false; // prevent recursion
552       const uint32_t flags = ResolveSymbolContextForAddress(
553           previous_addr, resolve_scope, sc, do_resolve_tail_call_address);
554       if (flags & eSymbolContextSymbol) {
555         AddressRange addr_range;
556         if (sc.GetAddressRange(eSymbolContextFunction | eSymbolContextSymbol, 0,
557                                false, addr_range)) {
558           if (addr_range.GetBaseAddress().GetSection() ==
559               so_addr.GetSection()) {
560             // If the requested address is one past the address range of a
561             // function (i.e. a tail call), or the decremented address is the
562             // start of a function (i.e. some forms of trampoline), indicate
563             // that the symbol has been resolved.
564             if (so_addr.GetOffset() ==
565                     addr_range.GetBaseAddress().GetOffset() ||
566                 so_addr.GetOffset() ==
567                     addr_range.GetBaseAddress().GetOffset() +
568                         addr_range.GetByteSize()) {
569               resolved_flags |= flags;
570             }
571           } else {
572             sc.symbol =
573                 nullptr; // Don't trust the symbol if the sections didn't match.
574           }
575         }
576       }
577     }
578   }
579   return resolved_flags;
580 }
581 
582 uint32_t Module::ResolveSymbolContextForFilePath(
583     const char *file_path, uint32_t line, bool check_inlines,
584     lldb::SymbolContextItem resolve_scope, SymbolContextList &sc_list) {
585   FileSpec file_spec(file_path);
586   return ResolveSymbolContextsForFileSpec(file_spec, line, check_inlines,
587                                           resolve_scope, sc_list);
588 }
589 
590 uint32_t Module::ResolveSymbolContextsForFileSpec(
591     const FileSpec &file_spec, uint32_t line, bool check_inlines,
592     lldb::SymbolContextItem resolve_scope, SymbolContextList &sc_list) {
593   std::lock_guard<std::recursive_mutex> guard(m_mutex);
594   LLDB_SCOPED_TIMERF("Module::ResolveSymbolContextForFilePath (%s:%u, "
595                      "check_inlines = %s, resolve_scope = 0x%8.8x)",
596                      file_spec.GetPath().c_str(), line,
597                      check_inlines ? "yes" : "no", resolve_scope);
598 
599   const uint32_t initial_count = sc_list.GetSize();
600 
601   if (SymbolFile *symbols = GetSymbolFile())
602     symbols->ResolveSymbolContext(file_spec, line, check_inlines, resolve_scope,
603                                   sc_list);
604 
605   return sc_list.GetSize() - initial_count;
606 }
607 
608 void Module::FindGlobalVariables(ConstString name,
609                                  const CompilerDeclContext &parent_decl_ctx,
610                                  size_t max_matches, VariableList &variables) {
611   if (SymbolFile *symbols = GetSymbolFile())
612     symbols->FindGlobalVariables(name, parent_decl_ctx, max_matches, variables);
613 }
614 
615 void Module::FindGlobalVariables(const RegularExpression &regex,
616                                  size_t max_matches, VariableList &variables) {
617   SymbolFile *symbols = GetSymbolFile();
618   if (symbols)
619     symbols->FindGlobalVariables(regex, max_matches, variables);
620 }
621 
622 void Module::FindCompileUnits(const FileSpec &path,
623                               SymbolContextList &sc_list) {
624   const size_t num_compile_units = GetNumCompileUnits();
625   SymbolContext sc;
626   sc.module_sp = shared_from_this();
627   for (size_t i = 0; i < num_compile_units; ++i) {
628     sc.comp_unit = GetCompileUnitAtIndex(i).get();
629     if (sc.comp_unit) {
630       if (FileSpec::Match(path, sc.comp_unit->GetPrimaryFile()))
631         sc_list.Append(sc);
632     }
633   }
634 }
635 
636 Module::LookupInfo::LookupInfo(ConstString name,
637                                FunctionNameType name_type_mask,
638                                LanguageType language)
639     : m_name(name), m_lookup_name(), m_language(language),
640       m_name_type_mask(eFunctionNameTypeNone),
641       m_match_name_after_lookup(false) {
642   const char *name_cstr = name.GetCString();
643   llvm::StringRef basename;
644   llvm::StringRef context;
645 
646   if (name_type_mask & eFunctionNameTypeAuto) {
647     if (CPlusPlusLanguage::IsCPPMangledName(name_cstr))
648       m_name_type_mask = eFunctionNameTypeFull;
649     else if ((language == eLanguageTypeUnknown ||
650               Language::LanguageIsObjC(language)) &&
651              ObjCLanguage::IsPossibleObjCMethodName(name_cstr))
652       m_name_type_mask = eFunctionNameTypeFull;
653     else if (Language::LanguageIsC(language)) {
654       m_name_type_mask = eFunctionNameTypeFull;
655     } else {
656       if ((language == eLanguageTypeUnknown ||
657            Language::LanguageIsObjC(language)) &&
658           ObjCLanguage::IsPossibleObjCSelector(name_cstr))
659         m_name_type_mask |= eFunctionNameTypeSelector;
660 
661       CPlusPlusLanguage::MethodName cpp_method(name);
662       basename = cpp_method.GetBasename();
663       if (basename.empty()) {
664         if (CPlusPlusLanguage::ExtractContextAndIdentifier(name_cstr, context,
665                                                            basename))
666           m_name_type_mask |= (eFunctionNameTypeMethod | eFunctionNameTypeBase);
667         else
668           m_name_type_mask |= eFunctionNameTypeFull;
669       } else {
670         m_name_type_mask |= (eFunctionNameTypeMethod | eFunctionNameTypeBase);
671       }
672     }
673   } else {
674     m_name_type_mask = name_type_mask;
675     if (name_type_mask & eFunctionNameTypeMethod ||
676         name_type_mask & eFunctionNameTypeBase) {
677       // If they've asked for a CPP method or function name and it can't be
678       // that, we don't even need to search for CPP methods or names.
679       CPlusPlusLanguage::MethodName cpp_method(name);
680       if (cpp_method.IsValid()) {
681         basename = cpp_method.GetBasename();
682 
683         if (!cpp_method.GetQualifiers().empty()) {
684           // There is a "const" or other qualifier following the end of the
685           // function parens, this can't be a eFunctionNameTypeBase
686           m_name_type_mask &= ~(eFunctionNameTypeBase);
687           if (m_name_type_mask == eFunctionNameTypeNone)
688             return;
689         }
690       } else {
691         // If the CPP method parser didn't manage to chop this up, try to fill
692         // in the base name if we can. If a::b::c is passed in, we need to just
693         // look up "c", and then we'll filter the result later.
694         CPlusPlusLanguage::ExtractContextAndIdentifier(name_cstr, context,
695                                                        basename);
696       }
697     }
698 
699     if (name_type_mask & eFunctionNameTypeSelector) {
700       if (!ObjCLanguage::IsPossibleObjCSelector(name_cstr)) {
701         m_name_type_mask &= ~(eFunctionNameTypeSelector);
702         if (m_name_type_mask == eFunctionNameTypeNone)
703           return;
704       }
705     }
706 
707     // Still try and get a basename in case someone specifies a name type mask
708     // of eFunctionNameTypeFull and a name like "A::func"
709     if (basename.empty()) {
710       if (name_type_mask & eFunctionNameTypeFull &&
711           !CPlusPlusLanguage::IsCPPMangledName(name_cstr)) {
712         CPlusPlusLanguage::MethodName cpp_method(name);
713         basename = cpp_method.GetBasename();
714         if (basename.empty())
715           CPlusPlusLanguage::ExtractContextAndIdentifier(name_cstr, context,
716                                                          basename);
717       }
718     }
719   }
720 
721   if (!basename.empty()) {
722     // The name supplied was a partial C++ path like "a::count". In this case
723     // we want to do a lookup on the basename "count" and then make sure any
724     // matching results contain "a::count" so that it would match "b::a::count"
725     // and "a::count". This is why we set "match_name_after_lookup" to true
726     m_lookup_name.SetString(basename);
727     m_match_name_after_lookup = true;
728   } else {
729     // The name is already correct, just use the exact name as supplied, and we
730     // won't need to check if any matches contain "name"
731     m_lookup_name = name;
732     m_match_name_after_lookup = false;
733   }
734 }
735 
736 void Module::LookupInfo::Prune(SymbolContextList &sc_list,
737                                size_t start_idx) const {
738   if (m_match_name_after_lookup && m_name) {
739     SymbolContext sc;
740     size_t i = start_idx;
741     while (i < sc_list.GetSize()) {
742       if (!sc_list.GetContextAtIndex(i, sc))
743         break;
744       ConstString full_name(sc.GetFunctionName());
745       if (full_name &&
746           ::strstr(full_name.GetCString(), m_name.GetCString()) == nullptr) {
747         sc_list.RemoveContextAtIndex(i);
748       } else {
749         ++i;
750       }
751     }
752   }
753 
754   // If we have only full name matches we might have tried to set breakpoint on
755   // "func" and specified eFunctionNameTypeFull, but we might have found
756   // "a::func()", "a::b::func()", "c::func()", "func()" and "func". Only
757   // "func()" and "func" should end up matching.
758   if (m_name_type_mask == eFunctionNameTypeFull) {
759     SymbolContext sc;
760     size_t i = start_idx;
761     while (i < sc_list.GetSize()) {
762       if (!sc_list.GetContextAtIndex(i, sc))
763         break;
764       // Make sure the mangled and demangled names don't match before we try to
765       // pull anything out
766       ConstString mangled_name(sc.GetFunctionName(Mangled::ePreferMangled));
767       ConstString full_name(sc.GetFunctionName());
768       if (mangled_name != m_name && full_name != m_name)
769       {
770         CPlusPlusLanguage::MethodName cpp_method(full_name);
771         if (cpp_method.IsValid()) {
772           if (cpp_method.GetContext().empty()) {
773             if (cpp_method.GetBasename().compare(m_name.GetStringRef()) != 0) {
774               sc_list.RemoveContextAtIndex(i);
775               continue;
776             }
777           } else {
778             std::string qualified_name;
779             llvm::StringRef anon_prefix("(anonymous namespace)");
780             if (cpp_method.GetContext() == anon_prefix)
781               qualified_name = cpp_method.GetBasename().str();
782             else
783               qualified_name = cpp_method.GetScopeQualifiedName();
784             if (qualified_name != m_name.GetCString()) {
785               sc_list.RemoveContextAtIndex(i);
786               continue;
787             }
788           }
789         }
790       }
791       ++i;
792     }
793   }
794 }
795 
796 void Module::FindFunctions(ConstString name,
797                            const CompilerDeclContext &parent_decl_ctx,
798                            FunctionNameType name_type_mask,
799                            bool include_symbols, bool include_inlines,
800                            SymbolContextList &sc_list) {
801   const size_t old_size = sc_list.GetSize();
802 
803   // Find all the functions (not symbols, but debug information functions...
804   SymbolFile *symbols = GetSymbolFile();
805 
806   if (name_type_mask & eFunctionNameTypeAuto) {
807     LookupInfo lookup_info(name, name_type_mask, eLanguageTypeUnknown);
808 
809     if (symbols) {
810       symbols->FindFunctions(lookup_info.GetLookupName(), parent_decl_ctx,
811                              lookup_info.GetNameTypeMask(), include_inlines,
812                              sc_list);
813 
814       // Now check our symbol table for symbols that are code symbols if
815       // requested
816       if (include_symbols) {
817         Symtab *symtab = symbols->GetSymtab();
818         if (symtab)
819           symtab->FindFunctionSymbols(lookup_info.GetLookupName(),
820                                       lookup_info.GetNameTypeMask(), sc_list);
821       }
822     }
823 
824     const size_t new_size = sc_list.GetSize();
825 
826     if (old_size < new_size)
827       lookup_info.Prune(sc_list, old_size);
828   } else {
829     if (symbols) {
830       symbols->FindFunctions(name, parent_decl_ctx, name_type_mask,
831                              include_inlines, sc_list);
832 
833       // Now check our symbol table for symbols that are code symbols if
834       // requested
835       if (include_symbols) {
836         Symtab *symtab = symbols->GetSymtab();
837         if (symtab)
838           symtab->FindFunctionSymbols(name, name_type_mask, sc_list);
839       }
840     }
841   }
842 }
843 
844 void Module::FindFunctions(const RegularExpression &regex, bool include_symbols,
845                            bool include_inlines,
846                            SymbolContextList &sc_list) {
847   const size_t start_size = sc_list.GetSize();
848 
849   if (SymbolFile *symbols = GetSymbolFile()) {
850     symbols->FindFunctions(regex, include_inlines, sc_list);
851 
852     // Now check our symbol table for symbols that are code symbols if
853     // requested
854     if (include_symbols) {
855       Symtab *symtab = symbols->GetSymtab();
856       if (symtab) {
857         std::vector<uint32_t> symbol_indexes;
858         symtab->AppendSymbolIndexesMatchingRegExAndType(
859             regex, eSymbolTypeAny, Symtab::eDebugAny, Symtab::eVisibilityAny,
860             symbol_indexes);
861         const size_t num_matches = symbol_indexes.size();
862         if (num_matches) {
863           SymbolContext sc(this);
864           const size_t end_functions_added_index = sc_list.GetSize();
865           size_t num_functions_added_to_sc_list =
866               end_functions_added_index - start_size;
867           if (num_functions_added_to_sc_list == 0) {
868             // No functions were added, just symbols, so we can just append
869             // them
870             for (size_t i = 0; i < num_matches; ++i) {
871               sc.symbol = symtab->SymbolAtIndex(symbol_indexes[i]);
872               SymbolType sym_type = sc.symbol->GetType();
873               if (sc.symbol && (sym_type == eSymbolTypeCode ||
874                                 sym_type == eSymbolTypeResolver))
875                 sc_list.Append(sc);
876             }
877           } else {
878             typedef std::map<lldb::addr_t, uint32_t> FileAddrToIndexMap;
879             FileAddrToIndexMap file_addr_to_index;
880             for (size_t i = start_size; i < end_functions_added_index; ++i) {
881               const SymbolContext &sc = sc_list[i];
882               if (sc.block)
883                 continue;
884               file_addr_to_index[sc.function->GetAddressRange()
885                                      .GetBaseAddress()
886                                      .GetFileAddress()] = i;
887             }
888 
889             FileAddrToIndexMap::const_iterator end = file_addr_to_index.end();
890             // Functions were added so we need to merge symbols into any
891             // existing function symbol contexts
892             for (size_t i = start_size; i < num_matches; ++i) {
893               sc.symbol = symtab->SymbolAtIndex(symbol_indexes[i]);
894               SymbolType sym_type = sc.symbol->GetType();
895               if (sc.symbol && sc.symbol->ValueIsAddress() &&
896                   (sym_type == eSymbolTypeCode ||
897                    sym_type == eSymbolTypeResolver)) {
898                 FileAddrToIndexMap::const_iterator pos =
899                     file_addr_to_index.find(
900                         sc.symbol->GetAddressRef().GetFileAddress());
901                 if (pos == end)
902                   sc_list.Append(sc);
903                 else
904                   sc_list[pos->second].symbol = sc.symbol;
905               }
906             }
907           }
908         }
909       }
910     }
911   }
912 }
913 
914 void Module::FindAddressesForLine(const lldb::TargetSP target_sp,
915                                   const FileSpec &file, uint32_t line,
916                                   Function *function,
917                                   std::vector<Address> &output_local,
918                                   std::vector<Address> &output_extern) {
919   SearchFilterByModule filter(target_sp, m_file);
920   AddressResolverFileLine resolver(file, line, true);
921   resolver.ResolveAddress(filter);
922 
923   for (size_t n = 0; n < resolver.GetNumberOfAddresses(); n++) {
924     Address addr = resolver.GetAddressRangeAtIndex(n).GetBaseAddress();
925     Function *f = addr.CalculateSymbolContextFunction();
926     if (f && f == function)
927       output_local.push_back(addr);
928     else
929       output_extern.push_back(addr);
930   }
931 }
932 
933 void Module::FindTypes_Impl(
934     ConstString name, const CompilerDeclContext &parent_decl_ctx,
935     size_t max_matches,
936     llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files,
937     TypeMap &types) {
938   LLDB_SCOPED_TIMER();
939   if (SymbolFile *symbols = GetSymbolFile())
940     symbols->FindTypes(name, parent_decl_ctx, max_matches,
941                        searched_symbol_files, types);
942 }
943 
944 void Module::FindTypesInNamespace(ConstString type_name,
945                                   const CompilerDeclContext &parent_decl_ctx,
946                                   size_t max_matches, TypeList &type_list) {
947   TypeMap types_map;
948   llvm::DenseSet<lldb_private::SymbolFile *> searched_symbol_files;
949   FindTypes_Impl(type_name, parent_decl_ctx, max_matches, searched_symbol_files,
950                  types_map);
951   if (types_map.GetSize()) {
952     SymbolContext sc;
953     sc.module_sp = shared_from_this();
954     sc.SortTypeList(types_map, type_list);
955   }
956 }
957 
958 lldb::TypeSP Module::FindFirstType(const SymbolContext &sc,
959                                    ConstString name, bool exact_match) {
960   TypeList type_list;
961   llvm::DenseSet<lldb_private::SymbolFile *> searched_symbol_files;
962   FindTypes(name, exact_match, 1, searched_symbol_files, type_list);
963   if (type_list.GetSize())
964     return type_list.GetTypeAtIndex(0);
965   return TypeSP();
966 }
967 
968 void Module::FindTypes(
969     ConstString name, bool exact_match, size_t max_matches,
970     llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files,
971     TypeList &types) {
972   const char *type_name_cstr = name.GetCString();
973   llvm::StringRef type_scope;
974   llvm::StringRef type_basename;
975   TypeClass type_class = eTypeClassAny;
976   TypeMap typesmap;
977 
978   if (Type::GetTypeScopeAndBasename(type_name_cstr, type_scope, type_basename,
979                                     type_class)) {
980     // Check if "name" starts with "::" which means the qualified type starts
981     // from the root namespace and implies and exact match. The typenames we
982     // get back from clang do not start with "::" so we need to strip this off
983     // in order to get the qualified names to match
984     exact_match = type_scope.consume_front("::");
985 
986     ConstString type_basename_const_str(type_basename);
987     FindTypes_Impl(type_basename_const_str, CompilerDeclContext(), max_matches,
988                    searched_symbol_files, typesmap);
989     if (typesmap.GetSize())
990       typesmap.RemoveMismatchedTypes(std::string(type_scope),
991                                      std::string(type_basename), type_class,
992                                      exact_match);
993   } else {
994     // The type is not in a namespace/class scope, just search for it by
995     // basename
996     if (type_class != eTypeClassAny && !type_basename.empty()) {
997       // The "type_name_cstr" will have been modified if we have a valid type
998       // class prefix (like "struct", "class", "union", "typedef" etc).
999       FindTypes_Impl(ConstString(type_basename), CompilerDeclContext(),
1000                      UINT_MAX, searched_symbol_files, typesmap);
1001       typesmap.RemoveMismatchedTypes(std::string(type_scope),
1002                                      std::string(type_basename), type_class,
1003                                      exact_match);
1004     } else {
1005       FindTypes_Impl(name, CompilerDeclContext(), UINT_MAX,
1006                      searched_symbol_files, typesmap);
1007       if (exact_match) {
1008         std::string name_str(name.AsCString(""));
1009         typesmap.RemoveMismatchedTypes(std::string(type_scope), name_str,
1010                                        type_class, exact_match);
1011       }
1012     }
1013   }
1014   if (typesmap.GetSize()) {
1015     SymbolContext sc;
1016     sc.module_sp = shared_from_this();
1017     sc.SortTypeList(typesmap, types);
1018   }
1019 }
1020 
1021 void Module::FindTypes(
1022     llvm::ArrayRef<CompilerContext> pattern, LanguageSet languages,
1023     llvm::DenseSet<lldb_private::SymbolFile *> &searched_symbol_files,
1024     TypeMap &types) {
1025   LLDB_SCOPED_TIMER();
1026   if (SymbolFile *symbols = GetSymbolFile())
1027     symbols->FindTypes(pattern, languages, searched_symbol_files, types);
1028 }
1029 
1030 SymbolFile *Module::GetSymbolFile(bool can_create, Stream *feedback_strm) {
1031   if (!m_did_load_symfile.load()) {
1032     std::lock_guard<std::recursive_mutex> guard(m_mutex);
1033     if (!m_did_load_symfile.load() && can_create) {
1034       ObjectFile *obj_file = GetObjectFile();
1035       if (obj_file != nullptr) {
1036         LLDB_SCOPED_TIMER();
1037         m_symfile_up.reset(
1038             SymbolVendor::FindPlugin(shared_from_this(), feedback_strm));
1039         m_did_load_symfile = true;
1040       }
1041     }
1042   }
1043   return m_symfile_up ? m_symfile_up->GetSymbolFile() : nullptr;
1044 }
1045 
1046 Symtab *Module::GetSymtab() {
1047   if (SymbolFile *symbols = GetSymbolFile())
1048     return symbols->GetSymtab();
1049   return nullptr;
1050 }
1051 
1052 void Module::SetFileSpecAndObjectName(const FileSpec &file,
1053                                       ConstString object_name) {
1054   // Container objects whose paths do not specify a file directly can call this
1055   // function to correct the file and object names.
1056   m_file = file;
1057   m_mod_time = FileSystem::Instance().GetModificationTime(file);
1058   m_object_name = object_name;
1059 }
1060 
1061 const ArchSpec &Module::GetArchitecture() const { return m_arch; }
1062 
1063 std::string Module::GetSpecificationDescription() const {
1064   std::string spec(GetFileSpec().GetPath());
1065   if (m_object_name) {
1066     spec += '(';
1067     spec += m_object_name.GetCString();
1068     spec += ')';
1069   }
1070   return spec;
1071 }
1072 
1073 void Module::GetDescription(llvm::raw_ostream &s,
1074                             lldb::DescriptionLevel level) {
1075   if (level >= eDescriptionLevelFull) {
1076     if (m_arch.IsValid())
1077       s << llvm::formatv("({0}) ", m_arch.GetArchitectureName());
1078   }
1079 
1080   if (level == eDescriptionLevelBrief) {
1081     const char *filename = m_file.GetFilename().GetCString();
1082     if (filename)
1083       s << filename;
1084   } else {
1085     char path[PATH_MAX];
1086     if (m_file.GetPath(path, sizeof(path)))
1087       s << path;
1088   }
1089 
1090   const char *object_name = m_object_name.GetCString();
1091   if (object_name)
1092     s << llvm::formatv("({0})", object_name);
1093 }
1094 
1095 void Module::ReportError(const char *format, ...) {
1096   if (format && format[0]) {
1097     StreamString strm;
1098     strm.PutCString("error: ");
1099     GetDescription(strm.AsRawOstream(), lldb::eDescriptionLevelBrief);
1100     strm.PutChar(' ');
1101     va_list args;
1102     va_start(args, format);
1103     strm.PrintfVarArg(format, args);
1104     va_end(args);
1105 
1106     const int format_len = strlen(format);
1107     if (format_len > 0) {
1108       const char last_char = format[format_len - 1];
1109       if (last_char != '\n' && last_char != '\r')
1110         strm.EOL();
1111     }
1112     Host::SystemLog(Host::eSystemLogError, "%s", strm.GetData());
1113   }
1114 }
1115 
1116 bool Module::FileHasChanged() const {
1117   // We have provided the DataBuffer for this module to avoid accessing the
1118   // filesystem. We never want to reload those files.
1119   if (m_data_sp)
1120     return false;
1121   if (!m_file_has_changed)
1122     m_file_has_changed =
1123         (FileSystem::Instance().GetModificationTime(m_file) != m_mod_time);
1124   return m_file_has_changed;
1125 }
1126 
1127 void Module::ReportErrorIfModifyDetected(const char *format, ...) {
1128   if (!m_first_file_changed_log) {
1129     if (FileHasChanged()) {
1130       m_first_file_changed_log = true;
1131       if (format) {
1132         StreamString strm;
1133         strm.PutCString("error: the object file ");
1134         GetDescription(strm.AsRawOstream(), lldb::eDescriptionLevelFull);
1135         strm.PutCString(" has been modified\n");
1136 
1137         va_list args;
1138         va_start(args, format);
1139         strm.PrintfVarArg(format, args);
1140         va_end(args);
1141 
1142         const int format_len = strlen(format);
1143         if (format_len > 0) {
1144           const char last_char = format[format_len - 1];
1145           if (last_char != '\n' && last_char != '\r')
1146             strm.EOL();
1147         }
1148         strm.PutCString("The debug session should be aborted as the original "
1149                         "debug information has been overwritten.\n");
1150         Host::SystemLog(Host::eSystemLogError, "%s", strm.GetData());
1151       }
1152     }
1153   }
1154 }
1155 
1156 void Module::ReportWarning(const char *format, ...) {
1157   if (format && format[0]) {
1158     StreamString strm;
1159     strm.PutCString("warning: ");
1160     GetDescription(strm.AsRawOstream(), lldb::eDescriptionLevelFull);
1161     strm.PutChar(' ');
1162 
1163     va_list args;
1164     va_start(args, format);
1165     strm.PrintfVarArg(format, args);
1166     va_end(args);
1167 
1168     const int format_len = strlen(format);
1169     if (format_len > 0) {
1170       const char last_char = format[format_len - 1];
1171       if (last_char != '\n' && last_char != '\r')
1172         strm.EOL();
1173     }
1174     Host::SystemLog(Host::eSystemLogWarning, "%s", strm.GetData());
1175   }
1176 }
1177 
1178 void Module::LogMessage(Log *log, const char *format, ...) {
1179   if (log != nullptr) {
1180     StreamString log_message;
1181     GetDescription(log_message.AsRawOstream(), lldb::eDescriptionLevelFull);
1182     log_message.PutCString(": ");
1183     va_list args;
1184     va_start(args, format);
1185     log_message.PrintfVarArg(format, args);
1186     va_end(args);
1187     log->PutCString(log_message.GetData());
1188   }
1189 }
1190 
1191 void Module::LogMessageVerboseBacktrace(Log *log, const char *format, ...) {
1192   if (log != nullptr) {
1193     StreamString log_message;
1194     GetDescription(log_message.AsRawOstream(), lldb::eDescriptionLevelFull);
1195     log_message.PutCString(": ");
1196     va_list args;
1197     va_start(args, format);
1198     log_message.PrintfVarArg(format, args);
1199     va_end(args);
1200     if (log->GetVerbose()) {
1201       std::string back_trace;
1202       llvm::raw_string_ostream stream(back_trace);
1203       llvm::sys::PrintStackTrace(stream);
1204       log_message.PutCString(back_trace);
1205     }
1206     log->PutCString(log_message.GetData());
1207   }
1208 }
1209 
1210 void Module::Dump(Stream *s) {
1211   std::lock_guard<std::recursive_mutex> guard(m_mutex);
1212   // s->Printf("%.*p: ", (int)sizeof(void*) * 2, this);
1213   s->Indent();
1214   s->Printf("Module %s%s%s%s\n", m_file.GetPath().c_str(),
1215             m_object_name ? "(" : "",
1216             m_object_name ? m_object_name.GetCString() : "",
1217             m_object_name ? ")" : "");
1218 
1219   s->IndentMore();
1220 
1221   ObjectFile *objfile = GetObjectFile();
1222   if (objfile)
1223     objfile->Dump(s);
1224 
1225   if (SymbolFile *symbols = GetSymbolFile())
1226     symbols->Dump(*s);
1227 
1228   s->IndentLess();
1229 }
1230 
1231 ConstString Module::GetObjectName() const { return m_object_name; }
1232 
1233 ObjectFile *Module::GetObjectFile() {
1234   if (!m_did_load_objfile.load()) {
1235     std::lock_guard<std::recursive_mutex> guard(m_mutex);
1236     if (!m_did_load_objfile.load()) {
1237       LLDB_SCOPED_TIMERF("Module::GetObjectFile () module = %s",
1238                          GetFileSpec().GetFilename().AsCString(""));
1239       lldb::offset_t data_offset = 0;
1240       lldb::offset_t file_size = 0;
1241 
1242       if (m_data_sp)
1243         file_size = m_data_sp->GetByteSize();
1244       else if (m_file)
1245         file_size = FileSystem::Instance().GetByteSize(m_file);
1246 
1247       if (file_size > m_object_offset) {
1248         m_did_load_objfile = true;
1249         // FindPlugin will modify its data_sp argument. Do not let it
1250         // modify our m_data_sp member.
1251         auto data_sp = m_data_sp;
1252         m_objfile_sp = ObjectFile::FindPlugin(
1253             shared_from_this(), &m_file, m_object_offset,
1254             file_size - m_object_offset, data_sp, data_offset);
1255         if (m_objfile_sp) {
1256           // Once we get the object file, update our module with the object
1257           // file's architecture since it might differ in vendor/os if some
1258           // parts were unknown.  But since the matching arch might already be
1259           // more specific than the generic COFF architecture, only merge in
1260           // those values that overwrite unspecified unknown values.
1261           m_arch.MergeFrom(m_objfile_sp->GetArchitecture());
1262         } else {
1263           ReportError("failed to load objfile for %s",
1264                       GetFileSpec().GetPath().c_str());
1265         }
1266       }
1267     }
1268   }
1269   return m_objfile_sp.get();
1270 }
1271 
1272 SectionList *Module::GetSectionList() {
1273   // Populate m_sections_up with sections from objfile.
1274   if (!m_sections_up) {
1275     ObjectFile *obj_file = GetObjectFile();
1276     if (obj_file != nullptr)
1277       obj_file->CreateSections(*GetUnifiedSectionList());
1278   }
1279   return m_sections_up.get();
1280 }
1281 
1282 void Module::SectionFileAddressesChanged() {
1283   ObjectFile *obj_file = GetObjectFile();
1284   if (obj_file)
1285     obj_file->SectionFileAddressesChanged();
1286   if (SymbolFile *symbols = GetSymbolFile())
1287     symbols->SectionFileAddressesChanged();
1288 }
1289 
1290 UnwindTable &Module::GetUnwindTable() {
1291   if (!m_unwind_table)
1292     m_unwind_table.emplace(*this);
1293   return *m_unwind_table;
1294 }
1295 
1296 SectionList *Module::GetUnifiedSectionList() {
1297   if (!m_sections_up)
1298     m_sections_up = std::make_unique<SectionList>();
1299   return m_sections_up.get();
1300 }
1301 
1302 const Symbol *Module::FindFirstSymbolWithNameAndType(ConstString name,
1303                                                      SymbolType symbol_type) {
1304   LLDB_SCOPED_TIMERF(
1305       "Module::FindFirstSymbolWithNameAndType (name = %s, type = %i)",
1306       name.AsCString(), symbol_type);
1307   if (Symtab *symtab = GetSymtab())
1308     return symtab->FindFirstSymbolWithNameAndType(
1309         name, symbol_type, Symtab::eDebugAny, Symtab::eVisibilityAny);
1310   return nullptr;
1311 }
1312 void Module::SymbolIndicesToSymbolContextList(
1313     Symtab *symtab, std::vector<uint32_t> &symbol_indexes,
1314     SymbolContextList &sc_list) {
1315   // No need to protect this call using m_mutex all other method calls are
1316   // already thread safe.
1317 
1318   size_t num_indices = symbol_indexes.size();
1319   if (num_indices > 0) {
1320     SymbolContext sc;
1321     CalculateSymbolContext(&sc);
1322     for (size_t i = 0; i < num_indices; i++) {
1323       sc.symbol = symtab->SymbolAtIndex(symbol_indexes[i]);
1324       if (sc.symbol)
1325         sc_list.Append(sc);
1326     }
1327   }
1328 }
1329 
1330 void Module::FindFunctionSymbols(ConstString name,
1331                                    uint32_t name_type_mask,
1332                                    SymbolContextList &sc_list) {
1333   LLDB_SCOPED_TIMERF("Module::FindSymbolsFunctions (name = %s, mask = 0x%8.8x)",
1334                      name.AsCString(), name_type_mask);
1335   if (Symtab *symtab = GetSymtab())
1336     symtab->FindFunctionSymbols(name, name_type_mask, sc_list);
1337 }
1338 
1339 void Module::FindSymbolsWithNameAndType(ConstString name,
1340                                           SymbolType symbol_type,
1341                                           SymbolContextList &sc_list) {
1342   // No need to protect this call using m_mutex all other method calls are
1343   // already thread safe.
1344   LLDB_SCOPED_TIMERF(
1345       "Module::FindSymbolsWithNameAndType (name = %s, type = %i)",
1346       name.AsCString(), symbol_type);
1347   if (Symtab *symtab = GetSymtab()) {
1348     std::vector<uint32_t> symbol_indexes;
1349     symtab->FindAllSymbolsWithNameAndType(name, symbol_type, symbol_indexes);
1350     SymbolIndicesToSymbolContextList(symtab, symbol_indexes, sc_list);
1351   }
1352 }
1353 
1354 void Module::FindSymbolsMatchingRegExAndType(const RegularExpression &regex,
1355                                              SymbolType symbol_type,
1356                                              SymbolContextList &sc_list) {
1357   // No need to protect this call using m_mutex all other method calls are
1358   // already thread safe.
1359   LLDB_SCOPED_TIMERF(
1360       "Module::FindSymbolsMatchingRegExAndType (regex = %s, type = %i)",
1361       regex.GetText().str().c_str(), symbol_type);
1362   if (Symtab *symtab = GetSymtab()) {
1363     std::vector<uint32_t> symbol_indexes;
1364     symtab->FindAllSymbolsMatchingRexExAndType(
1365         regex, symbol_type, Symtab::eDebugAny, Symtab::eVisibilityAny,
1366         symbol_indexes);
1367     SymbolIndicesToSymbolContextList(symtab, symbol_indexes, sc_list);
1368   }
1369 }
1370 
1371 void Module::PreloadSymbols() {
1372   std::lock_guard<std::recursive_mutex> guard(m_mutex);
1373   SymbolFile *sym_file = GetSymbolFile();
1374   if (!sym_file)
1375     return;
1376 
1377   // Prime the symbol file first, since it adds symbols to the symbol table.
1378   sym_file->PreloadSymbols();
1379 
1380   // Now we can prime the symbol table.
1381   if (Symtab *symtab = sym_file->GetSymtab())
1382     symtab->PreloadSymbols();
1383 }
1384 
1385 void Module::SetSymbolFileFileSpec(const FileSpec &file) {
1386   if (!FileSystem::Instance().Exists(file))
1387     return;
1388   if (m_symfile_up) {
1389     // Remove any sections in the unified section list that come from the
1390     // current symbol vendor.
1391     SectionList *section_list = GetSectionList();
1392     SymbolFile *symbol_file = GetSymbolFile();
1393     if (section_list && symbol_file) {
1394       ObjectFile *obj_file = symbol_file->GetObjectFile();
1395       // Make sure we have an object file and that the symbol vendor's objfile
1396       // isn't the same as the module's objfile before we remove any sections
1397       // for it...
1398       if (obj_file) {
1399         // Check to make sure we aren't trying to specify the file we already
1400         // have
1401         if (obj_file->GetFileSpec() == file) {
1402           // We are being told to add the exact same file that we already have
1403           // we don't have to do anything.
1404           return;
1405         }
1406 
1407         // Cleare the current symtab as we are going to replace it with a new
1408         // one
1409         obj_file->ClearSymtab();
1410 
1411         // Clear the unwind table too, as that may also be affected by the
1412         // symbol file information.
1413         m_unwind_table.reset();
1414 
1415         // The symbol file might be a directory bundle ("/tmp/a.out.dSYM")
1416         // instead of a full path to the symbol file within the bundle
1417         // ("/tmp/a.out.dSYM/Contents/Resources/DWARF/a.out"). So we need to
1418         // check this
1419 
1420         if (FileSystem::Instance().IsDirectory(file)) {
1421           std::string new_path(file.GetPath());
1422           std::string old_path(obj_file->GetFileSpec().GetPath());
1423           if (llvm::StringRef(old_path).startswith(new_path)) {
1424             // We specified the same bundle as the symbol file that we already
1425             // have
1426             return;
1427           }
1428         }
1429 
1430         if (obj_file != m_objfile_sp.get()) {
1431           size_t num_sections = section_list->GetNumSections(0);
1432           for (size_t idx = num_sections; idx > 0; --idx) {
1433             lldb::SectionSP section_sp(
1434                 section_list->GetSectionAtIndex(idx - 1));
1435             if (section_sp->GetObjectFile() == obj_file) {
1436               section_list->DeleteSection(idx - 1);
1437             }
1438           }
1439         }
1440       }
1441     }
1442     // Keep all old symbol files around in case there are any lingering type
1443     // references in any SBValue objects that might have been handed out.
1444     m_old_symfiles.push_back(std::move(m_symfile_up));
1445   }
1446   m_symfile_spec = file;
1447   m_symfile_up.reset();
1448   m_did_load_symfile = false;
1449 }
1450 
1451 bool Module::IsExecutable() {
1452   if (GetObjectFile() == nullptr)
1453     return false;
1454   else
1455     return GetObjectFile()->IsExecutable();
1456 }
1457 
1458 bool Module::IsLoadedInTarget(Target *target) {
1459   ObjectFile *obj_file = GetObjectFile();
1460   if (obj_file) {
1461     SectionList *sections = GetSectionList();
1462     if (sections != nullptr) {
1463       size_t num_sections = sections->GetSize();
1464       for (size_t sect_idx = 0; sect_idx < num_sections; sect_idx++) {
1465         SectionSP section_sp = sections->GetSectionAtIndex(sect_idx);
1466         if (section_sp->GetLoadBaseAddress(target) != LLDB_INVALID_ADDRESS) {
1467           return true;
1468         }
1469       }
1470     }
1471   }
1472   return false;
1473 }
1474 
1475 bool Module::LoadScriptingResourceInTarget(Target *target, Status &error,
1476                                            Stream *feedback_stream) {
1477   if (!target) {
1478     error.SetErrorString("invalid destination Target");
1479     return false;
1480   }
1481 
1482   LoadScriptFromSymFile should_load =
1483       target->TargetProperties::GetLoadScriptFromSymbolFile();
1484 
1485   if (should_load == eLoadScriptFromSymFileFalse)
1486     return false;
1487 
1488   Debugger &debugger = target->GetDebugger();
1489   const ScriptLanguage script_language = debugger.GetScriptLanguage();
1490   if (script_language != eScriptLanguageNone) {
1491 
1492     PlatformSP platform_sp(target->GetPlatform());
1493 
1494     if (!platform_sp) {
1495       error.SetErrorString("invalid Platform");
1496       return false;
1497     }
1498 
1499     FileSpecList file_specs = platform_sp->LocateExecutableScriptingResources(
1500         target, *this, feedback_stream);
1501 
1502     const uint32_t num_specs = file_specs.GetSize();
1503     if (num_specs) {
1504       ScriptInterpreter *script_interpreter = debugger.GetScriptInterpreter();
1505       if (script_interpreter) {
1506         for (uint32_t i = 0; i < num_specs; ++i) {
1507           FileSpec scripting_fspec(file_specs.GetFileSpecAtIndex(i));
1508           if (scripting_fspec &&
1509               FileSystem::Instance().Exists(scripting_fspec)) {
1510             if (should_load == eLoadScriptFromSymFileWarn) {
1511               if (feedback_stream)
1512                 feedback_stream->Printf(
1513                     "warning: '%s' contains a debug script. To run this script "
1514                     "in "
1515                     "this debug session:\n\n    command script import "
1516                     "\"%s\"\n\n"
1517                     "To run all discovered debug scripts in this session:\n\n"
1518                     "    settings set target.load-script-from-symbol-file "
1519                     "true\n",
1520                     GetFileSpec().GetFileNameStrippingExtension().GetCString(),
1521                     scripting_fspec.GetPath().c_str());
1522               return false;
1523             }
1524             StreamString scripting_stream;
1525             scripting_fspec.Dump(scripting_stream.AsRawOstream());
1526             const bool init_lldb_globals = false;
1527             bool did_load = script_interpreter->LoadScriptingModule(
1528                 scripting_stream.GetData(), init_lldb_globals, error);
1529             if (!did_load)
1530               return false;
1531           }
1532         }
1533       } else {
1534         error.SetErrorString("invalid ScriptInterpreter");
1535         return false;
1536       }
1537     }
1538   }
1539   return true;
1540 }
1541 
1542 bool Module::SetArchitecture(const ArchSpec &new_arch) {
1543   if (!m_arch.IsValid()) {
1544     m_arch = new_arch;
1545     return true;
1546   }
1547   return m_arch.IsCompatibleMatch(new_arch);
1548 }
1549 
1550 bool Module::SetLoadAddress(Target &target, lldb::addr_t value,
1551                             bool value_is_offset, bool &changed) {
1552   ObjectFile *object_file = GetObjectFile();
1553   if (object_file != nullptr) {
1554     changed = object_file->SetLoadAddress(target, value, value_is_offset);
1555     return true;
1556   } else {
1557     changed = false;
1558   }
1559   return false;
1560 }
1561 
1562 bool Module::MatchesModuleSpec(const ModuleSpec &module_ref) {
1563   const UUID &uuid = module_ref.GetUUID();
1564 
1565   if (uuid.IsValid()) {
1566     // If the UUID matches, then nothing more needs to match...
1567     return (uuid == GetUUID());
1568   }
1569 
1570   const FileSpec &file_spec = module_ref.GetFileSpec();
1571   if (!FileSpec::Match(file_spec, m_file) &&
1572       !FileSpec::Match(file_spec, m_platform_file))
1573     return false;
1574 
1575   const FileSpec &platform_file_spec = module_ref.GetPlatformFileSpec();
1576   if (!FileSpec::Match(platform_file_spec, GetPlatformFileSpec()))
1577     return false;
1578 
1579   const ArchSpec &arch = module_ref.GetArchitecture();
1580   if (arch.IsValid()) {
1581     if (!m_arch.IsCompatibleMatch(arch))
1582       return false;
1583   }
1584 
1585   ConstString object_name = module_ref.GetObjectName();
1586   if (object_name) {
1587     if (object_name != GetObjectName())
1588       return false;
1589   }
1590   return true;
1591 }
1592 
1593 bool Module::FindSourceFile(const FileSpec &orig_spec,
1594                             FileSpec &new_spec) const {
1595   std::lock_guard<std::recursive_mutex> guard(m_mutex);
1596   return m_source_mappings.FindFile(orig_spec, new_spec);
1597 }
1598 
1599 bool Module::RemapSourceFile(llvm::StringRef path,
1600                              std::string &new_path) const {
1601   std::lock_guard<std::recursive_mutex> guard(m_mutex);
1602   return m_source_mappings.RemapPath(path, new_path);
1603 }
1604 
1605 void Module::RegisterXcodeSDK(llvm::StringRef sdk_name, llvm::StringRef sysroot) {
1606   XcodeSDK sdk(sdk_name.str());
1607   ConstString sdk_path(HostInfo::GetXcodeSDKPath(sdk));
1608   if (!sdk_path)
1609     return;
1610   // If the SDK changed for a previously registered source path, update it.
1611   // This could happend with -fdebug-prefix-map, otherwise it's unlikely.
1612   ConstString sysroot_cs(sysroot);
1613   if (!m_source_mappings.Replace(sysroot_cs, sdk_path, true))
1614     // In the general case, however, append it to the list.
1615     m_source_mappings.Append(sysroot_cs, sdk_path, false);
1616 }
1617 
1618 bool Module::MergeArchitecture(const ArchSpec &arch_spec) {
1619   if (!arch_spec.IsValid())
1620     return false;
1621   LLDB_LOG(GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT | LIBLLDB_LOG_MODULES),
1622            "module has arch %s, merging/replacing with arch %s",
1623            m_arch.GetTriple().getTriple().c_str(),
1624            arch_spec.GetTriple().getTriple().c_str());
1625   if (!m_arch.IsCompatibleMatch(arch_spec)) {
1626     // The new architecture is different, we just need to replace it.
1627     return SetArchitecture(arch_spec);
1628   }
1629 
1630   // Merge bits from arch_spec into "merged_arch" and set our architecture.
1631   ArchSpec merged_arch(m_arch);
1632   merged_arch.MergeFrom(arch_spec);
1633   // SetArchitecture() is a no-op if m_arch is already valid.
1634   m_arch = ArchSpec();
1635   return SetArchitecture(merged_arch);
1636 }
1637 
1638 llvm::VersionTuple Module::GetVersion() {
1639   if (ObjectFile *obj_file = GetObjectFile())
1640     return obj_file->GetVersion();
1641   return llvm::VersionTuple();
1642 }
1643 
1644 bool Module::GetIsDynamicLinkEditor() {
1645   ObjectFile *obj_file = GetObjectFile();
1646 
1647   if (obj_file)
1648     return obj_file->GetIsDynamicLinkEditor();
1649 
1650   return false;
1651 }
1652