11#include "clang/AST/DeclBase.h"
12#include "clang/AST/ExprCXX.h"
13#include "clang/Frontend/ASTConsumers.h"
14#include "llvm/ADT/ScopeExit.h"
15#include "llvm/Support/Casting.h"
16#include "llvm/Support/ErrorExtras.h"
17#include "llvm/Support/FormatAdapters.h"
18#include "llvm/Support/FormatVariadic.h"
25#include "clang/AST/ASTContext.h"
26#include "clang/AST/ASTImporter.h"
27#include "clang/AST/Attr.h"
28#include "clang/AST/CXXInheritance.h"
29#include "clang/AST/DeclObjC.h"
30#include "clang/AST/DeclTemplate.h"
31#include "clang/AST/Mangle.h"
32#include "clang/AST/QualTypeNames.h"
33#include "clang/AST/RecordLayout.h"
34#include "clang/AST/Type.h"
35#include "clang/AST/VTableBuilder.h"
36#include "clang/Basic/Builtins.h"
37#include "clang/Basic/Diagnostic.h"
38#include "clang/Basic/FileManager.h"
39#include "clang/Basic/FileSystemOptions.h"
40#include "clang/Basic/LangStandard.h"
41#include "clang/Basic/SourceManager.h"
42#include "clang/Basic/TargetInfo.h"
43#include "clang/Basic/TargetOptions.h"
44#include "clang/Driver/CreateInvocationFromArgs.h"
45#include "clang/Driver/Driver.h"
46#include "clang/Frontend/CompilerInstance.h"
47#include "clang/Frontend/CompilerInvocation.h"
48#include "clang/Frontend/FrontendActions.h"
49#include "clang/Frontend/FrontendOptions.h"
50#include "clang/Lex/HeaderSearch.h"
51#include "clang/Lex/HeaderSearchOptions.h"
52#include "clang/Lex/ModuleMap.h"
53#include "clang/Sema/Sema.h"
54#include "clang/Serialization/ObjectFilePCHContainerReader.h"
56#include "llvm/Support/Signals.h"
57#include "llvm/Support/Threading.h"
106using namespace llvm::dwarf;
107using namespace clang;
108using llvm::StringSwitch;
113static void VerifyDecl(clang::Decl *decl) {
114 assert(decl &&
"VerifyDecl called with nullptr?");
140bool isOverload(clang::CXXMethodDecl *m1, clang::CXXMethodDecl *m2) {
142 lldbassert(&m1->getASTContext() == &m2->getASTContext() &&
143 "Methods should have the same AST context");
144 clang::ASTContext &context = m1->getASTContext();
146 const auto *m1Type = llvm::cast<clang::FunctionProtoType>(
147 context.getCanonicalType(m1->getType()));
149 const auto *m2Type = llvm::cast<clang::FunctionProtoType>(
150 context.getCanonicalType(m2->getType()));
152 auto compareArgTypes = [&context](
const clang::QualType &m1p,
153 const clang::QualType &m2p) {
154 return context.hasSameType(m1p.getUnqualifiedType(),
155 m2p.getUnqualifiedType());
160 return (m1->getNumParams() != m2->getNumParams()) ||
161 !std::equal(m1Type->param_type_begin(), m1Type->param_type_end(),
162 m2Type->param_type_begin(), compareArgTypes);
168void addOverridesForMethod(clang::CXXMethodDecl *decl) {
169 if (!decl->isVirtual())
172 clang::CXXBasePaths paths;
173 llvm::SmallVector<clang::NamedDecl *, 4> decls;
175 auto find_overridden_methods =
176 [&decls, decl](
const clang::CXXBaseSpecifier *specifier,
177 clang::CXXBasePath &path) {
178 if (
auto *base_record = specifier->getType()->getAsCXXRecordDecl()) {
180 clang::DeclarationName name = decl->getDeclName();
184 if (name.getNameKind() == clang::DeclarationName::CXXDestructorName)
185 if (
auto *baseDtorDecl = base_record->getDestructor()) {
186 if (baseDtorDecl->isVirtual()) {
187 decls.push_back(baseDtorDecl);
194 for (path.Decls = base_record->lookup(name).begin();
195 path.Decls != path.Decls.end(); ++path.Decls) {
196 if (
auto *method_decl =
197 llvm::dyn_cast<clang::CXXMethodDecl>(*path.Decls))
198 if (method_decl->isVirtual() && !isOverload(decl, method_decl)) {
199 decls.push_back(method_decl);
208 if (decl->getParent()->lookupInBases(find_overridden_methods, paths)) {
209 for (
auto *overridden_decl : decls)
210 decl->addOverriddenMethod(
211 llvm::cast<clang::CXXMethodDecl>(overridden_decl));
217 VTableContextBase &vtable_ctx,
219 const ASTRecordLayout &record_layout) {
223 uint32_t type_info = this_type.
GetTypeInfo(&pointee_type);
228 bool ptr_or_ref =
false;
229 if (type_info & (eTypeIsPointer | eTypeIsReference)) {
235 const uint32_t cpp_class = eTypeIsClass | eTypeIsCPlusPlus;
236 if ((type_info & cpp_class) != cpp_class)
241 vtable_ctx.isMicrosoft() ? record_layout.getVBPtrOffset().getQuantity()
255 vbtable_ptr_addr += vbtable_ptr_offset;
257 llvm::Expected<lldb::addr_t> vbtable_ptr_addr_or_err =
259 if (!vbtable_ptr_addr_or_err) {
260 llvm::consumeError(vbtable_ptr_addr_or_err.takeError());
263 return *vbtable_ptr_addr_or_err;
271 auto size = valobj.
GetData(data, err);
279 VTableContextBase &vtable_ctx,
281 const CXXRecordDecl *cxx_record_decl,
282 const CXXRecordDecl *base_class_decl) {
283 if (vtable_ctx.isMicrosoft()) {
284 clang::MicrosoftVTableContext &msoft_vtable_ctx =
285 static_cast<clang::MicrosoftVTableContext &
>(vtable_ctx);
289 const unsigned vbtable_index =
290 msoft_vtable_ctx.getVBTableIndex(cxx_record_decl, base_class_decl);
291 const lldb::addr_t base_offset_addr = vtable_ptr + vbtable_index * 4;
297 clang::ItaniumVTableContext &itanium_vtable_ctx =
298 static_cast<clang::ItaniumVTableContext &
>(vtable_ctx);
300 clang::CharUnits base_offset_offset =
301 itanium_vtable_ctx.getVirtualBaseOffsetOffset(cxx_record_decl,
304 vtable_ptr + base_offset_offset.getQuantity();
313 const ASTRecordLayout &record_layout,
314 const CXXRecordDecl *cxx_record_decl,
315 const CXXRecordDecl *base_class_decl,
316 int32_t &bit_offset) {
328 *process, vtable_ctx, vtable_ptr, cxx_record_decl, base_class_decl);
329 if (base_offset == INT64_MAX)
332 if (vtable_ctx.isMicrosoft())
333 base_offset += record_layout.getVBPtrOffset().getQuantity();
334 bit_offset = base_offset * 8;
344 static llvm::once_flag g_once_flag;
345 llvm::call_once(g_once_flag, []() {
352 bool is_complete_objc_class)
365 const clang::Decl *parent) {
366 if (!member || !parent)
373 member->setFromASTFile();
374 member->setOwningModuleID(
id.GetValue());
375 member->setModuleOwnershipKind(clang::Decl::ModuleOwnershipKind::Visible);
376 if (llvm::isa<clang::NamedDecl>(member))
377 if (
auto *dc = llvm::dyn_cast<clang::DeclContext>(parent)) {
378 dc->setHasExternalVisibleStorage(
true);
381 dc->setHasExternalLexicalStorage(
true);
388 clang::OverloadedOperatorKind &op_kind) {
390 if (!name.consume_front(
"operator"))
395 bool space_after_operator = name.consume_front(
" ");
397 op_kind = StringSwitch<clang::OverloadedOperatorKind>(name)
398 .Case(
"+", clang::OO_Plus)
399 .Case(
"+=", clang::OO_PlusEqual)
400 .Case(
"++", clang::OO_PlusPlus)
401 .Case(
"-", clang::OO_Minus)
402 .Case(
"-=", clang::OO_MinusEqual)
403 .Case(
"--", clang::OO_MinusMinus)
404 .Case(
"->", clang::OO_Arrow)
405 .Case(
"->*", clang::OO_ArrowStar)
406 .Case(
"*", clang::OO_Star)
407 .Case(
"*=", clang::OO_StarEqual)
408 .Case(
"/", clang::OO_Slash)
409 .Case(
"/=", clang::OO_SlashEqual)
410 .Case(
"%", clang::OO_Percent)
411 .Case(
"%=", clang::OO_PercentEqual)
412 .Case(
"^", clang::OO_Caret)
413 .Case(
"^=", clang::OO_CaretEqual)
414 .Case(
"&", clang::OO_Amp)
415 .Case(
"&=", clang::OO_AmpEqual)
416 .Case(
"&&", clang::OO_AmpAmp)
417 .Case(
"|", clang::OO_Pipe)
418 .Case(
"|=", clang::OO_PipeEqual)
419 .Case(
"||", clang::OO_PipePipe)
420 .Case(
"~", clang::OO_Tilde)
421 .Case(
"!", clang::OO_Exclaim)
422 .Case(
"!=", clang::OO_ExclaimEqual)
423 .Case(
"=", clang::OO_Equal)
424 .Case(
"==", clang::OO_EqualEqual)
425 .Case(
"<", clang::OO_Less)
426 .Case(
"<=>", clang::OO_Spaceship)
427 .Case(
"<<", clang::OO_LessLess)
428 .Case(
"<<=", clang::OO_LessLessEqual)
429 .Case(
"<=", clang::OO_LessEqual)
430 .Case(
">", clang::OO_Greater)
431 .Case(
">>", clang::OO_GreaterGreater)
432 .Case(
">>=", clang::OO_GreaterGreaterEqual)
433 .Case(
">=", clang::OO_GreaterEqual)
434 .Case(
"()", clang::OO_Call)
435 .Case(
"[]", clang::OO_Subscript)
436 .Case(
",", clang::OO_Comma)
437 .Default(clang::NUM_OVERLOADED_OPERATORS);
440 if (op_kind != clang::NUM_OVERLOADED_OPERATORS)
452 if (!space_after_operator)
457 op_kind = StringSwitch<clang::OverloadedOperatorKind>(name)
458 .Case(
"new", clang::OO_New)
459 .Case(
"new[]", clang::OO_Array_New)
460 .Case(
"delete", clang::OO_Delete)
461 .Case(
"delete[]", clang::OO_Array_Delete)
463 .Default(clang::NUM_OVERLOADED_OPERATORS);
468clang::AccessSpecifier
488 std::vector<std::string> Includes;
489 LangOptions::setLangDefaults(Opts, clang::Language::ObjCXX, arch.
GetTriple(),
490 Includes, clang::LangStandard::lang_gnucxx98);
492 Opts.setValueVisibilityMode(DefaultVisibility);
496 Opts.Trigraphs = !Opts.GNUMode;
501 Opts.ModulesLocalVisibility = 1;
505 llvm::Triple target_triple) {
507 if (!target_triple.str().empty())
517 ASTContext &existing_ctxt) {
533 if (!TypeSystemClangSupportsLanguage(language))
537 arch =
module->GetArchitecture();
547 if (triple.getVendor() == llvm::Triple::Apple &&
548 triple.getOS() == llvm::Triple::UnknownOS) {
549 if (triple.getArch() == llvm::Triple::arm ||
550 triple.getArch() == llvm::Triple::aarch64 ||
551 triple.getArch() == llvm::Triple::aarch64_32 ||
552 triple.getArch() == llvm::Triple::thumb) {
553 triple.setOS(llvm::Triple::IOS);
555 triple.setOS(llvm::Triple::MacOSX);
560 std::string ast_name =
561 "ASTContext for '" +
module->GetFileSpec().GetPath() + "'";
562 return std::make_shared<TypeSystemClang>(ast_name, triple);
563 }
else if (target && target->
IsValid())
564 return std::make_shared<ScratchTypeSystemClang>(*target, triple);
603 interpreter,
"target modules dump pcm-info",
604 "Dump information about the given clang module (pcm).") {
609 ~CommandObjectTargetModulesDumpClangPCMInfo()
override =
default;
620 const FileSpec pcm_file{pcm_path};
623 result.
AppendError(
"file must have a .pcm extension");
632 const char *clang_args[] = {
"clang", pcm_path};
633 clang::CompilerInstance compiler(clang::createInvocation(clang_args));
634 compiler.setVirtualFileSystem(
636 compiler.createDiagnostics();
640 std::shared_ptr<llvm::raw_ostream> Out(
642 clang::DumpModuleInfoAction dump_module_info(Out);
644 compiler.getPCHContainerOperations()->registerReader(
645 std::make_unique<clang::ObjectFilePCHContainerReader>());
647 if (compiler.ExecuteAction(dump_module_info))
659 llvm::SmallString<128> path;
660 if (clang::driver::Driver::getDefaultModuleCachePath(path))
671 llvm::StringRef parent =
"target modules dump";
673 dump->LoadSubCommand(
675 std::make_shared<CommandObjectTargetModulesDumpClangPCMInfo>(
697 assert(s ==
nullptr || &s->getASTContext() ==
m_ast_up.get());
710 llvm::IntrusiveRefCntPtr<ExternalASTSource> ast_source_sp) {
712 ast.getTranslationUnitDecl()->setHasExternalLexicalStorage(
true);
713 ast.setExternalSource(std::move(ast_source_sp));
726 const clang::Diagnostic &info)
override {
728 llvm::SmallVector<char, 32> diag_str(10);
729 info.FormatDiagnostic(diag_str);
730 diag_str.push_back(
'\0');
735 DiagnosticConsumer *
clone(DiagnosticsEngine &Diags)
const {
756 clang::FileSystemOptions file_system_options;
766 m_ast_up = std::make_unique<ASTContext>(
778 m_ast_up->InitBuiltinTypes(*target_info);
782 "Failed to initialize builtin ASTContext types for target '{0}'. "
783 "Printing variables may behave unexpectedly.",
789 static std::once_flag s_uninitialized_target_warning;
791 &s_uninitialized_target_warning);
797 llvm::makeIntrusiveRefCnt<ClangExternalASTSourceCallbacks>(*
this);
829#pragma mark Basic Types
832 ASTContext &ast, QualType qual_type) {
833 uint64_t qual_type_bit_size = ast.getTypeSize(qual_type);
834 return qual_type_bit_size == bit_size;
853 return GetType(ast.UnsignedCharTy);
855 return GetType(ast.UnsignedShortTy);
857 return GetType(ast.UnsignedIntTy);
859 return GetType(ast.UnsignedLongTy);
861 return GetType(ast.UnsignedLongLongTy);
863 return GetType(ast.UnsignedInt128Ty);
868 return GetType(ast.SignedCharTy);
876 return GetType(ast.LongLongTy);
887 return GetType(ast.LongDoubleTy);
891 return GetType(ast.Float128Ty);
896 if (bit_size && !(bit_size & 0x7u))
897 return GetType(ast.getExtVectorType(ast.UnsignedCharTy, bit_size / 8));
905 static const llvm::StringMap<lldb::BasicType> g_type_map = {
970 auto iter = g_type_map.find(name);
971 if (iter == g_type_map.end())
1002 llvm::StringRef type_name, uint32_t dw_ate, uint32_t bit_size) {
1012 case DW_ATE_address:
1014 return GetType(ast.VoidPtrTy);
1017 case DW_ATE_boolean:
1021 return GetType(ast.UnsignedCharTy);
1023 return GetType(ast.UnsignedShortTy);
1025 return GetType(ast.UnsignedIntTy);
1028 case DW_ATE_lo_user:
1030 if (type_name.contains(
"complex")) {
1039 case DW_ATE_complex_float: {
1040 CanQualType FloatComplexTy = ast.getComplexType(ast.FloatTy);
1042 return GetType(FloatComplexTy);
1044 CanQualType DoubleComplexTy = ast.getComplexType(ast.DoubleTy);
1046 return GetType(DoubleComplexTy);
1048 CanQualType LongDoubleComplexTy = ast.getComplexType(ast.LongDoubleTy);
1050 return GetType(LongDoubleComplexTy);
1060 if (type_name ==
"float" &&
1063 if (type_name ==
"double" &&
1066 if (type_name ==
"long double" &&
1068 return GetType(ast.LongDoubleTy);
1069 if (type_name ==
"__bf16" &&
1071 return GetType(ast.BFloat16Ty);
1072 if (type_name ==
"_Float16" &&
1074 return GetType(ast.Float16Ty);
1078 if ((type_name ==
"__float128" || type_name ==
"_Float128" ||
1079 type_name ==
"f128") &&
1081 return GetType(ast.Float128Ty);
1088 return GetType(ast.LongDoubleTy);
1092 return GetType(ast.Float128Ty);
1096 if (!type_name.empty()) {
1097 if (type_name.starts_with(
"_BitInt"))
1098 return GetType(ast.getBitIntType(
false, bit_size));
1099 if (type_name ==
"wchar_t" &&
1104 if (type_name ==
"void" &&
1107 if (type_name.contains(
"long long") &&
1109 return GetType(ast.LongLongTy);
1110 if (type_name.contains(
"long") &&
1113 if (type_name.contains(
"short") &&
1116 if (type_name.contains(
"char")) {
1120 return GetType(ast.SignedCharTy);
1122 if (type_name.contains(
"int")) {
1139 return GetType(ast.LongLongTy);
1144 case DW_ATE_signed_char:
1145 if (type_name ==
"char") {
1150 return GetType(ast.SignedCharTy);
1153 case DW_ATE_unsigned:
1154 if (!type_name.empty()) {
1155 if (type_name.starts_with(
"unsigned _BitInt"))
1156 return GetType(ast.getBitIntType(
true, bit_size));
1157 if (type_name ==
"wchar_t") {
1164 if (type_name.contains(
"long long")) {
1166 return GetType(ast.UnsignedLongLongTy);
1167 }
else if (type_name.contains(
"long")) {
1169 return GetType(ast.UnsignedLongTy);
1170 }
else if (type_name.contains(
"short")) {
1172 return GetType(ast.UnsignedShortTy);
1173 }
else if (type_name.contains(
"char")) {
1175 return GetType(ast.UnsignedCharTy);
1176 }
else if (type_name.contains(
"int")) {
1178 return GetType(ast.UnsignedIntTy);
1180 return GetType(ast.UnsignedInt128Ty);
1185 return GetType(ast.UnsignedCharTy);
1187 return GetType(ast.UnsignedShortTy);
1189 return GetType(ast.UnsignedIntTy);
1191 return GetType(ast.UnsignedLongTy);
1193 return GetType(ast.UnsignedLongLongTy);
1195 return GetType(ast.UnsignedInt128Ty);
1198 case DW_ATE_unsigned_char:
1199 if (type_name ==
"char") {
1204 return GetType(ast.UnsignedCharTy);
1206 return GetType(ast.UnsignedShortTy);
1209 case DW_ATE_imaginary_float:
1221 if (!type_name.empty()) {
1222 if (type_name ==
"char16_t")
1224 if (type_name ==
"char32_t")
1226 if (type_name ==
"char8_t")
1235 "error: need to add support for DW_TAG_base_type '{0}' "
1236 "encoded with DW_ATE = {1:x}, bit_size = {2}",
1237 type_name, dw_ate, bit_size);
1243 QualType char_type(ast.CharTy);
1246 char_type.addConst();
1248 return GetType(ast.getPointerType(char_type));
1252 bool ignore_qualifiers) {
1263 if (ignore_qualifiers) {
1264 type1_qual = type1_qual.getUnqualifiedType();
1265 type2_qual = type2_qual.getUnqualifiedType();
1268 return ast->getASTContext().hasSameType(type1_qual, type2_qual);
1275 clang::Decl *decl =
static_cast<clang::Decl *
>(opaque_decl);
1276 if (
auto *named_decl = llvm::dyn_cast<clang::NamedDecl>(decl))
1288 if (clang::ObjCInterfaceDecl *interface_decl =
1289 llvm::dyn_cast<clang::ObjCInterfaceDecl>(decl))
1291 if (clang::TagDecl *tag_decl = llvm::dyn_cast<clang::TagDecl>(decl))
1293 if (clang::ValueDecl *value_decl = llvm::dyn_cast<clang::ValueDecl>(decl))
1307 return GetType(value_decl->getType());
1310#pragma mark Structure, Unions, Classes
1314 if (!decl || !owning_module.
HasValue())
1317 decl->setFromASTFile();
1318 decl->setOwningModuleID(owning_module.
GetValue());
1319 decl->setModuleOwnershipKind(clang::Decl::ModuleOwnershipKind::Visible);
1325 bool is_framework,
bool is_explicit) {
1327 auto *ast_source = llvm::dyn_cast_or_null<ClangExternalASTSourceCallbacks>(
1329 assert(ast_source &&
"external ast source was lost");
1347 clang::Module *module;
1348 auto parent_desc = ast_source->getSourceDescriptor(parent.
GetValue());
1350 name, parent_desc ? parent_desc->getModuleOrNull() :
nullptr,
1351 is_framework, is_explicit);
1353 return ast_source->GetIDForModule(module);
1355 return ast_source->RegisterModule(module);
1361 std::optional<ClangASTMetadata> metadata,
bool exports_symbols) {
1364 if (decl_ctx ==
nullptr)
1365 decl_ctx = ast.getTranslationUnitDecl();
1369 bool isInternal =
false;
1370 return CreateObjCClass(name, decl_ctx, owning_module, isInternal, metadata);
1379 bool has_name = !name.empty();
1380 CXXRecordDecl *decl = CXXRecordDecl::CreateDeserialized(ast, GlobalDeclID());
1381 decl->setTagKind(
static_cast<TagDecl::TagKind
>(kind));
1382 decl->setDeclContext(decl_ctx);
1384 decl->setDeclName(&ast.Idents.get(name));
1412 if (isa<CXXRecordDecl>(decl_ctx) && exports_symbols)
1413 decl->setAnonymousStructOrUnion(
true);
1419 decl->setAccess(AS_public);
1422 decl_ctx->addDecl(decl);
1424 return GetType(ast.getCanonicalTagType(decl));
1431QualType GetValueParamType(
const clang::TemplateArgument &argument) {
1432 switch (argument.getKind()) {
1433 case TemplateArgument::Integral:
1434 return argument.getIntegralType();
1435 case TemplateArgument::StructuralValue:
1436 return argument.getStructuralValueType();
1446 llvm::SmallVector<NamedDecl *, 8> &template_param_decls) {
1447 const bool parameter_pack =
false;
1448 const bool is_typename =
false;
1449 const unsigned depth = 0;
1450 const size_t num_template_params = template_param_infos.
Size();
1451 DeclContext *
const decl_context =
1452 ast.getTranslationUnitDecl();
1454 auto const &args = template_param_infos.
GetArgs();
1455 auto const &names = template_param_infos.
GetNames();
1456 for (
size_t i = 0; i < num_template_params; ++i) {
1457 const char *name = names[i];
1459 IdentifierInfo *identifier_info =
nullptr;
1460 if (name && name[0])
1461 identifier_info = &ast.Idents.get(name);
1462 TemplateArgument
const &targ = args[i];
1463 QualType template_param_type = GetValueParamType(targ);
1464 if (!template_param_type.isNull()) {
1465 template_param_decls.push_back(NonTypeTemplateParmDecl::Create(
1466 ast, decl_context, SourceLocation(), SourceLocation(), depth, i,
1467 identifier_info, template_param_type, parameter_pack,
1468 ast.getTrivialTypeSourceInfo(template_param_type)));
1470 template_param_decls.push_back(TemplateTypeParmDecl::Create(
1471 ast, decl_context, SourceLocation(), SourceLocation(), depth, i,
1472 identifier_info, is_typename, parameter_pack));
1477 IdentifierInfo *identifier_info =
nullptr;
1479 identifier_info = &ast.Idents.get(template_param_infos.
GetPackName());
1480 const bool parameter_pack_true =
true;
1482 QualType template_param_type =
1486 if (!template_param_type.isNull()) {
1487 template_param_decls.push_back(NonTypeTemplateParmDecl::Create(
1488 ast, decl_context, SourceLocation(), SourceLocation(), depth,
1489 num_template_params, identifier_info, template_param_type,
1490 parameter_pack_true,
1491 ast.getTrivialTypeSourceInfo(template_param_type)));
1493 template_param_decls.push_back(TemplateTypeParmDecl::Create(
1494 ast, decl_context, SourceLocation(), SourceLocation(), depth,
1495 num_template_params, identifier_info, is_typename,
1496 parameter_pack_true));
1499 clang::Expr *
const requires_clause =
nullptr;
1500 TemplateParameterList *template_param_list = TemplateParameterList::Create(
1501 ast, SourceLocation(), SourceLocation(), template_param_decls,
1502 SourceLocation(), requires_clause);
1503 return template_param_list;
1508 clang::FunctionDecl *func_decl,
1513 llvm::SmallVector<NamedDecl *, 8> template_param_decls;
1515 ast, template_param_infos, template_param_decls);
1516 FunctionTemplateDecl *func_tmpl_decl =
1517 FunctionTemplateDecl::CreateDeserialized(ast, GlobalDeclID());
1518 func_tmpl_decl->setDeclContext(decl_ctx);
1519 func_tmpl_decl->setLocation(func_decl->getLocation());
1520 func_tmpl_decl->setDeclName(func_decl->getDeclName());
1521 func_tmpl_decl->setTemplateParameters(template_param_list);
1522 func_tmpl_decl->init(func_decl);
1525 for (
size_t i = 0, template_param_decl_count = template_param_decls.size();
1526 i < template_param_decl_count; ++i) {
1528 template_param_decls[i]->setDeclContext(func_decl);
1530 func_tmpl_decl->setAccess(clang::AccessSpecifier::AS_public);
1532 return func_tmpl_decl;
1536 FunctionDecl *func_decl, clang::FunctionTemplateDecl *func_tmpl_decl,
1538 TemplateArgumentList *template_args_ptr = TemplateArgumentList::CreateCopy(
1539 func_decl->getASTContext(), infos.
GetArgs());
1541 func_decl->setFunctionTemplateSpecialization(func_tmpl_decl,
1542 template_args_ptr, {});
1549 const TemplateArgument &value) {
1550 if (llvm::isa<TemplateTypeParmDecl>(param)) {
1552 if (value.getKind() != TemplateArgument::Type)
1554 }
else if (
auto *type_param =
1555 llvm::dyn_cast<NonTypeTemplateParmDecl>(param)) {
1557 QualType value_param_type = GetValueParamType(value);
1558 if (value_param_type.isNull())
1562 if (type_param->getType() != value_param_type)
1570 "Don't know how to compare template parameter to passed"
1571 " value. Decl kind of parameter is: {0}",
1572 param->getDeclKindName());
1573 lldbassert(
false &&
"Can't compare this TemplateParmDecl subclass");
1588 ClassTemplateDecl *class_template_decl,
1591 TemplateParameterList ¶ms = *class_template_decl->getTemplateParameters();
1597 std::optional<NamedDecl *> pack_parameter;
1599 size_t non_pack_params = params.size();
1600 for (
size_t i = 0; i < params.size(); ++i) {
1601 NamedDecl *param = params.getParam(i);
1602 if (param->isParameterPack()) {
1603 pack_parameter = param;
1604 non_pack_params = i;
1612 if (non_pack_params != instantiation_values.
Size())
1630 for (
const auto pair :
1631 llvm::zip_first(instantiation_values.
GetArgs(), params)) {
1632 const TemplateArgument &passed_arg = std::get<0>(pair);
1633 NamedDecl *found_param = std::get<1>(pair);
1638 return class_template_decl;
1643 llvm::StringRef class_name,
int kind,
1647 ClassTemplateDecl *class_template_decl =
nullptr;
1648 if (decl_ctx ==
nullptr)
1649 decl_ctx = ast.getTranslationUnitDecl();
1651 IdentifierInfo &identifier_info = ast.Idents.get(class_name);
1652 DeclarationName decl_name(&identifier_info);
1655 clang::DeclContext::lookup_result result = decl_ctx->lookup(decl_name);
1656 for (NamedDecl *decl : result) {
1657 class_template_decl = dyn_cast<clang::ClassTemplateDecl>(decl);
1658 if (!class_template_decl)
1667 template_param_infos))
1669 return class_template_decl;
1672 llvm::SmallVector<NamedDecl *, 8> template_param_decls;
1675 ast, template_param_infos, template_param_decls);
1677 CXXRecordDecl *template_cxx_decl =
1678 CXXRecordDecl::CreateDeserialized(ast, GlobalDeclID());
1679 template_cxx_decl->setTagKind(
static_cast<TagDecl::TagKind
>(kind));
1681 template_cxx_decl->setDeclContext(decl_ctx);
1682 template_cxx_decl->setDeclName(decl_name);
1685 for (
size_t i = 0, template_param_decl_count = template_param_decls.size();
1686 i < template_param_decl_count; ++i) {
1687 template_param_decls[i]->setDeclContext(template_cxx_decl);
1695 class_template_decl =
1696 ClassTemplateDecl::CreateDeserialized(ast, GlobalDeclID());
1698 class_template_decl->setDeclContext(decl_ctx);
1699 class_template_decl->setDeclName(decl_name);
1700 class_template_decl->setTemplateParameters(template_param_list);
1701 class_template_decl->init(template_cxx_decl);
1702 template_cxx_decl->setDescribedClassTemplate(class_template_decl);
1705 class_template_decl->setAccess(AS_public);
1707 decl_ctx->addDecl(class_template_decl);
1709 VerifyDecl(class_template_decl);
1711 return class_template_decl;
1714TemplateTemplateParmDecl *
1718 auto *decl_ctx = ast.getTranslationUnitDecl();
1720 IdentifierInfo &identifier_info = ast.Idents.get(template_name);
1721 llvm::SmallVector<NamedDecl *, 8> template_param_decls;
1725 std::make_unique<TemplateParameterInfos>());
1727 ast, template_param_infos, template_param_decls);
1733 return TemplateTemplateParmDecl::Create(
1734 ast, decl_ctx, SourceLocation(),
1736 false, &identifier_info,
1737 TemplateNameKind::TNK_Type_template,
true,
1738 template_param_list);
1741ClassTemplateSpecializationDecl *
1744 ClassTemplateDecl *class_template_decl,
int kind,
1747 llvm::SmallVector<clang::TemplateArgument, 2> args(
1748 template_param_infos.
Size() +
1751 auto const &orig_args = template_param_infos.
GetArgs();
1752 std::copy(orig_args.begin(), orig_args.end(), args.begin());
1754 args[args.size() - 1] = TemplateArgument::CreatePackCopy(
1757 ClassTemplateSpecializationDecl *class_template_specialization_decl =
1758 ClassTemplateSpecializationDecl::CreateDeserialized(ast, GlobalDeclID());
1759 class_template_specialization_decl->setTagKind(
1760 static_cast<TagDecl::TagKind
>(kind));
1761 class_template_specialization_decl->setDeclContext(decl_ctx);
1762 class_template_specialization_decl->setInstantiationOf(class_template_decl);
1763 class_template_specialization_decl->setTemplateArgs(
1764 TemplateArgumentList::CreateCopy(ast, args));
1765 llvm::FoldingSetInsertToken insert_token;
1766 if (class_template_decl->findSpecialization(args, insert_token))
1768 class_template_decl->AddSpecialization(class_template_specialization_decl,
1770 class_template_specialization_decl->setDeclName(
1771 class_template_decl->getDeclName());
1776 class_template_specialization_decl->setStrictPackMatch(
false);
1779 decl_ctx->addDecl(class_template_specialization_decl);
1781 class_template_specialization_decl->setSpecializationKind(
1782 TSK_ExplicitSpecialization);
1784 return class_template_specialization_decl;
1788 ClassTemplateSpecializationDecl *class_template_specialization_decl) {
1789 if (class_template_specialization_decl) {
1791 return GetType(ast.getCanonicalTagType(class_template_specialization_decl));
1797 clang::OverloadedOperatorKind op_kind,
1798 bool unary,
bool binary,
1799 uint32_t num_params) {
1801 if (op_kind == OO_Call)
1807 if (num_params == 1)
1809 if (num_params == 2)
1816 bool is_method, clang::OverloadedOperatorKind op_kind,
1817 uint32_t num_params) {
1825 case OO_Array_Delete:
1829#define OVERLOADED_OPERATOR(Name, Spelling, Token, Unary, Binary, MemberOnly) \
1831 return check_op_param(is_method, op_kind, Unary, Binary, num_params);
1833#include "clang/Basic/OperatorKinds.def"
1841 uint32_t &bitfield_bit_size) {
1843 if (field ==
nullptr)
1846 if (field->isBitField()) {
1847 Expr *bit_width_expr = field->getBitWidth();
1848 if (bit_width_expr) {
1849 if (std::optional<llvm::APSInt> bit_width_apsint =
1850 bit_width_expr->getIntegerConstantExpr(ast)) {
1851 bitfield_bit_size = bit_width_apsint->getLimitedValue(
UINT32_MAX);
1860 if (record_decl ==
nullptr)
1863 if (!record_decl->field_empty())
1867 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1868 if (cxx_record_decl) {
1869 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1870 for (base_class = cxx_record_decl->bases_begin(),
1871 base_class_end = cxx_record_decl->bases_end();
1872 base_class != base_class_end; ++base_class) {
1873 assert(record_decl != base_class->getType()->getAsCXXRecordDecl() &&
1874 "Base can't inherit from itself.");
1886 if (std::optional<ClangASTMetadata> meta_data =
GetMetadata(record_decl);
1887 meta_data && meta_data->IsForcefullyCompleted())
1893#pragma mark Objective-C Classes
1896 llvm::StringRef name, clang::DeclContext *decl_ctx,
1898 std::optional<ClangASTMetadata> metadata) {
1900 assert(!name.empty());
1902 decl_ctx = ast.getTranslationUnitDecl();
1904 ObjCInterfaceDecl *decl =
1905 ObjCInterfaceDecl::CreateDeserialized(ast, GlobalDeclID());
1906 decl->setDeclContext(decl_ctx);
1907 decl->setDeclName(&ast.Idents.get(name));
1908 decl->setImplicit(isInternal);
1914 return GetType(ast.getObjCInterfaceType(decl));
1923 bool omit_empty_base_classes) {
1924 uint32_t num_bases = 0;
1925 if (cxx_record_decl) {
1926 if (omit_empty_base_classes) {
1927 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1928 for (base_class = cxx_record_decl->bases_begin(),
1929 base_class_end = cxx_record_decl->bases_end();
1930 base_class != base_class_end; ++base_class) {
1937 num_bases = cxx_record_decl->getNumBases();
1942#pragma mark Namespace Declarations
1945 const char *name, clang::DeclContext *decl_ctx,
1947 NamespaceDecl *namespace_decl =
nullptr;
1949 TranslationUnitDecl *translation_unit_decl = ast.getTranslationUnitDecl();
1951 decl_ctx = translation_unit_decl;
1954 IdentifierInfo &identifier_info = ast.Idents.get(name);
1955 DeclarationName decl_name(&identifier_info);
1956 clang::DeclContext::lookup_result result = decl_ctx->lookup(decl_name);
1957 for (NamedDecl *decl : result) {
1958 namespace_decl = dyn_cast<clang::NamespaceDecl>(decl);
1960 return namespace_decl;
1963 namespace_decl = NamespaceDecl::Create(ast, decl_ctx, is_inline,
1964 SourceLocation(), SourceLocation(),
1965 &identifier_info,
nullptr,
false);
1967 decl_ctx->addDecl(namespace_decl);
1969 if (decl_ctx == translation_unit_decl) {
1970 namespace_decl = translation_unit_decl->getAnonymousNamespace();
1972 return namespace_decl;
1975 NamespaceDecl::Create(ast, decl_ctx,
false, SourceLocation(),
1976 SourceLocation(),
nullptr,
nullptr,
false);
1977 translation_unit_decl->setAnonymousNamespace(namespace_decl);
1978 translation_unit_decl->addDecl(namespace_decl);
1979 assert(namespace_decl == translation_unit_decl->getAnonymousNamespace());
1981 NamespaceDecl *parent_namespace_decl = cast<NamespaceDecl>(decl_ctx);
1982 if (parent_namespace_decl) {
1983 namespace_decl = parent_namespace_decl->getAnonymousNamespace();
1985 return namespace_decl;
1987 NamespaceDecl::Create(ast, decl_ctx,
false, SourceLocation(),
1988 SourceLocation(),
nullptr,
nullptr,
false);
1989 parent_namespace_decl->setAnonymousNamespace(namespace_decl);
1990 parent_namespace_decl->addDecl(namespace_decl);
1991 assert(namespace_decl ==
1992 parent_namespace_decl->getAnonymousNamespace());
1994 assert(
false &&
"GetUniqueNamespaceDeclaration called with no name and "
1995 "no namespace as decl_ctx");
2003 VerifyDecl(namespace_decl);
2004 return namespace_decl;
2011 clang::BlockDecl *decl =
2012 clang::BlockDecl::CreateDeserialized(
getASTContext(), GlobalDeclID());
2013 decl->setDeclContext(ctx);
2022 clang::DeclContext *right,
2023 clang::DeclContext *root) {
2024 if (root ==
nullptr)
2027 std::set<clang::DeclContext *> path_left;
2028 for (clang::DeclContext *d = left; d !=
nullptr; d = d->getParent())
2029 path_left.insert(d);
2031 for (clang::DeclContext *d = right; d !=
nullptr; d = d->getParent())
2032 if (path_left.find(d) != path_left.end())
2040 clang::NamespaceDecl *ns_decl) {
2041 if (decl_ctx && ns_decl) {
2042 auto *translation_unit =
getASTContext().getTranslationUnitDecl();
2043 clang::UsingDirectiveDecl *using_decl = clang::UsingDirectiveDecl::Create(
2045 clang::SourceLocation(), clang::NestedNameSpecifierLoc(),
2046 clang::SourceLocation(), ns_decl,
2049 decl_ctx->addDecl(using_decl);
2059 clang::NamedDecl *target) {
2060 if (current_decl_ctx && target) {
2061 clang::UsingDecl *using_decl = clang::UsingDecl::Create(
2063 clang::NestedNameSpecifierLoc(), clang::DeclarationNameInfo(),
false);
2065 clang::UsingShadowDecl *shadow_decl = clang::UsingShadowDecl::Create(
2067 target->getDeclName(), using_decl, target);
2069 using_decl->addShadowDecl(shadow_decl);
2070 current_decl_ctx->addDecl(using_decl);
2078 const char *name, clang::QualType type) {
2080 clang::VarDecl *var_decl =
2081 clang::VarDecl::CreateDeserialized(
getASTContext(), GlobalDeclID());
2082 var_decl->setDeclContext(decl_context);
2083 if (name && name[0])
2084 var_decl->setDeclName(&
getASTContext().Idents.getOwn(name));
2085 var_decl->setType(type);
2087 var_decl->setAccess(clang::AS_public);
2088 decl_context->addDecl(var_decl);
2097 switch (basic_type) {
2099 return ast->VoidTy.getAsOpaquePtr();
2101 return ast->CharTy.getAsOpaquePtr();
2103 return ast->SignedCharTy.getAsOpaquePtr();
2105 return ast->UnsignedCharTy.getAsOpaquePtr();
2107 return ast->getWCharType().getAsOpaquePtr();
2109 return ast->getSignedWCharType().getAsOpaquePtr();
2111 return ast->getUnsignedWCharType().getAsOpaquePtr();
2113 return ast->Char8Ty.getAsOpaquePtr();
2115 return ast->Char16Ty.getAsOpaquePtr();
2117 return ast->Char32Ty.getAsOpaquePtr();
2119 return ast->ShortTy.getAsOpaquePtr();
2121 return ast->UnsignedShortTy.getAsOpaquePtr();
2123 return ast->IntTy.getAsOpaquePtr();
2125 return ast->UnsignedIntTy.getAsOpaquePtr();
2127 return ast->LongTy.getAsOpaquePtr();
2129 return ast->UnsignedLongTy.getAsOpaquePtr();
2131 return ast->LongLongTy.getAsOpaquePtr();
2133 return ast->UnsignedLongLongTy.getAsOpaquePtr();
2135 return ast->Int128Ty.getAsOpaquePtr();
2137 return ast->UnsignedInt128Ty.getAsOpaquePtr();
2139 return ast->BoolTy.getAsOpaquePtr();
2141 return ast->HalfTy.getAsOpaquePtr();
2143 return ast->FloatTy.getAsOpaquePtr();
2145 return ast->DoubleTy.getAsOpaquePtr();
2147 return ast->LongDoubleTy.getAsOpaquePtr();
2149 return ast->Float128Ty.getAsOpaquePtr();
2151 return ast->getComplexType(ast->FloatTy).getAsOpaquePtr();
2153 return ast->getComplexType(ast->DoubleTy).getAsOpaquePtr();
2155 return ast->getComplexType(ast->LongDoubleTy).getAsOpaquePtr();
2157 return ast->getObjCIdType().getAsOpaquePtr();
2159 return ast->getObjCClassType().getAsOpaquePtr();
2161 return ast->getObjCSelType().getAsOpaquePtr();
2163 return ast->NullPtrTy.getAsOpaquePtr();
2169#pragma mark Function Types
2171clang::DeclarationName
2174 clang::OverloadedOperatorKind op_kind = clang::NUM_OVERLOADED_OPERATORS;
2175 if (!
IsOperator(name, op_kind) || op_kind == clang::NUM_OVERLOADED_OPERATORS)
2184 const clang::FunctionProtoType *function_type =
2185 llvm::dyn_cast<clang::FunctionProtoType>(method_qual_type.getTypePtr());
2186 if (function_type ==
nullptr)
2187 return clang::DeclarationName();
2189 const bool is_method =
false;
2190 const unsigned int num_params = function_type->getNumParams();
2192 is_method, op_kind, num_params))
2193 return clang::DeclarationName();
2195 return getASTContext().DeclarationNames.getCXXOperatorName(op_kind);
2199 clang::PrintingPolicy printing_policy(
getASTContext().getPrintingPolicy());
2200 printing_policy.SuppressTagKeyword =
true;
2203 printing_policy.SuppressInlineNamespace =
2204 llvm::to_underlying(PrintingPolicy::SuppressInlineNamespaceMode::None);
2205 printing_policy.SuppressUnwrittenScope =
false;
2217 printing_policy.SuppressDefaultTemplateArgs =
false;
2218 return printing_policy;
2225 llvm::raw_string_ostream os(result);
2226 named_decl->getNameForDiagnostic(os, printing_policy, qualified);
2232 llvm::StringRef name,
const CompilerType &function_clang_type,
2233 clang::StorageClass storage,
bool is_inline, llvm::StringRef asm_label) {
2234 FunctionDecl *func_decl =
nullptr;
2237 decl_ctx = ast.getTranslationUnitDecl();
2239 const bool hasWrittenPrototype =
true;
2240 const bool isConstexprSpecified =
false;
2242 clang::DeclarationName declarationName =
2244 func_decl = FunctionDecl::CreateDeserialized(ast, GlobalDeclID());
2245 func_decl->setDeclContext(decl_ctx);
2246 func_decl->setDeclName(declarationName);
2248 func_decl->setStorageClass(storage);
2249 func_decl->setInlineSpecified(is_inline);
2250 func_decl->setHasWrittenPrototype(hasWrittenPrototype);
2251 func_decl->setConstexprKind(isConstexprSpecified
2252 ? ConstexprSpecKind::Constexpr
2253 : ConstexprSpecKind::Unspecified);
2265 if (!asm_label.empty())
2266 func_decl->addAttr(clang::AsmLabelAttr::CreateImplicit(ast, asm_label));
2269 decl_ctx->addDecl(func_decl);
2271 VerifyDecl(func_decl);
2277 const CompilerType &result_type, llvm::ArrayRef<CompilerType> args,
2278 bool is_variadic,
unsigned type_quals, clang::CallingConv cc,
2279 clang::RefQualifierKind ref_qual) {
2283 std::vector<QualType> qual_type_args;
2285 for (
const auto &arg : args) {
2300 FunctionProtoType::ExtProtoInfo proto_info;
2301 proto_info.ExtInfo = cc;
2302 proto_info.Variadic = is_variadic;
2303 proto_info.ExceptionSpec = EST_None;
2304 proto_info.TypeQuals = clang::Qualifiers::fromFastMask(type_quals);
2305 proto_info.RefQualifier = ref_qual;
2313 const char *name,
const CompilerType ¶m_type,
int storage,
2316 auto *decl = ParmVarDecl::CreateDeserialized(ast, GlobalDeclID());
2317 decl->setDeclContext(decl_ctx);
2318 if (name && name[0])
2319 decl->setDeclName(&ast.Idents.get(name));
2321 decl->setStorageClass(
static_cast<clang::StorageClass
>(storage));
2324 decl_ctx->addDecl(decl);
2331 QualType block_type =
m_ast_up->getBlockPointerType(
2337#pragma mark Array Types
2341 std::optional<size_t> element_count,
2354 clang::ArraySizeModifier::Normal, 0));
2360 llvm::APInt ap_element_count(64, *element_count);
2362 ap_element_count,
nullptr,
2363 clang::ArraySizeModifier::Normal, 0));
2367 llvm::StringRef type_name,
2368 const std::initializer_list<std::pair<const char *, CompilerType>>
2375 lldbassert(0 &&
"Trying to create a type for an existing name");
2380 llvm::to_underlying(clang::TagTypeKind::Struct),
2383 for (
const auto &field : type_fields)
2392 llvm::StringRef type_name,
2393 const std::initializer_list<std::pair<const char *, CompilerType>>
2405#pragma mark Enumeration Types
2408 llvm::StringRef name, clang::DeclContext *decl_ctx,
2410 const CompilerType &integer_clang_type,
bool is_scoped,
2411 std::optional<clang::EnumExtensibilityAttr::Kind> enum_kind) {
2418 EnumDecl *enum_decl = EnumDecl::CreateDeserialized(ast, GlobalDeclID());
2419 enum_decl->setDeclContext(decl_ctx);
2421 enum_decl->setDeclName(&ast.Idents.get(name));
2422 enum_decl->setScoped(is_scoped);
2423 enum_decl->setScopedUsingClassTag(is_scoped);
2424 enum_decl->setFixed(
false);
2427 decl_ctx->addDecl(enum_decl);
2431 clang::EnumExtensibilityAttr::CreateImplicit(ast, *enum_kind));
2436 enum_decl->setAccess(AS_public);
2438 return GetType(ast.getCanonicalTagType(enum_decl));
2449 if (bit_size == ast.getTypeSize(ast.SignedCharTy))
2450 return GetType(ast.SignedCharTy);
2452 if (bit_size == ast.getTypeSize(ast.ShortTy))
2455 if (bit_size == ast.getTypeSize(ast.IntTy))
2458 if (bit_size == ast.getTypeSize(ast.LongTy))
2461 if (bit_size == ast.getTypeSize(ast.LongLongTy))
2462 return GetType(ast.LongLongTy);
2464 if (bit_size == ast.getTypeSize(ast.Int128Ty))
2467 if (bit_size == ast.getTypeSize(ast.UnsignedCharTy))
2468 return GetType(ast.UnsignedCharTy);
2470 if (bit_size == ast.getTypeSize(ast.UnsignedShortTy))
2471 return GetType(ast.UnsignedShortTy);
2473 if (bit_size == ast.getTypeSize(ast.UnsignedIntTy))
2474 return GetType(ast.UnsignedIntTy);
2476 if (bit_size == ast.getTypeSize(ast.UnsignedLongTy))
2477 return GetType(ast.UnsignedLongTy);
2479 if (bit_size == ast.getTypeSize(ast.UnsignedLongLongTy))
2480 return GetType(ast.UnsignedLongLongTy);
2482 if (bit_size == ast.getTypeSize(ast.UnsignedInt128Ty))
2483 return GetType(ast.UnsignedInt128Ty);
2518 clang::NamedDecl *named_decl = llvm::dyn_cast<clang::NamedDecl>(decl_ctx);
2520 printf(
"%20s: %s\n", decl_ctx->getDeclKindName(),
2521 named_decl->getDeclName().getAsString().c_str());
2523 printf(
"%20s\n", decl_ctx->getDeclKindName());
2529 if (decl ==
nullptr)
2533 clang::RecordDecl *record_decl = llvm::dyn_cast<clang::RecordDecl>(decl);
2535 bool is_injected_class_name =
2536 llvm::isa<clang::CXXRecordDecl>(record_decl) &&
2537 llvm::cast<CXXRecordDecl>(record_decl)->isInjectedClassName();
2538 printf(
"%20s: %s%s\n", decl->getDeclKindName(),
2539 record_decl->getDeclName().getAsString().c_str(),
2540 is_injected_class_name ?
" (injected class name)" :
"");
2543 clang::NamedDecl *named_decl = llvm::dyn_cast<clang::NamedDecl>(decl);
2545 printf(
"%20s: %s\n", decl->getDeclKindName(),
2546 named_decl->getDeclName().getAsString().c_str());
2548 printf(
"%20s\n", decl->getDeclKindName());
2554 clang::Decl *decl) {
2558 ExternalASTSource *ast_source = ast->getExternalSource();
2563 if (clang::TagDecl *tag_decl = llvm::dyn_cast<clang::TagDecl>(decl)) {
2564 if (tag_decl->isCompleteDefinition())
2567 if (!tag_decl->hasExternalLexicalStorage())
2570 ast_source->CompleteType(tag_decl);
2572 return !ast->getCanonicalTagType(tag_decl)->isIncompleteType();
2573 }
else if (clang::ObjCInterfaceDecl *objc_interface_decl =
2574 llvm::dyn_cast<clang::ObjCInterfaceDecl>(decl)) {
2575 if (objc_interface_decl->getDefinition())
2578 if (!objc_interface_decl->hasExternalLexicalStorage())
2581 ast_source->CompleteType(objc_interface_decl);
2583 return !objc_interface_decl->getTypeForDecl()->isIncompleteType();
2613std::optional<ClangASTMetadata>
2619 return std::nullopt;
2622std::optional<ClangASTMetadata>
2628 return std::nullopt;
2650 if (find(mask, type->getTypeClass()) != mask.end())
2652 switch (type->getTypeClass()) {
2655 case clang::Type::Atomic:
2656 type = cast<clang::AtomicType>(type)->getValueType();
2658 case clang::Type::Auto:
2659 case clang::Type::Decltype:
2660 case clang::Type::Paren:
2661 case clang::Type::SubstTemplateTypeParm:
2662 case clang::Type::TemplateSpecialization:
2663 case clang::Type::Typedef:
2664 case clang::Type::TypeOf:
2665 case clang::Type::TypeOfExpr:
2666 case clang::Type::Using:
2667 case clang::Type::PredefinedSugar:
2668 type = type->getLocallyUnqualifiedSingleStepDesugaredType();
2682 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2683 switch (type_class) {
2684 case clang::Type::ObjCInterface:
2685 return llvm::cast<clang::ObjCObjectType>(qual_type.getTypePtr())
2687 case clang::Type::ObjCObjectPointer:
2689 llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr())
2690 ->getPointeeType());
2691 case clang::Type::Enum:
2692 case clang::Type::Record:
2693 return llvm::cast<clang::TagType>(qual_type)
2695 ->getDefinitionOrSelf();
2707static const clang::RecordType *
2709 assert(qual_type->isRecordType());
2711 const auto *tag_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
2713 clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
2717 if (!cxx_record_decl || !cxx_record_decl->hasExternalLexicalStorage())
2720 const bool is_complete = cxx_record_decl->isCompleteDefinition();
2721 const bool fields_loaded =
2722 cxx_record_decl->hasLoadedFieldsFromExternalStorage();
2725 if (is_complete && fields_loaded)
2733 clang::ExternalASTSource *external_ast_source = ast->getExternalSource();
2734 if (external_ast_source) {
2735 external_ast_source->CompleteType(cxx_record_decl);
2736 if (cxx_record_decl->isCompleteDefinition()) {
2737 cxx_record_decl->field_begin();
2738 cxx_record_decl->setHasLoadedFieldsFromExternalStorage(
true);
2750 clang::QualType qual_type) {
2751 assert(qual_type->isEnumeralType());
2754 const clang::EnumType *enum_type =
2755 llvm::cast<clang::EnumType>(qual_type.getTypePtr());
2757 auto *tag_decl = enum_type->getAsTagDecl();
2761 if (tag_decl->getDefinition())
2765 if (!tag_decl->hasExternalLexicalStorage())
2769 clang::ExternalASTSource *external_ast_source = ast->getExternalSource();
2770 if (!external_ast_source)
2773 external_ast_source->CompleteType(tag_decl);
2781static const clang::ObjCObjectType *
2783 assert(qual_type->isObjCObjectType());
2786 const clang::ObjCObjectType *objc_class_type =
2787 llvm::cast<clang::ObjCObjectType>(qual_type);
2789 clang::ObjCInterfaceDecl *class_interface_decl =
2790 objc_class_type->getInterface();
2793 if (!class_interface_decl)
2794 return objc_class_type;
2797 if (class_interface_decl->getDefinition())
2798 return objc_class_type;
2801 if (!class_interface_decl->hasExternalLexicalStorage())
2805 clang::ExternalASTSource *external_ast_source = ast->getExternalSource();
2806 if (!external_ast_source)
2809 external_ast_source->CompleteType(class_interface_decl);
2810 return objc_class_type;
2814 clang::QualType qual_type) {
2816 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2817 switch (type_class) {
2818 case clang::Type::ConstantArray:
2819 case clang::Type::IncompleteArray:
2820 case clang::Type::VariableArray: {
2821 const clang::ArrayType *array_type =
2822 llvm::dyn_cast<clang::ArrayType>(qual_type.getTypePtr());
2827 case clang::Type::Record: {
2829 return !RT->isIncompleteType();
2834 case clang::Type::Enum: {
2836 return !ET->isIncompleteType();
2840 case clang::Type::ObjCObject:
2841 case clang::Type::ObjCInterface: {
2843 return !OT->isIncompleteType();
2848 case clang::Type::Attributed:
2850 ast, llvm::cast<clang::AttributedType>(qual_type)->getModifiedType());
2852 case clang::Type::MemberPointer:
2855 if (ast->getTargetInfo().getCXXABI().isMicrosoft()) {
2856 auto *MPT = qual_type.getTypePtr()->castAs<clang::MemberPointerType>();
2857 if (
auto *RD = MPT->getMostRecentCXXRecordDecl())
2860 return !qual_type.getTypePtr()->isIncompleteType();
2875 return !type || llvm::isa<clang::Type>(
GetQualType(type).getTypePtr());
2882 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2883 switch (type_class) {
2884 case clang::Type::IncompleteArray:
2885 case clang::Type::VariableArray:
2886 case clang::Type::ConstantArray:
2887 case clang::Type::ExtVector:
2888 case clang::Type::Vector:
2889 case clang::Type::Record:
2890 case clang::Type::ObjCObject:
2891 case clang::Type::ObjCInterface:
2903 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2904 switch (type_class) {
2905 case clang::Type::Record: {
2906 if (
const clang::RecordType *record_type =
2907 llvm::dyn_cast_or_null<clang::RecordType>(
2908 qual_type.getTypePtrOrNull())) {
2909 if (
const clang::RecordDecl *record_decl = record_type->getDecl()) {
2910 return record_decl->isAnonymousStructOrUnion();
2924 uint64_t *size,
bool *is_incomplete) {
2927 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2928 switch (type_class) {
2932 case clang::Type::ConstantArray:
2933 if (element_type_ptr)
2935 weak_from_this(), llvm::cast<clang::ConstantArrayType>(qual_type)
2939 *size = llvm::cast<clang::ConstantArrayType>(qual_type)
2941 .getLimitedValue(ULLONG_MAX);
2943 *is_incomplete =
false;
2946 case clang::Type::IncompleteArray:
2947 if (element_type_ptr)
2949 weak_from_this(), llvm::cast<clang::IncompleteArrayType>(qual_type)
2955 *is_incomplete =
true;
2958 case clang::Type::VariableArray:
2959 if (element_type_ptr)
2961 weak_from_this(), llvm::cast<clang::VariableArrayType>(qual_type)
2967 *is_incomplete =
false;
2970 case clang::Type::DependentSizedArray:
2971 if (element_type_ptr)
2974 llvm::cast<clang::DependentSizedArrayType>(qual_type)
2980 *is_incomplete =
false;
2983 if (element_type_ptr)
2984 element_type_ptr->
Clear();
2988 *is_incomplete =
false;
2996 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2997 switch (type_class) {
2998 case clang::Type::Vector: {
2999 const clang::VectorType *vector_type =
3000 qual_type->getAs<clang::VectorType>();
3003 *size = vector_type->getNumElements();
3005 *element_type =
GetType(vector_type->getElementType());
3009 case clang::Type::ExtVector: {
3010 const clang::ExtVectorType *ext_vector_type =
3011 qual_type->getAs<clang::ExtVectorType>();
3012 if (ext_vector_type) {
3014 *size = ext_vector_type->getNumElements();
3018 ext_vector_type->getElementType().getAsOpaquePtr());
3034 if (!llvm::isa<clang::ObjCInterfaceDecl>(decl_ctx))
3037 clang::ObjCInterfaceDecl *result_iface_decl =
3038 llvm::dyn_cast<clang::ObjCInterfaceDecl>(decl_ctx);
3040 std::optional<ClangASTMetadata> ast_metadata =
GetMetadata(result_iface_decl);
3044 return (ast_metadata->GetISAPtr() != 0);
3048 return GetQualType(type).getUnqualifiedType()->isCharType();
3070 if (!pointee_or_element_clang_type.
IsValid())
3073 if (type_flags.
AnySet(eTypeIsArray | eTypeIsPointer)) {
3074 if (pointee_or_element_clang_type.
IsCharType()) {
3075 if (type_flags.
Test(eTypeIsArray)) {
3078 length = llvm::cast<clang::ConstantArrayType>(
3092 if (
auto pointer_auth = qual_type.getPointerAuth())
3093 return pointer_auth.getKey();
3102 if (
auto pointer_auth = qual_type.getPointerAuth())
3103 return pointer_auth.getExtraDiscriminator();
3112 if (
auto pointer_auth = qual_type.getPointerAuth())
3113 return pointer_auth.isAddressDiscriminated();
3119 auto isFunctionType = [&](clang::QualType qual_type) {
3120 return qual_type->isFunctionType();
3134 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3135 switch (type_class) {
3136 case clang::Type::Record:
3138 const clang::CXXRecordDecl *cxx_record_decl =
3139 qual_type->getAsCXXRecordDecl();
3140 if (cxx_record_decl) {
3141 if (cxx_record_decl->getNumBases() || cxx_record_decl->isDynamicClass())
3144 const clang::RecordType *record_type =
3145 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
3147 if (
const clang::RecordDecl *record_decl =
3148 record_type->getDecl()->getDefinition()) {
3151 clang::RecordDecl::field_iterator field_pos,
3152 field_end = record_decl->field_end();
3153 uint32_t num_fields = 0;
3154 bool is_hva =
false;
3155 bool is_hfa =
false;
3156 clang::QualType base_qual_type;
3157 uint64_t base_bitwidth = 0;
3158 for (field_pos = record_decl->field_begin(); field_pos != field_end;
3160 clang::QualType field_qual_type = field_pos->getType();
3161 uint64_t field_bitwidth =
getASTContext().getTypeSize(qual_type);
3162 if (field_qual_type->isFloatingType()) {
3163 if (field_qual_type->isComplexType())
3166 if (num_fields == 0)
3167 base_qual_type = field_qual_type;
3172 if (field_qual_type.getTypePtr() !=
3173 base_qual_type.getTypePtr())
3177 }
else if (field_qual_type->isVectorType() ||
3178 field_qual_type->isExtVectorType()) {
3179 if (num_fields == 0) {
3180 base_qual_type = field_qual_type;
3181 base_bitwidth = field_bitwidth;
3186 if (base_bitwidth != field_bitwidth)
3188 if (field_qual_type.getTypePtr() != base_qual_type.getTypePtr())
3197 CompilerType(weak_from_this(), base_qual_type.getAsOpaquePtr());
3214 const clang::FunctionProtoType *func =
3215 llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
3217 return func->getNumParams();
3224 const size_t index) {
3227 const clang::FunctionProtoType *func =
3228 llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
3230 if (index < func->getNumParams())
3231 return CompilerType(weak_from_this(), func->getParamType(index).getAsOpaquePtr());
3239 llvm::function_ref<
bool(clang::QualType)> predicate)
const {
3243 if (predicate(qual_type))
3246 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3247 switch (type_class) {
3251 case clang::Type::LValueReference:
3252 case clang::Type::RValueReference: {
3253 const clang::ReferenceType *reference_type =
3254 llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
3256 return IsTypeImpl(reference_type->getPointeeType().getAsOpaquePtr(), predicate);
3265 auto isMemberFunctionPointerType = [](clang::QualType qual_type) {
3266 return qual_type->isMemberFunctionPointerType();
3269 return IsTypeImpl(type, isMemberFunctionPointerType);
3274 auto isMemberDataPointerType = [](clang::QualType qual_type) {
3275 return qual_type->isMemberDataPointerType();
3278 return IsTypeImpl(type, isMemberDataPointerType);
3282 auto isFunctionPointerType = [](clang::QualType qual_type) {
3283 return qual_type->isFunctionPointerType();
3286 return IsTypeImpl(type, isFunctionPointerType);
3292 auto isBlockPointerType = [&](clang::QualType qual_type) {
3293 if (qual_type->isBlockPointerType()) {
3294 if (function_pointer_type_ptr) {
3295 const clang::BlockPointerType *block_pointer_type =
3296 qual_type->castAs<clang::BlockPointerType>();
3297 QualType pointee_type = block_pointer_type->getPointeeType();
3298 QualType function_pointer_type =
m_ast_up->getPointerType(pointee_type);
3300 weak_from_this(), function_pointer_type.getAsOpaquePtr());
3317 if (qual_type.isNull())
3326 is_signed = qual_type->isSignedIntegerType();
3334 const clang::EnumType *enum_type = llvm::dyn_cast<clang::EnumType>(
3338 is_signed = enum_type->isSignedIntegerOrEnumerationType();
3349 const clang::EnumType *enum_type = llvm::dyn_cast<clang::EnumType>(
3353 return enum_type->isScopedEnumeralType();
3364 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3365 switch (type_class) {
3366 case clang::Type::Builtin:
3367 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
3370 case clang::BuiltinType::ObjCId:
3371 case clang::BuiltinType::ObjCClass:
3375 case clang::Type::ObjCObjectPointer:
3379 llvm::cast<clang::ObjCObjectPointerType>(qual_type)
3383 case clang::Type::BlockPointer:
3386 weak_from_this(), llvm::cast<clang::BlockPointerType>(qual_type)
3390 case clang::Type::Pointer:
3393 llvm::cast<clang::PointerType>(qual_type)
3397 case clang::Type::MemberPointer:
3400 weak_from_this(), llvm::cast<clang::MemberPointerType>(qual_type)
3409 pointee_type->
Clear();
3417 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3418 switch (type_class) {
3419 case clang::Type::Builtin:
3420 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
3423 case clang::BuiltinType::ObjCId:
3424 case clang::BuiltinType::ObjCClass:
3428 case clang::Type::ObjCObjectPointer:
3432 llvm::cast<clang::ObjCObjectPointerType>(qual_type)
3436 case clang::Type::BlockPointer:
3439 weak_from_this(), llvm::cast<clang::BlockPointerType>(qual_type)
3443 case clang::Type::Pointer:
3446 llvm::cast<clang::PointerType>(qual_type)
3450 case clang::Type::MemberPointer:
3453 weak_from_this(), llvm::cast<clang::MemberPointerType>(qual_type)
3457 case clang::Type::LValueReference:
3460 weak_from_this(), llvm::cast<clang::LValueReferenceType>(qual_type)
3464 case clang::Type::RValueReference:
3467 weak_from_this(), llvm::cast<clang::RValueReferenceType>(qual_type)
3476 pointee_type->
Clear();
3485 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3487 switch (type_class) {
3488 case clang::Type::LValueReference:
3491 weak_from_this(), llvm::cast<clang::LValueReferenceType>(qual_type)
3497 case clang::Type::RValueReference:
3500 weak_from_this(), llvm::cast<clang::RValueReferenceType>(qual_type)
3512 pointee_type->
Clear();
3521 if (qual_type.isNull())
3524 return qual_type->isFloatingType();
3532 const clang::TagType *tag_type =
3533 llvm::dyn_cast<clang::TagType>(qual_type.getTypePtr());
3535 if (clang::TagDecl *tag_decl = tag_type->getDecl()->getDefinition())
3536 return tag_decl->isCompleteDefinition();
3539 const clang::ObjCObjectType *objc_class_type =
3540 llvm::dyn_cast<clang::ObjCObjectType>(qual_type);
3541 if (objc_class_type) {
3542 clang::ObjCInterfaceDecl *class_interface_decl =
3543 objc_class_type->getInterface();
3544 if (class_interface_decl)
3545 return class_interface_decl->getDefinition() !=
nullptr;
3556 const clang::ObjCObjectPointerType *obj_pointer_type =
3557 llvm::dyn_cast<clang::ObjCObjectPointerType>(qual_type);
3559 if (obj_pointer_type)
3560 return obj_pointer_type->isObjCClassType();
3575 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3576 return (type_class == clang::Type::Record);
3583 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3584 return (type_class == clang::Type::Enum);
3590 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3591 switch (type_class) {
3592 case clang::Type::Record:
3594 if (
const auto *cxx_record_decl = qual_type->getAsCXXRecordDecl()) {
3601 return cxx_record_decl->isDynamicClass();
3615 bool check_cplusplus,
3617 if (dynamic_pointee_type)
3618 dynamic_pointee_type->
Clear();
3622 auto set_dynamic_pointee_type = [&](clang::QualType type) {
3623 if (dynamic_pointee_type)
3625 type.getAsOpaquePtr());
3628 clang::QualType pointee_qual_type;
3630 switch (qual_type->getTypeClass()) {
3631 case clang::Type::Builtin:
3632 if (check_objc && llvm::cast<clang::BuiltinType>(qual_type)->getKind() ==
3633 clang::BuiltinType::ObjCId) {
3634 set_dynamic_pointee_type(qual_type);
3639 case clang::Type::ObjCObjectPointer:
3642 if (
const auto *objc_pointee_type =
3643 qual_type->getPointeeType().getTypePtrOrNull()) {
3644 if (
const auto *objc_object_type =
3645 llvm::dyn_cast_or_null<clang::ObjCObjectType>(
3646 objc_pointee_type)) {
3647 if (objc_object_type->isObjCClass())
3651 set_dynamic_pointee_type(
3652 llvm::cast<clang::ObjCObjectPointerType>(qual_type)->getPointeeType());
3655 case clang::Type::Pointer:
3657 llvm::cast<clang::PointerType>(qual_type)->getPointeeType();
3660 case clang::Type::LValueReference:
3661 case clang::Type::RValueReference:
3663 llvm::cast<clang::ReferenceType>(qual_type)->getPointeeType();
3673 switch (pointee_qual_type.getCanonicalType()->getTypeClass()) {
3674 case clang::Type::Builtin:
3675 switch (llvm::cast<clang::BuiltinType>(pointee_qual_type)->getKind()) {
3676 case clang::BuiltinType::UnknownAny:
3677 case clang::BuiltinType::Void:
3678 set_dynamic_pointee_type(pointee_qual_type);
3684 case clang::Type::Record: {
3685 if (!check_cplusplus)
3687 clang::CXXRecordDecl *cxx_record_decl =
3688 pointee_qual_type->getAsCXXRecordDecl();
3689 if (!cxx_record_decl)
3693 if (cxx_record_decl->isCompleteDefinition())
3694 success = cxx_record_decl->isDynamicClass();
3696 std::optional<ClangASTMetadata> metadata =
GetMetadata(cxx_record_decl);
3697 std::optional<bool> is_dynamic =
3698 metadata ? metadata->GetIsDynamicCXXType() : std::nullopt;
3700 success = *is_dynamic;
3702 success = cxx_record_decl->isDynamicClass();
3708 set_dynamic_pointee_type(pointee_qual_type);
3712 case clang::Type::ObjCObject:
3713 case clang::Type::ObjCInterface:
3715 set_dynamic_pointee_type(pointee_qual_type);
3730 return (
GetTypeInfo(type,
nullptr) & eTypeIsScalar) != 0;
3737 ->getTypeClass() == clang::Type::Typedef;
3754 if (
auto *record_decl =
3756 return record_decl->canPassInRegisters();
3762 return TypeSystemClangSupportsLanguage(language);
3765std::optional<std::string>
3768 return std::nullopt;
3771 if (qual_type.isNull())
3772 return std::nullopt;
3774 clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
3775 if (!cxx_record_decl)
3776 return std::nullopt;
3778 return std::string(cxx_record_decl->getIdentifier()->getNameStart());
3786 return !qual_type.isNull() && qual_type->getAsCXXRecordDecl() !=
nullptr;
3793 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(qual_type);
3795 return tag_type->getDecl()->isEntityBeingDefined();
3806 if (!qual_type.isNull() && qual_type->isObjCObjectPointerType()) {
3807 if (class_type_ptr) {
3808 if (!qual_type->isObjCClassType() && !qual_type->isObjCIdType()) {
3809 const clang::ObjCObjectPointerType *obj_pointer_type =
3810 llvm::dyn_cast<clang::ObjCObjectPointerType>(qual_type);
3811 if (obj_pointer_type ==
nullptr)
3812 class_type_ptr->
Clear();
3816 clang::QualType(obj_pointer_type->getInterfaceType(), 0)
3823 class_type_ptr->
Clear();
3850 {clang::Type::Typedef, clang::Type::Atomic});
3853 if (
const auto *typedef_type = qual_type->getAs<clang::TypedefType>()) {
3854 const clang::TypedefNameDecl *typedef_decl = typedef_type->getDecl();
3861 if (
auto *named_decl = qual_type->getAsTagDecl())
3873 clang::PrintingPolicy printing_policy(
getASTContext().getPrintingPolicy());
3874 printing_policy.SuppressTagKeyword =
true;
3875 printing_policy.SuppressScope =
false;
3876 printing_policy.SuppressUnwrittenScope =
true;
3877 printing_policy.SuppressInlineNamespace =
3878 llvm::to_underlying(PrintingPolicy::SuppressInlineNamespaceMode::All);
3879 return ConstString(qual_type.getAsString(printing_policy));
3888 if (pointee_or_element_clang_type)
3889 pointee_or_element_clang_type->
Clear();
3891 clang::QualType qual_type =
3894 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3895 switch (type_class) {
3896 case clang::Type::Attributed:
3897 return GetTypeInfo(qual_type->castAs<clang::AttributedType>()
3900 pointee_or_element_clang_type);
3901 case clang::Type::BitInt: {
3902 uint32_t type_flags = eTypeIsScalar | eTypeIsInteger | eTypeHasValue;
3903 if (qual_type->isSignedIntegerType())
3904 type_flags |= eTypeIsSigned;
3908 case clang::Type::Builtin: {
3909 const clang::BuiltinType *builtin_type =
3910 llvm::cast<clang::BuiltinType>(qual_type->getCanonicalTypeInternal());
3912 uint32_t builtin_type_flags = eTypeIsBuiltIn | eTypeHasValue;
3913 switch (builtin_type->getKind()) {
3914 case clang::BuiltinType::ObjCId:
3915 case clang::BuiltinType::ObjCClass:
3916 if (pointee_or_element_clang_type)
3920 builtin_type_flags |= eTypeIsPointer | eTypeIsObjC;
3923 case clang::BuiltinType::ObjCSel:
3924 if (pointee_or_element_clang_type)
3927 builtin_type_flags |= eTypeIsPointer | eTypeIsObjC;
3930 case clang::BuiltinType::Bool:
3931 case clang::BuiltinType::Char_U:
3932 case clang::BuiltinType::UChar:
3933 case clang::BuiltinType::WChar_U:
3934 case clang::BuiltinType::Char16:
3935 case clang::BuiltinType::Char32:
3936 case clang::BuiltinType::UShort:
3937 case clang::BuiltinType::UInt:
3938 case clang::BuiltinType::ULong:
3939 case clang::BuiltinType::ULongLong:
3940 case clang::BuiltinType::UInt128:
3941 case clang::BuiltinType::Char_S:
3942 case clang::BuiltinType::SChar:
3943 case clang::BuiltinType::WChar_S:
3944 case clang::BuiltinType::Short:
3945 case clang::BuiltinType::Int:
3946 case clang::BuiltinType::Long:
3947 case clang::BuiltinType::LongLong:
3948 case clang::BuiltinType::Int128:
3949 case clang::BuiltinType::Float:
3950 case clang::BuiltinType::Double:
3951 case clang::BuiltinType::LongDouble:
3952 builtin_type_flags |= eTypeIsScalar;
3953 if (builtin_type->isInteger()) {
3954 builtin_type_flags |= eTypeIsInteger;
3955 if (builtin_type->isSignedInteger())
3956 builtin_type_flags |= eTypeIsSigned;
3957 }
else if (builtin_type->isFloatingPoint())
3958 builtin_type_flags |= eTypeIsFloat;
3963 return builtin_type_flags;
3966 case clang::Type::BlockPointer:
3967 if (pointee_or_element_clang_type)
3969 weak_from_this(), qual_type->getPointeeType().getAsOpaquePtr());
3970 return eTypeIsPointer | eTypeHasChildren | eTypeIsBlock;
3972 case clang::Type::Complex: {
3973 uint32_t complex_type_flags =
3974 eTypeIsBuiltIn | eTypeHasValue | eTypeIsComplex;
3975 const clang::ComplexType *complex_type = llvm::dyn_cast<clang::ComplexType>(
3976 qual_type->getCanonicalTypeInternal());
3978 clang::QualType complex_element_type(complex_type->getElementType());
3979 if (complex_element_type->isIntegerType())
3980 complex_type_flags |= eTypeIsInteger;
3981 else if (complex_element_type->isFloatingType())
3982 complex_type_flags |= eTypeIsFloat;
3984 return complex_type_flags;
3987 case clang::Type::ConstantArray:
3988 case clang::Type::DependentSizedArray:
3989 case clang::Type::IncompleteArray:
3990 case clang::Type::VariableArray:
3991 if (pointee_or_element_clang_type)
3993 weak_from_this(), llvm::cast<clang::ArrayType>(qual_type.getTypePtr())
3996 return eTypeHasChildren | eTypeIsArray;
3998 case clang::Type::DependentName:
4000 case clang::Type::DependentSizedExtVector:
4001 return eTypeHasChildren | eTypeIsVector;
4003 case clang::Type::Enum:
4004 if (pointee_or_element_clang_type)
4006 weak_from_this(), llvm::cast<clang::EnumType>(qual_type)
4008 ->getDefinitionOrSelf()
4011 return eTypeIsEnumeration | eTypeHasValue;
4013 case clang::Type::FunctionProto:
4014 return eTypeIsFuncPrototype | eTypeHasValue;
4015 case clang::Type::FunctionNoProto:
4016 return eTypeIsFuncPrototype | eTypeHasValue;
4017 case clang::Type::InjectedClassName:
4020 case clang::Type::LValueReference:
4021 case clang::Type::RValueReference:
4022 if (pointee_or_element_clang_type)
4025 llvm::cast<clang::ReferenceType>(qual_type.getTypePtr())
4028 return eTypeHasChildren | eTypeIsReference | eTypeHasValue;
4030 case clang::Type::MemberPointer:
4031 return eTypeIsPointer | eTypeIsMember | eTypeHasValue;
4033 case clang::Type::ObjCObjectPointer:
4034 if (pointee_or_element_clang_type)
4036 weak_from_this(), qual_type->getPointeeType().getAsOpaquePtr());
4037 return eTypeHasChildren | eTypeIsObjC | eTypeIsClass | eTypeIsPointer |
4040 case clang::Type::ObjCObject:
4041 return eTypeHasChildren | eTypeIsObjC | eTypeIsClass;
4042 case clang::Type::ObjCInterface:
4043 return eTypeHasChildren | eTypeIsObjC | eTypeIsClass;
4045 case clang::Type::Pointer:
4046 if (pointee_or_element_clang_type)
4048 weak_from_this(), qual_type->getPointeeType().getAsOpaquePtr());
4049 return eTypeHasChildren | eTypeIsPointer | eTypeHasValue;
4051 case clang::Type::Record:
4052 if (qual_type->getAsCXXRecordDecl())
4053 return eTypeHasChildren | eTypeIsClass | eTypeIsCPlusPlus;
4055 return eTypeHasChildren | eTypeIsStructUnion;
4057 case clang::Type::SubstTemplateTypeParm:
4058 return eTypeIsTemplate;
4059 case clang::Type::TemplateTypeParm:
4060 return eTypeIsTemplate;
4061 case clang::Type::TemplateSpecialization:
4062 return eTypeIsTemplate;
4064 case clang::Type::Typedef:
4065 return eTypeIsTypedef |
GetType(llvm::cast<clang::TypedefType>(qual_type)
4067 ->getUnderlyingType())
4069 case clang::Type::UnresolvedUsing:
4072 case clang::Type::ExtVector:
4073 case clang::Type::Vector: {
4074 uint32_t vector_type_flags = eTypeHasChildren | eTypeIsVector;
4075 const clang::VectorType *vector_type = llvm::dyn_cast<clang::VectorType>(
4076 qual_type->getCanonicalTypeInternal());
4080 QualType element_type = vector_type->getElementType();
4081 if (element_type.isNull())
4084 if (element_type->isIntegerType())
4085 vector_type_flags |= eTypeIsInteger;
4086 else if (element_type->isFloatingType())
4087 vector_type_flags |= eTypeIsFloat;
4088 return vector_type_flags;
4103 if (qual_type->isAnyPointerType()) {
4104 if (qual_type->isObjCObjectPointerType())
4106 if (qual_type->getPointeeCXXRecordDecl())
4109 clang::QualType pointee_type(qual_type->getPointeeType());
4110 if (pointee_type->getPointeeCXXRecordDecl())
4112 if (pointee_type->isObjCObjectOrInterfaceType())
4114 if (pointee_type->isObjCClassType())
4116 if (pointee_type.getTypePtr() ==
4120 if (qual_type->isObjCObjectOrInterfaceType())
4122 if (qual_type->getAsCXXRecordDecl())
4124 switch (qual_type->getTypeClass()) {
4127 case clang::Type::Builtin:
4128 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
4130 case clang::BuiltinType::Void:
4131 case clang::BuiltinType::Bool:
4132 case clang::BuiltinType::Char_U:
4133 case clang::BuiltinType::UChar:
4134 case clang::BuiltinType::WChar_U:
4135 case clang::BuiltinType::Char16:
4136 case clang::BuiltinType::Char32:
4137 case clang::BuiltinType::UShort:
4138 case clang::BuiltinType::UInt:
4139 case clang::BuiltinType::ULong:
4140 case clang::BuiltinType::ULongLong:
4141 case clang::BuiltinType::UInt128:
4142 case clang::BuiltinType::Char_S:
4143 case clang::BuiltinType::SChar:
4144 case clang::BuiltinType::WChar_S:
4145 case clang::BuiltinType::Short:
4146 case clang::BuiltinType::Int:
4147 case clang::BuiltinType::Long:
4148 case clang::BuiltinType::LongLong:
4149 case clang::BuiltinType::Int128:
4150 case clang::BuiltinType::Float:
4151 case clang::BuiltinType::Double:
4152 case clang::BuiltinType::LongDouble:
4155 case clang::BuiltinType::NullPtr:
4158 case clang::BuiltinType::ObjCId:
4159 case clang::BuiltinType::ObjCClass:
4160 case clang::BuiltinType::ObjCSel:
4163 case clang::BuiltinType::Dependent:
4164 case clang::BuiltinType::Overload:
4165 case clang::BuiltinType::BoundMember:
4166 case clang::BuiltinType::UnknownAny:
4170 case clang::Type::Typedef:
4171 return GetType(llvm::cast<clang::TypedefType>(qual_type)
4173 ->getUnderlyingType())
4183 return lldb::eTypeClassInvalid;
4185 clang::QualType qual_type =
4188 switch (qual_type->getTypeClass()) {
4189 case clang::Type::Atomic:
4190 case clang::Type::Auto:
4191 case clang::Type::CountAttributed:
4192 case clang::Type::Decltype:
4193 case clang::Type::Paren:
4194 case clang::Type::TypeOf:
4195 case clang::Type::TypeOfExpr:
4196 case clang::Type::Using:
4197 case clang::Type::PredefinedSugar:
4198 llvm_unreachable(
"Handled in RemoveWrappingTypes!");
4199 case clang::Type::LateParsedAttr:
4200 llvm_unreachable(
"LateParsedAttrType is a transient parsing placeholder "
4201 "that is resolved before the AST is finalized.");
4202 case clang::Type::UnaryTransform:
4204 case clang::Type::FunctionNoProto:
4205 return lldb::eTypeClassFunction;
4206 case clang::Type::FunctionProto:
4207 return lldb::eTypeClassFunction;
4208 case clang::Type::IncompleteArray:
4209 return lldb::eTypeClassArray;
4210 case clang::Type::VariableArray:
4211 return lldb::eTypeClassArray;
4212 case clang::Type::ConstantArray:
4213 return lldb::eTypeClassArray;
4214 case clang::Type::DependentSizedArray:
4215 return lldb::eTypeClassArray;
4216 case clang::Type::ArrayParameter:
4217 return lldb::eTypeClassArray;
4218 case clang::Type::DependentSizedExtVector:
4219 return lldb::eTypeClassVector;
4220 case clang::Type::DependentVector:
4221 return lldb::eTypeClassVector;
4222 case clang::Type::ExtVector:
4223 return lldb::eTypeClassVector;
4224 case clang::Type::Vector:
4225 return lldb::eTypeClassVector;
4226 case clang::Type::Builtin:
4228 case clang::Type::BitInt:
4229 case clang::Type::DependentBitInt:
4230 case clang::Type::OverflowBehavior:
4231 return lldb::eTypeClassBuiltin;
4232 case clang::Type::ObjCObjectPointer:
4233 return lldb::eTypeClassObjCObjectPointer;
4234 case clang::Type::BlockPointer:
4235 return lldb::eTypeClassBlockPointer;
4236 case clang::Type::Pointer:
4237 return lldb::eTypeClassPointer;
4238 case clang::Type::LValueReference:
4239 return lldb::eTypeClassReference;
4240 case clang::Type::RValueReference:
4241 return lldb::eTypeClassReference;
4242 case clang::Type::MemberPointer:
4243 return lldb::eTypeClassMemberPointer;
4244 case clang::Type::Complex:
4245 if (qual_type->isComplexType())
4246 return lldb::eTypeClassComplexFloat;
4248 return lldb::eTypeClassComplexInteger;
4249 case clang::Type::ObjCObject:
4250 return lldb::eTypeClassObjCObject;
4251 case clang::Type::ObjCInterface:
4252 return lldb::eTypeClassObjCInterface;
4253 case clang::Type::Record: {
4254 const clang::RecordType *record_type =
4255 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
4256 const clang::RecordDecl *record_decl = record_type->getDecl();
4257 if (record_decl->isUnion())
4258 return lldb::eTypeClassUnion;
4259 else if (record_decl->isStruct())
4260 return lldb::eTypeClassStruct;
4262 return lldb::eTypeClassClass;
4264 case clang::Type::Enum:
4265 return lldb::eTypeClassEnumeration;
4266 case clang::Type::Typedef:
4267 return lldb::eTypeClassTypedef;
4268 case clang::Type::UnresolvedUsing:
4271 case clang::Type::Attributed:
4272 case clang::Type::BTFTagAttributed:
4274 case clang::Type::TemplateTypeParm:
4276 case clang::Type::SubstTemplateTypeParm:
4278 case clang::Type::SubstTemplateTypeParmPack:
4280 case clang::Type::InjectedClassName:
4282 case clang::Type::DependentName:
4284 case clang::Type::PackExpansion:
4287 case clang::Type::TemplateSpecialization:
4289 case clang::Type::DeducedTemplateSpecialization:
4291 case clang::Type::Pipe:
4295 case clang::Type::Decayed:
4297 case clang::Type::Adjusted:
4299 case clang::Type::ObjCTypeParam:
4302 case clang::Type::DependentAddressSpace:
4304 case clang::Type::MacroQualified:
4308 case clang::Type::ConstantMatrix:
4309 case clang::Type::DependentSizedMatrix:
4313 case clang::Type::PackIndexing:
4316 case clang::Type::HLSLAttributedResource:
4318 case clang::Type::HLSLInlineSpirv:
4320 case clang::Type::SubstBuiltinTemplatePack:
4324 return lldb::eTypeClassOther;
4329 return GetQualType(type).getQualifiers().getCVRQualifiers();
4341 const clang::Type *array_eletype =
4342 qual_type.getTypePtr()->getArrayElementTypeNoTypeQual();
4347 return GetType(clang::QualType(array_eletype, 0));
4358 return GetType(ast_ctx.getConstantArrayType(
4359 qual_type, llvm::APInt(64, size),
nullptr,
4360 clang::ArraySizeModifier::Normal, 0));
4362 return GetType(ast_ctx.getIncompleteArrayType(
4363 qual_type, clang::ArraySizeModifier::Normal, 0));
4377 clang::QualType qual_type) {
4378 if (qual_type->isPointerType())
4379 qual_type = ast->getPointerType(
4381 else if (
const ConstantArrayType *arr =
4382 ast->getAsConstantArrayType(qual_type)) {
4383 qual_type = ast->getConstantArrayType(
4385 arr->getSize(), arr->getSizeExpr(), arr->getSizeModifier(),
4386 arr->getIndexTypeQualifiers().getAsOpaqueValue());
4388 qual_type = qual_type.getUnqualifiedType();
4389 qual_type.removeLocalConst();
4390 qual_type.removeLocalRestrict();
4391 qual_type.removeLocalVolatile();
4413 const clang::FunctionProtoType *func =
4416 return func->getNumParams();
4424 const clang::FunctionProtoType *func =
4425 llvm::dyn_cast<clang::FunctionProtoType>(
GetQualType(type));
4427 const uint32_t num_args = func->getNumParams();
4429 return GetType(func->getParamType(idx));
4439 const clang::FunctionProtoType *func =
4440 llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
4442 return GetType(func->getReturnType());
4449 size_t num_functions = 0;
4452 switch (qual_type->getTypeClass()) {
4453 case clang::Type::Record:
4455 if (
const auto *cxx_record_decl = qual_type->getAsCXXRecordDecl())
4456 num_functions = std::distance(cxx_record_decl->method_begin(),
4457 cxx_record_decl->method_end());
4460 case clang::Type::ObjCObjectPointer: {
4461 const clang::ObjCObjectPointerType *objc_class_type =
4462 qual_type->castAs<clang::ObjCObjectPointerType>();
4463 const clang::ObjCInterfaceType *objc_interface_type =
4464 objc_class_type->getInterfaceType();
4465 if (objc_interface_type &&
4467 const_cast<clang::ObjCInterfaceType *
>(objc_interface_type)))) {
4468 clang::ObjCInterfaceDecl *class_interface_decl =
4469 objc_interface_type->getDecl();
4470 if (class_interface_decl) {
4471 num_functions = std::distance(class_interface_decl->meth_begin(),
4472 class_interface_decl->meth_end());
4478 case clang::Type::ObjCObject:
4479 case clang::Type::ObjCInterface:
4481 const clang::ObjCObjectType *objc_class_type =
4482 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
4483 if (objc_class_type) {
4484 clang::ObjCInterfaceDecl *class_interface_decl =
4485 objc_class_type->getInterface();
4486 if (class_interface_decl)
4487 num_functions = std::distance(class_interface_decl->meth_begin(),
4488 class_interface_decl->meth_end());
4497 return num_functions;
4509 switch (qual_type->getTypeClass()) {
4510 case clang::Type::Record:
4512 if (
const auto *cxx_record_decl = qual_type->getAsCXXRecordDecl()) {
4513 auto method_iter = cxx_record_decl->method_begin();
4514 auto method_end = cxx_record_decl->method_end();
4516 static_cast<size_t>(std::distance(method_iter, method_end))) {
4517 std::advance(method_iter, idx);
4518 clang::CXXMethodDecl *cxx_method_decl =
4519 method_iter->getCanonicalDecl();
4520 if (cxx_method_decl) {
4521 name = cxx_method_decl->getDeclName().getAsString();
4522 if (cxx_method_decl->isStatic())
4524 else if (llvm::isa<clang::CXXConstructorDecl>(cxx_method_decl))
4526 else if (llvm::isa<clang::CXXDestructorDecl>(cxx_method_decl))
4530 clang_type =
GetType(cxx_method_decl->getType());
4538 case clang::Type::ObjCObjectPointer: {
4539 const clang::ObjCObjectPointerType *objc_class_type =
4540 qual_type->castAs<clang::ObjCObjectPointerType>();
4541 const clang::ObjCInterfaceType *objc_interface_type =
4542 objc_class_type->getInterfaceType();
4543 if (objc_interface_type &&
4545 const_cast<clang::ObjCInterfaceType *
>(objc_interface_type)))) {
4546 clang::ObjCInterfaceDecl *class_interface_decl =
4547 objc_interface_type->getDecl();
4548 if (class_interface_decl) {
4549 auto method_iter = class_interface_decl->meth_begin();
4550 auto method_end = class_interface_decl->meth_end();
4552 static_cast<size_t>(std::distance(method_iter, method_end))) {
4553 std::advance(method_iter, idx);
4554 clang::ObjCMethodDecl *objc_method_decl =
4555 method_iter->getCanonicalDecl();
4556 if (objc_method_decl) {
4558 name = objc_method_decl->getSelector().getAsString();
4559 if (objc_method_decl->isClassMethod())
4570 case clang::Type::ObjCObject:
4571 case clang::Type::ObjCInterface:
4573 const clang::ObjCObjectType *objc_class_type =
4574 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
4575 if (objc_class_type) {
4576 clang::ObjCInterfaceDecl *class_interface_decl =
4577 objc_class_type->getInterface();
4578 if (class_interface_decl) {
4579 auto method_iter = class_interface_decl->meth_begin();
4580 auto method_end = class_interface_decl->meth_end();
4582 static_cast<size_t>(std::distance(method_iter, method_end))) {
4583 std::advance(method_iter, idx);
4584 clang::ObjCMethodDecl *objc_method_decl =
4585 method_iter->getCanonicalDecl();
4586 if (objc_method_decl) {
4588 name = objc_method_decl->getSelector().getAsString();
4589 if (objc_method_decl->isClassMethod())
4622 return GetType(qual_type.getTypePtr()->getPointeeType());
4632 switch (qual_type.getDesugaredType(
getASTContext())->getTypeClass()) {
4633 case clang::Type::ObjCObject:
4634 case clang::Type::ObjCInterface:
4681 auto pauth = PointerAuthQualifier::fromOpaqueValue(payload);
4682 clang::QualType result =
4683 clang_ast.getPointerAuthType(
GetQualType(type), pauth);
4693 result.addVolatile();
4703 result.addRestrict();
4712 if (type && typedef_name && typedef_name[0]) {
4716 clang::DeclContext *decl_ctx =
4721 clang::TypedefDecl *decl =
4722 clang::TypedefDecl::CreateDeserialized(clang_ast, GlobalDeclID());
4723 decl->setDeclContext(decl_ctx);
4724 decl->setDeclName(&clang_ast.Idents.get(typedef_name));
4725 decl->setTypeSourceInfo(clang_ast.getTrivialTypeSourceInfo(qual_type));
4726 decl_ctx->addDecl(decl);
4729 clang::TagDecl *tdecl =
nullptr;
4730 if (!qual_type.isNull()) {
4731 if (
const clang::RecordType *rt = qual_type->getAs<clang::RecordType>())
4732 tdecl = rt->getDecl();
4733 if (
const clang::EnumType *et = qual_type->getAs<clang::EnumType>())
4734 tdecl = et->getDecl();
4740 if (tdecl && !tdecl->getIdentifier() && !tdecl->getTypedefNameForAnonDecl())
4741 tdecl->setTypedefNameForAnonDecl(decl);
4743 decl->setAccess(clang::AS_public);
4746 NestedNameSpecifier Qualifier =
4747 clang::TypeName::getFullyQualifiedDeclaredContext(clang_ast, decl);
4749 clang_ast.getTypedefType(ElaboratedTypeKeyword::None, Qualifier, decl));
4757 const clang::TypedefType *typedef_type = llvm::dyn_cast<clang::TypedefType>(
4760 return GetType(typedef_type->getDecl()->getUnderlyingType());
4773 const FunctionType::ExtInfo generic_ext_info(
4782 QualType func_type = ast.getFunctionNoProtoType(ast.VoidTy, generic_ext_info);
4787const llvm::fltSemantics &
4790 const size_t bit_size = byte_size * 8;
4791 if (bit_size == ast.getTypeSize(ast.FloatTy))
4792 return ast.getFloatTypeSemantics(ast.FloatTy);
4793 else if (bit_size == ast.getTypeSize(ast.DoubleTy))
4794 return ast.getFloatTypeSemantics(ast.DoubleTy);
4796 bit_size == ast.getTypeSize(ast.Float128Ty))
4797 return ast.getFloatTypeSemantics(ast.Float128Ty);
4798 else if (bit_size == ast.getTypeSize(ast.LongDoubleTy) ||
4799 bit_size == llvm::APFloat::semanticsSizeInBits(
4800 ast.getFloatTypeSemantics(ast.LongDoubleTy)))
4801 return ast.getFloatTypeSemantics(ast.LongDoubleTy);
4802 else if (bit_size == ast.getTypeSize(ast.HalfTy))
4803 return ast.getFloatTypeSemantics(ast.HalfTy);
4804 else if (bit_size == ast.getTypeSize(ast.Float128Ty))
4805 return ast.getFloatTypeSemantics(ast.Float128Ty);
4806 return llvm::APFloatBase::Bogus();
4809llvm::Expected<uint64_t>
4812 assert(qual_type->isObjCObjectOrInterfaceType());
4817 if (std::optional<uint64_t> bit_size =
4818 objc_runtime->GetTypeBitSize(
GetType(qual_type)))
4822 static bool g_printed =
false;
4827 llvm::outs() <<
"warning: trying to determine the size of type ";
4829 llvm::outs() <<
"without a valid ExecutionContext. this is not "
4830 "reliable. please file a bug against LLDB.\n";
4831 llvm::outs() <<
"backtrace:\n";
4832 llvm::sys::PrintStackTrace(llvm::outs());
4833 llvm::outs() <<
"\n";
4842llvm::Expected<uint64_t>
4845 const bool base_name_only =
true;
4847 return llvm::createStringError(
4848 "could not complete type %s",
4852 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
4853 switch (type_class) {
4854 case clang::Type::ConstantArray:
4855 case clang::Type::FunctionProto:
4856 case clang::Type::Record:
4858 case clang::Type::ObjCInterface:
4859 case clang::Type::ObjCObject:
4861 case clang::Type::IncompleteArray: {
4862 const uint64_t bit_size =
getASTContext().getTypeSize(qual_type);
4865 qual_type->getArrayElementTypeNoTypeQual()
4866 ->getCanonicalTypeUnqualified());
4871 if (
const uint64_t bit_size =
getASTContext().getTypeSize(qual_type))
4875 return llvm::createStringError(
4876 "could not get size of type %s",
4880std::optional<size_t>
4894 switch (qual_type->getTypeClass()) {
4895 case clang::Type::Atomic:
4896 case clang::Type::Auto:
4897 case clang::Type::CountAttributed:
4898 case clang::Type::Decltype:
4899 case clang::Type::Paren:
4900 case clang::Type::Typedef:
4901 case clang::Type::TypeOf:
4902 case clang::Type::TypeOfExpr:
4903 case clang::Type::Using:
4904 case clang::Type::PredefinedSugar:
4905 llvm_unreachable(
"Handled in RemoveWrappingTypes!");
4906 case clang::Type::LateParsedAttr:
4907 llvm_unreachable(
"LateParsedAttrType is a transient parsing placeholder "
4908 "that is resolved before the AST is finalized.");
4910 case clang::Type::UnaryTransform:
4913 case clang::Type::FunctionNoProto:
4914 case clang::Type::FunctionProto:
4917 case clang::Type::IncompleteArray:
4918 case clang::Type::VariableArray:
4919 case clang::Type::ArrayParameter:
4922 case clang::Type::ConstantArray:
4925 case clang::Type::DependentVector:
4926 case clang::Type::ExtVector:
4927 case clang::Type::Vector:
4930 case clang::Type::BitInt:
4931 case clang::Type::DependentBitInt:
4932 case clang::Type::OverflowBehavior:
4936 case clang::Type::Builtin:
4937 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
4938 case clang::BuiltinType::Void:
4941 case clang::BuiltinType::Char_S:
4942 case clang::BuiltinType::SChar:
4943 case clang::BuiltinType::WChar_S:
4944 case clang::BuiltinType::Short:
4945 case clang::BuiltinType::Int:
4946 case clang::BuiltinType::Long:
4947 case clang::BuiltinType::LongLong:
4948 case clang::BuiltinType::Int128:
4951 case clang::BuiltinType::Bool:
4952 case clang::BuiltinType::Char_U:
4953 case clang::BuiltinType::UChar:
4954 case clang::BuiltinType::WChar_U:
4955 case clang::BuiltinType::Char8:
4956 case clang::BuiltinType::Char16:
4957 case clang::BuiltinType::Char32:
4958 case clang::BuiltinType::UShort:
4959 case clang::BuiltinType::UInt:
4960 case clang::BuiltinType::ULong:
4961 case clang::BuiltinType::ULongLong:
4962 case clang::BuiltinType::UInt128:
4966 case clang::BuiltinType::ShortAccum:
4967 case clang::BuiltinType::Accum:
4968 case clang::BuiltinType::LongAccum:
4969 case clang::BuiltinType::UShortAccum:
4970 case clang::BuiltinType::UAccum:
4971 case clang::BuiltinType::ULongAccum:
4972 case clang::BuiltinType::ShortFract:
4973 case clang::BuiltinType::Fract:
4974 case clang::BuiltinType::LongFract:
4975 case clang::BuiltinType::UShortFract:
4976 case clang::BuiltinType::UFract:
4977 case clang::BuiltinType::ULongFract:
4978 case clang::BuiltinType::SatShortAccum:
4979 case clang::BuiltinType::SatAccum:
4980 case clang::BuiltinType::SatLongAccum:
4981 case clang::BuiltinType::SatUShortAccum:
4982 case clang::BuiltinType::SatUAccum:
4983 case clang::BuiltinType::SatULongAccum:
4984 case clang::BuiltinType::SatShortFract:
4985 case clang::BuiltinType::SatFract:
4986 case clang::BuiltinType::SatLongFract:
4987 case clang::BuiltinType::SatUShortFract:
4988 case clang::BuiltinType::SatUFract:
4989 case clang::BuiltinType::SatULongFract:
4992 case clang::BuiltinType::Half:
4993 case clang::BuiltinType::Float:
4994 case clang::BuiltinType::Float16:
4995 case clang::BuiltinType::Float128:
4996 case clang::BuiltinType::Double:
4997 case clang::BuiltinType::LongDouble:
4998 case clang::BuiltinType::BFloat16:
4999 case clang::BuiltinType::Ibm128:
5002 case clang::BuiltinType::ObjCClass:
5003 case clang::BuiltinType::ObjCId:
5004 case clang::BuiltinType::ObjCSel:
5007 case clang::BuiltinType::NullPtr:
5010 case clang::BuiltinType::MetaInfo:
5012#define HLSL_PACKED_TYPE(Name, Id, SingletonId) case clang::BuiltinType::Id:
5013#include "clang/Basic/HLSLPackedTypes.def"
5016 case clang::BuiltinType::Kind::ARCUnbridgedCast:
5017 case clang::BuiltinType::Kind::BoundMember:
5018 case clang::BuiltinType::Kind::BuiltinFn:
5019 case clang::BuiltinType::Kind::Dependent:
5020 case clang::BuiltinType::Kind::OCLClkEvent:
5021 case clang::BuiltinType::Kind::OCLEvent:
5022 case clang::BuiltinType::Kind::OCLImage1dRO:
5023 case clang::BuiltinType::Kind::OCLImage1dWO:
5024 case clang::BuiltinType::Kind::OCLImage1dRW:
5025 case clang::BuiltinType::Kind::OCLImage1dArrayRO:
5026 case clang::BuiltinType::Kind::OCLImage1dArrayWO:
5027 case clang::BuiltinType::Kind::OCLImage1dArrayRW:
5028 case clang::BuiltinType::Kind::OCLImage1dBufferRO:
5029 case clang::BuiltinType::Kind::OCLImage1dBufferWO:
5030 case clang::BuiltinType::Kind::OCLImage1dBufferRW:
5031 case clang::BuiltinType::Kind::OCLImage2dRO:
5032 case clang::BuiltinType::Kind::OCLImage2dWO:
5033 case clang::BuiltinType::Kind::OCLImage2dRW:
5034 case clang::BuiltinType::Kind::OCLImage2dArrayRO:
5035 case clang::BuiltinType::Kind::OCLImage2dArrayWO:
5036 case clang::BuiltinType::Kind::OCLImage2dArrayRW:
5037 case clang::BuiltinType::Kind::OCLImage2dArrayDepthRO:
5038 case clang::BuiltinType::Kind::OCLImage2dArrayDepthWO:
5039 case clang::BuiltinType::Kind::OCLImage2dArrayDepthRW:
5040 case clang::BuiltinType::Kind::OCLImage2dArrayMSAARO:
5041 case clang::BuiltinType::Kind::OCLImage2dArrayMSAAWO:
5042 case clang::BuiltinType::Kind::OCLImage2dArrayMSAARW:
5043 case clang::BuiltinType::Kind::OCLImage2dArrayMSAADepthRO:
5044 case clang::BuiltinType::Kind::OCLImage2dArrayMSAADepthWO:
5045 case clang::BuiltinType::Kind::OCLImage2dArrayMSAADepthRW:
5046 case clang::BuiltinType::Kind::OCLImage2dDepthRO:
5047 case clang::BuiltinType::Kind::OCLImage2dDepthWO:
5048 case clang::BuiltinType::Kind::OCLImage2dDepthRW:
5049 case clang::BuiltinType::Kind::OCLImage2dMSAARO:
5050 case clang::BuiltinType::Kind::OCLImage2dMSAAWO:
5051 case clang::BuiltinType::Kind::OCLImage2dMSAARW:
5052 case clang::BuiltinType::Kind::OCLImage2dMSAADepthRO:
5053 case clang::BuiltinType::Kind::OCLImage2dMSAADepthWO:
5054 case clang::BuiltinType::Kind::OCLImage2dMSAADepthRW:
5055 case clang::BuiltinType::Kind::OCLImage3dRO:
5056 case clang::BuiltinType::Kind::OCLImage3dWO:
5057 case clang::BuiltinType::Kind::OCLImage3dRW:
5058 case clang::BuiltinType::Kind::OCLQueue:
5059 case clang::BuiltinType::Kind::OCLReserveID:
5060 case clang::BuiltinType::Kind::OCLSampler:
5061 case clang::BuiltinType::Kind::HLSLResource:
5062 case clang::BuiltinType::Kind::ArraySection:
5063 case clang::BuiltinType::Kind::OMPArrayShaping:
5064 case clang::BuiltinType::Kind::OMPIterator:
5065 case clang::BuiltinType::Kind::Overload:
5066 case clang::BuiltinType::Kind::PseudoObject:
5067 case clang::BuiltinType::Kind::UnknownAny:
5070 case clang::BuiltinType::OCLIntelSubgroupAVCMcePayload:
5071 case clang::BuiltinType::OCLIntelSubgroupAVCImePayload:
5072 case clang::BuiltinType::OCLIntelSubgroupAVCRefPayload:
5073 case clang::BuiltinType::OCLIntelSubgroupAVCSicPayload:
5074 case clang::BuiltinType::OCLIntelSubgroupAVCMceResult:
5075 case clang::BuiltinType::OCLIntelSubgroupAVCImeResult:
5076 case clang::BuiltinType::OCLIntelSubgroupAVCRefResult:
5077 case clang::BuiltinType::OCLIntelSubgroupAVCSicResult:
5078 case clang::BuiltinType::OCLIntelSubgroupAVCImeResultSingleReferenceStreamout:
5079 case clang::BuiltinType::OCLIntelSubgroupAVCImeResultDualReferenceStreamout:
5080 case clang::BuiltinType::OCLIntelSubgroupAVCImeSingleReferenceStreamin:
5081 case clang::BuiltinType::OCLIntelSubgroupAVCImeDualReferenceStreamin:
5085 case clang::BuiltinType::VectorPair:
5086 case clang::BuiltinType::VectorQuad:
5087 case clang::BuiltinType::DMR1024:
5088 case clang::BuiltinType::DMR2048:
5092#define SVE_TYPE(Name, Id, SingletonId) case clang::BuiltinType::Id:
5093#include "clang/Basic/AArch64ACLETypes.def"
5097#define RVV_TYPE(Name, Id, SingletonId) case clang::BuiltinType::Id:
5098#include "clang/Basic/RISCVVTypes.def"
5102 case clang::BuiltinType::WasmExternRef:
5105 case clang::BuiltinType::IncompleteMatrixIdx:
5108 case clang::BuiltinType::UnresolvedTemplate:
5112#define AMDGPU_TYPE(Name, Id, SingletonId, Width, Align) \
5113 case clang::BuiltinType::Id:
5114#include "clang/Basic/AMDGPUTypes.def"
5118#define SPIRV_TYPE(Name, Id, SingletonId) case clang::BuiltinType::Id:
5119#include "clang/Basic/SPIRVTypes.def"
5125 case clang::Type::ObjCObjectPointer:
5126 case clang::Type::BlockPointer:
5127 case clang::Type::Pointer:
5128 case clang::Type::LValueReference:
5129 case clang::Type::RValueReference:
5130 case clang::Type::MemberPointer:
5132 case clang::Type::Complex: {
5134 if (qual_type->isComplexType())
5137 const clang::ComplexType *complex_type =
5138 qual_type->getAsComplexIntegerType();
5147 case clang::Type::ObjCInterface:
5149 case clang::Type::Record:
5151 case clang::Type::Enum:
5152 return qual_type->isUnsignedIntegerOrEnumerationType()
5155 case clang::Type::DependentSizedArray:
5156 case clang::Type::DependentSizedExtVector:
5157 case clang::Type::UnresolvedUsing:
5158 case clang::Type::Attributed:
5159 case clang::Type::BTFTagAttributed:
5160 case clang::Type::TemplateTypeParm:
5161 case clang::Type::SubstTemplateTypeParm:
5162 case clang::Type::SubstTemplateTypeParmPack:
5163 case clang::Type::InjectedClassName:
5164 case clang::Type::DependentName:
5165 case clang::Type::PackExpansion:
5166 case clang::Type::ObjCObject:
5168 case clang::Type::TemplateSpecialization:
5169 case clang::Type::DeducedTemplateSpecialization:
5170 case clang::Type::Adjusted:
5171 case clang::Type::Pipe:
5175 case clang::Type::Decayed:
5177 case clang::Type::ObjCTypeParam:
5180 case clang::Type::DependentAddressSpace:
5182 case clang::Type::MacroQualified:
5185 case clang::Type::ConstantMatrix:
5186 case clang::Type::DependentSizedMatrix:
5190 case clang::Type::PackIndexing:
5193 case clang::Type::HLSLAttributedResource:
5195 case clang::Type::HLSLInlineSpirv:
5197 case clang::Type::SubstBuiltinTemplatePack:
5210 switch (qual_type->getTypeClass()) {
5211 case clang::Type::Atomic:
5212 case clang::Type::Auto:
5213 case clang::Type::CountAttributed:
5214 case clang::Type::Decltype:
5215 case clang::Type::Paren:
5216 case clang::Type::Typedef:
5217 case clang::Type::TypeOf:
5218 case clang::Type::TypeOfExpr:
5219 case clang::Type::Using:
5220 case clang::Type::PredefinedSugar:
5221 llvm_unreachable(
"Handled in RemoveWrappingTypes!");
5222 case clang::Type::LateParsedAttr:
5223 llvm_unreachable(
"LateParsedAttrType is a transient parsing placeholder "
5224 "that is resolved before the AST is finalized.");
5225 case clang::Type::UnaryTransform:
5228 case clang::Type::FunctionNoProto:
5229 case clang::Type::FunctionProto:
5232 case clang::Type::IncompleteArray:
5233 case clang::Type::VariableArray:
5234 case clang::Type::ArrayParameter:
5237 case clang::Type::ConstantArray:
5240 case clang::Type::DependentVector:
5241 case clang::Type::ExtVector:
5242 case clang::Type::Vector:
5245 case clang::Type::BitInt:
5246 case clang::Type::DependentBitInt:
5247 case clang::Type::OverflowBehavior:
5251 case clang::Type::Builtin:
5252 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
5253 case clang::BuiltinType::UnknownAny:
5254 case clang::BuiltinType::Void:
5255 case clang::BuiltinType::BoundMember:
5258 case clang::BuiltinType::Bool:
5260 case clang::BuiltinType::Char_S:
5261 case clang::BuiltinType::SChar:
5262 case clang::BuiltinType::WChar_S:
5263 case clang::BuiltinType::Char_U:
5264 case clang::BuiltinType::UChar:
5265 case clang::BuiltinType::WChar_U:
5267 case clang::BuiltinType::Char8:
5269 case clang::BuiltinType::Char16:
5271 case clang::BuiltinType::Char32:
5273 case clang::BuiltinType::UShort:
5275 case clang::BuiltinType::Short:
5277 case clang::BuiltinType::UInt:
5279 case clang::BuiltinType::Int:
5281 case clang::BuiltinType::ULong:
5283 case clang::BuiltinType::Long:
5285 case clang::BuiltinType::ULongLong:
5287 case clang::BuiltinType::LongLong:
5289 case clang::BuiltinType::UInt128:
5291 case clang::BuiltinType::Int128:
5293 case clang::BuiltinType::Half:
5294 case clang::BuiltinType::Float:
5295 case clang::BuiltinType::Double:
5296 case clang::BuiltinType::LongDouble:
5298 case clang::BuiltinType::Float128:
5304 case clang::Type::ObjCObjectPointer:
5306 case clang::Type::BlockPointer:
5308 case clang::Type::Pointer:
5310 case clang::Type::LValueReference:
5311 case clang::Type::RValueReference:
5313 case clang::Type::MemberPointer:
5315 case clang::Type::Complex: {
5316 if (qual_type->isComplexType())
5321 case clang::Type::ObjCInterface:
5323 case clang::Type::Record:
5325 case clang::Type::Enum:
5327 case clang::Type::DependentSizedArray:
5328 case clang::Type::DependentSizedExtVector:
5329 case clang::Type::UnresolvedUsing:
5330 case clang::Type::Attributed:
5331 case clang::Type::BTFTagAttributed:
5332 case clang::Type::TemplateTypeParm:
5333 case clang::Type::SubstTemplateTypeParm:
5334 case clang::Type::SubstTemplateTypeParmPack:
5335 case clang::Type::InjectedClassName:
5336 case clang::Type::DependentName:
5337 case clang::Type::PackExpansion:
5338 case clang::Type::ObjCObject:
5340 case clang::Type::TemplateSpecialization:
5341 case clang::Type::DeducedTemplateSpecialization:
5342 case clang::Type::Adjusted:
5343 case clang::Type::Pipe:
5347 case clang::Type::Decayed:
5349 case clang::Type::ObjCTypeParam:
5352 case clang::Type::DependentAddressSpace:
5354 case clang::Type::MacroQualified:
5358 case clang::Type::ConstantMatrix:
5359 case clang::Type::DependentSizedMatrix:
5363 case clang::Type::PackIndexing:
5366 case clang::Type::HLSLAttributedResource:
5368 case clang::Type::HLSLInlineSpirv:
5370 case clang::Type::SubstBuiltinTemplatePack:
5378 while (class_interface_decl) {
5379 if (class_interface_decl->ivar_size() > 0)
5382 class_interface_decl = class_interface_decl->getSuperClass();
5387static std::optional<SymbolFile::ArrayInfo>
5389 clang::QualType qual_type,
5391 if (qual_type->isIncompleteArrayType())
5392 if (std::optional<ClangASTMetadata> metadata =
5396 return std::nullopt;
5399llvm::Expected<uint32_t>
5401 bool omit_empty_base_classes,
5404 return llvm::createStringError(
"invalid clang type");
5406 uint32_t num_children = 0;
5408 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5409 switch (type_class) {
5410 case clang::Type::Builtin:
5411 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
5412 case clang::BuiltinType::ObjCId:
5413 case clang::BuiltinType::ObjCClass:
5422 case clang::Type::Complex:
5424 case clang::Type::Record:
5426 const clang::RecordType *record_type =
5427 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
5428 const clang::RecordDecl *record_decl =
5429 record_type->getDecl()->getDefinitionOrSelf();
5430 const clang::CXXRecordDecl *cxx_record_decl =
5431 llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
5435 num_children += std::distance(record_decl->field_begin(),
5436 record_decl->field_end());
5438 return llvm::createStringError(
5441 case clang::Type::ObjCObject:
5442 case clang::Type::ObjCInterface:
5444 const clang::ObjCObjectType *objc_class_type =
5445 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
5446 assert(objc_class_type);
5447 if (objc_class_type) {
5448 clang::ObjCInterfaceDecl *class_interface_decl =
5449 objc_class_type->getInterface();
5451 if (class_interface_decl) {
5453 clang::ObjCInterfaceDecl *superclass_interface_decl =
5454 class_interface_decl->getSuperClass();
5455 if (superclass_interface_decl) {
5456 if (omit_empty_base_classes) {
5463 num_children += class_interface_decl->ivar_size();
5469 case clang::Type::LValueReference:
5470 case clang::Type::RValueReference:
5471 case clang::Type::ObjCObjectPointer: {
5474 uint32_t num_pointee_children = 0;
5476 auto num_children_or_err =
5477 pointee_clang_type.
GetNumChildren(omit_empty_base_classes, exe_ctx);
5478 if (!num_children_or_err)
5479 return num_children_or_err;
5480 num_pointee_children = *num_children_or_err;
5483 if (num_pointee_children == 0)
5486 num_children = num_pointee_children;
5489 case clang::Type::Vector:
5490 case clang::Type::ExtVector:
5492 llvm::cast<clang::VectorType>(qual_type.getTypePtr())->getNumElements();
5495 case clang::Type::ConstantArray:
5496 num_children = llvm::cast<clang::ConstantArrayType>(qual_type.getTypePtr())
5500 case clang::Type::IncompleteArray:
5501 if (
auto array_info =
5504 num_children = array_info->element_orders.size()
5505 ? array_info->element_orders.back().value_or(0)
5509 case clang::Type::Pointer: {
5510 const clang::PointerType *pointer_type =
5511 llvm::cast<clang::PointerType>(qual_type.getTypePtr());
5512 clang::QualType pointee_type(pointer_type->getPointeeType());
5514 uint32_t num_pointee_children = 0;
5516 auto num_children_or_err =
5517 pointee_clang_type.
GetNumChildren(omit_empty_base_classes, exe_ctx);
5518 if (!num_children_or_err)
5519 return num_children_or_err;
5520 num_pointee_children = *num_children_or_err;
5522 if (num_pointee_children == 0) {
5527 num_children = num_pointee_children;
5533 return num_children;
5540 if (name_ref.consume_front(
"unsigned _BitInt(") ||
5541 name_ref.consume_front(
"_BitInt(")) {
5543 if (name_ref.consumeInteger(10, bit_size))
5546 if (!name_ref.consume_front(
")"))
5550 name.
GetStringRef().starts_with(
"unsigned"), bit_size));
5559 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5560 if (type_class == clang::Type::Builtin) {
5561 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
5562 case clang::BuiltinType::Void:
5564 case clang::BuiltinType::Bool:
5566 case clang::BuiltinType::Char_S:
5568 case clang::BuiltinType::Char_U:
5570 case clang::BuiltinType::Char8:
5572 case clang::BuiltinType::Char16:
5574 case clang::BuiltinType::Char32:
5576 case clang::BuiltinType::UChar:
5578 case clang::BuiltinType::SChar:
5580 case clang::BuiltinType::WChar_S:
5582 case clang::BuiltinType::WChar_U:
5584 case clang::BuiltinType::Short:
5586 case clang::BuiltinType::UShort:
5588 case clang::BuiltinType::Int:
5590 case clang::BuiltinType::UInt:
5592 case clang::BuiltinType::Long:
5594 case clang::BuiltinType::ULong:
5596 case clang::BuiltinType::LongLong:
5598 case clang::BuiltinType::ULongLong:
5600 case clang::BuiltinType::Int128:
5602 case clang::BuiltinType::UInt128:
5605 case clang::BuiltinType::Half:
5607 case clang::BuiltinType::Float:
5609 case clang::BuiltinType::Double:
5611 case clang::BuiltinType::LongDouble:
5613 case clang::BuiltinType::Float128:
5616 case clang::BuiltinType::NullPtr:
5618 case clang::BuiltinType::ObjCId:
5620 case clang::BuiltinType::ObjCClass:
5622 case clang::BuiltinType::ObjCSel:
5636 const llvm::APSInt &value)>
const &callback) {
5637 const clang::EnumType *enum_type =
5640 const clang::EnumDecl *enum_decl =
5641 enum_type->getDecl()->getDefinitionOrSelf();
5645 clang::EnumDecl::enumerator_iterator enum_pos, enum_end_pos;
5646 for (enum_pos = enum_decl->enumerator_begin(),
5647 enum_end_pos = enum_decl->enumerator_end();
5648 enum_pos != enum_end_pos; ++enum_pos) {
5650 if (!callback(integer_type, name, enum_pos->getInitVal()))
5657#pragma mark Aggregate Types
5665 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5666 switch (type_class) {
5667 case clang::Type::Record:
5669 const clang::RecordType *record_type =
5670 llvm::dyn_cast<clang::RecordType>(qual_type.getTypePtr());
5672 clang::RecordDecl *record_decl =
5673 record_type->getDecl()->getDefinition();
5675 count = std::distance(record_decl->field_begin(),
5676 record_decl->field_end());
5682 case clang::Type::ObjCObjectPointer: {
5683 const clang::ObjCObjectPointerType *objc_class_type =
5684 qual_type->castAs<clang::ObjCObjectPointerType>();
5685 const clang::ObjCInterfaceType *objc_interface_type =
5686 objc_class_type->getInterfaceType();
5687 if (objc_interface_type &&
5689 const_cast<clang::ObjCInterfaceType *
>(objc_interface_type)))) {
5690 clang::ObjCInterfaceDecl *class_interface_decl =
5691 objc_interface_type->getDecl();
5692 if (class_interface_decl) {
5693 count = class_interface_decl->ivar_size();
5699 case clang::Type::ObjCObject:
5700 case clang::Type::ObjCInterface:
5702 const clang::ObjCObjectType *objc_class_type =
5703 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
5704 if (objc_class_type) {
5705 clang::ObjCInterfaceDecl *class_interface_decl =
5706 objc_class_type->getInterface();
5708 if (class_interface_decl)
5709 count = class_interface_decl->ivar_size();
5722 clang::ObjCInterfaceDecl *class_interface_decl,
size_t idx,
5723 std::string &name, uint64_t *bit_offset_ptr,
5724 uint32_t *bitfield_bit_size_ptr,
bool *is_bitfield_ptr) {
5725 if (class_interface_decl) {
5726 if (idx < (class_interface_decl->ivar_size())) {
5727 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos,
5728 ivar_end = class_interface_decl->ivar_end();
5729 uint32_t ivar_idx = 0;
5731 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end;
5732 ++ivar_pos, ++ivar_idx) {
5733 if (ivar_idx == idx) {
5734 const clang::ObjCIvarDecl *ivar_decl = *ivar_pos;
5736 clang::QualType ivar_qual_type(ivar_decl->getType());
5738 name.assign(ivar_decl->getNameAsString());
5740 if (bit_offset_ptr) {
5741 const clang::ASTRecordLayout &interface_layout =
5742 ast->getASTObjCInterfaceLayout(class_interface_decl);
5743 *bit_offset_ptr = interface_layout.getFieldOffset(ivar_idx);
5746 const bool is_bitfield = ivar_pos->isBitField();
5748 if (bitfield_bit_size_ptr) {
5749 *bitfield_bit_size_ptr = 0;
5751 if (is_bitfield && ast) {
5752 clang::Expr *bitfield_bit_size_expr = ivar_pos->getBitWidth();
5753 clang::Expr::EvalResult result;
5754 if (bitfield_bit_size_expr &&
5755 bitfield_bit_size_expr->EvaluateAsInt(result, *ast)) {
5756 llvm::APSInt bitfield_apsint = result.Val.getInt();
5757 *bitfield_bit_size_ptr = bitfield_apsint.getLimitedValue();
5761 if (is_bitfield_ptr)
5762 *is_bitfield_ptr = is_bitfield;
5764 return ivar_qual_type.getAsOpaquePtr();
5773 size_t idx, std::string &name,
5774 uint64_t *bit_offset_ptr,
5775 uint32_t *bitfield_bit_size_ptr,
5776 bool *is_bitfield_ptr) {
5781 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5782 switch (type_class) {
5783 case clang::Type::Record:
5785 const clang::RecordType *record_type =
5786 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
5787 const clang::RecordDecl *record_decl =
5788 record_type->getDecl()->getDefinitionOrSelf();
5789 uint32_t field_idx = 0;
5790 clang::RecordDecl::field_iterator field, field_end;
5791 for (field = record_decl->field_begin(),
5792 field_end = record_decl->field_end();
5793 field != field_end; ++field, ++field_idx) {
5794 if (idx == field_idx) {
5797 name.assign(field->getNameAsString());
5801 if (bit_offset_ptr) {
5802 const clang::ASTRecordLayout &record_layout =
5804 *bit_offset_ptr = record_layout.getFieldOffset(field_idx);
5807 const bool is_bitfield = field->isBitField();
5809 if (bitfield_bit_size_ptr) {
5810 *bitfield_bit_size_ptr = 0;
5813 clang::Expr *bitfield_bit_size_expr = field->getBitWidth();
5814 clang::Expr::EvalResult result;
5815 if (bitfield_bit_size_expr &&
5816 bitfield_bit_size_expr->EvaluateAsInt(result,
5818 llvm::APSInt bitfield_apsint = result.Val.getInt();
5819 *bitfield_bit_size_ptr = bitfield_apsint.getLimitedValue();
5823 if (is_bitfield_ptr)
5824 *is_bitfield_ptr = is_bitfield;
5826 return GetType(field->getType());
5832 case clang::Type::ObjCObjectPointer: {
5833 const clang::ObjCObjectPointerType *objc_class_type =
5834 qual_type->castAs<clang::ObjCObjectPointerType>();
5835 const clang::ObjCInterfaceType *objc_interface_type =
5836 objc_class_type->getInterfaceType();
5837 if (objc_interface_type &&
5839 const_cast<clang::ObjCInterfaceType *
>(objc_interface_type)))) {
5840 clang::ObjCInterfaceDecl *class_interface_decl =
5841 objc_interface_type->getDecl();
5842 if (class_interface_decl) {
5846 name, bit_offset_ptr, bitfield_bit_size_ptr,
5853 case clang::Type::ObjCObject:
5854 case clang::Type::ObjCInterface:
5856 const clang::ObjCObjectType *objc_class_type =
5857 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
5858 assert(objc_class_type);
5859 if (objc_class_type) {
5860 clang::ObjCInterfaceDecl *class_interface_decl =
5861 objc_class_type->getInterface();
5865 name, bit_offset_ptr, bitfield_bit_size_ptr,
5881 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5882 switch (type_class) {
5883 case clang::Type::Record:
5885 const clang::CXXRecordDecl *cxx_record_decl =
5886 qual_type->getAsCXXRecordDecl();
5887 if (cxx_record_decl)
5888 count = cxx_record_decl->getNumBases();
5892 case clang::Type::ObjCObjectPointer:
5896 case clang::Type::ObjCObject:
5898 const clang::ObjCObjectType *objc_class_type =
5899 qual_type->getAsObjCQualifiedInterfaceType();
5900 if (objc_class_type) {
5901 clang::ObjCInterfaceDecl *class_interface_decl =
5902 objc_class_type->getInterface();
5904 if (class_interface_decl && class_interface_decl->getSuperClass())
5909 case clang::Type::ObjCInterface:
5911 const clang::ObjCInterfaceType *objc_interface_type =
5912 qual_type->getAs<clang::ObjCInterfaceType>();
5913 if (objc_interface_type) {
5914 clang::ObjCInterfaceDecl *class_interface_decl =
5915 objc_interface_type->getInterface();
5917 if (class_interface_decl && class_interface_decl->getSuperClass())
5933 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5934 switch (type_class) {
5935 case clang::Type::Record:
5937 const clang::CXXRecordDecl *cxx_record_decl =
5938 qual_type->getAsCXXRecordDecl();
5939 if (cxx_record_decl)
5940 count = cxx_record_decl->getNumVBases();
5953 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5954 switch (type_class) {
5955 case clang::Type::Record:
5957 const clang::CXXRecordDecl *cxx_record_decl =
5958 qual_type->getAsCXXRecordDecl();
5959 if (cxx_record_decl) {
5960 uint32_t curr_idx = 0;
5961 clang::CXXRecordDecl::base_class_const_iterator base_class,
5963 for (base_class = cxx_record_decl->bases_begin(),
5964 base_class_end = cxx_record_decl->bases_end();
5965 base_class != base_class_end; ++base_class, ++curr_idx) {
5966 if (curr_idx == idx) {
5967 if (bit_offset_ptr) {
5968 const clang::ASTRecordLayout &record_layout =
5970 const clang::CXXRecordDecl *base_class_decl =
5971 llvm::cast<clang::CXXRecordDecl>(
5972 base_class->getType()
5973 ->castAs<clang::RecordType>()
5975 if (base_class->isVirtual())
5977 record_layout.getVBaseClassOffset(base_class_decl)
5982 record_layout.getBaseClassOffset(base_class_decl)
5986 return GetType(base_class->getType());
5993 case clang::Type::ObjCObjectPointer:
5996 case clang::Type::ObjCObject:
5998 const clang::ObjCObjectType *objc_class_type =
5999 qual_type->getAsObjCQualifiedInterfaceType();
6000 if (objc_class_type) {
6001 clang::ObjCInterfaceDecl *class_interface_decl =
6002 objc_class_type->getInterface();
6004 if (class_interface_decl) {
6005 clang::ObjCInterfaceDecl *superclass_interface_decl =
6006 class_interface_decl->getSuperClass();
6007 if (superclass_interface_decl) {
6009 *bit_offset_ptr = 0;
6011 superclass_interface_decl));
6017 case clang::Type::ObjCInterface:
6019 const clang::ObjCObjectType *objc_interface_type =
6020 qual_type->getAs<clang::ObjCInterfaceType>();
6021 if (objc_interface_type) {
6022 clang::ObjCInterfaceDecl *class_interface_decl =
6023 objc_interface_type->getInterface();
6025 if (class_interface_decl) {
6026 clang::ObjCInterfaceDecl *superclass_interface_decl =
6027 class_interface_decl->getSuperClass();
6028 if (superclass_interface_decl) {
6030 *bit_offset_ptr = 0;
6032 superclass_interface_decl));
6048 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6049 switch (type_class) {
6050 case clang::Type::Record:
6052 const clang::CXXRecordDecl *cxx_record_decl =
6053 qual_type->getAsCXXRecordDecl();
6054 if (cxx_record_decl) {
6055 uint32_t curr_idx = 0;
6056 clang::CXXRecordDecl::base_class_const_iterator base_class,
6058 for (base_class = cxx_record_decl->vbases_begin(),
6059 base_class_end = cxx_record_decl->vbases_end();
6060 base_class != base_class_end; ++base_class, ++curr_idx) {
6061 if (curr_idx == idx) {
6062 if (bit_offset_ptr) {
6063 const clang::ASTRecordLayout &record_layout =
6065 const clang::CXXRecordDecl *base_class_decl =
6066 llvm::cast<clang::CXXRecordDecl>(
6067 base_class->getType()
6068 ->castAs<clang::RecordType>()
6071 record_layout.getVBaseClassOffset(base_class_decl)
6075 return GetType(base_class->getType());
6090 llvm::StringRef name) {
6092 switch (qual_type->getTypeClass()) {
6093 case clang::Type::Record: {
6097 const clang::RecordType *record_type =
6098 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
6099 const clang::RecordDecl *record_decl =
6100 record_type->getDecl()->getDefinitionOrSelf();
6102 clang::DeclarationName decl_name(&
getASTContext().Idents.get(name));
6103 for (NamedDecl *decl : record_decl->lookup(decl_name)) {
6104 auto *var_decl = dyn_cast<clang::VarDecl>(decl);
6105 if (!var_decl || var_decl->getStorageClass() != clang::SC_Static)
6129 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6130 switch (type_class) {
6131 case clang::Type::Builtin:
6132 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind()) {
6133 case clang::BuiltinType::UnknownAny:
6134 case clang::BuiltinType::Void:
6135 case clang::BuiltinType::NullPtr:
6136 case clang::BuiltinType::OCLEvent:
6137 case clang::BuiltinType::OCLImage1dRO:
6138 case clang::BuiltinType::OCLImage1dWO:
6139 case clang::BuiltinType::OCLImage1dRW:
6140 case clang::BuiltinType::OCLImage1dArrayRO:
6141 case clang::BuiltinType::OCLImage1dArrayWO:
6142 case clang::BuiltinType::OCLImage1dArrayRW:
6143 case clang::BuiltinType::OCLImage1dBufferRO:
6144 case clang::BuiltinType::OCLImage1dBufferWO:
6145 case clang::BuiltinType::OCLImage1dBufferRW:
6146 case clang::BuiltinType::OCLImage2dRO:
6147 case clang::BuiltinType::OCLImage2dWO:
6148 case clang::BuiltinType::OCLImage2dRW:
6149 case clang::BuiltinType::OCLImage2dArrayRO:
6150 case clang::BuiltinType::OCLImage2dArrayWO:
6151 case clang::BuiltinType::OCLImage2dArrayRW:
6152 case clang::BuiltinType::OCLImage3dRO:
6153 case clang::BuiltinType::OCLImage3dWO:
6154 case clang::BuiltinType::OCLImage3dRW:
6155 case clang::BuiltinType::OCLSampler:
6156 case clang::BuiltinType::HLSLResource:
6158 case clang::BuiltinType::Bool:
6159 case clang::BuiltinType::Char_U:
6160 case clang::BuiltinType::UChar:
6161 case clang::BuiltinType::WChar_U:
6162 case clang::BuiltinType::Char16:
6163 case clang::BuiltinType::Char32:
6164 case clang::BuiltinType::UShort:
6165 case clang::BuiltinType::UInt:
6166 case clang::BuiltinType::ULong:
6167 case clang::BuiltinType::ULongLong:
6168 case clang::BuiltinType::UInt128:
6169 case clang::BuiltinType::Char_S:
6170 case clang::BuiltinType::SChar:
6171 case clang::BuiltinType::WChar_S:
6172 case clang::BuiltinType::Short:
6173 case clang::BuiltinType::Int:
6174 case clang::BuiltinType::Long:
6175 case clang::BuiltinType::LongLong:
6176 case clang::BuiltinType::Int128:
6177 case clang::BuiltinType::Float:
6178 case clang::BuiltinType::Double:
6179 case clang::BuiltinType::LongDouble:
6180 case clang::BuiltinType::Float128:
6181 case clang::BuiltinType::Dependent:
6182 case clang::BuiltinType::Overload:
6183 case clang::BuiltinType::ObjCId:
6184 case clang::BuiltinType::ObjCClass:
6185 case clang::BuiltinType::ObjCSel:
6186 case clang::BuiltinType::BoundMember:
6187 case clang::BuiltinType::Half:
6188 case clang::BuiltinType::ARCUnbridgedCast:
6189 case clang::BuiltinType::PseudoObject:
6190 case clang::BuiltinType::BuiltinFn:
6191 case clang::BuiltinType::ArraySection:
6198 case clang::Type::Complex:
6200 case clang::Type::Pointer:
6202 case clang::Type::BlockPointer:
6205 case clang::Type::LValueReference:
6207 case clang::Type::RValueReference:
6209 case clang::Type::MemberPointer:
6211 case clang::Type::ConstantArray:
6213 case clang::Type::IncompleteArray:
6215 case clang::Type::VariableArray:
6217 case clang::Type::DependentSizedArray:
6219 case clang::Type::DependentSizedExtVector:
6221 case clang::Type::Vector:
6223 case clang::Type::ExtVector:
6225 case clang::Type::FunctionProto:
6227 case clang::Type::FunctionNoProto:
6229 case clang::Type::UnresolvedUsing:
6231 case clang::Type::Record:
6233 case clang::Type::Enum:
6235 case clang::Type::TemplateTypeParm:
6237 case clang::Type::SubstTemplateTypeParm:
6239 case clang::Type::TemplateSpecialization:
6241 case clang::Type::InjectedClassName:
6243 case clang::Type::DependentName:
6245 case clang::Type::ObjCObject:
6247 case clang::Type::ObjCInterface:
6249 case clang::Type::ObjCObjectPointer:
6259 std::string &deref_name, uint32_t &deref_byte_size,
6260 int32_t &deref_byte_offset,
ValueObject *valobj, uint64_t &language_flags) {
6264 return llvm::createStringError(
"not a pointer, reference or array type");
6265 uint32_t child_bitfield_bit_size = 0;
6266 uint32_t child_bitfield_bit_offset = 0;
6267 bool child_is_base_class;
6268 bool child_is_deref_of_parent;
6270 type, exe_ctx, 0,
false,
true,
false, deref_name, deref_byte_size,
6271 deref_byte_offset, child_bitfield_bit_size, child_bitfield_bit_offset,
6272 child_is_base_class, child_is_deref_of_parent, valobj, language_flags);
6277 bool transparent_pointers,
bool omit_empty_base_classes,
6278 bool ignore_array_bounds, std::string &child_name,
6279 uint32_t &child_byte_size, int32_t &child_byte_offset,
6280 uint32_t &child_bitfield_bit_size, uint32_t &child_bitfield_bit_offset,
6281 bool &child_is_base_class,
bool &child_is_deref_of_parent,
6284 return llvm::createStringError(
"invalid type");
6286 auto get_exe_scope = [&exe_ctx]() {
6290 clang::QualType parent_qual_type(
6292 const clang::Type::TypeClass parent_type_class =
6293 parent_qual_type->getTypeClass();
6294 child_bitfield_bit_size = 0;
6295 child_bitfield_bit_offset = 0;
6296 child_is_base_class =
false;
6299 auto num_children_or_err =
6301 if (!num_children_or_err)
6302 return num_children_or_err.takeError();
6304 const bool idx_is_valid = idx < *num_children_or_err;
6306 switch (parent_type_class) {
6307 case clang::Type::Builtin:
6309 return llvm::createStringError(
"invalid index");
6311 switch (llvm::cast<clang::BuiltinType>(parent_qual_type)->getKind()) {
6312 case clang::BuiltinType::ObjCId:
6313 case clang::BuiltinType::ObjCClass:
6324 case clang::Type::Record: {
6326 return llvm::createStringError(
"invalid index");
6328 return llvm::createStringError(
"cannot complete type");
6330 const clang::RecordType *record_type =
6331 llvm::cast<clang::RecordType>(parent_qual_type.getTypePtr());
6332 const clang::RecordDecl *record_decl =
6333 record_type->getDecl()->getDefinitionOrSelf();
6334 const clang::ASTRecordLayout &record_layout =
6336 uint32_t child_idx = 0;
6338 const clang::CXXRecordDecl *cxx_record_decl =
6339 llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
6340 if (cxx_record_decl) {
6342 clang::CXXRecordDecl::base_class_const_iterator base_class,
6344 for (base_class = cxx_record_decl->bases_begin(),
6345 base_class_end = cxx_record_decl->bases_end();
6346 base_class != base_class_end; ++base_class) {
6347 const clang::CXXRecordDecl *base_class_decl =
nullptr;
6350 if (omit_empty_base_classes) {
6352 llvm::cast<clang::CXXRecordDecl>(
6353 base_class->getType()->getAs<clang::RecordType>()->getDecl())
6354 ->getDefinitionOrSelf();
6359 if (idx == child_idx) {
6360 if (base_class_decl ==
nullptr)
6361 base_class_decl = llvm::cast<clang::CXXRecordDecl>(
6362 base_class->getType()
6363 ->getAs<clang::RecordType>()
6365 ->getDefinitionOrSelf();
6367 if (base_class->isVirtual()) {
6368 bool handled =
false;
6370 clang::VTableContextBase *vtable_ctx =
6374 cxx_record_decl, base_class_decl,
6378 bit_offset = record_layout.getVBaseClassOffset(base_class_decl)
6382 bit_offset = record_layout.getBaseClassOffset(base_class_decl)
6387 child_byte_offset = bit_offset / 8;
6390 auto size_or_err = base_class_clang_type.
GetBitSize(get_exe_scope());
6392 return llvm::joinErrors(
6393 llvm::createStringError(
"no size info for base class"),
6394 size_or_err.takeError());
6396 uint64_t base_class_clang_type_bit_size = *size_or_err;
6399 assert(base_class_clang_type_bit_size % 8 == 0);
6400 child_byte_size = base_class_clang_type_bit_size / 8;
6401 child_is_base_class =
true;
6402 return base_class_clang_type;
6410 uint32_t field_idx = 0;
6411 clang::RecordDecl::field_iterator field, field_end;
6412 for (field = record_decl->field_begin(),
6413 field_end = record_decl->field_end();
6414 field != field_end; ++field, ++field_idx, ++child_idx) {
6415 if (idx == child_idx) {
6418 child_name.assign(field->getNameAsString());
6423 assert(field_idx < record_layout.getFieldCount());
6424 auto size_or_err = field_clang_type.
GetByteSize(get_exe_scope());
6426 return llvm::joinErrors(
6427 llvm::createStringError(
"no size info for field"),
6428 size_or_err.takeError());
6430 child_byte_size = *size_or_err;
6431 const uint32_t child_bit_size = child_byte_size * 8;
6435 bit_offset = record_layout.getFieldOffset(field_idx);
6437 child_bitfield_bit_offset = bit_offset % child_bit_size;
6438 const uint32_t child_bit_offset =
6439 bit_offset - child_bitfield_bit_offset;
6440 child_byte_offset = child_bit_offset / 8;
6442 child_byte_offset = bit_offset / 8;
6445 return field_clang_type;
6449 case clang::Type::ObjCObject:
6450 case clang::Type::ObjCInterface: {
6452 return llvm::createStringError(
"invalid index");
6454 return llvm::createStringError(
"cannot complete type");
6456 const clang::ObjCObjectType *objc_class_type =
6457 llvm::dyn_cast<clang::ObjCObjectType>(parent_qual_type.getTypePtr());
6458 assert(objc_class_type);
6459 if (!objc_class_type)
6460 return llvm::createStringError(
"unexpected object type");
6462 uint32_t child_idx = 0;
6463 clang::ObjCInterfaceDecl *class_interface_decl =
6464 objc_class_type->getInterface();
6466 if (!class_interface_decl)
6467 return llvm::createStringError(
"cannot get interface decl");
6469 const clang::ASTRecordLayout &interface_layout =
6470 getASTContext().getASTObjCInterfaceLayout(class_interface_decl);
6471 clang::ObjCInterfaceDecl *superclass_interface_decl =
6472 class_interface_decl->getSuperClass();
6473 if (superclass_interface_decl) {
6474 if (omit_empty_base_classes) {
6476 getASTContext().getObjCInterfaceType(superclass_interface_decl));
6477 if (llvm::expectedToOptional(base_class_clang_type.
GetNumChildren(
6478 omit_empty_base_classes, exe_ctx))
6481 clang::QualType ivar_qual_type(
getASTContext().getObjCInterfaceType(
6482 superclass_interface_decl));
6484 child_name.assign(superclass_interface_decl->getNameAsString());
6486 clang::TypeInfo ivar_type_info =
6489 child_byte_size = ivar_type_info.Width / 8;
6490 child_byte_offset = 0;
6491 child_is_base_class =
true;
6493 return GetType(ivar_qual_type);
6502 const uint32_t superclass_idx = child_idx;
6504 if (idx < (child_idx + class_interface_decl->ivar_size())) {
6505 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos,
6506 ivar_end = class_interface_decl->ivar_end();
6508 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end;
6510 if (child_idx == idx) {
6511 clang::ObjCIvarDecl *ivar_decl = *ivar_pos;
6513 clang::QualType ivar_qual_type(ivar_decl->getType());
6515 child_name.assign(ivar_decl->getNameAsString());
6517 clang::TypeInfo ivar_type_info =
6520 child_byte_size = ivar_type_info.Width / 8;
6536 if (objc_runtime !=
nullptr) {
6539 parent_ast_type, ivar_decl->getNameAsString().c_str());
6547 if (child_byte_offset ==
6550 interface_layout.getFieldOffset(child_idx - superclass_idx);
6551 child_byte_offset = bit_offset / 8;
6563 interface_layout.getFieldOffset(child_idx - superclass_idx);
6565 child_bitfield_bit_offset = bit_offset % 8;
6567 return GetType(ivar_qual_type);
6574 case clang::Type::ObjCObjectPointer: {
6576 return llvm::createStringError(
"invalid index");
6580 child_is_deref_of_parent =
false;
6581 bool tmp_child_is_deref_of_parent =
false;
6583 exe_ctx, idx, transparent_pointers, omit_empty_base_classes,
6584 ignore_array_bounds, child_name, child_byte_size, child_byte_offset,
6585 child_bitfield_bit_size, child_bitfield_bit_offset,
6586 child_is_base_class, tmp_child_is_deref_of_parent, valobj,
6589 child_is_deref_of_parent =
true;
6590 const char *parent_name =
6593 child_name.assign(1,
'*');
6594 child_name += parent_name;
6599 auto size_or_err = pointee_clang_type.
GetByteSize(get_exe_scope());
6601 return size_or_err.takeError();
6602 child_byte_size = *size_or_err;
6603 child_byte_offset = 0;
6604 return pointee_clang_type;
6609 case clang::Type::Vector:
6610 case clang::Type::ExtVector: {
6612 return llvm::createStringError(
"invalid index");
6613 const clang::VectorType *array =
6614 llvm::cast<clang::VectorType>(parent_qual_type.getTypePtr());
6616 return llvm::createStringError(
"unexpected vector type");
6620 return llvm::createStringError(
"cannot complete type");
6622 char element_name[64];
6623 ::snprintf(element_name,
sizeof(element_name),
"[%" PRIu64
"]",
6624 static_cast<uint64_t
>(idx));
6625 child_name.assign(element_name);
6626 auto size_or_err = element_type.
GetByteSize(get_exe_scope());
6628 return size_or_err.takeError();
6629 child_byte_size = *size_or_err;
6630 child_byte_offset = (int32_t)idx * (int32_t)child_byte_size;
6631 return element_type;
6633 case clang::Type::ConstantArray:
6634 case clang::Type::IncompleteArray: {
6635 if (!ignore_array_bounds && !idx_is_valid)
6636 return llvm::createStringError(
"invalid index");
6637 const clang::ArrayType *array =
GetQualType(type)->getAsArrayTypeUnsafe();
6639 return llvm::createStringError(
"unexpected array type");
6642 return llvm::createStringError(
"cannot complete type");
6644 child_name = std::string(llvm::formatv(
"[{0}]", idx));
6645 auto size_or_err = element_type.
GetByteSize(get_exe_scope());
6647 return size_or_err.takeError();
6648 child_byte_size = *size_or_err;
6649 child_byte_offset = (int32_t)idx * (int32_t)child_byte_size;
6650 return element_type;
6652 case clang::Type::Pointer: {
6657 return llvm::createStringError(
"cannot dereference void *");
6660 child_is_deref_of_parent =
false;
6661 bool tmp_child_is_deref_of_parent =
false;
6663 exe_ctx, idx, transparent_pointers, omit_empty_base_classes,
6664 ignore_array_bounds, child_name, child_byte_size, child_byte_offset,
6665 child_bitfield_bit_size, child_bitfield_bit_offset,
6666 child_is_base_class, tmp_child_is_deref_of_parent, valobj,
6669 child_is_deref_of_parent =
true;
6673 child_name.assign(1,
'*');
6674 child_name += parent_name;
6679 auto size_or_err = pointee_clang_type.
GetByteSize(get_exe_scope());
6681 return size_or_err.takeError();
6682 child_byte_size = *size_or_err;
6683 child_byte_offset = 0;
6684 return pointee_clang_type;
6689 case clang::Type::LValueReference:
6690 case clang::Type::RValueReference: {
6692 return llvm::createStringError(
"invalid index");
6693 const clang::ReferenceType *reference_type =
6694 llvm::cast<clang::ReferenceType>(
6698 child_is_deref_of_parent =
false;
6699 bool tmp_child_is_deref_of_parent =
false;
6701 exe_ctx, idx, transparent_pointers, omit_empty_base_classes,
6702 ignore_array_bounds, child_name, child_byte_size, child_byte_offset,
6703 child_bitfield_bit_size, child_bitfield_bit_offset,
6704 child_is_base_class, tmp_child_is_deref_of_parent, valobj,
6709 child_name.assign(1,
'&');
6710 child_name += parent_name;
6715 auto size_or_err = pointee_clang_type.
GetByteSize(get_exe_scope());
6717 return size_or_err.takeError();
6718 child_byte_size = *size_or_err;
6719 child_byte_offset = 0;
6720 return pointee_clang_type;
6727 return llvm::createStringError(
"cannot enumerate children");
6731 const clang::RecordDecl *record_decl,
6732 const clang::CXXBaseSpecifier *base_spec,
6733 bool omit_empty_base_classes) {
6734 uint32_t child_idx = 0;
6736 const clang::CXXRecordDecl *cxx_record_decl =
6737 llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
6739 if (cxx_record_decl) {
6740 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
6741 for (base_class = cxx_record_decl->bases_begin(),
6742 base_class_end = cxx_record_decl->bases_end();
6743 base_class != base_class_end; ++base_class) {
6744 if (omit_empty_base_classes) {
6749 if (base_class == base_spec)
6759 const clang::RecordDecl *record_decl, clang::NamedDecl *canonical_decl,
6760 bool omit_empty_base_classes) {
6762 llvm::dyn_cast<clang::CXXRecordDecl>(record_decl),
6763 omit_empty_base_classes);
6765 clang::RecordDecl::field_iterator field, field_end;
6766 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
6767 field != field_end; ++field, ++child_idx) {
6768 if (field->getCanonicalDecl() == canonical_decl)
6810 bool omit_empty_base_classes, std::vector<uint32_t> &child_indexes) {
6811 if (type && !name.empty()) {
6813 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6814 switch (type_class) {
6815 case clang::Type::Record:
6817 const clang::RecordType *record_type =
6818 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
6819 const clang::RecordDecl *record_decl =
6820 record_type->getDecl()->getDefinitionOrSelf();
6822 assert(record_decl);
6823 uint32_t child_idx = 0;
6825 const clang::CXXRecordDecl *cxx_record_decl =
6826 llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
6829 clang::RecordDecl::field_iterator field, field_end;
6830 for (field = record_decl->field_begin(),
6831 field_end = record_decl->field_end();
6832 field != field_end; ++field, ++child_idx) {
6833 llvm::StringRef field_name = field->getName();
6834 if (field_name.empty()) {
6836 std::vector<uint32_t> save_indices = child_indexes;
6837 child_indexes.push_back(
6839 cxx_record_decl, omit_empty_base_classes));
6841 name, omit_empty_base_classes, child_indexes))
6842 return child_indexes.size();
6843 child_indexes = std::move(save_indices);
6844 }
else if (field_name == name) {
6846 child_indexes.push_back(
6848 cxx_record_decl, omit_empty_base_classes));
6849 return child_indexes.size();
6853 if (cxx_record_decl) {
6854 const clang::RecordDecl *parent_record_decl = cxx_record_decl;
6857 clang::IdentifierInfo &ident_ref =
getASTContext().Idents.get(name);
6858 clang::DeclarationName decl_name(&ident_ref);
6860 clang::CXXBasePaths paths;
6861 if (cxx_record_decl->lookupInBases(
6862 [decl_name](
const clang::CXXBaseSpecifier *specifier,
6863 clang::CXXBasePath &path) {
6864 CXXRecordDecl *record =
6865 specifier->getType()->getAsCXXRecordDecl();
6866 auto r = record->lookup(decl_name);
6867 path.Decls = r.begin();
6871 clang::CXXBasePaths::const_paths_iterator path,
6872 path_end = paths.end();
6873 for (path = paths.begin(); path != path_end; ++path) {
6874 const size_t num_path_elements = path->size();
6875 for (
size_t e = 0; e < num_path_elements; ++e) {
6876 clang::CXXBasePathElement elem = (*path)[e];
6879 omit_empty_base_classes);
6881 child_indexes.clear();
6884 child_indexes.push_back(child_idx);
6885 parent_record_decl = elem.Base->getType()
6886 ->castAs<clang::RecordType>()
6888 ->getDefinitionOrSelf();
6891 for (clang::DeclContext::lookup_iterator I = path->Decls, E;
6894 parent_record_decl, *I, omit_empty_base_classes);
6896 child_indexes.clear();
6899 child_indexes.push_back(child_idx);
6903 return child_indexes.size();
6909 case clang::Type::ObjCObject:
6910 case clang::Type::ObjCInterface:
6912 llvm::StringRef name_sref(name);
6913 const clang::ObjCObjectType *objc_class_type =
6914 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
6915 assert(objc_class_type);
6916 if (objc_class_type) {
6917 uint32_t child_idx = 0;
6918 clang::ObjCInterfaceDecl *class_interface_decl =
6919 objc_class_type->getInterface();
6921 if (class_interface_decl) {
6922 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos,
6923 ivar_end = class_interface_decl->ivar_end();
6924 clang::ObjCInterfaceDecl *superclass_interface_decl =
6925 class_interface_decl->getSuperClass();
6927 for (ivar_pos = class_interface_decl->ivar_begin();
6928 ivar_pos != ivar_end; ++ivar_pos, ++child_idx) {
6929 const clang::ObjCIvarDecl *ivar_decl = *ivar_pos;
6931 if (ivar_decl->getName() == name_sref) {
6932 if ((!omit_empty_base_classes && superclass_interface_decl) ||
6933 (omit_empty_base_classes &&
6937 child_indexes.push_back(child_idx);
6938 return child_indexes.size();
6942 if (superclass_interface_decl) {
6946 child_indexes.push_back(0);
6950 superclass_interface_decl));
6952 name, omit_empty_base_classes, child_indexes)) {
6955 return child_indexes.size();
6960 child_indexes.pop_back();
6967 case clang::Type::ObjCObjectPointer: {
6969 llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr())
6970 ->getPointeeType());
6972 name, omit_empty_base_classes, child_indexes);
6975 case clang::Type::LValueReference:
6976 case clang::Type::RValueReference: {
6977 const clang::ReferenceType *reference_type =
6978 llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
6979 clang::QualType pointee_type(reference_type->getPointeeType());
6984 name, omit_empty_base_classes, child_indexes);
6988 case clang::Type::Pointer: {
6993 name, omit_empty_base_classes, child_indexes);
7008llvm::Expected<uint32_t>
7010 llvm::StringRef name,
7011 bool omit_empty_base_classes) {
7012 if (type && !name.empty()) {
7015 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
7017 switch (type_class) {
7018 case clang::Type::Record:
7020 const clang::RecordType *record_type =
7021 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
7022 const clang::RecordDecl *record_decl =
7023 record_type->getDecl()->getDefinitionOrSelf();
7025 assert(record_decl);
7026 uint32_t child_idx = 0;
7028 const clang::CXXRecordDecl *cxx_record_decl =
7029 llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
7031 if (cxx_record_decl) {
7032 clang::CXXRecordDecl::base_class_const_iterator base_class,
7034 for (base_class = cxx_record_decl->bases_begin(),
7035 base_class_end = cxx_record_decl->bases_end();
7036 base_class != base_class_end; ++base_class) {
7038 clang::CXXRecordDecl *base_class_decl =
7039 llvm::cast<clang::CXXRecordDecl>(
7040 base_class->getType()
7041 ->castAs<clang::RecordType>()
7043 ->getDefinitionOrSelf();
7044 if (omit_empty_base_classes &&
7049 std::string base_class_type_name(
7051 if (base_class_type_name == name)
7058 clang::RecordDecl::field_iterator field, field_end;
7059 for (field = record_decl->field_begin(),
7060 field_end = record_decl->field_end();
7061 field != field_end; ++field, ++child_idx) {
7062 if (field->getName() == name)
7068 case clang::Type::ObjCObject:
7069 case clang::Type::ObjCInterface:
7071 const clang::ObjCObjectType *objc_class_type =
7072 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
7073 assert(objc_class_type);
7074 if (objc_class_type) {
7075 uint32_t child_idx = 0;
7076 clang::ObjCInterfaceDecl *class_interface_decl =
7077 objc_class_type->getInterface();
7079 if (class_interface_decl) {
7080 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos,
7081 ivar_end = class_interface_decl->ivar_end();
7082 clang::ObjCInterfaceDecl *superclass_interface_decl =
7083 class_interface_decl->getSuperClass();
7085 for (ivar_pos = class_interface_decl->ivar_begin();
7086 ivar_pos != ivar_end; ++ivar_pos, ++child_idx) {
7087 const clang::ObjCIvarDecl *ivar_decl = *ivar_pos;
7089 if (ivar_decl->getName() == name) {
7090 if ((!omit_empty_base_classes && superclass_interface_decl) ||
7091 (omit_empty_base_classes &&
7099 if (superclass_interface_decl) {
7100 if (superclass_interface_decl->getName() == name)
7108 case clang::Type::ObjCObjectPointer: {
7110 llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr())
7111 ->getPointeeType());
7113 name, omit_empty_base_classes);
7116 case clang::Type::LValueReference:
7117 case clang::Type::RValueReference: {
7118 const clang::ReferenceType *reference_type =
7119 llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
7124 omit_empty_base_classes);
7128 case clang::Type::Pointer: {
7129 const clang::PointerType *pointer_type =
7130 llvm::cast<clang::PointerType>(qual_type.getTypePtr());
7135 omit_empty_base_classes);
7143 return llvm::createStringErrorV(
"type has no child named '{0}'", name);
7148 llvm::StringRef name) {
7149 if (!type || name.empty())
7153 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
7155 switch (type_class) {
7156 case clang::Type::Record: {
7159 const clang::RecordType *record_type =
7160 llvm::cast<clang::RecordType>(qual_type.getTypePtr());
7161 const clang::RecordDecl *record_decl =
7162 record_type->getDecl()->getDefinitionOrSelf();
7164 clang::DeclarationName decl_name(&
getASTContext().Idents.get(name));
7165 for (NamedDecl *decl : record_decl->lookup(decl_name)) {
7166 if (
auto *tag_decl = dyn_cast<clang::TagDecl>(decl))
7168 if (
auto *typedef_decl = dyn_cast<clang::TypedefNameDecl>(decl))
7170 ElaboratedTypeKeyword::None, std::nullopt,
7186 if (
auto *cxx_record_decl = dyn_cast<clang::TagType>(clang_type))
7187 return isa<clang::ClassTemplateSpecializationDecl>(
7188 cxx_record_decl->getDecl());
7199 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
7200 switch (type_class) {
7201 case clang::Type::Record:
7203 const clang::CXXRecordDecl *cxx_record_decl =
7204 qual_type->getAsCXXRecordDecl();
7205 if (cxx_record_decl) {
7206 const clang::ClassTemplateSpecializationDecl *template_decl =
7207 llvm::dyn_cast<clang::ClassTemplateSpecializationDecl>(
7209 if (template_decl) {
7210 const auto &template_arg_list = template_decl->getTemplateArgs();
7211 size_t num_args = template_arg_list.size();
7212 assert(num_args &&
"template specialization without any args");
7213 if (expand_pack && num_args) {
7214 const auto &pack = template_arg_list[num_args - 1];
7215 if (pack.getKind() == clang::TemplateArgument::Pack)
7216 num_args += pack.pack_size() - 1;
7231const clang::ClassTemplateSpecializationDecl *
7238 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
7239 switch (type_class) {
7240 case clang::Type::Record: {
7243 const clang::CXXRecordDecl *cxx_record_decl =
7244 qual_type->getAsCXXRecordDecl();
7245 if (!cxx_record_decl)
7247 return llvm::dyn_cast<clang::ClassTemplateSpecializationDecl>(
7256const TemplateArgument *
7258 size_t idx,
bool expand_pack) {
7259 const auto &args = decl->getTemplateArgs();
7260 const size_t args_size = args.size();
7262 assert(args_size &&
"template specialization without any args");
7266 const size_t last_idx = args_size - 1;
7275 if (!expand_pack || args[last_idx].getKind() != clang::TemplateArgument::Pack)
7276 return idx >= args.size() ? nullptr : &args[idx];
7281 const auto &pack = args[last_idx];
7282 const size_t pack_idx = idx - last_idx;
7283 if (pack_idx >= pack.pack_size())
7285 return &pack.pack_elements()[pack_idx];
7290 size_t arg_idx,
bool expand_pack) {
7291 const clang::ClassTemplateSpecializationDecl *template_decl =
7300 switch (arg->getKind()) {
7301 case clang::TemplateArgument::Null:
7304 case clang::TemplateArgument::NullPtr:
7307 case clang::TemplateArgument::Type:
7310 case clang::TemplateArgument::Declaration:
7313 case clang::TemplateArgument::Integral:
7316 case clang::TemplateArgument::Template:
7319 case clang::TemplateArgument::TemplateExpansion:
7322 case clang::TemplateArgument::Expression:
7325 case clang::TemplateArgument::Pack:
7328 case clang::TemplateArgument::StructuralValue:
7331 llvm_unreachable(
"Unhandled clang::TemplateArgument::ArgKind");
7336 size_t idx,
bool expand_pack) {
7337 const clang::ClassTemplateSpecializationDecl *template_decl =
7343 if (!arg || arg->getKind() != clang::TemplateArgument::Type)
7346 return GetType(arg->getAsType());
7349std::optional<CompilerType::IntegralTemplateArgument>
7351 size_t idx,
bool expand_pack) {
7352 const clang::ClassTemplateSpecializationDecl *template_decl =
7355 return std::nullopt;
7359 return std::nullopt;
7361 switch (arg->getKind()) {
7362 case clang::TemplateArgument::Integral:
7363 return {{arg->getAsIntegral(),
GetType(arg->getIntegralType())}};
7364 case clang::TemplateArgument::StructuralValue: {
7365 clang::APValue value = arg->getAsStructuralValue();
7368 if (value.isFloat())
7369 return {{value.getFloat(), type}};
7372 return {{value.getInt(), type}};
7374 return std::nullopt;
7377 return std::nullopt;
7402 const clang::EnumType *enutype =
7405 return enutype->getDecl()->getDefinitionOrSelf();
7410 const clang::RecordType *record_type =
7413 return record_type->getDecl()->getDefinitionOrSelf();
7421clang::TypedefNameDecl *
7423 const clang::TypedefType *typedef_type =
7426 return typedef_type->getDecl();
7430clang::CXXRecordDecl *
7435clang::ObjCInterfaceDecl *
7437 const clang::ObjCObjectType *objc_class_type =
7438 llvm::dyn_cast<clang::ObjCObjectType>(
7440 if (objc_class_type)
7441 return objc_class_type->getInterface();
7447 const CompilerType &field_clang_type, uint32_t bitfield_bit_size) {
7453 clang::ASTContext &clang_ast = ast->getASTContext();
7454 clang::IdentifierInfo *ident =
nullptr;
7456 ident = &clang_ast.Idents.get(name);
7458 clang::FieldDecl *field =
nullptr;
7460 clang::Expr *bit_width =
nullptr;
7461 if (bitfield_bit_size != 0) {
7462 if (clang_ast.IntTy.isNull()) {
7464 "builtin ASTContext types have not been initialized");
7468 llvm::APInt bitfield_bit_size_apint(clang_ast.getTypeSize(clang_ast.IntTy),
7470 bit_width =
new (clang_ast)
7471 clang::IntegerLiteral(clang_ast, bitfield_bit_size_apint,
7472 clang_ast.IntTy, clang::SourceLocation());
7473 bit_width = clang::ConstantExpr::Create(
7474 clang_ast, bit_width, APValue(llvm::APSInt(bitfield_bit_size_apint)));
7477 clang::RecordDecl *record_decl = ast->GetAsRecordDecl(type);
7479 field = clang::FieldDecl::CreateDeserialized(clang_ast, GlobalDeclID());
7480 field->setDeclContext(record_decl);
7481 field->setDeclName(ident);
7484 field->setBitWidth(bit_width);
7490 if (
const clang::TagType *TagT =
7491 field->getType()->getAs<clang::TagType>()) {
7492 if (clang::RecordDecl *Rec =
7493 llvm::dyn_cast<clang::RecordDecl>(TagT->getDecl()))
7494 if (!Rec->getDeclName()) {
7495 Rec->setAnonymousStructOrUnion(
true);
7496 field->setImplicit();
7502 field->setAccess(AS_public);
7504 record_decl->addDecl(field);
7509 clang::ObjCInterfaceDecl *class_interface_decl =
7510 ast->GetAsObjCInterfaceDecl(type);
7512 if (class_interface_decl) {
7513 const bool is_synthesized =
false;
7518 clang::ObjCIvarDecl::CreateDeserialized(clang_ast, GlobalDeclID());
7519 ivar->setDeclContext(class_interface_decl);
7520 ivar->setDeclName(ident);
7522 ivar->setAccessControl(ObjCIvarDecl::AccessControl::Public);
7524 ivar->setBitWidth(bit_width);
7525 ivar->setSynthesize(is_synthesized);
7530 class_interface_decl->addDecl(field);
7547 clang::RecordDecl *record_decl = ast->GetAsRecordDecl(type);
7552 typedef llvm::SmallVector<clang::IndirectFieldDecl *, 1> IndirectFieldVector;
7554 IndirectFieldVector indirect_fields;
7555 clang::RecordDecl::field_iterator field_pos;
7556 clang::RecordDecl::field_iterator field_end_pos = record_decl->field_end();
7557 clang::RecordDecl::field_iterator last_field_pos = field_end_pos;
7558 for (field_pos = record_decl->field_begin(); field_pos != field_end_pos;
7559 last_field_pos = field_pos++) {
7560 if (field_pos->isAnonymousStructOrUnion()) {
7561 clang::QualType field_qual_type = field_pos->getType();
7563 const clang::RecordType *field_record_type =
7564 field_qual_type->getAs<clang::RecordType>();
7566 if (!field_record_type)
7569 clang::RecordDecl *field_record_decl =
7570 field_record_type->getDecl()->getDefinition();
7572 if (!field_record_decl)
7575 for (clang::RecordDecl::decl_iterator
7576 di = field_record_decl->decls_begin(),
7577 de = field_record_decl->decls_end();
7579 if (clang::FieldDecl *nested_field_decl =
7580 llvm::dyn_cast<clang::FieldDecl>(*di)) {
7581 clang::NamedDecl **chain =
7582 new (ast->getASTContext()) clang::NamedDecl *[2];
7583 chain[0] = *field_pos;
7584 chain[1] = nested_field_decl;
7585 clang::IndirectFieldDecl *indirect_field =
7586 clang::IndirectFieldDecl::Create(
7587 ast->getASTContext(), record_decl, clang::SourceLocation(),
7588 nested_field_decl->getIdentifier(),
7589 nested_field_decl->getType(), {chain, 2});
7592 indirect_field->setImplicit();
7594 indirect_field->setAccess(AS_public);
7596 indirect_fields.push_back(indirect_field);
7597 }
else if (clang::IndirectFieldDecl *nested_indirect_field_decl =
7598 llvm::dyn_cast<clang::IndirectFieldDecl>(*di)) {
7599 size_t nested_chain_size =
7600 nested_indirect_field_decl->getChainingSize();
7601 clang::NamedDecl **chain =
new (ast->getASTContext())
7602 clang::NamedDecl *[nested_chain_size + 1];
7603 chain[0] = *field_pos;
7605 int chain_index = 1;
7606 for (clang::IndirectFieldDecl::chain_iterator
7607 nci = nested_indirect_field_decl->chain_begin(),
7608 nce = nested_indirect_field_decl->chain_end();
7610 chain[chain_index] = *nci;
7614 clang::IndirectFieldDecl *indirect_field =
7615 clang::IndirectFieldDecl::Create(
7616 ast->getASTContext(), record_decl, clang::SourceLocation(),
7617 nested_indirect_field_decl->getIdentifier(),
7618 nested_indirect_field_decl->getType(),
7619 {chain, nested_chain_size + 1});
7622 indirect_field->setImplicit();
7624 indirect_field->setAccess(AS_public);
7626 indirect_fields.push_back(indirect_field);
7634 if (last_field_pos != field_end_pos) {
7635 if (last_field_pos->getType()->isIncompleteArrayType())
7636 record_decl->hasFlexibleArrayMember();
7639 for (IndirectFieldVector::iterator ifi = indirect_fields.begin(),
7640 ife = indirect_fields.end();
7642 record_decl->addDecl(*ifi);
7655 record_decl->addAttr(
7656 clang::PackedAttr::CreateImplicit(ast->getASTContext()));
7663 llvm::StringRef name,
7672 clang::RecordDecl *record_decl = ast->GetAsRecordDecl(type);
7676 clang::VarDecl *var_decl =
nullptr;
7677 clang::IdentifierInfo *ident =
nullptr;
7679 ident = &ast->getASTContext().Idents.get(name);
7682 clang::VarDecl::CreateDeserialized(ast->getASTContext(), GlobalDeclID());
7683 var_decl->setDeclContext(record_decl);
7684 var_decl->setDeclName(ident);
7686 var_decl->setStorageClass(clang::SC_Static);
7691 var_decl->setAccess(AS_public);
7692 record_decl->addDecl(var_decl);
7694 VerifyDecl(var_decl);
7700 VarDecl *var,
const llvm::APInt &init_value) {
7701 assert(!var->hasInit() &&
"variable already initialized");
7703 clang::ASTContext &ast = var->getASTContext();
7704 QualType qt = var->getType();
7705 assert(qt->isIntegralOrEnumerationType() &&
7706 "only integer or enum types supported");
7709 if (
const EnumType *enum_type = qt->getAs<EnumType>()) {
7710 const EnumDecl *enum_decl = enum_type->getDecl()->getDefinitionOrSelf();
7711 qt = enum_decl->getIntegerType();
7715 if (qt->isSpecificBuiltinType(BuiltinType::Bool)) {
7716 var->setInit(CXXBoolLiteralExpr::Create(
7717 ast, !init_value.isZero(), qt.getUnqualifiedType(), SourceLocation()));
7719 var->setInit(IntegerLiteral::Create(
7720 ast, init_value, qt.getUnqualifiedType(), SourceLocation()));
7725 clang::VarDecl *var,
const llvm::APFloat &init_value) {
7726 assert(!var->hasInit() &&
"variable already initialized");
7728 clang::ASTContext &ast = var->getASTContext();
7729 QualType qt = var->getType();
7730 assert(qt->isFloatingType() &&
"only floating point types supported");
7731 var->setInit(FloatingLiteral::Create(
7732 ast, init_value,
true, qt.getUnqualifiedType(), SourceLocation()));
7735llvm::SmallVector<clang::ParmVarDecl *>
7737 clang::FunctionDecl *func,
const clang::FunctionProtoType &prototype,
7738 const llvm::SmallVector<llvm::StringRef> ¶meter_names) {
7740 assert(parameter_names.empty() ||
7741 parameter_names.size() == prototype.getNumParams());
7743 llvm::SmallVector<clang::ParmVarDecl *> params;
7744 for (
unsigned param_index = 0; param_index < prototype.getNumParams();
7746 llvm::StringRef name =
7747 !parameter_names.empty() ? parameter_names[param_index] :
"";
7751 GetType(prototype.getParamType(param_index)),
7752 clang::SC_None,
false);
7755 params.push_back(param);
7763 llvm::StringRef asm_label,
const CompilerType &method_clang_type,
7764 bool is_virtual,
bool is_static,
bool is_inline,
bool is_explicit,
7765 bool is_attr_used,
bool is_artificial) {
7766 if (!type || !method_clang_type.
IsValid() || name.empty())
7771 clang::CXXRecordDecl *cxx_record_decl =
7772 record_qual_type->getAsCXXRecordDecl();
7774 if (cxx_record_decl ==
nullptr)
7779 clang::CXXMethodDecl *cxx_method_decl =
nullptr;
7781 clang::DeclarationName decl_name(&
getASTContext().Idents.get(name));
7783 const clang::FunctionType *function_type =
7784 llvm::dyn_cast<clang::FunctionType>(method_qual_type.getTypePtr());
7786 if (function_type ==
nullptr)
7789 const clang::FunctionProtoType *method_function_prototype(
7790 llvm::dyn_cast<clang::FunctionProtoType>(function_type));
7792 if (!method_function_prototype)
7795 unsigned int num_params = method_function_prototype->getNumParams();
7797 clang::CXXDestructorDecl *cxx_dtor_decl(
nullptr);
7798 clang::CXXConstructorDecl *cxx_ctor_decl(
nullptr);
7803 const clang::ExplicitSpecifier explicit_spec(
7804 nullptr , is_explicit ? clang::ExplicitSpecKind::ResolvedTrue
7805 : clang::ExplicitSpecKind::ResolvedFalse);
7807 if (name.starts_with(
"~")) {
7808 cxx_dtor_decl = clang::CXXDestructorDecl::CreateDeserialized(
7810 cxx_dtor_decl->setDeclContext(cxx_record_decl);
7811 cxx_dtor_decl->setDeclName(
7814 cxx_dtor_decl->setType(method_qual_type);
7815 cxx_dtor_decl->setImplicit(is_artificial);
7816 cxx_dtor_decl->setInlineSpecified(is_inline);
7817 cxx_dtor_decl->setConstexprKind(ConstexprSpecKind::Unspecified);
7818 cxx_method_decl = cxx_dtor_decl;
7819 }
else if (decl_name == cxx_record_decl->getDeclName()) {
7820 cxx_ctor_decl = clang::CXXConstructorDecl::CreateDeserialized(
7822 cxx_ctor_decl->setDeclContext(cxx_record_decl);
7823 cxx_ctor_decl->setDeclName(
7826 cxx_ctor_decl->setType(method_qual_type);
7827 cxx_ctor_decl->setImplicit(is_artificial);
7828 cxx_ctor_decl->setInlineSpecified(is_inline);
7829 cxx_ctor_decl->setConstexprKind(ConstexprSpecKind::Unspecified);
7830 cxx_ctor_decl->setNumCtorInitializers(0);
7831 cxx_ctor_decl->setExplicitSpecifier(explicit_spec);
7832 cxx_method_decl = cxx_ctor_decl;
7834 clang::StorageClass SC = is_static ? clang::SC_Static : clang::SC_None;
7835 clang::OverloadedOperatorKind op_kind = clang::NUM_OVERLOADED_OPERATORS;
7838 if (op_kind != clang::NUM_OVERLOADED_OPERATORS) {
7843 const bool is_method =
true;
7845 is_method, op_kind, num_params))
7847 cxx_method_decl = clang::CXXMethodDecl::CreateDeserialized(
7849 cxx_method_decl->setDeclContext(cxx_record_decl);
7850 cxx_method_decl->setDeclName(
7851 getASTContext().DeclarationNames.getCXXOperatorName(op_kind));
7852 cxx_method_decl->setType(method_qual_type);
7853 cxx_method_decl->setStorageClass(SC);
7854 cxx_method_decl->setInlineSpecified(is_inline);
7855 cxx_method_decl->setConstexprKind(ConstexprSpecKind::Unspecified);
7856 }
else if (num_params == 0) {
7858 auto *cxx_conversion_decl =
7859 clang::CXXConversionDecl::CreateDeserialized(
getASTContext(),
7861 cxx_conversion_decl->setDeclContext(cxx_record_decl);
7862 cxx_conversion_decl->setDeclName(
7863 getASTContext().DeclarationNames.getCXXConversionFunctionName(
7865 function_type->getReturnType())));
7866 cxx_conversion_decl->setType(method_qual_type);
7867 cxx_conversion_decl->setInlineSpecified(is_inline);
7868 cxx_conversion_decl->setExplicitSpecifier(explicit_spec);
7869 cxx_conversion_decl->setConstexprKind(ConstexprSpecKind::Unspecified);
7870 cxx_method_decl = cxx_conversion_decl;
7874 if (cxx_method_decl ==
nullptr) {
7875 cxx_method_decl = clang::CXXMethodDecl::CreateDeserialized(
7877 cxx_method_decl->setDeclContext(cxx_record_decl);
7878 cxx_method_decl->setDeclName(decl_name);
7879 cxx_method_decl->setType(method_qual_type);
7880 cxx_method_decl->setInlineSpecified(is_inline);
7881 cxx_method_decl->setStorageClass(SC);
7882 cxx_method_decl->setConstexprKind(ConstexprSpecKind::Unspecified);
7887 cxx_method_decl->setAccess(AS_public);
7888 cxx_method_decl->setVirtualAsWritten(is_virtual);
7891 cxx_method_decl->addAttr(clang::UsedAttr::CreateImplicit(
getASTContext()));
7893 if (!asm_label.empty())
7894 cxx_method_decl->addAttr(
7895 clang::AsmLabelAttr::CreateImplicit(
getASTContext(), asm_label));
7900 cxx_method_decl, *method_function_prototype, {}));
7902 cxx_record_decl->addDecl(cxx_method_decl);
7911 if (is_artificial) {
7912 if (cxx_ctor_decl && ((cxx_ctor_decl->isDefaultConstructor() &&
7913 cxx_record_decl->hasTrivialDefaultConstructor()) ||
7914 (cxx_ctor_decl->isCopyConstructor() &&
7915 cxx_record_decl->hasTrivialCopyConstructor()) ||
7916 (cxx_ctor_decl->isMoveConstructor() &&
7917 cxx_record_decl->hasTrivialMoveConstructor()))) {
7918 cxx_ctor_decl->setDefaulted();
7919 cxx_ctor_decl->setTrivial(
true);
7920 }
else if (cxx_dtor_decl) {
7921 if (cxx_record_decl->hasTrivialDestructor()) {
7922 cxx_dtor_decl->setDefaulted();
7923 cxx_dtor_decl->setTrivial(
true);
7925 }
else if ((cxx_method_decl->isCopyAssignmentOperator() &&
7926 cxx_record_decl->hasTrivialCopyAssignment()) ||
7927 (cxx_method_decl->isMoveAssignmentOperator() &&
7928 cxx_record_decl->hasTrivialMoveAssignment())) {
7929 cxx_method_decl->setDefaulted();
7930 cxx_method_decl->setTrivial(
true);
7934 VerifyDecl(cxx_method_decl);
7936 return cxx_method_decl;
7942 for (
auto *method : record->methods())
7943 addOverridesForMethod(method);
7946#pragma mark C++ Base Classes
7948std::unique_ptr<clang::CXXBaseSpecifier>
7951 bool base_of_class) {
7955 return std::make_unique<clang::CXXBaseSpecifier>(
7956 clang::SourceRange(), is_virtual, base_of_class,
7959 clang::SourceLocation());
7964 std::vector<std::unique_ptr<clang::CXXBaseSpecifier>> bases) {
7968 if (!cxx_record_decl)
7970 std::vector<clang::CXXBaseSpecifier *> raw_bases;
7971 raw_bases.reserve(bases.size());
7975 for (
auto &b : bases)
7976 raw_bases.push_back(b.get());
7977 cxx_record_decl->setBases(raw_bases.data(), raw_bases.size());
7986 clang::ASTContext &clang_ast = ast->getASTContext();
7988 if (type && superclass_clang_type.
IsValid() &&
7990 clang::ObjCInterfaceDecl *class_interface_decl =
7992 clang::ObjCInterfaceDecl *super_interface_decl =
7994 if (class_interface_decl && super_interface_decl) {
7995 class_interface_decl->setSuperClass(clang_ast.getTrivialTypeSourceInfo(
7996 clang_ast.getObjCInterfaceType(super_interface_decl)));
8005 const CompilerType &property_clang_type, clang::ObjCIvarDecl *ivar_decl,
8006 const char *property_setter_name,
const char *property_getter_name,
8008 if (!type || !property_clang_type.
IsValid() || property_name ==
nullptr ||
8009 property_name[0] ==
'\0')
8014 clang::ASTContext &clang_ast = ast->getASTContext();
8017 if (!class_interface_decl)
8022 if (property_clang_type.
IsValid())
8023 property_clang_type_to_access = property_clang_type;
8025 property_clang_type_to_access = ast->GetType(ivar_decl->getType());
8027 if (!class_interface_decl || !property_clang_type_to_access.
IsValid())
8030 clang::TypeSourceInfo *prop_type_source;
8032 prop_type_source = clang_ast.getTrivialTypeSourceInfo(ivar_decl->getType());
8034 prop_type_source = clang_ast.getTrivialTypeSourceInfo(
8037 clang::ObjCPropertyDecl *property_decl =
8038 clang::ObjCPropertyDecl::CreateDeserialized(clang_ast, GlobalDeclID());
8039 property_decl->setDeclContext(class_interface_decl);
8040 property_decl->setDeclName(&clang_ast.Idents.get(property_name));
8041 property_decl->setType(ivar_decl
8042 ? ivar_decl->getType()
8050 ast->SetMetadata(property_decl, metadata);
8052 class_interface_decl->addDecl(property_decl);
8054 clang::Selector setter_sel, getter_sel;
8056 if (property_setter_name) {
8057 std::string property_setter_no_colon(property_setter_name,
8058 strlen(property_setter_name) - 1);
8059 const clang::IdentifierInfo *setter_ident =
8060 &clang_ast.Idents.get(property_setter_no_colon);
8061 setter_sel = clang_ast.Selectors.getSelector(1, &setter_ident);
8062 }
else if (!(property_attributes & DW_APPLE_PROPERTY_readonly)) {
8063 std::string setter_sel_string(
"set");
8064 setter_sel_string.push_back(::toupper(property_name[0]));
8065 setter_sel_string.append(&property_name[1]);
8066 const clang::IdentifierInfo *setter_ident =
8067 &clang_ast.Idents.get(setter_sel_string);
8068 setter_sel = clang_ast.Selectors.getSelector(1, &setter_ident);
8070 property_decl->setSetterName(setter_sel);
8071 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_setter);
8073 if (property_getter_name !=
nullptr) {
8074 const clang::IdentifierInfo *getter_ident =
8075 &clang_ast.Idents.get(property_getter_name);
8076 getter_sel = clang_ast.Selectors.getSelector(0, &getter_ident);
8078 const clang::IdentifierInfo *getter_ident =
8079 &clang_ast.Idents.get(property_name);
8080 getter_sel = clang_ast.Selectors.getSelector(0, &getter_ident);
8082 property_decl->setGetterName(getter_sel);
8083 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_getter);
8086 property_decl->setPropertyIvarDecl(ivar_decl);
8088 if (property_attributes & DW_APPLE_PROPERTY_readonly)
8089 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_readonly);
8090 if (property_attributes & DW_APPLE_PROPERTY_readwrite)
8091 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_readwrite);
8092 if (property_attributes & DW_APPLE_PROPERTY_assign)
8093 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_assign);
8094 if (property_attributes & DW_APPLE_PROPERTY_retain)
8095 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_retain);
8096 if (property_attributes & DW_APPLE_PROPERTY_copy)
8097 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_copy);
8098 if (property_attributes & DW_APPLE_PROPERTY_nonatomic)
8099 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_nonatomic);
8100 if (property_attributes & ObjCPropertyAttribute::kind_nullability)
8101 property_decl->setPropertyAttributes(
8102 ObjCPropertyAttribute::kind_nullability);
8103 if (property_attributes & ObjCPropertyAttribute::kind_null_resettable)
8104 property_decl->setPropertyAttributes(
8105 ObjCPropertyAttribute::kind_null_resettable);
8106 if (property_attributes & ObjCPropertyAttribute::kind_class)
8107 property_decl->setPropertyAttributes(ObjCPropertyAttribute::kind_class);
8109 const bool isInstance =
8110 (property_attributes & ObjCPropertyAttribute::kind_class) == 0;
8112 clang::ObjCMethodDecl *getter =
nullptr;
8113 if (!getter_sel.isNull())
8114 getter = isInstance ? class_interface_decl->lookupInstanceMethod(getter_sel)
8115 : class_interface_decl->lookupClassMethod(getter_sel);
8116 if (!getter_sel.isNull() && !getter) {
8117 const bool isVariadic =
false;
8118 const bool isPropertyAccessor =
true;
8119 const bool isSynthesizedAccessorStub =
false;
8120 const bool isImplicitlyDeclared =
true;
8121 const bool isDefined =
false;
8122 const clang::ObjCImplementationControl impControl =
8123 clang::ObjCImplementationControl::None;
8124 const bool HasRelatedResultType =
false;
8127 clang::ObjCMethodDecl::CreateDeserialized(clang_ast, GlobalDeclID());
8128 getter->setDeclName(getter_sel);
8130 getter->setDeclContext(class_interface_decl);
8131 getter->setInstanceMethod(isInstance);
8132 getter->setVariadic(isVariadic);
8133 getter->setPropertyAccessor(isPropertyAccessor);
8134 getter->setSynthesizedAccessorStub(isSynthesizedAccessorStub);
8135 getter->setImplicit(isImplicitlyDeclared);
8136 getter->setDefined(isDefined);
8137 getter->setDeclImplementation(impControl);
8138 getter->setRelatedResultType(HasRelatedResultType);
8142 ast->SetMetadata(getter, metadata);
8144 getter->setMethodParams(clang_ast, llvm::ArrayRef<clang::ParmVarDecl *>(),
8145 llvm::ArrayRef<clang::SourceLocation>());
8146 class_interface_decl->addDecl(getter);
8150 getter->setPropertyAccessor(
true);
8151 property_decl->setGetterMethodDecl(getter);
8154 clang::ObjCMethodDecl *setter =
nullptr;
8155 setter = isInstance ? class_interface_decl->lookupInstanceMethod(setter_sel)
8156 : class_interface_decl->lookupClassMethod(setter_sel);
8157 if (!setter_sel.isNull() && !setter) {
8158 clang::QualType result_type = clang_ast.VoidTy;
8159 const bool isVariadic =
false;
8160 const bool isPropertyAccessor =
true;
8161 const bool isSynthesizedAccessorStub =
false;
8162 const bool isImplicitlyDeclared =
true;
8163 const bool isDefined =
false;
8164 const clang::ObjCImplementationControl impControl =
8165 clang::ObjCImplementationControl::None;
8166 const bool HasRelatedResultType =
false;
8169 clang::ObjCMethodDecl::CreateDeserialized(clang_ast, GlobalDeclID());
8170 setter->setDeclName(setter_sel);
8171 setter->setReturnType(result_type);
8172 setter->setDeclContext(class_interface_decl);
8173 setter->setInstanceMethod(isInstance);
8174 setter->setVariadic(isVariadic);
8175 setter->setPropertyAccessor(isPropertyAccessor);
8176 setter->setSynthesizedAccessorStub(isSynthesizedAccessorStub);
8177 setter->setImplicit(isImplicitlyDeclared);
8178 setter->setDefined(isDefined);
8179 setter->setDeclImplementation(impControl);
8180 setter->setRelatedResultType(HasRelatedResultType);
8184 ast->SetMetadata(setter, metadata);
8186 llvm::SmallVector<clang::ParmVarDecl *, 1> params;
8187 params.push_back(clang::ParmVarDecl::Create(
8188 clang_ast, setter, clang::SourceLocation(), clang::SourceLocation(),
8191 clang::SC_Auto,
nullptr));
8193 setter->setMethodParams(clang_ast,
8194 llvm::ArrayRef<clang::ParmVarDecl *>(params),
8195 llvm::ArrayRef<clang::SourceLocation>());
8197 class_interface_decl->addDecl(setter);
8201 setter->setPropertyAccessor(
true);
8202 property_decl->setSetterMethodDecl(setter);
8213 const CompilerType &method_clang_type,
bool is_artificial,
bool is_variadic,
8214 bool is_objc_direct_call) {
8215 if (!type || !method_clang_type.
IsValid())
8220 if (class_interface_decl ==
nullptr)
8223 if (lldb_ast ==
nullptr)
8225 clang::ASTContext &ast = lldb_ast->getASTContext();
8227 const char *selector_start = ::strchr(name,
' ');
8228 if (selector_start ==
nullptr)
8232 llvm::SmallVector<const clang::IdentifierInfo *, 12> selector_idents;
8237 unsigned num_selectors_with_args = 0;
8238 for (start = selector_start; start && *start !=
'\0' && *start !=
']';
8240 len = ::strcspn(start,
":]");
8241 bool has_arg = (start[len] ==
':');
8243 ++num_selectors_with_args;
8244 selector_idents.push_back(&ast.Idents.get(llvm::StringRef(start, len)));
8249 if (selector_idents.size() == 0)
8252 clang::Selector method_selector = ast.Selectors.getSelector(
8253 num_selectors_with_args ? selector_idents.size() : 0,
8254 selector_idents.data());
8259 const clang::Type *method_type(method_qual_type.getTypePtr());
8261 if (method_type ==
nullptr)
8264 const clang::FunctionProtoType *method_function_prototype(
8265 llvm::dyn_cast<clang::FunctionProtoType>(method_type));
8267 if (!method_function_prototype)
8270 const bool isInstance = (name[0] ==
'-');
8271 const bool isVariadic = is_variadic;
8272 const bool isPropertyAccessor =
false;
8273 const bool isSynthesizedAccessorStub =
false;
8275 const bool isImplicitlyDeclared =
true;
8276 const bool isDefined =
false;
8277 const clang::ObjCImplementationControl impControl =
8278 clang::ObjCImplementationControl::None;
8279 const bool HasRelatedResultType =
false;
8281 const unsigned num_args = method_function_prototype->getNumParams();
8283 if (num_args != num_selectors_with_args)
8287 auto *objc_method_decl =
8288 clang::ObjCMethodDecl::CreateDeserialized(ast, GlobalDeclID());
8289 objc_method_decl->setDeclName(method_selector);
8290 objc_method_decl->setReturnType(method_function_prototype->getReturnType());
8291 objc_method_decl->setDeclContext(
8293 objc_method_decl->setInstanceMethod(isInstance);
8294 objc_method_decl->setVariadic(isVariadic);
8295 objc_method_decl->setPropertyAccessor(isPropertyAccessor);
8296 objc_method_decl->setSynthesizedAccessorStub(isSynthesizedAccessorStub);
8297 objc_method_decl->setImplicit(isImplicitlyDeclared);
8298 objc_method_decl->setDefined(isDefined);
8299 objc_method_decl->setDeclImplementation(impControl);
8300 objc_method_decl->setRelatedResultType(HasRelatedResultType);
8303 if (objc_method_decl ==
nullptr)
8307 llvm::SmallVector<clang::ParmVarDecl *, 12> params;
8309 for (
unsigned param_index = 0; param_index < num_args; ++param_index) {
8310 params.push_back(clang::ParmVarDecl::Create(
8311 ast, objc_method_decl, clang::SourceLocation(),
8312 clang::SourceLocation(),
8314 method_function_prototype->getParamType(param_index),
nullptr,
8315 clang::SC_Auto,
nullptr));
8318 objc_method_decl->setMethodParams(
8319 ast, llvm::ArrayRef<clang::ParmVarDecl *>(params),
8320 llvm::ArrayRef<clang::SourceLocation>());
8323 if (is_objc_direct_call) {
8326 objc_method_decl->addAttr(
8327 clang::ObjCDirectAttr::CreateImplicit(ast, SourceLocation()));
8332 objc_method_decl->createImplicitParams(ast, class_interface_decl);
8335 class_interface_decl->addDecl(objc_method_decl);
8337 VerifyDecl(objc_method_decl);
8339 return objc_method_decl;
8349 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
8350 switch (type_class) {
8351 case clang::Type::Record: {
8352 clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
8353 if (cxx_record_decl) {
8354 cxx_record_decl->setHasExternalLexicalStorage(has_extern);
8355 cxx_record_decl->setHasExternalVisibleStorage(has_extern);
8360 case clang::Type::Enum: {
8361 clang::EnumDecl *enum_decl =
8362 llvm::cast<clang::EnumType>(qual_type)->getDecl();
8364 enum_decl->setHasExternalLexicalStorage(has_extern);
8365 enum_decl->setHasExternalVisibleStorage(has_extern);
8370 case clang::Type::ObjCObject:
8371 case clang::Type::ObjCInterface: {
8372 const clang::ObjCObjectType *objc_class_type =
8373 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
8374 assert(objc_class_type);
8375 if (objc_class_type) {
8376 clang::ObjCInterfaceDecl *class_interface_decl =
8377 objc_class_type->getInterface();
8379 if (class_interface_decl) {
8380 class_interface_decl->setHasExternalLexicalStorage(has_extern);
8381 class_interface_decl->setHasExternalVisibleStorage(has_extern);
8397 if (!qual_type.isNull()) {
8398 const clang::TagType *tag_type = qual_type->getAs<clang::TagType>();
8400 clang::TagDecl *tag_decl = tag_type->getDecl();
8402 tag_decl->startDefinition();
8407 const clang::ObjCObjectType *object_type =
8408 qual_type->getAs<clang::ObjCObjectType>();
8410 clang::ObjCInterfaceDecl *interface_decl = object_type->getInterface();
8411 if (interface_decl) {
8412 interface_decl->startDefinition();
8423 if (qual_type.isNull())
8427 if (lldb_ast ==
nullptr)
8433 const clang::TagType *tag_type = qual_type->getAs<clang::TagType>();
8435 clang::TagDecl *tag_decl = tag_type->getDecl()->getDefinitionOrSelf();
8437 if (
auto *cxx_record_decl = llvm::dyn_cast<CXXRecordDecl>(tag_decl)) {
8447 if (cxx_record_decl->hasUserDeclaredMoveConstructor() ||
8448 cxx_record_decl->hasUserDeclaredMoveAssignment()) {
8449 if (cxx_record_decl->needsImplicitCopyConstructor())
8450 cxx_record_decl->setImplicitCopyConstructorIsDeleted();
8451 if (cxx_record_decl->needsImplicitCopyAssignment())
8452 cxx_record_decl->setImplicitCopyAssignmentIsDeleted();
8455 if (!cxx_record_decl->isCompleteDefinition())
8456 cxx_record_decl->completeDefinition();
8457 cxx_record_decl->setHasLoadedFieldsFromExternalStorage(
true);
8458 cxx_record_decl->setHasExternalLexicalStorage(
false);
8459 cxx_record_decl->setHasExternalVisibleStorage(
false);
8464 const clang::EnumType *enutype = qual_type->getAs<clang::EnumType>();
8468 clang::EnumDecl *enum_decl = enutype->getDecl()->getDefinitionOrSelf();
8470 if (enum_decl->isCompleteDefinition())
8473 QualType integer_type(enum_decl->getIntegerType());
8474 if (!integer_type.isNull()) {
8475 clang::ASTContext &ast = lldb_ast->getASTContext();
8477 unsigned NumNegativeBits = 0;
8478 unsigned NumPositiveBits = 0;
8479 ast.computeEnumBits(enum_decl->enumerators(), NumNegativeBits,
8482 clang::QualType BestPromotionType;
8483 clang::QualType BestType;
8484 ast.computeBestEnumTypes(
false, NumNegativeBits,
8485 NumPositiveBits, BestType, BestPromotionType);
8487 enum_decl->completeDefinition(enum_decl->getIntegerType(),
8488 BestPromotionType, NumPositiveBits,
8496 const llvm::APSInt &value) {
8507 if (!enum_opaque_compiler_type)
8510 clang::QualType enum_qual_type(
8513 const clang::Type *clang_type = enum_qual_type.getTypePtr();
8518 const clang::EnumType *enutype = llvm::dyn_cast<clang::EnumType>(clang_type);
8523 clang::EnumConstantDecl *enumerator_decl =
8524 clang::EnumConstantDecl::CreateDeserialized(
getASTContext(),
8526 clang::EnumDecl *enum_decl = enutype->getDecl()->getDefinitionOrSelf();
8527 enumerator_decl->setDeclContext(enum_decl);
8528 if (name && name[0])
8529 enumerator_decl->setDeclName(&
getASTContext().Idents.get(name));
8530 enumerator_decl->setType(clang::QualType(enutype, 0));
8532 enumerator_decl->setAccess(AS_public);
8538 enum_decl->addDecl(enumerator_decl);
8540 VerifyDecl(enumerator_decl);
8541 return enumerator_decl;
8546 uint64_t enum_value, uint32_t enum_value_bit_size) {
8548 llvm::APSInt value(enum_value_bit_size,
8557 const clang::Type *clang_type = qt.getTypePtrOrNull();
8558 const auto *enum_type = llvm::dyn_cast_or_null<clang::EnumType>(clang_type);
8562 return GetType(enum_type->getDecl()->getDefinitionOrSelf()->getIntegerType());
8568 if (type && pointee_type.
IsValid() &&
8573 return ast->GetType(ast->getASTContext().getMemberPointerType(
8582#define DEPTH_INCREMENT 2
8585LLVM_DUMP_METHOD
void
8595struct ScopedASTColor {
8596 ScopedASTColor(clang::ASTContext &ast,
bool show_colors)
8599 ast.getDiagnostics().getDiagnosticOptions().getShowColors()) {
8600 ast.getDiagnostics().getDiagnosticOptions().setShowColors(
8601 show_colors ? clang::ShowColorsKind::On : clang::ShowColorsKind::Off);
8605 ast.getDiagnostics().getDiagnosticOptions().setShowColors(old_show_colors);
8608 clang::ASTContext *
8609 const clang::ShowColorsKind old_show_colors;
8618 clang::CreateASTDumper(output, filter,
8623 false, clang::ADOF_Default);
8626 consumer->HandleTranslationUnit(*
m_ast_up);
8630 llvm::StringRef symbol_name) {
8637 symfile->
GetTypes(
nullptr, eTypeClassAny, type_list);
8638 size_t ntypes = type_list.
GetSize();
8640 for (
size_t i = 0; i < ntypes; ++i) {
8643 if (!symbol_name.empty())
8644 if (symbol_name != type->GetName().GetStringRef())
8647 s << type->GetName() <<
"\n";
8650 if (clang::TagDecl *tag_decl =
GetAsTagDecl(full_type)) {
8658 if (
auto *objc_obj = llvm::dyn_cast<clang::ObjCObjectType>(
8660 if (clang::ObjCInterfaceDecl *interface_decl = objc_obj->getInterface()) {
8672 size_t byte_size, uint32_t bitfield_bit_offset,
8673 uint32_t bitfield_bit_size) {
8674 const clang::EnumType *enutype =
8675 llvm::cast<clang::EnumType>(qual_type.getTypePtr());
8676 const clang::EnumDecl *enum_decl = enutype->getDecl()->getDefinitionOrSelf();
8678 bool qual_type_is_signed = qual_type->isSignedIntegerOrEnumerationType();
8679 const uint64_t enum_svalue =
8682 bitfield_bit_offset)
8684 bitfield_bit_offset);
8685 bool can_be_bitfield =
true;
8686 uint64_t covered_bits = 0;
8687 int num_enumerators = 0;
8695 clang::EnumDecl::enumerator_range enumerators = enum_decl->enumerators();
8696 if (enumerators.empty())
8697 can_be_bitfield =
false;
8699 for (
auto *enumerator : enumerators) {
8700 llvm::APSInt init_val = enumerator->getInitVal();
8701 uint64_t val = qual_type_is_signed ? init_val.getSExtValue()
8702 : init_val.getZExtValue();
8703 if (qual_type_is_signed)
8704 val = llvm::SignExtend64(val, 8 * byte_size);
8705 if (llvm::popcount(val) != 1 && (val & ~covered_bits) != 0)
8706 can_be_bitfield =
false;
8707 covered_bits |= val;
8709 if (val == enum_svalue) {
8718 offset = byte_offset;
8720 &offset, byte_size, bitfield_bit_size, bitfield_bit_offset);
8724 if (!can_be_bitfield) {
8725 if (qual_type_is_signed)
8726 s.
Printf(
"%" PRIi64, enum_svalue);
8728 s.
Printf(
"%" PRIu64, enum_uvalue);
8735 s.
Printf(
"0x%" PRIx64, enum_uvalue);
8739 uint64_t remaining_value = enum_uvalue;
8740 std::vector<std::pair<uint64_t, llvm::StringRef>> values;
8741 values.reserve(num_enumerators);
8742 for (
auto *enumerator : enum_decl->enumerators())
8743 if (
auto val = enumerator->getInitVal().getZExtValue())
8744 values.emplace_back(val, enumerator->getName());
8749 llvm::stable_sort(values, [](
const auto &a,
const auto &b) {
8750 return llvm::popcount(a.first) > llvm::popcount(b.first);
8753 for (
const auto &val : values) {
8754 if ((remaining_value & val.first) != val.first)
8756 remaining_value &= ~val.first;
8758 if (remaining_value)
8764 if (remaining_value)
8765 s.
Printf(
"0x%" PRIx64, remaining_value);
8773 size_t byte_size, uint32_t bitfield_bit_size, uint32_t bitfield_bit_offset,
8782 switch (qual_type->getTypeClass()) {
8783 case clang::Type::Typedef: {
8784 clang::QualType typedef_qual_type =
8785 llvm::cast<clang::TypedefType>(qual_type)
8787 ->getUnderlyingType();
8790 format = typedef_clang_type.
GetFormat();
8791 clang::TypeInfo typedef_type_info =
8793 uint64_t typedef_byte_size = typedef_type_info.Width / 8;
8803 bitfield_bit_offset,
8808 case clang::Type::Enum:
8813 return DumpEnumValue(qual_type, s, data, byte_offset, byte_size,
8814 bitfield_bit_offset, bitfield_bit_size);
8822 uint32_t item_count = 1;
8862 item_count = byte_size;
8867 item_count = byte_size / 2;
8872 item_count = byte_size / 4;
8878 bitfield_bit_size, bitfield_bit_offset,
8894 if (std::optional<ClangASTMetadata> metadata =
GetMetadata(clang_type)) {
8903 clang::QualType qual_type =
8906 llvm::SmallVector<char, 1024> buf;
8907 llvm::raw_svector_ostream llvm_ostrm(buf);
8909 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
8910 switch (type_class) {
8911 case clang::Type::ObjCObject:
8912 case clang::Type::ObjCInterface: {
8915 auto *objc_class_type =
8916 llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
8917 assert(objc_class_type);
8918 if (!objc_class_type)
8920 clang::ObjCInterfaceDecl *class_interface_decl =
8921 objc_class_type->getInterface();
8922 if (!class_interface_decl)
8925 class_interface_decl->dump(llvm_ostrm);
8927 class_interface_decl->print(llvm_ostrm,
8932 case clang::Type::Typedef: {
8933 auto *typedef_type = qual_type->getAs<clang::TypedefType>();
8936 const clang::TypedefNameDecl *typedef_decl = typedef_type->getDecl();
8938 typedef_decl->dump(llvm_ostrm);
8941 if (!clang_typedef_name.empty()) {
8948 case clang::Type::Record: {
8951 auto *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
8952 const clang::RecordDecl *record_decl = record_type->getDecl();
8954 record_decl->dump(llvm_ostrm);
8956 record_decl->print(llvm_ostrm,
getASTContext().getPrintingPolicy(),
8962 if (
auto *tag_type =
8963 llvm::dyn_cast<clang::TagType>(qual_type.getTypePtr())) {
8964 if (clang::TagDecl *tag_decl = tag_type->getDecl()) {
8966 tag_decl->dump(llvm_ostrm);
8968 tag_decl->print(llvm_ostrm, 0);
8974 std::string clang_type_name(qual_type.getAsString());
8975 if (!clang_type_name.empty())
8982 if (buf.size() > 0) {
8983 s.
Write(buf.data(), buf.size());
8990 clang::QualType qual_type(
8993 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
8994 switch (type_class) {
8995 case clang::Type::Record: {
8996 const clang::CXXRecordDecl *cxx_record_decl =
8997 qual_type->getAsCXXRecordDecl();
8998 if (cxx_record_decl)
8999 printf(
"class %s", cxx_record_decl->getName().str().c_str());
9002 case clang::Type::Enum: {
9003 clang::EnumDecl *enum_decl =
9004 llvm::cast<clang::EnumType>(qual_type)->getDecl();
9006 printf(
"enum %s", enum_decl->getName().str().c_str());
9010 case clang::Type::ObjCObject:
9011 case clang::Type::ObjCInterface: {
9012 const clang::ObjCObjectType *objc_class_type =
9013 llvm::dyn_cast<clang::ObjCObjectType>(qual_type);
9014 if (objc_class_type) {
9015 clang::ObjCInterfaceDecl *class_interface_decl =
9016 objc_class_type->getInterface();
9020 if (class_interface_decl)
9021 printf(
"@class %s", class_interface_decl->getName().str().c_str());
9025 case clang::Type::Typedef:
9026 printf(
"typedef %s", llvm::cast<clang::TypedefType>(qual_type)
9033 case clang::Type::Auto:
9036 llvm::cast<clang::AutoType>(qual_type)
9038 .getAsOpaquePtr()));
9040 case clang::Type::Paren:
9044 llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr()));
9047 printf(
"TypeSystemClang::DumpTypeName() type_class = %u", type_class);
9055 const char *parent_name,
int tag_decl_kind,
9057 if (template_param_infos.
IsValid()) {
9058 std::string template_basename(parent_name);
9060 if (
auto i = template_basename.find(
'<'); i != std::string::npos)
9061 template_basename.erase(i);
9064 template_basename.c_str(), tag_decl_kind,
9065 template_param_infos);
9080 clang::ObjCInterfaceDecl *decl) {
9104 std::make_unique<npdb::PdbAstBuilderClang>(*
this);
9109 const clang::RecordDecl *record_decl, uint64_t &bit_size,
9110 uint64_t &alignment,
9111 llvm::DenseMap<const clang::FieldDecl *, uint64_t> &field_offsets,
9112 llvm::DenseMap<const clang::CXXRecordDecl *, clang::CharUnits>
9114 llvm::DenseMap<const clang::CXXRecordDecl *, clang::CharUnits>
9127 field_offsets, base_offsets, vbase_offsets);
9134 clang::NamedDecl *nd =
9135 llvm::dyn_cast<NamedDecl>((clang::Decl *)opaque_decl);
9145 if (!label_or_err) {
9146 llvm::consumeError(label_or_err.takeError());
9150 llvm::StringRef mangled = label_or_err->lookup_name;
9158 clang::NamedDecl *nd = llvm::dyn_cast_or_null<clang::NamedDecl>(
9159 static_cast<clang::Decl *
>(opaque_decl));
9161 if (!nd || llvm::isa<clang::ObjCMethodDecl>(nd))
9165 if (!mc || !mc->shouldMangleCXXName(nd))
9170 if (
const auto *label = nd->getAttr<AsmLabelAttr>())
9175 llvm::SmallVector<char, 1024> buf;
9176 llvm::raw_svector_ostream llvm_ostrm(buf);
9177 if (llvm::isa<clang::CXXConstructorDecl>(nd)) {
9179 clang::GlobalDecl(llvm::dyn_cast<clang::CXXConstructorDecl>(nd),
9182 }
else if (llvm::isa<clang::CXXDestructorDecl>(nd)) {
9184 clang::GlobalDecl(llvm::dyn_cast<clang::CXXDestructorDecl>(nd),
9188 mc->mangleName(nd, llvm_ostrm);
9204 if (clang::FunctionDecl *func_decl =
9205 llvm::dyn_cast<clang::FunctionDecl>((clang::Decl *)opaque_decl))
9206 return GetType(func_decl->getReturnType());
9207 if (clang::ObjCMethodDecl *objc_method =
9208 llvm::dyn_cast<clang::ObjCMethodDecl>((clang::Decl *)opaque_decl))
9209 return GetType(objc_method->getReturnType());
9215 if (clang::FunctionDecl *func_decl =
9216 llvm::dyn_cast<clang::FunctionDecl>((clang::Decl *)opaque_decl))
9217 return func_decl->param_size();
9218 if (clang::ObjCMethodDecl *objc_method =
9219 llvm::dyn_cast<clang::ObjCMethodDecl>((clang::Decl *)opaque_decl))
9220 return objc_method->param_size();
9226 clang::DeclContext
const *decl_ctx) {
9227 switch (clang_kind) {
9228 case Decl::TranslationUnit:
9230 case Decl::Namespace:
9241 if (decl_ctx->isFunctionOrMethod())
9243 if (decl_ctx->isRecord())
9253 std::vector<lldb_private::CompilerContext> &context) {
9254 if (decl_ctx ==
nullptr)
9257 clang::Decl::Kind clang_kind = decl_ctx->getDeclKind();
9258 if (clang_kind == Decl::TranslationUnit)
9263 context.push_back({compiler_kind, decl_ctx_name});
9266std::vector<lldb_private::CompilerContext>
9268 std::vector<lldb_private::CompilerContext> context;
9271 clang::Decl *decl = (clang::Decl *)opaque_decl;
9273 clang::DeclContext *decl_ctx = decl->getDeclContext();
9276 auto compiler_kind =
9278 context.push_back({compiler_kind, decl_name});
9285 if (clang::FunctionDecl *func_decl =
9286 llvm::dyn_cast<clang::FunctionDecl>((clang::Decl *)opaque_decl)) {
9287 if (idx < func_decl->param_size()) {
9288 ParmVarDecl *var_decl = func_decl->getParamDecl(idx);
9290 return GetType(var_decl->getOriginalType());
9292 }
else if (clang::ObjCMethodDecl *objc_method =
9293 llvm::dyn_cast<clang::ObjCMethodDecl>(
9294 (clang::Decl *)opaque_decl)) {
9295 if (idx < objc_method->param_size())
9296 return GetType(objc_method->parameters()[idx]->getOriginalType());
9302 clang::Decl *decl =
static_cast<clang::Decl *
>(opaque_decl);
9303 clang::VarDecl *var_decl = llvm::dyn_cast<clang::VarDecl>(decl);
9306 clang::Expr *init_expr = var_decl->getInit();
9309 std::optional<llvm::APSInt> value =
9319 void *opaque_decl_ctx,
ConstString name,
const bool ignore_using_decls) {
9320 std::vector<CompilerDecl> found_decls;
9322 if (opaque_decl_ctx && symbol_file) {
9323 DeclContext *root_decl_ctx = (DeclContext *)opaque_decl_ctx;
9324 std::set<DeclContext *> searched;
9325 std::multimap<DeclContext *, DeclContext *> search_queue;
9327 for (clang::DeclContext *decl_context = root_decl_ctx;
9328 decl_context !=
nullptr && found_decls.empty();
9329 decl_context = decl_context->getParent()) {
9330 search_queue.insert(std::make_pair(decl_context, decl_context));
9332 for (
auto it = search_queue.find(decl_context); it != search_queue.end();
9334 if (!searched.insert(it->second).second)
9339 for (clang::Decl *child : it->second->decls()) {
9340 if (clang::UsingDirectiveDecl *ud =
9341 llvm::dyn_cast<clang::UsingDirectiveDecl>(child)) {
9342 if (ignore_using_decls)
9344 clang::DeclContext *from = ud->getCommonAncestor();
9345 if (searched.find(ud->getNominatedNamespace()) == searched.end())
9346 search_queue.insert(
9347 std::make_pair(from, ud->getNominatedNamespace()));
9348 }
else if (clang::UsingDecl *ud =
9349 llvm::dyn_cast<clang::UsingDecl>(child)) {
9350 if (ignore_using_decls)
9352 for (clang::UsingShadowDecl *usd : ud->shadows()) {
9353 clang::Decl *target = usd->getTargetDecl();
9354 if (clang::NamedDecl *nd =
9355 llvm::dyn_cast<clang::NamedDecl>(target)) {
9356 IdentifierInfo *ii = nd->getIdentifier();
9357 if (ii !=
nullptr && ii->getName() == name.
AsCString(
nullptr))
9361 }
else if (clang::NamedDecl *nd =
9362 llvm::dyn_cast<clang::NamedDecl>(child)) {
9363 IdentifierInfo *ii = nd->getIdentifier();
9364 if (ii !=
nullptr && ii->getName() == name.
AsCString(
nullptr))
9415 clang::DeclContext *child_decl_ctx,
9419 if (frame_decl_ctx && symbol_file) {
9420 std::set<DeclContext *> searched;
9421 std::multimap<DeclContext *, DeclContext *> search_queue;
9424 clang::DeclContext *parent_decl_ctx = child_decl_ctx->getParent();
9428 for (clang::DeclContext *decl_ctx = frame_decl_ctx; decl_ctx !=
nullptr;
9429 decl_ctx = decl_ctx->getParent()) {
9430 if (!decl_ctx->isLookupContext())
9432 if (decl_ctx == parent_decl_ctx)
9435 search_queue.insert(std::make_pair(decl_ctx, decl_ctx));
9436 for (
auto it = search_queue.find(decl_ctx); it != search_queue.end();
9438 if (searched.find(it->second) != searched.end())
9446 if (llvm::isa<clang::TranslationUnitDecl>(it->second))
9449 searched.insert(it->second);
9453 for (clang::Decl *child : it->second->decls()) {
9454 if (clang::UsingDirectiveDecl *ud =
9455 llvm::dyn_cast<clang::UsingDirectiveDecl>(child)) {
9456 clang::DeclContext *ns = ud->getNominatedNamespace();
9457 if (ns == parent_decl_ctx)
9460 clang::DeclContext *from = ud->getCommonAncestor();
9461 if (searched.find(ns) == searched.end())
9462 search_queue.insert(std::make_pair(from, ns));
9463 }
else if (child_name) {
9464 if (clang::UsingDecl *ud =
9465 llvm::dyn_cast<clang::UsingDecl>(child)) {
9466 for (clang::UsingShadowDecl *usd : ud->shadows()) {
9467 clang::Decl *target = usd->getTargetDecl();
9468 clang::NamedDecl *nd = llvm::dyn_cast<clang::NamedDecl>(target);
9472 IdentifierInfo *ii = nd->getIdentifier();
9473 if (ii ==
nullptr ||
9474 ii->getName() != child_name->
AsCString(
nullptr))
9497 if (opaque_decl_ctx) {
9498 clang::NamedDecl *named_decl =
9499 llvm::dyn_cast<clang::NamedDecl>((clang::DeclContext *)opaque_decl_ctx);
9502 llvm::raw_string_ostream stream{name};
9504 policy.AlwaysIncludeTypeForTemplateArgument =
true;
9505 named_decl->getNameForDiagnostic(stream, policy,
false);
9514 if (opaque_decl_ctx) {
9515 clang::NamedDecl *named_decl =
9516 llvm::dyn_cast<clang::NamedDecl>((clang::DeclContext *)opaque_decl_ctx);
9524 if (!opaque_decl_ctx)
9527 clang::DeclContext *decl_ctx = (clang::DeclContext *)opaque_decl_ctx;
9528 if (llvm::isa<clang::ObjCMethodDecl>(decl_ctx)) {
9530 }
else if (llvm::isa<clang::CXXMethodDecl>(decl_ctx)) {
9532 }
else if (clang::FunctionDecl *fun_decl =
9533 llvm::dyn_cast<clang::FunctionDecl>(decl_ctx)) {
9534 if (std::optional<ClangASTMetadata> metadata =
GetMetadata(fun_decl))
9535 return metadata->HasObjectPtr();
9541std::vector<lldb_private::CompilerContext>
9543 auto *decl_ctx = (clang::DeclContext *)opaque_decl_ctx;
9544 std::vector<lldb_private::CompilerContext> context;
9550 void *opaque_decl_ctx,
void *other_opaque_decl_ctx) {
9551 auto *decl_ctx = (clang::DeclContext *)opaque_decl_ctx;
9552 auto *other = (clang::DeclContext *)other_opaque_decl_ctx;
9556 auto is_transparent_lookup_allowed = [](clang::DeclContext *DC) {
9557 if (DC->isInlineNamespace())
9560 if (
auto const *NS = dyn_cast<NamespaceDecl>(DC))
9561 return NS->isAnonymousNamespace();
9568 if (decl_ctx == other)
9570 }
while (is_transparent_lookup_allowed(other) &&
9571 (other = other->getParent()));
9578 if (!opaque_decl_ctx)
9581 auto *decl_ctx = (clang::DeclContext *)opaque_decl_ctx;
9582 if (llvm::isa<clang::ObjCMethodDecl>(decl_ctx)) {
9584 }
else if (llvm::isa<clang::CXXMethodDecl>(decl_ctx)) {
9586 }
else if (
auto *fun_decl = llvm::dyn_cast<clang::FunctionDecl>(decl_ctx)) {
9587 if (std::optional<ClangASTMetadata> metadata =
GetMetadata(fun_decl))
9588 return metadata->GetObjectPtrLanguage();
9608 return llvm::dyn_cast<clang::ObjCMethodDecl>(
9616 return llvm::dyn_cast<clang::CXXMethodDecl>(
9621clang::FunctionDecl *
9624 return llvm::dyn_cast<clang::FunctionDecl>(
9629clang::NamespaceDecl *
9632 return llvm::dyn_cast<clang::NamespaceDecl>(
9637std::optional<ClangASTMetadata>
9639 const Decl *
object) {
9647 llvm::dyn_cast_or_null<TypeSystemClang>(dc.
GetTypeSystem());
9670 lldbassert(started &&
"Unable to start a class type definition.");
9675 ts->SetDeclIsForcefullyCompleted(td);
9689 SpecializedScratchAST(llvm::StringRef name, llvm::Triple triple,
9690 std::unique_ptr<ClangASTSource> ast_source)
9692 m_scratch_ast_source_up(std::move(ast_source)) {
9694 m_scratch_ast_source_up->InstallASTContext(*
this);
9695 llvm::IntrusiveRefCntPtr<clang::ExternalASTSource> proxy_ast_source =
9696 m_scratch_ast_source_up->CreateProxy();
9697 SetExternalSource(proxy_ast_source);
9701 std::unique_ptr<ClangASTSource> m_scratch_ast_source_up;
9709 llvm::Triple triple)
9716 llvm::IntrusiveRefCntPtr<clang::ExternalASTSource> proxy_ast_source =
9728 std::optional<IsolatedASTKind> ast_kind,
9729 bool create_on_demand) {
9732 if (
auto err = type_system_or_err.takeError()) {
9734 "Couldn't get scratch TypeSystemClang: {0}");
9737 auto ts_sp = *type_system_or_err;
9739 llvm::dyn_cast_or_null<ScratchTypeSystemClang>(ts_sp.get());
9744 return std::static_pointer_cast<TypeSystemClang>(ts_sp);
9746 return std::static_pointer_cast<TypeSystemClang>(
9751static llvm::StringRef
9755 return "C++ modules";
9757 llvm_unreachable(
"Unimplemented IsolatedASTKind?");
9761 llvm::StringRef filter,
bool show_color) {
9763 output <<
"State of scratch Clang type system:\n";
9767 typedef std::pair<IsolatedASTKey, TypeSystem *> KeyAndTS;
9768 std::vector<KeyAndTS> sorted_typesystems;
9770 sorted_typesystems.emplace_back(a.first, a.second.get());
9771 llvm::stable_sort(sorted_typesystems, llvm::less_first());
9774 for (
const auto &a : sorted_typesystems) {
9777 output <<
"State of scratch Clang type subsystem "
9779 a.second->Dump(output, filter, show_color);
9784 llvm::StringRef expr, llvm::StringRef prefix,
SourceLanguage language,
9792 desired_type, options, ctx_obj);
9797 const ValueList &arg_value_list,
const char *name) {
9802 Process *process = target_sp->GetProcessSP().get();
9807 arg_value_list, name);
9810std::unique_ptr<UtilityFunction>
9817 return std::make_unique<ClangUtilityFunction>(
9818 *target_sp.get(), std::move(text), std::move(name),
9819 target_sp->GetDebugUtilityExpression());
9833 importer.
ForgetSource(&a.second->getASTContext(), src_ctx);
9837 return std::make_unique<ClangASTSource>(
9842static llvm::StringRef
9846 return "scratch ASTContext for C++ module types";
9848 llvm_unreachable(
"Unimplemented ASTFeature kind?");
9855 return *found_ast->second;
9858 std::shared_ptr<TypeSystemClang> new_ast_sp =
9868 const clang::RecordType *record_type =
9869 llvm::dyn_cast<clang::RecordType>(qual_type.getTypePtr());
9871 const clang::RecordDecl *record_decl =
9872 record_type->getDecl()->getDefinitionOrSelf();
9873 if (std::optional<ClangASTMetadata> metadata =
GetMetadata(record_decl))
9874 return metadata->IsForcefullyCompleted();
9883 std::optional<ClangASTMetadata> metadata =
GetMetadata(td);
9887 metadata->SetIsForcefullyCompleted();
9895 LLDB_LOG(log,
"Created new TypeSystem for (ASTContext*){0:x} '{1}'",
#define LLDB_LOG(log,...)
The LLDB_LOG* macros defined below are the way to emit log messages.
#define LLDB_LOGF(log,...)
#define LLDB_LOG_ERROR(log, error,...)
#define LLDB_PLUGIN_DEFINE(PluginName)
static bool DumpEnumValue(const clang::QualType &qual_type, Stream &s, const DataExtractor &data, lldb::offset_t byte_offset, size_t byte_size, uint32_t bitfield_bit_offset, uint32_t bitfield_bit_size)
static lldb::opaque_compiler_type_t GetObjCFieldAtIndex(clang::ASTContext *ast, clang::ObjCInterfaceDecl *class_interface_decl, size_t idx, std::string &name, uint64_t *bit_offset_ptr, uint32_t *bitfield_bit_size_ptr, bool *is_bitfield_ptr)
static void ParseLangArgs(LangOptions &Opts, ArchSpec arch)
static const clang::EnumType * GetCompleteEnumType(const clang::ASTContext *ast, clang::QualType qual_type)
Returns the clang::EnumType of the specified qual_type.
static clang::QualType GetFullyUnqualifiedType_Impl(clang::ASTContext *ast, clang::QualType qual_type)
const TemplateArgument * GetNthTemplateArgument(const clang::ClassTemplateSpecializationDecl *decl, size_t idx, bool expand_pack)
static int64_t ReadVBaseOffsetFromVTable(Process &process, VTableContextBase &vtable_ctx, lldb::addr_t vtable_ptr, const CXXRecordDecl *cxx_record_decl, const CXXRecordDecl *base_class_decl)
lldb_private::ThreadSafeDenseMap< clang::ASTContext *, TypeSystemClang * > ClangASTMap
static bool IsClangDeclContext(const CompilerDeclContext &dc)
static bool TemplateParameterAllowsValue(NamedDecl *param, const TemplateArgument &value)
Returns true if the given template parameter can represent the given value.
static CompilerContextKind GetCompilerKind(clang::Decl::Kind clang_kind, clang::DeclContext const *decl_ctx)
static QualType RemoveWrappingTypes(QualType type, ArrayRef< clang::Type::TypeClass > mask={})
Aggressively desugar the provided type, skipping past various kinds of syntactic sugar and other cons...
static TemplateParameterList * CreateTemplateParameterList(ASTContext &ast, const TypeSystemClang::TemplateParameterInfos &template_param_infos, llvm::SmallVector< NamedDecl *, 8 > &template_param_decls)
clang::DeclContext * FindLCABetweenDecls(clang::DeclContext *left, clang::DeclContext *right, clang::DeclContext *root)
static const clang::RecordType * GetCompleteRecordType(const clang::ASTContext *ast, clang::QualType qual_type)
Returns the clang::RecordType of the specified qual_type.
static bool check_op_param(bool is_method, clang::OverloadedOperatorKind op_kind, bool unary, bool binary, uint32_t num_params)
static llvm::StringRef GetSpecializedASTName(ScratchTypeSystemClang::IsolatedASTKind feature)
static bool ObjCDeclHasIVars(clang::ObjCInterfaceDecl *class_interface_decl)
static lldb::addr_t GetVTableAddress(Process &process, VTableContextBase &vtable_ctx, ValueObject &valobj, const ASTRecordLayout &record_layout)
static std::optional< SymbolFile::ArrayInfo > GetDynamicArrayInfo(TypeSystemClang &ast, SymbolFile *sym_file, clang::QualType qual_type, const ExecutionContext *exe_ctx)
static ConstString ExtractMangledNameFromFunctionCallLabel(llvm::StringRef label)
static bool GetCompleteQualType(const clang::ASTContext *ast, clang::QualType qual_type)
static llvm::StringRef GetNameForIsolatedASTKind(ScratchTypeSystemClang::IsolatedASTKind kind)
Returns a human-readable name that uniquely identifiers the sub-AST kind.
static void InsertCompilerContext(TypeSystemClang *ts, clang::DeclContext *decl_ctx, std::vector< lldb_private::CompilerContext > &context)
static bool GetVBaseBitOffset(VTableContextBase &vtable_ctx, ValueObject &valobj, const ASTRecordLayout &record_layout, const CXXRecordDecl *cxx_record_decl, const CXXRecordDecl *base_class_decl, int32_t &bit_offset)
static bool QualTypeMatchesBitSize(const uint64_t bit_size, ASTContext &ast, QualType qual_type)
static ClangASTMap & GetASTMap()
static void SetMemberOwningModule(clang::Decl *member, const clang::Decl *parent)
static bool ClassTemplateAllowsToInstantiationArgs(ClassTemplateDecl *class_template_decl, const TypeSystemClang::TemplateParameterInfos &instantiation_values)
Returns true if the given class template declaration could produce an instantiation with the specifie...
static const clang::ObjCObjectType * GetCompleteObjCObjectType(const clang::ASTContext *ast, QualType qual_type)
Returns the clang::ObjCObjectType of the specified qual_type.
#define LLDB_INVALID_DECL_LEVEL
void HandleDiagnostic(DiagnosticsEngine::Level DiagLevel, const clang::Diagnostic &info) override
DiagnosticConsumer * clone(DiagnosticsEngine &Diags) const
A section + offset based address class.
An architecture specification class.
bool IsValid() const
Tests if this ArchSpec is valid.
llvm::Triple & GetTriple()
Architecture triple accessor.
bool CharIsSignedByDefault() const
Returns true if 'char' is a signed type by default in the architecture false otherwise.
A command line argument class.
size_t GetArgumentCount() const
Gets the number of arguments left in this command object.
const char * GetArgumentAtIndex(size_t idx) const
Gets the null-terminated C string argument pointer for the argument at index idx.
Manages and observes all Clang AST node importing in LLDB.
bool LayoutRecordType(const clang::RecordDecl *record_decl, uint64_t &bit_size, uint64_t &alignment, llvm::DenseMap< const clang::FieldDecl *, uint64_t > &field_offsets, llvm::DenseMap< const clang::CXXRecordDecl *, clang::CharUnits > &base_offsets, llvm::DenseMap< const clang::CXXRecordDecl *, clang::CharUnits > &vbase_offsets)
void ForgetSource(clang::ASTContext *dst_ctx, clang::ASTContext *src_ctx)
"lldb/Expression/ClangFunctionCaller.h" Encapsulates a function that can be called.
"lldb/Expression/ClangPersistentVariables.h" Manages persistent values that need to be preserved betw...
"lldb/Expression/ClangUserExpression.h" Encapsulates a single expression for use with Clang
CommandObject * GetCommandObjectForCommand(llvm::StringRef &command_line)
void AppendError(llvm::StringRef in_string)
void SetStatus(lldb::ReturnStatus status)
void AppendErrorWithFormat(const char *format,...) __attribute__((format(printf
Stream & GetOutputStream()
Represents a generic declaration context in a program.
TypeSystem * GetTypeSystem() const
void * GetOpaqueDeclContext() const
Represents a generic declaration such as a function declaration.
lldb::TypeSystemSP GetSharedPointer() const
Generic representation of a type in a programming language.
lldb::LanguageType GetMinimumLanguage()
bool IsEnumerationType(bool &is_signed) const
TypeSystemSPWrapper GetTypeSystem() const
Accessors.
void SetCompilerType(lldb::TypeSystemWP type_system, lldb::opaque_compiler_type_t type)
size_t GetIndexOfChildMemberWithName(llvm::StringRef name, bool omit_empty_base_classes, std::vector< uint32_t > &child_indexes) const
Lookup a child member given a name.
CompilerType GetPointerType() const
Return a new CompilerType that is a pointer to this type.
llvm::Expected< uint64_t > GetByteSize(ExecutionContextScope *exe_scope) const
Return the size of the type in bytes.
lldb::opaque_compiler_type_t GetOpaqueQualType() const
lldb::Encoding GetEncoding() const
uint32_t GetNumDirectBaseClasses() const
ConstString GetTypeName(bool BaseOnly=false) const
bool IsEnumerationIntegerTypeSigned() const
bool DumpTypeValue(Stream *s, lldb::Format format, const DataExtractor &data, lldb::offset_t data_offset, size_t data_byte_size, uint32_t bitfield_bit_size, uint32_t bitfield_bit_offset, ExecutionContextScope *exe_scope)
bool IsAggregateType() const
lldb::Format GetFormat() const
llvm::Expected< CompilerType > GetChildCompilerTypeAtIndex(ExecutionContext *exe_ctx, size_t idx, bool transparent_pointers, bool omit_empty_base_classes, bool ignore_array_bounds, std::string &child_name, uint32_t &child_byte_size, int32_t &child_byte_offset, uint32_t &child_bitfield_bit_size, uint32_t &child_bitfield_bit_offset, bool &child_is_base_class, bool &child_is_deref_of_parent, ValueObject *valobj, uint64_t &language_flags) const
CompilerType GetDirectBaseClassAtIndex(size_t idx, uint32_t *bit_offset_ptr) const
bool GetCompleteType() const
Type Completion.
uint32_t GetTypeInfo(CompilerType *pointee_or_element_compiler_type=nullptr) const
llvm::Expected< uint32_t > GetIndexOfChildWithName(llvm::StringRef name, bool omit_empty_base_classes) const
Lookup a child given a name.
llvm::Expected< uint32_t > GetNumChildren(bool omit_empty_base_classes, const ExecutionContext *exe_ctx) const
llvm::Expected< uint64_t > GetBitSize(ExecutionContextScope *exe_scope) const
Return the size of the type in bits.
A uniqued constant string class.
llvm::StringRef GetStringRef() const
Get the string value as a llvm::StringRef.
const char * GetCString() const
Get the string value as a C string.
const char * AsCString(const char *value_if_empty) const
Get the string value as a C string.
A class to manage flag bits.
CommandInterpreter & GetCommandInterpreter()
static void ReportWarning(std::string message, std::optional< lldb::user_id_t > debugger_id=std::nullopt, std::once_flag *once=nullptr)
Report warning events.
A class that describes the declaration location of a lldb object.
"lldb/Target/ExecutionContextScope.h" Inherit from this if your object can reconstruct its execution ...
"lldb/Target/ExecutionContext.h" A class that contains an execution context.
ExecutionContextScope * GetBestExecutionContextScope() const
Process * GetProcessPtr() const
Returns a pointer to the process object.
llvm::StringRef GetFileNameExtension() const
Extract the extension of the file.
static FileSystem & Instance()
bool Test(ValueType bit) const
Test a single flag bit.
bool AnySet(ValueType mask) const
Test one or more flags.
Encapsulates a function that can be called.
static bool LanguageIsC(lldb::LanguageType language)
static bool LanguageIsCPlusPlus(lldb::LanguageType language)
static bool LanguageIsPascal(lldb::LanguageType language)
static bool LanguageIsObjC(lldb::LanguageType language)
static bool IsMangledName(llvm::StringRef name)
bool SetClangModulesCachePath(const FileSpec &path)
static ModuleListProperties & GetGlobalModuleListProperties()
A class that describes an executable image and its associated object and symbol files.
virtual size_t GetByteOffsetForIvar(CompilerType &parent_qual_type, const char *ivar_name)
static ObjCLanguageRuntime * Get(Process &process)
unsigned GetValue() const
static bool RegisterPlugin(llvm::StringRef name, llvm::StringRef description, ABICreateInstance create_callback)
static bool UnregisterPlugin(ABICreateInstance create_callback)
A plug-in interface definition class for debugging a process.
int64_t ReadSignedIntegerFromMemory(lldb::addr_t load_addr, size_t byte_size, int64_t fail_value, Status &error)
llvm::Expected< lldb::addr_t > ReadPointerFromMemory(lldb::addr_t vm_addr)
uint32_t GetAddressByteSize() const
void Finalize() override
Free up any resources associated with this TypeSystem.
static lldb::TypeSystemClangSP GetForTarget(Target &target, std::optional< IsolatedASTKind > ast_kind=DefaultAST, bool create_on_demand=true)
Returns the scratch TypeSystemClang for the given target.
llvm::Triple m_triple
The target triple.
std::unique_ptr< ClangASTSource > CreateASTSource()
lldb::TargetWP m_target_wp
TypeSystemClang & GetIsolatedAST(IsolatedASTKind feature)
Returns the requested sub-AST.
UserExpression * GetUserExpression(llvm::StringRef expr, llvm::StringRef prefix, SourceLanguage language, Expression::ResultType desired_type, const EvaluateExpressionOptions &options, ValueObject *ctx_obj) override
std::unique_ptr< ClangASTSource > m_scratch_ast_source_up
The ExternalASTSource that performs lookups and completes minimally imported types.
IsolatedASTKind
The different kinds of isolated ASTs within the scratch TypeSystem.
@ CppModules
The isolated AST for declarations/types from expressions that imported type information from a C++ mo...
void Dump(llvm::raw_ostream &output, llvm::StringRef filter, bool show_color) override
std::unique_ptr< ClangPersistentVariables > m_persistent_variables
The persistent variables associated with this process for the expression parser.
static char ID
LLVM RTTI support.
PersistentExpressionState * GetPersistentExpressionState() override
FunctionCaller * GetFunctionCaller(const CompilerType &return_type, const Address &function_address, const ValueList &arg_value_list, const char *name) override
std::unique_ptr< UtilityFunction > CreateUtilityFunction(std::string text, std::string name) override
void ForgetSource(clang::ASTContext *src_ctx, ClangASTImporter &importer)
Unregisters the given ASTContext as a source from the scratch AST (and all sub-ASTs).
static const std::nullopt_t DefaultAST
Alias for requesting the default scratch TypeSystemClang in GetForTarget.
ScratchTypeSystemClang(Target &target, llvm::Triple triple)
llvm::DenseMap< IsolatedASTKey, std::shared_ptr< TypeSystemClang > > m_isolated_asts
Map from IsolatedASTKind to their actual TypeSystemClang instance.
bool Fail() const
Test for error condition.
llvm::StringRef GetString() const
A stream class that can stream formatted output to a file.
size_t Write(const void *src, size_t src_len)
Output character bytes to the stream.
llvm::raw_ostream & AsRawOstream()
Returns a raw_ostream that forwards the data to this Stream object.
size_t Printf(const char *format,...) __attribute__((format(printf
Output printf formatted output to the stream.
size_t PutCString(llvm::StringRef cstr)
Output a C string to the stream.
unsigned GetIndentLevel() const
Get the current indentation level.
Provides public interface for all SymbolFiles.
virtual void ParseDeclsForContext(CompilerDeclContext decl_ctx)
virtual bool CompleteType(CompilerType &compiler_type)=0
virtual void GetTypes(lldb_private::SymbolContextScope *sc_scope, lldb::TypeClass type_mask, lldb_private::TypeList &type_list)=0
virtual std::optional< ArrayInfo > GetDynamicArrayInfoForUID(lldb::user_id_t type_uid, const lldb_private::ExecutionContext *exe_ctx)=0
If type_uid points to an array type, return its characteristics.
llvm::Expected< lldb::TypeSystemSP > GetScratchTypeSystemForLanguage(lldb::LanguageType language, bool create_on_demand=true)
const ArchSpec & GetArchitecture() const
void Insert(_KeyType k, _ValueType v)
_ValueType Lookup(_KeyType k)
lldb::TypeSP GetTypeAtIndex(uint32_t idx) const
The implementation of lldb::Type's m_payload field for TypeSystemClang.
void SetIsCompleteObjCClass(bool is_complete_objc_class)
bool IsCompleteObjCClass()
Type::Payload m_payload
The payload is used for typedefs and ptrauth types.
TypePayloadClang()=default
void SetOwningModule(OptionalClangModuleID id)
static constexpr unsigned ObjCClassBit
llvm::ArrayRef< clang::TemplateArgument > GetParameterPackArgs() const
void SetParameterPack(std::unique_ptr< TemplateParameterInfos > args)
clang::TemplateArgument const & Front() const
llvm::StringRef GetPackName() const
bool hasParameterPack() const
TemplateParameterInfos const & GetParameterPack() const
llvm::ArrayRef< const char * > GetNames() const
llvm::ArrayRef< clang::TemplateArgument > GetArgs() const
A TypeSystem implementation based on Clang.
bool IsMemberFunctionPointerType(lldb::opaque_compiler_type_t type) override
clang::ClassTemplateDecl * CreateClassTemplateDecl(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, llvm::StringRef class_name, int kind, const TemplateParameterInfos &infos)
clang::ClassTemplateDecl * ParseClassTemplateDecl(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, const char *parent_name, int tag_decl_kind, const TypeSystemClang::TemplateParameterInfos &template_param_infos)
CompilerType GetTypeForIdentifier(const clang::ASTContext &Ctx, llvm::StringRef type_name, clang::DeclContext *decl_context=nullptr)
llvm::Expected< uint64_t > GetBitSize(lldb::opaque_compiler_type_t type, ExecutionContextScope *exe_scope) override
CompilerType CreateFunctionType(const CompilerType &result_type, llvm::ArrayRef< CompilerType > args, bool is_variadic, unsigned type_quals, clang::CallingConv cc=clang::CC_C, clang::RefQualifierKind ref_qual=clang::RQ_None)
size_t GetIndexOfChildMemberWithName(lldb::opaque_compiler_type_t type, llvm::StringRef name, bool omit_empty_base_classes, std::vector< uint32_t > &child_indexes) override
static clang::TypedefNameDecl * GetAsTypedefDecl(const CompilerType &type)
std::string GetTypeNameForDecl(const clang::NamedDecl *named_decl, bool qualified=true)
Returns the internal type name for the given NamedDecl using the type printing policy.
static clang::ObjCInterfaceDecl * GetAsObjCInterfaceDecl(const CompilerType &type)
uint32_t m_pointer_byte_size
bool DumpTypeValue(lldb::opaque_compiler_type_t type, Stream &s, lldb::Format format, const DataExtractor &data, lldb::offset_t data_offset, size_t data_byte_size, uint32_t bitfield_bit_size, uint32_t bitfield_bit_offset, ExecutionContextScope *exe_scope) override
std::string m_display_name
A string describing what this TypeSystemClang represents (e.g., AST for debug information,...
ConstString GetTypeName(lldb::opaque_compiler_type_t type, bool base_only) override
static void SetOwningModule(clang::Decl *decl, OptionalClangModuleID owning_module)
Set the owning module for decl.
llvm::Expected< uint64_t > GetObjCBitSize(clang::QualType qual_type, ExecutionContextScope *exe_scope)
std::unique_ptr< clang::TargetInfo > m_target_info_up
std::unique_ptr< clang::LangOptions > m_language_options_up
Scalar DeclGetConstantValue(void *opaque_decl) override
llvm::Expected< CompilerType > GetDereferencedType(lldb::opaque_compiler_type_t type, ExecutionContext *exe_ctx, std::string &deref_name, uint32_t &deref_byte_size, int32_t &deref_byte_offset, ValueObject *valobj, uint64_t &language_flags) override
bool BaseSpecifierIsEmpty(const clang::CXXBaseSpecifier *b)
static uint32_t GetNumPointeeChildren(clang::QualType type)
ConstString DeclGetMangledName(void *opaque_decl) override
CompilerType GetBasicType(lldb::BasicType type)
std::unique_ptr< clang::HeaderSearchOptions > m_header_search_opts_up
clang::UsingDecl * CreateUsingDeclaration(clang::DeclContext *current_decl_ctx, OptionalClangModuleID owning_module, clang::NamedDecl *target)
static clang::AccessSpecifier ConvertAccessTypeToAccessSpecifier(lldb::AccessType access)
CompilerType GetNonReferenceType(lldb::opaque_compiler_type_t type) override
bool IsForcefullyCompleted(lldb::opaque_compiler_type_t type) override
bool SupportsLanguage(lldb::LanguageType language) override
uint32_t GetNumDirectBaseClasses(lldb::opaque_compiler_type_t type) override
OptionalClangModuleID GetOrCreateClangModule(llvm::StringRef name, OptionalClangModuleID parent, bool is_framework=false, bool is_explicit=false)
Synthesize a clang::Module and return its ID or a default-constructed ID.
void CompleteTagDecl(clang::TagDecl *)
std::shared_ptr< clang::TargetOptions > & getTargetOptions()
static TypeSystemClang * GetASTContext(clang::ASTContext *ast_ctx)
bool IsReferenceType(lldb::opaque_compiler_type_t type, CompilerType *pointee_type, bool *is_rvalue) override
CompilerType GetBuiltinTypeForEncodingAndBitSize(lldb::Encoding encoding, size_t bit_size) override
const char * GetTargetTriple()
TypeSystemClang(llvm::StringRef name, llvm::Triple triple)
Constructs a TypeSystemClang with an ASTContext using the given triple.
static lldb::TypeSystemSP CreateInstance(lldb::LanguageType language, Module *module, Target *target)
clang::TargetInfo * getTargetInfo()
clang::FunctionTemplateDecl * CreateFunctionTemplateDecl(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, clang::FunctionDecl *func_decl, const TemplateParameterInfos &infos)
CompilerType CreateArrayType(const CompilerType &element_type, std::optional< size_t > element_count, bool is_vector)
static bool AreTypesSame(CompilerType type1, CompilerType type2, bool ignore_qualifiers=false)
CompilerType GetArrayType(lldb::opaque_compiler_type_t type, uint64_t size) override
bool IsFunctionType(lldb::opaque_compiler_type_t type) override
CompilerType GetFunctionReturnType(lldb::opaque_compiler_type_t type) override
std::optional< ClangASTMetadata > GetMetadata(const clang::Decl *object)
CompilerType GetLValueReferenceType(lldb::opaque_compiler_type_t type) override
bool SetDeclIsForcefullyCompleted(const clang::TagDecl *td)
lldb::Format GetFormat(lldb::opaque_compiler_type_t type) override
bool CanPassInRegisters(const CompilerType &type) override
CompilerDecl GetStaticFieldWithName(lldb::opaque_compiler_type_t type, llvm::StringRef name) override
static clang::DeclContext * GetDeclContextForType(clang::QualType type)
bool IsEnumerationType(lldb::opaque_compiler_type_t type, bool &is_signed) override
bool IsTemplateType(lldb::opaque_compiler_type_t type) override
CompilerType GetTypeTemplateArgument(lldb::opaque_compiler_type_t type, size_t idx, bool expand_pack) override
static bool IsCXXClassType(const CompilerType &type)
bool IsIntegerType(lldb::opaque_compiler_type_t type, bool &is_signed) override
std::unique_ptr< npdb::PdbAstBuilderClang > m_native_pdb_ast_parser_up
uint32_t GetNumFields(lldb::opaque_compiler_type_t type) override
static bool IsOperator(llvm::StringRef name, clang::OverloadedOperatorKind &op_kind)
bool IsCharType(lldb::opaque_compiler_type_t type) override
CompilerType CreateStructForIdentifier(llvm::StringRef type_name, const std::initializer_list< std::pair< const char *, CompilerType > > &type_fields, bool packed=false)
static void SetFloatingInitializerForVariable(clang::VarDecl *var, const llvm::APFloat &init_value)
Initializes a variable with a floating point value.
uint32_t GetTypeInfo(lldb::opaque_compiler_type_t type, CompilerType *pointee_or_element_compiler_type) override
llvm::Expected< CompilerType > GetChildCompilerTypeAtIndex(lldb::opaque_compiler_type_t type, ExecutionContext *exe_ctx, size_t idx, bool transparent_pointers, bool omit_empty_base_classes, bool ignore_array_bounds, std::string &child_name, uint32_t &child_byte_size, int32_t &child_byte_offset, uint32_t &child_bitfield_bit_size, uint32_t &child_bitfield_bit_offset, bool &child_is_base_class, bool &child_is_deref_of_parent, ValueObject *valobj, uint64_t &language_flags) override
CompilerType GetType(clang::QualType qt)
Creates a CompilerType from the given QualType with the current TypeSystemClang instance as the Compi...
static clang::TagDecl * GetAsTagDecl(const CompilerType &type)
ConstString GetDisplayTypeName(lldb::opaque_compiler_type_t type) override
std::string m_target_triple
bool TransferBaseClasses(lldb::opaque_compiler_type_t type, std::vector< std::unique_ptr< clang::CXXBaseSpecifier > > bases)
bool IsBeingDefined(lldb::opaque_compiler_type_t type) override
CompilerType GetPromotedIntegerType(lldb::opaque_compiler_type_t type) override
ConstString DeclContextGetScopeQualifiedName(void *opaque_decl_ctx) override
std::unique_ptr< clang::IdentifierTable > m_identifier_table_up
static lldb::BasicType GetBasicTypeEnumeration(llvm::StringRef name)
static void SetIntegerInitializerForVariable(clang::VarDecl *var, const llvm::APInt &init_value)
Initializes a variable with an integer value.
bool IsPolymorphicClass(lldb::opaque_compiler_type_t type) override
CompilerType GetFieldAtIndex(lldb::opaque_compiler_type_t type, size_t idx, std::string &name, uint64_t *bit_offset_ptr, uint32_t *bitfield_bit_size_ptr, bool *is_bitfield_ptr) override
bool LayoutRecordType(const clang::RecordDecl *record_decl, uint64_t &size, uint64_t &alignment, llvm::DenseMap< const clang::FieldDecl *, uint64_t > &field_offsets, llvm::DenseMap< const clang::CXXRecordDecl *, clang::CharUnits > &base_offsets, llvm::DenseMap< const clang::CXXRecordDecl *, clang::CharUnits > &vbase_offsets)
bool IsScopedEnumerationType(lldb::opaque_compiler_type_t type) override
std::unique_ptr< clang::SourceManager > m_source_manager_up
bool IsVoidType(lldb::opaque_compiler_type_t type) override
static void SetIsPacked(const CompilerType &type)
void ForEachEnumerator(lldb::opaque_compiler_type_t type, std::function< bool(const CompilerType &integer_type, ConstString name, const llvm::APSInt &value)> const &callback) override
CompilerType CreateClassTemplateSpecializationType(clang::ClassTemplateSpecializationDecl *class_template_specialization_decl)
bool IsPointerType(lldb::opaque_compiler_type_t type, CompilerType *pointee_type) override
std::unique_ptr< clang::DiagnosticOptions > m_diagnostic_options_up
void CreateFunctionTemplateSpecializationInfo(clang::FunctionDecl *func_decl, clang::FunctionTemplateDecl *Template, const TemplateParameterInfos &infos)
clang::EnumConstantDecl * AddEnumerationValueToEnumerationType(const CompilerType &enum_type, const Declaration &decl, const char *name, uint64_t enum_value, uint32_t enum_value_bit_size)
llvm::StringRef getDisplayName() const
Returns the display name of this TypeSystemClang that indicates what purpose it serves in LLDB.
static clang::VarDecl * AddVariableToRecordType(const CompilerType &type, llvm::StringRef name, const CompilerType &var_type)
bool IsCStringType(lldb::opaque_compiler_type_t type, uint32_t &length)
CompilerType GetRValueReferenceType(lldb::opaque_compiler_type_t type) override
CompilerDecl GetCompilerDecl(clang::Decl *decl)
Creates a CompilerDecl from the given Decl with the current TypeSystemClang instance as its typesyste...
unsigned GetPtrAuthDiscriminator(lldb::opaque_compiler_type_t type) override
CompilerType GetPointeeType(lldb::opaque_compiler_type_t type) override
bool GetCompleteType(lldb::opaque_compiler_type_t type) override
bool IsBlockPointerType(lldb::opaque_compiler_type_t type, CompilerType *function_pointer_type_ptr) override
bool IsConst(lldb::opaque_compiler_type_t type) override
std::unique_ptr< clang::CXXBaseSpecifier > CreateBaseClassSpecifier(lldb::opaque_compiler_type_t type, lldb::AccessType access, bool is_virtual, bool base_of_class)
CompilerType GetEnumerationIntegerType(lldb::opaque_compiler_type_t type) override
std::vector< CompilerDecl > DeclContextFindDeclByName(void *opaque_decl_ctx, ConstString name, const bool ignore_using_decls) override
const llvm::fltSemantics & GetFloatTypeSemantics(size_t byte_size, lldb::Format format) override
bool IsFloatingPointType(lldb::opaque_compiler_type_t type) override
llvm::Expected< uint32_t > GetIndexOfChildWithName(lldb::opaque_compiler_type_t type, llvm::StringRef name, bool omit_empty_base_classes) override
void setSema(clang::Sema *s)
uint32_t GetPointerByteSize() override
bool IsCompleteType(lldb::opaque_compiler_type_t type) override
CompilerType GetIntTypeFromBitSize(size_t bit_size, bool is_signed)
clang::MangleContext * getMangleContext()
void CompleteObjCInterfaceDecl(clang::ObjCInterfaceDecl *)
unsigned GetPtrAuthKey(lldb::opaque_compiler_type_t type) override
static void DumpDeclContextHiearchy(clang::DeclContext *decl_ctx)
CompilerDeclContext CreateDeclContext(clang::DeclContext *ctx)
Creates a CompilerDeclContext from the given DeclContext with the current TypeSystemClang instance as...
CompilerType GetTypeForFormatters(void *type) override
void SetMetadataAsUserID(const clang::Decl *decl, lldb::user_id_t user_id)
bool IsRuntimeGeneratedType(lldb::opaque_compiler_type_t type) override
This is used by swift.
static LanguageSet GetSupportedLanguagesForExpressions()
clang::FunctionDecl * CreateFunctionDeclaration(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, llvm::StringRef name, const CompilerType &function_Type, clang::StorageClass storage, bool is_inline, llvm::StringRef asm_label)
CompilerType GetTypedefedType(lldb::opaque_compiler_type_t type) override
CompilerDeclContext GetCompilerDeclContextForType(const CompilerType &type) override
Returns the direct parent context of specified type.
std::unique_ptr< clang::SelectorTable > m_selector_table_up
PDBASTParser * GetPDBParser() override
std::optional< CompilerType::IntegralTemplateArgument > GetIntegralTemplateArgument(lldb::opaque_compiler_type_t type, size_t idx, bool expand_pack) override
bool DeclContextIsClassMethod(void *opaque_decl_ctx) override
bool IsMemberDataPointerType(lldb::opaque_compiler_type_t type) override
void SetTargetTriple(llvm::StringRef target_triple)
CompilerType GetVirtualBaseClassAtIndex(lldb::opaque_compiler_type_t type, size_t idx, uint32_t *bit_offset_ptr) override
static bool CheckOverloadedOperatorKindParameterCount(bool is_method, clang::OverloadedOperatorKind op_kind, uint32_t num_params)
clang::DeclarationName GetDeclarationName(llvm::StringRef name, const CompilerType &function_clang_type)
DeclMetadataMap m_decl_metadata
Maps Decls to their associated ClangASTMetadata.
static clang::CXXMethodDecl * DeclContextGetAsCXXMethodDecl(const CompilerDeclContext &dc)
CompilerType GetFullyUnqualifiedType(lldb::opaque_compiler_type_t type) override
uint32_t CountDeclLevels(clang::DeclContext *frame_decl_ctx, clang::DeclContext *child_decl_ctx, ConstString *child_name=nullptr, CompilerType *child_type=nullptr)
bool HasPointerAuthQualifier(lldb::opaque_compiler_type_t type) override
static clang::QualType GetQualType(lldb::opaque_compiler_type_t type)
clang::PrintingPolicy GetTypePrintingPolicy()
Returns the PrintingPolicy used when generating the internal type names.
uint32_t GetNumVirtualBaseClasses(lldb::opaque_compiler_type_t type) override
static clang::RecordDecl * GetAsRecordDecl(const CompilerType &type)
CompilerType GetPointerSizedIntType(bool is_signed)
uint32_t GetNumBaseClasses(const clang::CXXRecordDecl *cxx_record_decl, bool omit_empty_base_classes)
lldb::LanguageType DeclContextGetLanguage(void *opaque_decl_ctx) override
std::unique_ptr< DWARFASTParserClang > m_dwarf_ast_parser_up
CompilerType GetBuiltinTypeForDWARFEncodingAndBitSize(llvm::StringRef type_name, uint32_t dw_ate, uint32_t bit_size)
lldb::Encoding GetEncoding(lldb::opaque_compiler_type_t type) override
bool IsFunctionPointerType(lldb::opaque_compiler_type_t type) override
int GetFunctionArgumentCount(lldb::opaque_compiler_type_t type) override
static void BuildIndirectFields(const CompilerType &type)
std::unique_ptr< clang::FileManager > m_file_manager_up
uint32_t GetIndexForRecordBase(const clang::RecordDecl *record_decl, const clang::CXXBaseSpecifier *base_spec, bool omit_empty_base_classes)
bool IsAnonymousType(lldb::opaque_compiler_type_t type) override
bool Verify(lldb::opaque_compiler_type_t type) override
Verify the integrity of the type to catch CompilerTypes that mix and match invalid TypeSystem/Opaque ...
size_t GetNumberOfFunctionArguments(lldb::opaque_compiler_type_t type) override
void AddMethodOverridesForCXXRecordType(lldb::opaque_compiler_type_t type)
CompilerType CreateBlockPointerType(const CompilerType &function_type)
lldb::LanguageType GetMinimumLanguage(lldb::opaque_compiler_type_t type) override
bool FieldIsBitfield(clang::FieldDecl *field, uint32_t &bitfield_bit_size)
clang::ClassTemplateSpecializationDecl * CreateClassTemplateSpecializationDecl(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, clang::ClassTemplateDecl *class_template_decl, int kind, const TemplateParameterInfos &infos)
llvm::SmallVector< clang::ParmVarDecl * > CreateParameterDeclarations(clang::FunctionDecl *context, const clang::FunctionProtoType &prototype, const llvm::SmallVector< llvm::StringRef > ¶m_names)
For each parameter type of prototype, creates a clang::ParmVarDecl whose clang::DeclContext is contex...
CompilerType CreateRecordType(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, llvm::StringRef name, int kind, lldb::LanguageType language, std::optional< ClangASTMetadata > metadata=std::nullopt, bool exports_symbols=false)
std::unique_ptr< clang::HeaderSearch > m_header_search_up
void Finalize() override
Free up any resources associated with this TypeSystem.
clang::CXXMethodDecl * AddMethodToCXXRecordType(lldb::opaque_compiler_type_t type, llvm::StringRef name, llvm::StringRef asm_label, const CompilerType &method_type, bool is_virtual, bool is_static, bool is_inline, bool is_explicit, bool is_attr_used, bool is_artificial)
static clang::ASTContext * DeclContextGetTypeSystemClang(const CompilerDeclContext &dc)
uint32_t IsHomogeneousAggregate(lldb::opaque_compiler_type_t type, CompilerType *base_type_ptr) override
LLVM_DUMP_METHOD void dump(lldb::opaque_compiler_type_t type) const override
Convenience LLVM-style dump method for use in the debugger only.
clang::NamespaceDecl * GetUniqueNamespaceDeclaration(const char *name, clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, bool is_inline=false)
std::unique_ptr< clang::ASTContext > m_ast_up
CompilerType CreateGenericFunctionPrototype() override
static clang::QualType GetCanonicalQualType(lldb::opaque_compiler_type_t type)
CompilerType DeclGetFunctionReturnType(void *opaque_decl) override
CompilerType GetSizeType() override
static bool IsEnumType(lldb::opaque_compiler_type_t type)
static clang::CXXRecordDecl * GetAsCXXRecordDecl(lldb::opaque_compiler_type_t type)
CompilerType GetDirectNestedTypeWithName(lldb::opaque_compiler_type_t type, llvm::StringRef name) override
static bool SetObjCSuperClass(const CompilerType &type, const CompilerType &superclass_compiler_type)
clang::UsingDirectiveDecl * CreateUsingDirectiveDeclaration(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, clang::NamespaceDecl *ns_decl)
static lldb::opaque_compiler_type_t GetOpaqueCompilerType(clang::ASTContext *ast, lldb::BasicType basic_type)
bool IsArrayType(lldb::opaque_compiler_type_t type, CompilerType *element_type, uint64_t *size, bool *is_incomplete) override
static void DebuggerInitialize(Debugger &debugger)
void DumpFromSymbolFile(Stream &s, llvm::StringRef symbol_name)
Dump clang AST types from the symbol file.
CompilerType AddConstModifier(lldb::opaque_compiler_type_t type) override
static void DumpDeclHiearchy(clang::Decl *decl)
static clang::ObjCMethodDecl * DeclContextGetAsObjCMethodDecl(const CompilerDeclContext &dc)
static clang::FunctionDecl * DeclContextGetAsFunctionDecl(const CompilerDeclContext &dc)
bool IsScalarType(lldb::opaque_compiler_type_t type) override
bool GetPtrAuthAddressDiversity(lldb::opaque_compiler_type_t type) override
std::shared_ptr< clang::TargetOptions > m_target_options_rp
lldb::TypeClass GetTypeClass(lldb::opaque_compiler_type_t type) override
static bool IsClassType(lldb::opaque_compiler_type_t type)
bool IsDefined(lldb::opaque_compiler_type_t type) override
static bool IsObjCClassType(const CompilerType &type)
TypeMetadataMap m_type_metadata
Maps Types to their associated ClangASTMetadata.
CompilerType GetCanonicalType(lldb::opaque_compiler_type_t type) override
bool RecordHasFields(const clang::RecordDecl *record_decl)
CompilerType GetFunctionArgumentAtIndex(lldb::opaque_compiler_type_t type, const size_t index) override
static std::optional< ClangASTMetadata > DeclContextGetMetaData(const CompilerDeclContext &dc, const clang::Decl *object)
static bool CompleteTagDeclarationDefinition(const CompilerType &type)
unsigned GetTypeQualifiers(lldb::opaque_compiler_type_t type) override
CompilerType GetPointerDiffType(bool is_signed) override
static clang::ObjCMethodDecl * AddMethodToObjCObjectType(const CompilerType &type, const char *name, const CompilerType &method_compiler_type, bool is_artificial, bool is_variadic, bool is_objc_direct_call)
~TypeSystemClang() override
CompilerDeclContext DeclGetDeclContext(void *opaque_decl) override
bool DeclContextIsContainedInLookup(void *opaque_decl_ctx, void *other_opaque_decl_ctx) override
CompilerType AddPtrAuthModifier(lldb::opaque_compiler_type_t type, uint32_t payload) override
static bool AddObjCClassProperty(const CompilerType &type, const char *property_name, const CompilerType &property_compiler_type, clang::ObjCIvarDecl *ivar_decl, const char *property_setter_name, const char *property_getter_name, uint32_t property_attributes, ClangASTMetadata metadata)
static bool SetHasExternalStorage(lldb::opaque_compiler_type_t type, bool has_extern)
void SetMetadata(const clang::Decl *object, ClangASTMetadata meta_data)
clang::ParmVarDecl * CreateParameterDeclaration(clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, const char *name, const CompilerType ¶m_type, int storage, bool add_decl=false)
void DumpTypeDescription(lldb::opaque_compiler_type_t type, lldb::DescriptionLevel level=lldb::eDescriptionLevelFull) override
Dump the type to stdout.
CompilerType GetFunctionArgumentTypeAtIndex(lldb::opaque_compiler_type_t type, size_t idx) override
static clang::NamespaceDecl * DeclContextGetAsNamespaceDecl(const CompilerDeclContext &dc)
CompilerType CreateEnumerationType(llvm::StringRef name, clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, const Declaration &decl, const CompilerType &integer_qual_type, bool is_scoped, std::optional< clang::EnumExtensibilityAttr::Kind > enum_kind=std::nullopt)
npdb::PdbAstBuilder * GetNativePDBParser() override
std::unique_ptr< clang::DiagnosticConsumer > m_diagnostic_consumer_up
CompilerType CreateObjCClass(llvm::StringRef name, clang::DeclContext *decl_ctx, OptionalClangModuleID owning_module, bool isInternal, std::optional< ClangASTMetadata > metadata=std::nullopt)
CompilerType GetTypeForDecl(clang::NamedDecl *decl)
CompilerType GetDirectBaseClassAtIndex(lldb::opaque_compiler_type_t type, size_t idx, uint32_t *bit_offset_ptr) override
CompilerType GetArrayElementType(lldb::opaque_compiler_type_t type, ExecutionContextScope *exe_scope) override
static clang::DeclContext * DeclContextGetAsDeclContext(const CompilerDeclContext &dc)
bool IsTypedefType(lldb::opaque_compiler_type_t type) override
CompilerType GetPointerType(lldb::opaque_compiler_type_t type) override
std::optional< size_t > GetTypeBitAlign(lldb::opaque_compiler_type_t type, ExecutionContextScope *exe_scope) override
void Dump(llvm::raw_ostream &output, llvm::StringRef filter, bool show_color) override
std::unique_ptr< clang::Builtin::Context > m_builtins_up
CompilerType GetBuiltinTypeByName(ConstString name) override
bool GetCompleteDecl(clang::Decl *decl)
static bool StartTagDeclarationDefinition(const CompilerType &type)
uint32_t GetIndexForRecordChild(const clang::RecordDecl *record_decl, clang::NamedDecl *canonical_decl, bool omit_empty_base_classes)
bool IsPossibleDynamicType(lldb::opaque_compiler_type_t type, CompilerType *target_type, bool check_cplusplus, bool check_objc) override
static clang::FieldDecl * AddFieldToRecordType(const CompilerType &type, llvm::StringRef name, const CompilerType &field_type, uint32_t bitfield_bit_size)
CompilerType GetOrCreateStructForIdentifier(llvm::StringRef type_name, const std::initializer_list< std::pair< const char *, CompilerType > > &type_fields, bool packed=false)
void LogCreation() const
Emits information about this TypeSystem into the expression log.
static llvm::StringRef GetPluginNameStatic()
clang::Sema * m_sema
The sema associated that is currently used to build this ASTContext.
size_t GetNumMemberFunctions(lldb::opaque_compiler_type_t type) override
CompilerType GetBasicTypeFromAST(lldb::BasicType basic_type) override
const clang::ClassTemplateSpecializationDecl * GetAsTemplateSpecialization(lldb::opaque_compiler_type_t type)
std::unique_ptr< clang::MangleContext > m_mangle_ctx_up
TypeMemberFunctionImpl GetMemberFunctionAtIndex(lldb::opaque_compiler_type_t type, size_t idx) override
bool IsTypeImpl(lldb::opaque_compiler_type_t type, llvm::function_ref< bool(clang::QualType)> predicate) const
size_t DeclGetFunctionNumArguments(void *opaque_decl) override
CompilerType GetAtomicType(lldb::opaque_compiler_type_t type) override
std::unique_ptr< PDBASTParser > m_pdb_ast_parser_up
std::unique_ptr< clang::DiagnosticsEngine > m_diagnostics_engine_up
static std::optional< std::string > GetCXXClassName(const CompilerType &type)
static void DumpTypeName(const CompilerType &type)
plugin::dwarf::DWARFASTParser * GetDWARFParser() override
CompilerType DeclGetFunctionArgumentType(void *opaque_decl, size_t arg_idx) override
bool IsPointerOrReferenceType(lldb::opaque_compiler_type_t type, CompilerType *pointee_type) override
static clang::EnumDecl * GetAsEnumDecl(const CompilerType &type)
CompilerType AddVolatileModifier(lldb::opaque_compiler_type_t type) override
std::unique_ptr< clang::ModuleMap > m_module_map_up
static bool IsObjCObjectOrInterfaceType(const CompilerType &type)
static void RequireCompleteType(CompilerType type)
Complete a type from debug info, or mark it as forcefully completed if there is no definition of the ...
CompilerType CreateTypedef(lldb::opaque_compiler_type_t type, const char *name, const CompilerDeclContext &decl_ctx, uint32_t opaque_payload) override
Using the current type, create a new typedef to that type using "typedef_name" as the name and "decl_...
llvm::Expected< uint32_t > GetNumChildren(lldb::opaque_compiler_type_t type, bool omit_empty_base_classes, const ExecutionContext *exe_ctx) override
CompilerType AddRestrictModifier(lldb::opaque_compiler_type_t type) override
clang::TemplateTemplateParmDecl * CreateTemplateTemplateParmDecl(const char *template_name)
lldb::TemplateArgumentKind GetTemplateArgumentKind(lldb::opaque_compiler_type_t type, size_t idx, bool expand_pack) override
clang::ASTContext & getASTContext() const
Returns the clang::ASTContext instance managed by this TypeSystemClang.
std::vector< lldb_private::CompilerContext > DeclGetCompilerContext(void *opaque_decl) override
static CompilerType CreateMemberPointerType(const CompilerType &type, const CompilerType &pointee_type)
std::vector< lldb_private::CompilerContext > DeclContextGetCompilerContext(void *opaque_decl_ctx) override
void CreateASTContext()
Creates the internal ASTContext.
void SetExternalSource(llvm::IntrusiveRefCntPtr< clang::ExternalASTSource > ast_source_sp)
CompilerType GetCStringType(bool is_const)
bool IsAggregateType(lldb::opaque_compiler_type_t type) override
bool IsPromotableIntegerType(lldb::opaque_compiler_type_t type) override
static bool IsObjCObjectPointerType(const CompilerType &type, CompilerType *target_type=nullptr)
bool IsVectorType(lldb::opaque_compiler_type_t type, CompilerType *element_type, uint64_t *size) override
static LanguageSet GetSupportedLanguagesForTypes()
clang::VarDecl * CreateVariableDeclaration(clang::DeclContext *decl_context, OptionalClangModuleID owning_module, const char *name, clang::QualType type)
clang::BlockDecl * CreateBlockDeclaration(clang::DeclContext *ctx, OptionalClangModuleID owning_module)
ConstString DeclContextGetName(void *opaque_decl_ctx) override
size_t GetNumTemplateArguments(lldb::opaque_compiler_type_t type, bool expand_pack) override
ConstString DeclGetName(void *opaque_decl) override
SymbolFile * GetSymbolFile() const
bool m_has_forcefully_completed_types
Used for reporting statistics.
Encapsulates a one-time expression for use in lldb.
virtual uint64_t GetData(DataExtractor &data, Status &error)
virtual uint64_t GetValueAsUnsigned(uint64_t fail_value, bool *success=nullptr)
AddressType GetAddressTypeOfChildren()
CompilerType GetCompilerType()
ConstString GetName() const
const ExecutionContextRef & GetExecutionContextRef() const
#define LLDB_INVALID_ADDRESS
#define LLDB_INVALID_IVAR_OFFSET
A class that represents a running process on the host machine.
Log * GetLog(Cat mask)
Retrieve the Log object for the channel associated with the given log enum.
lldb::offset_t DumpDataExtractor(const DataExtractor &DE, Stream *s, lldb::offset_t offset, lldb::Format item_format, size_t item_byte_size, size_t item_count, size_t num_per_line, uint64_t base_addr, uint32_t item_bit_size, uint32_t item_bit_offset, ExecutionContextScope *exe_scope=nullptr, bool show_memory_tags=false)
Dumps item_count objects into the stream s.
@ eAddressTypeLoad
Address is an address as in the current target inferior process.
std::shared_ptr< lldb_private::TypeSystem > TypeSystemSP
void * opaque_compiler_type_t
DescriptionLevel
Description levels for "void GetDescription(Stream *, DescriptionLevel)" calls.
@ eDescriptionLevelVerbose
BasicType
Basic types enumeration for the public API SBType::GetBasicType().
@ eBasicTypeUnsignedShort
@ eBasicTypeUnsignedInt128
@ eBasicTypeUnsignedWChar
@ eBasicTypeLongDoubleComplex
@ eBasicTypeUnsignedLongLong
@ eBasicTypeDoubleComplex
Format
Display format definitions.
@ eFormatCString
Null-terminated C strings.
@ eFormatCharArray
Print characters with no single quotes, used for character arrays that can contain non printable char...
@ eFormatVoid
Do not print this.
@ eFormatComplex
Floating point complex type.
@ eFormatOSType
OS character codes encoded into an integer 'PICT' 'text' etc...
@ eFormatCharPrintable
Only printable characters, '.' if not printable.
@ eFormatComplexInteger
Integer complex type.
@ eFormatFloat128
Disambiguate between 128-bit long double (which uses eFormatFloat) and __float128 (which uses eFormat...
LanguageType
Programming language type.
@ eLanguageTypeC_plus_plus_20
ISO C++:2020.
@ eLanguageTypeC_plus_plus_14
ISO C++:2014.
@ eLanguageTypeC11
ISO C:2011.
@ eLanguageTypeC99
ISO C:1999.
@ eLanguageTypeC_plus_plus_03
ISO C++:2003.
@ eLanguageTypeUnknown
Unknown or invalid language value.
@ eLanguageTypeC_plus_plus_17
ISO C++:2017.
@ eLanguageTypeObjC_plus_plus
Objective-C++.
@ eLanguageTypeC_plus_plus_11
ISO C++:2011.
@ eLanguageTypeC89
ISO C:1989.
@ eLanguageTypeC
Non-standardized C, such as K&R.
@ eLanguageTypeObjC
Objective-C.
@ eLanguageTypeC_plus_plus
ISO C++:1998.
@ eLanguageTypeDylan
Dylan.
std::shared_ptr< lldb_private::Type > TypeSP
@ eTemplateArgumentKindTemplate
@ eTemplateArgumentKindTemplateExpansion
@ eTemplateArgumentKindNull
@ eTemplateArgumentKindNullPtr
@ eTemplateArgumentKindDeclaration
@ eTemplateArgumentKindIntegral
@ eTemplateArgumentKindPack
@ eTemplateArgumentKindType
@ eTemplateArgumentKindStructuralValue
@ eTemplateArgumentKindExpression
Encoding
Register encoding definitions.
@ eEncodingVector
vector registers
@ eEncodingUint
unsigned integer
@ eEncodingSint
signed integer
@ eReturnStatusSuccessFinishResult
MemberFunctionKind
Kind of member function.
@ eMemberFunctionKindInstanceMethod
A function that applies to a specific instance.
@ eMemberFunctionKindConstructor
A function used to create instances.
@ eMemberFunctionKindUnknown
Not sure what the type of this is.
@ eMemberFunctionKindDestructor
A function used to tear down existing instances.
@ eMemberFunctionKindStaticMethod
A function that applies to a type rather than any instance.
std::shared_ptr< lldb_private::TypeSystemClang > TypeSystemClangSP
std::shared_ptr< lldb_private::Target > TargetSP
static clang::QualType GetQualType(const CompilerType &ct)
static clang::QualType GetCanonicalQualType(const CompilerType &ct)
static bool IsClangType(const CompilerType &ct)
static CompilerType RemoveFastQualifiers(const CompilerType &ct)
static clang::TagDecl * GetAsTagDecl(const CompilerType &type)
static llvm::Expected< FunctionCallLabel > fromString(llvm::StringRef label)
Decodes the specified function label into a FunctionCallLabel.
A SmallBitVector that represents a set of source languages (lldb::LanguageType).
void Insert(lldb::LanguageType language)
A type-erased pair of llvm::dwarf::SourceLanguageName and version.