SymbolFileDWARF.cpp revision bcb0adc2d1d32baa111c0a11eded0e2b4fbef383
1//===-- SymbolFileDWARF.cpp ------------------------------------*- C++ -*-===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "SymbolFileDWARF.h"
11
12// Other libraries and framework includes
13#include "clang/AST/ASTConsumer.h"
14#include "clang/AST/ASTContext.h"
15#include "clang/AST/Decl.h"
16#include "clang/AST/DeclGroup.h"
17#include "clang/AST/DeclObjC.h"
18#include "clang/Basic/Builtins.h"
19#include "clang/Basic/IdentifierTable.h"
20#include "clang/Basic/LangOptions.h"
21#include "clang/Basic/SourceManager.h"
22#include "clang/Basic/TargetInfo.h"
23#include "clang/Basic/Specifiers.h"
24#include "clang/Sema/DeclSpec.h"
25
26#include "llvm/Support/Casting.h"
27
28#include "lldb/Core/Module.h"
29#include "lldb/Core/PluginManager.h"
30#include "lldb/Core/RegularExpression.h"
31#include "lldb/Core/Scalar.h"
32#include "lldb/Core/Section.h"
33#include "lldb/Core/StreamFile.h"
34#include "lldb/Core/StreamString.h"
35#include "lldb/Core/Timer.h"
36#include "lldb/Core/Value.h"
37
38#include "lldb/Host/Host.h"
39
40#include "lldb/Symbol/Block.h"
41#include "lldb/Symbol/ClangExternalASTSourceCallbacks.h"
42#include "lldb/Symbol/CompileUnit.h"
43#include "lldb/Symbol/LineTable.h"
44#include "lldb/Symbol/ObjectFile.h"
45#include "lldb/Symbol/SymbolVendor.h"
46#include "lldb/Symbol/VariableList.h"
47
48#include "lldb/Target/ObjCLanguageRuntime.h"
49#include "lldb/Target/CPPLanguageRuntime.h"
50
51#include "DWARFCompileUnit.h"
52#include "DWARFDebugAbbrev.h"
53#include "DWARFDebugAranges.h"
54#include "DWARFDebugInfo.h"
55#include "DWARFDebugInfoEntry.h"
56#include "DWARFDebugLine.h"
57#include "DWARFDebugPubnames.h"
58#include "DWARFDebugRanges.h"
59#include "DWARFDIECollection.h"
60#include "DWARFFormValue.h"
61#include "DWARFLocationList.h"
62#include "LogChannelDWARF.h"
63#include "SymbolFileDWARFDebugMap.h"
64
65#include <map>
66
67//#define ENABLE_DEBUG_PRINTF // COMMENT OUT THIS LINE PRIOR TO CHECKIN
68
69#ifdef ENABLE_DEBUG_PRINTF
70#include <stdio.h>
71#define DEBUG_PRINTF(fmt, ...) printf(fmt, ## __VA_ARGS__)
72#else
73#define DEBUG_PRINTF(fmt, ...)
74#endif
75
76#define DIE_IS_BEING_PARSED ((lldb_private::Type*)1)
77
78using namespace lldb;
79using namespace lldb_private;
80
81static inline bool
82DW_TAG_is_function_tag (dw_tag_t tag)
83{
84    return tag == DW_TAG_subprogram || tag == DW_TAG_inlined_subroutine;
85}
86
87static AccessType
88DW_ACCESS_to_AccessType (uint32_t dwarf_accessibility)
89{
90    switch (dwarf_accessibility)
91    {
92        case DW_ACCESS_public:      return eAccessPublic;
93        case DW_ACCESS_private:     return eAccessPrivate;
94        case DW_ACCESS_protected:   return eAccessProtected;
95        default:                    break;
96    }
97    return eAccessNone;
98}
99
100void
101SymbolFileDWARF::Initialize()
102{
103    LogChannelDWARF::Initialize();
104    PluginManager::RegisterPlugin (GetPluginNameStatic(),
105                                   GetPluginDescriptionStatic(),
106                                   CreateInstance);
107}
108
109void
110SymbolFileDWARF::Terminate()
111{
112    PluginManager::UnregisterPlugin (CreateInstance);
113    LogChannelDWARF::Initialize();
114}
115
116
117const char *
118SymbolFileDWARF::GetPluginNameStatic()
119{
120    return "dwarf";
121}
122
123const char *
124SymbolFileDWARF::GetPluginDescriptionStatic()
125{
126    return "DWARF and DWARF3 debug symbol file reader.";
127}
128
129
130SymbolFile*
131SymbolFileDWARF::CreateInstance (ObjectFile* obj_file)
132{
133    return new SymbolFileDWARF(obj_file);
134}
135
136TypeList *
137SymbolFileDWARF::GetTypeList ()
138{
139    if (m_debug_map_symfile)
140        return m_debug_map_symfile->GetTypeList();
141    return m_obj_file->GetModule()->GetTypeList();
142
143}
144
145//----------------------------------------------------------------------
146// Gets the first parent that is a lexical block, function or inlined
147// subroutine, or compile unit.
148//----------------------------------------------------------------------
149static const DWARFDebugInfoEntry *
150GetParentSymbolContextDIE(const DWARFDebugInfoEntry *child_die)
151{
152    const DWARFDebugInfoEntry *die;
153    for (die = child_die->GetParent(); die != NULL; die = die->GetParent())
154    {
155        dw_tag_t tag = die->Tag();
156
157        switch (tag)
158        {
159        case DW_TAG_compile_unit:
160        case DW_TAG_subprogram:
161        case DW_TAG_inlined_subroutine:
162        case DW_TAG_lexical_block:
163            return die;
164        }
165    }
166    return NULL;
167}
168
169
170SymbolFileDWARF::SymbolFileDWARF(ObjectFile* objfile) :
171    SymbolFile (objfile),
172    UserID (0),  // Used by SymbolFileDWARFDebugMap to when this class parses .o files to contain the .o file index/ID
173    m_debug_map_symfile (NULL),
174    m_clang_tu_decl (NULL),
175    m_flags(),
176    m_data_debug_abbrev (),
177    m_data_debug_aranges (),
178    m_data_debug_frame (),
179    m_data_debug_info (),
180    m_data_debug_line (),
181    m_data_debug_loc (),
182    m_data_debug_ranges (),
183    m_data_debug_str (),
184    m_data_apple_names (),
185    m_data_apple_types (),
186    m_data_apple_namespaces (),
187    m_abbr(),
188    m_info(),
189    m_line(),
190    m_apple_names_ap (),
191    m_apple_types_ap (),
192    m_apple_namespaces_ap (),
193    m_apple_objc_ap (),
194    m_function_basename_index(),
195    m_function_fullname_index(),
196    m_function_method_index(),
197    m_function_selector_index(),
198    m_objc_class_selectors_index(),
199    m_global_index(),
200    m_type_index(),
201    m_namespace_index(),
202    m_indexed (false),
203    m_is_external_ast_source (false),
204    m_using_apple_tables (false),
205    m_ranges(),
206    m_unique_ast_type_map ()
207{
208}
209
210SymbolFileDWARF::~SymbolFileDWARF()
211{
212    if (m_is_external_ast_source)
213        m_obj_file->GetModule()->GetClangASTContext().RemoveExternalSource ();
214}
215
216static const ConstString &
217GetDWARFMachOSegmentName ()
218{
219    static ConstString g_dwarf_section_name ("__DWARF");
220    return g_dwarf_section_name;
221}
222
223UniqueDWARFASTTypeMap &
224SymbolFileDWARF::GetUniqueDWARFASTTypeMap ()
225{
226    if (m_debug_map_symfile)
227        return m_debug_map_symfile->GetUniqueDWARFASTTypeMap ();
228    return m_unique_ast_type_map;
229}
230
231ClangASTContext &
232SymbolFileDWARF::GetClangASTContext ()
233{
234    if (m_debug_map_symfile)
235        return m_debug_map_symfile->GetClangASTContext ();
236
237    ClangASTContext &ast = m_obj_file->GetModule()->GetClangASTContext();
238    if (!m_is_external_ast_source)
239    {
240        m_is_external_ast_source = true;
241        llvm::OwningPtr<clang::ExternalASTSource> ast_source_ap (
242            new ClangExternalASTSourceCallbacks (SymbolFileDWARF::CompleteTagDecl,
243                                                 SymbolFileDWARF::CompleteObjCInterfaceDecl,
244                                                 SymbolFileDWARF::FindExternalVisibleDeclsByName,
245                                                 this));
246
247        ast.SetExternalSource (ast_source_ap);
248    }
249    return ast;
250}
251
252void
253SymbolFileDWARF::InitializeObject()
254{
255    // Install our external AST source callbacks so we can complete Clang types.
256    Module *module = m_obj_file->GetModule();
257    if (module)
258    {
259        const SectionList *section_list = m_obj_file->GetSectionList();
260
261        const Section* section = section_list->FindSectionByName(GetDWARFMachOSegmentName ()).get();
262
263        // Memory map the DWARF mach-o segment so we have everything mmap'ed
264        // to keep our heap memory usage down.
265        if (section)
266            section->MemoryMapSectionDataFromObjectFile(m_obj_file, m_dwarf_data);
267    }
268    get_apple_names_data();
269    if (m_data_apple_names.GetByteSize() > 0)
270    {
271        m_apple_names_ap.reset (new DWARFMappedHash::MemoryTable (m_data_apple_names, get_debug_str_data(), ".apple_names"));
272        if (m_apple_names_ap->IsValid())
273            m_using_apple_tables = true;
274        else
275            m_apple_names_ap.reset();
276    }
277    get_apple_types_data();
278    if (m_data_apple_types.GetByteSize() > 0)
279    {
280        m_apple_types_ap.reset (new DWARFMappedHash::MemoryTable (m_data_apple_types, get_debug_str_data(), ".apple_types"));
281        if (m_apple_types_ap->IsValid())
282            m_using_apple_tables = true;
283        else
284            m_apple_types_ap.reset();
285    }
286
287    get_apple_namespaces_data();
288    if (m_data_apple_namespaces.GetByteSize() > 0)
289    {
290        m_apple_namespaces_ap.reset (new DWARFMappedHash::MemoryTable (m_data_apple_namespaces, get_debug_str_data(), ".apple_namespaces"));
291        if (m_apple_namespaces_ap->IsValid())
292            m_using_apple_tables = true;
293        else
294            m_apple_namespaces_ap.reset();
295    }
296
297    get_apple_objc_data();
298    if (m_data_apple_objc.GetByteSize() > 0)
299    {
300        m_apple_objc_ap.reset (new DWARFMappedHash::MemoryTable (m_data_apple_objc, get_debug_str_data(), ".apple_objc"));
301        if (m_apple_objc_ap->IsValid())
302            m_using_apple_tables = true;
303        else
304            m_apple_objc_ap.reset();
305    }
306}
307
308bool
309SymbolFileDWARF::SupportedVersion(uint16_t version)
310{
311    return version == 2 || version == 3;
312}
313
314uint32_t
315SymbolFileDWARF::CalculateAbilities ()
316{
317    uint32_t abilities = 0;
318    if (m_obj_file != NULL)
319    {
320        const Section* section = NULL;
321        const SectionList *section_list = m_obj_file->GetSectionList();
322        if (section_list == NULL)
323            return 0;
324
325        uint64_t debug_abbrev_file_size = 0;
326        uint64_t debug_aranges_file_size = 0;
327        uint64_t debug_frame_file_size = 0;
328        uint64_t debug_info_file_size = 0;
329        uint64_t debug_line_file_size = 0;
330        uint64_t debug_loc_file_size = 0;
331        uint64_t debug_macinfo_file_size = 0;
332        uint64_t debug_pubnames_file_size = 0;
333        uint64_t debug_pubtypes_file_size = 0;
334        uint64_t debug_ranges_file_size = 0;
335        uint64_t debug_str_file_size = 0;
336
337        section = section_list->FindSectionByName(GetDWARFMachOSegmentName ()).get();
338
339        if (section)
340            section_list = &section->GetChildren ();
341
342        section = section_list->FindSectionByType (eSectionTypeDWARFDebugInfo, true).get();
343        if (section != NULL)
344        {
345            debug_info_file_size = section->GetByteSize();
346
347            section = section_list->FindSectionByType (eSectionTypeDWARFDebugAbbrev, true).get();
348            if (section)
349                debug_abbrev_file_size = section->GetByteSize();
350            else
351                m_flags.Set (flagsGotDebugAbbrevData);
352
353            section = section_list->FindSectionByType (eSectionTypeDWARFDebugAranges, true).get();
354            if (section)
355                debug_aranges_file_size = section->GetByteSize();
356            else
357                m_flags.Set (flagsGotDebugArangesData);
358
359            section = section_list->FindSectionByType (eSectionTypeDWARFDebugFrame, true).get();
360            if (section)
361                debug_frame_file_size = section->GetByteSize();
362            else
363                m_flags.Set (flagsGotDebugFrameData);
364
365            section = section_list->FindSectionByType (eSectionTypeDWARFDebugLine, true).get();
366            if (section)
367                debug_line_file_size = section->GetByteSize();
368            else
369                m_flags.Set (flagsGotDebugLineData);
370
371            section = section_list->FindSectionByType (eSectionTypeDWARFDebugLoc, true).get();
372            if (section)
373                debug_loc_file_size = section->GetByteSize();
374            else
375                m_flags.Set (flagsGotDebugLocData);
376
377            section = section_list->FindSectionByType (eSectionTypeDWARFDebugMacInfo, true).get();
378            if (section)
379                debug_macinfo_file_size = section->GetByteSize();
380            else
381                m_flags.Set (flagsGotDebugMacInfoData);
382
383            section = section_list->FindSectionByType (eSectionTypeDWARFDebugPubNames, true).get();
384            if (section)
385                debug_pubnames_file_size = section->GetByteSize();
386            else
387                m_flags.Set (flagsGotDebugPubNamesData);
388
389            section = section_list->FindSectionByType (eSectionTypeDWARFDebugPubTypes, true).get();
390            if (section)
391                debug_pubtypes_file_size = section->GetByteSize();
392            else
393                m_flags.Set (flagsGotDebugPubTypesData);
394
395            section = section_list->FindSectionByType (eSectionTypeDWARFDebugRanges, true).get();
396            if (section)
397                debug_ranges_file_size = section->GetByteSize();
398            else
399                m_flags.Set (flagsGotDebugRangesData);
400
401            section = section_list->FindSectionByType (eSectionTypeDWARFDebugStr, true).get();
402            if (section)
403                debug_str_file_size = section->GetByteSize();
404            else
405                m_flags.Set (flagsGotDebugStrData);
406        }
407
408        if (debug_abbrev_file_size > 0 && debug_info_file_size > 0)
409            abilities |= CompileUnits | Functions | Blocks | GlobalVariables | LocalVariables | VariableTypes;
410
411        if (debug_line_file_size > 0)
412            abilities |= LineTables;
413
414        if (debug_aranges_file_size > 0)
415            abilities |= AddressAcceleratorTable;
416
417        if (debug_pubnames_file_size > 0)
418            abilities |= FunctionAcceleratorTable;
419
420        if (debug_pubtypes_file_size > 0)
421            abilities |= TypeAcceleratorTable;
422
423        if (debug_macinfo_file_size > 0)
424            abilities |= MacroInformation;
425
426        if (debug_frame_file_size > 0)
427            abilities |= CallFrameInformation;
428    }
429    return abilities;
430}
431
432const DataExtractor&
433SymbolFileDWARF::GetCachedSectionData (uint32_t got_flag, SectionType sect_type, DataExtractor &data)
434{
435    if (m_flags.IsClear (got_flag))
436    {
437        m_flags.Set (got_flag);
438        const SectionList *section_list = m_obj_file->GetSectionList();
439        if (section_list)
440        {
441            Section *section = section_list->FindSectionByType(sect_type, true).get();
442            if (section)
443            {
444                // See if we memory mapped the DWARF segment?
445                if (m_dwarf_data.GetByteSize())
446                {
447                    data.SetData(m_dwarf_data, section->GetOffset (), section->GetByteSize());
448                }
449                else
450                {
451                    if (section->ReadSectionDataFromObjectFile(m_obj_file, data) == 0)
452                        data.Clear();
453                }
454            }
455        }
456    }
457    return data;
458}
459
460const DataExtractor&
461SymbolFileDWARF::get_debug_abbrev_data()
462{
463    return GetCachedSectionData (flagsGotDebugAbbrevData, eSectionTypeDWARFDebugAbbrev, m_data_debug_abbrev);
464}
465
466const DataExtractor&
467SymbolFileDWARF::get_debug_aranges_data()
468{
469    return GetCachedSectionData (flagsGotDebugArangesData, eSectionTypeDWARFDebugAranges, m_data_debug_aranges);
470}
471
472const DataExtractor&
473SymbolFileDWARF::get_debug_frame_data()
474{
475    return GetCachedSectionData (flagsGotDebugFrameData, eSectionTypeDWARFDebugFrame, m_data_debug_frame);
476}
477
478const DataExtractor&
479SymbolFileDWARF::get_debug_info_data()
480{
481    return GetCachedSectionData (flagsGotDebugInfoData, eSectionTypeDWARFDebugInfo, m_data_debug_info);
482}
483
484const DataExtractor&
485SymbolFileDWARF::get_debug_line_data()
486{
487    return GetCachedSectionData (flagsGotDebugLineData, eSectionTypeDWARFDebugLine, m_data_debug_line);
488}
489
490const DataExtractor&
491SymbolFileDWARF::get_debug_loc_data()
492{
493    return GetCachedSectionData (flagsGotDebugLocData, eSectionTypeDWARFDebugLoc, m_data_debug_loc);
494}
495
496const DataExtractor&
497SymbolFileDWARF::get_debug_ranges_data()
498{
499    return GetCachedSectionData (flagsGotDebugRangesData, eSectionTypeDWARFDebugRanges, m_data_debug_ranges);
500}
501
502const DataExtractor&
503SymbolFileDWARF::get_debug_str_data()
504{
505    return GetCachedSectionData (flagsGotDebugStrData, eSectionTypeDWARFDebugStr, m_data_debug_str);
506}
507
508const DataExtractor&
509SymbolFileDWARF::get_apple_names_data()
510{
511    return GetCachedSectionData (flagsGotAppleNamesData, eSectionTypeDWARFAppleNames, m_data_apple_names);
512}
513
514const DataExtractor&
515SymbolFileDWARF::get_apple_types_data()
516{
517    return GetCachedSectionData (flagsGotAppleTypesData, eSectionTypeDWARFAppleTypes, m_data_apple_types);
518}
519
520const DataExtractor&
521SymbolFileDWARF::get_apple_namespaces_data()
522{
523    return GetCachedSectionData (flagsGotAppleNamespacesData, eSectionTypeDWARFAppleNamespaces, m_data_apple_namespaces);
524}
525
526const DataExtractor&
527SymbolFileDWARF::get_apple_objc_data()
528{
529    return GetCachedSectionData (flagsGotAppleObjCData, eSectionTypeDWARFAppleObjC, m_data_apple_objc);
530}
531
532
533DWARFDebugAbbrev*
534SymbolFileDWARF::DebugAbbrev()
535{
536    if (m_abbr.get() == NULL)
537    {
538        const DataExtractor &debug_abbrev_data = get_debug_abbrev_data();
539        if (debug_abbrev_data.GetByteSize() > 0)
540        {
541            m_abbr.reset(new DWARFDebugAbbrev());
542            if (m_abbr.get())
543                m_abbr->Parse(debug_abbrev_data);
544        }
545    }
546    return m_abbr.get();
547}
548
549const DWARFDebugAbbrev*
550SymbolFileDWARF::DebugAbbrev() const
551{
552    return m_abbr.get();
553}
554
555
556DWARFDebugInfo*
557SymbolFileDWARF::DebugInfo()
558{
559    if (m_info.get() == NULL)
560    {
561        Timer scoped_timer(__PRETTY_FUNCTION__, "%s this = %p", __PRETTY_FUNCTION__, this);
562        if (get_debug_info_data().GetByteSize() > 0)
563        {
564            m_info.reset(new DWARFDebugInfo());
565            if (m_info.get())
566            {
567                m_info->SetDwarfData(this);
568            }
569        }
570    }
571    return m_info.get();
572}
573
574const DWARFDebugInfo*
575SymbolFileDWARF::DebugInfo() const
576{
577    return m_info.get();
578}
579
580DWARFCompileUnit*
581SymbolFileDWARF::GetDWARFCompileUnitForUID(lldb::user_id_t cu_uid)
582{
583    DWARFDebugInfo* info = DebugInfo();
584    if (info && UserIDMatches(cu_uid))
585        return info->GetCompileUnit((dw_offset_t)cu_uid).get();
586    return NULL;
587}
588
589
590DWARFDebugRanges*
591SymbolFileDWARF::DebugRanges()
592{
593    if (m_ranges.get() == NULL)
594    {
595        Timer scoped_timer(__PRETTY_FUNCTION__, "%s this = %p", __PRETTY_FUNCTION__, this);
596        if (get_debug_ranges_data().GetByteSize() > 0)
597        {
598            m_ranges.reset(new DWARFDebugRanges());
599            if (m_ranges.get())
600                m_ranges->Extract(this);
601        }
602    }
603    return m_ranges.get();
604}
605
606const DWARFDebugRanges*
607SymbolFileDWARF::DebugRanges() const
608{
609    return m_ranges.get();
610}
611
612bool
613SymbolFileDWARF::ParseCompileUnit (DWARFCompileUnit* curr_cu, CompUnitSP& compile_unit_sp)
614{
615    if (curr_cu != NULL)
616    {
617        const DWARFDebugInfoEntry * cu_die = curr_cu->GetCompileUnitDIEOnly ();
618        if (cu_die)
619        {
620            const char * cu_die_name = cu_die->GetName(this, curr_cu);
621            const char * cu_comp_dir = cu_die->GetAttributeValueAsString(this, curr_cu, DW_AT_comp_dir, NULL);
622            LanguageType cu_language = (LanguageType)cu_die->GetAttributeValueAsUnsigned(this, curr_cu, DW_AT_language, 0);
623            if (cu_die_name)
624            {
625                FileSpec cu_file_spec;
626
627                if (cu_die_name[0] == '/' || cu_comp_dir == NULL || cu_comp_dir[0] == '\0')
628                {
629                    // If we have a full path to the compile unit, we don't need to resolve
630                    // the file.  This can be expensive e.g. when the source files are NFS mounted.
631                    cu_file_spec.SetFile (cu_die_name, false);
632                }
633                else
634                {
635                    std::string fullpath(cu_comp_dir);
636                    if (*fullpath.rbegin() != '/')
637                        fullpath += '/';
638                    fullpath += cu_die_name;
639                    cu_file_spec.SetFile (fullpath.c_str(), false);
640                }
641
642                compile_unit_sp.reset(new CompileUnit (m_obj_file->GetModule(),
643                                                       curr_cu,
644                                                       cu_file_spec,
645                                                       MakeUserID(curr_cu->GetOffset()),
646                                                       cu_language));
647                if (compile_unit_sp.get())
648                {
649                    curr_cu->SetUserData(compile_unit_sp.get());
650                    return true;
651                }
652            }
653        }
654    }
655    return false;
656}
657
658uint32_t
659SymbolFileDWARF::GetNumCompileUnits()
660{
661    DWARFDebugInfo* info = DebugInfo();
662    if (info)
663        return info->GetNumCompileUnits();
664    return 0;
665}
666
667CompUnitSP
668SymbolFileDWARF::ParseCompileUnitAtIndex(uint32_t cu_idx)
669{
670    CompUnitSP comp_unit;
671    DWARFDebugInfo* info = DebugInfo();
672    if (info)
673    {
674        DWARFCompileUnit* curr_cu = info->GetCompileUnitAtIndex(cu_idx);
675        if (curr_cu != NULL)
676        {
677            // Our symbol vendor shouldn't be asking us to add a compile unit that
678            // has already been added to it, which this DWARF plug-in knows as it
679            // stores the lldb compile unit (CompileUnit) pointer in each
680            // DWARFCompileUnit object when it gets added.
681            assert(curr_cu->GetUserData() == NULL);
682            ParseCompileUnit(curr_cu, comp_unit);
683        }
684    }
685    return comp_unit;
686}
687
688static void
689AddRangesToBlock (Block& block,
690                  DWARFDebugRanges::RangeList& ranges,
691                  addr_t block_base_addr)
692{
693    const size_t num_ranges = ranges.GetSize();
694    for (size_t i = 0; i<num_ranges; ++i)
695    {
696        const DWARFDebugRanges::Range &range = ranges.GetEntryRef (i);
697        const addr_t range_base = range.GetRangeBase();
698        assert (range_base >= block_base_addr);
699        block.AddRange(Block::Range (range_base - block_base_addr, range.GetByteSize()));;
700    }
701    block.FinalizeRanges ();
702}
703
704
705Function *
706SymbolFileDWARF::ParseCompileUnitFunction (const SymbolContext& sc, DWARFCompileUnit* dwarf_cu, const DWARFDebugInfoEntry *die)
707{
708    DWARFDebugRanges::RangeList func_ranges;
709    const char *name = NULL;
710    const char *mangled = NULL;
711    int decl_file = 0;
712    int decl_line = 0;
713    int decl_column = 0;
714    int call_file = 0;
715    int call_line = 0;
716    int call_column = 0;
717    DWARFExpression frame_base;
718
719    assert (die->Tag() == DW_TAG_subprogram);
720
721    if (die->Tag() != DW_TAG_subprogram)
722        return NULL;
723
724    if (die->GetDIENamesAndRanges(this, dwarf_cu, name, mangled, func_ranges, decl_file, decl_line, decl_column, call_file, call_line, call_column, &frame_base))
725    {
726        // Union of all ranges in the function DIE (if the function is discontiguous)
727        AddressRange func_range;
728        lldb::addr_t lowest_func_addr = func_ranges.GetMinRangeBase (0);
729        lldb::addr_t highest_func_addr = func_ranges.GetMaxRangeEnd (0);
730        if (lowest_func_addr != LLDB_INVALID_ADDRESS && lowest_func_addr <= highest_func_addr)
731        {
732            func_range.GetBaseAddress().ResolveAddressUsingFileSections (lowest_func_addr, m_obj_file->GetSectionList());
733            if (func_range.GetBaseAddress().IsValid())
734                func_range.SetByteSize(highest_func_addr - lowest_func_addr);
735        }
736
737        if (func_range.GetBaseAddress().IsValid())
738        {
739            Mangled func_name;
740            if (mangled)
741                func_name.SetValue(mangled, true);
742            else if (name)
743                func_name.SetValue(name, false);
744
745            FunctionSP func_sp;
746            std::auto_ptr<Declaration> decl_ap;
747            if (decl_file != 0 || decl_line != 0 || decl_column != 0)
748                decl_ap.reset(new Declaration (sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(decl_file),
749                                               decl_line,
750                                               decl_column));
751
752            // Supply the type _only_ if it has already been parsed
753            Type *func_type = m_die_to_type.lookup (die);
754
755            assert(func_type == NULL || func_type != DIE_IS_BEING_PARSED);
756
757            func_range.GetBaseAddress().ResolveLinkedAddress();
758
759            const user_id_t func_user_id = MakeUserID(die->GetOffset());
760            func_sp.reset(new Function (sc.comp_unit,
761                                        func_user_id,       // UserID is the DIE offset
762                                        func_user_id,
763                                        func_name,
764                                        func_type,
765                                        func_range));           // first address range
766
767            if (func_sp.get() != NULL)
768            {
769                if (frame_base.IsValid())
770                    func_sp->GetFrameBaseExpression() = frame_base;
771                sc.comp_unit->AddFunction(func_sp);
772                return func_sp.get();
773            }
774        }
775    }
776    return NULL;
777}
778
779size_t
780SymbolFileDWARF::ParseCompileUnitFunctions(const SymbolContext &sc)
781{
782    assert (sc.comp_unit);
783    size_t functions_added = 0;
784    DWARFCompileUnit* dwarf_cu = GetDWARFCompileUnitForUID(sc.comp_unit->GetID());
785    if (dwarf_cu)
786    {
787        DWARFDIECollection function_dies;
788        const size_t num_funtions = dwarf_cu->AppendDIEsWithTag (DW_TAG_subprogram, function_dies);
789        size_t func_idx;
790        for (func_idx = 0; func_idx < num_funtions; ++func_idx)
791        {
792            const DWARFDebugInfoEntry *die = function_dies.GetDIEPtrAtIndex(func_idx);
793            if (sc.comp_unit->FindFunctionByUID (MakeUserID(die->GetOffset())).get() == NULL)
794            {
795                if (ParseCompileUnitFunction(sc, dwarf_cu, die))
796                    ++functions_added;
797            }
798        }
799        //FixupTypes();
800    }
801    return functions_added;
802}
803
804bool
805SymbolFileDWARF::ParseCompileUnitSupportFiles (const SymbolContext& sc, FileSpecList& support_files)
806{
807    assert (sc.comp_unit);
808    DWARFCompileUnit* curr_cu = GetDWARFCompileUnitForUID(sc.comp_unit->GetID());
809    assert (curr_cu);
810    const DWARFDebugInfoEntry * cu_die = curr_cu->GetCompileUnitDIEOnly();
811
812    if (cu_die)
813    {
814        const char * cu_comp_dir = cu_die->GetAttributeValueAsString(this, curr_cu, DW_AT_comp_dir, NULL);
815        dw_offset_t stmt_list = cu_die->GetAttributeValueAsUnsigned(this, curr_cu, DW_AT_stmt_list, DW_INVALID_OFFSET);
816
817        // All file indexes in DWARF are one based and a file of index zero is
818        // supposed to be the compile unit itself.
819        support_files.Append (*sc.comp_unit);
820
821        return DWARFDebugLine::ParseSupportFiles(get_debug_line_data(), cu_comp_dir, stmt_list, support_files);
822    }
823    return false;
824}
825
826struct ParseDWARFLineTableCallbackInfo
827{
828    LineTable* line_table;
829    const SectionList *section_list;
830    lldb::addr_t prev_sect_file_base_addr;
831    lldb::addr_t curr_sect_file_base_addr;
832    bool is_oso_for_debug_map;
833    bool prev_in_final_executable;
834    DWARFDebugLine::Row prev_row;
835    SectionSP prev_section_sp;
836    SectionSP curr_section_sp;
837};
838
839//----------------------------------------------------------------------
840// ParseStatementTableCallback
841//----------------------------------------------------------------------
842static void
843ParseDWARFLineTableCallback(dw_offset_t offset, const DWARFDebugLine::State& state, void* userData)
844{
845    LineTable* line_table = ((ParseDWARFLineTableCallbackInfo*)userData)->line_table;
846    if (state.row == DWARFDebugLine::State::StartParsingLineTable)
847    {
848        // Just started parsing the line table
849    }
850    else if (state.row == DWARFDebugLine::State::DoneParsingLineTable)
851    {
852        // Done parsing line table, nothing to do for the cleanup
853    }
854    else
855    {
856        ParseDWARFLineTableCallbackInfo* info = (ParseDWARFLineTableCallbackInfo*)userData;
857        // We have a new row, lets append it
858
859        if (info->curr_section_sp.get() == NULL || info->curr_section_sp->ContainsFileAddress(state.address) == false)
860        {
861            info->prev_section_sp = info->curr_section_sp;
862            info->prev_sect_file_base_addr = info->curr_sect_file_base_addr;
863            // If this is an end sequence entry, then we subtract one from the
864            // address to make sure we get an address that is not the end of
865            // a section.
866            if (state.end_sequence && state.address != 0)
867                info->curr_section_sp = info->section_list->FindSectionContainingFileAddress (state.address - 1);
868            else
869                info->curr_section_sp = info->section_list->FindSectionContainingFileAddress (state.address);
870
871            if (info->curr_section_sp.get())
872                info->curr_sect_file_base_addr = info->curr_section_sp->GetFileAddress ();
873            else
874                info->curr_sect_file_base_addr = 0;
875        }
876        if (info->curr_section_sp.get())
877        {
878            lldb::addr_t curr_line_section_offset = state.address - info->curr_sect_file_base_addr;
879            // Check for the fancy section magic to determine if we
880
881            if (info->is_oso_for_debug_map)
882            {
883                // When this is a debug map object file that contains DWARF
884                // (referenced from an N_OSO debug map nlist entry) we will have
885                // a file address in the file range for our section from the
886                // original .o file, and a load address in the executable that
887                // contains the debug map.
888                //
889                // If the sections for the file range and load range are
890                // different, we have a remapped section for the function and
891                // this address is resolved. If they are the same, then the
892                // function for this address didn't make it into the final
893                // executable.
894                bool curr_in_final_executable = info->curr_section_sp->GetLinkedSection () != NULL;
895
896                // If we are doing DWARF with debug map, then we need to carefully
897                // add each line table entry as there may be gaps as functions
898                // get moved around or removed.
899                if (!info->prev_row.end_sequence && info->prev_section_sp.get())
900                {
901                    if (info->prev_in_final_executable)
902                    {
903                        bool terminate_previous_entry = false;
904                        if (!curr_in_final_executable)
905                        {
906                            // Check for the case where the previous line entry
907                            // in a function made it into the final executable,
908                            // yet the current line entry falls in a function
909                            // that didn't. The line table used to be contiguous
910                            // through this address range but now it isn't. We
911                            // need to terminate the previous line entry so
912                            // that we can reconstruct the line range correctly
913                            // for it and to keep the line table correct.
914                            terminate_previous_entry = true;
915                        }
916                        else if (info->curr_section_sp.get() != info->prev_section_sp.get())
917                        {
918                            // Check for cases where the line entries used to be
919                            // contiguous address ranges, but now they aren't.
920                            // This can happen when order files specify the
921                            // ordering of the functions.
922                            lldb::addr_t prev_line_section_offset = info->prev_row.address - info->prev_sect_file_base_addr;
923                            Section *curr_sect = info->curr_section_sp.get();
924                            Section *prev_sect = info->prev_section_sp.get();
925                            assert (curr_sect->GetLinkedSection());
926                            assert (prev_sect->GetLinkedSection());
927                            lldb::addr_t object_file_addr_delta = state.address - info->prev_row.address;
928                            lldb::addr_t curr_linked_file_addr = curr_sect->GetLinkedFileAddress() + curr_line_section_offset;
929                            lldb::addr_t prev_linked_file_addr = prev_sect->GetLinkedFileAddress() + prev_line_section_offset;
930                            lldb::addr_t linked_file_addr_delta = curr_linked_file_addr - prev_linked_file_addr;
931                            if (object_file_addr_delta != linked_file_addr_delta)
932                                terminate_previous_entry = true;
933                        }
934
935                        if (terminate_previous_entry)
936                        {
937                            line_table->InsertLineEntry (info->prev_section_sp,
938                                                         state.address - info->prev_sect_file_base_addr,
939                                                         info->prev_row.line,
940                                                         info->prev_row.column,
941                                                         info->prev_row.file,
942                                                         false,                 // is_stmt
943                                                         false,                 // basic_block
944                                                         false,                 // state.prologue_end
945                                                         false,                 // state.epilogue_begin
946                                                         true);                 // end_sequence);
947                        }
948                    }
949                }
950
951                if (curr_in_final_executable)
952                {
953                    line_table->InsertLineEntry (info->curr_section_sp,
954                                                 curr_line_section_offset,
955                                                 state.line,
956                                                 state.column,
957                                                 state.file,
958                                                 state.is_stmt,
959                                                 state.basic_block,
960                                                 state.prologue_end,
961                                                 state.epilogue_begin,
962                                                 state.end_sequence);
963                    info->prev_section_sp = info->curr_section_sp;
964                }
965                else
966                {
967                    // If the current address didn't make it into the final
968                    // executable, the current section will be the __text
969                    // segment in the .o file, so we need to clear this so
970                    // we can catch the next function that did make it into
971                    // the final executable.
972                    info->prev_section_sp.reset();
973                    info->curr_section_sp.reset();
974                }
975
976                info->prev_in_final_executable = curr_in_final_executable;
977            }
978            else
979            {
980                // We are not in an object file that contains DWARF for an
981                // N_OSO, this is just a normal DWARF file. The DWARF spec
982                // guarantees that the addresses will be in increasing order
983                // so, since we store line tables in file address order, we
984                // can always just append the line entry without needing to
985                // search for the correct insertion point (we don't need to
986                // use LineEntry::InsertLineEntry()).
987                line_table->AppendLineEntry (info->curr_section_sp,
988                                             curr_line_section_offset,
989                                             state.line,
990                                             state.column,
991                                             state.file,
992                                             state.is_stmt,
993                                             state.basic_block,
994                                             state.prologue_end,
995                                             state.epilogue_begin,
996                                             state.end_sequence);
997            }
998        }
999
1000        info->prev_row = state;
1001    }
1002}
1003
1004bool
1005SymbolFileDWARF::ParseCompileUnitLineTable (const SymbolContext &sc)
1006{
1007    assert (sc.comp_unit);
1008    if (sc.comp_unit->GetLineTable() != NULL)
1009        return true;
1010
1011    DWARFCompileUnit* dwarf_cu = GetDWARFCompileUnitForUID(sc.comp_unit->GetID());
1012    if (dwarf_cu)
1013    {
1014        const DWARFDebugInfoEntry *dwarf_cu_die = dwarf_cu->GetCompileUnitDIEOnly();
1015        if (dwarf_cu_die)
1016        {
1017            const dw_offset_t cu_line_offset = dwarf_cu_die->GetAttributeValueAsUnsigned(this, dwarf_cu, DW_AT_stmt_list, DW_INVALID_OFFSET);
1018            if (cu_line_offset != DW_INVALID_OFFSET)
1019            {
1020                std::auto_ptr<LineTable> line_table_ap(new LineTable(sc.comp_unit));
1021                if (line_table_ap.get())
1022                {
1023                    ParseDWARFLineTableCallbackInfo info = {
1024                        line_table_ap.get(),
1025                        m_obj_file->GetSectionList(),
1026                        0,
1027                        0,
1028                        m_debug_map_symfile != NULL,
1029                        false,
1030                        DWARFDebugLine::Row(),
1031                        SectionSP(),
1032                        SectionSP()
1033                    };
1034                    uint32_t offset = cu_line_offset;
1035                    DWARFDebugLine::ParseStatementTable(get_debug_line_data(), &offset, ParseDWARFLineTableCallback, &info);
1036                    sc.comp_unit->SetLineTable(line_table_ap.release());
1037                    return true;
1038                }
1039            }
1040        }
1041    }
1042    return false;
1043}
1044
1045size_t
1046SymbolFileDWARF::ParseFunctionBlocks
1047(
1048    const SymbolContext& sc,
1049    Block *parent_block,
1050    DWARFCompileUnit* dwarf_cu,
1051    const DWARFDebugInfoEntry *die,
1052    addr_t subprogram_low_pc,
1053    uint32_t depth
1054)
1055{
1056    size_t blocks_added = 0;
1057    while (die != NULL)
1058    {
1059        dw_tag_t tag = die->Tag();
1060
1061        switch (tag)
1062        {
1063        case DW_TAG_inlined_subroutine:
1064        case DW_TAG_subprogram:
1065        case DW_TAG_lexical_block:
1066            {
1067                Block *block = NULL;
1068                if (tag == DW_TAG_subprogram)
1069                {
1070                    // Skip any DW_TAG_subprogram DIEs that are inside
1071                    // of a normal or inlined functions. These will be
1072                    // parsed on their own as separate entities.
1073
1074                    if (depth > 0)
1075                        break;
1076
1077                    block = parent_block;
1078                }
1079                else
1080                {
1081                    BlockSP block_sp(new Block (MakeUserID(die->GetOffset())));
1082                    parent_block->AddChild(block_sp);
1083                    block = block_sp.get();
1084                }
1085                DWARFDebugRanges::RangeList ranges;
1086                const char *name = NULL;
1087                const char *mangled_name = NULL;
1088
1089                int decl_file = 0;
1090                int decl_line = 0;
1091                int decl_column = 0;
1092                int call_file = 0;
1093                int call_line = 0;
1094                int call_column = 0;
1095                if (die->GetDIENamesAndRanges (this,
1096                                               dwarf_cu,
1097                                               name,
1098                                               mangled_name,
1099                                               ranges,
1100                                               decl_file, decl_line, decl_column,
1101                                               call_file, call_line, call_column))
1102                {
1103                    if (tag == DW_TAG_subprogram)
1104                    {
1105                        assert (subprogram_low_pc == LLDB_INVALID_ADDRESS);
1106                        subprogram_low_pc = ranges.GetMinRangeBase(0);
1107                    }
1108                    else if (tag == DW_TAG_inlined_subroutine)
1109                    {
1110                        // We get called here for inlined subroutines in two ways.
1111                        // The first time is when we are making the Function object
1112                        // for this inlined concrete instance.  Since we're creating a top level block at
1113                        // here, the subprogram_low_pc will be LLDB_INVALID_ADDRESS.  So we need to
1114                        // adjust the containing address.
1115                        // The second time is when we are parsing the blocks inside the function that contains
1116                        // the inlined concrete instance.  Since these will be blocks inside the containing "real"
1117                        // function the offset will be for that function.
1118                        if (subprogram_low_pc == LLDB_INVALID_ADDRESS)
1119                        {
1120                            subprogram_low_pc = ranges.GetMinRangeBase(0);
1121                        }
1122                    }
1123
1124                    AddRangesToBlock (*block, ranges, subprogram_low_pc);
1125
1126                    if (tag != DW_TAG_subprogram && (name != NULL || mangled_name != NULL))
1127                    {
1128                        std::auto_ptr<Declaration> decl_ap;
1129                        if (decl_file != 0 || decl_line != 0 || decl_column != 0)
1130                            decl_ap.reset(new Declaration(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(decl_file),
1131                                                          decl_line, decl_column));
1132
1133                        std::auto_ptr<Declaration> call_ap;
1134                        if (call_file != 0 || call_line != 0 || call_column != 0)
1135                            call_ap.reset(new Declaration(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(call_file),
1136                                                          call_line, call_column));
1137
1138                        block->SetInlinedFunctionInfo (name, mangled_name, decl_ap.get(), call_ap.get());
1139                    }
1140
1141                    ++blocks_added;
1142
1143                    if (die->HasChildren())
1144                    {
1145                        blocks_added += ParseFunctionBlocks (sc,
1146                                                             block,
1147                                                             dwarf_cu,
1148                                                             die->GetFirstChild(),
1149                                                             subprogram_low_pc,
1150                                                             depth + 1);
1151                    }
1152                }
1153            }
1154            break;
1155        default:
1156            break;
1157        }
1158
1159        // Only parse siblings of the block if we are not at depth zero. A depth
1160        // of zero indicates we are currently parsing the top level
1161        // DW_TAG_subprogram DIE
1162
1163        if (depth == 0)
1164            die = NULL;
1165        else
1166            die = die->GetSibling();
1167    }
1168    return blocks_added;
1169}
1170
1171bool
1172SymbolFileDWARF::ParseTemplateParameterInfos (DWARFCompileUnit* dwarf_cu,
1173                                              const DWARFDebugInfoEntry *parent_die,
1174                                              ClangASTContext::TemplateParameterInfos &template_param_infos)
1175{
1176
1177    if (parent_die == NULL)
1178        return NULL;
1179
1180    const uint8_t *fixed_form_sizes = DWARFFormValue::GetFixedFormSizesForAddressSize (dwarf_cu->GetAddressByteSize());
1181
1182    Args template_parameter_names;
1183    for (const DWARFDebugInfoEntry *die = parent_die->GetFirstChild();
1184         die != NULL;
1185         die = die->GetSibling())
1186    {
1187        const dw_tag_t tag = die->Tag();
1188
1189        switch (tag)
1190        {
1191            case DW_TAG_template_type_parameter:
1192            case DW_TAG_template_value_parameter:
1193            {
1194                DWARFDebugInfoEntry::Attributes attributes;
1195                const size_t num_attributes = die->GetAttributes (this,
1196                                                                  dwarf_cu,
1197                                                                  fixed_form_sizes,
1198                                                                  attributes);
1199                const char *name = NULL;
1200                Type *lldb_type = NULL;
1201                clang_type_t clang_type = NULL;
1202                uint64_t uval64 = 0;
1203                bool uval64_valid = false;
1204                if (num_attributes > 0)
1205                {
1206                    DWARFFormValue form_value;
1207                    for (size_t i=0; i<num_attributes; ++i)
1208                    {
1209                        const dw_attr_t attr = attributes.AttributeAtIndex(i);
1210
1211                        switch (attr)
1212                        {
1213                            case DW_AT_name:
1214                                if (attributes.ExtractFormValueAtIndex(this, i, form_value))
1215                                    name = form_value.AsCString(&get_debug_str_data());
1216                                break;
1217
1218                            case DW_AT_type:
1219                                if (attributes.ExtractFormValueAtIndex(this, i, form_value))
1220                                {
1221                                    const dw_offset_t type_die_offset = form_value.Reference(dwarf_cu);
1222                                    lldb_type = ResolveTypeUID(type_die_offset);
1223                                    if (lldb_type)
1224                                        clang_type = lldb_type->GetClangForwardType();
1225                                }
1226                                break;
1227
1228                            case DW_AT_const_value:
1229                                if (attributes.ExtractFormValueAtIndex(this, i, form_value))
1230                                {
1231                                    uval64_valid = true;
1232                                    uval64 = form_value.Unsigned();
1233                                }
1234                                break;
1235                            default:
1236                                break;
1237                        }
1238                    }
1239
1240                    if (name && lldb_type && clang_type)
1241                    {
1242                        bool is_signed = false;
1243                        template_param_infos.names.push_back(name);
1244                        clang::QualType clang_qual_type (clang::QualType::getFromOpaquePtr (clang_type));
1245                        if (tag == DW_TAG_template_value_parameter && ClangASTContext::IsIntegerType (clang_type, is_signed) && uval64_valid)
1246                        {
1247                            llvm::APInt apint (lldb_type->GetByteSize() * 8, uval64, is_signed);
1248                            template_param_infos.args.push_back (clang::TemplateArgument (llvm::APSInt(apint), clang_qual_type));
1249                        }
1250                        else
1251                        {
1252                            template_param_infos.args.push_back (clang::TemplateArgument (clang_qual_type));
1253                        }
1254                    }
1255                    else
1256                    {
1257                        return false;
1258                    }
1259
1260                }
1261            }
1262            break;
1263
1264        default:
1265            break;
1266        }
1267    }
1268    if (template_param_infos.args.empty())
1269        return false;
1270    return template_param_infos.args.size() == template_param_infos.names.size();
1271}
1272
1273clang::ClassTemplateDecl *
1274SymbolFileDWARF::ParseClassTemplateDecl (clang::DeclContext *decl_ctx,
1275                                         lldb::AccessType access_type,
1276                                         const char *parent_name,
1277                                         int tag_decl_kind,
1278                                         const ClangASTContext::TemplateParameterInfos &template_param_infos)
1279{
1280    if (template_param_infos.IsValid())
1281    {
1282        std::string template_basename(parent_name);
1283        template_basename.erase (template_basename.find('<'));
1284        ClangASTContext &ast = GetClangASTContext();
1285
1286        return ast.CreateClassTemplateDecl (decl_ctx,
1287                                            access_type,
1288                                            template_basename.c_str(),
1289                                            tag_decl_kind,
1290                                            template_param_infos);
1291    }
1292    return NULL;
1293}
1294
1295size_t
1296SymbolFileDWARF::ParseChildMembers
1297(
1298    const SymbolContext& sc,
1299    DWARFCompileUnit* dwarf_cu,
1300    const DWARFDebugInfoEntry *parent_die,
1301    clang_type_t class_clang_type,
1302    const LanguageType class_language,
1303    std::vector<clang::CXXBaseSpecifier *>& base_classes,
1304    std::vector<int>& member_accessibilities,
1305    DWARFDIECollection& member_function_dies,
1306    AccessType& default_accessibility,
1307    bool &is_a_class
1308)
1309{
1310    if (parent_die == NULL)
1311        return 0;
1312
1313    size_t count = 0;
1314    const DWARFDebugInfoEntry *die;
1315    const uint8_t *fixed_form_sizes = DWARFFormValue::GetFixedFormSizesForAddressSize (dwarf_cu->GetAddressByteSize());
1316    uint32_t member_idx = 0;
1317
1318    for (die = parent_die->GetFirstChild(); die != NULL; die = die->GetSibling())
1319    {
1320        dw_tag_t tag = die->Tag();
1321
1322        switch (tag)
1323        {
1324        case DW_TAG_member:
1325            {
1326                DWARFDebugInfoEntry::Attributes attributes;
1327                const size_t num_attributes = die->GetAttributes (this,
1328                                                                  dwarf_cu,
1329                                                                  fixed_form_sizes,
1330                                                                  attributes);
1331                if (num_attributes > 0)
1332                {
1333                    Declaration decl;
1334                    //DWARFExpression location;
1335                    const char *name = NULL;
1336                    const char *prop_name = NULL;
1337                    const char *prop_getter_name = NULL;
1338                    const char *prop_setter_name = NULL;
1339                    uint32_t        prop_attributes = 0;
1340
1341
1342                    bool is_artificial = false;
1343                    lldb::user_id_t encoding_uid = LLDB_INVALID_UID;
1344                    AccessType accessibility = eAccessNone;
1345                    //off_t member_offset = 0;
1346                    size_t byte_size = 0;
1347                    size_t bit_offset = 0;
1348                    size_t bit_size = 0;
1349                    uint32_t i;
1350                    for (i=0; i<num_attributes && !is_artificial; ++i)
1351                    {
1352                        const dw_attr_t attr = attributes.AttributeAtIndex(i);
1353                        DWARFFormValue form_value;
1354                        if (attributes.ExtractFormValueAtIndex(this, i, form_value))
1355                        {
1356                            switch (attr)
1357                            {
1358                            case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
1359                            case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
1360                            case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
1361                            case DW_AT_name:        name = form_value.AsCString(&get_debug_str_data()); break;
1362                            case DW_AT_type:        encoding_uid = form_value.Reference(dwarf_cu); break;
1363                            case DW_AT_bit_offset:  bit_offset = form_value.Unsigned(); break;
1364                            case DW_AT_bit_size:    bit_size = form_value.Unsigned(); break;
1365                            case DW_AT_byte_size:   byte_size = form_value.Unsigned(); break;
1366                            case DW_AT_data_member_location:
1367//                                if (form_value.BlockData())
1368//                                {
1369//                                    Value initialValue(0);
1370//                                    Value memberOffset(0);
1371//                                    const DataExtractor& debug_info_data = get_debug_info_data();
1372//                                    uint32_t block_length = form_value.Unsigned();
1373//                                    uint32_t block_offset = form_value.BlockData() - debug_info_data.GetDataStart();
1374//                                    if (DWARFExpression::Evaluate(NULL, NULL, debug_info_data, NULL, NULL, block_offset, block_length, eRegisterKindDWARF, &initialValue, memberOffset, NULL))
1375//                                    {
1376//                                        member_offset = memberOffset.ResolveValue(NULL, NULL).UInt();
1377//                                    }
1378//                                }
1379                                break;
1380
1381                            case DW_AT_accessibility: accessibility = DW_ACCESS_to_AccessType (form_value.Unsigned()); break;
1382                            case DW_AT_artificial: is_artificial = form_value.Unsigned() != 0; break;
1383                            case DW_AT_declaration:
1384                            case DW_AT_description:
1385                            case DW_AT_mutable:
1386                            case DW_AT_visibility:
1387
1388                            case DW_AT_APPLE_property_name:      prop_name = form_value.AsCString(&get_debug_str_data()); break;
1389                            case DW_AT_APPLE_property_getter:    prop_getter_name = form_value.AsCString(&get_debug_str_data()); break;
1390                            case DW_AT_APPLE_property_setter:    prop_setter_name = form_value.AsCString(&get_debug_str_data()); break;
1391                            case DW_AT_APPLE_property_attribute: prop_attributes = form_value.Unsigned(); break;
1392
1393                            default:
1394                            case DW_AT_sibling:
1395                                break;
1396                            }
1397                        }
1398                    }
1399
1400                    // Clang has a DWARF generation bug where sometimes it
1401                    // represents fields that are references with bad byte size
1402                    // and bit size/offset information such as:
1403                    //
1404                    //  DW_AT_byte_size( 0x00 )
1405                    //  DW_AT_bit_size( 0x40 )
1406                    //  DW_AT_bit_offset( 0xffffffffffffffc0 )
1407                    //
1408                    // So check the bit offset to make sure it is sane, and if
1409                    // the values are not sane, remove them. If we don't do this
1410                    // then we will end up with a crash if we try to use this
1411                    // type in an expression when clang becomes unhappy with its
1412                    // recycled debug info.
1413
1414                    if (bit_offset > 128)
1415                    {
1416                        bit_size = 0;
1417                        bit_offset = 0;
1418                    }
1419
1420                    // FIXME: Make Clang ignore Objective-C accessibility for expressions
1421                    if (class_language == eLanguageTypeObjC ||
1422                        class_language == eLanguageTypeObjC_plus_plus)
1423                        accessibility = eAccessNone;
1424
1425                    if (member_idx == 0 && !is_artificial && name && (strstr (name, "_vptr$") == name))
1426                    {
1427                        // Not all compilers will mark the vtable pointer
1428                        // member as artificial (llvm-gcc). We can't have
1429                        // the virtual members in our classes otherwise it
1430                        // throws off all child offsets since we end up
1431                        // having and extra pointer sized member in our
1432                        // class layouts.
1433                        is_artificial = true;
1434                    }
1435
1436                    if (is_artificial == false)
1437                    {
1438                        Type *member_type = ResolveTypeUID(encoding_uid);
1439                        clang::FieldDecl *field_decl = NULL;
1440                        if (member_type)
1441                        {
1442                            if (accessibility == eAccessNone)
1443                                accessibility = default_accessibility;
1444                            member_accessibilities.push_back(accessibility);
1445
1446                            field_decl = GetClangASTContext().AddFieldToRecordType (class_clang_type,
1447                                                                                    name,
1448                                                                                    member_type->GetClangLayoutType(),
1449                                                                                    accessibility,
1450                                                                                    bit_size);
1451                        }
1452                        else
1453                        {
1454                            if (name)
1455                                ReportError ("0x%8.8llx: DW_TAG_member '%s' refers to type 0x%8.8llx which was unable to be parsed",
1456                                             MakeUserID(die->GetOffset()),
1457                                             name,
1458                                             encoding_uid);
1459                            else
1460                                ReportError ("0x%8.8llx: DW_TAG_member refers to type 0x%8.8llx which was unable to be parsed",
1461                                             MakeUserID(die->GetOffset()),
1462                                             encoding_uid);
1463                        }
1464
1465                        if (prop_name != NULL)
1466                        {
1467
1468                            clang::ObjCIvarDecl *ivar_decl = clang::dyn_cast<clang::ObjCIvarDecl>(field_decl);
1469                            assert (ivar_decl != NULL);
1470
1471
1472                            GetClangASTContext().AddObjCClassProperty (class_clang_type,
1473                                                                       prop_name,
1474                                                                       0,
1475                                                                       ivar_decl,
1476                                                                       prop_setter_name,
1477                                                                       prop_getter_name,
1478                                                                       prop_attributes);
1479                        }
1480                    }
1481                }
1482                ++member_idx;
1483            }
1484            break;
1485
1486        case DW_TAG_subprogram:
1487            // Let the type parsing code handle this one for us.
1488            member_function_dies.Append (die);
1489            break;
1490
1491        case DW_TAG_inheritance:
1492            {
1493                is_a_class = true;
1494                if (default_accessibility == eAccessNone)
1495                    default_accessibility = eAccessPrivate;
1496                // TODO: implement DW_TAG_inheritance type parsing
1497                DWARFDebugInfoEntry::Attributes attributes;
1498                const size_t num_attributes = die->GetAttributes (this,
1499                                                                  dwarf_cu,
1500                                                                  fixed_form_sizes,
1501                                                                  attributes);
1502                if (num_attributes > 0)
1503                {
1504                    Declaration decl;
1505                    DWARFExpression location;
1506                    lldb::user_id_t encoding_uid = LLDB_INVALID_UID;
1507                    AccessType accessibility = default_accessibility;
1508                    bool is_virtual = false;
1509                    bool is_base_of_class = true;
1510                    off_t member_offset = 0;
1511                    uint32_t i;
1512                    for (i=0; i<num_attributes; ++i)
1513                    {
1514                        const dw_attr_t attr = attributes.AttributeAtIndex(i);
1515                        DWARFFormValue form_value;
1516                        if (attributes.ExtractFormValueAtIndex(this, i, form_value))
1517                        {
1518                            switch (attr)
1519                            {
1520                            case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
1521                            case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
1522                            case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
1523                            case DW_AT_type:        encoding_uid = form_value.Reference(dwarf_cu); break;
1524                            case DW_AT_data_member_location:
1525                                if (form_value.BlockData())
1526                                {
1527                                    Value initialValue(0);
1528                                    Value memberOffset(0);
1529                                    const DataExtractor& debug_info_data = get_debug_info_data();
1530                                    uint32_t block_length = form_value.Unsigned();
1531                                    uint32_t block_offset = form_value.BlockData() - debug_info_data.GetDataStart();
1532                                    if (DWARFExpression::Evaluate (NULL,
1533                                                                   NULL,
1534                                                                   NULL,
1535                                                                   NULL,
1536                                                                   NULL,
1537                                                                   debug_info_data,
1538                                                                   block_offset,
1539                                                                   block_length,
1540                                                                   eRegisterKindDWARF,
1541                                                                   &initialValue,
1542                                                                   memberOffset,
1543                                                                   NULL))
1544                                    {
1545                                        member_offset = memberOffset.ResolveValue(NULL, NULL).UInt();
1546                                    }
1547                                }
1548                                break;
1549
1550                            case DW_AT_accessibility:
1551                                accessibility = DW_ACCESS_to_AccessType(form_value.Unsigned());
1552                                break;
1553
1554                            case DW_AT_virtuality: is_virtual = form_value.Unsigned() != 0; break;
1555                            default:
1556                            case DW_AT_sibling:
1557                                break;
1558                            }
1559                        }
1560                    }
1561
1562                    Type *base_class_type = ResolveTypeUID(encoding_uid);
1563                    assert(base_class_type);
1564
1565                    clang_type_t base_class_clang_type = base_class_type->GetClangFullType();
1566                    assert (base_class_clang_type);
1567                    if (class_language == eLanguageTypeObjC)
1568                    {
1569                        GetClangASTContext().SetObjCSuperClass(class_clang_type, base_class_clang_type);
1570                    }
1571                    else
1572                    {
1573                        base_classes.push_back (GetClangASTContext().CreateBaseClassSpecifier (base_class_clang_type,
1574                                                                                               accessibility,
1575                                                                                               is_virtual,
1576                                                                                               is_base_of_class));
1577                    }
1578                }
1579            }
1580            break;
1581
1582        default:
1583            break;
1584        }
1585    }
1586    return count;
1587}
1588
1589
1590clang::DeclContext*
1591SymbolFileDWARF::GetClangDeclContextContainingTypeUID (lldb::user_id_t type_uid)
1592{
1593    DWARFDebugInfo* debug_info = DebugInfo();
1594    if (debug_info && UserIDMatches(type_uid))
1595    {
1596        DWARFCompileUnitSP cu_sp;
1597        const DWARFDebugInfoEntry* die = debug_info->GetDIEPtr(type_uid, &cu_sp);
1598        if (die)
1599            return GetClangDeclContextContainingDIE (cu_sp.get(), die, NULL);
1600    }
1601    return NULL;
1602}
1603
1604clang::DeclContext*
1605SymbolFileDWARF::GetClangDeclContextForTypeUID (const lldb_private::SymbolContext &sc, lldb::user_id_t type_uid)
1606{
1607    if (UserIDMatches(type_uid))
1608        return GetClangDeclContextForDIEOffset (sc, type_uid);
1609    return NULL;
1610}
1611
1612Type*
1613SymbolFileDWARF::ResolveTypeUID (lldb::user_id_t type_uid)
1614{
1615    if (UserIDMatches(type_uid))
1616    {
1617        DWARFDebugInfo* debug_info = DebugInfo();
1618        if (debug_info)
1619        {
1620            DWARFCompileUnitSP cu_sp;
1621            const DWARFDebugInfoEntry* type_die = debug_info->GetDIEPtr(type_uid, &cu_sp);
1622            const bool assert_not_being_parsed = true;
1623            return ResolveTypeUID (cu_sp.get(), type_die, assert_not_being_parsed);
1624        }
1625    }
1626    return NULL;
1627}
1628
1629Type*
1630SymbolFileDWARF::ResolveTypeUID (DWARFCompileUnit* cu, const DWARFDebugInfoEntry* die, bool assert_not_being_parsed)
1631{
1632    if (die != NULL)
1633    {
1634        LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO));
1635        if (log)
1636            LogMessage (log.get(), "SymbolFileDWARF::ResolveTypeUID (die = 0x%8.8x) %s '%s'",
1637                        die->GetOffset(),
1638                        DW_TAG_value_to_name(die->Tag()),
1639                        die->GetName(this, cu));
1640
1641        // We might be coming in in the middle of a type tree (a class
1642        // withing a class, an enum within a class), so parse any needed
1643        // parent DIEs before we get to this one...
1644        const DWARFDebugInfoEntry *decl_ctx_die = GetDeclContextDIEContainingDIE (cu, die);
1645        switch (decl_ctx_die->Tag())
1646        {
1647            case DW_TAG_structure_type:
1648            case DW_TAG_union_type:
1649            case DW_TAG_class_type:
1650            {
1651                // Get the type, which could be a forward declaration
1652                if (log)
1653                    LogMessage (log.get(), "SymbolFileDWARF::ResolveTypeUID (die = 0x%8.8x) %s '%s' resolve parent forward type for 0x%8.8x",
1654                                die->GetOffset(),
1655                                DW_TAG_value_to_name(die->Tag()),
1656                                die->GetName(this, cu),
1657                                decl_ctx_die->GetOffset());
1658
1659                Type *parent_type = ResolveTypeUID (cu, decl_ctx_die, assert_not_being_parsed);
1660                if (DW_TAG_is_function_tag(die->Tag()))
1661                {
1662                    if (log)
1663                        LogMessage (log.get(), "SymbolFileDWARF::ResolveTypeUID (die = 0x%8.8x) %s '%s' resolve parent full type for 0x%8.8x since die is a function",
1664                                    die->GetOffset(),
1665                                    DW_TAG_value_to_name(die->Tag()),
1666                                    die->GetName(this, cu),
1667                                    decl_ctx_die->GetOffset());
1668                    // Ask the type to complete itself if it already hasn't since if we
1669                    // want a function (method or static) from a class, the class must
1670                    // create itself and add it's own methods and class functions.
1671                    if (parent_type)
1672                        parent_type->GetClangFullType();
1673                }
1674            }
1675            break;
1676
1677            default:
1678                break;
1679        }
1680        return ResolveType (cu, die);
1681    }
1682    return NULL;
1683}
1684
1685// This function is used when SymbolFileDWARFDebugMap owns a bunch of
1686// SymbolFileDWARF objects to detect if this DWARF file is the one that
1687// can resolve a clang_type.
1688bool
1689SymbolFileDWARF::HasForwardDeclForClangType (lldb::clang_type_t clang_type)
1690{
1691    clang_type_t clang_type_no_qualifiers = ClangASTType::RemoveFastQualifiers(clang_type);
1692    const DWARFDebugInfoEntry* die = m_forward_decl_clang_type_to_die.lookup (clang_type_no_qualifiers);
1693    return die != NULL;
1694}
1695
1696
1697lldb::clang_type_t
1698SymbolFileDWARF::ResolveClangOpaqueTypeDefinition (lldb::clang_type_t clang_type)
1699{
1700    // We have a struct/union/class/enum that needs to be fully resolved.
1701    clang_type_t clang_type_no_qualifiers = ClangASTType::RemoveFastQualifiers(clang_type);
1702    const DWARFDebugInfoEntry* die = m_forward_decl_clang_type_to_die.lookup (clang_type_no_qualifiers);
1703    if (die == NULL)
1704    {
1705        // We have already resolved this type...
1706        return clang_type;
1707    }
1708    // Once we start resolving this type, remove it from the forward declaration
1709    // map in case anyone child members or other types require this type to get resolved.
1710    // The type will get resolved when all of the calls to SymbolFileDWARF::ResolveClangOpaqueTypeDefinition
1711    // are done.
1712    m_forward_decl_clang_type_to_die.erase (clang_type_no_qualifiers);
1713
1714
1715    // Disable external storage for this type so we don't get anymore
1716    // clang::ExternalASTSource queries for this type.
1717    ClangASTContext::SetHasExternalStorage (clang_type, false);
1718
1719    DWARFDebugInfo* debug_info = DebugInfo();
1720
1721    DWARFCompileUnit *curr_cu = debug_info->GetCompileUnitContainingDIE (die->GetOffset()).get();
1722    Type *type = m_die_to_type.lookup (die);
1723
1724    const dw_tag_t tag = die->Tag();
1725
1726    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO));
1727    if (log)
1728        LogMessage (log.get(),
1729                    "0x%8.8llx: %s '%s' resolving forward declaration...\n",
1730                    MakeUserID(die->GetOffset()),
1731                    DW_TAG_value_to_name(tag),
1732                    type->GetName().AsCString());
1733    assert (clang_type);
1734    DWARFDebugInfoEntry::Attributes attributes;
1735
1736    ClangASTContext &ast = GetClangASTContext();
1737
1738    switch (tag)
1739    {
1740    case DW_TAG_structure_type:
1741    case DW_TAG_union_type:
1742    case DW_TAG_class_type:
1743        ast.StartTagDeclarationDefinition (clang_type);
1744        if (die->HasChildren())
1745        {
1746            LanguageType class_language = eLanguageTypeUnknown;
1747            bool is_objc_class = ClangASTContext::IsObjCClassType (clang_type);
1748            if (is_objc_class)
1749                class_language = eLanguageTypeObjC;
1750
1751            int tag_decl_kind = -1;
1752            AccessType default_accessibility = eAccessNone;
1753            if (tag == DW_TAG_structure_type)
1754            {
1755                tag_decl_kind = clang::TTK_Struct;
1756                default_accessibility = eAccessPublic;
1757            }
1758            else if (tag == DW_TAG_union_type)
1759            {
1760                tag_decl_kind = clang::TTK_Union;
1761                default_accessibility = eAccessPublic;
1762            }
1763            else if (tag == DW_TAG_class_type)
1764            {
1765                tag_decl_kind = clang::TTK_Class;
1766                default_accessibility = eAccessPrivate;
1767            }
1768
1769            SymbolContext sc(GetCompUnitForDWARFCompUnit(curr_cu));
1770            std::vector<clang::CXXBaseSpecifier *> base_classes;
1771            std::vector<int> member_accessibilities;
1772            bool is_a_class = false;
1773            // Parse members and base classes first
1774            DWARFDIECollection member_function_dies;
1775
1776            ParseChildMembers (sc,
1777                               curr_cu,
1778                               die,
1779                               clang_type,
1780                               class_language,
1781                               base_classes,
1782                               member_accessibilities,
1783                               member_function_dies,
1784                               default_accessibility,
1785                               is_a_class);
1786
1787            // Now parse any methods if there were any...
1788            size_t num_functions = member_function_dies.Size();
1789            if (num_functions > 0)
1790            {
1791                for (size_t i=0; i<num_functions; ++i)
1792                {
1793                    ResolveType(curr_cu, member_function_dies.GetDIEPtrAtIndex(i));
1794                }
1795            }
1796
1797            if (class_language == eLanguageTypeObjC)
1798            {
1799                std::string class_str (ClangASTType::GetTypeNameForOpaqueQualType(clang_type));
1800                if (!class_str.empty())
1801                {
1802
1803                    DIEArray method_die_offsets;
1804                    if (m_using_apple_tables)
1805                    {
1806                        if (m_apple_objc_ap.get())
1807                            m_apple_objc_ap->FindByName(class_str.c_str(), method_die_offsets);
1808                    }
1809                    else
1810                    {
1811                        if (!m_indexed)
1812                            Index ();
1813
1814                        ConstString class_name (class_str.c_str());
1815                        m_objc_class_selectors_index.Find (class_name, method_die_offsets);
1816                    }
1817
1818                    if (!method_die_offsets.empty())
1819                    {
1820                        DWARFDebugInfo* debug_info = DebugInfo();
1821
1822                        DWARFCompileUnit* method_cu = NULL;
1823                        const size_t num_matches = method_die_offsets.size();
1824                        for (size_t i=0; i<num_matches; ++i)
1825                        {
1826                            const dw_offset_t die_offset = method_die_offsets[i];
1827                            DWARFDebugInfoEntry *method_die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &method_cu);
1828
1829                            if (method_die)
1830                                ResolveType (method_cu, method_die);
1831                            else
1832                            {
1833                                if (m_using_apple_tables)
1834                                {
1835                                    ReportError (".apple_objc accelerator table had bad die 0x%8.8x for '%s'\n",
1836                                                 die_offset, class_str.c_str());
1837                                }
1838                            }
1839                        }
1840                    }
1841                }
1842            }
1843
1844            // If we have a DW_TAG_structure_type instead of a DW_TAG_class_type we
1845            // need to tell the clang type it is actually a class.
1846            if (class_language != eLanguageTypeObjC)
1847            {
1848                if (is_a_class && tag_decl_kind != clang::TTK_Class)
1849                    ast.SetTagTypeKind (clang_type, clang::TTK_Class);
1850            }
1851
1852            // Since DW_TAG_structure_type gets used for both classes
1853            // and structures, we may need to set any DW_TAG_member
1854            // fields to have a "private" access if none was specified.
1855            // When we parsed the child members we tracked that actual
1856            // accessibility value for each DW_TAG_member in the
1857            // "member_accessibilities" array. If the value for the
1858            // member is zero, then it was set to the "default_accessibility"
1859            // which for structs was "public". Below we correct this
1860            // by setting any fields to "private" that weren't correctly
1861            // set.
1862            if (is_a_class && !member_accessibilities.empty())
1863            {
1864                // This is a class and all members that didn't have
1865                // their access specified are private.
1866                ast.SetDefaultAccessForRecordFields (clang_type,
1867                                                     eAccessPrivate,
1868                                                     &member_accessibilities.front(),
1869                                                     member_accessibilities.size());
1870            }
1871
1872            if (!base_classes.empty())
1873            {
1874                ast.SetBaseClassesForClassType (clang_type,
1875                                                &base_classes.front(),
1876                                                base_classes.size());
1877
1878                // Clang will copy each CXXBaseSpecifier in "base_classes"
1879                // so we have to free them all.
1880                ClangASTContext::DeleteBaseClassSpecifiers (&base_classes.front(),
1881                                                            base_classes.size());
1882            }
1883
1884        }
1885        ast.CompleteTagDeclarationDefinition (clang_type);
1886        return clang_type;
1887
1888    case DW_TAG_enumeration_type:
1889        ast.StartTagDeclarationDefinition (clang_type);
1890        if (die->HasChildren())
1891        {
1892            SymbolContext sc(GetCompUnitForDWARFCompUnit(curr_cu));
1893            ParseChildEnumerators(sc, clang_type, type->GetByteSize(), curr_cu, die);
1894        }
1895        ast.CompleteTagDeclarationDefinition (clang_type);
1896        return clang_type;
1897
1898    default:
1899        assert(false && "not a forward clang type decl!");
1900        break;
1901    }
1902    return NULL;
1903}
1904
1905Type*
1906SymbolFileDWARF::ResolveType (DWARFCompileUnit* curr_cu, const DWARFDebugInfoEntry* type_die, bool assert_not_being_parsed)
1907{
1908    if (type_die != NULL)
1909    {
1910        Type *type = m_die_to_type.lookup (type_die);
1911
1912        if (type == NULL)
1913            type = GetTypeForDIE (curr_cu, type_die).get();
1914
1915        if (assert_not_being_parsed)
1916            assert (type != DIE_IS_BEING_PARSED);
1917        return type;
1918    }
1919    return NULL;
1920}
1921
1922CompileUnit*
1923SymbolFileDWARF::GetCompUnitForDWARFCompUnit (DWARFCompileUnit* curr_cu, uint32_t cu_idx)
1924{
1925    // Check if the symbol vendor already knows about this compile unit?
1926    if (curr_cu->GetUserData() == NULL)
1927    {
1928        // The symbol vendor doesn't know about this compile unit, we
1929        // need to parse and add it to the symbol vendor object.
1930        CompUnitSP dc_cu;
1931        ParseCompileUnit(curr_cu, dc_cu);
1932        if (dc_cu.get())
1933        {
1934            // Figure out the compile unit index if we weren't given one
1935            if (cu_idx == UINT32_MAX)
1936                DebugInfo()->GetCompileUnit(curr_cu->GetOffset(), &cu_idx);
1937
1938            m_obj_file->GetModule()->GetSymbolVendor()->SetCompileUnitAtIndex(dc_cu, cu_idx);
1939
1940            if (m_debug_map_symfile)
1941                m_debug_map_symfile->SetCompileUnit(this, dc_cu);
1942        }
1943    }
1944    return (CompileUnit*)curr_cu->GetUserData();
1945}
1946
1947bool
1948SymbolFileDWARF::GetFunction (DWARFCompileUnit* curr_cu, const DWARFDebugInfoEntry* func_die, SymbolContext& sc)
1949{
1950    sc.Clear();
1951    // Check if the symbol vendor already knows about this compile unit?
1952    sc.comp_unit = GetCompUnitForDWARFCompUnit(curr_cu, UINT32_MAX);
1953
1954    sc.function = sc.comp_unit->FindFunctionByUID (MakeUserID(func_die->GetOffset())).get();
1955    if (sc.function == NULL)
1956        sc.function = ParseCompileUnitFunction(sc, curr_cu, func_die);
1957
1958    if (sc.function)
1959    {
1960        sc.module_sp = sc.function->CalculateSymbolContextModule();
1961        return true;
1962    }
1963
1964    return false;
1965}
1966
1967uint32_t
1968SymbolFileDWARF::ResolveSymbolContext (const Address& so_addr, uint32_t resolve_scope, SymbolContext& sc)
1969{
1970    Timer scoped_timer(__PRETTY_FUNCTION__,
1971                       "SymbolFileDWARF::ResolveSymbolContext (so_addr = { section = %p, offset = 0x%llx }, resolve_scope = 0x%8.8x)",
1972                       so_addr.GetSection(),
1973                       so_addr.GetOffset(),
1974                       resolve_scope);
1975    uint32_t resolved = 0;
1976    if (resolve_scope & (   eSymbolContextCompUnit |
1977                            eSymbolContextFunction |
1978                            eSymbolContextBlock |
1979                            eSymbolContextLineEntry))
1980    {
1981        lldb::addr_t file_vm_addr = so_addr.GetFileAddress();
1982
1983        DWARFDebugInfo* debug_info = DebugInfo();
1984        if (debug_info)
1985        {
1986            dw_offset_t cu_offset = debug_info->GetCompileUnitAranges().FindAddress(file_vm_addr);
1987            if (cu_offset != DW_INVALID_OFFSET)
1988            {
1989                uint32_t cu_idx;
1990                DWARFCompileUnit* curr_cu = debug_info->GetCompileUnit(cu_offset, &cu_idx).get();
1991                if (curr_cu)
1992                {
1993                    sc.comp_unit = GetCompUnitForDWARFCompUnit(curr_cu, cu_idx);
1994                    assert(sc.comp_unit != NULL);
1995                    resolved |= eSymbolContextCompUnit;
1996
1997                    if (resolve_scope & eSymbolContextLineEntry)
1998                    {
1999                        LineTable *line_table = sc.comp_unit->GetLineTable();
2000                        if (line_table != NULL)
2001                        {
2002                            if (so_addr.IsLinkedAddress())
2003                            {
2004                                Address linked_addr (so_addr);
2005                                linked_addr.ResolveLinkedAddress();
2006                                if (line_table->FindLineEntryByAddress (linked_addr, sc.line_entry))
2007                                {
2008                                    resolved |= eSymbolContextLineEntry;
2009                                }
2010                            }
2011                            else if (line_table->FindLineEntryByAddress (so_addr, sc.line_entry))
2012                            {
2013                                resolved |= eSymbolContextLineEntry;
2014                            }
2015                        }
2016                    }
2017
2018                    if (resolve_scope & (eSymbolContextFunction | eSymbolContextBlock))
2019                    {
2020                        DWARFDebugInfoEntry *function_die = NULL;
2021                        DWARFDebugInfoEntry *block_die = NULL;
2022                        if (resolve_scope & eSymbolContextBlock)
2023                        {
2024                            curr_cu->LookupAddress(file_vm_addr, &function_die, &block_die);
2025                        }
2026                        else
2027                        {
2028                            curr_cu->LookupAddress(file_vm_addr, &function_die, NULL);
2029                        }
2030
2031                        if (function_die != NULL)
2032                        {
2033                            sc.function = sc.comp_unit->FindFunctionByUID (MakeUserID(function_die->GetOffset())).get();
2034                            if (sc.function == NULL)
2035                                sc.function = ParseCompileUnitFunction(sc, curr_cu, function_die);
2036                        }
2037
2038                        if (sc.function != NULL)
2039                        {
2040                            resolved |= eSymbolContextFunction;
2041
2042                            if (resolve_scope & eSymbolContextBlock)
2043                            {
2044                                Block& block = sc.function->GetBlock (true);
2045
2046                                if (block_die != NULL)
2047                                    sc.block = block.FindBlockByID (MakeUserID(block_die->GetOffset()));
2048                                else
2049                                    sc.block = block.FindBlockByID (MakeUserID(function_die->GetOffset()));
2050                                if (sc.block)
2051                                    resolved |= eSymbolContextBlock;
2052                            }
2053                        }
2054                    }
2055                }
2056            }
2057        }
2058    }
2059    return resolved;
2060}
2061
2062
2063
2064uint32_t
2065SymbolFileDWARF::ResolveSymbolContext(const FileSpec& file_spec, uint32_t line, bool check_inlines, uint32_t resolve_scope, SymbolContextList& sc_list)
2066{
2067    const uint32_t prev_size = sc_list.GetSize();
2068    if (resolve_scope & eSymbolContextCompUnit)
2069    {
2070        DWARFDebugInfo* debug_info = DebugInfo();
2071        if (debug_info)
2072        {
2073            uint32_t cu_idx;
2074            DWARFCompileUnit* curr_cu = NULL;
2075
2076            for (cu_idx = 0; (curr_cu = debug_info->GetCompileUnitAtIndex(cu_idx)) != NULL; ++cu_idx)
2077            {
2078                CompileUnit *dc_cu = GetCompUnitForDWARFCompUnit(curr_cu, cu_idx);
2079                bool file_spec_matches_cu_file_spec = dc_cu != NULL && FileSpec::Compare(file_spec, *dc_cu, false) == 0;
2080                if (check_inlines || file_spec_matches_cu_file_spec)
2081                {
2082                    SymbolContext sc (m_obj_file->GetModule());
2083                    sc.comp_unit = GetCompUnitForDWARFCompUnit(curr_cu, cu_idx);
2084                    assert(sc.comp_unit != NULL);
2085
2086                    uint32_t file_idx = UINT32_MAX;
2087
2088                    // If we are looking for inline functions only and we don't
2089                    // find it in the support files, we are done.
2090                    if (check_inlines)
2091                    {
2092                        file_idx = sc.comp_unit->GetSupportFiles().FindFileIndex (1, file_spec, true);
2093                        if (file_idx == UINT32_MAX)
2094                            continue;
2095                    }
2096
2097                    if (line != 0)
2098                    {
2099                        LineTable *line_table = sc.comp_unit->GetLineTable();
2100
2101                        if (line_table != NULL && line != 0)
2102                        {
2103                            // We will have already looked up the file index if
2104                            // we are searching for inline entries.
2105                            if (!check_inlines)
2106                                file_idx = sc.comp_unit->GetSupportFiles().FindFileIndex (1, file_spec, true);
2107
2108                            if (file_idx != UINT32_MAX)
2109                            {
2110                                uint32_t found_line;
2111                                uint32_t line_idx = line_table->FindLineEntryIndexByFileIndex (0, file_idx, line, false, &sc.line_entry);
2112                                found_line = sc.line_entry.line;
2113
2114                                while (line_idx != UINT32_MAX)
2115                                {
2116                                    sc.function = NULL;
2117                                    sc.block = NULL;
2118                                    if (resolve_scope & (eSymbolContextFunction | eSymbolContextBlock))
2119                                    {
2120                                        const lldb::addr_t file_vm_addr = sc.line_entry.range.GetBaseAddress().GetFileAddress();
2121                                        if (file_vm_addr != LLDB_INVALID_ADDRESS)
2122                                        {
2123                                            DWARFDebugInfoEntry *function_die = NULL;
2124                                            DWARFDebugInfoEntry *block_die = NULL;
2125                                            curr_cu->LookupAddress(file_vm_addr, &function_die, resolve_scope & eSymbolContextBlock ? &block_die : NULL);
2126
2127                                            if (function_die != NULL)
2128                                            {
2129                                                sc.function = sc.comp_unit->FindFunctionByUID (MakeUserID(function_die->GetOffset())).get();
2130                                                if (sc.function == NULL)
2131                                                    sc.function = ParseCompileUnitFunction(sc, curr_cu, function_die);
2132                                            }
2133
2134                                            if (sc.function != NULL)
2135                                            {
2136                                                Block& block = sc.function->GetBlock (true);
2137
2138                                                if (block_die != NULL)
2139                                                    sc.block = block.FindBlockByID (MakeUserID(block_die->GetOffset()));
2140                                                else
2141                                                    sc.block = block.FindBlockByID (MakeUserID(function_die->GetOffset()));
2142                                            }
2143                                        }
2144                                    }
2145
2146                                    sc_list.Append(sc);
2147                                    line_idx = line_table->FindLineEntryIndexByFileIndex (line_idx + 1, file_idx, found_line, true, &sc.line_entry);
2148                                }
2149                            }
2150                        }
2151                        else if (file_spec_matches_cu_file_spec && !check_inlines)
2152                        {
2153                            // only append the context if we aren't looking for inline call sites
2154                            // by file and line and if the file spec matches that of the compile unit
2155                            sc_list.Append(sc);
2156                        }
2157                    }
2158                    else if (file_spec_matches_cu_file_spec && !check_inlines)
2159                    {
2160                        // only append the context if we aren't looking for inline call sites
2161                        // by file and line and if the file spec matches that of the compile unit
2162                        sc_list.Append(sc);
2163                    }
2164
2165                    if (!check_inlines)
2166                        break;
2167                }
2168            }
2169        }
2170    }
2171    return sc_list.GetSize() - prev_size;
2172}
2173
2174void
2175SymbolFileDWARF::Index ()
2176{
2177    if (m_indexed)
2178        return;
2179    m_indexed = true;
2180    Timer scoped_timer (__PRETTY_FUNCTION__,
2181                        "SymbolFileDWARF::Index (%s)",
2182                        GetObjectFile()->GetFileSpec().GetFilename().AsCString());
2183
2184    DWARFDebugInfo* debug_info = DebugInfo();
2185    if (debug_info)
2186    {
2187        uint32_t cu_idx = 0;
2188        const uint32_t num_compile_units = GetNumCompileUnits();
2189        for (cu_idx = 0; cu_idx < num_compile_units; ++cu_idx)
2190        {
2191            DWARFCompileUnit* curr_cu = debug_info->GetCompileUnitAtIndex(cu_idx);
2192
2193            bool clear_dies = curr_cu->ExtractDIEsIfNeeded (false) > 1;
2194
2195            curr_cu->Index (cu_idx,
2196                            m_function_basename_index,
2197                            m_function_fullname_index,
2198                            m_function_method_index,
2199                            m_function_selector_index,
2200                            m_objc_class_selectors_index,
2201                            m_global_index,
2202                            m_type_index,
2203                            m_namespace_index);
2204
2205            // Keep memory down by clearing DIEs if this generate function
2206            // caused them to be parsed
2207            if (clear_dies)
2208                curr_cu->ClearDIEs (true);
2209        }
2210
2211        m_function_basename_index.Finalize();
2212        m_function_fullname_index.Finalize();
2213        m_function_method_index.Finalize();
2214        m_function_selector_index.Finalize();
2215        m_objc_class_selectors_index.Finalize();
2216        m_global_index.Finalize();
2217        m_type_index.Finalize();
2218        m_namespace_index.Finalize();
2219
2220#if defined (ENABLE_DEBUG_PRINTF)
2221        StreamFile s(stdout, false);
2222        s.Printf ("DWARF index for '%s/%s':",
2223                  GetObjectFile()->GetFileSpec().GetDirectory().AsCString(),
2224                  GetObjectFile()->GetFileSpec().GetFilename().AsCString());
2225        s.Printf("\nFunction basenames:\n");    m_function_basename_index.Dump (&s);
2226        s.Printf("\nFunction fullnames:\n");    m_function_fullname_index.Dump (&s);
2227        s.Printf("\nFunction methods:\n");      m_function_method_index.Dump (&s);
2228        s.Printf("\nFunction selectors:\n");    m_function_selector_index.Dump (&s);
2229        s.Printf("\nObjective C class selectors:\n");    m_objc_class_selectors_index.Dump (&s);
2230        s.Printf("\nGlobals and statics:\n");   m_global_index.Dump (&s);
2231        s.Printf("\nTypes:\n");                 m_type_index.Dump (&s);
2232        s.Printf("\nNamepaces:\n");             m_namespace_index.Dump (&s);
2233#endif
2234    }
2235}
2236
2237bool
2238SymbolFileDWARF::NamespaceDeclMatchesThisSymbolFile (const ClangNamespaceDecl *namespace_decl)
2239{
2240    if (namespace_decl == NULL)
2241    {
2242        // Invalid namespace decl which means we aren't matching only things
2243        // in this symbol file, so return true to indicate it matches this
2244        // symbol file.
2245        return true;
2246    }
2247
2248    clang::ASTContext *namespace_ast = namespace_decl->GetASTContext();
2249
2250    if (namespace_ast == NULL)
2251        return true;    // No AST in the "namespace_decl", return true since it
2252                        // could then match any symbol file, including this one
2253
2254    if (namespace_ast == GetClangASTContext().getASTContext())
2255        return true;    // The ASTs match, return true
2256
2257    // The namespace AST was valid, and it does not match...
2258    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
2259
2260    if (log)
2261        LogMessage(log.get(), "Valid namespace does not match symbol file");
2262
2263    return false;
2264}
2265
2266bool
2267SymbolFileDWARF::DIEIsInNamespace (const ClangNamespaceDecl *namespace_decl,
2268                                   DWARFCompileUnit* cu,
2269                                   const DWARFDebugInfoEntry* die)
2270{
2271    // No namespace specified, so the answesr i
2272    if (namespace_decl == NULL)
2273        return true;
2274
2275    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
2276
2277    const DWARFDebugInfoEntry *decl_ctx_die = GetDeclContextDIEContainingDIE (cu, die);
2278    if (decl_ctx_die)
2279    {
2280
2281        clang::NamespaceDecl *clang_namespace_decl = namespace_decl->GetNamespaceDecl();
2282        if (clang_namespace_decl)
2283        {
2284            if (decl_ctx_die->Tag() != DW_TAG_namespace)
2285            {
2286                if (log)
2287                    LogMessage(log.get(), "Found a match, but its parent is not a namespace");
2288                return false;
2289            }
2290
2291            DeclContextToDIEMap::iterator pos = m_decl_ctx_to_die.find(clang_namespace_decl);
2292
2293            if (pos == m_decl_ctx_to_die.end())
2294            {
2295                if (log)
2296                    LogMessage(log.get(), "Found a match in a namespace, but its parent is not the requested namespace");
2297
2298                return false;
2299            }
2300
2301            return pos->second.count (decl_ctx_die);
2302        }
2303        else
2304        {
2305            // We have a namespace_decl that was not NULL but it contained
2306            // a NULL "clang::NamespaceDecl", so this means the global namespace
2307            // So as long the the contained decl context DIE isn't a namespace
2308            // we should be ok.
2309            if (decl_ctx_die->Tag() != DW_TAG_namespace)
2310                return true;
2311        }
2312    }
2313
2314    if (log)
2315        LogMessage(log.get(), "Found a match, but its parent doesn't exist");
2316
2317    return false;
2318}
2319uint32_t
2320SymbolFileDWARF::FindGlobalVariables (const ConstString &name, const lldb_private::ClangNamespaceDecl *namespace_decl, bool append, uint32_t max_matches, VariableList& variables)
2321{
2322    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
2323
2324    if (log)
2325    {
2326        LogMessage (log.get(),
2327                    "SymbolFileDWARF::FindGlobalVariables (name=\"%s\", namespace_decl=%p, append=%u, max_matches=%u, variables)",
2328                    name.GetCString(),
2329                    namespace_decl,
2330                    append,
2331                    max_matches);
2332    }
2333
2334    if (!NamespaceDeclMatchesThisSymbolFile(namespace_decl))
2335		return 0;
2336
2337    DWARFDebugInfo* info = DebugInfo();
2338    if (info == NULL)
2339        return 0;
2340
2341    // If we aren't appending the results to this list, then clear the list
2342    if (!append)
2343        variables.Clear();
2344
2345    // Remember how many variables are in the list before we search in case
2346    // we are appending the results to a variable list.
2347    const uint32_t original_size = variables.GetSize();
2348
2349    DIEArray die_offsets;
2350
2351    if (m_using_apple_tables)
2352    {
2353        if (m_apple_names_ap.get())
2354        {
2355            const char *name_cstr = name.GetCString();
2356            const char *base_name_start;
2357            const char *base_name_end = NULL;
2358
2359            if (!CPPLanguageRuntime::StripNamespacesFromVariableName(name_cstr, base_name_start, base_name_end))
2360                base_name_start = name_cstr;
2361
2362            m_apple_names_ap->FindByName (base_name_start, die_offsets);
2363        }
2364    }
2365    else
2366    {
2367        // Index the DWARF if we haven't already
2368        if (!m_indexed)
2369            Index ();
2370
2371        m_global_index.Find (name, die_offsets);
2372    }
2373
2374    const size_t num_matches = die_offsets.size();
2375    if (num_matches)
2376    {
2377        SymbolContext sc;
2378        sc.module_sp = m_obj_file->GetModule();
2379        assert (sc.module_sp);
2380
2381        DWARFDebugInfo* debug_info = DebugInfo();
2382        DWARFCompileUnit* dwarf_cu = NULL;
2383        const DWARFDebugInfoEntry* die = NULL;
2384        for (size_t i=0; i<num_matches; ++i)
2385        {
2386            const dw_offset_t die_offset = die_offsets[i];
2387            die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
2388
2389            if (die)
2390            {
2391                sc.comp_unit = GetCompUnitForDWARFCompUnit(dwarf_cu, UINT32_MAX);
2392                assert(sc.comp_unit != NULL);
2393
2394                if (namespace_decl && !DIEIsInNamespace (namespace_decl, dwarf_cu, die))
2395                    continue;
2396
2397                ParseVariables(sc, dwarf_cu, LLDB_INVALID_ADDRESS, die, false, false, &variables);
2398
2399                if (variables.GetSize() - original_size >= max_matches)
2400                    break;
2401            }
2402            else
2403            {
2404                if (m_using_apple_tables)
2405                {
2406                    ReportError (".apple_names accelerator table had bad die 0x%8.8x for '%s'\n",
2407                                 die_offset, name.GetCString());
2408                }
2409            }
2410        }
2411    }
2412
2413    // Return the number of variable that were appended to the list
2414    return variables.GetSize() - original_size;
2415}
2416
2417uint32_t
2418SymbolFileDWARF::FindGlobalVariables(const RegularExpression& regex, bool append, uint32_t max_matches, VariableList& variables)
2419{
2420    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
2421
2422    if (log)
2423    {
2424        LogMessage (log.get(),
2425                    "SymbolFileDWARF::FindGlobalVariables (regex=\"%s\", append=%u, max_matches=%u, variables)",
2426                    regex.GetText(),
2427                    append,
2428                    max_matches);
2429    }
2430
2431    DWARFDebugInfo* info = DebugInfo();
2432    if (info == NULL)
2433        return 0;
2434
2435    // If we aren't appending the results to this list, then clear the list
2436    if (!append)
2437        variables.Clear();
2438
2439    // Remember how many variables are in the list before we search in case
2440    // we are appending the results to a variable list.
2441    const uint32_t original_size = variables.GetSize();
2442
2443    DIEArray die_offsets;
2444
2445    if (m_using_apple_tables)
2446    {
2447        if (m_apple_names_ap.get())
2448        {
2449            DWARFMappedHash::DIEInfoArray hash_data_array;
2450            if (m_apple_names_ap->AppendAllDIEsThatMatchingRegex (regex, hash_data_array))
2451                DWARFMappedHash::ExtractDIEArray (hash_data_array, die_offsets);
2452        }
2453    }
2454    else
2455    {
2456        // Index the DWARF if we haven't already
2457        if (!m_indexed)
2458            Index ();
2459
2460        m_global_index.Find (regex, die_offsets);
2461    }
2462
2463    SymbolContext sc;
2464    sc.module_sp = m_obj_file->GetModule();
2465    assert (sc.module_sp);
2466
2467    DWARFCompileUnit* dwarf_cu = NULL;
2468    const DWARFDebugInfoEntry* die = NULL;
2469    const size_t num_matches = die_offsets.size();
2470    if (num_matches)
2471    {
2472        DWARFDebugInfo* debug_info = DebugInfo();
2473        for (size_t i=0; i<num_matches; ++i)
2474        {
2475            const dw_offset_t die_offset = die_offsets[i];
2476            die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
2477
2478            if (die)
2479            {
2480                sc.comp_unit = GetCompUnitForDWARFCompUnit(dwarf_cu, UINT32_MAX);
2481
2482                ParseVariables(sc, dwarf_cu, LLDB_INVALID_ADDRESS, die, false, false, &variables);
2483
2484                if (variables.GetSize() - original_size >= max_matches)
2485                    break;
2486            }
2487            else
2488            {
2489                if (m_using_apple_tables)
2490                {
2491                    ReportError (".apple_names accelerator table had bad die 0x%8.8x for regex '%s'\n",
2492                                 die_offset, regex.GetText());
2493                }
2494            }
2495        }
2496    }
2497
2498    // Return the number of variable that were appended to the list
2499    return variables.GetSize() - original_size;
2500}
2501
2502
2503bool
2504SymbolFileDWARF::ResolveFunction (dw_offset_t die_offset,
2505                                  DWARFCompileUnit *&dwarf_cu,
2506                                  SymbolContextList& sc_list)
2507{
2508    const DWARFDebugInfoEntry *die = DebugInfo()->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
2509    return ResolveFunction (dwarf_cu, die, sc_list);
2510}
2511
2512
2513bool
2514SymbolFileDWARF::ResolveFunction (DWARFCompileUnit *cu,
2515                                  const DWARFDebugInfoEntry *die,
2516                                  SymbolContextList& sc_list)
2517{
2518    SymbolContext sc;
2519
2520    if (die == NULL)
2521        return false;
2522
2523    // If we were passed a die that is not a function, just return false...
2524    if (die->Tag() != DW_TAG_subprogram && die->Tag() != DW_TAG_inlined_subroutine)
2525        return false;
2526
2527    const DWARFDebugInfoEntry* inlined_die = NULL;
2528    if (die->Tag() == DW_TAG_inlined_subroutine)
2529    {
2530        inlined_die = die;
2531
2532        while ((die = die->GetParent()) != NULL)
2533        {
2534            if (die->Tag() == DW_TAG_subprogram)
2535                break;
2536        }
2537    }
2538    assert (die->Tag() == DW_TAG_subprogram);
2539    if (GetFunction (cu, die, sc))
2540    {
2541        Address addr;
2542        // Parse all blocks if needed
2543        if (inlined_die)
2544        {
2545            sc.block = sc.function->GetBlock (true).FindBlockByID (MakeUserID(inlined_die->GetOffset()));
2546            assert (sc.block != NULL);
2547            if (sc.block->GetStartAddress (addr) == false)
2548                addr.Clear();
2549        }
2550        else
2551        {
2552            sc.block = NULL;
2553            addr = sc.function->GetAddressRange().GetBaseAddress();
2554        }
2555
2556        if (addr.IsValid())
2557        {
2558            sc_list.Append(sc);
2559            return true;
2560        }
2561    }
2562
2563    return false;
2564}
2565
2566void
2567SymbolFileDWARF::FindFunctions (const ConstString &name,
2568                                const NameToDIE &name_to_die,
2569                                SymbolContextList& sc_list)
2570{
2571    DIEArray die_offsets;
2572    if (name_to_die.Find (name, die_offsets))
2573    {
2574        ParseFunctions (die_offsets, sc_list);
2575    }
2576}
2577
2578
2579void
2580SymbolFileDWARF::FindFunctions (const RegularExpression &regex,
2581                                const NameToDIE &name_to_die,
2582                                SymbolContextList& sc_list)
2583{
2584    DIEArray die_offsets;
2585    if (name_to_die.Find (regex, die_offsets))
2586    {
2587        ParseFunctions (die_offsets, sc_list);
2588    }
2589}
2590
2591
2592void
2593SymbolFileDWARF::FindFunctions (const RegularExpression &regex,
2594                                const DWARFMappedHash::MemoryTable &memory_table,
2595                                SymbolContextList& sc_list)
2596{
2597    DIEArray die_offsets;
2598    DWARFMappedHash::DIEInfoArray hash_data_array;
2599    if (memory_table.AppendAllDIEsThatMatchingRegex (regex, hash_data_array))
2600    {
2601        DWARFMappedHash::ExtractDIEArray (hash_data_array, die_offsets);
2602        ParseFunctions (die_offsets, sc_list);
2603    }
2604}
2605
2606void
2607SymbolFileDWARF::ParseFunctions (const DIEArray &die_offsets,
2608                                 SymbolContextList& sc_list)
2609{
2610    const size_t num_matches = die_offsets.size();
2611    if (num_matches)
2612    {
2613        SymbolContext sc;
2614
2615        DWARFCompileUnit* dwarf_cu = NULL;
2616        for (size_t i=0; i<num_matches; ++i)
2617        {
2618            const dw_offset_t die_offset = die_offsets[i];
2619            ResolveFunction (die_offset, dwarf_cu, sc_list);
2620        }
2621    }
2622}
2623
2624bool
2625SymbolFileDWARF::FunctionDieMatchesPartialName (const DWARFDebugInfoEntry* die,
2626                                                const DWARFCompileUnit *dwarf_cu,
2627                                                uint32_t name_type_mask,
2628                                                const char *partial_name,
2629                                                const char *base_name_start,
2630                                                const char *base_name_end)
2631{
2632    // If we are looking only for methods, throw away all the ones that aren't in C++ classes:
2633    if (name_type_mask == eFunctionNameTypeMethod
2634        || name_type_mask == eFunctionNameTypeBase)
2635    {
2636        clang::DeclContext *containing_decl_ctx = GetClangDeclContextContainingDIEOffset(die->GetOffset());
2637        if (!containing_decl_ctx)
2638            return false;
2639
2640        bool is_cxx_method = DeclKindIsCXXClass(containing_decl_ctx->getDeclKind());
2641
2642        if (!is_cxx_method && name_type_mask == eFunctionNameTypeMethod)
2643            return false;
2644        if (is_cxx_method && name_type_mask == eFunctionNameTypeBase)
2645            return false;
2646    }
2647
2648    // Now we need to check whether the name we got back for this type matches the extra specifications
2649    // that were in the name we're looking up:
2650    if (base_name_start != partial_name || *base_name_end != '\0')
2651    {
2652        // First see if the stuff to the left matches the full name.  To do that let's see if
2653        // we can pull out the mips linkage name attribute:
2654
2655        Mangled best_name;
2656
2657        DWARFDebugInfoEntry::Attributes attributes;
2658        die->GetAttributes(this, dwarf_cu, NULL, attributes);
2659        uint32_t idx = attributes.FindAttributeIndex(DW_AT_MIPS_linkage_name);
2660        if (idx != UINT32_MAX)
2661        {
2662            DWARFFormValue form_value;
2663            if (attributes.ExtractFormValueAtIndex(this, idx, form_value))
2664            {
2665                const char *name = form_value.AsCString(&get_debug_str_data());
2666                best_name.SetValue (name, true);
2667            }
2668        }
2669        if (best_name)
2670        {
2671            const char *demangled = best_name.GetDemangledName().GetCString();
2672            if (demangled)
2673            {
2674                std::string name_no_parens(partial_name, base_name_end - partial_name);
2675                if (strstr (demangled, name_no_parens.c_str()) == NULL)
2676                    return false;
2677            }
2678        }
2679    }
2680
2681    return true;
2682}
2683
2684uint32_t
2685SymbolFileDWARF::FindFunctions (const ConstString &name,
2686                                const lldb_private::ClangNamespaceDecl *namespace_decl,
2687                                uint32_t name_type_mask,
2688                                bool append,
2689                                SymbolContextList& sc_list)
2690{
2691    Timer scoped_timer (__PRETTY_FUNCTION__,
2692                        "SymbolFileDWARF::FindFunctions (name = '%s')",
2693                        name.AsCString());
2694
2695    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
2696
2697    if (log)
2698    {
2699        LogMessage (log.get(),
2700                    "SymbolFileDWARF::FindFunctions (name=\"%s\", name_type_mask=0x%x, append=%u, sc_list)",
2701                    name.GetCString(),
2702                    name_type_mask,
2703                    append);
2704    }
2705
2706    // If we aren't appending the results to this list, then clear the list
2707    if (!append)
2708        sc_list.Clear();
2709
2710    if (!NamespaceDeclMatchesThisSymbolFile(namespace_decl))
2711		return 0;
2712
2713    // If name is empty then we won't find anything.
2714    if (name.IsEmpty())
2715        return 0;
2716
2717    // Remember how many sc_list are in the list before we search in case
2718    // we are appending the results to a variable list.
2719
2720    const uint32_t original_size = sc_list.GetSize();
2721
2722    const char *name_cstr = name.GetCString();
2723    uint32_t effective_name_type_mask = eFunctionNameTypeNone;
2724    const char *base_name_start = name_cstr;
2725    const char *base_name_end = name_cstr + strlen(name_cstr);
2726
2727    if (name_type_mask & eFunctionNameTypeAuto)
2728    {
2729        if (CPPLanguageRuntime::IsCPPMangledName (name_cstr))
2730            effective_name_type_mask = eFunctionNameTypeFull;
2731        else if (ObjCLanguageRuntime::IsPossibleObjCMethodName (name_cstr))
2732            effective_name_type_mask = eFunctionNameTypeFull;
2733        else
2734        {
2735            if (ObjCLanguageRuntime::IsPossibleObjCSelector(name_cstr))
2736                effective_name_type_mask |= eFunctionNameTypeSelector;
2737
2738            if (CPPLanguageRuntime::IsPossibleCPPCall(name_cstr, base_name_start, base_name_end))
2739                effective_name_type_mask |= (eFunctionNameTypeMethod | eFunctionNameTypeBase);
2740        }
2741    }
2742    else
2743    {
2744        effective_name_type_mask = name_type_mask;
2745        if (effective_name_type_mask & eFunctionNameTypeMethod || name_type_mask & eFunctionNameTypeBase)
2746        {
2747            // If they've asked for a CPP method or function name and it can't be that, we don't
2748            // even need to search for CPP methods or names.
2749            if (!CPPLanguageRuntime::IsPossibleCPPCall(name_cstr, base_name_start, base_name_end))
2750            {
2751                effective_name_type_mask &= ~(eFunctionNameTypeMethod | eFunctionNameTypeBase);
2752                if (effective_name_type_mask == eFunctionNameTypeNone)
2753                    return 0;
2754            }
2755        }
2756
2757        if (effective_name_type_mask & eFunctionNameTypeSelector)
2758        {
2759            if (!ObjCLanguageRuntime::IsPossibleObjCSelector(name_cstr))
2760            {
2761                effective_name_type_mask &= ~(eFunctionNameTypeSelector);
2762                if (effective_name_type_mask == eFunctionNameTypeNone)
2763                    return 0;
2764            }
2765        }
2766    }
2767
2768    DWARFDebugInfo* info = DebugInfo();
2769    if (info == NULL)
2770        return 0;
2771
2772    DWARFCompileUnit *dwarf_cu = NULL;
2773    if (m_using_apple_tables)
2774    {
2775        if (m_apple_names_ap.get())
2776        {
2777
2778            DIEArray die_offsets;
2779
2780            uint32_t num_matches = 0;
2781
2782            if (effective_name_type_mask & eFunctionNameTypeFull)
2783            {
2784                // If they asked for the full name, match what they typed.  At some point we may
2785                // want to canonicalize this (strip double spaces, etc.  For now, we just add all the
2786                // dies that we find by exact match.
2787                num_matches = m_apple_names_ap->FindByName (name_cstr, die_offsets);
2788                for (uint32_t i = 0; i < num_matches; i++)
2789                {
2790                    const dw_offset_t die_offset = die_offsets[i];
2791                    const DWARFDebugInfoEntry *die = info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
2792                    if (die)
2793                    {
2794                        if (namespace_decl && !DIEIsInNamespace (namespace_decl, dwarf_cu, die))
2795                            continue;
2796
2797                        ResolveFunction (dwarf_cu, die, sc_list);
2798                    }
2799                    else
2800                    {
2801                        ReportError (".apple_names accelerator table had bad die 0x%8.8x for '%s'\n",
2802                                     die_offset, name_cstr);
2803                    }
2804                }
2805            }
2806            else
2807            {
2808                if (effective_name_type_mask & eFunctionNameTypeSelector)
2809                {
2810                    if (namespace_decl && *namespace_decl)
2811                        return 0; // no selectors in namespaces
2812
2813                    num_matches = m_apple_names_ap->FindByName (name_cstr, die_offsets);
2814                    // Now make sure these are actually ObjC methods.  In this case we can simply look up the name,
2815                    // and if it is an ObjC method name, we're good.
2816
2817                    for (uint32_t i = 0; i < num_matches; i++)
2818                    {
2819                        const dw_offset_t die_offset = die_offsets[i];
2820                        const DWARFDebugInfoEntry* die = info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
2821                        if (die)
2822                        {
2823                            const char *die_name = die->GetName(this, dwarf_cu);
2824                            if (ObjCLanguageRuntime::IsPossibleObjCMethodName(die_name))
2825                                ResolveFunction (dwarf_cu, die, sc_list);
2826                        }
2827                        else
2828                        {
2829                            ReportError (".apple_names accelerator table had bad die 0x%8.8x for '%s'\n",
2830                                         die_offset, name_cstr);
2831                        }
2832                    }
2833                    die_offsets.clear();
2834                }
2835
2836                if (effective_name_type_mask & eFunctionNameTypeMethod
2837                    || effective_name_type_mask & eFunctionNameTypeBase)
2838                {
2839                    if ((effective_name_type_mask & eFunctionNameTypeMethod) &&
2840                        (namespace_decl && *namespace_decl))
2841                        return 0; // no methods in namespaces
2842
2843                    // The apple_names table stores just the "base name" of C++ methods in the table.  So we have to
2844                    // extract the base name, look that up, and if there is any other information in the name we were
2845                    // passed in we have to post-filter based on that.
2846
2847                    // FIXME: Arrange the logic above so that we don't calculate the base name twice:
2848                    std::string base_name(base_name_start, base_name_end - base_name_start);
2849                    num_matches = m_apple_names_ap->FindByName (base_name.c_str(), die_offsets);
2850
2851                    for (uint32_t i = 0; i < num_matches; i++)
2852                    {
2853                        const dw_offset_t die_offset = die_offsets[i];
2854                        const DWARFDebugInfoEntry* die = info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
2855                        if (die)
2856                        {
2857                            if (namespace_decl && !DIEIsInNamespace (namespace_decl, dwarf_cu, die))
2858                                continue;
2859
2860                            if (!FunctionDieMatchesPartialName(die,
2861                                                               dwarf_cu,
2862                                                               effective_name_type_mask,
2863                                                               name_cstr,
2864                                                               base_name_start,
2865                                                               base_name_end))
2866                                continue;
2867
2868                            // If we get to here, the die is good, and we should add it:
2869                            ResolveFunction (dwarf_cu, die, sc_list);
2870                        }
2871                        else
2872                        {
2873                            ReportError (".apple_names accelerator table had bad die 0x%8.8x for '%s'\n",
2874                                         die_offset, name_cstr);
2875                        }
2876                    }
2877                    die_offsets.clear();
2878                }
2879            }
2880        }
2881    }
2882    else
2883    {
2884
2885        // Index the DWARF if we haven't already
2886        if (!m_indexed)
2887            Index ();
2888
2889        if (name_type_mask & eFunctionNameTypeFull)
2890            FindFunctions (name, m_function_fullname_index, sc_list);
2891
2892        std::string base_name(base_name_start, base_name_end - base_name_start);
2893        ConstString base_name_const(base_name.c_str());
2894        DIEArray die_offsets;
2895        DWARFCompileUnit *dwarf_cu = NULL;
2896
2897        if (effective_name_type_mask & eFunctionNameTypeBase)
2898        {
2899            uint32_t num_base = m_function_basename_index.Find(base_name_const, die_offsets);
2900            for (uint32_t i = 0; i < num_base; i++)
2901            {
2902                const DWARFDebugInfoEntry* die = info->GetDIEPtrWithCompileUnitHint (die_offsets[i], &dwarf_cu);
2903                if (die)
2904                {
2905                    if (namespace_decl && !DIEIsInNamespace (namespace_decl, dwarf_cu, die))
2906                        continue;
2907
2908                    if (!FunctionDieMatchesPartialName(die,
2909                                                       dwarf_cu,
2910                                                       effective_name_type_mask,
2911                                                       name_cstr,
2912                                                       base_name_start,
2913                                                       base_name_end))
2914                        continue;
2915
2916                    // If we get to here, the die is good, and we should add it:
2917                    ResolveFunction (dwarf_cu, die, sc_list);
2918                }
2919            }
2920            die_offsets.clear();
2921        }
2922
2923        if (effective_name_type_mask & eFunctionNameTypeMethod)
2924        {
2925            if (namespace_decl && *namespace_decl)
2926                return 0; // no methods in namespaces
2927
2928            uint32_t num_base = m_function_method_index.Find(base_name_const, die_offsets);
2929            {
2930                for (uint32_t i = 0; i < num_base; i++)
2931                {
2932                    const DWARFDebugInfoEntry* die = info->GetDIEPtrWithCompileUnitHint (die_offsets[i], &dwarf_cu);
2933                    if (die)
2934                    {
2935                        if (!FunctionDieMatchesPartialName(die,
2936                                                           dwarf_cu,
2937                                                           effective_name_type_mask,
2938                                                           name_cstr,
2939                                                           base_name_start,
2940                                                           base_name_end))
2941                            continue;
2942
2943                        // If we get to here, the die is good, and we should add it:
2944                        ResolveFunction (dwarf_cu, die, sc_list);
2945                    }
2946                }
2947            }
2948            die_offsets.clear();
2949        }
2950
2951        if ((effective_name_type_mask & eFunctionNameTypeSelector) && (!namespace_decl || !*namespace_decl))
2952        {
2953            FindFunctions (name, m_function_selector_index, sc_list);
2954        }
2955
2956    }
2957
2958    // Return the number of variable that were appended to the list
2959    return sc_list.GetSize() - original_size;
2960}
2961
2962uint32_t
2963SymbolFileDWARF::FindFunctions(const RegularExpression& regex, bool append, SymbolContextList& sc_list)
2964{
2965    Timer scoped_timer (__PRETTY_FUNCTION__,
2966                        "SymbolFileDWARF::FindFunctions (regex = '%s')",
2967                        regex.GetText());
2968
2969    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
2970
2971    if (log)
2972    {
2973        LogMessage (log.get(),
2974                    "SymbolFileDWARF::FindFunctions (regex=\"%s\", append=%u, sc_list)",
2975                     regex.GetText(),
2976                    append);
2977    }
2978
2979
2980    // If we aren't appending the results to this list, then clear the list
2981    if (!append)
2982        sc_list.Clear();
2983
2984    // Remember how many sc_list are in the list before we search in case
2985    // we are appending the results to a variable list.
2986    uint32_t original_size = sc_list.GetSize();
2987
2988    if (m_using_apple_tables)
2989    {
2990        if (m_apple_names_ap.get())
2991            FindFunctions (regex, *m_apple_names_ap, sc_list);
2992    }
2993    else
2994    {
2995        // Index the DWARF if we haven't already
2996        if (!m_indexed)
2997            Index ();
2998
2999        FindFunctions (regex, m_function_basename_index, sc_list);
3000
3001        FindFunctions (regex, m_function_fullname_index, sc_list);
3002    }
3003
3004    // Return the number of variable that were appended to the list
3005    return sc_list.GetSize() - original_size;
3006}
3007
3008uint32_t
3009SymbolFileDWARF::FindTypes (const SymbolContext& sc,
3010                            const ConstString &name,
3011                            const lldb_private::ClangNamespaceDecl *namespace_decl,
3012                            bool append,
3013                            uint32_t max_matches,
3014                            TypeList& types)
3015{
3016    DWARFDebugInfo* info = DebugInfo();
3017    if (info == NULL)
3018        return 0;
3019
3020    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
3021
3022    if (log)
3023    {
3024        LogMessage (log.get(),
3025                    "SymbolFileDWARF::FindTypes (sc, name=\"%s\", append=%u, max_matches=%u, type_list)",
3026                    name.GetCString(),
3027                    append,
3028                    max_matches);
3029    }
3030
3031    // If we aren't appending the results to this list, then clear the list
3032    if (!append)
3033        types.Clear();
3034
3035    if (!NamespaceDeclMatchesThisSymbolFile(namespace_decl))
3036		return 0;
3037
3038    DIEArray die_offsets;
3039
3040    if (m_using_apple_tables)
3041    {
3042        if (m_apple_types_ap.get())
3043        {
3044            const char *name_cstr = name.GetCString();
3045            m_apple_types_ap->FindByName (name_cstr, die_offsets);
3046        }
3047    }
3048    else
3049    {
3050        if (!m_indexed)
3051            Index ();
3052
3053        m_type_index.Find (name, die_offsets);
3054    }
3055
3056    const size_t num_matches = die_offsets.size();
3057
3058    if (num_matches)
3059    {
3060        const uint32_t initial_types_size = types.GetSize();
3061        DWARFCompileUnit* dwarf_cu = NULL;
3062        const DWARFDebugInfoEntry* die = NULL;
3063        DWARFDebugInfo* debug_info = DebugInfo();
3064        for (size_t i=0; i<num_matches; ++i)
3065        {
3066            const dw_offset_t die_offset = die_offsets[i];
3067            die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
3068
3069            if (die)
3070            {
3071                if (namespace_decl && !DIEIsInNamespace (namespace_decl, dwarf_cu, die))
3072                    continue;
3073
3074                Type *matching_type = ResolveType (dwarf_cu, die);
3075                if (matching_type)
3076                {
3077                    // We found a type pointer, now find the shared pointer form our type list
3078                    types.InsertUnique (TypeSP (matching_type));
3079                    if (types.GetSize() >= max_matches)
3080                        break;
3081                }
3082            }
3083            else
3084            {
3085                if (m_using_apple_tables)
3086                {
3087                    ReportError (".apple_types accelerator table had bad die 0x%8.8x for '%s'\n",
3088                                 die_offset, name.GetCString());
3089                }
3090            }
3091
3092        }
3093        return types.GetSize() - initial_types_size;
3094    }
3095    return 0;
3096}
3097
3098
3099ClangNamespaceDecl
3100SymbolFileDWARF::FindNamespace (const SymbolContext& sc,
3101                                const ConstString &name,
3102                                const lldb_private::ClangNamespaceDecl *parent_namespace_decl)
3103{
3104    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_LOOKUPS));
3105
3106    if (log)
3107    {
3108        LogMessage (log.get(),
3109                    "SymbolFileDWARF::FindNamespace (sc, name=\"%s\")",
3110                     name.GetCString());
3111    }
3112
3113    if (!NamespaceDeclMatchesThisSymbolFile(parent_namespace_decl))
3114		return ClangNamespaceDecl();
3115
3116    ClangNamespaceDecl namespace_decl;
3117    DWARFDebugInfo* info = DebugInfo();
3118    if (info)
3119    {
3120        DIEArray die_offsets;
3121
3122        // Index if we already haven't to make sure the compile units
3123        // get indexed and make their global DIE index list
3124        if (m_using_apple_tables)
3125        {
3126            if (m_apple_namespaces_ap.get())
3127            {
3128                const char *name_cstr = name.GetCString();
3129                m_apple_namespaces_ap->FindByName (name_cstr, die_offsets);
3130            }
3131        }
3132        else
3133        {
3134            if (!m_indexed)
3135                Index ();
3136
3137            m_namespace_index.Find (name, die_offsets);
3138        }
3139
3140        DWARFCompileUnit* dwarf_cu = NULL;
3141        const DWARFDebugInfoEntry* die = NULL;
3142        const size_t num_matches = die_offsets.size();
3143        if (num_matches)
3144        {
3145            DWARFDebugInfo* debug_info = DebugInfo();
3146            for (size_t i=0; i<num_matches; ++i)
3147            {
3148                const dw_offset_t die_offset = die_offsets[i];
3149                die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
3150
3151                if (die)
3152                {
3153                    if (parent_namespace_decl && !DIEIsInNamespace (parent_namespace_decl, dwarf_cu, die))
3154                        continue;
3155
3156                    clang::NamespaceDecl *clang_namespace_decl = ResolveNamespaceDIE (dwarf_cu, die);
3157                    if (clang_namespace_decl)
3158                    {
3159                        namespace_decl.SetASTContext (GetClangASTContext().getASTContext());
3160                        namespace_decl.SetNamespaceDecl (clang_namespace_decl);
3161                        break;
3162                    }
3163                }
3164                else
3165                {
3166                    if (m_using_apple_tables)
3167                    {
3168                        ReportError (".apple_namespaces accelerator table had bad die 0x%8.8x for '%s'\n",
3169                                     die_offset, name.GetCString());
3170                    }
3171                }
3172
3173            }
3174        }
3175    }
3176    return namespace_decl;
3177}
3178
3179uint32_t
3180SymbolFileDWARF::FindTypes(std::vector<dw_offset_t> die_offsets, uint32_t max_matches, TypeList& types)
3181{
3182    // Remember how many sc_list are in the list before we search in case
3183    // we are appending the results to a variable list.
3184    uint32_t original_size = types.GetSize();
3185
3186    const uint32_t num_die_offsets = die_offsets.size();
3187    // Parse all of the types we found from the pubtypes matches
3188    uint32_t i;
3189    uint32_t num_matches = 0;
3190    for (i = 0; i < num_die_offsets; ++i)
3191    {
3192        Type *matching_type = ResolveTypeUID (die_offsets[i]);
3193        if (matching_type)
3194        {
3195            // We found a type pointer, now find the shared pointer form our type list
3196            types.InsertUnique (TypeSP (matching_type));
3197            ++num_matches;
3198            if (num_matches >= max_matches)
3199                break;
3200        }
3201    }
3202
3203    // Return the number of variable that were appended to the list
3204    return types.GetSize() - original_size;
3205}
3206
3207
3208size_t
3209SymbolFileDWARF::ParseChildParameters (const SymbolContext& sc,
3210                                       clang::DeclContext *containing_decl_ctx,
3211                                       TypeSP& type_sp,
3212                                       DWARFCompileUnit* dwarf_cu,
3213                                       const DWARFDebugInfoEntry *parent_die,
3214                                       bool skip_artificial,
3215                                       bool &is_static,
3216                                       TypeList* type_list,
3217                                       std::vector<clang_type_t>& function_param_types,
3218                                       std::vector<clang::ParmVarDecl*>& function_param_decls,
3219                                       unsigned &type_quals)
3220{
3221    if (parent_die == NULL)
3222        return 0;
3223
3224    const uint8_t *fixed_form_sizes = DWARFFormValue::GetFixedFormSizesForAddressSize (dwarf_cu->GetAddressByteSize());
3225
3226    size_t arg_idx = 0;
3227    const DWARFDebugInfoEntry *die;
3228    for (die = parent_die->GetFirstChild(); die != NULL; die = die->GetSibling())
3229    {
3230        dw_tag_t tag = die->Tag();
3231        switch (tag)
3232        {
3233        case DW_TAG_formal_parameter:
3234            {
3235                DWARFDebugInfoEntry::Attributes attributes;
3236                const size_t num_attributes = die->GetAttributes(this, dwarf_cu, fixed_form_sizes, attributes);
3237                if (num_attributes > 0)
3238                {
3239                    const char *name = NULL;
3240                    Declaration decl;
3241                    dw_offset_t param_type_die_offset = DW_INVALID_OFFSET;
3242                    bool is_artificial = false;
3243                    // one of None, Auto, Register, Extern, Static, PrivateExtern
3244
3245                    clang::StorageClass storage = clang::SC_None;
3246                    uint32_t i;
3247                    for (i=0; i<num_attributes; ++i)
3248                    {
3249                        const dw_attr_t attr = attributes.AttributeAtIndex(i);
3250                        DWARFFormValue form_value;
3251                        if (attributes.ExtractFormValueAtIndex(this, i, form_value))
3252                        {
3253                            switch (attr)
3254                            {
3255                            case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
3256                            case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
3257                            case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
3258                            case DW_AT_name:        name = form_value.AsCString(&get_debug_str_data()); break;
3259                            case DW_AT_type:        param_type_die_offset = form_value.Reference(dwarf_cu); break;
3260                            case DW_AT_artificial:  is_artificial = form_value.Unsigned() != 0; break;
3261                            case DW_AT_location:
3262    //                          if (form_value.BlockData())
3263    //                          {
3264    //                              const DataExtractor& debug_info_data = debug_info();
3265    //                              uint32_t block_length = form_value.Unsigned();
3266    //                              DataExtractor location(debug_info_data, form_value.BlockData() - debug_info_data.GetDataStart(), block_length);
3267    //                          }
3268    //                          else
3269    //                          {
3270    //                          }
3271    //                          break;
3272                            case DW_AT_const_value:
3273                            case DW_AT_default_value:
3274                            case DW_AT_description:
3275                            case DW_AT_endianity:
3276                            case DW_AT_is_optional:
3277                            case DW_AT_segment:
3278                            case DW_AT_variable_parameter:
3279                            default:
3280                            case DW_AT_abstract_origin:
3281                            case DW_AT_sibling:
3282                                break;
3283                            }
3284                        }
3285                    }
3286
3287                    bool skip = false;
3288                    if (skip_artificial)
3289                    {
3290                        if (is_artificial)
3291                        {
3292                            // In order to determine if a C++ member function is
3293                            // "const" we have to look at the const-ness of "this"...
3294                            // Ugly, but that
3295                            if (arg_idx == 0)
3296                            {
3297                                if (DeclKindIsCXXClass(containing_decl_ctx->getDeclKind()))
3298                                {
3299                                    // Often times compilers omit the "this" name for the
3300                                    // specification DIEs, so we can't rely upon the name
3301                                    // being in the formal parameter DIE...
3302                                    if (name == NULL || ::strcmp(name, "this")==0)
3303                                    {
3304                                        Type *this_type = ResolveTypeUID (param_type_die_offset);
3305                                        if (this_type)
3306                                        {
3307                                            uint32_t encoding_mask = this_type->GetEncodingMask();
3308                                            if (encoding_mask & Type::eEncodingIsPointerUID)
3309                                            {
3310                                                is_static = false;
3311
3312                                                if (encoding_mask & (1u << Type::eEncodingIsConstUID))
3313                                                    type_quals |= clang::Qualifiers::Const;
3314                                                if (encoding_mask & (1u << Type::eEncodingIsVolatileUID))
3315                                                    type_quals |= clang::Qualifiers::Volatile;
3316                                            }
3317                                        }
3318                                    }
3319                                }
3320                            }
3321                            skip = true;
3322                        }
3323                        else
3324                        {
3325
3326                            // HACK: Objective C formal parameters "self" and "_cmd"
3327                            // are not marked as artificial in the DWARF...
3328                            CompileUnit *curr_cu = GetCompUnitForDWARFCompUnit(dwarf_cu, UINT32_MAX);
3329                            if (curr_cu && (curr_cu->GetLanguage() == eLanguageTypeObjC || curr_cu->GetLanguage() == eLanguageTypeObjC_plus_plus))
3330                            {
3331                                if (name && name[0] && (strcmp (name, "self") == 0 || strcmp (name, "_cmd") == 0))
3332                                    skip = true;
3333                            }
3334                        }
3335                    }
3336
3337                    if (!skip)
3338                    {
3339                        Type *type = ResolveTypeUID(param_type_die_offset);
3340                        if (type)
3341                        {
3342                            function_param_types.push_back (type->GetClangForwardType());
3343
3344                            clang::ParmVarDecl *param_var_decl = GetClangASTContext().CreateParameterDeclaration (name,
3345                                                                                                                  type->GetClangForwardType(),
3346                                                                                                                  storage);
3347                            assert(param_var_decl);
3348                            function_param_decls.push_back(param_var_decl);
3349                        }
3350                    }
3351                }
3352                arg_idx++;
3353            }
3354            break;
3355
3356        default:
3357            break;
3358        }
3359    }
3360    return arg_idx;
3361}
3362
3363size_t
3364SymbolFileDWARF::ParseChildEnumerators
3365(
3366    const SymbolContext& sc,
3367    clang_type_t  enumerator_clang_type,
3368    uint32_t enumerator_byte_size,
3369    DWARFCompileUnit* dwarf_cu,
3370    const DWARFDebugInfoEntry *parent_die
3371)
3372{
3373    if (parent_die == NULL)
3374        return 0;
3375
3376    size_t enumerators_added = 0;
3377    const DWARFDebugInfoEntry *die;
3378    const uint8_t *fixed_form_sizes = DWARFFormValue::GetFixedFormSizesForAddressSize (dwarf_cu->GetAddressByteSize());
3379
3380    for (die = parent_die->GetFirstChild(); die != NULL; die = die->GetSibling())
3381    {
3382        const dw_tag_t tag = die->Tag();
3383        if (tag == DW_TAG_enumerator)
3384        {
3385            DWARFDebugInfoEntry::Attributes attributes;
3386            const size_t num_child_attributes = die->GetAttributes(this, dwarf_cu, fixed_form_sizes, attributes);
3387            if (num_child_attributes > 0)
3388            {
3389                const char *name = NULL;
3390                bool got_value = false;
3391                int64_t enum_value = 0;
3392                Declaration decl;
3393
3394                uint32_t i;
3395                for (i=0; i<num_child_attributes; ++i)
3396                {
3397                    const dw_attr_t attr = attributes.AttributeAtIndex(i);
3398                    DWARFFormValue form_value;
3399                    if (attributes.ExtractFormValueAtIndex(this, i, form_value))
3400                    {
3401                        switch (attr)
3402                        {
3403                        case DW_AT_const_value:
3404                            got_value = true;
3405                            enum_value = form_value.Unsigned();
3406                            break;
3407
3408                        case DW_AT_name:
3409                            name = form_value.AsCString(&get_debug_str_data());
3410                            break;
3411
3412                        case DW_AT_description:
3413                        default:
3414                        case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
3415                        case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
3416                        case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
3417                        case DW_AT_sibling:
3418                            break;
3419                        }
3420                    }
3421                }
3422
3423                if (name && name[0] && got_value)
3424                {
3425                    GetClangASTContext().AddEnumerationValueToEnumerationType (enumerator_clang_type,
3426                                                                               enumerator_clang_type,
3427                                                                               decl,
3428                                                                               name,
3429                                                                               enum_value,
3430                                                                               enumerator_byte_size * 8);
3431                    ++enumerators_added;
3432                }
3433            }
3434        }
3435    }
3436    return enumerators_added;
3437}
3438
3439void
3440SymbolFileDWARF::ParseChildArrayInfo
3441(
3442    const SymbolContext& sc,
3443    DWARFCompileUnit* dwarf_cu,
3444    const DWARFDebugInfoEntry *parent_die,
3445    int64_t& first_index,
3446    std::vector<uint64_t>& element_orders,
3447    uint32_t& byte_stride,
3448    uint32_t& bit_stride
3449)
3450{
3451    if (parent_die == NULL)
3452        return;
3453
3454    const DWARFDebugInfoEntry *die;
3455    const uint8_t *fixed_form_sizes = DWARFFormValue::GetFixedFormSizesForAddressSize (dwarf_cu->GetAddressByteSize());
3456    for (die = parent_die->GetFirstChild(); die != NULL; die = die->GetSibling())
3457    {
3458        const dw_tag_t tag = die->Tag();
3459        switch (tag)
3460        {
3461        case DW_TAG_enumerator:
3462            {
3463                DWARFDebugInfoEntry::Attributes attributes;
3464                const size_t num_child_attributes = die->GetAttributes(this, dwarf_cu, fixed_form_sizes, attributes);
3465                if (num_child_attributes > 0)
3466                {
3467                    const char *name = NULL;
3468                    bool got_value = false;
3469                    int64_t enum_value = 0;
3470
3471                    uint32_t i;
3472                    for (i=0; i<num_child_attributes; ++i)
3473                    {
3474                        const dw_attr_t attr = attributes.AttributeAtIndex(i);
3475                        DWARFFormValue form_value;
3476                        if (attributes.ExtractFormValueAtIndex(this, i, form_value))
3477                        {
3478                            switch (attr)
3479                            {
3480                            case DW_AT_const_value:
3481                                got_value = true;
3482                                enum_value = form_value.Unsigned();
3483                                break;
3484
3485                            case DW_AT_name:
3486                                name = form_value.AsCString(&get_debug_str_data());
3487                                break;
3488
3489                            case DW_AT_description:
3490                            default:
3491                            case DW_AT_decl_file:
3492                            case DW_AT_decl_line:
3493                            case DW_AT_decl_column:
3494                            case DW_AT_sibling:
3495                                break;
3496                            }
3497                        }
3498                    }
3499                }
3500            }
3501            break;
3502
3503        case DW_TAG_subrange_type:
3504            {
3505                DWARFDebugInfoEntry::Attributes attributes;
3506                const size_t num_child_attributes = die->GetAttributes(this, dwarf_cu, fixed_form_sizes, attributes);
3507                if (num_child_attributes > 0)
3508                {
3509                    const char *name = NULL;
3510                    bool got_value = false;
3511                    uint64_t byte_size = 0;
3512                    int64_t enum_value = 0;
3513                    uint64_t num_elements = 0;
3514                    uint64_t lower_bound = 0;
3515                    uint64_t upper_bound = 0;
3516                    uint32_t i;
3517                    for (i=0; i<num_child_attributes; ++i)
3518                    {
3519                        const dw_attr_t attr = attributes.AttributeAtIndex(i);
3520                        DWARFFormValue form_value;
3521                        if (attributes.ExtractFormValueAtIndex(this, i, form_value))
3522                        {
3523                            switch (attr)
3524                            {
3525                            case DW_AT_const_value:
3526                                got_value = true;
3527                                enum_value = form_value.Unsigned();
3528                                break;
3529
3530                            case DW_AT_name:
3531                                name = form_value.AsCString(&get_debug_str_data());
3532                                break;
3533
3534                            case DW_AT_count:
3535                                num_elements = form_value.Unsigned();
3536                                break;
3537
3538                            case DW_AT_bit_stride:
3539                                bit_stride = form_value.Unsigned();
3540                                break;
3541
3542                            case DW_AT_byte_stride:
3543                                byte_stride = form_value.Unsigned();
3544                                break;
3545
3546                            case DW_AT_byte_size:
3547                                byte_size = form_value.Unsigned();
3548                                break;
3549
3550                            case DW_AT_lower_bound:
3551                                lower_bound = form_value.Unsigned();
3552                                break;
3553
3554                            case DW_AT_upper_bound:
3555                                upper_bound = form_value.Unsigned();
3556                                break;
3557
3558                            default:
3559                            case DW_AT_abstract_origin:
3560                            case DW_AT_accessibility:
3561                            case DW_AT_allocated:
3562                            case DW_AT_associated:
3563                            case DW_AT_data_location:
3564                            case DW_AT_declaration:
3565                            case DW_AT_description:
3566                            case DW_AT_sibling:
3567                            case DW_AT_threads_scaled:
3568                            case DW_AT_type:
3569                            case DW_AT_visibility:
3570                                break;
3571                            }
3572                        }
3573                    }
3574
3575                    if (upper_bound > lower_bound)
3576                        num_elements = upper_bound - lower_bound + 1;
3577
3578                    if (num_elements > 0)
3579                        element_orders.push_back (num_elements);
3580                }
3581            }
3582            break;
3583        }
3584    }
3585}
3586
3587TypeSP
3588SymbolFileDWARF::GetTypeForDIE (DWARFCompileUnit *curr_cu, const DWARFDebugInfoEntry* die)
3589{
3590    TypeSP type_sp;
3591    if (die != NULL)
3592    {
3593        assert(curr_cu != NULL);
3594        Type *type_ptr = m_die_to_type.lookup (die);
3595        if (type_ptr == NULL)
3596        {
3597            CompileUnit* lldb_cu = GetCompUnitForDWARFCompUnit(curr_cu);
3598            assert (lldb_cu);
3599            SymbolContext sc(lldb_cu);
3600            type_sp = ParseType(sc, curr_cu, die, NULL);
3601        }
3602        else if (type_ptr != DIE_IS_BEING_PARSED)
3603        {
3604            // Grab the existing type from the master types lists
3605            type_sp = type_ptr;
3606        }
3607
3608    }
3609    return type_sp;
3610}
3611
3612clang::DeclContext *
3613SymbolFileDWARF::GetClangDeclContextContainingDIEOffset (dw_offset_t die_offset)
3614{
3615    if (die_offset != DW_INVALID_OFFSET)
3616    {
3617        DWARFCompileUnitSP cu_sp;
3618        const DWARFDebugInfoEntry* die = DebugInfo()->GetDIEPtr(die_offset, &cu_sp);
3619        return GetClangDeclContextContainingDIE (cu_sp.get(), die, NULL);
3620    }
3621    return NULL;
3622}
3623
3624clang::DeclContext *
3625SymbolFileDWARF::GetClangDeclContextForDIEOffset (const SymbolContext &sc, dw_offset_t die_offset)
3626{
3627    if (die_offset != DW_INVALID_OFFSET)
3628    {
3629        DWARFDebugInfo* debug_info = DebugInfo();
3630        if (debug_info)
3631        {
3632            DWARFCompileUnitSP cu_sp;
3633            const DWARFDebugInfoEntry* die = debug_info->GetDIEPtr(die_offset, &cu_sp);
3634            if (die)
3635                return GetClangDeclContextForDIE (sc, cu_sp.get(), die);
3636        }
3637    }
3638    return NULL;
3639}
3640
3641clang::NamespaceDecl *
3642SymbolFileDWARF::ResolveNamespaceDIE (DWARFCompileUnit *curr_cu, const DWARFDebugInfoEntry *die)
3643{
3644    if (die && die->Tag() == DW_TAG_namespace)
3645    {
3646        // See if we already parsed this namespace DIE and associated it with a
3647        // uniqued namespace declaration
3648        clang::NamespaceDecl *namespace_decl = static_cast<clang::NamespaceDecl *>(m_die_to_decl_ctx[die]);
3649        if (namespace_decl)
3650            return namespace_decl;
3651        else
3652        {
3653            const char *namespace_name = die->GetAttributeValueAsString(this, curr_cu, DW_AT_name, NULL);
3654            clang::DeclContext *containing_decl_ctx = GetClangDeclContextContainingDIE (curr_cu, die, NULL);
3655            namespace_decl = GetClangASTContext().GetUniqueNamespaceDeclaration (namespace_name, containing_decl_ctx);
3656            LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO));
3657            if (log)
3658            {
3659                if (namespace_name)
3660                {
3661                    LogMessage (log.get(),
3662                                "ASTContext => %p: 0x%8.8llx: DW_TAG_namespace with DW_AT_name(\"%s\") => clang::NamespaceDecl *%p (original = %p)",
3663                                 GetClangASTContext().getASTContext(),
3664                                 MakeUserID(die->GetOffset()),
3665                                 namespace_name,
3666                                 namespace_decl,
3667                                 namespace_decl->getOriginalNamespace());
3668                }
3669                else
3670                {
3671                    LogMessage (log.get(),
3672                                "ASTContext => %p: 0x%8.8llx: DW_TAG_namespace (anonymous) => clang::NamespaceDecl *%p (original = %p)",
3673                                GetClangASTContext().getASTContext(),
3674                                MakeUserID(die->GetOffset()),
3675                                namespace_decl,
3676                                namespace_decl->getOriginalNamespace());
3677                }
3678            }
3679
3680            if (namespace_decl)
3681                LinkDeclContextToDIE((clang::DeclContext*)namespace_decl, die);
3682            return namespace_decl;
3683        }
3684    }
3685    return NULL;
3686}
3687
3688clang::DeclContext *
3689SymbolFileDWARF::GetClangDeclContextForDIE (const SymbolContext &sc, DWARFCompileUnit *cu, const DWARFDebugInfoEntry *die)
3690{
3691    clang::DeclContext *clang_decl_ctx = GetCachedClangDeclContextForDIE (die);
3692    if (clang_decl_ctx)
3693        return clang_decl_ctx;
3694    // If this DIE has a specification, or an abstract origin, then trace to those.
3695
3696    dw_offset_t die_offset = die->GetAttributeValueAsReference(this, cu, DW_AT_specification, DW_INVALID_OFFSET);
3697    if (die_offset != DW_INVALID_OFFSET)
3698        return GetClangDeclContextForDIEOffset (sc, die_offset);
3699
3700    die_offset = die->GetAttributeValueAsReference(this, cu, DW_AT_abstract_origin, DW_INVALID_OFFSET);
3701    if (die_offset != DW_INVALID_OFFSET)
3702        return GetClangDeclContextForDIEOffset (sc, die_offset);
3703
3704    LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO));
3705    if (log)
3706        LogMessage(log.get(), "SymbolFileDWARF::GetClangDeclContextForDIE (die = 0x%8.8x) %s '%s'", die->GetOffset(), DW_TAG_value_to_name(die->Tag()), die->GetName(this, cu));
3707    // This is the DIE we want.  Parse it, then query our map.
3708    bool assert_not_being_parsed = true;
3709    ResolveTypeUID (cu, die, assert_not_being_parsed);
3710
3711    clang_decl_ctx = GetCachedClangDeclContextForDIE (die);
3712
3713    return clang_decl_ctx;
3714}
3715
3716clang::DeclContext *
3717SymbolFileDWARF::GetClangDeclContextContainingDIE (DWARFCompileUnit *cu, const DWARFDebugInfoEntry *die, const DWARFDebugInfoEntry **decl_ctx_die_copy)
3718{
3719    if (m_clang_tu_decl == NULL)
3720        m_clang_tu_decl = GetClangASTContext().getASTContext()->getTranslationUnitDecl();
3721
3722    const DWARFDebugInfoEntry *decl_ctx_die = GetDeclContextDIEContainingDIE (cu, die);
3723
3724    if (decl_ctx_die_copy)
3725        *decl_ctx_die_copy = decl_ctx_die;
3726
3727    if (decl_ctx_die)
3728    {
3729
3730        DIEToDeclContextMap::iterator pos = m_die_to_decl_ctx.find (decl_ctx_die);
3731        if (pos != m_die_to_decl_ctx.end())
3732            return pos->second;
3733
3734        switch (decl_ctx_die->Tag())
3735        {
3736        case DW_TAG_compile_unit:
3737            return m_clang_tu_decl;
3738
3739        case DW_TAG_namespace:
3740            return ResolveNamespaceDIE (cu, decl_ctx_die);
3741            break;
3742
3743        case DW_TAG_structure_type:
3744        case DW_TAG_union_type:
3745        case DW_TAG_class_type:
3746            {
3747                Type* type = ResolveType (cu, decl_ctx_die);
3748                if (type)
3749                {
3750                    clang::DeclContext *decl_ctx = ClangASTContext::GetDeclContextForType (type->GetClangForwardType ());
3751                    if (decl_ctx)
3752                    {
3753                        LinkDeclContextToDIE (decl_ctx, decl_ctx_die);
3754                        if (decl_ctx)
3755                            return decl_ctx;
3756                    }
3757                }
3758            }
3759            break;
3760
3761        default:
3762            break;
3763        }
3764    }
3765    return m_clang_tu_decl;
3766}
3767
3768
3769const DWARFDebugInfoEntry *
3770SymbolFileDWARF::GetDeclContextDIEContainingDIE (DWARFCompileUnit *cu, const DWARFDebugInfoEntry *die)
3771{
3772    if (cu && die)
3773    {
3774        const DWARFDebugInfoEntry * const decl_die = die;
3775
3776        while (die != NULL)
3777        {
3778            // If this is the original DIE that we are searching for a declaration
3779            // for, then don't look in the cache as we don't want our own decl
3780            // context to be our decl context...
3781            if (decl_die != die)
3782            {
3783                switch (die->Tag())
3784                {
3785                    case DW_TAG_compile_unit:
3786                    case DW_TAG_namespace:
3787                    case DW_TAG_structure_type:
3788                    case DW_TAG_union_type:
3789                    case DW_TAG_class_type:
3790                        return die;
3791
3792                    default:
3793                        break;
3794                }
3795            }
3796
3797            dw_offset_t die_offset = die->GetAttributeValueAsReference(this, cu, DW_AT_specification, DW_INVALID_OFFSET);
3798            if (die_offset != DW_INVALID_OFFSET)
3799            {
3800                DWARFCompileUnit *spec_cu = cu;
3801                const DWARFDebugInfoEntry *spec_die = DebugInfo()->GetDIEPtrWithCompileUnitHint (die_offset, &spec_cu);
3802                const DWARFDebugInfoEntry *spec_die_decl_ctx_die = GetDeclContextDIEContainingDIE (spec_cu, spec_die);
3803                if (spec_die_decl_ctx_die)
3804                    return spec_die_decl_ctx_die;
3805            }
3806
3807            die_offset = die->GetAttributeValueAsReference(this, cu, DW_AT_abstract_origin, DW_INVALID_OFFSET);
3808            if (die_offset != DW_INVALID_OFFSET)
3809            {
3810                DWARFCompileUnit *abs_cu = cu;
3811                const DWARFDebugInfoEntry *abs_die = DebugInfo()->GetDIEPtrWithCompileUnitHint (die_offset, &abs_cu);
3812                const DWARFDebugInfoEntry *abs_die_decl_ctx_die = GetDeclContextDIEContainingDIE (abs_cu, abs_die);
3813                if (abs_die_decl_ctx_die)
3814                    return abs_die_decl_ctx_die;
3815            }
3816
3817            die = die->GetParent();
3818        }
3819    }
3820    return NULL;
3821}
3822
3823
3824Symbol *
3825SymbolFileDWARF::GetObjCClassSymbol (const ConstString &objc_class_name)
3826{
3827    Symbol *objc_class_symbol = NULL;
3828    if (m_obj_file)
3829    {
3830        Symtab *symtab = m_obj_file->GetSymtab();
3831        if (symtab)
3832        {
3833            objc_class_symbol = symtab->FindFirstSymbolWithNameAndType (objc_class_name,
3834                                                                        eSymbolTypeObjCClass,
3835                                                                        Symtab::eDebugNo,
3836                                                                        Symtab::eVisibilityAny);
3837        }
3838    }
3839    return objc_class_symbol;
3840}
3841
3842
3843// This function can be used when a DIE is found that is a forward declaration
3844// DIE and we want to try and find a type that has the complete definition.
3845TypeSP
3846SymbolFileDWARF::FindCompleteObjCDefinitionTypeForDIE (DWARFCompileUnit* cu,
3847                                                       const DWARFDebugInfoEntry *die,
3848                                                       const ConstString &type_name)
3849{
3850
3851    TypeSP type_sp;
3852
3853    if (cu == NULL || die == NULL || !type_name || !GetObjCClassSymbol (type_name))
3854        return type_sp;
3855
3856    DIEArray die_offsets;
3857
3858    if (m_using_apple_tables)
3859    {
3860        if (m_apple_types_ap.get())
3861        {
3862            const char *name_cstr = type_name.GetCString();
3863            m_apple_types_ap->FindCompleteObjCClassByName (name_cstr, die_offsets);
3864        }
3865    }
3866    else
3867    {
3868        if (!m_indexed)
3869            Index ();
3870
3871        m_type_index.Find (type_name, die_offsets);
3872    }
3873
3874    const size_t num_matches = die_offsets.size();
3875
3876    const dw_tag_t die_tag = die->Tag();
3877
3878    DWARFCompileUnit* type_cu = NULL;
3879    const DWARFDebugInfoEntry* type_die = NULL;
3880    if (num_matches)
3881    {
3882        DWARFDebugInfo* debug_info = DebugInfo();
3883        for (size_t i=0; i<num_matches; ++i)
3884        {
3885            const dw_offset_t die_offset = die_offsets[i];
3886            type_die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &type_cu);
3887
3888            if (type_die)
3889            {
3890                bool try_resolving_type = false;
3891
3892                // Don't try and resolve the DIE we are looking for with the DIE itself!
3893                if (type_die != die)
3894                {
3895                    const dw_tag_t type_die_tag = type_die->Tag();
3896                    // Make sure the tags match
3897                    if (type_die_tag == die_tag)
3898                    {
3899                        // The tags match, lets try resolving this type
3900                        try_resolving_type = true;
3901                    }
3902                    else
3903                    {
3904                        // The tags don't match, but we need to watch our for a
3905                        // forward declaration for a struct and ("struct foo")
3906                        // ends up being a class ("class foo { ... };") or
3907                        // vice versa.
3908                        switch (type_die_tag)
3909                        {
3910                            case DW_TAG_class_type:
3911                                // We had a "class foo", see if we ended up with a "struct foo { ... };"
3912                                try_resolving_type = (die_tag == DW_TAG_structure_type);
3913                                break;
3914                            case DW_TAG_structure_type:
3915                                // We had a "struct foo", see if we ended up with a "class foo { ... };"
3916                                try_resolving_type = (die_tag == DW_TAG_class_type);
3917                                break;
3918                            default:
3919                                // Tags don't match, don't event try to resolve
3920                                // using this type whose name matches....
3921                                break;
3922                        }
3923                    }
3924                }
3925
3926                if (try_resolving_type)
3927                {
3928                    try_resolving_type = type_die->GetAttributeValueAsUnsigned (this, type_cu, DW_AT_APPLE_objc_complete_type, 0);
3929
3930                    if (try_resolving_type)
3931                    {
3932                        Type *resolved_type = ResolveType (type_cu, type_die, false);
3933                        if (resolved_type && resolved_type != DIE_IS_BEING_PARSED)
3934                        {
3935                            DEBUG_PRINTF ("resolved 0x%8.8llx (cu 0x%8.8llx) from %s to 0x%8.8llx (cu 0x%8.8llx)\n",
3936                                          MakeUserID(die->GetOffset()),
3937                                          MakeUserID(curr_cu->GetOffset()),
3938                                          m_obj_file->GetFileSpec().GetFilename().AsCString(),
3939                                          MakeUserID(type_die->GetOffset()),
3940                                          MakeUserID(type_cu->GetOffset()));
3941
3942                            m_die_to_type[die] = resolved_type;
3943                            type_sp = resolved_type;
3944                            break;
3945                        }
3946                    }
3947                }
3948            }
3949            else
3950            {
3951                if (m_using_apple_tables)
3952                {
3953                    ReportError (".apple_types accelerator table had bad die 0x%8.8x for '%s'\n",
3954                                 die_offset, type_name.GetCString());
3955                }
3956            }
3957
3958        }
3959    }
3960    return type_sp;
3961}
3962
3963
3964// This function can be used when a DIE is found that is a forward declaration
3965// DIE and we want to try and find a type that has the complete definition.
3966TypeSP
3967SymbolFileDWARF::FindDefinitionTypeForDIE (DWARFCompileUnit* cu,
3968                                           const DWARFDebugInfoEntry *die,
3969                                           const ConstString &type_name)
3970{
3971    TypeSP type_sp;
3972
3973    if (cu == NULL || die == NULL || !type_name)
3974        return type_sp;
3975
3976    DIEArray die_offsets;
3977
3978    if (m_using_apple_tables)
3979    {
3980        if (m_apple_types_ap.get())
3981        {
3982            if (m_apple_types_ap->GetHeader().header_data.atoms.size() > 1)
3983            {
3984                std::string qualified_name;
3985                const char *qualified_cstr = die->GetQualifiedName(this, cu, qualified_name);
3986                DWARFMappedHash::DIEInfoArray hash_data_array;
3987                m_apple_types_ap->FindByName (qualified_cstr, hash_data_array);
3988                DWARFMappedHash::ExtractDIEArray (hash_data_array, die_offsets);
3989            }
3990            else
3991            {
3992                m_apple_types_ap->FindByName (type_name.GetCString(), die_offsets);
3993            }
3994        }
3995    }
3996    else
3997    {
3998        if (!m_indexed)
3999            Index ();
4000
4001        m_type_index.Find (type_name, die_offsets);
4002    }
4003
4004    const size_t num_matches = die_offsets.size();
4005
4006    const dw_tag_t die_tag = die->Tag();
4007
4008    DWARFCompileUnit* type_cu = NULL;
4009    const DWARFDebugInfoEntry* type_die = NULL;
4010    if (num_matches)
4011    {
4012        DWARFDebugInfo* debug_info = DebugInfo();
4013        for (size_t i=0; i<num_matches; ++i)
4014        {
4015            const dw_offset_t die_offset = die_offsets[i];
4016            type_die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &type_cu);
4017
4018            if (type_die)
4019            {
4020                bool try_resolving_type = false;
4021
4022                // Don't try and resolve the DIE we are looking for with the DIE itself!
4023                if (type_die != die)
4024                {
4025                    const dw_tag_t type_die_tag = type_die->Tag();
4026                    // Make sure the tags match
4027                    if (type_die_tag == die_tag)
4028                    {
4029                        // The tags match, lets try resolving this type
4030                        try_resolving_type = true;
4031                    }
4032                    else
4033                    {
4034                        // The tags don't match, but we need to watch our for a
4035                        // forward declaration for a struct and ("struct foo")
4036                        // ends up being a class ("class foo { ... };") or
4037                        // vice versa.
4038                        switch (type_die_tag)
4039                        {
4040                        case DW_TAG_class_type:
4041                            // We had a "class foo", see if we ended up with a "struct foo { ... };"
4042                            try_resolving_type = (die_tag == DW_TAG_structure_type);
4043                            break;
4044                        case DW_TAG_structure_type:
4045                            // We had a "struct foo", see if we ended up with a "class foo { ... };"
4046                            try_resolving_type = (die_tag == DW_TAG_class_type);
4047                            break;
4048                        default:
4049                            // Tags don't match, don't event try to resolve
4050                            // using this type whose name matches....
4051                            break;
4052                        }
4053                    }
4054                }
4055
4056                if (try_resolving_type)
4057                {
4058                    Type *resolved_type = ResolveType (type_cu, type_die, false);
4059                    if (resolved_type && resolved_type != DIE_IS_BEING_PARSED)
4060                    {
4061                        DEBUG_PRINTF ("resolved 0x%8.8llx (cu 0x%8.8llx) from %s to 0x%8.8llx (cu 0x%8.8llx)\n",
4062                                      MakeUserID(die->GetOffset()),
4063                                      MakeUserID(curr_cu->GetOffset()),
4064                                      m_obj_file->GetFileSpec().GetFilename().AsCString(),
4065                                      MakeUserID(type_die->GetOffset()),
4066                                      MakeUserID(type_cu->GetOffset()));
4067
4068                        m_die_to_type[die] = resolved_type;
4069                        type_sp = resolved_type;
4070                        break;
4071                    }
4072                }
4073            }
4074            else
4075            {
4076                if (m_using_apple_tables)
4077                {
4078                    ReportError (".apple_types accelerator table had bad die 0x%8.8x for '%s'\n",
4079                                 die_offset, type_name.GetCString());
4080                }
4081            }
4082
4083        }
4084    }
4085    return type_sp;
4086}
4087
4088TypeSP
4089SymbolFileDWARF::ParseType (const SymbolContext& sc, DWARFCompileUnit* dwarf_cu, const DWARFDebugInfoEntry *die, bool *type_is_new_ptr)
4090{
4091    TypeSP type_sp;
4092
4093    if (type_is_new_ptr)
4094        *type_is_new_ptr = false;
4095
4096    AccessType accessibility = eAccessNone;
4097    if (die != NULL)
4098    {
4099        LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO));
4100        if (log)
4101            LogMessage (log.get(), "SymbolFileDWARF::ParseType (die = 0x%8.8x) %s '%s'",
4102                        die->GetOffset(),
4103                        DW_TAG_value_to_name(die->Tag()),
4104                        die->GetName(this, dwarf_cu));
4105//
4106//        LogSP log (LogChannelDWARF::GetLogIfAll(DWARF_LOG_DEBUG_INFO));
4107//        if (log && dwarf_cu)
4108//        {
4109//            StreamString s;
4110//            die->DumpLocation (this, dwarf_cu, s);
4111//            LogMessage (log.get(), "SymbolFileDwarf::%s %s", __FUNCTION__, s.GetData());
4112//
4113//        }
4114
4115        Type *type_ptr = m_die_to_type.lookup (die);
4116        TypeList* type_list = GetTypeList();
4117        if (type_ptr == NULL)
4118        {
4119            ClangASTContext &ast = GetClangASTContext();
4120            if (type_is_new_ptr)
4121                *type_is_new_ptr = true;
4122
4123            const dw_tag_t tag = die->Tag();
4124
4125            bool is_forward_declaration = false;
4126            DWARFDebugInfoEntry::Attributes attributes;
4127            const char *type_name_cstr = NULL;
4128            ConstString type_name_const_str;
4129            Type::ResolveState resolve_state = Type::eResolveStateUnresolved;
4130            size_t byte_size = 0;
4131            bool byte_size_valid = false;
4132            Declaration decl;
4133
4134            Type::EncodingDataType encoding_data_type = Type::eEncodingIsUID;
4135            clang_type_t clang_type = NULL;
4136
4137            dw_attr_t attr;
4138
4139            switch (tag)
4140            {
4141            case DW_TAG_base_type:
4142            case DW_TAG_pointer_type:
4143            case DW_TAG_reference_type:
4144            case DW_TAG_typedef:
4145            case DW_TAG_const_type:
4146            case DW_TAG_restrict_type:
4147            case DW_TAG_volatile_type:
4148            case DW_TAG_unspecified_type:
4149                {
4150                    // Set a bit that lets us know that we are currently parsing this
4151                    m_die_to_type[die] = DIE_IS_BEING_PARSED;
4152
4153                    const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
4154                    uint32_t encoding = 0;
4155                    lldb::user_id_t encoding_uid = LLDB_INVALID_UID;
4156
4157                    if (num_attributes > 0)
4158                    {
4159                        uint32_t i;
4160                        for (i=0; i<num_attributes; ++i)
4161                        {
4162                            attr = attributes.AttributeAtIndex(i);
4163                            DWARFFormValue form_value;
4164                            if (attributes.ExtractFormValueAtIndex(this, i, form_value))
4165                            {
4166                                switch (attr)
4167                                {
4168                                case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
4169                                case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
4170                                case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
4171                                case DW_AT_name:
4172
4173                                    type_name_cstr = form_value.AsCString(&get_debug_str_data());
4174                                    // Work around a bug in llvm-gcc where they give a name to a reference type which doesn't
4175                                    // include the "&"...
4176                                    if (tag == DW_TAG_reference_type)
4177                                    {
4178                                        if (strchr (type_name_cstr, '&') == NULL)
4179                                            type_name_cstr = NULL;
4180                                    }
4181                                    if (type_name_cstr)
4182                                        type_name_const_str.SetCString(type_name_cstr);
4183                                    break;
4184                                case DW_AT_byte_size:   byte_size = form_value.Unsigned();  byte_size_valid = true; break;
4185                                case DW_AT_encoding:    encoding = form_value.Unsigned(); break;
4186                                case DW_AT_type:        encoding_uid = form_value.Reference(dwarf_cu); break;
4187                                default:
4188                                case DW_AT_sibling:
4189                                    break;
4190                                }
4191                            }
4192                        }
4193                    }
4194
4195                    DEBUG_PRINTF ("0x%8.8llx: %s (\"%s\") type => 0x%8.8x\n", MakeUserID(die->GetOffset()), DW_TAG_value_to_name(tag), type_name_cstr, encoding_uid);
4196
4197                    switch (tag)
4198                    {
4199                    default:
4200                        break;
4201
4202                    case DW_TAG_unspecified_type:
4203                        if (strcmp(type_name_cstr, "nullptr_t") == 0)
4204                        {
4205                            resolve_state = Type::eResolveStateFull;
4206                            clang_type = ast.getASTContext()->NullPtrTy.getAsOpaquePtr();
4207                            break;
4208                        }
4209                        // Fall through to base type below in case we can handle the type there...
4210
4211                    case DW_TAG_base_type:
4212                        resolve_state = Type::eResolveStateFull;
4213                        clang_type = ast.GetBuiltinTypeForDWARFEncodingAndBitSize (type_name_cstr,
4214                                                                                   encoding,
4215                                                                                   byte_size * 8);
4216                        break;
4217
4218                    case DW_TAG_pointer_type:   encoding_data_type = Type::eEncodingIsPointerUID;           break;
4219                    case DW_TAG_reference_type: encoding_data_type = Type::eEncodingIsLValueReferenceUID;   break;
4220                    case DW_TAG_typedef:        encoding_data_type = Type::eEncodingIsTypedefUID;           break;
4221                    case DW_TAG_const_type:     encoding_data_type = Type::eEncodingIsConstUID;             break;
4222                    case DW_TAG_restrict_type:  encoding_data_type = Type::eEncodingIsRestrictUID;          break;
4223                    case DW_TAG_volatile_type:  encoding_data_type = Type::eEncodingIsVolatileUID;          break;
4224                    }
4225
4226                    if (type_name_cstr != NULL && sc.comp_unit != NULL &&
4227                        (sc.comp_unit->GetLanguage() == eLanguageTypeObjC || sc.comp_unit->GetLanguage() == eLanguageTypeObjC_plus_plus))
4228                    {
4229                        static ConstString g_objc_type_name_id("id");
4230                        static ConstString g_objc_type_name_Class("Class");
4231                        static ConstString g_objc_type_name_selector("SEL");
4232
4233                        if (type_name_const_str == g_objc_type_name_id)
4234                        {
4235                            clang_type = ast.GetBuiltInType_objc_id();
4236                            resolve_state = Type::eResolveStateFull;
4237
4238                        }
4239                        else if (type_name_const_str == g_objc_type_name_Class)
4240                        {
4241                            clang_type = ast.GetBuiltInType_objc_Class();
4242                            resolve_state = Type::eResolveStateFull;
4243                        }
4244                        else if (type_name_const_str == g_objc_type_name_selector)
4245                        {
4246                            clang_type = ast.GetBuiltInType_objc_selector();
4247                            resolve_state = Type::eResolveStateFull;
4248                        }
4249                    }
4250
4251                    type_sp.reset( new Type (MakeUserID(die->GetOffset()),
4252                                             this,
4253                                             type_name_const_str,
4254                                             byte_size,
4255                                             NULL,
4256                                             encoding_uid,
4257                                             encoding_data_type,
4258                                             &decl,
4259                                             clang_type,
4260                                             resolve_state));
4261
4262                    m_die_to_type[die] = type_sp.get();
4263
4264//                  Type* encoding_type = GetUniquedTypeForDIEOffset(encoding_uid, type_sp, NULL, 0, 0, false);
4265//                  if (encoding_type != NULL)
4266//                  {
4267//                      if (encoding_type != DIE_IS_BEING_PARSED)
4268//                          type_sp->SetEncodingType(encoding_type);
4269//                      else
4270//                          m_indirect_fixups.push_back(type_sp.get());
4271//                  }
4272                }
4273                break;
4274
4275            case DW_TAG_structure_type:
4276            case DW_TAG_union_type:
4277            case DW_TAG_class_type:
4278                {
4279                    // Set a bit that lets us know that we are currently parsing this
4280                    m_die_to_type[die] = DIE_IS_BEING_PARSED;
4281
4282                    LanguageType class_language = eLanguageTypeUnknown;
4283                    bool is_complete_objc_class = false;
4284                    //bool struct_is_class = false;
4285                    const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
4286                    if (num_attributes > 0)
4287                    {
4288                        uint32_t i;
4289                        for (i=0; i<num_attributes; ++i)
4290                        {
4291                            attr = attributes.AttributeAtIndex(i);
4292                            DWARFFormValue form_value;
4293                            if (attributes.ExtractFormValueAtIndex(this, i, form_value))
4294                            {
4295                                switch (attr)
4296                                {
4297                                case DW_AT_decl_file:
4298                                    decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned()));
4299                                    break;
4300
4301                                case DW_AT_decl_line:
4302                                    decl.SetLine(form_value.Unsigned());
4303                                    break;
4304
4305                                case DW_AT_decl_column:
4306                                    decl.SetColumn(form_value.Unsigned());
4307                                    break;
4308
4309                                case DW_AT_name:
4310                                    type_name_cstr = form_value.AsCString(&get_debug_str_data());
4311                                    type_name_const_str.SetCString(type_name_cstr);
4312                                    break;
4313
4314                                case DW_AT_byte_size:
4315                                    byte_size = form_value.Unsigned();
4316                                    byte_size_valid = true;
4317                                    break;
4318
4319                                case DW_AT_accessibility:
4320                                    accessibility = DW_ACCESS_to_AccessType(form_value.Unsigned());
4321                                    break;
4322
4323                                case DW_AT_declaration:
4324                                    is_forward_declaration = form_value.Unsigned() != 0;
4325                                    break;
4326
4327                                case DW_AT_APPLE_runtime_class:
4328                                    class_language = (LanguageType)form_value.Signed();
4329                                    break;
4330
4331                                case DW_AT_APPLE_objc_complete_type:
4332                                    is_complete_objc_class = form_value.Signed();
4333                                    break;
4334
4335                                case DW_AT_allocated:
4336                                case DW_AT_associated:
4337                                case DW_AT_data_location:
4338                                case DW_AT_description:
4339                                case DW_AT_start_scope:
4340                                case DW_AT_visibility:
4341                                default:
4342                                case DW_AT_sibling:
4343                                    break;
4344                                }
4345                            }
4346                        }
4347                    }
4348
4349                    UniqueDWARFASTType unique_ast_entry;
4350                    if (decl.IsValid())
4351                    {
4352                        if (GetUniqueDWARFASTTypeMap().Find (type_name_const_str,
4353                                                             this,
4354                                                             dwarf_cu,
4355                                                             die,
4356                                                             decl,
4357                                                             byte_size_valid ? byte_size : -1,
4358                                                             unique_ast_entry))
4359                        {
4360                            // We have already parsed this type or from another
4361                            // compile unit. GCC loves to use the "one definition
4362                            // rule" which can result in multiple definitions
4363                            // of the same class over and over in each compile
4364                            // unit.
4365                            type_sp = unique_ast_entry.m_type_sp;
4366                            if (type_sp)
4367                            {
4368                                m_die_to_type[die] = type_sp.get();
4369                                return type_sp;
4370                            }
4371                        }
4372                    }
4373
4374                    DEBUG_PRINTF ("0x%8.8llx: %s (\"%s\")\n", MakeUserID(die->GetOffset()), DW_TAG_value_to_name(tag), type_name_cstr);
4375
4376                    int tag_decl_kind = -1;
4377                    AccessType default_accessibility = eAccessNone;
4378                    if (tag == DW_TAG_structure_type)
4379                    {
4380                        tag_decl_kind = clang::TTK_Struct;
4381                        default_accessibility = eAccessPublic;
4382                    }
4383                    else if (tag == DW_TAG_union_type)
4384                    {
4385                        tag_decl_kind = clang::TTK_Union;
4386                        default_accessibility = eAccessPublic;
4387                    }
4388                    else if (tag == DW_TAG_class_type)
4389                    {
4390                        tag_decl_kind = clang::TTK_Class;
4391                        default_accessibility = eAccessPrivate;
4392                    }
4393
4394                    if (byte_size_valid && byte_size == 0 && type_name_cstr &&
4395                        die->HasChildren() == false &&
4396                        sc.comp_unit->GetLanguage() == eLanguageTypeObjC)
4397                    {
4398                        // Work around an issue with clang at the moment where
4399                        // forward declarations for objective C classes are emitted
4400                        // as:
4401                        //  DW_TAG_structure_type [2]
4402                        //  DW_AT_name( "ForwardObjcClass" )
4403                        //  DW_AT_byte_size( 0x00 )
4404                        //  DW_AT_decl_file( "..." )
4405                        //  DW_AT_decl_line( 1 )
4406                        //
4407                        // Note that there is no DW_AT_declaration and there are
4408                        // no children, and the byte size is zero.
4409                        is_forward_declaration = true;
4410                    }
4411
4412                    if (class_language == eLanguageTypeObjC)
4413                    {
4414                        if (!is_complete_objc_class)
4415                        {
4416                            // We have a valid eSymbolTypeObjCClass class symbol whose
4417                            // name matches the current objective C class that we
4418                            // are trying to find and this DIE isn't the complete
4419                            // definition (we checked is_complete_objc_class above and
4420                            // know it is false), so the real definition is in here somewhere
4421                            type_sp = FindCompleteObjCDefinitionTypeForDIE (dwarf_cu, die, type_name_const_str);
4422
4423                            if (!type_sp && m_debug_map_symfile)
4424                            {
4425                                // We weren't able to find a full declaration in
4426                                // this DWARF, see if we have a declaration anywhere
4427                                // else...
4428                                type_sp = m_debug_map_symfile->FindCompleteObjCDefinitionTypeForDIE (dwarf_cu, die, type_name_const_str);
4429                            }
4430
4431                            if (type_sp)
4432                            {
4433                                if (log)
4434                                {
4435                                    LogMessage (log.get(),
4436                                                "SymbolFileDWARF(%p) - 0x%8.8x: %s type \"%s\" is an incomplete objc type, complete type is 0x%8.8llx",
4437                                                this,
4438                                                die->GetOffset(),
4439                                                DW_TAG_value_to_name(tag),
4440                                                type_name_cstr,
4441                                                type_sp->GetID());
4442                                }
4443
4444                                // We found a real definition for this type elsewhere
4445                                // so lets use it and cache the fact that we found
4446                                // a complete type for this die
4447                                m_die_to_type[die] = type_sp.get();
4448                                return type_sp;
4449                            }
4450                        }
4451                    }
4452
4453
4454                    if (is_forward_declaration)
4455                    {
4456                        // We have a forward declaration to a type and we need
4457                        // to try and find a full declaration. We look in the
4458                        // current type index just in case we have a forward
4459                        // declaration followed by an actual declarations in the
4460                        // DWARF. If this fails, we need to look elsewhere...
4461                        if (log)
4462                        {
4463                            LogMessage (log.get(),
4464                                        "SymbolFileDWARF(%p) - 0x%8.8x: %s type \"%s\" is a forward declaration, trying to find complete type",
4465                                        this,
4466                                        die->GetOffset(),
4467                                        DW_TAG_value_to_name(tag),
4468                                        type_name_cstr);
4469                        }
4470
4471                        type_sp = FindDefinitionTypeForDIE (dwarf_cu, die, type_name_const_str);
4472
4473                        if (!type_sp && m_debug_map_symfile)
4474                        {
4475                            // We weren't able to find a full declaration in
4476                            // this DWARF, see if we have a declaration anywhere
4477                            // else...
4478                            type_sp = m_debug_map_symfile->FindDefinitionTypeForDIE (dwarf_cu, die, type_name_const_str);
4479                        }
4480
4481                        if (type_sp)
4482                        {
4483                            if (log)
4484                            {
4485                                LogMessage (log.get(),
4486                                            "SymbolFileDWARF(%p) - 0x%8.8x: %s type \"%s\" is a forward declaration, complete type is 0x%8.8llx",
4487                                            this,
4488                                            die->GetOffset(),
4489                                            DW_TAG_value_to_name(tag),
4490                                            type_name_cstr,
4491                                            type_sp->GetID());
4492                            }
4493
4494                            // We found a real definition for this type elsewhere
4495                            // so lets use it and cache the fact that we found
4496                            // a complete type for this die
4497                            m_die_to_type[die] = type_sp.get();
4498                            return type_sp;
4499                        }
4500                    }
4501                    assert (tag_decl_kind != -1);
4502                    bool clang_type_was_created = false;
4503                    clang_type = m_forward_decl_die_to_clang_type.lookup (die);
4504                    if (clang_type == NULL)
4505                    {
4506                        clang::DeclContext *decl_ctx = GetClangDeclContextContainingDIE (dwarf_cu, die, NULL);
4507                        if (accessibility == eAccessNone && decl_ctx)
4508                        {
4509                            // Check the decl context that contains this class/struct/union.
4510                            // If it is a class we must give it an accessability.
4511                            const clang::Decl::Kind containing_decl_kind = decl_ctx->getDeclKind();
4512                            if (DeclKindIsCXXClass (containing_decl_kind))
4513                                accessibility = default_accessibility;
4514                        }
4515
4516                        if (type_name_cstr && strchr (type_name_cstr, '<'))
4517                        {
4518                            ClangASTContext::TemplateParameterInfos template_param_infos;
4519                            if (ParseTemplateParameterInfos (dwarf_cu, die, template_param_infos))
4520                            {
4521                                clang::ClassTemplateDecl *class_template_decl = ParseClassTemplateDecl (decl_ctx,
4522                                                                                                        accessibility,
4523                                                                                                        type_name_cstr,
4524                                                                                                        tag_decl_kind,
4525                                                                                                        template_param_infos);
4526
4527                                clang::ClassTemplateSpecializationDecl *class_specialization_decl = ast.CreateClassTemplateSpecializationDecl (decl_ctx,
4528                                                                                                                                               class_template_decl,
4529                                                                                                                                               tag_decl_kind,
4530                                                                                                                                               template_param_infos);
4531                                clang_type = ast.CreateClassTemplateSpecializationType (class_specialization_decl);
4532                                clang_type_was_created = true;
4533                            }
4534                        }
4535
4536                        if (!clang_type_was_created)
4537                        {
4538                            clang_type_was_created = true;
4539                            clang_type = ast.CreateRecordType (decl_ctx,
4540                                                               accessibility,
4541                                                               type_name_cstr,
4542                                                               tag_decl_kind,
4543                                                               class_language);
4544                        }
4545                    }
4546
4547                    // Store a forward declaration to this class type in case any
4548                    // parameters in any class methods need it for the clang
4549                    // types for function prototypes.
4550                    LinkDeclContextToDIE(ClangASTContext::GetDeclContextForType(clang_type), die);
4551                    type_sp.reset (new Type (MakeUserID(die->GetOffset()),
4552                                             this,
4553                                             type_name_const_str,
4554                                             byte_size,
4555                                             NULL,
4556                                             LLDB_INVALID_UID,
4557                                             Type::eEncodingIsUID,
4558                                             &decl,
4559                                             clang_type,
4560                                             Type::eResolveStateForward));
4561
4562
4563                    // Add our type to the unique type map so we don't
4564                    // end up creating many copies of the same type over
4565                    // and over in the ASTContext for our module
4566                    unique_ast_entry.m_type_sp = type_sp;
4567                    unique_ast_entry.m_symfile = this;
4568                    unique_ast_entry.m_cu = dwarf_cu;
4569                    unique_ast_entry.m_die = die;
4570                    unique_ast_entry.m_declaration = decl;
4571                    GetUniqueDWARFASTTypeMap().Insert (type_name_const_str,
4572                                                       unique_ast_entry);
4573
4574                    if (!is_forward_declaration)
4575                    {
4576                        if (die->HasChildren() == false)
4577                        {
4578                            // No children for this struct/union/class, lets finish it
4579                            ast.StartTagDeclarationDefinition (clang_type);
4580                            ast.CompleteTagDeclarationDefinition (clang_type);
4581                        }
4582                        else if (clang_type_was_created)
4583                        {
4584                            // Leave this as a forward declaration until we need
4585                            // to know the details of the type. lldb_private::Type
4586                            // will automatically call the SymbolFile virtual function
4587                            // "SymbolFileDWARF::ResolveClangOpaqueTypeDefinition(Type *)"
4588                            // When the definition needs to be defined.
4589                            m_forward_decl_die_to_clang_type[die] = clang_type;
4590                            m_forward_decl_clang_type_to_die[ClangASTType::RemoveFastQualifiers (clang_type)] = die;
4591                            ClangASTContext::SetHasExternalStorage (clang_type, true);
4592                        }
4593                    }
4594
4595                }
4596                break;
4597
4598            case DW_TAG_enumeration_type:
4599                {
4600                    // Set a bit that lets us know that we are currently parsing this
4601                    m_die_to_type[die] = DIE_IS_BEING_PARSED;
4602
4603                    lldb::user_id_t encoding_uid = DW_INVALID_OFFSET;
4604
4605                    const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
4606                    if (num_attributes > 0)
4607                    {
4608                        uint32_t i;
4609
4610                        for (i=0; i<num_attributes; ++i)
4611                        {
4612                            attr = attributes.AttributeAtIndex(i);
4613                            DWARFFormValue form_value;
4614                            if (attributes.ExtractFormValueAtIndex(this, i, form_value))
4615                            {
4616                                switch (attr)
4617                                {
4618                                case DW_AT_decl_file:       decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
4619                                case DW_AT_decl_line:       decl.SetLine(form_value.Unsigned()); break;
4620                                case DW_AT_decl_column:     decl.SetColumn(form_value.Unsigned()); break;
4621                                case DW_AT_name:
4622                                    type_name_cstr = form_value.AsCString(&get_debug_str_data());
4623                                    type_name_const_str.SetCString(type_name_cstr);
4624                                    break;
4625                                case DW_AT_type:            encoding_uid = form_value.Reference(dwarf_cu); break;
4626                                case DW_AT_byte_size:       byte_size = form_value.Unsigned(); byte_size_valid = true; break;
4627                                case DW_AT_accessibility:   accessibility = DW_ACCESS_to_AccessType(form_value.Unsigned()); break;
4628                                case DW_AT_declaration:     is_forward_declaration = form_value.Unsigned() != 0; break;
4629                                case DW_AT_allocated:
4630                                case DW_AT_associated:
4631                                case DW_AT_bit_stride:
4632                                case DW_AT_byte_stride:
4633                                case DW_AT_data_location:
4634                                case DW_AT_description:
4635                                case DW_AT_start_scope:
4636                                case DW_AT_visibility:
4637                                case DW_AT_specification:
4638                                case DW_AT_abstract_origin:
4639                                case DW_AT_sibling:
4640                                    break;
4641                                }
4642                            }
4643                        }
4644
4645                        DEBUG_PRINTF ("0x%8.8llx: %s (\"%s\")\n", MakeUserID(die->GetOffset()), DW_TAG_value_to_name(tag), type_name_cstr);
4646
4647                        clang_type_t enumerator_clang_type = NULL;
4648                        clang_type = m_forward_decl_die_to_clang_type.lookup (die);
4649                        if (clang_type == NULL)
4650                        {
4651                            enumerator_clang_type = ast.GetBuiltinTypeForDWARFEncodingAndBitSize (NULL,
4652                                                                                                  DW_ATE_signed,
4653                                                                                                  byte_size * 8);
4654                            clang_type = ast.CreateEnumerationType (type_name_cstr,
4655                                                                    GetClangDeclContextContainingDIE (dwarf_cu, die, NULL),
4656                                                                    decl,
4657                                                                    enumerator_clang_type);
4658                        }
4659                        else
4660                        {
4661                            enumerator_clang_type = ClangASTContext::GetEnumerationIntegerType (clang_type);
4662                            assert (enumerator_clang_type != NULL);
4663                        }
4664
4665                        LinkDeclContextToDIE(ClangASTContext::GetDeclContextForType(clang_type), die);
4666
4667                        type_sp.reset( new Type (MakeUserID(die->GetOffset()),
4668                                                 this,
4669                                                 type_name_const_str,
4670                                                 byte_size,
4671                                                 NULL,
4672                                                 encoding_uid,
4673                                                 Type::eEncodingIsUID,
4674                                                 &decl,
4675                                                 clang_type,
4676                                                 Type::eResolveStateForward));
4677
4678                        ast.StartTagDeclarationDefinition (clang_type);
4679                        if (die->HasChildren())
4680                        {
4681                            SymbolContext cu_sc(GetCompUnitForDWARFCompUnit(dwarf_cu));
4682                            ParseChildEnumerators(cu_sc, clang_type, type_sp->GetByteSize(), dwarf_cu, die);
4683                        }
4684                        ast.CompleteTagDeclarationDefinition (clang_type);
4685                    }
4686                }
4687                break;
4688
4689            case DW_TAG_inlined_subroutine:
4690            case DW_TAG_subprogram:
4691            case DW_TAG_subroutine_type:
4692                {
4693                    // Set a bit that lets us know that we are currently parsing this
4694                    m_die_to_type[die] = DIE_IS_BEING_PARSED;
4695
4696                    const char *mangled = NULL;
4697                    dw_offset_t type_die_offset = DW_INVALID_OFFSET;
4698                    bool is_variadic = false;
4699                    bool is_inline = false;
4700                    bool is_static = false;
4701                    bool is_virtual = false;
4702                    bool is_explicit = false;
4703                    bool is_artificial = false;
4704                    dw_offset_t specification_die_offset = DW_INVALID_OFFSET;
4705                    dw_offset_t abstract_origin_die_offset = DW_INVALID_OFFSET;
4706
4707                    unsigned type_quals = 0;
4708                    clang::StorageClass storage = clang::SC_None;//, Extern, Static, PrivateExtern
4709
4710
4711                    const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
4712                    if (num_attributes > 0)
4713                    {
4714                        uint32_t i;
4715                        for (i=0; i<num_attributes; ++i)
4716                        {
4717                            attr = attributes.AttributeAtIndex(i);
4718                            DWARFFormValue form_value;
4719                            if (attributes.ExtractFormValueAtIndex(this, i, form_value))
4720                            {
4721                                switch (attr)
4722                                {
4723                                case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
4724                                case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
4725                                case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
4726                                case DW_AT_name:
4727                                    type_name_cstr = form_value.AsCString(&get_debug_str_data());
4728                                    type_name_const_str.SetCString(type_name_cstr);
4729                                    break;
4730
4731                                case DW_AT_MIPS_linkage_name:   mangled = form_value.AsCString(&get_debug_str_data()); break;
4732                                case DW_AT_type:                type_die_offset = form_value.Reference(dwarf_cu); break;
4733                                case DW_AT_accessibility:       accessibility = DW_ACCESS_to_AccessType(form_value.Unsigned()); break;
4734                                case DW_AT_declaration:         is_forward_declaration = form_value.Unsigned() != 0; break;
4735                                case DW_AT_inline:              is_inline = form_value.Unsigned() != 0; break;
4736                                case DW_AT_virtuality:          is_virtual = form_value.Unsigned() != 0;  break;
4737                                case DW_AT_explicit:            is_explicit = form_value.Unsigned() != 0;  break;
4738                                case DW_AT_artificial:          is_artificial = form_value.Unsigned() != 0;  break;
4739
4740
4741                                case DW_AT_external:
4742                                    if (form_value.Unsigned())
4743                                    {
4744                                        if (storage == clang::SC_None)
4745                                            storage = clang::SC_Extern;
4746                                        else
4747                                            storage = clang::SC_PrivateExtern;
4748                                    }
4749                                    break;
4750
4751                                case DW_AT_specification:
4752                                    specification_die_offset = form_value.Reference(dwarf_cu);
4753                                    break;
4754
4755                                case DW_AT_abstract_origin:
4756                                    abstract_origin_die_offset = form_value.Reference(dwarf_cu);
4757                                    break;
4758
4759                                case DW_AT_allocated:
4760                                case DW_AT_associated:
4761                                case DW_AT_address_class:
4762                                case DW_AT_calling_convention:
4763                                case DW_AT_data_location:
4764                                case DW_AT_elemental:
4765                                case DW_AT_entry_pc:
4766                                case DW_AT_frame_base:
4767                                case DW_AT_high_pc:
4768                                case DW_AT_low_pc:
4769                                case DW_AT_object_pointer:
4770                                case DW_AT_prototyped:
4771                                case DW_AT_pure:
4772                                case DW_AT_ranges:
4773                                case DW_AT_recursive:
4774                                case DW_AT_return_addr:
4775                                case DW_AT_segment:
4776                                case DW_AT_start_scope:
4777                                case DW_AT_static_link:
4778                                case DW_AT_trampoline:
4779                                case DW_AT_visibility:
4780                                case DW_AT_vtable_elem_location:
4781                                case DW_AT_description:
4782                                case DW_AT_sibling:
4783                                    break;
4784                                }
4785                            }
4786                        }
4787                    }
4788
4789                    DEBUG_PRINTF ("0x%8.8llx: %s (\"%s\")\n", MakeUserID(die->GetOffset()), DW_TAG_value_to_name(tag), type_name_cstr);
4790
4791                    clang_type_t return_clang_type = NULL;
4792                    Type *func_type = NULL;
4793
4794                    if (type_die_offset != DW_INVALID_OFFSET)
4795                        func_type = ResolveTypeUID(type_die_offset);
4796
4797                    if (func_type)
4798                        return_clang_type = func_type->GetClangForwardType();
4799                    else
4800                        return_clang_type = ast.GetBuiltInType_void();
4801
4802
4803                    std::vector<clang_type_t> function_param_types;
4804                    std::vector<clang::ParmVarDecl*> function_param_decls;
4805
4806                    // Parse the function children for the parameters
4807
4808                    const DWARFDebugInfoEntry *decl_ctx_die = NULL;
4809                    clang::DeclContext *containing_decl_ctx = GetClangDeclContextContainingDIE (dwarf_cu, die, &decl_ctx_die);
4810                    const clang::Decl::Kind containing_decl_kind = containing_decl_ctx->getDeclKind();
4811
4812                    const bool is_cxx_method = DeclKindIsCXXClass (containing_decl_kind);
4813                    // Start off static. This will be set to false in ParseChildParameters(...)
4814                    // if we find a "this" paramters as the first parameter
4815                    if (is_cxx_method)
4816                        is_static = true;
4817
4818                    if (die->HasChildren())
4819                    {
4820                        bool skip_artificial = true;
4821                        ParseChildParameters (sc,
4822                                              containing_decl_ctx,
4823                                              type_sp,
4824                                              dwarf_cu,
4825                                              die,
4826                                              skip_artificial,
4827                                              is_static,
4828                                              type_list,
4829                                              function_param_types,
4830                                              function_param_decls,
4831                                              type_quals);
4832                    }
4833
4834                    // clang_type will get the function prototype clang type after this call
4835                    clang_type = ast.CreateFunctionType (return_clang_type,
4836                                                         &function_param_types[0],
4837                                                         function_param_types.size(),
4838                                                         is_variadic,
4839                                                         type_quals);
4840
4841                    if (type_name_cstr)
4842                    {
4843                        bool type_handled = false;
4844                        if (tag == DW_TAG_subprogram)
4845                        {
4846                            if (ObjCLanguageRuntime::IsPossibleObjCMethodName (type_name_cstr))
4847                            {
4848                                // We need to find the DW_TAG_class_type or
4849                                // DW_TAG_struct_type by name so we can add this
4850                                // as a member function of the class.
4851                                const char *class_name_start = type_name_cstr + 2;
4852                                const char *class_name_end = ::strchr (class_name_start, ' ');
4853                                SymbolContext empty_sc;
4854                                clang_type_t class_opaque_type = NULL;
4855                                if (class_name_start < class_name_end)
4856                                {
4857                                    ConstString class_name (class_name_start, class_name_end - class_name_start);
4858                                    TypeList types;
4859                                    const uint32_t match_count = FindTypes (empty_sc, class_name, NULL, true, UINT32_MAX, types);
4860                                    if (match_count > 0)
4861                                    {
4862                                        for (uint32_t i=0; i<match_count; ++i)
4863                                        {
4864                                            Type *type = types.GetTypeAtIndex (i).get();
4865                                            clang_type_t type_clang_forward_type = type->GetClangForwardType();
4866                                            if (ClangASTContext::IsObjCClassType (type_clang_forward_type))
4867                                            {
4868                                                class_opaque_type = type_clang_forward_type;
4869                                                break;
4870                                            }
4871                                        }
4872                                    }
4873                                }
4874
4875                                if (class_opaque_type)
4876                                {
4877                                    // If accessibility isn't set to anything valid, assume public for
4878                                    // now...
4879                                    if (accessibility == eAccessNone)
4880                                        accessibility = eAccessPublic;
4881
4882                                    clang::ObjCMethodDecl *objc_method_decl;
4883                                    objc_method_decl = ast.AddMethodToObjCObjectType (class_opaque_type,
4884                                                                                      type_name_cstr,
4885                                                                                      clang_type,
4886                                                                                      accessibility);
4887                                    LinkDeclContextToDIE(ClangASTContext::GetAsDeclContext(objc_method_decl), die);
4888                                    type_handled = objc_method_decl != NULL;
4889                                }
4890                            }
4891                            else if (is_cxx_method)
4892                            {
4893                                // Look at the parent of this DIE and see if is is
4894                                // a class or struct and see if this is actually a
4895                                // C++ method
4896                                Type *class_type = ResolveType (dwarf_cu, decl_ctx_die);
4897                                if (class_type)
4898                                {
4899                                    if (specification_die_offset != DW_INVALID_OFFSET)
4900                                    {
4901                                        // We have a specification which we are going to base our function
4902                                        // prototype off of, so we need this type to be completed so that the
4903                                        // m_die_to_decl_ctx for the method in the specification has a valid
4904                                        // clang decl context.
4905                                        class_type->GetClangFullType();
4906                                        // If we have a specification, then the function type should have been
4907                                        // made with the specification and not with this die.
4908                                        DWARFCompileUnitSP spec_cu_sp;
4909                                        const DWARFDebugInfoEntry* spec_die = DebugInfo()->GetDIEPtr(specification_die_offset, &spec_cu_sp);
4910                                        clang::DeclContext *spec_clang_decl_ctx = GetCachedClangDeclContextForDIE (spec_die);
4911                                        if (spec_clang_decl_ctx)
4912                                        {
4913                                            LinkDeclContextToDIE(spec_clang_decl_ctx, die);
4914                                        }
4915                                        else
4916                                        {
4917                                            ReportWarning ("0x%8.8llx: DW_AT_specification(0x%8.8x) has no decl\n",
4918                                                           MakeUserID(die->GetOffset()),
4919                                                           specification_die_offset);
4920                                        }
4921                                        type_handled = true;
4922                                    }
4923                                    else if (abstract_origin_die_offset != DW_INVALID_OFFSET)
4924                                    {
4925                                        // We have a specification which we are going to base our function
4926                                        // prototype off of, so we need this type to be completed so that the
4927                                        // m_die_to_decl_ctx for the method in the abstract origin has a valid
4928                                        // clang decl context.
4929                                        class_type->GetClangFullType();
4930
4931                                        DWARFCompileUnitSP abs_cu_sp;
4932                                        const DWARFDebugInfoEntry* abs_die = DebugInfo()->GetDIEPtr(abstract_origin_die_offset, &abs_cu_sp);
4933                                        clang::DeclContext *abs_clang_decl_ctx = GetCachedClangDeclContextForDIE (abs_die);
4934                                        if (abs_clang_decl_ctx)
4935                                        {
4936                                            LinkDeclContextToDIE (abs_clang_decl_ctx, die);
4937                                        }
4938                                        else
4939                                        {
4940                                            ReportWarning ("0x%8.8llx: DW_AT_abstract_origin(0x%8.8x) has no decl\n",
4941                                                           MakeUserID(die->GetOffset()),
4942                                                           abstract_origin_die_offset);
4943                                        }
4944                                        type_handled = true;
4945                                    }
4946                                    else
4947                                    {
4948                                        clang_type_t class_opaque_type = class_type->GetClangForwardType();
4949                                        if (ClangASTContext::IsCXXClassType (class_opaque_type))
4950                                        {
4951                                            if (ClangASTContext::IsBeingDefined (class_opaque_type))
4952                                            {
4953                                                // Neither GCC 4.2 nor clang++ currently set a valid accessibility
4954                                                // in the DWARF for C++ methods... Default to public for now...
4955                                                if (accessibility == eAccessNone)
4956                                                    accessibility = eAccessPublic;
4957
4958                                                if (!is_static && !die->HasChildren())
4959                                                {
4960                                                    // We have a C++ member function with no children (this pointer!)
4961                                                    // and clang will get mad if we try and make a function that isn't
4962                                                    // well formed in the DWARF, so we will just skip it...
4963                                                    type_handled = true;
4964                                                }
4965                                                else
4966                                                {
4967                                                    clang::CXXMethodDecl *cxx_method_decl;
4968                                                    // REMOVE THE CRASH DESCRIPTION BELOW
4969                                                    Host::SetCrashDescriptionWithFormat ("SymbolFileDWARF::ParseType() is adding a method %s to class %s in DIE 0x%8.8llx from %s/%s",
4970                                                                                         type_name_cstr,
4971                                                                                         class_type->GetName().GetCString(),
4972                                                                                         MakeUserID(die->GetOffset()),
4973                                                                                         m_obj_file->GetFileSpec().GetDirectory().GetCString(),
4974                                                                                         m_obj_file->GetFileSpec().GetFilename().GetCString());
4975
4976                                                    const bool is_attr_used = false;
4977
4978                                                    cxx_method_decl = ast.AddMethodToCXXRecordType (class_opaque_type,
4979                                                                                                    type_name_cstr,
4980                                                                                                    clang_type,
4981                                                                                                    accessibility,
4982                                                                                                    is_virtual,
4983                                                                                                    is_static,
4984                                                                                                    is_inline,
4985                                                                                                    is_explicit,
4986                                                                                                    is_attr_used,
4987                                                                                                    is_artificial);
4988                                                    LinkDeclContextToDIE(ClangASTContext::GetAsDeclContext(cxx_method_decl), die);
4989
4990                                                    Host::SetCrashDescription (NULL);
4991
4992                                                    type_handled = cxx_method_decl != NULL;
4993                                                }
4994                                            }
4995                                            else
4996                                            {
4997                                                // We were asked to parse the type for a method in a class, yet the
4998                                                // class hasn't been asked to complete itself through the
4999                                                // clang::ExternalASTSource protocol, so we need to just have the
5000                                                // class complete itself and do things the right way, then our
5001                                                // DIE should then have an entry in the m_die_to_type map. First
5002                                                // we need to modify the m_die_to_type so it doesn't think we are
5003                                                // trying to parse this DIE anymore...
5004                                                m_die_to_type[die] = NULL;
5005
5006                                                // Now we get the full type to force our class type to complete itself
5007                                                // using the clang::ExternalASTSource protocol which will parse all
5008                                                // base classes and all methods (including the method for this DIE).
5009                                                class_type->GetClangFullType();
5010
5011                                                // The type for this DIE should have been filled in the function call above
5012                                                type_ptr = m_die_to_type[die];
5013                                                if (type_ptr)
5014                                                {
5015                                                    type_sp = type_ptr;
5016                                                    break;
5017                                                }
5018                                            }
5019                                        }
5020                                    }
5021                                }
5022                            }
5023                        }
5024
5025                        if (!type_handled)
5026                        {
5027                            // We just have a function that isn't part of a class
5028                            clang::FunctionDecl *function_decl = ast.CreateFunctionDeclaration (containing_decl_ctx,
5029                                                                                                type_name_cstr,
5030                                                                                                clang_type,
5031                                                                                                storage,
5032                                                                                                is_inline);
5033
5034                            // Add the decl to our DIE to decl context map
5035                            assert (function_decl);
5036                            LinkDeclContextToDIE(function_decl, die);
5037                            if (!function_param_decls.empty())
5038                                ast.SetFunctionParameters (function_decl,
5039                                                           &function_param_decls.front(),
5040                                                           function_param_decls.size());
5041                        }
5042                    }
5043                    type_sp.reset( new Type (MakeUserID(die->GetOffset()),
5044                                             this,
5045                                             type_name_const_str,
5046                                             0,
5047                                             NULL,
5048                                             LLDB_INVALID_UID,
5049                                             Type::eEncodingIsUID,
5050                                             &decl,
5051                                             clang_type,
5052                                             Type::eResolveStateFull));
5053                    assert(type_sp.get());
5054                }
5055                break;
5056
5057            case DW_TAG_array_type:
5058                {
5059                    // Set a bit that lets us know that we are currently parsing this
5060                    m_die_to_type[die] = DIE_IS_BEING_PARSED;
5061
5062                    lldb::user_id_t type_die_offset = DW_INVALID_OFFSET;
5063                    int64_t first_index = 0;
5064                    uint32_t byte_stride = 0;
5065                    uint32_t bit_stride = 0;
5066                    const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
5067
5068                    if (num_attributes > 0)
5069                    {
5070                        uint32_t i;
5071                        for (i=0; i<num_attributes; ++i)
5072                        {
5073                            attr = attributes.AttributeAtIndex(i);
5074                            DWARFFormValue form_value;
5075                            if (attributes.ExtractFormValueAtIndex(this, i, form_value))
5076                            {
5077                                switch (attr)
5078                                {
5079                                case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
5080                                case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
5081                                case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
5082                                case DW_AT_name:
5083                                    type_name_cstr = form_value.AsCString(&get_debug_str_data());
5084                                    type_name_const_str.SetCString(type_name_cstr);
5085                                    break;
5086
5087                                case DW_AT_type:            type_die_offset = form_value.Reference(dwarf_cu); break;
5088                                case DW_AT_byte_size:       byte_size = form_value.Unsigned(); byte_size_valid = true; break;
5089                                case DW_AT_byte_stride:     byte_stride = form_value.Unsigned(); break;
5090                                case DW_AT_bit_stride:      bit_stride = form_value.Unsigned(); break;
5091                                case DW_AT_accessibility:   accessibility = DW_ACCESS_to_AccessType(form_value.Unsigned()); break;
5092                                case DW_AT_declaration:     is_forward_declaration = form_value.Unsigned() != 0; break;
5093                                case DW_AT_allocated:
5094                                case DW_AT_associated:
5095                                case DW_AT_data_location:
5096                                case DW_AT_description:
5097                                case DW_AT_ordering:
5098                                case DW_AT_start_scope:
5099                                case DW_AT_visibility:
5100                                case DW_AT_specification:
5101                                case DW_AT_abstract_origin:
5102                                case DW_AT_sibling:
5103                                    break;
5104                                }
5105                            }
5106                        }
5107
5108                        DEBUG_PRINTF ("0x%8.8llx: %s (\"%s\")\n", MakeUserID(die->GetOffset()), DW_TAG_value_to_name(tag), type_name_cstr);
5109
5110                        Type *element_type = ResolveTypeUID(type_die_offset);
5111
5112                        if (element_type)
5113                        {
5114                            std::vector<uint64_t> element_orders;
5115                            ParseChildArrayInfo(sc, dwarf_cu, die, first_index, element_orders, byte_stride, bit_stride);
5116                            // We have an array that claims to have no members, lets give it at least one member...
5117                            if (element_orders.empty())
5118                                element_orders.push_back (1);
5119                            if (byte_stride == 0 && bit_stride == 0)
5120                                byte_stride = element_type->GetByteSize();
5121                            clang_type_t array_element_type = element_type->GetClangForwardType();
5122                            uint64_t array_element_bit_stride = byte_stride * 8 + bit_stride;
5123                            uint64_t num_elements = 0;
5124                            std::vector<uint64_t>::const_reverse_iterator pos;
5125                            std::vector<uint64_t>::const_reverse_iterator end = element_orders.rend();
5126                            for (pos = element_orders.rbegin(); pos != end; ++pos)
5127                            {
5128                                num_elements = *pos;
5129                                clang_type = ast.CreateArrayType (array_element_type,
5130                                                                  num_elements,
5131                                                                  num_elements * array_element_bit_stride);
5132                                array_element_type = clang_type;
5133                                array_element_bit_stride = array_element_bit_stride * num_elements;
5134                            }
5135                            ConstString empty_name;
5136                            type_sp.reset( new Type (MakeUserID(die->GetOffset()),
5137                                                     this,
5138                                                     empty_name,
5139                                                     array_element_bit_stride / 8,
5140                                                     NULL,
5141                                                     type_die_offset,
5142                                                     Type::eEncodingIsUID,
5143                                                     &decl,
5144                                                     clang_type,
5145                                                     Type::eResolveStateFull));
5146                            type_sp->SetEncodingType (element_type);
5147                        }
5148                    }
5149                }
5150                break;
5151
5152            case DW_TAG_ptr_to_member_type:
5153                {
5154                    dw_offset_t type_die_offset = DW_INVALID_OFFSET;
5155                    dw_offset_t containing_type_die_offset = DW_INVALID_OFFSET;
5156
5157                    const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
5158
5159                    if (num_attributes > 0) {
5160                        uint32_t i;
5161                        for (i=0; i<num_attributes; ++i)
5162                        {
5163                            attr = attributes.AttributeAtIndex(i);
5164                            DWARFFormValue form_value;
5165                            if (attributes.ExtractFormValueAtIndex(this, i, form_value))
5166                            {
5167                                switch (attr)
5168                                {
5169                                    case DW_AT_type:
5170                                        type_die_offset = form_value.Reference(dwarf_cu); break;
5171                                    case DW_AT_containing_type:
5172                                        containing_type_die_offset = form_value.Reference(dwarf_cu); break;
5173                                }
5174                            }
5175                        }
5176
5177                        Type *pointee_type = ResolveTypeUID(type_die_offset);
5178                        Type *class_type = ResolveTypeUID(containing_type_die_offset);
5179
5180                        clang_type_t pointee_clang_type = pointee_type->GetClangForwardType();
5181                        clang_type_t class_clang_type = class_type->GetClangLayoutType();
5182
5183                        clang_type = ast.CreateMemberPointerType(pointee_clang_type,
5184                                                                 class_clang_type);
5185
5186                        byte_size = ClangASTType::GetClangTypeBitWidth (ast.getASTContext(),
5187                                                                       clang_type) / 8;
5188
5189                        type_sp.reset( new Type (MakeUserID(die->GetOffset()),
5190                                                 this,
5191                                                 type_name_const_str,
5192                                                 byte_size,
5193                                                 NULL,
5194                                                 LLDB_INVALID_UID,
5195                                                 Type::eEncodingIsUID,
5196                                                 NULL,
5197                                                 clang_type,
5198                                                 Type::eResolveStateForward));
5199                    }
5200
5201                    break;
5202                }
5203            default:
5204                assert(false && "Unhandled type tag!");
5205                break;
5206            }
5207
5208            if (type_sp.get())
5209            {
5210                const DWARFDebugInfoEntry *sc_parent_die = GetParentSymbolContextDIE(die);
5211                dw_tag_t sc_parent_tag = sc_parent_die ? sc_parent_die->Tag() : 0;
5212
5213                SymbolContextScope * symbol_context_scope = NULL;
5214                if (sc_parent_tag == DW_TAG_compile_unit)
5215                {
5216                    symbol_context_scope = sc.comp_unit;
5217                }
5218                else if (sc.function != NULL)
5219                {
5220                    symbol_context_scope = sc.function->GetBlock(true).FindBlockByID(MakeUserID(sc_parent_die->GetOffset()));
5221                    if (symbol_context_scope == NULL)
5222                        symbol_context_scope = sc.function;
5223                }
5224
5225                if (symbol_context_scope != NULL)
5226                {
5227                    type_sp->SetSymbolContextScope(symbol_context_scope);
5228                }
5229
5230                // We are ready to put this type into the uniqued list up at the module level
5231                type_list->Insert (type_sp);
5232
5233                m_die_to_type[die] = type_sp.get();
5234            }
5235        }
5236        else if (type_ptr != DIE_IS_BEING_PARSED)
5237        {
5238            type_sp = type_ptr;
5239        }
5240    }
5241    return type_sp;
5242}
5243
5244size_t
5245SymbolFileDWARF::ParseTypes
5246(
5247    const SymbolContext& sc,
5248    DWARFCompileUnit* dwarf_cu,
5249    const DWARFDebugInfoEntry *die,
5250    bool parse_siblings,
5251    bool parse_children
5252)
5253{
5254    size_t types_added = 0;
5255    while (die != NULL)
5256    {
5257        bool type_is_new = false;
5258        if (ParseType(sc, dwarf_cu, die, &type_is_new).get())
5259        {
5260            if (type_is_new)
5261                ++types_added;
5262        }
5263
5264        if (parse_children && die->HasChildren())
5265        {
5266            if (die->Tag() == DW_TAG_subprogram)
5267            {
5268                SymbolContext child_sc(sc);
5269                child_sc.function = sc.comp_unit->FindFunctionByUID(MakeUserID(die->GetOffset())).get();
5270                types_added += ParseTypes(child_sc, dwarf_cu, die->GetFirstChild(), true, true);
5271            }
5272            else
5273                types_added += ParseTypes(sc, dwarf_cu, die->GetFirstChild(), true, true);
5274        }
5275
5276        if (parse_siblings)
5277            die = die->GetSibling();
5278        else
5279            die = NULL;
5280    }
5281    return types_added;
5282}
5283
5284
5285size_t
5286SymbolFileDWARF::ParseFunctionBlocks (const SymbolContext &sc)
5287{
5288    assert(sc.comp_unit && sc.function);
5289    size_t functions_added = 0;
5290    DWARFCompileUnit* dwarf_cu = GetDWARFCompileUnitForUID(sc.comp_unit->GetID());
5291    if (dwarf_cu)
5292    {
5293        dw_offset_t function_die_offset = sc.function->GetID();
5294        const DWARFDebugInfoEntry *function_die = dwarf_cu->GetDIEPtr(function_die_offset);
5295        if (function_die)
5296        {
5297            ParseFunctionBlocks(sc, &sc.function->GetBlock (false), dwarf_cu, function_die, LLDB_INVALID_ADDRESS, 0);
5298        }
5299    }
5300
5301    return functions_added;
5302}
5303
5304
5305size_t
5306SymbolFileDWARF::ParseTypes (const SymbolContext &sc)
5307{
5308    // At least a compile unit must be valid
5309    assert(sc.comp_unit);
5310    size_t types_added = 0;
5311    DWARFCompileUnit* dwarf_cu = GetDWARFCompileUnitForUID(sc.comp_unit->GetID());
5312    if (dwarf_cu)
5313    {
5314        if (sc.function)
5315        {
5316            dw_offset_t function_die_offset = sc.function->GetID();
5317            const DWARFDebugInfoEntry *func_die = dwarf_cu->GetDIEPtr(function_die_offset);
5318            if (func_die && func_die->HasChildren())
5319            {
5320                types_added = ParseTypes(sc, dwarf_cu, func_die->GetFirstChild(), true, true);
5321            }
5322        }
5323        else
5324        {
5325            const DWARFDebugInfoEntry *dwarf_cu_die = dwarf_cu->DIE();
5326            if (dwarf_cu_die && dwarf_cu_die->HasChildren())
5327            {
5328                types_added = ParseTypes(sc, dwarf_cu, dwarf_cu_die->GetFirstChild(), true, true);
5329            }
5330        }
5331    }
5332
5333    return types_added;
5334}
5335
5336size_t
5337SymbolFileDWARF::ParseVariablesForContext (const SymbolContext& sc)
5338{
5339    if (sc.comp_unit != NULL)
5340    {
5341        DWARFDebugInfo* info = DebugInfo();
5342        if (info == NULL)
5343            return 0;
5344
5345        uint32_t cu_idx = UINT32_MAX;
5346        DWARFCompileUnit* dwarf_cu = info->GetCompileUnit(sc.comp_unit->GetID(), &cu_idx).get();
5347
5348        if (dwarf_cu == NULL)
5349            return 0;
5350
5351        if (sc.function)
5352        {
5353            const DWARFDebugInfoEntry *function_die = dwarf_cu->GetDIEPtr(sc.function->GetID());
5354
5355            dw_addr_t func_lo_pc = function_die->GetAttributeValueAsUnsigned (this, dwarf_cu, DW_AT_low_pc, DW_INVALID_ADDRESS);
5356            assert (func_lo_pc != DW_INVALID_ADDRESS);
5357
5358            const size_t num_variables = ParseVariables(sc, dwarf_cu, func_lo_pc, function_die->GetFirstChild(), true, true);
5359
5360            // Let all blocks know they have parse all their variables
5361            sc.function->GetBlock (false).SetDidParseVariables (true, true);
5362
5363            return num_variables;
5364        }
5365        else if (sc.comp_unit)
5366        {
5367            uint32_t vars_added = 0;
5368            VariableListSP variables (sc.comp_unit->GetVariableList(false));
5369
5370            if (variables.get() == NULL)
5371            {
5372                variables.reset(new VariableList());
5373                sc.comp_unit->SetVariableList(variables);
5374
5375                DWARFCompileUnit* match_dwarf_cu = NULL;
5376                const DWARFDebugInfoEntry* die = NULL;
5377                DIEArray die_offsets;
5378                if (m_using_apple_tables)
5379                {
5380                    if (m_apple_names_ap.get())
5381                    {
5382                        DWARFMappedHash::DIEInfoArray hash_data_array;
5383                        if (m_apple_names_ap->AppendAllDIEsInRange (dwarf_cu->GetOffset(),
5384                                                                    dwarf_cu->GetNextCompileUnitOffset(),
5385                                                                    hash_data_array))
5386                        {
5387                            DWARFMappedHash::ExtractDIEArray (hash_data_array, die_offsets);
5388                        }
5389                    }
5390                }
5391                else
5392                {
5393                    // Index if we already haven't to make sure the compile units
5394                    // get indexed and make their global DIE index list
5395                    if (!m_indexed)
5396                        Index ();
5397
5398                    m_global_index.FindAllEntriesForCompileUnit (dwarf_cu->GetOffset(),
5399                                                                 dwarf_cu->GetNextCompileUnitOffset(),
5400                                                                 die_offsets);
5401                }
5402
5403                const size_t num_matches = die_offsets.size();
5404                if (num_matches)
5405                {
5406                    DWARFDebugInfo* debug_info = DebugInfo();
5407                    for (size_t i=0; i<num_matches; ++i)
5408                    {
5409                        const dw_offset_t die_offset = die_offsets[i];
5410                        die = debug_info->GetDIEPtrWithCompileUnitHint (die_offset, &match_dwarf_cu);
5411                        if (die)
5412                        {
5413                            VariableSP var_sp (ParseVariableDIE(sc, dwarf_cu, die, LLDB_INVALID_ADDRESS));
5414                            if (var_sp)
5415                            {
5416                                variables->AddVariableIfUnique (var_sp);
5417                                ++vars_added;
5418                            }
5419                        }
5420                        else
5421                        {
5422                            if (m_using_apple_tables)
5423                            {
5424                                ReportError (".apple_names accelerator table had bad die 0x%8.8x\n", die_offset);
5425                            }
5426                        }
5427
5428                    }
5429                }
5430            }
5431            return vars_added;
5432        }
5433    }
5434    return 0;
5435}
5436
5437
5438VariableSP
5439SymbolFileDWARF::ParseVariableDIE
5440(
5441    const SymbolContext& sc,
5442    DWARFCompileUnit* dwarf_cu,
5443    const DWARFDebugInfoEntry *die,
5444    const lldb::addr_t func_low_pc
5445)
5446{
5447
5448    VariableSP var_sp (m_die_to_variable_sp[die]);
5449    if (var_sp)
5450        return var_sp;  // Already been parsed!
5451
5452    const dw_tag_t tag = die->Tag();
5453
5454    if ((tag == DW_TAG_variable) ||
5455        (tag == DW_TAG_constant) ||
5456        (tag == DW_TAG_formal_parameter && sc.function))
5457    {
5458        DWARFDebugInfoEntry::Attributes attributes;
5459        const size_t num_attributes = die->GetAttributes(this, dwarf_cu, NULL, attributes);
5460        if (num_attributes > 0)
5461        {
5462            const char *name = NULL;
5463            const char *mangled = NULL;
5464            Declaration decl;
5465            uint32_t i;
5466            lldb::user_id_t type_uid = LLDB_INVALID_UID;
5467            DWARFExpression location;
5468            bool is_external = false;
5469            bool is_artificial = false;
5470            bool location_is_const_value_data = false;
5471            AccessType accessibility = eAccessNone;
5472
5473            for (i=0; i<num_attributes; ++i)
5474            {
5475                dw_attr_t attr = attributes.AttributeAtIndex(i);
5476                DWARFFormValue form_value;
5477                if (attributes.ExtractFormValueAtIndex(this, i, form_value))
5478                {
5479                    switch (attr)
5480                    {
5481                    case DW_AT_decl_file:   decl.SetFile(sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(form_value.Unsigned())); break;
5482                    case DW_AT_decl_line:   decl.SetLine(form_value.Unsigned()); break;
5483                    case DW_AT_decl_column: decl.SetColumn(form_value.Unsigned()); break;
5484                    case DW_AT_name:        name = form_value.AsCString(&get_debug_str_data()); break;
5485                    case DW_AT_MIPS_linkage_name: mangled = form_value.AsCString(&get_debug_str_data()); break;
5486                    case DW_AT_type:        type_uid = form_value.Reference(dwarf_cu); break;
5487                    case DW_AT_external:    is_external = form_value.Unsigned() != 0; break;
5488                    case DW_AT_const_value:
5489                        location_is_const_value_data = true;
5490                        // Fall through...
5491                    case DW_AT_location:
5492                        {
5493                            if (form_value.BlockData())
5494                            {
5495                                const DataExtractor& debug_info_data = get_debug_info_data();
5496
5497                                uint32_t block_offset = form_value.BlockData() - debug_info_data.GetDataStart();
5498                                uint32_t block_length = form_value.Unsigned();
5499                                location.SetOpcodeData(get_debug_info_data(), block_offset, block_length);
5500                            }
5501                            else
5502                            {
5503                                const DataExtractor&    debug_loc_data = get_debug_loc_data();
5504                                const dw_offset_t debug_loc_offset = form_value.Unsigned();
5505
5506                                size_t loc_list_length = DWARFLocationList::Size(debug_loc_data, debug_loc_offset);
5507                                if (loc_list_length > 0)
5508                                {
5509                                    location.SetOpcodeData(debug_loc_data, debug_loc_offset, loc_list_length);
5510                                    assert (func_low_pc != LLDB_INVALID_ADDRESS);
5511                                    location.SetLocationListSlide (func_low_pc - dwarf_cu->GetBaseAddress());
5512                                }
5513                            }
5514                        }
5515                        break;
5516
5517                    case DW_AT_artificial:      is_artificial = form_value.Unsigned() != 0; break;
5518                    case DW_AT_accessibility:   accessibility = DW_ACCESS_to_AccessType(form_value.Unsigned()); break;
5519                    case DW_AT_declaration:
5520                    case DW_AT_description:
5521                    case DW_AT_endianity:
5522                    case DW_AT_segment:
5523                    case DW_AT_start_scope:
5524                    case DW_AT_visibility:
5525                    default:
5526                    case DW_AT_abstract_origin:
5527                    case DW_AT_sibling:
5528                    case DW_AT_specification:
5529                        break;
5530                    }
5531                }
5532            }
5533
5534            if (location.IsValid())
5535            {
5536                ValueType scope = eValueTypeInvalid;
5537
5538                const DWARFDebugInfoEntry *sc_parent_die = GetParentSymbolContextDIE(die);
5539                dw_tag_t parent_tag = sc_parent_die ? sc_parent_die->Tag() : 0;
5540                SymbolContextScope * symbol_context_scope = NULL;
5541
5542                // DWARF doesn't specify if a DW_TAG_variable is a local, global
5543                // or static variable, so we have to do a little digging by
5544                // looking at the location of a varaible to see if it contains
5545                // a DW_OP_addr opcode _somewhere_ in the definition. I say
5546                // somewhere because clang likes to combine small global variables
5547                // into the same symbol and have locations like:
5548                // DW_OP_addr(0x1000), DW_OP_constu(2), DW_OP_plus
5549                // So if we don't have a DW_TAG_formal_parameter, we can look at
5550                // the location to see if it contains a DW_OP_addr opcode, and
5551                // then we can correctly classify  our variables.
5552                if (tag == DW_TAG_formal_parameter)
5553                    scope = eValueTypeVariableArgument;
5554                else
5555                {
5556                    // Check if the location has a DW_OP_addr with any address value...
5557                    addr_t location_has_op_addr = false;
5558                    if (!location_is_const_value_data)
5559                        location_has_op_addr = location.LocationContains_DW_OP_addr ();
5560
5561                    if (location_has_op_addr)
5562                    {
5563                        if (is_external)
5564                        {
5565                            scope = eValueTypeVariableGlobal;
5566
5567                            if (m_debug_map_symfile)
5568                            {
5569                                // When leaving the DWARF in the .o files on darwin,
5570                                // when we have a global variable that wasn't initialized,
5571                                // the .o file might not have allocated a virtual
5572                                // address for the global variable. In this case it will
5573                                // have created a symbol for the global variable
5574                                // that is undefined and external and the value will
5575                                // be the byte size of the variable. When we do the
5576                                // address map in SymbolFileDWARFDebugMap we rely on
5577                                // having an address, we need to do some magic here
5578                                // so we can get the correct address for our global
5579                                // variable. The address for all of these entries
5580                                // will be zero, and there will be an undefined symbol
5581                                // in this object file, and the executable will have
5582                                // a matching symbol with a good address. So here we
5583                                // dig up the correct address and replace it in the
5584                                // location for the variable, and set the variable's
5585                                // symbol context scope to be that of the main executable
5586                                // so the file address will resolve correctly.
5587                                if (location.LocationContains_DW_OP_addr (0))
5588                                {
5589
5590                                    // we have a possible uninitialized extern global
5591                                    Symtab *symtab = m_obj_file->GetSymtab();
5592                                    if (symtab)
5593                                    {
5594                                        ConstString const_name(name);
5595                                        Symbol *undefined_symbol = symtab->FindFirstSymbolWithNameAndType (const_name,
5596                                                                                                           eSymbolTypeUndefined,
5597                                                                                                           Symtab::eDebugNo,
5598                                                                                                           Symtab::eVisibilityExtern);
5599
5600                                        if (undefined_symbol)
5601                                        {
5602                                            ObjectFile *debug_map_objfile = m_debug_map_symfile->GetObjectFile();
5603                                            if (debug_map_objfile)
5604                                            {
5605                                                Symtab *debug_map_symtab = debug_map_objfile->GetSymtab();
5606                                                Symbol *defined_symbol = debug_map_symtab->FindFirstSymbolWithNameAndType (const_name,
5607                                                                                                                           eSymbolTypeData,
5608                                                                                                                           Symtab::eDebugYes,
5609                                                                                                                           Symtab::eVisibilityExtern);
5610                                                if (defined_symbol)
5611                                                {
5612                                                    const AddressRange *defined_range = defined_symbol->GetAddressRangePtr();
5613                                                    if (defined_range)
5614                                                    {
5615                                                        const addr_t defined_addr = defined_range->GetBaseAddress().GetFileAddress();
5616                                                        if (defined_addr != LLDB_INVALID_ADDRESS)
5617                                                        {
5618                                                            if (location.Update_DW_OP_addr (defined_addr))
5619                                                            {
5620                                                                symbol_context_scope = defined_symbol;
5621                                                            }
5622                                                        }
5623                                                    }
5624                                                }
5625                                            }
5626                                        }
5627                                    }
5628                                }
5629                            }
5630                        }
5631                        else
5632                        {
5633                            scope = eValueTypeVariableStatic;
5634                        }
5635                    }
5636                    else
5637                    {
5638                        scope = eValueTypeVariableLocal;
5639                    }
5640                }
5641
5642                if (symbol_context_scope == NULL)
5643                {
5644                    switch (parent_tag)
5645                    {
5646                    case DW_TAG_subprogram:
5647                    case DW_TAG_inlined_subroutine:
5648                    case DW_TAG_lexical_block:
5649                        if (sc.function)
5650                        {
5651                            symbol_context_scope = sc.function->GetBlock(true).FindBlockByID(MakeUserID(sc_parent_die->GetOffset()));
5652                            if (symbol_context_scope == NULL)
5653                                symbol_context_scope = sc.function;
5654                        }
5655                        break;
5656
5657                    default:
5658                        symbol_context_scope = sc.comp_unit;
5659                        break;
5660                    }
5661                }
5662
5663                if (symbol_context_scope)
5664                {
5665                    var_sp.reset (new Variable (MakeUserID(die->GetOffset()),
5666                                                name,
5667                                                mangled,
5668                                                SymbolFileTypeSP (new SymbolFileType(*this, type_uid)),
5669                                                scope,
5670                                                symbol_context_scope,
5671                                                &decl,
5672                                                location,
5673                                                is_external,
5674                                                is_artificial));
5675
5676                    var_sp->SetLocationIsConstantValueData (location_is_const_value_data);
5677                }
5678                else
5679                {
5680                    // Not ready to parse this variable yet. It might be a global
5681                    // or static variable that is in a function scope and the function
5682                    // in the symbol context wasn't filled in yet
5683                    return var_sp;
5684                }
5685            }
5686        }
5687        // Cache var_sp even if NULL (the variable was just a specification or
5688        // was missing vital information to be able to be displayed in the debugger
5689        // (missing location due to optimization, etc)) so we don't re-parse
5690        // this DIE over and over later...
5691        m_die_to_variable_sp[die] = var_sp;
5692    }
5693    return var_sp;
5694}
5695
5696
5697const DWARFDebugInfoEntry *
5698SymbolFileDWARF::FindBlockContainingSpecification (dw_offset_t func_die_offset,
5699                                                   dw_offset_t spec_block_die_offset,
5700                                                   DWARFCompileUnit **result_die_cu_handle)
5701{
5702    // Give the concrete function die specified by "func_die_offset", find the
5703    // concrete block whose DW_AT_specification or DW_AT_abstract_origin points
5704    // to "spec_block_die_offset"
5705    DWARFDebugInfo* info = DebugInfo();
5706
5707    const DWARFDebugInfoEntry *die = info->GetDIEPtrWithCompileUnitHint(func_die_offset, result_die_cu_handle);
5708    if (die)
5709    {
5710        assert (*result_die_cu_handle);
5711        return FindBlockContainingSpecification (*result_die_cu_handle, die, spec_block_die_offset, result_die_cu_handle);
5712    }
5713    return NULL;
5714}
5715
5716
5717const DWARFDebugInfoEntry *
5718SymbolFileDWARF::FindBlockContainingSpecification(DWARFCompileUnit* dwarf_cu,
5719                                                  const DWARFDebugInfoEntry *die,
5720                                                  dw_offset_t spec_block_die_offset,
5721                                                  DWARFCompileUnit **result_die_cu_handle)
5722{
5723    if (die)
5724    {
5725        switch (die->Tag())
5726        {
5727        case DW_TAG_subprogram:
5728        case DW_TAG_inlined_subroutine:
5729        case DW_TAG_lexical_block:
5730            {
5731                if (die->GetAttributeValueAsReference (this, dwarf_cu, DW_AT_specification, DW_INVALID_OFFSET) == spec_block_die_offset)
5732                {
5733                    *result_die_cu_handle = dwarf_cu;
5734                    return die;
5735                }
5736
5737                if (die->GetAttributeValueAsReference (this, dwarf_cu, DW_AT_abstract_origin, DW_INVALID_OFFSET) == spec_block_die_offset)
5738                {
5739                    *result_die_cu_handle = dwarf_cu;
5740                    return die;
5741                }
5742            }
5743            break;
5744        }
5745
5746        // Give the concrete function die specified by "func_die_offset", find the
5747        // concrete block whose DW_AT_specification or DW_AT_abstract_origin points
5748        // to "spec_block_die_offset"
5749        for (const DWARFDebugInfoEntry *child_die = die->GetFirstChild(); child_die != NULL; child_die = child_die->GetSibling())
5750        {
5751            const DWARFDebugInfoEntry *result_die = FindBlockContainingSpecification (dwarf_cu,
5752                                                                                      child_die,
5753                                                                                      spec_block_die_offset,
5754                                                                                      result_die_cu_handle);
5755            if (result_die)
5756                return result_die;
5757        }
5758    }
5759
5760    *result_die_cu_handle = NULL;
5761    return NULL;
5762}
5763
5764size_t
5765SymbolFileDWARF::ParseVariables
5766(
5767    const SymbolContext& sc,
5768    DWARFCompileUnit* dwarf_cu,
5769    const lldb::addr_t func_low_pc,
5770    const DWARFDebugInfoEntry *orig_die,
5771    bool parse_siblings,
5772    bool parse_children,
5773    VariableList* cc_variable_list
5774)
5775{
5776    if (orig_die == NULL)
5777        return 0;
5778
5779    VariableListSP variable_list_sp;
5780
5781    size_t vars_added = 0;
5782    const DWARFDebugInfoEntry *die = orig_die;
5783    while (die != NULL)
5784    {
5785        dw_tag_t tag = die->Tag();
5786
5787        // Check to see if we have already parsed this variable or constant?
5788        if (m_die_to_variable_sp[die])
5789        {
5790            if (cc_variable_list)
5791                cc_variable_list->AddVariableIfUnique (m_die_to_variable_sp[die]);
5792        }
5793        else
5794        {
5795            // We haven't already parsed it, lets do that now.
5796            if ((tag == DW_TAG_variable) ||
5797                (tag == DW_TAG_constant) ||
5798                (tag == DW_TAG_formal_parameter && sc.function))
5799            {
5800                if (variable_list_sp.get() == NULL)
5801                {
5802                    const DWARFDebugInfoEntry *sc_parent_die = GetParentSymbolContextDIE(orig_die);
5803                    dw_tag_t parent_tag = sc_parent_die ? sc_parent_die->Tag() : 0;
5804                    switch (parent_tag)
5805                    {
5806                        case DW_TAG_compile_unit:
5807                            if (sc.comp_unit != NULL)
5808                            {
5809                                variable_list_sp = sc.comp_unit->GetVariableList(false);
5810                                if (variable_list_sp.get() == NULL)
5811                                {
5812                                    variable_list_sp.reset(new VariableList());
5813                                    sc.comp_unit->SetVariableList(variable_list_sp);
5814                                }
5815                            }
5816                            else
5817                            {
5818                                ReportError ("parent 0x%8.8llx %s with no valid compile unit in symbol context for 0x%8.8llx %s.\n",
5819                                             MakeUserID(sc_parent_die->GetOffset()),
5820                                             DW_TAG_value_to_name (parent_tag),
5821                                             MakeUserID(orig_die->GetOffset()),
5822                                             DW_TAG_value_to_name (orig_die->Tag()));
5823                            }
5824                            break;
5825
5826                        case DW_TAG_subprogram:
5827                        case DW_TAG_inlined_subroutine:
5828                        case DW_TAG_lexical_block:
5829                            if (sc.function != NULL)
5830                            {
5831                                // Check to see if we already have parsed the variables for the given scope
5832
5833                                Block *block = sc.function->GetBlock(true).FindBlockByID(MakeUserID(sc_parent_die->GetOffset()));
5834                                if (block == NULL)
5835                                {
5836                                    // This must be a specification or abstract origin with
5837                                    // a concrete block couterpart in the current function. We need
5838                                    // to find the concrete block so we can correctly add the
5839                                    // variable to it
5840                                    DWARFCompileUnit *concrete_block_die_cu = dwarf_cu;
5841                                    const DWARFDebugInfoEntry *concrete_block_die = FindBlockContainingSpecification (sc.function->GetID(),
5842                                                                                                                      sc_parent_die->GetOffset(),
5843                                                                                                                      &concrete_block_die_cu);
5844                                    if (concrete_block_die)
5845                                        block = sc.function->GetBlock(true).FindBlockByID(MakeUserID(concrete_block_die->GetOffset()));
5846                                }
5847
5848                                if (block != NULL)
5849                                {
5850                                    const bool can_create = false;
5851                                    variable_list_sp = block->GetBlockVariableList (can_create);
5852                                    if (variable_list_sp.get() == NULL)
5853                                    {
5854                                        variable_list_sp.reset(new VariableList());
5855                                        block->SetVariableList(variable_list_sp);
5856                                    }
5857                                }
5858                            }
5859                            break;
5860
5861                        default:
5862                             ReportError ("didn't find appropriate parent DIE for variable list for 0x%8.8llx %s.\n",
5863                                          MakeUserID(orig_die->GetOffset()),
5864                                          DW_TAG_value_to_name (orig_die->Tag()));
5865                            break;
5866                    }
5867                }
5868
5869                if (variable_list_sp)
5870                {
5871                    VariableSP var_sp (ParseVariableDIE(sc, dwarf_cu, die, func_low_pc));
5872                    if (var_sp)
5873                    {
5874                        variable_list_sp->AddVariableIfUnique (var_sp);
5875                        if (cc_variable_list)
5876                            cc_variable_list->AddVariableIfUnique (var_sp);
5877                        ++vars_added;
5878                    }
5879                }
5880            }
5881        }
5882
5883        bool skip_children = (sc.function == NULL && tag == DW_TAG_subprogram);
5884
5885        if (!skip_children && parse_children && die->HasChildren())
5886        {
5887            vars_added += ParseVariables(sc, dwarf_cu, func_low_pc, die->GetFirstChild(), true, true, cc_variable_list);
5888        }
5889
5890        if (parse_siblings)
5891            die = die->GetSibling();
5892        else
5893            die = NULL;
5894    }
5895    return vars_added;
5896}
5897
5898//------------------------------------------------------------------
5899// PluginInterface protocol
5900//------------------------------------------------------------------
5901const char *
5902SymbolFileDWARF::GetPluginName()
5903{
5904    return "SymbolFileDWARF";
5905}
5906
5907const char *
5908SymbolFileDWARF::GetShortPluginName()
5909{
5910    return GetPluginNameStatic();
5911}
5912
5913uint32_t
5914SymbolFileDWARF::GetPluginVersion()
5915{
5916    return 1;
5917}
5918
5919void
5920SymbolFileDWARF::CompleteTagDecl (void *baton, clang::TagDecl *decl)
5921{
5922    SymbolFileDWARF *symbol_file_dwarf = (SymbolFileDWARF *)baton;
5923    clang_type_t clang_type = symbol_file_dwarf->GetClangASTContext().GetTypeForDecl (decl);
5924    if (clang_type)
5925        symbol_file_dwarf->ResolveClangOpaqueTypeDefinition (clang_type);
5926}
5927
5928void
5929SymbolFileDWARF::CompleteObjCInterfaceDecl (void *baton, clang::ObjCInterfaceDecl *decl)
5930{
5931    SymbolFileDWARF *symbol_file_dwarf = (SymbolFileDWARF *)baton;
5932    clang_type_t clang_type = symbol_file_dwarf->GetClangASTContext().GetTypeForDecl (decl);
5933    if (clang_type)
5934        symbol_file_dwarf->ResolveClangOpaqueTypeDefinition (clang_type);
5935}
5936
5937void
5938SymbolFileDWARF::DumpIndexes ()
5939{
5940    StreamFile s(stdout, false);
5941
5942    s.Printf ("DWARF index for (%s) '%s/%s':",
5943              GetObjectFile()->GetModule()->GetArchitecture().GetArchitectureName(),
5944              GetObjectFile()->GetFileSpec().GetDirectory().AsCString(),
5945              GetObjectFile()->GetFileSpec().GetFilename().AsCString());
5946    s.Printf("\nFunction basenames:\n");    m_function_basename_index.Dump (&s);
5947    s.Printf("\nFunction fullnames:\n");    m_function_fullname_index.Dump (&s);
5948    s.Printf("\nFunction methods:\n");      m_function_method_index.Dump (&s);
5949    s.Printf("\nFunction selectors:\n");    m_function_selector_index.Dump (&s);
5950    s.Printf("\nObjective C class selectors:\n");    m_objc_class_selectors_index.Dump (&s);
5951    s.Printf("\nGlobals and statics:\n");   m_global_index.Dump (&s);
5952    s.Printf("\nTypes:\n");                 m_type_index.Dump (&s);
5953    s.Printf("\nNamepaces:\n");             m_namespace_index.Dump (&s);
5954}
5955
5956void
5957SymbolFileDWARF::SearchDeclContext (const clang::DeclContext *decl_context,
5958                                    const char *name,
5959                                    llvm::SmallVectorImpl <clang::NamedDecl *> *results)
5960{
5961    DeclContextToDIEMap::iterator iter = m_decl_ctx_to_die.find(decl_context);
5962
5963    if (iter == m_decl_ctx_to_die.end())
5964        return;
5965
5966    for (DIEPointerSet::iterator pos = iter->second.begin(), end = iter->second.end(); pos != end; ++pos)
5967    {
5968        const DWARFDebugInfoEntry *context_die = *pos;
5969
5970        if (!results)
5971            return;
5972
5973        DWARFDebugInfo* info = DebugInfo();
5974
5975        DIEArray die_offsets;
5976
5977        DWARFCompileUnit* dwarf_cu = NULL;
5978        const DWARFDebugInfoEntry* die = NULL;
5979
5980        if (m_using_apple_tables)
5981        {
5982            if (m_apple_types_ap.get())
5983                m_apple_types_ap->FindByName (name, die_offsets);
5984        }
5985        else
5986        {
5987            if (!m_indexed)
5988                Index ();
5989
5990            m_type_index.Find (ConstString(name), die_offsets);
5991        }
5992
5993        const size_t num_matches = die_offsets.size();
5994
5995        if (num_matches)
5996        {
5997            for (size_t i = 0; i < num_matches; ++i)
5998            {
5999                const dw_offset_t die_offset = die_offsets[i];
6000                die = info->GetDIEPtrWithCompileUnitHint (die_offset, &dwarf_cu);
6001
6002                if (die->GetParent() != context_die)
6003                    continue;
6004
6005                Type *matching_type = ResolveType (dwarf_cu, die);
6006
6007                lldb::clang_type_t type = matching_type->GetClangForwardType();
6008                clang::QualType qual_type = clang::QualType::getFromOpaquePtr(type);
6009
6010                if (const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(qual_type.getTypePtr()))
6011                {
6012                    clang::TagDecl *tag_decl = tag_type->getDecl();
6013                    results->push_back(tag_decl);
6014                }
6015                else if (const clang::TypedefType *typedef_type = llvm::dyn_cast<clang::TypedefType>(qual_type.getTypePtr()))
6016                {
6017                    clang::TypedefNameDecl *typedef_decl = typedef_type->getDecl();
6018                    results->push_back(typedef_decl);
6019                }
6020            }
6021        }
6022    }
6023}
6024
6025void
6026SymbolFileDWARF::FindExternalVisibleDeclsByName (void *baton,
6027                                                 const clang::DeclContext *decl_context,
6028                                                 clang::DeclarationName decl_name,
6029                                                 llvm::SmallVectorImpl <clang::NamedDecl *> *results)
6030{
6031
6032    switch (decl_context->getDeclKind())
6033    {
6034    case clang::Decl::Namespace:
6035    case clang::Decl::TranslationUnit:
6036        {
6037            SymbolFileDWARF *symbol_file_dwarf = (SymbolFileDWARF *)baton;
6038            symbol_file_dwarf->SearchDeclContext (decl_context, decl_name.getAsString().c_str(), results);
6039        }
6040        break;
6041    default:
6042        break;
6043    }
6044}
6045